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1/** @file\r
2 Provides interface to shell functionality for shell commands and applications.\r
3\r
4 (C) Copyright 2016 Hewlett Packard Enterprise Development LP<BR>\r
5 Copyright 2016 Dell Inc.\r
6 Copyright (c) 2006 - 2017, Intel Corporation. All rights reserved.<BR>\r
7 This program and the accompanying materials\r
8 are licensed and made available under the terms and conditions of the BSD License\r
9 which accompanies this distribution. The full text of the license may be found at\r
10 http://opensource.org/licenses/bsd-license.php\r
11\r
12 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
13 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
14\r
15**/\r
16\r
17#include "UefiShellLib.h"\r
18#include <Library/SortLib.h>\r
19#include <Library/BaseLib.h>\r
20\r
21//\r
22// globals...\r
23//\r
24SHELL_PARAM_ITEM EmptyParamList[] = {\r
25 {NULL, TypeMax}\r
26 };\r
27SHELL_PARAM_ITEM SfoParamList[] = {\r
28 {L"-sfo", TypeFlag},\r
29 {NULL, TypeMax}\r
30 };\r
31EFI_SHELL_ENVIRONMENT2 *mEfiShellEnvironment2;\r
32EFI_SHELL_INTERFACE *mEfiShellInterface;\r
33EFI_SHELL_PROTOCOL *gEfiShellProtocol;\r
34EFI_SHELL_PARAMETERS_PROTOCOL *gEfiShellParametersProtocol;\r
35EFI_HANDLE mEfiShellEnvironment2Handle;\r
36FILE_HANDLE_FUNCTION_MAP FileFunctionMap;\r
37EFI_UNICODE_COLLATION_PROTOCOL *mUnicodeCollationProtocol;\r
38\r
39/**\r
40 Check if a Unicode character is a hexadecimal character.\r
41\r
42 This internal function checks if a Unicode character is a\r
43 numeric character. The valid hexadecimal characters are\r
44 L'0' to L'9', L'a' to L'f', or L'A' to L'F'.\r
45\r
46 @param Char The character to check against.\r
47\r
48 @retval TRUE If the Char is a hexadecmial character.\r
49 @retval FALSE If the Char is not a hexadecmial character.\r
50\r
51**/\r
52BOOLEAN\r
53EFIAPI\r
54ShellIsHexaDecimalDigitCharacter (\r
55 IN CHAR16 Char\r
56 )\r
57{\r
58 return (BOOLEAN) ((Char >= L'0' && Char <= L'9') || (Char >= L'A' && Char <= L'F') || (Char >= L'a' && Char <= L'f'));\r
59}\r
60\r
61/**\r
62 Check if a Unicode character is a decimal character.\r
63\r
64 This internal function checks if a Unicode character is a\r
65 decimal character. The valid characters are\r
66 L'0' to L'9'.\r
67\r
68\r
69 @param Char The character to check against.\r
70\r
71 @retval TRUE If the Char is a hexadecmial character.\r
72 @retval FALSE If the Char is not a hexadecmial character.\r
73\r
74**/\r
75BOOLEAN\r
76EFIAPI\r
77ShellIsDecimalDigitCharacter (\r
78 IN CHAR16 Char\r
79 )\r
80{\r
81 return (BOOLEAN) (Char >= L'0' && Char <= L'9');\r
82}\r
83\r
84/**\r
85 Helper function to find ShellEnvironment2 for constructor.\r
86\r
87 @param[in] ImageHandle A copy of the calling image's handle.\r
88\r
89 @retval EFI_OUT_OF_RESOURCES Memory allocation failed.\r
90**/\r
91EFI_STATUS\r
92ShellFindSE2 (\r
93 IN EFI_HANDLE ImageHandle\r
94 )\r
95{\r
96 EFI_STATUS Status;\r
97 EFI_HANDLE *Buffer;\r
98 UINTN BufferSize;\r
99 UINTN HandleIndex;\r
100\r
101 BufferSize = 0;\r
102 Buffer = NULL;\r
103 Status = gBS->OpenProtocol(ImageHandle,\r
104 &gEfiShellEnvironment2Guid,\r
105 (VOID **)&mEfiShellEnvironment2,\r
106 ImageHandle,\r
107 NULL,\r
108 EFI_OPEN_PROTOCOL_GET_PROTOCOL\r
109 );\r
110 //\r
111 // look for the mEfiShellEnvironment2 protocol at a higher level\r
112 //\r
113 if (EFI_ERROR (Status) || !(CompareGuid (&mEfiShellEnvironment2->SESGuid, &gEfiShellEnvironment2ExtGuid))){\r
114 //\r
115 // figure out how big of a buffer we need.\r
116 //\r
117 Status = gBS->LocateHandle (ByProtocol,\r
118 &gEfiShellEnvironment2Guid,\r
119 NULL, // ignored for ByProtocol\r
120 &BufferSize,\r
121 Buffer\r
122 );\r
123 //\r
124 // maybe it's not there???\r
125 //\r
126 if (Status == EFI_BUFFER_TOO_SMALL) {\r
127 Buffer = (EFI_HANDLE*)AllocateZeroPool(BufferSize);\r
128 if (Buffer == NULL) {\r
129 return (EFI_OUT_OF_RESOURCES);\r
130 }\r
131 Status = gBS->LocateHandle (ByProtocol,\r
132 &gEfiShellEnvironment2Guid,\r
133 NULL, // ignored for ByProtocol\r
134 &BufferSize,\r
135 Buffer\r
136 );\r
137 }\r
138 if (!EFI_ERROR (Status) && Buffer != NULL) {\r
139 //\r
140 // now parse the list of returned handles\r
141 //\r
142 Status = EFI_NOT_FOUND;\r
143 for (HandleIndex = 0; HandleIndex < (BufferSize/sizeof(Buffer[0])); HandleIndex++) {\r
144 Status = gBS->OpenProtocol(Buffer[HandleIndex],\r
145 &gEfiShellEnvironment2Guid,\r
146 (VOID **)&mEfiShellEnvironment2,\r
147 ImageHandle,\r
148 NULL,\r
149 EFI_OPEN_PROTOCOL_GET_PROTOCOL\r
150 );\r
151 if (CompareGuid (&mEfiShellEnvironment2->SESGuid, &gEfiShellEnvironment2ExtGuid)) {\r
152 mEfiShellEnvironment2Handle = Buffer[HandleIndex];\r
153 Status = EFI_SUCCESS;\r
154 break;\r
155 }\r
156 }\r
157 }\r
158 }\r
159 if (Buffer != NULL) {\r
160 FreePool (Buffer);\r
161 }\r
162 return (Status);\r
163}\r
164\r
165/**\r
166 Function to do most of the work of the constructor. Allows for calling\r
167 multiple times without complete re-initialization.\r
168\r
169 @param[in] ImageHandle A copy of the ImageHandle.\r
170 @param[in] SystemTable A pointer to the SystemTable for the application.\r
171\r
172 @retval EFI_SUCCESS The operationw as successful.\r
173**/\r
174EFI_STATUS\r
175ShellLibConstructorWorker (\r
176 IN EFI_HANDLE ImageHandle,\r
177 IN EFI_SYSTEM_TABLE *SystemTable\r
178 )\r
179{\r
180 EFI_STATUS Status;\r
181\r
182 //\r
183 // UEFI 2.0 shell interfaces (used preferentially)\r
184 //\r
185 Status = gBS->OpenProtocol(\r
186 ImageHandle,\r
187 &gEfiShellProtocolGuid,\r
188 (VOID **)&gEfiShellProtocol,\r
189 ImageHandle,\r
190 NULL,\r
191 EFI_OPEN_PROTOCOL_GET_PROTOCOL\r
192 );\r
193 if (EFI_ERROR(Status)) {\r
194 //\r
195 // Search for the shell protocol\r
196 //\r
197 Status = gBS->LocateProtocol(\r
198 &gEfiShellProtocolGuid,\r
199 NULL,\r
200 (VOID **)&gEfiShellProtocol\r
201 );\r
202 if (EFI_ERROR(Status)) {\r
203 gEfiShellProtocol = NULL;\r
204 }\r
205 }\r
206 Status = gBS->OpenProtocol(\r
207 ImageHandle,\r
208 &gEfiShellParametersProtocolGuid,\r
209 (VOID **)&gEfiShellParametersProtocol,\r
210 ImageHandle,\r
211 NULL,\r
212 EFI_OPEN_PROTOCOL_GET_PROTOCOL\r
213 );\r
214 if (EFI_ERROR(Status)) {\r
215 gEfiShellParametersProtocol = NULL;\r
216 }\r
217\r
218 if (gEfiShellProtocol == NULL) {\r
219 //\r
220 // Moved to seperate function due to complexity\r
221 //\r
222 Status = ShellFindSE2(ImageHandle);\r
223\r
224 if (EFI_ERROR(Status)) {\r
225 DEBUG((DEBUG_ERROR, "Status: 0x%08x\r\n", Status));\r
226 mEfiShellEnvironment2 = NULL;\r
227 }\r
228 Status = gBS->OpenProtocol(ImageHandle,\r
229 &gEfiShellInterfaceGuid,\r
230 (VOID **)&mEfiShellInterface,\r
231 ImageHandle,\r
232 NULL,\r
233 EFI_OPEN_PROTOCOL_GET_PROTOCOL\r
234 );\r
235 if (EFI_ERROR(Status)) {\r
236 mEfiShellInterface = NULL;\r
237 }\r
238 }\r
239\r
240 //\r
241 // Getting either EDK Shell's ShellEnvironment2 and ShellInterface protocol\r
242 // or UEFI Shell's Shell protocol.\r
243 // When ShellLib is linked to a driver producing DynamicCommand protocol,\r
244 // ShellParameters protocol is set by DynamicCommand.Handler().\r
245 //\r
246 if ((mEfiShellEnvironment2 != NULL && mEfiShellInterface != NULL) ||\r
247 (gEfiShellProtocol != NULL)\r
248 ) {\r
249 if (gEfiShellProtocol != NULL) {\r
250 FileFunctionMap.GetFileInfo = gEfiShellProtocol->GetFileInfo;\r
251 FileFunctionMap.SetFileInfo = gEfiShellProtocol->SetFileInfo;\r
252 FileFunctionMap.ReadFile = gEfiShellProtocol->ReadFile;\r
253 FileFunctionMap.WriteFile = gEfiShellProtocol->WriteFile;\r
254 FileFunctionMap.CloseFile = gEfiShellProtocol->CloseFile;\r
255 FileFunctionMap.DeleteFile = gEfiShellProtocol->DeleteFile;\r
256 FileFunctionMap.GetFilePosition = gEfiShellProtocol->GetFilePosition;\r
257 FileFunctionMap.SetFilePosition = gEfiShellProtocol->SetFilePosition;\r
258 FileFunctionMap.FlushFile = gEfiShellProtocol->FlushFile;\r
259 FileFunctionMap.GetFileSize = gEfiShellProtocol->GetFileSize;\r
260 } else {\r
261 FileFunctionMap.GetFileInfo = (EFI_SHELL_GET_FILE_INFO)FileHandleGetInfo;\r
262 FileFunctionMap.SetFileInfo = (EFI_SHELL_SET_FILE_INFO)FileHandleSetInfo;\r
263 FileFunctionMap.ReadFile = (EFI_SHELL_READ_FILE)FileHandleRead;\r
264 FileFunctionMap.WriteFile = (EFI_SHELL_WRITE_FILE)FileHandleWrite;\r
265 FileFunctionMap.CloseFile = (EFI_SHELL_CLOSE_FILE)FileHandleClose;\r
266 FileFunctionMap.DeleteFile = (EFI_SHELL_DELETE_FILE)FileHandleDelete;\r
267 FileFunctionMap.GetFilePosition = (EFI_SHELL_GET_FILE_POSITION)FileHandleGetPosition;\r
268 FileFunctionMap.SetFilePosition = (EFI_SHELL_SET_FILE_POSITION)FileHandleSetPosition;\r
269 FileFunctionMap.FlushFile = (EFI_SHELL_FLUSH_FILE)FileHandleFlush;\r
270 FileFunctionMap.GetFileSize = (EFI_SHELL_GET_FILE_SIZE)FileHandleGetSize;\r
271 }\r
272 return (EFI_SUCCESS);\r
273 }\r
274 return (EFI_NOT_FOUND);\r
275}\r
276/**\r
277 Constructor for the Shell library.\r
278\r
279 Initialize the library and determine if the underlying is a UEFI Shell 2.0 or an EFI shell.\r
280\r
281 @param ImageHandle the image handle of the process\r
282 @param SystemTable the EFI System Table pointer\r
283\r
284 @retval EFI_SUCCESS the initialization was complete sucessfully\r
285 @return others an error ocurred during initialization\r
286**/\r
287EFI_STATUS\r
288EFIAPI\r
289ShellLibConstructor (\r
290 IN EFI_HANDLE ImageHandle,\r
291 IN EFI_SYSTEM_TABLE *SystemTable\r
292 )\r
293{\r
294 mEfiShellEnvironment2 = NULL;\r
295 gEfiShellProtocol = NULL;\r
296 gEfiShellParametersProtocol = NULL;\r
297 mEfiShellInterface = NULL;\r
298 mEfiShellEnvironment2Handle = NULL;\r
299 mUnicodeCollationProtocol = NULL;\r
300\r
301 //\r
302 // verify that auto initialize is not set false\r
303 //\r
304 if (PcdGetBool(PcdShellLibAutoInitialize) == 0) {\r
305 return (EFI_SUCCESS);\r
306 }\r
307\r
308 return (ShellLibConstructorWorker(ImageHandle, SystemTable));\r
309}\r
310\r
311/**\r
312 Destructor for the library. free any resources.\r
313\r
314 @param[in] ImageHandle A copy of the ImageHandle.\r
315 @param[in] SystemTable A pointer to the SystemTable for the application.\r
316\r
317 @retval EFI_SUCCESS The operation was successful.\r
318 @return An error from the CloseProtocol function.\r
319**/\r
320EFI_STATUS\r
321EFIAPI\r
322ShellLibDestructor (\r
323 IN EFI_HANDLE ImageHandle,\r
324 IN EFI_SYSTEM_TABLE *SystemTable\r
325 )\r
326{\r
327 if (mEfiShellEnvironment2 != NULL) {\r
328 gBS->CloseProtocol(mEfiShellEnvironment2Handle==NULL?ImageHandle:mEfiShellEnvironment2Handle,\r
329 &gEfiShellEnvironment2Guid,\r
330 ImageHandle,\r
331 NULL);\r
332 mEfiShellEnvironment2 = NULL;\r
333 }\r
334 if (mEfiShellInterface != NULL) {\r
335 gBS->CloseProtocol(ImageHandle,\r
336 &gEfiShellInterfaceGuid,\r
337 ImageHandle,\r
338 NULL);\r
339 mEfiShellInterface = NULL;\r
340 }\r
341 if (gEfiShellProtocol != NULL) {\r
342 gBS->CloseProtocol(ImageHandle,\r
343 &gEfiShellProtocolGuid,\r
344 ImageHandle,\r
345 NULL);\r
346 gEfiShellProtocol = NULL;\r
347 }\r
348 if (gEfiShellParametersProtocol != NULL) {\r
349 gBS->CloseProtocol(ImageHandle,\r
350 &gEfiShellParametersProtocolGuid,\r
351 ImageHandle,\r
352 NULL);\r
353 gEfiShellParametersProtocol = NULL;\r
354 }\r
355 mEfiShellEnvironment2Handle = NULL;\r
356\r
357 return (EFI_SUCCESS);\r
358}\r
359\r
360/**\r
361 This function causes the shell library to initialize itself. If the shell library\r
362 is already initialized it will de-initialize all the current protocol poitners and\r
363 re-populate them again.\r
364\r
365 When the library is used with PcdShellLibAutoInitialize set to true this function\r
366 will return EFI_SUCCESS and perform no actions.\r
367\r
368 This function is intended for internal access for shell commands only.\r
369\r
370 @retval EFI_SUCCESS the initialization was complete sucessfully\r
371\r
372**/\r
373EFI_STATUS\r
374EFIAPI\r
375ShellInitialize (\r
376 VOID\r
377 )\r
378{\r
379 EFI_STATUS Status;\r
380\r
381 //\r
382 // if auto initialize is not false then skip\r
383 //\r
384 if (PcdGetBool(PcdShellLibAutoInitialize) != 0) {\r
385 return (EFI_SUCCESS);\r
386 }\r
387\r
388 //\r
389 // deinit the current stuff\r
390 //\r
391 Status = ShellLibDestructor (gImageHandle, gST);\r
392 ASSERT_EFI_ERROR (Status);\r
393\r
394 //\r
395 // init the new stuff\r
396 //\r
397 return (ShellLibConstructorWorker(gImageHandle, gST));\r
398}\r
399\r
400/**\r
401 This function will retrieve the information about the file for the handle\r
402 specified and store it in allocated pool memory.\r
403\r
404 This function allocates a buffer to store the file's information. It is the\r
405 caller's responsibility to free the buffer\r
406\r
407 @param FileHandle The file handle of the file for which information is\r
408 being requested.\r
409\r
410 @retval NULL information could not be retrieved.\r
411\r
412 @return the information about the file\r
413**/\r
414EFI_FILE_INFO*\r
415EFIAPI\r
416ShellGetFileInfo (\r
417 IN SHELL_FILE_HANDLE FileHandle\r
418 )\r
419{\r
420 return (FileFunctionMap.GetFileInfo(FileHandle));\r
421}\r
422\r
423/**\r
424 This function sets the information about the file for the opened handle\r
425 specified.\r
426\r
427 @param[in] FileHandle The file handle of the file for which information\r
428 is being set.\r
429\r
430 @param[in] FileInfo The information to set.\r
431\r
432 @retval EFI_SUCCESS The information was set.\r
433 @retval EFI_INVALID_PARAMETER A parameter was out of range or invalid.\r
434 @retval EFI_UNSUPPORTED The FileHandle does not support FileInfo.\r
435 @retval EFI_NO_MEDIA The device has no medium.\r
436 @retval EFI_DEVICE_ERROR The device reported an error.\r
437 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
438 @retval EFI_WRITE_PROTECTED The file or medium is write protected.\r
439 @retval EFI_ACCESS_DENIED The file was opened read only.\r
440 @retval EFI_VOLUME_FULL The volume is full.\r
441**/\r
442EFI_STATUS\r
443EFIAPI\r
444ShellSetFileInfo (\r
445 IN SHELL_FILE_HANDLE FileHandle,\r
446 IN EFI_FILE_INFO *FileInfo\r
447 )\r
448{\r
449 return (FileFunctionMap.SetFileInfo(FileHandle, FileInfo));\r
450}\r
451\r
452 /**\r
453 This function will open a file or directory referenced by DevicePath.\r
454\r
455 This function opens a file with the open mode according to the file path. The\r
456 Attributes is valid only for EFI_FILE_MODE_CREATE.\r
457\r
458 @param FilePath on input the device path to the file. On output\r
459 the remaining device path.\r
460 @param DeviceHandle pointer to the system device handle.\r
461 @param FileHandle pointer to the file handle.\r
462 @param OpenMode the mode to open the file with.\r
463 @param Attributes the file's file attributes.\r
464\r
465 @retval EFI_SUCCESS The information was set.\r
466 @retval EFI_INVALID_PARAMETER One of the parameters has an invalid value.\r
467 @retval EFI_UNSUPPORTED Could not open the file path.\r
468 @retval EFI_NOT_FOUND The specified file could not be found on the\r
469 device or the file system could not be found on\r
470 the device.\r
471 @retval EFI_NO_MEDIA The device has no medium.\r
472 @retval EFI_MEDIA_CHANGED The device has a different medium in it or the\r
473 medium is no longer supported.\r
474 @retval EFI_DEVICE_ERROR The device reported an error.\r
475 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
476 @retval EFI_WRITE_PROTECTED The file or medium is write protected.\r
477 @retval EFI_ACCESS_DENIED The file was opened read only.\r
478 @retval EFI_OUT_OF_RESOURCES Not enough resources were available to open the\r
479 file.\r
480 @retval EFI_VOLUME_FULL The volume is full.\r
481**/\r
482EFI_STATUS\r
483EFIAPI\r
484ShellOpenFileByDevicePath(\r
485 IN OUT EFI_DEVICE_PATH_PROTOCOL **FilePath,\r
486 OUT EFI_HANDLE *DeviceHandle,\r
487 OUT SHELL_FILE_HANDLE *FileHandle,\r
488 IN UINT64 OpenMode,\r
489 IN UINT64 Attributes\r
490 )\r
491{\r
492 CHAR16 *FileName;\r
493 EFI_STATUS Status;\r
494 EFI_SIMPLE_FILE_SYSTEM_PROTOCOL *EfiSimpleFileSystemProtocol;\r
495 EFI_FILE_PROTOCOL *Handle1;\r
496 EFI_FILE_PROTOCOL *Handle2;\r
497 CHAR16 *FnafPathName;\r
498 UINTN PathLen;\r
499\r
500 if (FilePath == NULL || FileHandle == NULL || DeviceHandle == NULL) {\r
501 return (EFI_INVALID_PARAMETER);\r
502 }\r
503\r
504 //\r
505 // which shell interface should we use\r
506 //\r
507 if (gEfiShellProtocol != NULL) {\r
508 //\r
509 // use UEFI Shell 2.0 method.\r
510 //\r
511 FileName = gEfiShellProtocol->GetFilePathFromDevicePath(*FilePath);\r
512 if (FileName == NULL) {\r
513 return (EFI_INVALID_PARAMETER);\r
514 }\r
515 Status = ShellOpenFileByName(FileName, FileHandle, OpenMode, Attributes);\r
516 FreePool(FileName);\r
517 return (Status);\r
518 }\r
519\r
520\r
521 //\r
522 // use old shell method.\r
523 //\r
524 Status = gBS->LocateDevicePath (&gEfiSimpleFileSystemProtocolGuid,\r
525 FilePath,\r
526 DeviceHandle);\r
527 if (EFI_ERROR (Status)) {\r
528 return Status;\r
529 }\r
530 Status = gBS->OpenProtocol(*DeviceHandle,\r
531 &gEfiSimpleFileSystemProtocolGuid,\r
532 (VOID**)&EfiSimpleFileSystemProtocol,\r
533 gImageHandle,\r
534 NULL,\r
535 EFI_OPEN_PROTOCOL_GET_PROTOCOL);\r
536 if (EFI_ERROR (Status)) {\r
537 return Status;\r
538 }\r
539 Status = EfiSimpleFileSystemProtocol->OpenVolume(EfiSimpleFileSystemProtocol, &Handle1);\r
540 if (EFI_ERROR (Status)) {\r
541 FileHandle = NULL;\r
542 return Status;\r
543 }\r
544\r
545 //\r
546 // go down directories one node at a time.\r
547 //\r
548 while (!IsDevicePathEnd (*FilePath)) {\r
549 //\r
550 // For file system access each node should be a file path component\r
551 //\r
552 if (DevicePathType (*FilePath) != MEDIA_DEVICE_PATH ||\r
553 DevicePathSubType (*FilePath) != MEDIA_FILEPATH_DP\r
