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a405b86d 1/** @file\r
2 Provides interface to advanced shell functionality for parsing both handle and protocol database.\r
3\r
dee34318 4 Copyright (c) 2010 - 2012, Intel Corporation. All rights reserved.<BR>\r
a405b86d 5 This program and the accompanying materials\r
6 are licensed and made available under the terms and conditions of the BSD License\r
7 which accompanies this distribution. The full text of the license may be found at\r
8 http://opensource.org/licenses/bsd-license.php\r
9\r
10 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
11 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
12\r
13**/\r
14\r
15#include "UefiHandleParsingLib.h"\r
f4f3c6bf 16#include "IndustryStandard/Acpi10.h"\r
a405b86d 17\r
a405b86d 18EFI_HANDLE mHandleParsingHiiHandle;\r
19HANDLE_INDEX_LIST mHandleList = {{{NULL,NULL},0,0},0};\r
20\r
21/**\r
22 Constructor for the library.\r
23\r
24 @param[in] ImageHandle Ignored.\r
25 @param[in] SystemTable Ignored.\r
26\r
27 @retval EFI_SUCCESS The operation was successful.\r
28**/\r
29EFI_STATUS\r
30EFIAPI\r
31HandleParsingLibConstructor (\r
32 IN EFI_HANDLE ImageHandle,\r
33 IN EFI_SYSTEM_TABLE *SystemTable\r
34 )\r
35{\r
bca163ff 36 mHandleParsingHiiHandle = HiiAddPackages (&gHandleParsingHiiGuid, gImageHandle, UefiHandleParsingLibStrings, NULL);\r
a405b86d 37 if (mHandleParsingHiiHandle == NULL) {\r
38 return (EFI_DEVICE_ERROR);\r
39 }\r
40\r
41 return (EFI_SUCCESS);\r
42}\r
43\r
44/**\r
45 Destructor for the library. free any resources.\r
46\r
47 @param[in] ImageHandle Ignored.\r
48 @param[in] SystemTable Ignored.\r
49\r
50 @retval EFI_SUCCESS The operation was successful.\r
51**/\r
52EFI_STATUS\r
53EFIAPI\r
54HandleParsingLibDestructor (\r
55 IN EFI_HANDLE ImageHandle,\r
56 IN EFI_SYSTEM_TABLE *SystemTable\r
57 )\r
58{\r
59 if (mHandleParsingHiiHandle != NULL) {\r
60 HiiRemovePackages(mHandleParsingHiiHandle);\r
61 }\r
62 return (EFI_SUCCESS);\r
63}\r
64\r
65/*\r
66CHAR16*\r
67EFIAPI\r
68LoadedImageProtocolDumpInformation(\r
69 IN CONST EFI_HANDLE TheHandle,\r
70 IN CONST BOOLEAN Verbose\r
71 )\r
72{\r
73 EFI_LOADED_IMAGE_PROTOCOL *Image;\r
74 EFI_STATUS Status;\r
75 EFI_DEVICE_PATH_PROTOCOL *DevPath;\r
76 EFI_DEVICE_PATH_PROTOCOL *DevPathNode;\r
77 VOID *Buffer;\r
78 UINTN BufferSize;\r
79 UINT32 AuthenticationStatus;\r
80 EFI_GUID *NameGuid;\r
81 EFI_FIRMWARE_VOLUME_PROTOCOL *FV;\r
82 EFI_FIRMWARE_VOLUME2_PROTOCOL *FV2;\r
83\r
84 FV = NULL;\r
85 FV2 = NULL;\r
86 Buffer = NULL;\r
87 BufferSize = 0;\r
88\r
89 Status = HandleProtocol (\r
90 TheHandle,\r
91 &gEfiLoadedImageProtocolGuid,\r
92 &Image);\r
93 ASSERT_EFI_ERROR(Status);\r
94\r
95 DevPath = UnpackDevicePath (Image->FilePath);\r
96\r
97 if (DevPath == NULL) {\r
98 return NULL;\r
99 }\r
100\r