554 ) {\r
555 FileHandle = NULL;\r
556 return (EFI_INVALID_PARAMETER);\r
557 }\r
558 //\r
559 // Open this file path node\r
560 //\r
561 Handle2 = Handle1;\r
562 Handle1 = NULL;\r
563\r
564 //\r
565 // File Name Alignment Fix (FNAF)\r
566 // Handle2->Open may be incapable of handling a unaligned CHAR16 data.\r
567 // The structure pointed to by FilePath may be not CHAR16 aligned.\r
568 // This code copies the potentially unaligned PathName data from the\r
569 // FilePath structure to the aligned FnafPathName for use in the\r
570 // calls to Handl2->Open.\r
571 //\r
572\r
573 //\r
574 // Determine length of PathName, in bytes.\r
575 //\r
576 PathLen = DevicePathNodeLength (*FilePath) - SIZE_OF_FILEPATH_DEVICE_PATH;\r
577\r
578 //\r
579 // Allocate memory for the aligned copy of the string Extra allocation is to allow for forced alignment\r
580 // Copy bytes from possibly unaligned location to aligned location\r
581 //\r
582 FnafPathName = AllocateCopyPool(PathLen, (UINT8 *)((FILEPATH_DEVICE_PATH*)*FilePath)->PathName);\r
583 if (FnafPathName == NULL) {\r
584 return EFI_OUT_OF_RESOURCES;\r
585 }\r
586\r
587 //\r
588 // Try to test opening an existing file\r
589 //\r
590 Status = Handle2->Open (\r
591 Handle2,\r
592 &Handle1,\r
593 FnafPathName,\r
594 OpenMode &~EFI_FILE_MODE_CREATE,\r
595 0\r
596 );\r
597\r
598 //\r
599 // see if the error was that it needs to be created\r
600 //\r
601 if ((EFI_ERROR (Status)) && (OpenMode != (OpenMode &~EFI_FILE_MODE_CREATE))) {\r
602 Status = Handle2->Open (\r
603 Handle2,\r
604 &Handle1,\r
605 FnafPathName,\r
606 OpenMode,\r
607 Attributes\r
608 );\r
609 }\r
610\r
611 //\r
612 // Free the alignment buffer\r
613 //\r
614 FreePool(FnafPathName);\r
615\r
616 //\r
617 // Close the last node\r
618 //\r
619 Handle2->Close (Handle2);\r
620\r
621 if (EFI_ERROR(Status)) {\r
622 return (Status);\r
623 }\r
624\r
625 //\r
626 // Get the next node\r
627 //\r
628 *FilePath = NextDevicePathNode (*FilePath);\r
629 }\r
630\r
631 //\r
632 // This is a weak spot since if the undefined SHELL_FILE_HANDLE format changes this must change also!\r
633 //\r
634 *FileHandle = (VOID*)Handle1;\r
635 return (EFI_SUCCESS);\r
636}\r
637\r
638/**\r
639 This function will open a file or directory referenced by filename.\r
640\r
641 If return is EFI_SUCCESS, the Filehandle is the opened file's handle;\r
642 otherwise, the Filehandle is NULL. The Attributes is valid only for\r
643 EFI_FILE_MODE_CREATE.\r
644\r
645 if FileName is NULL then ASSERT()\r
646\r
647 @param FileName pointer to file name\r
648 @param FileHandle pointer to the file handle.\r
649 @param OpenMode the mode to open the file with.\r
650 @param Attributes the file's file attributes.\r
651\r
652 @retval EFI_SUCCESS The information was set.\r
653 @retval EFI_INVALID_PARAMETER One of the parameters has an invalid value.\r
654 @retval EFI_UNSUPPORTED Could not open the file path.\r
655 @retval EFI_NOT_FOUND The specified file could not be found on the\r
656 device or the file system could not be found\r
657 on the device.\r
658 @retval EFI_NO_MEDIA The device has no medium.\r
659 @retval EFI_MEDIA_CHANGED The device has a different medium in it or the\r
660 medium is no longer supported.\r
661 @retval EFI_DEVICE_ERROR The device reported an error.\r
662 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
663 @retval EFI_WRITE_PROTECTED The file or medium is write protected.\r
664 @retval EFI_ACCESS_DENIED The file was opened read only.\r
665 @retval EFI_OUT_OF_RESOURCES Not enough resources were available to open the\r
666 file.\r
667 @retval EFI_VOLUME_FULL The volume is full.\r
668**/\r
669EFI_STATUS\r
670EFIAPI\r
671ShellOpenFileByName(\r
672 IN CONST CHAR16 *FileName,\r
673 OUT SHELL_FILE_HANDLE *FileHandle,\r
674 IN UINT64 OpenMode,\r
675 IN UINT64 Attributes\r
676 )\r
677{\r
678 EFI_HANDLE DeviceHandle;\r
679 EFI_DEVICE_PATH_PROTOCOL *FilePath;\r
680 EFI_STATUS Status;\r
681 EFI_FILE_INFO *FileInfo;\r
682 CHAR16 *FileNameCopy;\r
683 EFI_STATUS Status2;\r
684\r
685 //\r
686 // ASSERT if FileName is NULL\r
687 //\r
688 ASSERT(FileName != NULL);\r
689\r
690 if (FileName == NULL) {\r
691 return (EFI_INVALID_PARAMETER);\r
692 }\r
693\r
694 if (gEfiShellProtocol != NULL) {\r
695 if ((OpenMode & EFI_FILE_MODE_CREATE) == EFI_FILE_MODE_CREATE) {\r
696\r
697 //\r
698 // Create only a directory\r
699 //\r
700 if ((Attributes & EFI_FILE_DIRECTORY) == EFI_FILE_DIRECTORY) {\r
701 return ShellCreateDirectory(FileName, FileHandle);\r
702 }\r
703\r
704 //\r
705 // Create the directory to create the file in\r
706 //\r
707 FileNameCopy = AllocateCopyPool (StrSize (FileName), FileName);\r
708 if (FileNameCopy == NULL) {\r
709 return (EFI_OUT_OF_RESOURCES);\r
710 }\r
711 PathCleanUpDirectories (FileNameCopy);\r
712 if (PathRemoveLastItem (FileNameCopy)) {\r
713 if (!EFI_ERROR(ShellCreateDirectory (FileNameCopy, FileHandle))) {\r
714 ShellCloseFile (FileHandle);\r
715 }\r
716 }\r
717 SHELL_FREE_NON_NULL (FileNameCopy);\r
718 }\r
719\r
720 //\r
721 // Use UEFI Shell 2.0 method to create the file\r
722 //\r
723 Status = gEfiShellProtocol->OpenFileByName(FileName,\r
724 FileHandle,\r
725 OpenMode);\r
726 if (EFI_ERROR(Status)) {\r
727 return Status;\r
728 }\r
729\r
730 if (mUnicodeCollationProtocol == NULL) {\r
731 Status = gBS->LocateProtocol (&gEfiUnicodeCollation2ProtocolGuid, NULL, (VOID**)&mUnicodeCollationProtocol);\r
732 if (EFI_ERROR (Status)) {\r
733 gEfiShellProtocol->CloseFile (*FileHandle);\r
734 return Status;\r
735 }\r
736 }\r
737\r
738 if ((mUnicodeCollationProtocol->StriColl (mUnicodeCollationProtocol, (CHAR16*)FileName, L"NUL") != 0) &&\r
739 (mUnicodeCollationProtocol->StriColl (mUnicodeCollationProtocol, (CHAR16*)FileName, L"NULL") != 0) &&\r
740 !EFI_ERROR(Status) && ((OpenMode & EFI_FILE_MODE_CREATE) != 0)){\r
741 FileInfo = FileFunctionMap.GetFileInfo(*FileHandle);\r
742 ASSERT(FileInfo != NULL);\r
743 FileInfo->Attribute = Attributes;\r
744 Status2 = FileFunctionMap.SetFileInfo(*FileHandle, FileInfo);\r
745 FreePool(FileInfo);\r
746 if (EFI_ERROR (Status2)) {\r
747 gEfiShellProtocol->CloseFile(*FileHandle);\r
748 }\r
749 Status = Status2;\r
750 }\r
751 return (Status);\r
752 }\r
753 //\r
754 // Using EFI Shell version\r
755 // this means convert name to path and call that function\r
756 // since this will use EFI method again that will open it.\r
757 //\r
758 ASSERT(mEfiShellEnvironment2 != NULL);\r
759 FilePath = mEfiShellEnvironment2->NameToPath ((CHAR16*)FileName);\r
760 if (FilePath != NULL) {\r
761 return (ShellOpenFileByDevicePath(&FilePath,\r
762 &DeviceHandle,\r
763 FileHandle,\r
764 OpenMode,\r
765 Attributes));\r
766 }\r
767 return (EFI_DEVICE_ERROR);\r
768}\r
769/**\r
770 This function create a directory\r
771\r
772 If return is EFI_SUCCESS, the Filehandle is the opened directory's handle;\r
773 otherwise, the Filehandle is NULL. If the directory already existed, this\r
774 function opens the existing directory.\r
775\r
776 @param DirectoryName pointer to directory name\r
777 @param FileHandle pointer to the file handle.\r
778\r
779 @retval EFI_SUCCESS The information was set.\r
780 @retval EFI_INVALID_PARAMETER One of the parameters has an invalid value.\r
781 @retval EFI_UNSUPPORTED Could not open the file path.\r
782 @retval EFI_NOT_FOUND The specified file could not be found on the\r
783 device or the file system could not be found\r
784 on the device.\r
785 @retval EFI_NO_MEDIA The device has no medium.\r
786 @retval EFI_MEDIA_CHANGED The device has a different medium in it or the\r
787 medium is no longer supported.\r
788 @retval EFI_DEVICE_ERROR The device reported an error.\r
789 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
790 @retval EFI_WRITE_PROTECTED The file or medium is write protected.\r
791 @retval EFI_ACCESS_DENIED The file was opened read only.\r
792 @retval EFI_OUT_OF_RESOURCES Not enough resources were available to open the\r
793 file.\r
794 @retval EFI_VOLUME_FULL The volume is full.\r
795 @sa ShellOpenFileByName\r
796**/\r
797EFI_STATUS\r
798EFIAPI\r
799ShellCreateDirectory(\r
800 IN CONST CHAR16 *DirectoryName,\r
801 OUT SHELL_FILE_HANDLE *FileHandle\r
802 )\r
803{\r
804 if (gEfiShellProtocol != NULL) {\r
805 //\r
806 // Use UEFI Shell 2.0 method\r
807 //\r
808 return (gEfiShellProtocol->CreateFile(DirectoryName,\r
809 EFI_FILE_DIRECTORY,\r
810 FileHandle\r
811 ));\r
812 } else {\r
813 return (ShellOpenFileByName(DirectoryName,\r
814 FileHandle,\r
815 EFI_FILE_MODE_READ | EFI_FILE_MODE_WRITE | EFI_FILE_MODE_CREATE,\r
816 EFI_FILE_DIRECTORY\r
817 ));\r
818 }\r
819}\r
820\r
821/**\r
822 This function reads information from an opened file.\r
823\r
824 If FileHandle is not a directory, the function reads the requested number of\r
825 bytes from the file at the file's current position and returns them in Buffer.\r
826 If the read goes beyond the end of the file, the read length is truncated to the\r
827 end of the file. The file's current position is increased by the number of bytes\r
828 returned. If FileHandle is a directory, the function reads the directory entry\r
829 at the file's current position and returns the entry in Buffer. If the Buffer\r
830 is not large enough to hold the current directory entry, then\r
831 EFI_BUFFER_TOO_SMALL is returned and the current file position is not updated.\r
832 BufferSize is set to be the size of the buffer needed to read the entry. On\r
833 success, the current position is updated to the next directory entry. If there\r
834 are no more directory entries, the read returns a zero-length buffer.\r
835 EFI_FILE_INFO is the structure returned as the directory entry.\r
836\r
837 @param FileHandle the opened file handle\r
838 @param BufferSize on input the size of buffer in bytes. on return\r
839 the number of bytes written.\r
840 @param Buffer the buffer to put read data into.\r
841\r
842 @retval EFI_SUCCESS Data was read.\r
843 @retval EFI_NO_MEDIA The device has no media.\r
844 @retval EFI_DEVICE_ERROR The device reported an error.\r
845 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
846 @retval EFI_BUFFER_TO_SMALL Buffer is too small. ReadSize contains required\r
847 size.\r
848\r
849**/\r
850EFI_STATUS\r
851EFIAPI\r
852ShellReadFile(\r
853 IN SHELL_FILE_HANDLE FileHandle,\r
854 IN OUT UINTN *BufferSize,\r
855 OUT VOID *Buffer\r
856 )\r
857{\r
858 return (FileFunctionMap.ReadFile(FileHandle, BufferSize, Buffer));\r
859}\r
860\r
861\r
862/**\r
863 Write data to a file.\r
864\r
865 This function writes the specified number of bytes to the file at the current\r
866 file position. The current file position is advanced the actual number of bytes\r
867 written, which is returned in BufferSize. Partial writes only occur when there\r
868 has been a data error during the write attempt (such as "volume space full").\r
869 The file is automatically grown to hold the data if required. Direct writes to\r
870 opened directories are not supported.\r
871\r
872 @param FileHandle The opened file for writing\r
873 @param BufferSize on input the number of bytes in Buffer. On output\r
874 the number of bytes written.\r
875 @param Buffer the buffer containing data to write is stored.\r
876\r
877 @retval EFI_SUCCESS Data was written.\r
878 @retval EFI_UNSUPPORTED Writes to an open directory are not supported.\r
879 @retval EFI_NO_MEDIA The device has no media.\r
880 @retval EFI_DEVICE_ERROR The device reported an error.\r
881 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
882 @retval EFI_WRITE_PROTECTED The device is write-protected.\r
883 @retval EFI_ACCESS_DENIED The file was open for read only.\r
884 @retval EFI_VOLUME_FULL The volume is full.\r
885**/\r
886EFI_STATUS\r
887EFIAPI\r
888ShellWriteFile(\r
889 IN SHELL_FILE_HANDLE FileHandle,\r
890 IN OUT UINTN *BufferSize,\r
891 IN VOID *Buffer\r
892 )\r
893{\r
894 return (FileFunctionMap.WriteFile(FileHandle, BufferSize, Buffer));\r
895}\r
896\r
897/**\r
898 Close an open file handle.\r
899\r
900 This function closes a specified file handle. All "dirty" cached file data is\r
901 flushed to the device, and the file is closed. In all cases the handle is\r
902 closed.\r
903\r
904@param FileHandle the file handle to close.\r
905\r
906@retval EFI_SUCCESS the file handle was closed sucessfully.\r
907**/\r
908EFI_STATUS\r
909EFIAPI\r
910ShellCloseFile (\r
911 IN SHELL_FILE_HANDLE *FileHandle\r
912 )\r
913{\r
914 return (FileFunctionMap.CloseFile(*FileHandle));\r
915}\r
916\r
917/**\r
918 Delete a file and close the handle\r
919\r
920 This function closes and deletes a file. In all cases the file handle is closed.\r
921 If the file cannot be deleted, the warning code EFI_WARN_DELETE_FAILURE is\r
922 returned, but the handle is still closed.\r
923\r
924 @param FileHandle the file handle to delete\r
925\r
926 @retval EFI_SUCCESS the file was closed sucessfully\r
927 @retval EFI_WARN_DELETE_FAILURE the handle was closed, but the file was not\r
928 deleted\r
929 @retval INVALID_PARAMETER One of the parameters has an invalid value.\r
930**/\r
931EFI_STATUS\r
932EFIAPI\r
933ShellDeleteFile (\r
934 IN SHELL_FILE_HANDLE *FileHandle\r
935 )\r
936{\r
937 return (FileFunctionMap.DeleteFile(*FileHandle));\r
938}\r
939\r
940/**\r
941 Set the current position in a file.\r
942\r
943 This function sets the current file position for the handle to the position\r
944 supplied. With the exception of seeking to position 0xFFFFFFFFFFFFFFFF, only\r
945 absolute positioning is supported, and seeking past the end of the file is\r
946 allowed (a subsequent write would grow the file). Seeking to position\r
947 0xFFFFFFFFFFFFFFFF causes the current position to be set to the end of the file.\r
948 If FileHandle is a directory, the only position that may be set is zero. This\r
949 has the effect of starting the read process of the directory entries over.\r
950\r
951 @param FileHandle The file handle on which the position is being set\r
952 @param Position Byte position from begining of file\r
953\r
954 @retval EFI_SUCCESS Operation completed sucessfully.\r
955 @retval EFI_UNSUPPORTED the seek request for non-zero is not valid on\r
956 directories.\r
957 @retval INVALID_PARAMETER One of the parameters has an invalid value.\r
958**/\r
959EFI_STATUS\r
960EFIAPI\r
961ShellSetFilePosition (\r
962 IN SHELL_FILE_HANDLE FileHandle,\r
963 IN UINT64 Position\r
964 )\r
965{\r
966 return (FileFunctionMap.SetFilePosition(FileHandle, Position));\r
967}\r
968\r
969/**\r
970 Gets a file's current position\r
971\r
972 This function retrieves the current file position for the file handle. For\r
973 directories, the current file position has no meaning outside of the file\r
974 system driver and as such the operation is not supported. An error is returned\r
975 if FileHandle is a directory.\r
976\r
977 @param FileHandle The open file handle on which to get the position.\r
978 @param Position Byte position from begining of file.\r
979\r
980 @retval EFI_SUCCESS the operation completed sucessfully.\r
981 @retval INVALID_PARAMETER One of the parameters has an invalid value.\r
982 @retval EFI_UNSUPPORTED the request is not valid on directories.\r
983**/\r
984EFI_STATUS\r
985EFIAPI\r
986ShellGetFilePosition (\r
987 IN SHELL_FILE_HANDLE FileHandle,\r
988 OUT UINT64 *Position\r
989 )\r
990{\r
991 return (FileFunctionMap.GetFilePosition(FileHandle, Position));\r
992}\r
993/**\r
994 Flushes data on a file\r
995\r
996 This function flushes all modified data associated with a file to a device.\r
997\r
998 @param FileHandle The file handle on which to flush data\r
999\r
1000 @retval EFI_SUCCESS The data was flushed.\r
1001 @retval EFI_NO_MEDIA The device has no media.\r
1002 @retval EFI_DEVICE_ERROR The device reported an error.\r
1003 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
1004 @retval EFI_WRITE_PROTECTED The file or medium is write protected.\r
1005 @retval EFI_ACCESS_DENIED The file was opened for read only.\r
1006**/\r
1007EFI_STATUS\r
1008EFIAPI\r
1009ShellFlushFile (\r
1010 IN SHELL_FILE_HANDLE FileHandle\r
1011 )\r
1012{\r
1013 return (FileFunctionMap.FlushFile(FileHandle));\r
1014}\r
1015\r
1016/** Retrieve first entry from a directory.\r
1017\r
1018 This function takes an open directory handle and gets information from the\r
1019 first entry in the directory. A buffer is allocated to contain\r
1020 the information and a pointer to the buffer is returned in *Buffer. The\r
1021 caller can use ShellFindNextFile() to get subsequent directory entries.\r
1022\r
1023 The buffer will be freed by ShellFindNextFile() when the last directory\r
1024 entry is read. Otherwise, the caller must free the buffer, using FreePool,\r
1025 when finished with it.\r
1026\r
1027 @param[in] DirHandle The file handle of the directory to search.\r
1028 @param[out] Buffer The pointer to the buffer for the file's information.\r
1029\r
1030 @retval EFI_SUCCESS Found the first file.\r
1031 @retval EFI_NOT_FOUND Cannot find the directory.\r
1032 @retval EFI_NO_MEDIA The device has no media.\r
1033 @retval EFI_DEVICE_ERROR The device reported an error.\r
1034 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
1035 @return Others status of ShellGetFileInfo, ShellSetFilePosition,\r
1036 or ShellReadFile\r
1037**/\r
1038EFI_STATUS\r
1039EFIAPI\r
1040ShellFindFirstFile (\r
1041 IN SHELL_FILE_HANDLE DirHandle,\r
1042 OUT EFI_FILE_INFO **Buffer\r
1043 )\r
1044{\r
1045 //\r
1046 // pass to file handle lib\r
1047 //\r
1048 return (FileHandleFindFirstFile(DirHandle, Buffer));\r
1049}\r
1050/** Retrieve next entries from a directory.\r
1051\r
1052 To use this function, the caller must first call the ShellFindFirstFile()\r