101 DevPathNode = DevPath;\r
102\r
103 while (!IsDevicePathEnd (DevPathNode)) {\r
104 //\r
105 // Find the Fv File path\r
106 //\r
107 NameGuid = GetNameGuidFromFwVolDevicePathNode ((MEDIA_FW_VOL_FILEPATH_DEVICE_PATH *)DevPathNode);\r
108 if (NameGuid != NULL) {\r
109 Status = BS->HandleProtocol (\r
110 Image->DeviceHandle,\r
111 &gEfiFirmwareVolumeProtocolGuid,\r
112 &FV\r
113 );\r
114 if (!EFI_ERROR (Status)) {\r
115 Status = FV->ReadSection (\r
116 FV,\r
117 NameGuid,\r
118 EFI_SECTION_USER_INTERFACE,\r
119 0,\r
120 &Buffer,\r
121 &BufferSize,\r
122 &AuthenticationStatus\r
123 );\r
124 if (!EFI_ERROR (Status)) {\r
125 break;\r
126 }\r
127\r
128 Buffer = NULL;\r
129 } else {\r
130 Status = BS->HandleProtocol (\r
131 Image->DeviceHandle,\r
132 &gEfiFirmwareVolume2ProtocolGuid,\r
133 &FV2\r
134 );\r
135 if (!EFI_ERROR (Status)) {\r
136 Status = FV2->ReadSection (\r
137 FV2,\r
138 NameGuid,\r
139 EFI_SECTION_USER_INTERFACE,\r
140 0,\r
141 &Buffer,\r
142 &BufferSize,\r
143 &AuthenticationStatus\r
144 );\r
145 if (!EFI_ERROR (Status)) {\r
146 break;\r
147 }\r
148\r
149 Buffer = NULL;\r
150 }\r
151 }\r
152 }\r
153 //\r
154 // Next device path node\r
155 //\r
156 DevPathNode = NextDevicePathNode (DevPathNode);\r
157 }\r
158\r
159 FreePool (DevPath);\r
160 return Buffer;\r
161}\r
162*/\r
163\r
f4f3c6bf 164/**\r
165 Function to dump information about PciRootBridgeIo.\r
166\r
167 This will allocate the return buffer from boot services pool.\r
168\r
169 @param[in] TheHandle The handle that has PciRootBridgeIo installed.\r
170 @param[in] Verbose TRUE for additional information, FALSE otherwise.\r
171\r
172 @retval A poitner to a string containing the information.\r
173**/\r
174CHAR16*\r
175EFIAPI\r
176PciRootBridgeIoDumpInformation(\r
177 IN CONST EFI_HANDLE TheHandle,\r
178 IN CONST BOOLEAN Verbose\r
179 )\r
180{\r
181 EFI_PCI_ROOT_BRIDGE_IO_PROTOCOL *PciRootBridgeIo;\r
182 EFI_ACPI_ADDRESS_SPACE_DESCRIPTOR *Configuration;\r
183 UINT64 Supports;\r
184 UINT64 Attributes;\r
185 CHAR16 *Temp;\r
186 CHAR16 *Temp2;\r
187 CHAR16 *RetVal;\r
188 EFI_STATUS Status;\r
189\r
190 RetVal = NULL;\r
191\r
192 if (!Verbose) {\r
193 return (CatSPrint(NULL, L"PciRootBridgeIo"));\r
194 }\r
195\r
196 Status = gBS->HandleProtocol(\r
197 TheHandle,\r
198 &gEfiPciRootBridgeIoProtocolGuid,\r
199 (VOID**)&PciRootBridgeIo);\r
200\r
201 if (EFI_ERROR(Status)) {\r
202 return NULL;\r
203 }\r
204\r
205 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_PCIRB_DUMP_PH), NULL);\r
8d300003 206 ASSERT (Temp != NULL);\r
f4f3c6bf 207 Temp2 = CatSPrint(L"\r\n", Temp, PciRootBridgeIo->ParentHandle);\r
208 FreePool(Temp);\r
209 RetVal = Temp2;\r
210 Temp2 = NULL;\r
211 \r
212 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_PCIRB_DUMP_SEG), NULL);\r
8d300003 213 ASSERT (Temp != NULL);\r
f4f3c6bf 214 Temp2 = CatSPrint(RetVal, Temp, PciRootBridgeIo->SegmentNumber);\r
215 FreePool(Temp);\r
216 FreePool(RetVal);\r
217 RetVal = Temp2;\r
218 Temp2 = NULL;\r
219\r
220 Supports = 0;\r
221 Attributes = 0;\r
222 Status = PciRootBridgeIo->GetAttributes (PciRootBridgeIo, &Supports, &Attributes);\r
223 if (!EFI_ERROR(Status)) {\r
224 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_PCIRB_DUMP_ATT), NULL);\r
8d300003 225 ASSERT (Temp != NULL); \r
f4f3c6bf 226 Temp2 = CatSPrint(RetVal, Temp, Attributes);\r
227 FreePool(Temp);\r
228 FreePool(RetVal);\r
229 RetVal = Temp2;\r
230 Temp2 = NULL;\r
231 \r
232 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_PCIRB_DUMP_SUPPORTS), NULL);\r
8d300003 233 ASSERT (Temp != NULL);\r
f4f3c6bf 234 Temp2 = CatSPrint(RetVal, Temp, Supports);\r
235 FreePool(Temp);\r
236 FreePool(RetVal);\r
237 RetVal = Temp2;\r
238 Temp2 = NULL;\r
239 }\r
240\r
241 Configuration = NULL;\r
242 Status = PciRootBridgeIo->Configuration (PciRootBridgeIo, (VOID **) &Configuration);\r
243 if (!EFI_ERROR(Status) && Configuration != NULL) {\r
244 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_PCIRB_DUMP_TITLE), NULL);\r
8d300003 245 ASSERT (Temp != NULL);\r
f4f3c6bf 246 Temp2 = CatSPrint(RetVal, Temp, Supports);\r
247 FreePool(Temp);\r
248 FreePool(RetVal);\r
249 RetVal = Temp2;\r
250 Temp2 = NULL;\r
251 while (Configuration->Desc == ACPI_ADDRESS_SPACE_DESCRIPTOR) {\r
252 Temp = NULL;\r
253 switch (Configuration->ResType) {\r
254 case ACPI_ADDRESS_SPACE_TYPE_MEM:\r
255 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_PCIRB_DUMP_MEM), NULL);\r
256 break;\r
257 case ACPI_ADDRESS_SPACE_TYPE_IO:\r
258 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_PCIRB_DUMP_IO), NULL);\r
259 break;\r
260 case ACPI_ADDRESS_SPACE_TYPE_BUS:\r
261 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_PCIRB_DUMP_BUS), NULL);\r
262 break;\r
263 }\r
264 if (Temp != NULL) {\r
265 Temp2 = CatSPrint(RetVal, L"%s", Temp);\r
266 FreePool(Temp);\r
267 FreePool(RetVal);\r
268 RetVal = Temp2;\r
269 Temp2 = NULL;\r
270 }\r
271\r
272 Temp2 = CatSPrint(RetVal, \r
273 L"%H%02x %016lx %016lx %02x%N\r\n",\r
274 Configuration->SpecificFlag,\r
275 Configuration->AddrRangeMin,\r
276 Configuration->AddrRangeMax,\r
277 Configuration->AddrSpaceGranularity\r
278 );\r
279 FreePool(RetVal);\r
280 RetVal = Temp2;\r
281 Temp2 = NULL;\r
282 Configuration++;\r
283 }\r
284 }\r
285 return (RetVal);\r
286}\r
287\r
a405b86d 288/**\r
289 Function to dump information about SimpleTextOut.\r
290\r
291 This will allocate the return buffer from boot services pool.\r
292\r
293 @param[in] TheHandle The handle that has SimpleTextOut installed.\r
294 @param[in] Verbose TRUE for additional information, FALSE otherwise.\r
295\r
296 @retval A poitner to a string containing the information.\r