1053 function to get the first directory entry. Subsequent directory entries are\r
1054 retrieved by using the ShellFindNextFile() function. This function can\r
1055 be called several times to get each entry from the directory. If the call of\r
1056 ShellFindNextFile() retrieved the last directory entry, the next call of\r
1057 this function will set *NoFile to TRUE and free the buffer.\r
1058\r
1059 @param[in] DirHandle The file handle of the directory.\r
1060 @param[out] Buffer The pointer to buffer for file's information.\r
1061 @param[out] NoFile The pointer to boolean when last file is found.\r
1062\r
1063 @retval EFI_SUCCESS Found the next file, or reached last file\r
1064 @retval EFI_NO_MEDIA The device has no media.\r
1065 @retval EFI_DEVICE_ERROR The device reported an error.\r
1066 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
1067**/\r
1068EFI_STATUS\r
1069EFIAPI\r
1070ShellFindNextFile(\r
1071 IN SHELL_FILE_HANDLE DirHandle,\r
1072 OUT EFI_FILE_INFO *Buffer,\r
1073 OUT BOOLEAN *NoFile\r
1074 )\r
1075{\r
1076 //\r
1077 // pass to file handle lib\r
1078 //\r
1079 return (FileHandleFindNextFile(DirHandle, Buffer, NoFile));\r
1080}\r
1081/**\r
1082 Retrieve the size of a file.\r
1083\r
1084 if FileHandle is NULL then ASSERT()\r
1085 if Size is NULL then ASSERT()\r
1086\r
1087 This function extracts the file size info from the FileHandle's EFI_FILE_INFO\r
1088 data.\r
1089\r
1090 @param FileHandle file handle from which size is retrieved\r
1091 @param Size pointer to size\r
1092\r
1093 @retval EFI_SUCCESS operation was completed sucessfully\r
1094 @retval EFI_DEVICE_ERROR cannot access the file\r
1095**/\r
1096EFI_STATUS\r
1097EFIAPI\r
1098ShellGetFileSize (\r
1099 IN SHELL_FILE_HANDLE FileHandle,\r
1100 OUT UINT64 *Size\r
1101 )\r
1102{\r
1103 return (FileFunctionMap.GetFileSize(FileHandle, Size));\r
1104}\r
1105/**\r
1106 Retrieves the status of the break execution flag\r
1107\r
1108 this function is useful to check whether the application is being asked to halt by the shell.\r
1109\r
1110 @retval TRUE the execution break is enabled\r
1111 @retval FALSE the execution break is not enabled\r
1112**/\r
1113BOOLEAN\r
1114EFIAPI\r
1115ShellGetExecutionBreakFlag(\r
1116 VOID\r
1117 )\r
1118{\r
1119 //\r
1120 // Check for UEFI Shell 2.0 protocols\r
1121 //\r
1122 if (gEfiShellProtocol != NULL) {\r
1123\r
1124 //\r
1125 // We are using UEFI Shell 2.0; see if the event has been triggered\r
1126 //\r
1127 if (gBS->CheckEvent(gEfiShellProtocol->ExecutionBreak) != EFI_SUCCESS) {\r
1128 return (FALSE);\r
1129 }\r
1130 return (TRUE);\r
1131 }\r
1132\r
1133 //\r
1134 // using EFI Shell; call the function to check\r
1135 //\r
1136 if (mEfiShellEnvironment2 != NULL) {\r
1137 return (mEfiShellEnvironment2->GetExecutionBreak());\r
1138 }\r
1139\r
1140 return (FALSE);\r
1141}\r
1142/**\r
1143 return the value of an environment variable\r
1144\r
1145 this function gets the value of the environment variable set by the\r
1146 ShellSetEnvironmentVariable function\r
1147\r
1148 @param EnvKey The key name of the environment variable.\r
1149\r
1150 @retval NULL the named environment variable does not exist.\r
1151 @return != NULL pointer to the value of the environment variable\r
1152**/\r
1153CONST CHAR16*\r
1154EFIAPI\r
1155ShellGetEnvironmentVariable (\r
1156 IN CONST CHAR16 *EnvKey\r
1157 )\r
1158{\r
1159 //\r
1160 // Check for UEFI Shell 2.0 protocols\r
1161 //\r
1162 if (gEfiShellProtocol != NULL) {\r
1163 return (gEfiShellProtocol->GetEnv(EnvKey));\r
1164 }\r
1165\r
1166 //\r
1167 // Check for EFI shell\r
1168 //\r
1169 if (mEfiShellEnvironment2 != NULL) {\r
1170 return (mEfiShellEnvironment2->GetEnv((CHAR16*)EnvKey));\r
1171 }\r
1172\r
1173 return NULL;\r
1174}\r
1175/**\r
1176 set the value of an environment variable\r
1177\r
1178This function changes the current value of the specified environment variable. If the\r
1179environment variable exists and the Value is an empty string, then the environment\r
1180variable is deleted. If the environment variable exists and the Value is not an empty\r
1181string, then the value of the environment variable is changed. If the environment\r
1182variable does not exist and the Value is an empty string, there is no action. If the\r
1183environment variable does not exist and the Value is a non-empty string, then the\r
1184environment variable is created and assigned the specified value.\r
1185\r
1186 This is not supported pre-UEFI Shell 2.0.\r
1187\r
1188 @param EnvKey The key name of the environment variable.\r
1189 @param EnvVal The Value of the environment variable\r
1190 @param Volatile Indicates whether the variable is non-volatile (FALSE) or volatile (TRUE).\r
1191\r
1192 @retval EFI_SUCCESS the operation was completed sucessfully\r
1193 @retval EFI_UNSUPPORTED This operation is not allowed in pre UEFI 2.0 Shell environments\r
1194**/\r
1195EFI_STATUS\r
1196EFIAPI\r
1197ShellSetEnvironmentVariable (\r
1198 IN CONST CHAR16 *EnvKey,\r
1199 IN CONST CHAR16 *EnvVal,\r
1200 IN BOOLEAN Volatile\r
1201 )\r
1202{\r
1203 //\r
1204 // Check for UEFI Shell 2.0 protocols\r
1205 //\r
1206 if (gEfiShellProtocol != NULL) {\r
1207 return (gEfiShellProtocol->SetEnv(EnvKey, EnvVal, Volatile));\r
1208 }\r
1209\r
1210 //\r
1211 // This feature does not exist under EFI shell\r
1212 //\r
1213 return (EFI_UNSUPPORTED);\r
1214}\r
1215\r
1216/**\r
1217 Cause the shell to parse and execute a command line.\r
1218\r
1219 This function creates a nested instance of the shell and executes the specified\r
1220 command (CommandLine) with the specified environment (Environment). Upon return,\r
1221 the status code returned by the specified command is placed in StatusCode.\r
1222 If Environment is NULL, then the current environment is used and all changes made\r
1223 by the commands executed will be reflected in the current environment. If the\r
1224 Environment is non-NULL, then the changes made will be discarded.\r
1225 The CommandLine is executed from the current working directory on the current\r
1226 device.\r
1227\r
1228 The EnvironmentVariables pararemeter is ignored in a pre-UEFI Shell 2.0\r
1229 environment. The values pointed to by the parameters will be unchanged by the\r
1230 ShellExecute() function. The Output parameter has no effect in a\r
1231 UEFI Shell 2.0 environment.\r
1232\r
1233 @param[in] ParentHandle The parent image starting the operation.\r
1234 @param[in] CommandLine The pointer to a NULL terminated command line.\r
1235 @param[in] Output True to display debug output. False to hide it.\r
1236 @param[in] EnvironmentVariables Optional pointer to array of environment variables\r
1237 in the form "x=y". If NULL, the current set is used.\r
1238 @param[out] Status The status of the run command line.\r
1239\r
1240 @retval EFI_SUCCESS The operation completed sucessfully. Status\r
1241 contains the status code returned.\r
1242 @retval EFI_INVALID_PARAMETER A parameter contains an invalid value.\r
1243 @retval EFI_OUT_OF_RESOURCES Out of resources.\r
1244 @retval EFI_UNSUPPORTED The operation is not allowed.\r
1245**/\r
1246EFI_STATUS\r
1247EFIAPI\r
1248ShellExecute (\r
1249 IN EFI_HANDLE *ParentHandle,\r
1250 IN CHAR16 *CommandLine OPTIONAL,\r
1251 IN BOOLEAN Output OPTIONAL,\r
1252 IN CHAR16 **EnvironmentVariables OPTIONAL,\r
1253 OUT EFI_STATUS *Status OPTIONAL\r
1254 )\r
1255{\r
1256 EFI_STATUS CmdStatus;\r
1257 //\r
1258 // Check for UEFI Shell 2.0 protocols\r
1259 //\r
1260 if (gEfiShellProtocol != NULL) {\r
1261 //\r
1262 // Call UEFI Shell 2.0 version (not using Output parameter)\r
1263 //\r
1264 return (gEfiShellProtocol->Execute(ParentHandle,\r
1265 CommandLine,\r
1266 EnvironmentVariables,\r
1267 Status));\r
1268 }\r
1269\r
1270 //\r
1271 // Check for EFI shell\r
1272 //\r
1273 if (mEfiShellEnvironment2 != NULL) {\r
1274 //\r
1275 // Call EFI Shell version.\r
1276 // Due to oddity in the EFI shell we want to dereference the ParentHandle here\r
1277 //\r
1278 CmdStatus = (mEfiShellEnvironment2->Execute(*ParentHandle,\r
1279 CommandLine,\r
1280 Output));\r
1281 //\r
1282 // No Status output parameter so just use the returned status\r
1283 //\r
1284 if (Status != NULL) {\r
1285 *Status = CmdStatus;\r
1286 }\r
1287 //\r
1288 // If there was an error, we can't tell if it was from the command or from\r
1289 // the Execute() function, so we'll just assume the shell ran successfully\r
1290 // and the error came from the command.\r
1291 //\r
1292 return EFI_SUCCESS;\r
1293 }\r
1294\r
1295 return (EFI_UNSUPPORTED);\r
1296}\r
1297\r
1298/**\r
1299 Retreives the current directory path\r
1300\r
1301 If the DeviceName is NULL, it returns the current device's current directory\r
1302 name. If the DeviceName is not NULL, it returns the current directory name\r
1303 on specified drive.\r
1304\r
1305 Note that the current directory string should exclude the tailing backslash character.\r
1306\r
1307 @param DeviceName the name of the drive to get directory on\r
1308\r
1309 @retval NULL the directory does not exist\r
1310 @return != NULL the directory\r
1311**/\r
1312CONST CHAR16*\r
1313EFIAPI\r
1314ShellGetCurrentDir (\r
1315 IN CHAR16 * CONST DeviceName OPTIONAL\r
1316 )\r
1317{\r
1318 //\r
1319 // Check for UEFI Shell 2.0 protocols\r
1320 //\r
1321 if (gEfiShellProtocol != NULL) {\r
1322 return (gEfiShellProtocol->GetCurDir(DeviceName));\r
1323 }\r
1324\r
1325 //\r
1326 // Check for EFI shell\r
1327 //\r
1328 if (mEfiShellEnvironment2 != NULL) {\r
1329 return (mEfiShellEnvironment2->CurDir(DeviceName));\r
1330 }\r
1331\r
1332 return (NULL);\r
1333}\r
1334/**\r
1335 sets (enabled or disabled) the page break mode\r
1336\r
1337 when page break mode is enabled the screen will stop scrolling\r
1338 and wait for operator input before scrolling a subsequent screen.\r
1339\r
1340 @param CurrentState TRUE to enable and FALSE to disable\r
1341**/\r
1342VOID\r
1343EFIAPI\r
1344ShellSetPageBreakMode (\r
1345 IN BOOLEAN CurrentState\r
1346 )\r
1347{\r
1348 //\r
1349 // check for enabling\r
1350 //\r
1351 if (CurrentState != 0x00) {\r
1352 //\r
1353 // check for UEFI Shell 2.0\r
1354 //\r
1355 if (gEfiShellProtocol != NULL) {\r
1356 //\r
1357 // Enable with UEFI 2.0 Shell\r
1358 //\r
1359 gEfiShellProtocol->EnablePageBreak();\r
1360 return;\r
1361 } else {\r
1362 //\r
1363 // Check for EFI shell\r
1364 //\r
1365 if (mEfiShellEnvironment2 != NULL) {\r
1366 //\r
1367 // Enable with EFI Shell\r
1368 //\r
1369 mEfiShellEnvironment2->EnablePageBreak (DEFAULT_INIT_ROW, DEFAULT_AUTO_LF);\r
1370 return;\r
1371 }\r
1372 }\r
1373 } else {\r
1374 //\r
1375 // check for UEFI Shell 2.0\r
1376 //\r
1377 if (gEfiShellProtocol != NULL) {\r
1378 //\r
1379 // Disable with UEFI 2.0 Shell\r
1380 //\r
1381 gEfiShellProtocol->DisablePageBreak();\r
1382 return;\r
1383 } else {\r
1384 //\r
1385 // Check for EFI shell\r
1386 //\r
1387 if (mEfiShellEnvironment2 != NULL) {\r
1388 //\r
1389 // Disable with EFI Shell\r
1390 //\r
1391 mEfiShellEnvironment2->DisablePageBreak ();\r
1392 return;\r
1393 }\r
1394 }\r
1395 }\r
1396}\r
1397\r
1398///\r
1399/// version of EFI_SHELL_FILE_INFO struct, except has no CONST pointers.\r
1400/// This allows for the struct to be populated.\r
1401///\r
1402typedef struct {\r
1403 LIST_ENTRY Link;\r
1404 EFI_STATUS Status;\r
1405 CHAR16 *FullName;\r
1406 CHAR16 *FileName;\r
1407 SHELL_FILE_HANDLE Handle;\r
1408 EFI_FILE_INFO *Info;\r
1409} EFI_SHELL_FILE_INFO_NO_CONST;\r
1410\r
1411/**\r
1412 Converts a EFI shell list of structures to the coresponding UEFI Shell 2.0 type of list.\r
1413\r
1414 if OldStyleFileList is NULL then ASSERT()\r
1415\r
1416 this function will convert a SHELL_FILE_ARG based list into a callee allocated\r
1417 EFI_SHELL_FILE_INFO based list. it is up to the caller to free the memory via\r
1418 the ShellCloseFileMetaArg function.\r
1419\r
1420 @param[in] FileList the EFI shell list type\r
1421 @param[in, out] ListHead the list to add to\r
1422\r
1423 @retval the resultant head of the double linked new format list;\r
1424**/\r
1425LIST_ENTRY*\r
1426InternalShellConvertFileListType (\r
1427 IN LIST_ENTRY *FileList,\r
1428 IN OUT LIST_ENTRY *ListHead\r
1429 )\r
1430{\r
1431 SHELL_FILE_ARG *OldInfo;\r
1432 LIST_ENTRY *Link;\r
1433 EFI_SHELL_FILE_INFO_NO_CONST *NewInfo;\r
1434\r
1435 //\r
1436 // ASSERTs\r
1437 //\r
1438 ASSERT(FileList != NULL);\r
1439 ASSERT(ListHead != NULL);\r
1440\r
1441 //\r
1442 // enumerate through each member of the old list and copy\r
1443 //\r
1444 for (Link = FileList->ForwardLink; Link != FileList; Link = Link->ForwardLink) {\r
1445 OldInfo = CR (Link, SHELL_FILE_ARG, Link, SHELL_FILE_ARG_SIGNATURE);\r
1446 ASSERT(OldInfo != NULL);\r
1447\r
1448 //\r
1449 // Skip ones that failed to open...\r
1450 //\r
1451 if (OldInfo->Status != EFI_SUCCESS) {\r
1452 continue;\r
1453 }\r
1454\r
1455 //\r
1456 // make sure the old list was valid\r
1457 //\r
1458 ASSERT(OldInfo->Info != NULL);\r
1459 ASSERT(OldInfo->FullName != NULL);\r
1460 ASSERT(OldInfo->FileName != NULL);\r
1461\r
1462 //\r
1463 // allocate a new EFI_SHELL_FILE_INFO object\r
1464 //\r
1465 NewInfo = AllocateZeroPool(sizeof(EFI_SHELL_FILE_INFO));\r
1466 if (NewInfo == NULL) {\r
1467 ShellCloseFileMetaArg((EFI_SHELL_FILE_INFO**)(&ListHead));\r
1468 ListHead = NULL;\r
1469 break;\r
1470 }\r
1471\r
1472 //\r
1473 // copy the simple items\r
1474 //\r
1475 NewInfo->Handle = OldInfo->Handle;\r
1476 NewInfo->Status = OldInfo->Status;\r
1477\r
1478 // old shell checks for 0 not NULL\r
1479 OldInfo->Handle = 0;\r
1480\r
1481 //\r
1482 // allocate new space to copy strings and structure\r
1483 //\r
1484 NewInfo->FullName = AllocateCopyPool(StrSize(OldInfo->FullName), OldInfo->FullName);\r
1485 NewInfo->FileName = AllocateCopyPool(StrSize(OldInfo->FileName), OldInfo->FileName);\r
1486 NewInfo->Info = AllocateCopyPool((UINTN)OldInfo->Info->Size, OldInfo->Info);\r
1487\r
1488 //\r
1489 // make sure all the memory allocations were sucessful\r
1490 //\r
1491 if (NULL == NewInfo->FullName || NewInfo->FileName == NULL || NewInfo->Info == NULL) {\r
1492 //\r
1493 // Free the partially allocated new node\r
1494 //\r
1495 SHELL_FREE_NON_NULL(NewInfo->FullName);\r
1496 SHELL_FREE_NON_NULL(NewInfo->FileName);\r
1497 SHELL_FREE_NON_NULL(NewInfo->Info);\r
1498 SHELL_FREE_NON_NULL(NewInfo);\r
1499\r
1500 //\r
1501 // Free the previously converted stuff\r
1502 //\r
1503 ShellCloseFileMetaArg((EFI_SHELL_FILE_INFO**)(&ListHead));\r
1504 ListHead = NULL;\r
1505 break;\r
1506 }\r
1507\r
1508 //\r
1509 // add that to the list\r
1510 //\r
1511 InsertTailList(ListHead, &NewInfo->Link);\r
1512 }\r
1513 return (ListHead);\r
1514}\r
1515/**\r
1516 Opens a group of files based on a path.\r
1517\r
1518 This function uses the Arg to open all the matching files. Each matched\r
1519 file has a SHELL_FILE_INFO structure to record the file information. These\r
1520 structures are placed on the list ListHead. Users can get the SHELL_FILE_INFO\r
1521 structures from ListHead to access each file. This function supports wildcards\r
1522 and will process '?' and '*' as such. the list must be freed with a call to\r
1523 ShellCloseFileMetaArg().\r
1524\r
1525 If you are NOT appending to an existing list *ListHead must be NULL. If\r
1526 *ListHead is NULL then it must be callee freed.\r
1527\r
1528 @param Arg pointer to path string\r
1529 @param OpenMode mode to open files with\r
1530 @param ListHead head of linked list of results\r
1531\r
1532 @retval EFI_SUCCESS the operation was sucessful and the list head\r
1533 contains the list of opened files\r
1534 @return != EFI_SUCCESS the operation failed\r
1535\r
1536 @sa InternalShellConvertFileListType\r
1537**/\r
1538EFI_STATUS\r
1539EFIAPI\r
1540ShellOpenFileMetaArg (\r
1541 IN CHAR16 *Arg,\r
1542 IN UINT64 OpenMode,\r
1543 IN OUT EFI_SHELL_FILE_INFO **ListHead\r
1544 )\r
1545{\r
1546 EFI_STATUS Status;\r
1547 LIST_ENTRY mOldStyleFileList;\r
1548 CHAR16 *CleanFilePathStr;\r
1549\r
1550 //\r
1551 // ASSERT that Arg and ListHead are not NULL\r
1552 //\r
1553 ASSERT(Arg != NULL);\r
1554 ASSERT(ListHead != NULL);\r
1555\r
1556 CleanFilePathStr = NULL;\r
1557\r
1558 Status = InternalShellStripQuotes (Arg, &CleanFilePathStr);\r
1559 if (EFI_ERROR (Status)) {\r
1560 return Status;\r
1561 }\r
1562\r
1563 //\r
1564 // Check for UEFI Shell 2.0 protocols\r
1565 //\r
1566 if (gEfiShellProtocol != NULL) {\r
1567 if (*ListHead == NULL) {\r
1568 *ListHead = (EFI_SHELL_FILE_INFO*)AllocateZeroPool(sizeof(EFI_SHELL_FILE_INFO));\r
1569 if (*ListHead == NULL) {\r
1570 FreePool(CleanFilePathStr);\r
1571 return (EFI_OUT_OF_RESOURCES);\r
1572 }\r
1573 InitializeListHead(&((*ListHead)->Link));\r
1574 }\r
1575 Status = gEfiShellProtocol->OpenFileList(CleanFilePathStr,\r
1576 OpenMode,\r
1577 ListHead);\r
1578 if (EFI_ERROR(Status)) {\r
1579 gEfiShellProtocol->RemoveDupInFileList(ListHead);\r
1580 } else {\r
1581 Status = gEfiShellProtocol->RemoveDupInFileList(ListHead);\r
1582 }\r
1583 if (*ListHead != NULL && IsListEmpty(&(*ListHead)->Link)) {\r
1584 FreePool(*ListHead);\r
1585 FreePool(CleanFilePathStr);\r
1586 *ListHead = NULL;\r
1587 return (EFI_NOT_FOUND);\r
1588 }\r
1589 FreePool(CleanFilePathStr);\r
1590 return (Status);\r
1591 }\r
1592\r
1593 //\r
1594 // Check for EFI shell\r
1595 //\r
1596 if (mEfiShellEnvironment2 != NULL) {\r
1597 //\r
1598 // make sure the list head is initialized\r
1599 //\r
1600 InitializeListHead(&mOldStyleFileList);\r
1601\r
1602 //\r
1603 // Get the EFI Shell list of files\r
1604 //\r
1605 Status = mEfiShellEnvironment2->FileMetaArg(CleanFilePathStr, &mOldStyleFileList);\r
1606 if (EFI_ERROR(Status)) {\r
1607 *ListHead = NULL;\r