297**/\r
298CHAR16*\r
299EFIAPI\r
300TxtOutProtocolDumpInformation(\r
301 IN CONST EFI_HANDLE TheHandle,\r
302 IN CONST BOOLEAN Verbose\r
303 )\r
304{\r
305 EFI_SIMPLE_TEXT_OUTPUT_PROTOCOL *Dev;\r
306 INTN Index;\r
307 UINTN Col;\r
308 UINTN Row;\r
309 EFI_STATUS Status;\r
310 CHAR16 *RetVal;\r
311 UINTN Size;\r
312 CHAR16 *Temp;\r
313 UINTN NewSize;\r
314\r
315 if (!Verbose) {\r
316 return (NULL);\r
317 }\r
318\r
319 RetVal = NULL;\r
320 Size = 0;\r
321\r
322 Status = gBS->HandleProtocol(\r
323 TheHandle,\r
324 &gEfiSimpleTextOutProtocolGuid,\r
325 (VOID**)&Dev);\r
326\r
327 ASSERT_EFI_ERROR(Status);\r
328 ASSERT (Dev != NULL && Dev->Mode != NULL);\r
329\r
330 Size = (Dev->Mode->MaxMode + 1) * 80;\r
331 RetVal = AllocateZeroPool(Size);\r
332\r
333 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_TXT_OUT_DUMP_HEADER), NULL);\r
ecae5117 334 if (Temp != NULL) {\r
335 UnicodeSPrint(RetVal, Size, Temp, Dev, Dev->Mode->Attribute);\r
336 FreePool(Temp);\r
337 }\r
a405b86d 338\r
339 //\r
340 // Dump TextOut Info\r
341 //\r
342 Temp = HiiGetString(mHandleParsingHiiHandle, STRING_TOKEN(STR_TXT_OUT_DUMP_LINE), NULL);\r
343 for (Index = 0; Index < Dev->Mode->MaxMode; Index++) {\r
344 Status = Dev->QueryMode (Dev, Index, &Col, &Row);\r
345 NewSize = Size - StrSize(RetVal);\r
346 UnicodeSPrint(\r
347 RetVal + StrLen(RetVal),\r
348 NewSize,\r
ecae5117 349 Temp == NULL?L"":Temp,\r
a405b86d 350 Index == Dev->Mode->Mode ? L'*' : L' ',\r
351 Index,\r
352 !EFI_ERROR(Status)?Col:-1,\r
353 !EFI_ERROR(Status)?Row:-1\r
354 );\r
355 }\r
356 FreePool(Temp);\r
357 return (RetVal);\r
358}\r
359\r
360STATIC CONST UINTN VersionStringSize = 60;\r
361\r
362/**\r
363 Function to dump information about EfiDriverSupportedEfiVersion protocol.\r
364\r
365 This will allocate the return buffer from boot services pool.\r
366\r
367 @param[in] TheHandle The handle that has the protocol installed.\r
368 @param[in] Verbose TRUE for additional information, FALSE otherwise.\r
369\r
370 @retval A poitner to a string containing the information.\r
371**/\r
372CHAR16*\r
373EFIAPI\r
374DriverEfiVersionProtocolDumpInformation(\r
375 IN CONST EFI_HANDLE TheHandle,\r
376 IN CONST BOOLEAN Verbose\r
377 )\r
378{\r
379 EFI_DRIVER_SUPPORTED_EFI_VERSION_PROTOCOL *DriverEfiVersion;\r
380 EFI_STATUS Status;\r
381 CHAR16 *RetVal;\r
382\r
383 Status = gBS->HandleProtocol(\r
384 TheHandle,\r
385 &gEfiDriverSupportedEfiVersionProtocolGuid,\r
386 (VOID**)&DriverEfiVersion);\r
387\r
388 ASSERT_EFI_ERROR(Status);\r
389\r
78ed876b 390 RetVal = AllocateZeroPool(VersionStringSize);\r
a405b86d 391 ASSERT(RetVal != NULL);\r
392 UnicodeSPrint(RetVal, VersionStringSize, L"0x%08x", DriverEfiVersion->FirmwareVersion);\r
393 return (RetVal);\r
394}\r
395\r
396/**\r
397 Function to dump information about DevicePath protocol.\r