1608 FreePool(CleanFilePathStr);\r
1609 return (Status);\r
1610 }\r
1611\r
1612 if (*ListHead == NULL) {\r
1613 *ListHead = (EFI_SHELL_FILE_INFO *)AllocateZeroPool(sizeof(EFI_SHELL_FILE_INFO));\r
1614 if (*ListHead == NULL) {\r
1615 FreePool(CleanFilePathStr);\r
1616 return (EFI_OUT_OF_RESOURCES);\r
1617 }\r
1618 InitializeListHead(&((*ListHead)->Link));\r
1619 }\r
1620\r
1621 //\r
1622 // Convert that to equivalent of UEFI Shell 2.0 structure\r
1623 //\r
1624 InternalShellConvertFileListType(&mOldStyleFileList, &(*ListHead)->Link);\r
1625\r
1626 //\r
1627 // Free the EFI Shell version that was converted.\r
1628 //\r
1629 mEfiShellEnvironment2->FreeFileList(&mOldStyleFileList);\r
1630\r
1631 if ((*ListHead)->Link.ForwardLink == (*ListHead)->Link.BackLink && (*ListHead)->Link.BackLink == &((*ListHead)->Link)) {\r
1632 FreePool(*ListHead);\r
1633 *ListHead = NULL;\r
1634 Status = EFI_NOT_FOUND;\r
1635 }\r
1636 FreePool(CleanFilePathStr);\r
1637 return (Status);\r
1638 }\r
1639\r
1640 FreePool(CleanFilePathStr);\r
1641 return (EFI_UNSUPPORTED);\r
1642}\r
1643/**\r
1644 Free the linked list returned from ShellOpenFileMetaArg.\r
1645\r
1646 if ListHead is NULL then ASSERT().\r
1647\r
1648 @param ListHead the pointer to free.\r
1649\r
1650 @retval EFI_SUCCESS the operation was sucessful.\r
1651**/\r
1652EFI_STATUS\r
1653EFIAPI\r
1654ShellCloseFileMetaArg (\r
1655 IN OUT EFI_SHELL_FILE_INFO **ListHead\r
1656 )\r
1657{\r
1658 LIST_ENTRY *Node;\r
1659\r
1660 //\r
1661 // ASSERT that ListHead is not NULL\r
1662 //\r
1663 ASSERT(ListHead != NULL);\r
1664\r
1665 //\r
1666 // Check for UEFI Shell 2.0 protocols\r
1667 //\r
1668 if (gEfiShellProtocol != NULL) {\r
1669 return (gEfiShellProtocol->FreeFileList(ListHead));\r
1670 } else if (mEfiShellEnvironment2 != NULL) {\r
1671 //\r
1672 // Since this is EFI Shell version we need to free our internally made copy\r
1673 // of the list\r
1674 //\r
1675 for ( Node = GetFirstNode(&(*ListHead)->Link)\r
1676 ; *ListHead != NULL && !IsListEmpty(&(*ListHead)->Link)\r
1677 ; Node = GetFirstNode(&(*ListHead)->Link)) {\r
1678 RemoveEntryList(Node);\r
1679 ((EFI_FILE_PROTOCOL*)((EFI_SHELL_FILE_INFO_NO_CONST*)Node)->Handle)->Close(((EFI_SHELL_FILE_INFO_NO_CONST*)Node)->Handle);\r
1680 FreePool(((EFI_SHELL_FILE_INFO_NO_CONST*)Node)->FullName);\r
1681 FreePool(((EFI_SHELL_FILE_INFO_NO_CONST*)Node)->FileName);\r
1682 FreePool(((EFI_SHELL_FILE_INFO_NO_CONST*)Node)->Info);\r
1683 FreePool((EFI_SHELL_FILE_INFO_NO_CONST*)Node);\r
1684 }\r
1685 SHELL_FREE_NON_NULL(*ListHead);\r
1686 return EFI_SUCCESS;\r
1687 }\r
1688\r
1689 return (EFI_UNSUPPORTED);\r
1690}\r
1691\r
1692/**\r
1693 Find a file by searching the CWD and then the path.\r
1694\r
1695 If FileName is NULL then ASSERT.\r
1696\r
1697 If the return value is not NULL then the memory must be caller freed.\r
1698\r
1699 @param FileName Filename string.\r
1700\r
1701 @retval NULL the file was not found\r
1702 @return !NULL the full path to the file.\r
1703**/\r
1704CHAR16 *\r
1705EFIAPI\r
1706ShellFindFilePath (\r
1707 IN CONST CHAR16 *FileName\r
1708 )\r
1709{\r
1710 CONST CHAR16 *Path;\r
1711 SHELL_FILE_HANDLE Handle;\r
1712 EFI_STATUS Status;\r
1713 CHAR16 *RetVal;\r
1714 CHAR16 *TestPath;\r
1715 CONST CHAR16 *Walker;\r
1716 UINTN Size;\r
1717 CHAR16 *TempChar;\r
1718\r
1719 RetVal = NULL;\r
1720\r
1721 //\r
1722 // First make sure its not an absolute path.\r
1723 //\r
1724 Status = ShellOpenFileByName(FileName, &Handle, EFI_FILE_MODE_READ, 0);\r
1725 if (!EFI_ERROR(Status)){\r
1726 if (FileHandleIsDirectory(Handle) != EFI_SUCCESS) {\r
1727 ASSERT(RetVal == NULL);\r
1728 RetVal = StrnCatGrow(&RetVal, NULL, FileName, 0);\r
1729 ShellCloseFile(&Handle);\r
1730 return (RetVal);\r
1731 } else {\r
1732 ShellCloseFile(&Handle);\r
1733 }\r
1734 }\r
1735\r
1736 Path = ShellGetEnvironmentVariable(L"cwd");\r
1737 if (Path != NULL) {\r
1738 Size = StrSize(Path) + sizeof(CHAR16);\r
1739 Size += StrSize(FileName);\r
1740 TestPath = AllocateZeroPool(Size);\r
1741 if (TestPath == NULL) {\r
1742 return (NULL);\r
1743 }\r
1744 StrCpyS(TestPath, Size/sizeof(CHAR16), Path);\r
1745 StrCatS(TestPath, Size/sizeof(CHAR16), L"\\");\r
1746 StrCatS(TestPath, Size/sizeof(CHAR16), FileName);\r
1747 Status = ShellOpenFileByName(TestPath, &Handle, EFI_FILE_MODE_READ, 0);\r
1748 if (!EFI_ERROR(Status)){\r
1749 if (FileHandleIsDirectory(Handle) != EFI_SUCCESS) {\r
1750 ASSERT(RetVal == NULL);\r
1751 RetVal = StrnCatGrow(&RetVal, NULL, TestPath, 0);\r
1752 ShellCloseFile(&Handle);\r
1753 FreePool(TestPath);\r
1754 return (RetVal);\r
1755 } else {\r
1756 ShellCloseFile(&Handle);\r
1757 }\r
1758 }\r
1759 FreePool(TestPath);\r
1760 }\r
1761 Path = ShellGetEnvironmentVariable(L"path");\r
1762 if (Path != NULL) {\r
1763 Size = StrSize(Path)+sizeof(CHAR16);\r
1764 Size += StrSize(FileName);\r
1765 TestPath = AllocateZeroPool(Size);\r
1766 if (TestPath == NULL) {\r
1767 return (NULL);\r
1768 }\r
1769 Walker = (CHAR16*)Path;\r
1770 do {\r
1771 CopyMem(TestPath, Walker, StrSize(Walker));\r
1772 if (TestPath != NULL) {\r
1773 TempChar = StrStr(TestPath, L";");\r
1774 if (TempChar != NULL) {\r
1775 *TempChar = CHAR_NULL;\r
1776 }\r
1777 if (TestPath[StrLen(TestPath)-1] != L'\\') {\r
1778 StrCatS(TestPath, Size/sizeof(CHAR16), L"\\");\r
1779 }\r
1780 if (FileName[0] == L'\\') {\r
1781 FileName++;\r
1782 }\r
1783 StrCatS(TestPath, Size/sizeof(CHAR16), FileName);\r
1784 if (StrStr(Walker, L";") != NULL) {\r
1785 Walker = StrStr(Walker, L";") + 1;\r
1786 } else {\r
1787 Walker = NULL;\r
1788 }\r
1789 Status = ShellOpenFileByName(TestPath, &Handle, EFI_FILE_MODE_READ, 0);\r
1790 if (!EFI_ERROR(Status)){\r
1791 if (FileHandleIsDirectory(Handle) != EFI_SUCCESS) {\r
1792 ASSERT(RetVal == NULL);\r
1793 RetVal = StrnCatGrow(&RetVal, NULL, TestPath, 0);\r
1794 ShellCloseFile(&Handle);\r
1795 break;\r
1796 } else {\r
1797 ShellCloseFile(&Handle);\r
1798 }\r
1799 }\r
1800 }\r
1801 } while (Walker != NULL && Walker[0] != CHAR_NULL);\r
1802 FreePool(TestPath);\r
1803 }\r
1804 return (RetVal);\r
1805}\r
1806\r
1807/**\r
1808 Find a file by searching the CWD and then the path with a variable set of file\r
1809 extensions. If the file is not found it will append each extension in the list\r
1810 in the order provided and return the first one that is successful.\r
1811\r
1812 If FileName is NULL, then ASSERT.\r
1813 If FileExtension is NULL, then behavior is identical to ShellFindFilePath.\r
1814\r
1815 If the return value is not NULL then the memory must be caller freed.\r
1816\r
1817 @param[in] FileName Filename string.\r
1818 @param[in] FileExtension Semi-colon delimeted list of possible extensions.\r
1819\r
1820 @retval NULL The file was not found.\r
1821 @retval !NULL The path to the file.\r
1822**/\r
1823CHAR16 *\r
1824EFIAPI\r
1825ShellFindFilePathEx (\r
1826 IN CONST CHAR16 *FileName,\r
1827 IN CONST CHAR16 *FileExtension\r
1828 )\r
1829{\r
1830 CHAR16 *TestPath;\r
1831 CHAR16 *RetVal;\r
1832 CONST CHAR16 *ExtensionWalker;\r
1833 UINTN Size;\r
1834 CHAR16 *TempChar;\r
1835 CHAR16 *TempChar2;\r
1836\r
1837 ASSERT(FileName != NULL);\r
1838 if (FileExtension == NULL) {\r
1839 return (ShellFindFilePath(FileName));\r
1840 }\r
1841 RetVal = ShellFindFilePath(FileName);\r
1842 if (RetVal != NULL) {\r
1843 return (RetVal);\r
1844 }\r
1845 Size = StrSize(FileName);\r
1846 Size += StrSize(FileExtension);\r
1847 TestPath = AllocateZeroPool(Size);\r
1848 if (TestPath == NULL) {\r
1849 return (NULL);\r
1850 }\r
1851 for (ExtensionWalker = FileExtension, TempChar2 = (CHAR16*)FileExtension; TempChar2 != NULL ; ExtensionWalker = TempChar2 + 1){\r
1852 StrCpyS(TestPath, Size/sizeof(CHAR16), FileName);\r
1853 if (ExtensionWalker != NULL) {\r
1854 StrCatS(TestPath, Size/sizeof(CHAR16), ExtensionWalker);\r
1855 }\r
1856 TempChar = StrStr(TestPath, L";");\r
1857 if (TempChar != NULL) {\r
1858 *TempChar = CHAR_NULL;\r
1859 }\r
1860 RetVal = ShellFindFilePath(TestPath);\r
1861 if (RetVal != NULL) {\r
1862 break;\r
1863 }\r
1864 ASSERT(ExtensionWalker != NULL);\r
1865 TempChar2 = StrStr(ExtensionWalker, L";");\r
1866 }\r
1867 FreePool(TestPath);\r
1868 return (RetVal);\r
1869}\r
1870\r
1871typedef struct {\r
1872 LIST_ENTRY Link;\r
1873 CHAR16 *Name;\r
1874 SHELL_PARAM_TYPE Type;\r
1875 CHAR16 *Value;\r
1876 UINTN OriginalPosition;\r
1877} SHELL_PARAM_PACKAGE;\r
1878\r
1879/**\r
1880 Checks the list of valid arguments and returns TRUE if the item was found. If the\r
1881 return value is TRUE then the type parameter is set also.\r
1882\r
1883 if CheckList is NULL then ASSERT();\r
1884 if Name is NULL then ASSERT();\r
1885 if Type is NULL then ASSERT();\r
1886\r
1887 @param Name pointer to Name of parameter found\r
1888 @param CheckList List to check against\r
1889 @param Type pointer to type of parameter if it was found\r
1890\r
1891 @retval TRUE the Parameter was found. Type is valid.\r
1892 @retval FALSE the Parameter was not found. Type is not valid.\r
1893**/\r
1894BOOLEAN\r
1895InternalIsOnCheckList (\r
1896 IN CONST CHAR16 *Name,\r
1897 IN CONST SHELL_PARAM_ITEM *CheckList,\r
1898 OUT SHELL_PARAM_TYPE *Type\r
1899 )\r
1900{\r
1901 SHELL_PARAM_ITEM *TempListItem;\r
1902 CHAR16 *TempString;\r
1903\r
1904 //\r
1905 // ASSERT that all 3 pointer parameters aren't NULL\r
1906 //\r
1907 ASSERT(CheckList != NULL);\r
1908 ASSERT(Type != NULL);\r
1909 ASSERT(Name != NULL);\r
1910\r
1911 //\r
1912 // question mark and page break mode are always supported\r
1913 //\r
1914 if ((StrCmp(Name, L"-?") == 0) ||\r
1915 (StrCmp(Name, L"-b") == 0)\r
1916 ) {\r
1917 *Type = TypeFlag;\r
1918 return (TRUE);\r
1919 }\r
1920\r
1921 //\r
1922 // Enumerate through the list\r
1923 //\r
1924 for (TempListItem = (SHELL_PARAM_ITEM*)CheckList ; TempListItem->Name != NULL ; TempListItem++) {\r
1925 //\r
1926 // If the Type is TypeStart only check the first characters of the passed in param\r
1927 // If it matches set the type and return TRUE\r
1928 //\r
1929 if (TempListItem->Type == TypeStart) {\r
1930 if (StrnCmp(Name, TempListItem->Name, StrLen(TempListItem->Name)) == 0) {\r
1931 *Type = TempListItem->Type;\r
1932 return (TRUE);\r
1933 }\r
1934 TempString = NULL;\r
1935 TempString = StrnCatGrow(&TempString, NULL, Name, StrLen(TempListItem->Name));\r
1936 if (TempString != NULL) {\r
1937 if (StringNoCaseCompare(&TempString, &TempListItem->Name) == 0) {\r
1938 *Type = TempListItem->Type;\r
1939 FreePool(TempString);\r
1940 return (TRUE);\r
1941 }\r
1942 FreePool(TempString);\r
1943 }\r
1944 } else if (StringNoCaseCompare(&Name, &TempListItem->Name) == 0) {\r
1945 *Type = TempListItem->Type;\r
1946 return (TRUE);\r
1947 }\r
1948 }\r
1949\r
1950 return (FALSE);\r
1951}\r
1952/**\r
1953 Checks the string for indicators of "flag" status. this is a leading '/', '-', or '+'\r
1954\r
1955 @param[in] Name pointer to Name of parameter found\r
1956 @param[in] AlwaysAllowNumbers TRUE to allow numbers, FALSE to not.\r
1957 @param[in] TimeNumbers TRUE to allow numbers with ":", FALSE otherwise.\r
1958\r
1959 @retval TRUE the Parameter is a flag.\r
1960 @retval FALSE the Parameter not a flag.\r
1961**/\r
1962BOOLEAN\r
1963InternalIsFlag (\r
1964 IN CONST CHAR16 *Name,\r
1965 IN CONST BOOLEAN AlwaysAllowNumbers,\r
1966 IN CONST BOOLEAN TimeNumbers\r
1967 )\r
1968{\r
1969 //\r
1970 // ASSERT that Name isn't NULL\r
1971 //\r
1972 ASSERT(Name != NULL);\r
1973\r
1974 //\r
1975 // If we accept numbers then dont return TRUE. (they will be values)\r
1976 //\r
1977 if (((Name[0] == L'-' || Name[0] == L'+') && InternalShellIsHexOrDecimalNumber(Name+1, FALSE, FALSE, TimeNumbers)) && AlwaysAllowNumbers) {\r
1978 return (FALSE);\r
1979 }\r
1980\r
1981 //\r
1982 // If the Name has a /, +, or - as the first character return TRUE\r
1983 //\r
1984 if ((Name[0] == L'/') ||\r
1985 (Name[0] == L'-') ||\r
1986 (Name[0] == L'+')\r
1987 ) {\r
1988 return (TRUE);\r
1989 }\r
1990 return (FALSE);\r
1991}\r
1992\r
1993/**\r
1994 Checks the command line arguments passed against the list of valid ones.\r
1995\r
1996 If no initialization is required, then return RETURN_SUCCESS.\r
1997\r
1998 @param[in] CheckList pointer to list of parameters to check\r
1999 @param[out] CheckPackage pointer to pointer to list checked values\r
2000 @param[out] ProblemParam optional pointer to pointer to unicode string for\r
2001 the paramater that caused failure. If used then the\r
2002 caller is responsible for freeing the memory.\r
2003 @param[in] AutoPageBreak will automatically set PageBreakEnabled for "b" parameter\r
2004 @param[in] Argv pointer to array of parameters\r
2005 @param[in] Argc Count of parameters in Argv\r
2006 @param[in] AlwaysAllowNumbers TRUE to allow numbers always, FALSE otherwise.\r
2007\r
2008 @retval EFI_SUCCESS The operation completed sucessfully.\r
2009 @retval EFI_OUT_OF_RESOURCES A memory allocation failed\r
2010 @retval EFI_INVALID_PARAMETER A parameter was invalid\r
2011 @retval EFI_VOLUME_CORRUPTED the command line was corrupt. an argument was\r
2012 duplicated. the duplicated command line argument\r
2013 was returned in ProblemParam if provided.\r
2014 @retval EFI_NOT_FOUND a argument required a value that was missing.\r
2015 the invalid command line argument was returned in\r
2016 ProblemParam if provided.\r
2017**/\r
2018EFI_STATUS\r
2019InternalCommandLineParse (\r
2020 IN CONST SHELL_PARAM_ITEM *CheckList,\r
2021 OUT LIST_ENTRY **CheckPackage,\r
2022 OUT CHAR16 **ProblemParam OPTIONAL,\r
2023 IN BOOLEAN AutoPageBreak,\r
2024 IN CONST CHAR16 **Argv,\r
2025 IN UINTN Argc,\r
2026 IN BOOLEAN AlwaysAllowNumbers\r
2027 )\r
2028{\r
2029 UINTN LoopCounter;\r
2030 SHELL_PARAM_TYPE CurrentItemType;\r
2031 SHELL_PARAM_PACKAGE *CurrentItemPackage;\r
2032 UINTN GetItemValue;\r
2033 UINTN ValueSize;\r
2034 UINTN Count;\r
2035 CONST CHAR16 *TempPointer;\r
2036 UINTN CurrentValueSize;\r
2037 CHAR16 *NewValue;\r
2038\r
2039 CurrentItemPackage = NULL;\r
2040 GetItemValue = 0;\r
2041 ValueSize = 0;\r
2042 Count = 0;\r
2043\r
2044 //\r
2045 // If there is only 1 item we dont need to do anything\r
2046 //\r
2047 if (Argc < 1) {\r
2048 *CheckPackage = NULL;\r
2049 return (EFI_SUCCESS);\r
2050 }\r
2051\r
2052 //\r
2053 // ASSERTs\r
2054 //\r
2055 ASSERT(CheckList != NULL);\r
2056 ASSERT(Argv != NULL);\r
2057\r
2058 //\r
2059 // initialize the linked list\r
2060 //\r
2061 *CheckPackage = (LIST_ENTRY*)AllocateZeroPool(sizeof(LIST_ENTRY));\r
2062 if (*CheckPackage == NULL) {\r
2063 return (EFI_OUT_OF_RESOURCES);\r
2064 }\r
2065\r
2066 InitializeListHead(*CheckPackage);\r
2067\r
2068 //\r
2069 // loop through each of the arguments\r
2070 //\r
2071 for (LoopCounter = 0 ; LoopCounter < Argc ; ++LoopCounter) {\r
2072 if (Argv[LoopCounter] == NULL) {\r
2073 //\r
2074 // do nothing for NULL argv\r
2075 //\r
2076 } else if (InternalIsOnCheckList(Argv[LoopCounter], CheckList, &CurrentItemType)) {\r
2077 //\r
2078 // We might have leftover if last parameter didnt have optional value\r
2079 //\r
2080 if (GetItemValue != 0) {\r
2081 GetItemValue = 0;\r
2082 InsertHeadList(*CheckPackage, &CurrentItemPackage->Link);\r
2083 }\r
2084 //\r
2085 // this is a flag\r
2086 //\r
2087 CurrentItemPackage = AllocateZeroPool(sizeof(SHELL_PARAM_PACKAGE));\r
2088 if (CurrentItemPackage == NULL) {\r
2089 ShellCommandLineFreeVarList(*CheckPackage);\r
2090 *CheckPackage = NULL;\r
2091 return (EFI_OUT_OF_RESOURCES);\r
2092 }\r
2093 CurrentItemPackage->Name = AllocateCopyPool(StrSize(Argv[LoopCounter]), Argv[LoopCounter]);\r
2094 if (CurrentItemPackage->Name == NULL) {\r
2095 ShellCommandLineFreeVarList(*CheckPackage);\r
2096 *CheckPackage = NULL;\r
2097 return (EFI_OUT_OF_RESOURCES);\r
2098 }\r
2099 CurrentItemPackage->Type = CurrentItemType;\r
2100 CurrentItemPackage->OriginalPosition = (UINTN)(-1);\r
2101 CurrentItemPackage->Value = NULL;\r
2102\r
2103 //\r
2104 // Does this flag require a value\r
2105 //\r
2106 switch (CurrentItemPackage->Type) {\r
2107 //\r
2108 // possibly trigger the next loop(s) to populate the value of this item\r
2109 //\r
2110 case TypeValue:\r
2111 case TypeTimeValue:\r
2112 GetItemValue = 1;\r
2113 ValueSize = 0;\r
2114 break;\r
2115 case TypeDoubleValue:\r
2116 GetItemValue = 2;\r
2117 ValueSize = 0;\r
2118 break;\r
2119 case TypeMaxValue:\r
2120 GetItemValue = (UINTN)(-1);\r
2121 ValueSize = 0;\r
2122 break;\r
2123 default:\r
2124 //\r
2125 // this item has no value expected; we are done\r
2126 //\r
2127 InsertHeadList(*CheckPackage, &CurrentItemPackage->Link);\r
2128 ASSERT(GetItemValue == 0);\r
2129 break;\r
2130 }\r
2131 } else if (GetItemValue != 0 && CurrentItemPackage != NULL && !InternalIsFlag(Argv[LoopCounter], AlwaysAllowNumbers, (BOOLEAN)(CurrentItemPackage->Type == TypeTimeValue))) {\r
2132 //\r
2133 // get the item VALUE for a previous flag\r
2134 //\r
2135 CurrentValueSize = ValueSize + StrSize(Argv[LoopCounter]) + sizeof(CHAR16);\r
2136 NewValue = ReallocatePool(ValueSize, CurrentValueSize, CurrentItemPackage->Value);\r
2137 if (NewValue == NULL) {\r
2138 SHELL_FREE_NON_NULL (CurrentItemPackage->Value);\r
2139 SHELL_FREE_NON_NULL (CurrentItemPackage);\r
2140 ShellCommandLineFreeVarList (*CheckPackage);\r
2141 *CheckPackage = NULL;\r
2142 return EFI_OUT_OF_RESOURCES;\r
2143 }\r
2144 CurrentItemPackage->Value = NewValue;\r
2145 if (ValueSize == 0) {\r
2146 StrCpyS( CurrentItemPackage->Value, \r
2147 CurrentValueSize/sizeof(CHAR16), \r
2148 Argv[LoopCounter]\r
2149 );\r
2150 } else {\r
2151 StrCatS( CurrentItemPackage->Value, \r
2152 CurrentValueSize/sizeof(CHAR16), \r
2153 L" "\r
2154 );\r
2155 StrCatS( CurrentItemPackage->Value, \r
2156 CurrentValueSize/sizeof(CHAR16), \r
2157 Argv[LoopCounter]\r
2158 );\r
2159 }\r
2160 ValueSize += StrSize(Argv[LoopCounter]) + sizeof(CHAR16);\r
2161 \r
2162 GetItemValue--;\r
2163 if (GetItemValue == 0) {\r
2164 InsertHeadList(*CheckPackage, &CurrentItemPackage->Link);\r
2165 }\r
2166 } else if (!InternalIsFlag(Argv[LoopCounter], AlwaysAllowNumbers, FALSE)){\r
2167 //\r
2168 // add this one as a non-flag\r
2169 //\r
2170\r
2171 TempPointer = Argv[LoopCounter];\r
2172 if ((*TempPointer == L'^' && *(TempPointer+1) == L'-')\r
2173 || (*TempPointer == L'^' && *(TempPointer+1) == L'/')\r
2174 || (*TempPointer == L'^' && *(TempPointer+1) == L'+')\r
2175 ){\r
2176 TempPointer++;\r
2177 }\r
2178 CurrentItemPackage = AllocateZeroPool(sizeof(SHELL_PARAM_PACKAGE));\r
2179 if (CurrentItemPackage == NULL) {\r
2180 ShellCommandLineFreeVarList(*CheckPackage);\r
2181 *CheckPackage = NULL;\r
2182 return (EFI_OUT_OF_RESOURCES);\r
2183 }\r
2184 CurrentItemPackage->Name = NULL;\r
2185 CurrentItemPackage->Type = TypePosition;\r
2186 CurrentItemPackage->Value = AllocateCopyPool(StrSize(TempPointer), TempPointer);\r
2187 if (CurrentItemPackage->Value == NULL) {\r
2188 ShellCommandLineFreeVarList(*CheckPackage);\r
2189 *CheckPackage = NULL;\r
2190 return (EFI_OUT_OF_RESOURCES);\r
2191 }\r
2192 CurrentItemPackage->OriginalPosition = Count++;\r
2193 InsertHeadList(*CheckPackage, &CurrentItemPackage->Link);\r
2194 } else {\r
2195 //\r
2196 // this was a non-recognised flag... error!\r
2197 //\r
2198 if (ProblemParam != NULL) {\r
2199 *ProblemParam = AllocateCopyPool(StrSize(Argv[LoopCounter]), Argv[LoopCounter]);\r
2200 }\r
2201 ShellCommandLineFreeVarList(*CheckPackage);\r
2202 *CheckPackage = NULL;\r
2203 return (EFI_VOLUME_CORRUPTED);\r
2204 }\r
2205 }\r
2206 if (GetItemValue != 0) {\r
2207 GetItemValue = 0;\r
2208 InsertHeadList(*CheckPackage, &CurrentItemPackage->Link);\r
2209 }\r
2210 //\r
2211 // support for AutoPageBreak\r
2212 //\r
2213 if (AutoPageBreak && ShellCommandLineGetFlag(*CheckPackage, L"-b")) {\r
2214 ShellSetPageBreakMode(TRUE);\r
2215 }\r
2216 return (EFI_SUCCESS);\r
2217}\r
2218\r
2219/**\r
2220 Checks the command line arguments passed against the list of valid ones.\r
2221 Optionally removes NULL values first.\r
2222\r
2223 If no initialization is required, then return RETURN_SUCCESS.\r
2224\r
2225 @param[in] CheckList The pointer to list of parameters to check.\r
2226 @param[out] CheckPackage The package of checked values.\r
2227 @param[out] ProblemParam Optional pointer to pointer to unicode string for\r
2228 the paramater that caused failure.\r
2229 @param[in] AutoPageBreak Will automatically set PageBreakEnabled.\r
2230 @param[in] AlwaysAllowNumbers Will never fail for number based flags.\r
2231\r
2232 @retval EFI_SUCCESS The operation completed sucessfully.\r
2233 @retval EFI_OUT_OF_RESOURCES A memory allocation failed.\r
2234 @retval EFI_INVALID_PARAMETER A parameter was invalid.\r
2235 @retval EFI_VOLUME_CORRUPTED The command line was corrupt.\r
2236 @retval EFI_DEVICE_ERROR The commands contained 2 opposing arguments. One\r
2237 of the command line arguments was returned in\r
2238 ProblemParam if provided.\r
2239 @retval EFI_NOT_FOUND A argument required a value that was missing.\r
2240 The invalid command line argument was returned in\r
2241 ProblemParam if provided.\r
2242**/\r
2243EFI_STATUS\r
2244EFIAPI\r
2245ShellCommandLineParseEx (\r
2246 IN CONST SHELL_PARAM_ITEM *CheckList,\r
2247 OUT LIST_ENTRY **CheckPackage,\r
2248 OUT CHAR16 **ProblemParam OPTIONAL,\r
2249 IN BOOLEAN AutoPageBreak,\r
2250 IN BOOLEAN AlwaysAllowNumbers\r
2251 )\r
2252{\r
2253 //\r
2254 // ASSERT that CheckList and CheckPackage aren't NULL\r
2255 //\r
2256 ASSERT(CheckList != NULL);\r
2257 ASSERT(CheckPackage != NULL);\r
2258\r
2259 //\r
2260 // Check for UEFI Shell 2.0 protocols\r
2261 //\r
2262 if (gEfiShellParametersProtocol != NULL) {\r
2263 return (InternalCommandLineParse(CheckList,\r
2264 CheckPackage,\r
2265 ProblemParam,\r
2266 AutoPageBreak,\r
2267 (CONST CHAR16**) gEfiShellParametersProtocol->Argv,\r
2268 gEfiShellParametersProtocol->Argc,\r
2269 AlwaysAllowNumbers));\r
2270 }\r
2271\r
2272 //\r
2273 // ASSERT That EFI Shell is not required\r
2274 //\r
2275 ASSERT (mEfiShellInterface != NULL);\r
2276 return (InternalCommandLineParse(CheckList,\r
2277 CheckPackage,\r
2278 ProblemParam,\r
2279 AutoPageBreak,\r
2280 (CONST CHAR16**) mEfiShellInterface->Argv,\r
2281 mEfiShellInterface->Argc,\r
2282 AlwaysAllowNumbers));\r
2283}\r
2284\r
2285/**\r
2286 Frees shell variable list that was returned from ShellCommandLineParse.\r
2287\r
2288 This function will free all the memory that was used for the CheckPackage\r
2289 list of postprocessed shell arguments.\r
2290\r
2291 this function has no return value.\r
2292\r
2293 if CheckPackage is NULL, then return\r
2294\r
2295 @param CheckPackage the list to de-allocate\r
2296 **/\r
2297VOID\r
2298EFIAPI\r
2299ShellCommandLineFreeVarList (\r
2300 IN LIST_ENTRY *CheckPackage\r
2301 )\r
2302{\r
2303 LIST_ENTRY *Node;\r
2304\r
2305 //\r
2306 // check for CheckPackage == NULL\r
2307 //\r
2308 if (CheckPackage == NULL) {\r
2309 return;\r
2310 }\r
2311\r
2312 //\r
2313 // for each node in the list\r
2314 //\r
2315 for ( Node = GetFirstNode(CheckPackage)\r
2316 ; !IsListEmpty(CheckPackage)\r
2317 ; Node = GetFirstNode(CheckPackage)\r
2318 ){\r
2319 //\r
2320 // Remove it from the list\r
2321 //\r
2322 RemoveEntryList(Node);\r
2323\r
2324 //\r
2325 // if it has a name free the name\r
2326 //\r
2327 if (((SHELL_PARAM_PACKAGE*)Node)->Name != NULL) {\r
2328 FreePool(((SHELL_PARAM_PACKAGE*)Node)->Name);\r
2329 }\r
2330\r
2331 //\r
2332 // if it has a value free the value\r
2333 //\r
2334 if (((SHELL_PARAM_PACKAGE*)Node)->Value != NULL) {\r
2335 FreePool(((SHELL_PARAM_PACKAGE*)Node)->Value);\r
2336 }\r
2337\r
2338 //\r
2339 // free the node structure\r
2340 //\r
2341 FreePool((SHELL_PARAM_PACKAGE*)Node);\r
2342 }\r
2343 //\r
2344 // free the list head node\r
2345 //\r
2346 FreePool(CheckPackage);\r
2347}\r
2348/**\r
2349 Checks for presence of a flag parameter\r
2350\r
2351 flag arguments are in the form of "-<Key>" or "/<Key>", but do not have a value following the key\r
2352\r
2353 if CheckPackage is NULL then return FALSE.\r
2354 if KeyString is NULL then ASSERT()\r
2355\r
2356 @param CheckPackage The package of parsed command line arguments\r
2357 @param KeyString the Key of the command line argument to check for\r
2358\r
2359 @retval TRUE the flag is on the command line\r
2360 @retval FALSE the flag is not on the command line\r
2361 **/\r
2362BOOLEAN\r
2363EFIAPI\r
2364ShellCommandLineGetFlag (\r
2365 IN CONST LIST_ENTRY * CONST CheckPackage,\r
2366 IN CONST CHAR16 * CONST KeyString\r
2367 )\r
2368{\r
2369 LIST_ENTRY *Node;\r
2370 CHAR16 *TempString;\r
2371\r
2372 //\r
2373 // return FALSE for no package or KeyString is NULL\r
2374 //\r
2375 if (CheckPackage == NULL || KeyString == NULL) {\r
2376 return (FALSE);\r
2377 }\r
2378\r
2379 //\r
2380 // enumerate through the list of parametrs\r
2381 //\r
2382 for ( Node = GetFirstNode(CheckPackage)\r
2383 ; !IsNull (CheckPackage, Node)\r
2384 ; Node = GetNextNode(CheckPackage, Node)\r
2385 ){\r
2386 //\r
2387 // If the Name matches, return TRUE (and there may be NULL name)\r
2388 //\r
2389 if (((SHELL_PARAM_PACKAGE*)Node)->Name != NULL) {\r
2390 //\r
2391 // If Type is TypeStart then only compare the begining of the strings\r
2392 //\r
2393 if (((SHELL_PARAM_PACKAGE*)Node)->Type == TypeStart) {\r
2394 if (StrnCmp(KeyString, ((SHELL_PARAM_PACKAGE*)Node)->Name, StrLen(KeyString)) == 0) {\r
2395 return (TRUE);\r
2396 }\r
2397 TempString = NULL;\r
2398 TempString = StrnCatGrow(&TempString, NULL, KeyString, StrLen(((SHELL_PARAM_PACKAGE*)Node)->Name));\r
2399 if (TempString != NULL) {\r
2400 if (StringNoCaseCompare(&KeyString, &((SHELL_PARAM_PACKAGE*)Node)->Name) == 0) {\r
2401 FreePool(TempString);\r
2402 return (TRUE);\r
2403 }\r
2404 FreePool(TempString);\r
2405 }\r
2406 } else if (StringNoCaseCompare(&KeyString, &((SHELL_PARAM_PACKAGE*)Node)->Name) == 0) {\r
2407 return (TRUE);\r
2408 }\r
2409 }\r
2410 }\r
2411 return (FALSE);\r
2412}\r
2413/**\r
2414 Returns value from command line argument.\r
2415\r
2416 Value parameters are in the form of "-<Key> value" or "/<Key> value".\r
2417\r
2418 If CheckPackage is NULL, then return NULL.\r
2419\r
2420 @param[in] CheckPackage The package of parsed command line arguments.\r
2421 @param[in] KeyString The Key of the command line argument to check for.\r
2422\r
2423 @retval NULL The flag is not on the command line.\r
2424 @retval !=NULL The pointer to unicode string of the value.\r
2425**/\r
2426CONST CHAR16*\r
2427EFIAPI\r
2428ShellCommandLineGetValue (\r
2429 IN CONST LIST_ENTRY *CheckPackage,\r
2430 IN CHAR16 *KeyString\r
2431 )\r
2432{\r
2433 LIST_ENTRY *Node;\r
2434 CHAR16 *TempString;\r
2435\r
2436 //\r
2437 // return NULL for no package or KeyString is NULL\r
2438 //\r
2439 if (CheckPackage == NULL || KeyString == NULL) {\r
2440 return (NULL);\r
2441 }\r
2442\r
2443 //\r
2444 // enumerate through the list of parametrs\r
2445 //\r
2446 for ( Node = GetFirstNode(CheckPackage)\r
2447 ; !IsNull (CheckPackage, Node)\r
2448 ; Node = GetNextNode(CheckPackage, Node)\r
2449 ){\r
2450 //\r
2451 // If the Name matches, return TRUE (and there may be NULL name)\r
2452 //\r
2453 if (((SHELL_PARAM_PACKAGE*)Node)->Name != NULL) {\r
2454 //\r
2455 // If Type is TypeStart then only compare the begining of the strings\r
2456 //\r
2457 if (((SHELL_PARAM_PACKAGE*)Node)->Type == TypeStart) {\r
2458 if (StrnCmp(KeyString, ((SHELL_PARAM_PACKAGE*)Node)->Name, StrLen(KeyString)) == 0) {\r
2459 return (((SHELL_PARAM_PACKAGE*)Node)->Name + StrLen(KeyString));\r
2460 }\r
2461 TempString = NULL;\r
2462 TempString = StrnCatGrow(&TempString, NULL, KeyString, StrLen(((SHELL_PARAM_PACKAGE*)Node)->Name));\r
2463 if (TempString != NULL) {\r
2464 if (StringNoCaseCompare(&KeyString, &((SHELL_PARAM_PACKAGE*)Node)->Name) == 0) {\r
2465 FreePool(TempString);\r
2466 return (((SHELL_PARAM_PACKAGE*)Node)->Name + StrLen(KeyString));\r
2467 }\r
2468 FreePool(TempString);\r
2469 }\r
2470 } else if (StringNoCaseCompare(&KeyString, &((SHELL_PARAM_PACKAGE*)Node)->Name) == 0) {\r
2471 return (((SHELL_PARAM_PACKAGE*)Node)->Value);\r
2472 }\r
2473 }\r
2474 }\r
2475 return (NULL);\r
2476}\r
2477\r
2478/**\r
2479 Returns raw value from command line argument.\r
2480\r
2481 Raw value parameters are in the form of "value" in a specific position in the list.\r
2482\r
2483 If CheckPackage is NULL, then return NULL.\r
2484\r
2485 @param[in] CheckPackage The package of parsed command line arguments.\r
2486 @param[in] Position The position of the value.\r
2487\r
2488 @retval NULL The flag is not on the command line.\r
2489 @retval !=NULL The pointer to unicode string of the value.\r
2490 **/\r
2491CONST CHAR16*\r
2492EFIAPI\r
2493ShellCommandLineGetRawValue (\r
2494 IN CONST LIST_ENTRY * CONST CheckPackage,\r
2495 IN UINTN Position\r
2496 )\r
2497{\r
2498 LIST_ENTRY *Node;\r
2499\r
2500 //\r
2501 // check for CheckPackage == NULL\r
2502 //\r
2503 if (CheckPackage == NULL) {\r
2504 return (NULL);\r
2505 }\r
2506\r
2507 //\r
2508 // enumerate through the list of parametrs\r
2509 //\r
2510 for ( Node = GetFirstNode(CheckPackage)\r
2511 ; !IsNull (CheckPackage, Node)\r
2512 ; Node = GetNextNode(CheckPackage, Node)\r
2513 ){\r
2514 //\r
2515 // If the position matches, return the value\r
2516 //\r
2517 if (((SHELL_PARAM_PACKAGE*)Node)->OriginalPosition == Position) {\r
2518 return (((SHELL_PARAM_PACKAGE*)Node)->Value);\r
2519 }\r
2520 }\r
2521 return (NULL);\r
2522}\r
2523\r
2524/**\r
2525 returns the number of command line value parameters that were parsed.\r
2526\r
2527 this will not include flags.\r
2528\r
2529 @param[in] CheckPackage The package of parsed command line arguments.\r
2530\r
2531 @retval (UINTN)-1 No parsing has ocurred\r
2532 @return other The number of value parameters found\r
2533**/\r
2534UINTN\r
2535EFIAPI\r
2536ShellCommandLineGetCount(\r
2537 IN CONST LIST_ENTRY *CheckPackage\r
2538 )\r
2539{\r
2540 LIST_ENTRY *Node1;\r
2541 UINTN Count;\r
2542\r
2543 if (CheckPackage == NULL) {\r
2544 return (0);\r
2545 }\r
2546 for ( Node1 = GetFirstNode(CheckPackage), Count = 0\r
2547 ; !IsNull (CheckPackage, Node1)\r
2548 ; Node1 = GetNextNode(CheckPackage, Node1)\r
2549 ){\r
2550 if (((SHELL_PARAM_PACKAGE*)Node1)->Name == NULL) {\r
2551 Count++;\r
2552 }\r
2553 }\r
2554 return (Count);\r
2555}\r
2556\r
2557/**\r
2558 Determines if a parameter is duplicated.\r
2559\r
2560 If Param is not NULL then it will point to a callee allocated string buffer\r
2561 with the parameter value if a duplicate is found.\r
2562\r
2563 If CheckPackage is NULL, then ASSERT.\r
2564\r
2565 @param[in] CheckPackage The package of parsed command line arguments.\r
2566 @param[out] Param Upon finding one, a pointer to the duplicated parameter.\r
2567\r
2568 @retval EFI_SUCCESS No parameters were duplicated.\r
2569 @retval EFI_DEVICE_ERROR A duplicate was found.\r
2570 **/\r
2571EFI_STATUS\r
2572EFIAPI\r
2573ShellCommandLineCheckDuplicate (\r
2574 IN CONST LIST_ENTRY *CheckPackage,\r
2575 OUT CHAR16 **Param\r
2576 )\r
2577{\r
2578 LIST_ENTRY *Node1;\r
2579 LIST_ENTRY *Node2;\r
2580\r
2581 ASSERT(CheckPackage != NULL);\r
2582\r
2583 for ( Node1 = GetFirstNode(CheckPackage)\r
2584 ; !IsNull (CheckPackage, Node1)\r
2585 ; Node1 = GetNextNode(CheckPackage, Node1)\r
2586 ){\r
2587 for ( Node2 = GetNextNode(CheckPackage, Node1)\r
2588 ; !IsNull (CheckPackage, Node2)\r
2589 ; Node2 = GetNextNode(CheckPackage, Node2)\r
2590 ){\r
2591 if ((((SHELL_PARAM_PACKAGE*)Node1)->Name != NULL) && (((SHELL_PARAM_PACKAGE*)Node2)->Name != NULL) && StrCmp(((SHELL_PARAM_PACKAGE*)Node1)->Name, ((SHELL_PARAM_PACKAGE*)Node2)->Name) == 0) {\r
2592 if (Param != NULL) {\r
2593 *Param = NULL;\r
2594 *Param = StrnCatGrow(Param, NULL, ((SHELL_PARAM_PACKAGE*)Node1)->Name, 0);\r
2595 }\r
2596 return (EFI_DEVICE_ERROR);\r
2597 }\r
2598 }\r
2599 }\r
2600 return (EFI_SUCCESS);\r
2601}\r
2602\r
2603/**\r
2604 This is a find and replace function. Upon successful return the NewString is a copy of\r
2605 SourceString with each instance of FindTarget replaced with ReplaceWith.\r
2606\r
2607 If SourceString and NewString overlap the behavior is undefined.\r
2608\r
2609 If the string would grow bigger than NewSize it will halt and return error.\r
2610\r
2611 @param[in] SourceString The string with source buffer.\r
2612 @param[in, out] NewString The string with resultant buffer.\r
2613 @param[in] NewSize The size in bytes of NewString.\r
2614 @param[in] FindTarget The string to look for.\r
2615 @param[in] ReplaceWith The string to replace FindTarget with.\r
2616 @param[in] SkipPreCarrot If TRUE will skip a FindTarget that has a '^'\r
2617 immediately before it.\r
2618 @param[in] ParameterReplacing If TRUE will add "" around items with spaces.\r
2619\r
2620 @retval EFI_INVALID_PARAMETER SourceString was NULL.\r
2621 @retval EFI_INVALID_PARAMETER NewString was NULL.\r
2622 @retval EFI_INVALID_PARAMETER FindTarget was NULL.\r
2623 @retval EFI_INVALID_PARAMETER ReplaceWith was NULL.\r
2624 @retval EFI_INVALID_PARAMETER FindTarget had length < 1.\r
2625 @retval EFI_INVALID_PARAMETER SourceString had length < 1.\r
2626 @retval EFI_BUFFER_TOO_SMALL NewSize was less than the minimum size to hold\r
2627 the new string (truncation occurred).\r
2628 @retval EFI_SUCCESS The string was successfully copied with replacement.\r
2629**/\r
2630EFI_STATUS\r
2631EFIAPI\r
2632ShellCopySearchAndReplace(\r
2633 IN CHAR16 CONST *SourceString,\r
2634 IN OUT CHAR16 *NewString,\r
2635 IN UINTN NewSize,\r
2636 IN CONST CHAR16 *FindTarget,\r
2637 IN CONST CHAR16 *ReplaceWith,\r
2638 IN CONST BOOLEAN SkipPreCarrot,\r
2639 IN CONST BOOLEAN ParameterReplacing\r
2640 )\r
2641{\r
2642 UINTN Size;\r
2643 CHAR16 *Replace;\r
2644\r
2645 if ( (SourceString == NULL)\r
2646 || (NewString == NULL)\r
2647 || (FindTarget == NULL)\r
2648 || (ReplaceWith == NULL)\r
2649 || (StrLen(FindTarget) < 1)\r
2650 || (StrLen(SourceString) < 1)\r
2651 ){\r
2652 return (EFI_INVALID_PARAMETER);\r
2653 }\r
2654 Replace = NULL;\r
2655 if (StrStr(ReplaceWith, L" ") == NULL || !ParameterReplacing) {\r
2656 Replace = StrnCatGrow(&Replace, NULL, ReplaceWith, 0);\r
2657 } else {\r
2658 Replace = AllocateZeroPool(StrSize(ReplaceWith) + 2*sizeof(CHAR16));\r
2659 if (Replace != NULL) {\r
2660 UnicodeSPrint(Replace, StrSize(ReplaceWith) + 2*sizeof(CHAR16), L"\"%s\"", ReplaceWith);\r
2661 }\r
2662 }\r
2663 if (Replace == NULL) {\r
2664 return (EFI_OUT_OF_RESOURCES);\r
2665 }\r
2666 NewString = ZeroMem(NewString, NewSize);\r
2667 while (*SourceString != CHAR_NULL) {\r
2668 //\r
2669 // if we find the FindTarget and either Skip == FALSE or Skip and we\r
2670 // dont have a carrot do a replace...\r
2671 //\r
2672 if (StrnCmp(SourceString, FindTarget, StrLen(FindTarget)) == 0\r
2673 && ((SkipPreCarrot && *(SourceString-1) != L'^') || !SkipPreCarrot)\r
2674 ){\r
2675 SourceString += StrLen(FindTarget);\r
2676 Size = StrSize(NewString);\r
2677 if ((Size + (StrLen(Replace)*sizeof(CHAR16))) > NewSize) {\r
2678 FreePool(Replace);\r
2679 return (EFI_BUFFER_TOO_SMALL);\r
2680 }\r
2681 StrCatS(NewString, NewSize/sizeof(CHAR16), Replace);\r
2682 } else {\r
2683 Size = StrSize(NewString);\r
2684 if (Size + sizeof(CHAR16) > NewSize) {\r
2685 FreePool(Replace);\r
2686 return (EFI_BUFFER_TOO_SMALL);\r
2687 }\r
2688 StrnCatS(NewString, NewSize/sizeof(CHAR16), SourceString, 1);\r
2689 SourceString++;\r
2690 }\r
2691 }\r
2692 FreePool(Replace);\r
2693 return (EFI_SUCCESS);\r
2694}\r
2695\r
2696/**\r
2697 Internal worker function to output a string.\r
2698\r
2699 This function will output a string to the correct StdOut.\r
2700\r
2701 @param[in] String The string to print out.\r
2702\r
2703 @retval EFI_SUCCESS The operation was sucessful.\r
2704 @retval !EFI_SUCCESS The operation failed.\r
2705**/\r
2706EFI_STATUS\r
2707InternalPrintTo (\r
2708 IN CONST CHAR16 *String\r
2709 )\r
2710{\r
2711 UINTN Size;\r
2712 Size = StrSize(String) - sizeof(CHAR16);\r
2713 if (Size == 0) {\r
2714 return (EFI_SUCCESS);\r
2715 }\r
2716 if (gEfiShellParametersProtocol != NULL) {\r
2717 return (gEfiShellProtocol->WriteFile(gEfiShellParametersProtocol->StdOut, &Size, (VOID*)String));\r
2718 }\r
2719 if (mEfiShellInterface != NULL) {\r
2720 if (mEfiShellInterface->RedirArgc == 0) { \r
2721 //\r
2722 // Divide in half for old shell. Must be string length not size.\r
2723 // \r
2724 Size /=2; // Divide in half only when no redirection.\r
2725 }\r
2726 return (mEfiShellInterface->StdOut->Write(mEfiShellInterface->StdOut, &Size, (VOID*)String));\r
2727 }\r
2728 ASSERT(FALSE);\r
2729 return (EFI_UNSUPPORTED);\r
2730}\r
2731\r
2732/**\r
2733 Print at a specific location on the screen.\r
2734\r
2735 This function will move the cursor to a given screen location and print the specified string\r
2736\r
2737 If -1 is specified for either the Row or Col the current screen location for BOTH\r
2738 will be used.\r
2739\r
2740 if either Row or Col is out of range for the current console, then ASSERT\r
2741 if Format is NULL, then ASSERT\r
2742\r
2743 In addition to the standard %-based flags as supported by UefiLib Print() this supports\r
2744 the following additional flags:\r
2745 %N - Set output attribute to normal\r
2746 %H - Set output attribute to highlight\r
2747 %E - Set output attribute to error\r
2748 %B - Set output attribute to blue color\r
2749 %V - Set output attribute to green color\r
2750\r
2751 Note: The background color is controlled by the shell command cls.\r
2752\r
2753 @param[in] Col the column to print at\r
2754 @param[in] Row the row to print at\r
2755 @param[in] Format the format string\r
2756 @param[in] Marker the marker for the variable argument list\r
2757\r
2758 @return EFI_SUCCESS The operation was successful.\r
2759 @return EFI_DEVICE_ERROR The console device reported an error.\r
2760**/\r
2761EFI_STATUS\r
2762InternalShellPrintWorker(\r
2763 IN INT32 Col OPTIONAL,\r
2764 IN INT32 Row OPTIONAL,\r
2765 IN CONST CHAR16 *Format,\r
2766 IN VA_LIST Marker\r
2767 )\r
2768{\r
2769 EFI_STATUS Status;\r
2770 CHAR16 *ResumeLocation;\r
2771 CHAR16 *FormatWalker;\r
2772 UINTN OriginalAttribute;\r
2773 CHAR16 *mPostReplaceFormat;\r
2774 CHAR16 *mPostReplaceFormat2;\r
2775\r
2776 mPostReplaceFormat = AllocateZeroPool (PcdGet16 (PcdShellPrintBufferSize));\r
2777 mPostReplaceFormat2 = AllocateZeroPool (PcdGet16 (PcdShellPrintBufferSize));\r
2778\r
2779 if (mPostReplaceFormat == NULL || mPostReplaceFormat2 == NULL) {\r
2780 SHELL_FREE_NON_NULL(mPostReplaceFormat);\r
2781 SHELL_FREE_NON_NULL(mPostReplaceFormat2);\r
2782 return (EFI_OUT_OF_RESOURCES);\r
2783 }\r
2784\r
2785 Status = EFI_SUCCESS;\r
2786 OriginalAttribute = gST->ConOut->Mode->Attribute;\r
2787\r
2788 //\r
2789 // Back and forth each time fixing up 1 of our flags...\r
2790 //\r
2791 Status = ShellCopySearchAndReplace(Format, mPostReplaceFormat, PcdGet16 (PcdShellPrintBufferSize), L"%N", L"%%N", FALSE, FALSE);\r
2792 ASSERT_EFI_ERROR(Status);\r
2793 Status = ShellCopySearchAndReplace(mPostReplaceFormat, mPostReplaceFormat2, PcdGet16 (PcdShellPrintBufferSize), L"%E", L"%%E", FALSE, FALSE);\r
2794 ASSERT_EFI_ERROR(Status);\r
2795 Status = ShellCopySearchAndReplace(mPostReplaceFormat2, mPostReplaceFormat, PcdGet16 (PcdShellPrintBufferSize), L"%H", L"%%H", FALSE, FALSE);\r
2796 ASSERT_EFI_ERROR(Status);\r
2797 Status = ShellCopySearchAndReplace(mPostReplaceFormat, mPostReplaceFormat2, PcdGet16 (PcdShellPrintBufferSize), L"%B", L"%%B", FALSE, FALSE);\r
2798 ASSERT_EFI_ERROR(Status);\r
2799 Status = ShellCopySearchAndReplace(mPostReplaceFormat2, mPostReplaceFormat, PcdGet16 (PcdShellPrintBufferSize), L"%V", L"%%V", FALSE, FALSE);\r
2800 ASSERT_EFI_ERROR(Status);\r
2801\r
2802 //\r
2803 // Use the last buffer from replacing to print from...\r
2804 //\r
2805 UnicodeVSPrint (mPostReplaceFormat2, PcdGet16 (PcdShellPrintBufferSize), mPostReplaceFormat, Marker);\r
2806\r
2807 if (Col != -1 && Row != -1) {\r
2808 Status = gST->ConOut->SetCursorPosition(gST->ConOut, Col, Row);\r
2809 }\r
2810\r
2811 FormatWalker = mPostReplaceFormat2;\r
2812 while (*FormatWalker != CHAR_NULL) {\r
2813 //\r
2814 // Find the next attribute change request\r
2815 //\r
2816 ResumeLocation = StrStr(FormatWalker, L"%");\r
2817 if (ResumeLocation != NULL) {\r
2818 *ResumeLocation = CHAR_NULL;\r
2819 }\r
2820 //\r
2821 // print the current FormatWalker string\r
2822 //\r
2823 if (StrLen(FormatWalker)>0) {\r
2824 Status = InternalPrintTo(FormatWalker);\r
2825 if (EFI_ERROR(Status)) {\r
2826 break;\r
2827 }\r
2828 }\r
2829\r
2830 //\r
2831 // update the attribute\r
2832 //\r
2833 if (ResumeLocation != NULL) {\r
2834 if ((ResumeLocation != mPostReplaceFormat2) && (*(ResumeLocation-1) == L'^')) {\r
2835 //\r
2836 // Move cursor back 1 position to overwrite the ^\r
2837 //\r
2838 gST->ConOut->SetCursorPosition(gST->ConOut, gST->ConOut->Mode->CursorColumn - 1, gST->ConOut->Mode->CursorRow);\r
2839\r
2840 //\r
2841 // Print a simple '%' symbol\r
2842 //\r
2843 Status = InternalPrintTo(L"%");\r
2844 ResumeLocation = ResumeLocation - 1;\r
2845 } else {\r
2846 switch (*(ResumeLocation+1)) {\r
2847 case (L'N'):\r
2848 gST->ConOut->SetAttribute(gST->ConOut, OriginalAttribute);\r
2849 break;\r
2850 case (L'E'):\r
2851 gST->ConOut->SetAttribute(gST->ConOut, EFI_TEXT_ATTR(EFI_YELLOW, ((OriginalAttribute&(BIT4|BIT5|BIT6))>>4)));\r
2852 break;\r
2853 case (L'H'):\r
2854 gST->ConOut->SetAttribute(gST->ConOut, EFI_TEXT_ATTR(EFI_WHITE, ((OriginalAttribute&(BIT4|BIT5|BIT6))>>4)));\r
2855 break;\r
2856 case (L'B'):\r
2857 gST->ConOut->SetAttribute(gST->ConOut, EFI_TEXT_ATTR(EFI_LIGHTBLUE, ((OriginalAttribute&(BIT4|BIT5|BIT6))>>4)));\r
2858 break;\r
2859 case (L'V'):\r
2860 gST->ConOut->SetAttribute(gST->ConOut, EFI_TEXT_ATTR(EFI_LIGHTGREEN, ((OriginalAttribute&(BIT4|BIT5|BIT6))>>4)));\r
2861 break;\r
2862 default:\r
2863 //\r
2864 // Print a simple '%' symbol\r
2865 //\r
2866 Status = InternalPrintTo(L"%");\r
2867 if (EFI_ERROR(Status)) {\r
2868 break;\r
2869 }\r
2870 ResumeLocation = ResumeLocation - 1;\r
2871 break;\r
2872 }\r
2873 }\r
2874 } else {\r
2875 //\r
2876 // reset to normal now...\r
2877 //\r
2878 break;\r
2879 }\r
2880\r
2881 //\r
2882 // update FormatWalker to Resume + 2 (skip the % and the indicator)\r
2883 //\r
2884 FormatWalker = ResumeLocation + 2;\r
2885 }\r
2886\r
2887 gST->ConOut->SetAttribute(gST->ConOut, OriginalAttribute);\r
2888\r
2889 SHELL_FREE_NON_NULL(mPostReplaceFormat);\r
2890 SHELL_FREE_NON_NULL(mPostReplaceFormat2);\r
2891 return (Status);\r
2892}\r
2893\r
2894/**\r
2895 Print at a specific location on the screen.\r
2896\r
2897 This function will move the cursor to a given screen location and print the specified string.\r
2898\r
2899 If -1 is specified for either the Row or Col the current screen location for BOTH\r
2900 will be used.\r
2901\r
2902 If either Row or Col is out of range for the current console, then ASSERT.\r
2903 If Format is NULL, then ASSERT.\r
2904\r
2905 In addition to the standard %-based flags as supported by UefiLib Print() this supports\r
2906 the following additional flags:\r
2907 %N - Set output attribute to normal\r
2908 %H - Set output attribute to highlight\r
2909 %E - Set output attribute to error\r
2910 %B - Set output attribute to blue color\r
2911 %V - Set output attribute to green color\r
2912\r
2913 Note: The background color is controlled by the shell command cls.\r
2914\r
2915 @param[in] Col the column to print at\r
2916 @param[in] Row the row to print at\r
2917 @param[in] Format the format string\r
2918 @param[in] ... The variable argument list.\r
2919\r
2920 @return EFI_SUCCESS The printing was successful.\r
2921 @return EFI_DEVICE_ERROR The console device reported an error.\r
2922**/\r
2923EFI_STATUS\r
2924EFIAPI\r
2925ShellPrintEx(\r
2926 IN INT32 Col OPTIONAL,\r
2927 IN INT32 Row OPTIONAL,\r
2928 IN CONST CHAR16 *Format,\r
2929 ...\r
2930 )\r
2931{\r
2932 VA_LIST Marker;\r
2933 EFI_STATUS RetVal;\r
2934 if (Format == NULL) {\r
2935 return (EFI_INVALID_PARAMETER);\r
2936 }\r
2937 VA_START (Marker, Format);\r
2938 RetVal = InternalShellPrintWorker(Col, Row, Format, Marker);\r
2939 VA_END(Marker);\r
2940 return(RetVal);\r
2941}\r
2942\r
2943/**\r
2944 Print at a specific location on the screen.\r
2945\r
2946 This function will move the cursor to a given screen location and print the specified string.\r
2947\r
2948 If -1 is specified for either the Row or Col the current screen location for BOTH\r
2949 will be used.\r
2950\r
2951 If either Row or Col is out of range for the current console, then ASSERT.\r
2952 If Format is NULL, then ASSERT.\r
2953\r
2954 In addition to the standard %-based flags as supported by UefiLib Print() this supports\r
2955 the following additional flags:\r
2956 %N - Set output attribute to normal.\r
2957 %H - Set output attribute to highlight.\r
2958 %E - Set output attribute to error.\r
2959 %B - Set output attribute to blue color.\r
2960 %V - Set output attribute to green color.\r
2961\r
2962 Note: The background color is controlled by the shell command cls.\r
2963\r
2964 @param[in] Col The column to print at.\r
2965 @param[in] Row The row to print at.\r
2966 @param[in] Language The language of the string to retrieve. If this parameter\r
2967 is NULL, then the current platform language is used.\r
2968 @param[in] HiiFormatStringId The format string Id for getting from Hii.\r
2969 @param[in] HiiFormatHandle The format string Handle for getting from Hii.\r
2970 @param[in] ... The variable argument list.\r
2971\r
2972 @return EFI_SUCCESS The printing was successful.\r
2973 @return EFI_DEVICE_ERROR The console device reported an error.\r
2974**/\r
2975EFI_STATUS\r
2976EFIAPI\r
2977ShellPrintHiiEx(\r
2978 IN INT32 Col OPTIONAL,\r
2979 IN INT32 Row OPTIONAL,\r
2980 IN CONST CHAR8 *Language OPTIONAL,\r
2981 IN CONST EFI_STRING_ID HiiFormatStringId,\r
2982 IN CONST EFI_HANDLE HiiFormatHandle,\r
2983 ...\r
2984 )\r
2985{\r
2986 VA_LIST Marker;\r
2987 CHAR16 *HiiFormatString;\r
2988 EFI_STATUS RetVal;\r
2989\r
2990 RetVal = EFI_DEVICE_ERROR;\r
2991\r
2992 VA_START (Marker, HiiFormatHandle);\r
2993 HiiFormatString = HiiGetString(HiiFormatHandle, HiiFormatStringId, Language);\r
2994 if (HiiFormatString != NULL) {\r
2995 RetVal = InternalShellPrintWorker (Col, Row, HiiFormatString, Marker);\r
2996 SHELL_FREE_NON_NULL (HiiFormatString);\r
2997 }\r
2998 VA_END(Marker);\r
2999\r
3000 return (RetVal);\r
3001}\r
3002\r
3003/**\r
3004 Function to determine if a given filename represents a file or a directory.\r
3005\r
3006 @param[in] DirName Path to directory to test.\r
3007\r
3008 @retval EFI_SUCCESS The Path represents a directory\r
3009 @retval EFI_NOT_FOUND The Path does not represent a directory\r
3010 @retval EFI_OUT_OF_RESOURCES A memory allocation failed.\r
3011 @return The path failed to open\r
3012**/\r
3013EFI_STATUS\r
3014EFIAPI\r
3015ShellIsDirectory(\r
3016 IN CONST CHAR16 *DirName\r
3017 )\r
3018{\r
3019 EFI_STATUS Status;\r
3020 SHELL_FILE_HANDLE Handle;\r
3021 CHAR16 *TempLocation;\r
3022 CHAR16 *TempLocation2;\r
3023\r
3024 ASSERT(DirName != NULL);\r
3025\r
3026 Handle = NULL;\r
3027 TempLocation = NULL;\r
3028\r
3029 Status = ShellOpenFileByName(DirName, &Handle, EFI_FILE_MODE_READ, 0);\r
3030 if (EFI_ERROR(Status)) {\r
3031 //\r
3032 // try good logic first.\r
3033 //\r
3034 if (gEfiShellProtocol != NULL) {\r
3035 TempLocation = StrnCatGrow(&TempLocation, NULL, DirName, 0);\r
3036 if (TempLocation == NULL) {\r
3037 ShellCloseFile(&Handle);\r
3038 return (EFI_OUT_OF_RESOURCES);\r
3039 }\r
3040 TempLocation2 = StrStr(TempLocation, L":");\r
3041 if (TempLocation2 != NULL && StrLen(StrStr(TempLocation, L":")) == 2) {\r
3042 *(TempLocation2+1) = CHAR_NULL;\r
3043 }\r
3044 if (gEfiShellProtocol->GetDevicePathFromMap(TempLocation) != NULL) {\r
3045 FreePool(TempLocation);\r
3046 return (EFI_SUCCESS);\r
3047 }\r
3048 FreePool(TempLocation);\r
3049 } else {\r
3050 //\r
3051 // probably a map name?!?!!?\r
3052 //\r
3053 TempLocation = StrStr(DirName, L"\\");\r
3054 if (TempLocation != NULL && *(TempLocation+1) == CHAR_NULL) {\r
3055 return (EFI_SUCCESS);\r
3056 }\r
3057 }\r
3058 return (Status);\r
3059 }\r
3060\r
3061 if (FileHandleIsDirectory(Handle) == EFI_SUCCESS) {\r
3062 ShellCloseFile(&Handle);\r
3063 return (EFI_SUCCESS);\r
3064 }\r
3065 ShellCloseFile(&Handle);\r
3066 return (EFI_NOT_FOUND);\r
3067}\r
3068\r
3069/**\r
3070 Function to determine if a given filename represents a file.\r
3071\r
3072 @param[in] Name Path to file to test.\r
3073\r
3074 @retval EFI_SUCCESS The Path represents a file.\r
3075 @retval EFI_NOT_FOUND The Path does not represent a file.\r
3076 @retval other The path failed to open.\r
3077**/\r
3078EFI_STATUS\r
3079EFIAPI\r
3080ShellIsFile(\r
3081 IN CONST CHAR16 *Name\r
3082 )\r
3083{\r
3084 EFI_STATUS Status;\r
3085 SHELL_FILE_HANDLE Handle;\r
3086\r
3087 ASSERT(Name != NULL);\r
3088\r
3089 Handle = NULL;\r
3090\r
3091 Status = ShellOpenFileByName(Name, &Handle, EFI_FILE_MODE_READ, 0);\r
3092 if (EFI_ERROR(Status)) {\r
3093 return (Status);\r
3094 }\r
3095\r
3096 if (FileHandleIsDirectory(Handle) != EFI_SUCCESS) {\r
3097 ShellCloseFile(&Handle);\r
3098 return (EFI_SUCCESS);\r
3099 }\r
3100 ShellCloseFile(&Handle);\r
3101 return (EFI_NOT_FOUND);\r
3102}\r
3103\r
3104/**\r
3105 Function to determine if a given filename represents a file.\r
3106\r
3107 This will search the CWD and then the Path.\r
3108\r
3109 If Name is NULL, then ASSERT.\r
3110\r
3111 @param[in] Name Path to file to test.\r
3112\r
3113 @retval EFI_SUCCESS The Path represents a file.\r
3114 @retval EFI_NOT_FOUND The Path does not represent a file.\r
3115 @retval other The path failed to open.\r
3116**/\r
3117EFI_STATUS\r
3118EFIAPI\r
3119ShellIsFileInPath(\r
3120 IN CONST CHAR16 *Name\r
3121 )\r
3122{\r
3123 CHAR16 *NewName;\r
3124 EFI_STATUS Status;\r
3125\r
3126 if (!EFI_ERROR(ShellIsFile(Name))) {\r
3127 return (EFI_SUCCESS);\r
3128 }\r
3129\r
3130 NewName = ShellFindFilePath(Name);\r
3131 if (NewName == NULL) {\r
3132 return (EFI_NOT_FOUND);\r
3133 }\r
3134 Status = ShellIsFile(NewName);\r
3135 FreePool(NewName);\r
3136 return (Status);\r
3137}\r
3138\r
3139/**\r
3140 Function return the number converted from a hex representation of a number.\r
3141\r
3142 Note: this function cannot be used when (UINTN)(-1), (0xFFFFFFFF) may be a valid\r
3143 result. Use ShellConvertStringToUint64 instead.\r
3144\r
3145 @param[in] String String representation of a number.\r
3146\r
3147 @return The unsigned integer result of the conversion.\r
3148 @retval (UINTN)(-1) An error occured.\r
3149**/\r
3150UINTN\r
3151EFIAPI\r
3152ShellHexStrToUintn(\r
3153 IN CONST CHAR16 *String\r
3154 )\r
3155{\r
3156 UINT64 RetVal;\r
3157\r
3158 if (!EFI_ERROR(ShellConvertStringToUint64(String, &RetVal, TRUE, TRUE))) {\r
3159 return ((UINTN)RetVal);\r
3160 }\r
3161 \r
3162 return ((UINTN)(-1));\r
3163}\r
3164\r
3165/**\r
3166 Function to determine whether a string is decimal or hex representation of a number\r
3167 and return the number converted from the string. Spaces are always skipped.\r
3168\r
3169 @param[in] String String representation of a number\r
3170\r
3171 @return the number\r
3172 @retval (UINTN)(-1) An error ocurred.\r
3173**/\r
3174UINTN\r
3175EFIAPI\r
3176ShellStrToUintn(\r
3177 IN CONST CHAR16 *String\r
3178 )\r
3179{\r
3180 UINT64 RetVal;\r
3181 BOOLEAN Hex;\r
3182\r
3183 Hex = FALSE;\r
3184\r
3185 if (!InternalShellIsHexOrDecimalNumber(String, Hex, TRUE, FALSE)) {\r
3186 Hex = TRUE;\r
3187 }\r
3188\r
3189 if (!EFI_ERROR(ShellConvertStringToUint64(String, &RetVal, Hex, TRUE))) {\r
3190 return ((UINTN)RetVal);\r
3191 }\r
3192 return ((UINTN)(-1));\r
3193}\r
3194\r
3195/**\r
3196 Safely append with automatic string resizing given length of Destination and\r
3197 desired length of copy from Source.\r
3198\r
3199 append the first D characters of Source to the end of Destination, where D is\r
3200 the lesser of Count and the StrLen() of Source. If appending those D characters\r
3201 will fit within Destination (whose Size is given as CurrentSize) and\r
3202 still leave room for a NULL terminator, then those characters are appended,\r
3203 starting at the original terminating NULL of Destination, and a new terminating\r
3204 NULL is appended.\r
3205\r
3206 If appending D characters onto Destination will result in a overflow of the size\r
3207 given in CurrentSize the string will be grown such that the copy can be performed\r
3208 and CurrentSize will be updated to the new size.\r
3209\r
3210 If Source is NULL, there is nothing to append, just return the current buffer in\r
3211 Destination.\r
3212\r
3213 if Destination is NULL, then ASSERT()\r
3214 if Destination's current length (including NULL terminator) is already more then\r
3215 CurrentSize, then ASSERT()\r
3216\r
3217 @param[in, out] Destination The String to append onto\r
3218 @param[in, out] CurrentSize on call the number of bytes in Destination. On\r
3219 return possibly the new size (still in bytes). if NULL\r
3220 then allocate whatever is needed.\r
3221 @param[in] Source The String to append from\r
3222 @param[in] Count Maximum number of characters to append. if 0 then\r
3223 all are appended.\r
3224\r
3225 @return Destination return the resultant string.\r
3226**/\r
3227CHAR16*\r
3228EFIAPI\r
3229StrnCatGrow (\r
3230 IN OUT CHAR16 **Destination,\r
3231 IN OUT UINTN *CurrentSize,\r
3232 IN CONST CHAR16 *Source,\r
3233 IN UINTN Count\r
3234 )\r
3235{\r
3236 UINTN DestinationStartSize;\r
3237 UINTN NewSize;\r
3238\r
3239 //\r
3240 // ASSERTs\r
3241 //\r
3242 ASSERT(Destination != NULL);\r
3243\r
3244 //\r
3245 // If there's nothing to do then just return Destination\r
3246 //\r
3247 if (Source == NULL) {\r
3248 return (*Destination);\r
3249 }\r
3250\r
3251 //\r
3252 // allow for un-initialized pointers, based on size being 0\r
3253 //\r
3254 if (CurrentSize != NULL && *CurrentSize == 0) {\r
3255 *Destination = NULL;\r
3256 }\r
3257\r
3258 //\r
3259 // allow for NULL pointers address as Destination\r
3260 //\r
3261 if (*Destination != NULL) {\r
3262 ASSERT(CurrentSize != 0);\r
3263 DestinationStartSize = StrSize(*Destination);\r
3264 ASSERT(DestinationStartSize <= *CurrentSize);\r
3265 } else {\r
3266 DestinationStartSize = 0;\r
3267// ASSERT(*CurrentSize == 0);\r
3268 }\r
3269\r
3270 //\r
3271 // Append all of Source?\r
3272 //\r
3273 if (Count == 0) {\r
3274 Count = StrLen(Source);\r
3275 }\r
3276\r
3277 //\r
3278 // Test and grow if required\r
3279 //\r
3280 if (CurrentSize != NULL) {\r
3281 NewSize = *CurrentSize;\r
3282 if (NewSize < DestinationStartSize + (Count * sizeof(CHAR16))) {\r
3283 while (NewSize < (DestinationStartSize + (Count*sizeof(CHAR16)))) {\r
3284 NewSize += 2 * Count * sizeof(CHAR16);\r
3285 }\r
3286 *Destination = ReallocatePool(*CurrentSize, NewSize, *Destination);\r
3287 *CurrentSize = NewSize;\r
3288 }\r
3289 } else {\r
3290 NewSize = (Count+1)*sizeof(CHAR16);\r
3291 *Destination = AllocateZeroPool(NewSize);\r
3292 }\r
3293\r
3294 //\r
3295 // Now use standard StrnCat on a big enough buffer\r
3296 //\r
3297 if (*Destination == NULL) {\r
3298 return (NULL);\r
3299 }\r
3300 \r
3301 StrnCatS(*Destination, NewSize/sizeof(CHAR16), Source, Count);\r
3302 return *Destination;\r
3303}\r
3304\r
3305/**\r
3306 Prompt the user and return the resultant answer to the requestor.\r
3307\r
3308 This function will display the requested question on the shell prompt and then\r
3309 wait for an appropriate answer to be input from the console.\r
3310\r
3311 if the SHELL_PROMPT_REQUEST_TYPE is SHELL_PROMPT_REQUEST_TYPE_YESNO, ShellPromptResponseTypeQuitContinue\r
3312 or SHELL_PROMPT_REQUEST_TYPE_YESNOCANCEL then *Response is of type SHELL_PROMPT_RESPONSE.\r
3313\r
3314 if the SHELL_PROMPT_REQUEST_TYPE is ShellPromptResponseTypeFreeform then *Response is of type\r
3315 CHAR16*.\r
3316\r
3317 In either case *Response must be callee freed if Response was not NULL;\r
3318\r
3319 @param Type What type of question is asked. This is used to filter the input\r
3320 to prevent invalid answers to question.\r
3321 @param Prompt Pointer to string prompt to use to request input.\r
3322 @param Response Pointer to Response which will be populated upon return.\r
3323\r
3324 @retval EFI_SUCCESS The operation was sucessful.\r
3325 @retval EFI_UNSUPPORTED The operation is not supported as requested.\r
3326 @retval EFI_INVALID_PARAMETER A parameter was invalid.\r
3327 @return other The operation failed.\r
3328**/\r
3329EFI_STATUS\r
3330EFIAPI\r
3331ShellPromptForResponse (\r
3332 IN SHELL_PROMPT_REQUEST_TYPE Type,\r
3333 IN CHAR16 *Prompt OPTIONAL,\r
3334 IN OUT VOID **Response OPTIONAL\r
3335 )\r
3336{\r
3337 EFI_STATUS Status;\r
3338 EFI_INPUT_KEY Key;\r
3339 UINTN EventIndex;\r
3340 SHELL_PROMPT_RESPONSE *Resp;\r
3341 UINTN Size;\r
3342 CHAR16 *Buffer;\r
3343\r
3344 Status = EFI_UNSUPPORTED;\r
3345 Resp = NULL;\r
3346 Buffer = NULL;\r
3347 Size = 0;\r
3348 if (Type != ShellPromptResponseTypeFreeform) {\r
3349 Resp = (SHELL_PROMPT_RESPONSE*)AllocateZeroPool(sizeof(SHELL_PROMPT_RESPONSE));\r
3350 if (Resp == NULL) {\r
3351 return (EFI_OUT_OF_RESOURCES);\r
3352 }\r
3353 }\r
3354\r
3355 switch(Type) {\r
3356 case ShellPromptResponseTypeQuitContinue:\r
3357 if (Prompt != NULL) {\r
3358 ShellPrintEx(-1, -1, L"%s", Prompt);\r
3359 }\r
3360 //\r
3361 // wait for valid response\r
3362 //\r
3363 gBS->WaitForEvent (1, &gST->ConIn->WaitForKey, &EventIndex);\r
3364 Status = gST->ConIn->ReadKeyStroke (gST->ConIn, &Key);\r
3365 if (EFI_ERROR(Status)) {\r
3366 break;\r
3367 }\r
3368 ShellPrintEx(-1, -1, L"%c", Key.UnicodeChar);\r
3369 if (Key.UnicodeChar == L'Q' || Key.UnicodeChar ==L'q') {\r
3370 *Resp = ShellPromptResponseQuit;\r
3371 } else {\r
3372 *Resp = ShellPromptResponseContinue;\r
3373 }\r
3374 break;\r
3375 case ShellPromptResponseTypeYesNoCancel:\r
3376 if (Prompt != NULL) {\r
3377 ShellPrintEx(-1, -1, L"%s", Prompt);\r
3378 }\r
3379 //\r
3380 // wait for valid response\r
3381 //\r
3382 *Resp = ShellPromptResponseMax;\r
3383 while (*Resp == ShellPromptResponseMax) {\r
3384 if (ShellGetExecutionBreakFlag()) {\r
3385 Status = EFI_ABORTED;\r
3386 break;\r
3387 }\r
3388 gBS->WaitForEvent (1, &gST->ConIn->WaitForKey, &EventIndex);\r
3389 Status = gST->ConIn->ReadKeyStroke (gST->ConIn, &Key);\r
3390 if (EFI_ERROR(Status)) {\r
3391 break;\r
3392 }\r
3393 ShellPrintEx(-1, -1, L"%c", Key.UnicodeChar);\r
3394 switch (Key.UnicodeChar) {\r
3395 case L'Y':\r
3396 case L'y':\r
3397 *Resp = ShellPromptResponseYes;\r
3398 break;\r
3399 case L'N':\r
3400 case L'n':\r
3401 *Resp = ShellPromptResponseNo;\r
3402 break;\r
3403 case L'C':\r
3404 case L'c':\r
3405 *Resp = ShellPromptResponseCancel;\r
3406 break;\r
3407 }\r
3408 }\r
3409 break;\r
3410 case ShellPromptResponseTypeYesNoAllCancel:\r
3411 if (Prompt != NULL) {\r
3412 ShellPrintEx(-1, -1, L"%s", Prompt);\r
3413 }\r
3414 //\r
3415 // wait for valid response\r
3416 //\r
3417 *Resp = ShellPromptResponseMax;\r
3418 while (*Resp == ShellPromptResponseMax) {\r
3419 if (ShellGetExecutionBreakFlag()) {\r
3420 Status = EFI_ABORTED;\r
3421 break;\r
3422 }\r
3423 gBS->WaitForEvent (1, &gST->ConIn->WaitForKey, &EventIndex);\r
3424 Status = gST->ConIn->ReadKeyStroke (gST->ConIn, &Key);\r
3425 if (EFI_ERROR(Status)) {\r
3426 break;\r
3427 }\r
3428\r
3429 if (Key.UnicodeChar <= 127 && Key.UnicodeChar >= 32) {\r
3430 ShellPrintEx (-1, -1, L"%c", Key.UnicodeChar);\r
3431 }\r
3432\r
3433 switch (Key.UnicodeChar) {\r
3434 case L'Y':\r
3435 case L'y':\r
3436 *Resp = ShellPromptResponseYes;\r
3437 break;\r
3438 case L'N':\r
3439 case L'n':\r
3440 *Resp = ShellPromptResponseNo;\r
3441 break;\r
3442 case L'A':\r
3443 case L'a':\r
3444 *Resp = ShellPromptResponseAll;\r
3445 break;\r
3446 case L'C':\r
3447 case L'c':\r
3448 *Resp = ShellPromptResponseCancel;\r
3449 break;\r
3450 }\r
3451 }\r
3452 break;\r
3453 case ShellPromptResponseTypeEnterContinue:\r
3454 case ShellPromptResponseTypeAnyKeyContinue:\r
3455 if (Prompt != NULL) {\r
3456 ShellPrintEx(-1, -1, L"%s", Prompt);\r
3457 }\r
3458 //\r
3459 // wait for valid response\r
3460 //\r
3461 *Resp = ShellPromptResponseMax;\r
3462 while (*Resp == ShellPromptResponseMax) {\r
3463 if (ShellGetExecutionBreakFlag()) {\r
3464 Status = EFI_ABORTED;\r
3465 break;\r
3466 }\r
3467 gBS->WaitForEvent (1, &gST->ConIn->WaitForKey, &EventIndex);\r
3468 if (Type == ShellPromptResponseTypeEnterContinue) {\r
3469 Status = gST->ConIn->ReadKeyStroke (gST->ConIn, &Key);\r
3470 if (EFI_ERROR(Status)) {\r
3471 break;\r
3472 }\r
3473 ShellPrintEx(-1, -1, L"%c", Key.UnicodeChar);\r
3474 if (Key.UnicodeChar == CHAR_CARRIAGE_RETURN) {\r
3475 *Resp = ShellPromptResponseContinue;\r
3476 break;\r
3477 }\r
3478 }\r
3479 if (Type == ShellPromptResponseTypeAnyKeyContinue) {\r
3480 Status = gST->ConIn->ReadKeyStroke (gST->ConIn, &Key);\r
3481 ASSERT_EFI_ERROR(Status);\r
3482 *Resp = ShellPromptResponseContinue;\r
3483 break;\r
3484 }\r
3485 }\r
3486 break;\r
3487 case ShellPromptResponseTypeYesNo:\r
3488 if (Prompt != NULL) {\r
3489 ShellPrintEx(-1, -1, L"%s", Prompt);\r
3490 }\r
3491 //\r
3492 // wait for valid response\r
3493 //\r
3494 *Resp = ShellPromptResponseMax;\r
3495 while (*Resp == ShellPromptResponseMax) {\r
3496 if (ShellGetExecutionBreakFlag()) {\r
3497 Status = EFI_ABORTED;\r
3498 break;\r
3499 }\r
3500 gBS->WaitForEvent (1, &gST->ConIn->WaitForKey, &EventIndex);\r
3501 Status = gST->ConIn->ReadKeyStroke (gST->ConIn, &Key);\r
3502 if (EFI_ERROR(Status)) {\r
3503 break;\r
3504 }\r
3505 ShellPrintEx(-1, -1, L"%c", Key.UnicodeChar);\r
3506 switch (Key.UnicodeChar) {\r
3507 case L'Y':\r
3508 case L'y':\r
3509 *Resp = ShellPromptResponseYes;\r
3510 break;\r
3511 case L'N':\r
3512 case L'n':\r
3513 *Resp = ShellPromptResponseNo;\r
3514 break;\r
3515 }\r
3516 }\r
3517 break;\r
3518 case ShellPromptResponseTypeFreeform:\r
3519 if (Prompt != NULL) {\r
3520 ShellPrintEx(-1, -1, L"%s", Prompt);\r
3521 }\r
3522 while(1) {\r
3523 if (ShellGetExecutionBreakFlag()) {\r
3524 Status = EFI_ABORTED;\r
3525 break;\r
3526 }\r
3527 gBS->WaitForEvent (1, &gST->ConIn->WaitForKey, &EventIndex);\r
3528 Status = gST->ConIn->ReadKeyStroke (gST->ConIn, &Key);\r
3529 if (EFI_ERROR(Status)) {\r
3530 break;\r
3531 }\r
3532 ShellPrintEx(-1, -1, L"%c", Key.UnicodeChar);\r
3533 if (Key.UnicodeChar == CHAR_CARRIAGE_RETURN) {\r
3534 break;\r
3535 }\r
3536 ASSERT((Buffer == NULL && Size == 0) || (Buffer != NULL));\r
3537 StrnCatGrow(&Buffer, &Size, &Key.UnicodeChar, 1);\r
3538 }\r
3539 break;\r
3540 //\r
3541 // This is the location to add new prompt types.\r
3542 // If your new type loops remember to add ExecutionBreak support.\r
3543 //\r
3544 default:\r
3545 ASSERT(FALSE);\r
3546 }\r
3547\r
3548 if (Response != NULL) {\r
3549 if (Resp != NULL) {\r
3550 *Response = Resp;\r
3551 } else if (Buffer != NULL) {\r
3552 *Response = Buffer;\r
3553 }\r
3554 } else {\r
3555 if (Resp != NULL) {\r
3556 FreePool(Resp);\r
3557 }\r
3558 if (Buffer != NULL) {\r
3559 FreePool(Buffer);\r
3560 }\r
3561 }\r
3562\r
3563 ShellPrintEx(-1, -1, L"\r\n");\r
3564 return (Status);\r
3565}\r
3566\r
3567/**\r
3568 Prompt the user and return the resultant answer to the requestor.\r
3569\r
3570 This function is the same as ShellPromptForResponse, except that the prompt is\r
3571 automatically pulled from HII.\r
3572\r
3573 @param Type What type of question is asked. This is used to filter the input\r
3574 to prevent invalid answers to question.\r
3575 @param[in] HiiFormatStringId The format string Id for getting from Hii.\r
3576 @param[in] HiiFormatHandle The format string Handle for getting from Hii.\r
3577 @param Response Pointer to Response which will be populated upon return.\r
3578\r
3579 @retval EFI_SUCCESS the operation was sucessful.\r
3580 @return other the operation failed.\r
3581\r
3582 @sa ShellPromptForResponse\r
3583**/\r
3584EFI_STATUS\r
3585EFIAPI\r
3586ShellPromptForResponseHii (\r
3587 IN SHELL_PROMPT_REQUEST_TYPE Type,\r
3588 IN CONST EFI_STRING_ID HiiFormatStringId,\r
3589 IN CONST EFI_HANDLE HiiFormatHandle,\r
3590 IN OUT VOID **Response\r
3591 )\r
3592{\r
3593 CHAR16 *Prompt;\r
3594 EFI_STATUS Status;\r
3595\r
3596 Prompt = HiiGetString(HiiFormatHandle, HiiFormatStringId, NULL);\r
3597 Status = ShellPromptForResponse(Type, Prompt, Response);\r
3598 FreePool(Prompt);\r
3599 return (Status);\r
3600}\r
3601\r
3602/**\r
3603 Function to determin if an entire string is a valid number.\r
3604\r
3605 If Hex it must be preceeded with a 0x or has ForceHex, set TRUE.\r
3606\r
3607 @param[in] String The string to evaluate.\r
3608 @param[in] ForceHex TRUE - always assume hex.\r
3609 @param[in] StopAtSpace TRUE to halt upon finding a space, FALSE to keep going.\r
3610 @param[in] TimeNumbers TRUE to allow numbers with ":", FALSE otherwise.\r
3611\r
3612 @retval TRUE It is all numeric (dec/hex) characters.\r
3613 @retval FALSE There is a non-numeric character.\r
3614**/\r
3615BOOLEAN\r
3616InternalShellIsHexOrDecimalNumber (\r
3617 IN CONST CHAR16 *String,\r
3618 IN CONST BOOLEAN ForceHex,\r
3619 IN CONST BOOLEAN StopAtSpace,\r
3620 IN CONST BOOLEAN TimeNumbers\r
3621 )\r
3622{\r
3623 BOOLEAN Hex;\r
3624\r
3625 //\r
3626 // chop off a single negative sign\r
3627 //\r
3628 if (String != NULL && *String == L'-') {\r
3629 String++;\r
3630 }\r
3631\r
3632 if (String == NULL) {\r
3633 return (FALSE);\r
3634 }\r
3635\r
3636 //\r
3637 // chop leading zeroes\r
3638 //\r
3639 while(String != NULL && *String == L'0'){\r
3640 String++;\r
3641 }\r
3642 //\r
3643 // allow '0x' or '0X', but not 'x' or 'X'\r
3644 //\r
3645 if (String != NULL && (*String == L'x' || *String == L'X')) {\r
3646 if (*(String-1) != L'0') {\r
3647 //\r
3648 // we got an x without a preceeding 0\r
3649 //\r
3650 return (FALSE);\r
3651 }\r
3652 String++;\r
3653 Hex = TRUE;\r
3654 } else if (ForceHex) {\r
3655 Hex = TRUE;\r
3656 } else {\r
3657 Hex = FALSE;\r
3658 }\r
3659\r
3660 //\r
3661 // loop through the remaining characters and use the lib function\r
3662 //\r
3663 for ( ; String != NULL && *String != CHAR_NULL && !(StopAtSpace && *String == L' ') ; String++){\r
3664 if (TimeNumbers && (String[0] == L':')) {\r
3665 continue;\r
3666 }\r
3667 if (Hex) {\r
3668 if (!ShellIsHexaDecimalDigitCharacter(*String)) {\r
3669 return (FALSE);\r
3670 }\r
3671 } else {\r
3672 if (!ShellIsDecimalDigitCharacter(*String)) {\r
3673 return (FALSE);\r
3674 }\r
3675 }\r
3676 }\r
3677\r
3678 return (TRUE);\r
3679}\r
3680\r
3681/**\r
3682 Function to determine if a given filename exists.\r
3683\r
3684 @param[in] Name Path to test.\r
3685\r
3686 @retval EFI_SUCCESS The Path represents a file.\r
3687 @retval EFI_NOT_FOUND The Path does not represent a file.\r
3688 @retval other The path failed to open.\r
3689**/\r
3690EFI_STATUS\r
3691EFIAPI\r
3692ShellFileExists(\r
3693 IN CONST CHAR16 *Name\r
3694 )\r
3695{\r
3696 EFI_STATUS Status;\r
3697 EFI_SHELL_FILE_INFO *List;\r
3698\r
3699 ASSERT(Name != NULL);\r
3700\r
3701 List = NULL;\r
3702 Status = ShellOpenFileMetaArg((CHAR16*)Name, EFI_FILE_MODE_READ, &List);\r
3703 if (EFI_ERROR(Status)) {\r
3704 return (Status);\r
3705 }\r
3706\r
3707 ShellCloseFileMetaArg(&List);\r
3708\r
3709 return (EFI_SUCCESS);\r
3710}\r
3711\r
3712/**\r
3713 Convert a Unicode character to upper case only if\r
3714 it maps to a valid small-case ASCII character.\r
3715\r
3716 This internal function only deal with Unicode character\r
3717 which maps to a valid small-case ASCII character, i.e.\r
3718 L'a' to L'z'. For other Unicode character, the input character\r
3719 is returned directly.\r
3720\r
3721 @param Char The character to convert.\r
3722\r
3723 @retval LowerCharacter If the Char is with range L'a' to L'z'.\r
3724 @retval Unchanged Otherwise.\r
3725\r
3726**/\r
3727CHAR16\r
3728InternalShellCharToUpper (\r
3729 IN CHAR16 Char\r
3730 )\r
3731{\r
3732 if (Char >= L'a' && Char <= L'z') {\r
3733 return (CHAR16) (Char - (L'a' - L'A'));\r
3734 }\r
3735\r
3736 return Char;\r
3737}\r
3738\r
3739/**\r
3740 Convert a Unicode character to numerical value.\r
3741\r
3742 This internal function only deal with Unicode character\r
3743 which maps to a valid hexadecimal ASII character, i.e.\r
3744 L'0' to L'9', L'a' to L'f' or L'A' to L'F'. For other\r
3745 Unicode character, the value returned does not make sense.\r
3746\r
3747 @param Char The character to convert.\r
3748\r
3749 @return The numerical value converted.\r
3750\r
3751**/\r
3752UINTN\r
3753InternalShellHexCharToUintn (\r
3754 IN CHAR16 Char\r
3755 )\r
3756{\r
3757 if (ShellIsDecimalDigitCharacter (Char)) {\r
3758 return Char - L'0';\r
3759 }\r
3760\r
3761 return (10 + InternalShellCharToUpper (Char) - L'A');\r
3762}\r
3763\r
3764/**\r
3765 Convert a Null-terminated Unicode hexadecimal string to a value of type UINT64.\r
3766\r
3767 This function returns a value of type UINT64 by interpreting the contents\r
3768 of the Unicode string specified by String as a hexadecimal number.\r
3769 The format of the input Unicode string String is:\r
3770\r
3771 [spaces][zeros][x][hexadecimal digits].\r
3772\r
3773 The valid hexadecimal digit character is in the range [0-9], [a-f] and [A-F].\r
3774 The prefix "0x" is optional. Both "x" and "X" is allowed in "0x" prefix.\r
3775 If "x" appears in the input string, it must be prefixed with at least one 0.\r
3776 The function will ignore the pad space, which includes spaces or tab characters,\r
3777 before [zeros], [x] or [hexadecimal digit]. The running zero before [x] or\r
3778 [hexadecimal digit] will be ignored. Then, the decoding starts after [x] or the\r
3779 first valid hexadecimal digit. Then, the function stops at the first character that is\r
3780 a not a valid hexadecimal character or NULL, whichever one comes first.\r
3781\r
3782 If String has only pad spaces, then zero is returned.\r
3783 If String has no leading pad spaces, leading zeros or valid hexadecimal digits,\r
3784 then zero is returned.\r
3785\r
3786 @param[in] String A pointer to a Null-terminated Unicode string.\r
3787 @param[out] Value Upon a successful return the value of the conversion.\r
3788 @param[in] StopAtSpace FALSE to skip spaces.\r
3789\r
3790 @retval EFI_SUCCESS The conversion was successful.\r
3791 @retval EFI_INVALID_PARAMETER A parameter was NULL or invalid.\r
3792 @retval EFI_DEVICE_ERROR An overflow occured.\r
3793**/\r
3794EFI_STATUS\r
3795InternalShellStrHexToUint64 (\r
3796 IN CONST CHAR16 *String,\r
3797 OUT UINT64 *Value,\r
3798 IN CONST BOOLEAN StopAtSpace\r
3799 )\r
3800{\r
3801 UINT64 Result;\r
3802\r
3803 if (String == NULL || StrSize(String) == 0 || Value == NULL) {\r
3804 return (EFI_INVALID_PARAMETER);\r
3805 }\r
3806\r
3807 //\r
3808 // Ignore the pad spaces (space or tab)\r
3809 //\r
3810 while ((*String == L' ') || (*String == L'\t')) {\r
3811 String++;\r
3812 }\r
3813\r
3814 //\r
3815 // Ignore leading Zeros after the spaces\r
3816 //\r
3817 while (*String == L'0') {\r
3818 String++;\r
3819 }\r
3820\r
3821 if (InternalShellCharToUpper (*String) == L'X') {\r
3822 if (*(String - 1) != L'0') {\r
3823 return 0;\r
3824 }\r
3825 //\r
3826 // Skip the 'X'\r
3827 //\r
3828 String++;\r
3829 }\r
3830\r
3831 Result = 0;\r
3832\r
3833 //\r
3834 // there is a space where there should't be\r
3835 //\r
3836 if (*String == L' ') {\r
3837 return (EFI_INVALID_PARAMETER);\r
3838 }\r
3839\r
3840 while (ShellIsHexaDecimalDigitCharacter (*String)) {\r
3841 //\r
3842 // If the Hex Number represented by String overflows according\r
3843 // to the range defined by UINT64, then return EFI_DEVICE_ERROR.\r
3844 //\r
3845 if (!(Result <= (RShiftU64((((UINT64) ~0) - InternalShellHexCharToUintn (*String)), 4)))) {\r
3846// if (!(Result <= ((((UINT64) ~0) - InternalShellHexCharToUintn (*String)) >> 4))) {\r
3847 return (EFI_DEVICE_ERROR);\r
3848 }\r
3849\r
3850 Result = (LShiftU64(Result, 4));\r
3851 Result += InternalShellHexCharToUintn (*String);\r
3852 String++;\r
3853\r
3854 //\r
3855 // stop at spaces if requested\r
3856 //\r
3857 if (StopAtSpace && *String == L' ') {\r
3858 break;\r
3859 }\r
3860 }\r
3861\r
3862 *Value = Result;\r
3863 return (EFI_SUCCESS);\r
3864}\r
3865\r
3866/**\r
3867 Convert a Null-terminated Unicode decimal string to a value of\r
3868 type UINT64.\r
3869\r
3870 This function returns a value of type UINT64 by interpreting the contents\r
3871 of the Unicode string specified by String as a decimal number. The format\r
3872 of the input Unicode string String is:\r
3873\r
3874 [spaces] [decimal digits].\r
3875\r
3876 The valid decimal digit character is in the range [0-9]. The\r
3877 function will ignore the pad space, which includes spaces or\r
3878 tab characters, before [decimal digits]. The running zero in the\r
3879 beginning of [decimal digits] will be ignored. Then, the function\r
3880 stops at the first character that is a not a valid decimal character\r
3881 or a Null-terminator, whichever one comes first.\r
3882\r
3883 If String has only pad spaces, then 0 is returned.\r
3884 If String has no pad spaces or valid decimal digits,\r
3885 then 0 is returned.\r
3886\r
3887 @param[in] String A pointer to a Null-terminated Unicode string.\r
3888 @param[out] Value Upon a successful return the value of the conversion.\r
3889 @param[in] StopAtSpace FALSE to skip spaces.\r
3890\r
3891 @retval EFI_SUCCESS The conversion was successful.\r
3892 @retval EFI_INVALID_PARAMETER A parameter was NULL or invalid.\r
3893 @retval EFI_DEVICE_ERROR An overflow occured.\r
3894**/\r
3895EFI_STATUS\r
3896InternalShellStrDecimalToUint64 (\r
3897 IN CONST CHAR16 *String,\r
3898 OUT UINT64 *Value,\r
3899 IN CONST BOOLEAN StopAtSpace\r
3900 )\r
3901{\r
3902 UINT64 Result;\r
3903\r
3904 if (String == NULL || StrSize (String) == 0 || Value == NULL) {\r
3905 return (EFI_INVALID_PARAMETER);\r
3906 }\r
3907\r
3908 //\r
3909 // Ignore the pad spaces (space or tab)\r
3910 //\r
3911 while ((*String == L' ') || (*String == L'\t')) {\r
3912 String++;\r
3913 }\r
3914\r
3915 //\r
3916 // Ignore leading Zeros after the spaces\r
3917 //\r
3918 while (*String == L'0') {\r
3919 String++;\r
3920 }\r
3921\r
3922 Result = 0;\r
3923\r
3924 //\r
3925 // Stop upon space if requested \r
3926 // (if the whole value was 0)\r
3927 //\r
3928 if (StopAtSpace && *String == L' ') {\r
3929 *Value = Result;\r
3930 return (EFI_SUCCESS);\r
3931 }\r
3932\r
3933 while (ShellIsDecimalDigitCharacter (*String)) {\r
3934 //\r
3935 // If the number represented by String overflows according\r
3936 // to the range defined by UINT64, then return EFI_DEVICE_ERROR.\r
3937 //\r
3938\r
3939 if (!(Result <= (DivU64x32((((UINT64) ~0) - (*String - L'0')),10)))) {\r
3940 return (EFI_DEVICE_ERROR);\r
3941 }\r
3942\r
3943 Result = MultU64x32(Result, 10) + (*String - L'0');\r
3944 String++;\r
3945\r
3946 //\r
3947 // Stop at spaces if requested\r
3948 //\r
3949 if (StopAtSpace && *String == L' ') {\r
3950 break;\r
3951 }\r
3952 }\r
3953\r
3954 *Value = Result;\r
3955\r
3956 return (EFI_SUCCESS);\r
3957}\r
3958\r
3959/**\r
3960 Function to verify and convert a string to its numerical value.\r
3961\r
3962 If Hex it must be preceeded with a 0x, 0X, or has ForceHex set TRUE.\r
3963\r
3964 @param[in] String The string to evaluate.\r
3965 @param[out] Value Upon a successful return the value of the conversion.\r
3966 @param[in] ForceHex TRUE - always assume hex.\r
3967 @param[in] StopAtSpace FALSE to skip spaces.\r
3968\r
3969 @retval EFI_SUCCESS The conversion was successful.\r
3970 @retval EFI_INVALID_PARAMETER String contained an invalid character.\r
3971 @retval EFI_NOT_FOUND String was a number, but Value was NULL.\r
3972**/\r
3973EFI_STATUS\r
3974EFIAPI\r
3975ShellConvertStringToUint64(\r
3976 IN CONST CHAR16 *String,\r
3977 OUT UINT64 *Value,\r
3978 IN CONST BOOLEAN ForceHex,\r
3979 IN CONST BOOLEAN StopAtSpace\r
3980 )\r
3981{\r
3982 UINT64 RetVal;\r
3983 CONST CHAR16 *Walker;\r
3984 EFI_STATUS Status;\r
3985 BOOLEAN Hex;\r
3986\r
3987 Hex = ForceHex;\r
3988\r
3989 if (!InternalShellIsHexOrDecimalNumber(String, Hex, StopAtSpace, FALSE)) {\r
3990 if (!Hex) {\r
3991 Hex = TRUE;\r
3992 if (!InternalShellIsHexOrDecimalNumber(String, Hex, StopAtSpace, FALSE)) {\r
3993 return (EFI_INVALID_PARAMETER);\r
3994 }\r
3995 } else {\r
3996 return (EFI_INVALID_PARAMETER);\r
3997 }\r
3998 }\r
3999\r
4000 //\r
4001 // Chop off leading spaces\r
4002 //\r
4003 for (Walker = String; Walker != NULL && *Walker != CHAR_NULL && *Walker == L' '; Walker++);\r
4004\r
4005 //\r
4006 // make sure we have something left that is numeric.\r
4007 //\r
4008 if (Walker == NULL || *Walker == CHAR_NULL || !InternalShellIsHexOrDecimalNumber(Walker, Hex, StopAtSpace, FALSE)) {\r
4009 return (EFI_INVALID_PARAMETER);\r
4010 }\r
4011\r
4012 //\r
4013 // do the conversion.\r
4014 //\r
4015 if (Hex || StrnCmp(Walker, L"0x", 2) == 0 || StrnCmp(Walker, L"0X", 2) == 0){\r
4016 Status = InternalShellStrHexToUint64(Walker, &RetVal, StopAtSpace);\r
4017 } else {\r
4018 Status = InternalShellStrDecimalToUint64(Walker, &RetVal, StopAtSpace);\r
4019 }\r
4020\r
4021 if (Value == NULL && !EFI_ERROR(Status)) {\r
4022 return (EFI_NOT_FOUND);\r
4023 }\r
4024\r
4025 if (Value != NULL) {\r
4026 *Value = RetVal;\r
4027 }\r
4028\r
4029 return (Status);\r
4030}\r
4031\r
4032/**\r
4033 Function to determin if an entire string is a valid number.\r
4034\r
4035 If Hex it must be preceeded with a 0x or has ForceHex, set TRUE.\r
4036\r
4037 @param[in] String The string to evaluate.\r
4038 @param[in] ForceHex TRUE - always assume hex.\r
4039 @param[in] StopAtSpace TRUE to halt upon finding a space, FALSE to keep going.\r
4040\r
4041 @retval TRUE It is all numeric (dec/hex) characters.\r
4042 @retval FALSE There is a non-numeric character.\r
4043**/\r
4044BOOLEAN\r
4045EFIAPI\r
4046ShellIsHexOrDecimalNumber (\r
4047 IN CONST CHAR16 *String,\r
4048 IN CONST BOOLEAN ForceHex,\r
4049 IN CONST BOOLEAN StopAtSpace\r
4050 )\r
4051{\r
4052 if (ShellConvertStringToUint64(String, NULL, ForceHex, StopAtSpace) == EFI_NOT_FOUND) {\r
4053 return (TRUE);\r
4054 }\r
4055 return (FALSE);\r
4056}\r
4057\r
4058/**\r
4059 Function to read a single line from a SHELL_FILE_HANDLE. The \n is not included in the returned\r
4060 buffer. The returned buffer must be callee freed.\r
4061\r
4062 If the position upon start is 0, then the Ascii Boolean will be set. This should be\r
4063 maintained and not changed for all operations with the same file.\r
4064\r
4065 @param[in] Handle SHELL_FILE_HANDLE to read from.\r
4066 @param[in, out] Ascii Boolean value for indicating whether the file is\r
4067 Ascii (TRUE) or UCS2 (FALSE).\r
4068\r
4069 @return The line of text from the file.\r
4070 @retval NULL There was not enough memory available.\r
4071\r
4072 @sa ShellFileHandleReadLine\r
4073**/\r
4074CHAR16*\r
4075EFIAPI\r
4076ShellFileHandleReturnLine(\r
4077 IN SHELL_FILE_HANDLE Handle,\r
4078 IN OUT BOOLEAN *Ascii\r
4079 )\r
4080{\r
4081 CHAR16 *RetVal;\r
4082 UINTN Size;\r
4083 EFI_STATUS Status;\r
4084\r
4085 Size = 0;\r
4086 RetVal = NULL;\r
4087\r
4088 Status = ShellFileHandleReadLine(Handle, RetVal, &Size, FALSE, Ascii);\r
4089 if (Status == EFI_BUFFER_TOO_SMALL) {\r
4090 RetVal = AllocateZeroPool(Size);\r
4091 if (RetVal == NULL) {\r
4092 return (NULL);\r
4093 }\r
4094 Status = ShellFileHandleReadLine(Handle, RetVal, &Size, FALSE, Ascii);\r
4095\r
4096 }\r
4097 if (Status == EFI_END_OF_FILE && RetVal != NULL && *RetVal != CHAR_NULL) {\r
4098 Status = EFI_SUCCESS;\r
4099 }\r
4100 if (EFI_ERROR(Status) && (RetVal != NULL)) {\r
4101 FreePool(RetVal);\r
4102 RetVal = NULL;\r
4103 }\r
4104 return (RetVal);\r
4105}\r
4106\r
4107/**\r
4108 Function to read a single line (up to but not including the \n) from a SHELL_FILE_HANDLE.\r
4109\r
4110 If the position upon start is 0, then the Ascii Boolean will be set. This should be\r
4111 maintained and not changed for all operations with the same file.\r
4112\r
4113 NOTE: LINES THAT ARE RETURNED BY THIS FUNCTION ARE UCS2, EVEN IF THE FILE BEING READ\r
4114 IS IN ASCII FORMAT.\r
4115\r
4116 @param[in] Handle SHELL_FILE_HANDLE to read from.\r
4117 @param[in, out] Buffer The pointer to buffer to read into. If this function\r
4118 returns EFI_SUCCESS, then on output Buffer will\r
4119 contain a UCS2 string, even if the file being\r
4120 read is ASCII.\r
4121 @param[in, out] Size On input, pointer to number of bytes in Buffer.\r
4122 On output, unchanged unless Buffer is too small\r
4123 to contain the next line of the file. In that\r
4124 case Size is set to the number of bytes needed\r
4125 to hold the next line of the file (as a UCS2\r
4126 string, even if it is an ASCII file).\r
4127 @param[in] Truncate If the buffer is large enough, this has no effect.\r
4128 If the buffer is is too small and Truncate is TRUE,\r
4129 the line will be truncated.\r
4130 If the buffer is is too small and Truncate is FALSE,\r
4131 then no read will occur.\r
4132\r
4133 @param[in, out] Ascii Boolean value for indicating whether the file is\r
4134 Ascii (TRUE) or UCS2 (FALSE).\r
4135\r
4136 @retval EFI_SUCCESS The operation was successful. The line is stored in\r
4137 Buffer.\r
4138 @retval EFI_END_OF_FILE There are no more lines in the file.\r
4139 @retval EFI_INVALID_PARAMETER Handle was NULL.\r
4140 @retval EFI_INVALID_PARAMETER Size was NULL.\r
4141 @retval EFI_BUFFER_TOO_SMALL Size was not large enough to store the line.\r
4142 Size was updated to the minimum space required.\r
4143**/\r
4144EFI_STATUS\r
4145EFIAPI\r
4146ShellFileHandleReadLine(\r
4147 IN SHELL_FILE_HANDLE Handle,\r
4148 IN OUT CHAR16 *Buffer,\r
4149 IN OUT UINTN *Size,\r
4150 IN BOOLEAN Truncate,\r
4151 IN OUT BOOLEAN *Ascii\r
4152 )\r
4153{\r
4154 EFI_STATUS Status;\r
4155 CHAR16 CharBuffer;\r
4156 UINTN CharSize;\r
4157 UINTN CountSoFar;\r
4158 UINT64 OriginalFilePosition;\r
4159\r
4160\r
4161 if (Handle == NULL\r
4162 ||Size == NULL\r
4163 ){\r
4164 return (EFI_INVALID_PARAMETER);\r
4165 }\r
4166 if (Buffer == NULL) {\r
4167 ASSERT(*Size == 0);\r
4168 } else {\r
4169 *Buffer = CHAR_NULL;\r
4170 }\r
4171 gEfiShellProtocol->GetFilePosition(Handle, &OriginalFilePosition);\r
4172 if (OriginalFilePosition == 0) {\r
4173 CharSize = sizeof(CHAR16);\r
4174 Status = gEfiShellProtocol->ReadFile(Handle, &CharSize, &CharBuffer);\r
4175 ASSERT_EFI_ERROR(Status);\r
4176 if (CharBuffer == gUnicodeFileTag) {\r
4177 *Ascii = FALSE;\r
4178 } else {\r
4179 *Ascii = TRUE;\r
4180 gEfiShellProtocol->SetFilePosition(Handle, OriginalFilePosition);\r
4181 }\r
4182 }\r
4183\r
4184 if (*Ascii) {\r
4185 CharSize = sizeof(CHAR8);\r
4186 } else {\r
4187 CharSize = sizeof(CHAR16);\r
4188 }\r
4189 for (CountSoFar = 0;;CountSoFar++){\r
4190 CharBuffer = 0;\r
4191 Status = gEfiShellProtocol->ReadFile(Handle, &CharSize, &CharBuffer);\r
4192 if ( EFI_ERROR(Status)\r
4193 || CharSize == 0\r
4194 || (CharBuffer == L'\n' && !(*Ascii))\r
4195 || (CharBuffer == '\n' && *Ascii)\r
4196 ){\r
4197 if (CharSize == 0) {\r
4198 Status = EFI_END_OF_FILE;\r
4199 }\r
4200 break;\r
4201 }\r
4202 //\r
4203 // if we have space save it...\r
4204 //\r
4205 if ((CountSoFar+1)*sizeof(CHAR16) < *Size){\r
4206 ASSERT(Buffer != NULL);\r
4207 ((CHAR16*)Buffer)[CountSoFar] = CharBuffer;\r
4208 ((CHAR16*)Buffer)[CountSoFar+1] = CHAR_NULL;\r
4209 }\r
4210 }\r
4211\r
4212 //\r
4213 // if we ran out of space tell when...\r
4214 //\r
4215 if ((CountSoFar+1)*sizeof(CHAR16) > *Size){\r
4216 *Size = (CountSoFar+1)*sizeof(CHAR16);\r
4217 if (!Truncate) {\r
4218 gEfiShellProtocol->SetFilePosition(Handle, OriginalFilePosition);\r
4219 } else {\r
4220 DEBUG((DEBUG_WARN, "The line was truncated in ShellFileHandleReadLine"));\r
4221 }\r
4222 return (EFI_BUFFER_TOO_SMALL);\r
4223 }\r
4224 while(Buffer[StrLen(Buffer)-1] == L'\r') {\r
4225 Buffer[StrLen(Buffer)-1] = CHAR_NULL;\r
4226 }\r
4227\r
4228 return (Status);\r
4229}\r
4230\r
4231/**\r
4232 Function to print help file / man page content in the spec from the UEFI Shell protocol GetHelpText function.\r
4233\r
4234 @param[in] CommandToGetHelpOn Pointer to a string containing the command name of help file to be printed.\r
4235 @param[in] SectionToGetHelpOn Pointer to the section specifier(s).\r
4236 @param[in] PrintCommandText If TRUE, prints the command followed by the help content, otherwise prints \r
4237 the help content only.\r
4238 @retval EFI_DEVICE_ERROR The help data format was incorrect.\r
4239 @retval EFI_NOT_FOUND The help data could not be found.\r
4240 @retval EFI_SUCCESS The operation was successful.\r
4241**/\r
4242EFI_STATUS\r
4243EFIAPI\r
4244ShellPrintHelp (\r
4245 IN CONST CHAR16 *CommandToGetHelpOn,\r
4246 IN CONST CHAR16 *SectionToGetHelpOn,\r
4247 IN BOOLEAN PrintCommandText\r
4248 )\r
4249{\r
4250 EFI_STATUS Status;\r
4251 CHAR16 *OutText;\r
4252 \r
4253 OutText = NULL;\r
4254 \r
4255 //\r
4256 // Get the string to print based\r
4257 //\r
4258 Status = gEfiShellProtocol->GetHelpText (CommandToGetHelpOn, SectionToGetHelpOn, &OutText);\r
4259 \r
4260 //\r
4261 // make sure we got a valid string\r
4262 //\r
4263 if (EFI_ERROR(Status)){\r
4264 return Status;\r
4265 } \r
4266 if (OutText == NULL || StrLen(OutText) == 0) {\r
4267 return EFI_NOT_FOUND; \r
4268 }\r
4269 \r
4270 //\r
4271 // Chop off trailing stuff we dont need\r
4272 //\r
4273 while (OutText[StrLen(OutText)-1] == L'\r' || OutText[StrLen(OutText)-1] == L'\n' || OutText[StrLen(OutText)-1] == L' ') {\r
4274 OutText[StrLen(OutText)-1] = CHAR_NULL;\r
4275 }\r
4276 \r
4277 //\r
4278 // Print this out to the console\r
4279 //\r
4280 if (PrintCommandText) {\r
4281 ShellPrintEx(-1, -1, L"%H%-14s%N- %s\r\n", CommandToGetHelpOn, OutText);\r
4282 } else {\r
4283 ShellPrintEx(-1, -1, L"%N%s\r\n", OutText);\r
4284 }\r
4285 \r
4286 SHELL_FREE_NON_NULL(OutText);\r
4287\r
4288 return EFI_SUCCESS;\r
4289}\r
4290\r
4291/**\r
4292 Function to delete a file by name\r
4293 \r
4294 @param[in] FileName Pointer to file name to delete.\r
4295 \r
4296 @retval EFI_SUCCESS the file was deleted sucessfully\r
4297 @retval EFI_WARN_DELETE_FAILURE the handle was closed, but the file was not\r
4298 deleted\r
4299 @retval EFI_INVALID_PARAMETER One of the parameters has an invalid value.\r
4300 @retval EFI_NOT_FOUND The specified file could not be found on the\r
4301 device or the file system could not be found\r
4302 on the device.\r
4303 @retval EFI_NO_MEDIA The device has no medium.\r
4304 @retval EFI_MEDIA_CHANGED The device has a different medium in it or the\r
4305 medium is no longer supported.\r
4306 @retval EFI_DEVICE_ERROR The device reported an error.\r
4307 @retval EFI_VOLUME_CORRUPTED The file system structures are corrupted.\r
4308 @retval EFI_WRITE_PROTECTED The file or medium is write protected.\r
4309 @retval EFI_ACCESS_DENIED The file was opened read only.\r
4310 @retval EFI_OUT_OF_RESOURCES Not enough resources were available to open the\r
4311 file.\r
4312 @retval other The file failed to open\r
4313**/\r
4314EFI_STATUS\r
4315EFIAPI\r
4316ShellDeleteFileByName(\r
4317 IN CONST CHAR16 *FileName\r
4318 )\r
4319{\r
4320 EFI_STATUS Status;\r
4321 SHELL_FILE_HANDLE FileHandle;\r
4322 \r
4323 Status = ShellFileExists(FileName);\r
4324 \r
4325 if (Status == EFI_SUCCESS){\r
4326 Status = ShellOpenFileByName(FileName, &FileHandle, EFI_FILE_MODE_READ | EFI_FILE_MODE_WRITE | EFI_FILE_MODE_CREATE, 0x0);\r
4327 if (Status == EFI_SUCCESS){\r
4328 Status = ShellDeleteFile(&FileHandle);\r
4329 }\r
4330 } \r
4331\r
4332 return(Status);\r
4333 \r
4334}\r
4335\r
4336/**\r
4337 Cleans off all the quotes in the string.\r
4338\r
4339 @param[in] OriginalString pointer to the string to be cleaned.\r
4340 @param[out] CleanString The new string with all quotes removed. \r
4341 Memory allocated in the function and free \r
4342 by caller.\r
4343\r
4344 @retval EFI_SUCCESS The operation was successful.\r
4345**/\r
4346EFI_STATUS\r
4347InternalShellStripQuotes (\r
4348 IN CONST CHAR16 *OriginalString,\r
4349 OUT CHAR16 **CleanString\r
4350 )\r
4351{\r
4352 CHAR16 *Walker;\r
4353 \r
4354 if (OriginalString == NULL || CleanString == NULL) {\r
4355 return EFI_INVALID_PARAMETER;\r
4356 }\r
4357\r
4358 *CleanString = AllocateCopyPool (StrSize (OriginalString), OriginalString);\r
4359 if (*CleanString == NULL) {\r
4360 return EFI_OUT_OF_RESOURCES;\r
4361 }\r
4362\r
4363 for (Walker = *CleanString; Walker != NULL && *Walker != CHAR_NULL ; Walker++) {\r
4364 if (*Walker == L'\"') {\r
4365 CopyMem(Walker, Walker+1, StrSize(Walker) - sizeof(Walker[0]));\r
4366 }\r
4367 }\r
4368\r
4369 return EFI_SUCCESS;\r
4370}\r
4371\r