398\r
399 This will allocate the return buffer from boot services pool.\r
400\r
401 @param[in] TheHandle The handle that has the protocol installed.\r
402 @param[in] Verbose TRUE for additional information, FALSE otherwise.\r
403\r
404 @retval A poitner to a string containing the information.\r
405**/\r
406CHAR16*\r
407EFIAPI\r
408DevicePathProtocolDumpInformation(\r
409 IN CONST EFI_HANDLE TheHandle,\r
410 IN CONST BOOLEAN Verbose\r
411 )\r
412{\r
413 EFI_DEVICE_PATH_PROTOCOL *DevPath;\r
414 CHAR16 *Temp;\r
415 CHAR16 *Temp2;\r
416 EFI_STATUS Status;\r
417 EFI_DEVICE_PATH_TO_TEXT_PROTOCOL *DevPathToText;\r
418 Temp = NULL;\r
419\r
420 Status = gBS->LocateProtocol(&gEfiDevicePathToTextProtocolGuid, NULL, (VOID**)&DevPathToText);\r
421 if (!EFI_ERROR(Status)) {\r
422 Status = gBS->OpenProtocol(TheHandle, &gEfiDevicePathProtocolGuid, (VOID**)&DevPath, gImageHandle, NULL, EFI_OPEN_PROTOCOL_GET_PROTOCOL);\r
423 if (!EFI_ERROR(Status)) {\r
424 //\r
425 // I cannot decide whether to allow shortcuts here (the second BOOLEAN on the next line)\r
426 //\r
427 Temp = DevPathToText->ConvertDevicePathToText(DevPath, TRUE, TRUE);\r
428 gBS->CloseProtocol(TheHandle, &gEfiDevicePathProtocolGuid, gImageHandle, NULL);\r
429 }\r
430 }\r
78ed876b 431 if (!Verbose && Temp != NULL && StrLen(Temp) > 30) {\r
a405b86d 432 Temp2 = NULL;\r
433 Temp2 = StrnCatGrow(&Temp2, NULL, Temp+(StrLen(Temp) - 30), 30);\r
434 FreePool(Temp);\r
435 Temp = Temp2;\r
436 }\r
437 return (Temp);\r
438}\r
439\r
440//\r
441// Put the information on the NT32 protocol GUIDs here so we are not dependant on the Nt32Pkg\r
442//\r
443#define LOCAL_EFI_WIN_NT_THUNK_PROTOCOL_GUID \\r
444 { \\r
445 0x58c518b1, 0x76f3, 0x11d4, 0xbc, 0xea, 0x0, 0x80, 0xc7, 0x3c, 0x88, 0x81 \\r
446 }\r
447\r
448#define LOCAL_EFI_WIN_NT_BUS_DRIVER_IO_PROTOCOL_GUID \\r
449 { \\r
450 0x96eb4ad6, 0xa32a, 0x11d4, 0xbc, 0xfd, 0x0, 0x80, 0xc7, 0x3c, 0x88, 0x81 \\r
451 }\r
452\r
453#define LOCAL_EFI_WIN_NT_SERIAL_PORT_GUID \\r
454 { \\r
455 0xc95a93d, 0xa006, 0x11d4, 0xbc, 0xfa, 0x0, 0x80, 0xc7, 0x3c, 0x88, 0x81 \\r
456 }\r
457STATIC CONST EFI_GUID WinNtThunkProtocolGuid = LOCAL_EFI_WIN_NT_THUNK_PROTOCOL_GUID;\r
458STATIC CONST EFI_GUID WinNtIoProtocolGuid = LOCAL_EFI_WIN_NT_BUS_DRIVER_IO_PROTOCOL_GUID;\r
459STATIC CONST EFI_GUID WinNtSerialPortGuid = LOCAL_EFI_WIN_NT_SERIAL_PORT_GUID;\r
460\r
dee34318 461STATIC CONST GUID_INFO_BLOCK mGuidStringListNT[] = {\r
a405b86d 462 {STRING_TOKEN(STR_WINNT_THUNK), (EFI_GUID*)&WinNtThunkProtocolGuid, NULL},\r
463 {STRING_TOKEN(STR_WINNT_DRIVER_IO), (EFI_GUID*)&WinNtIoProtocolGuid, NULL},\r
464 {STRING_TOKEN(STR_WINNT_SERIAL_PORT), (EFI_GUID*)&WinNtSerialPortGuid, NULL},\r
465 {STRING_TOKEN(STR_UNKNOWN_DEVICE), NULL, NULL},\r
466};\r
467\r
dee34318 468STATIC CONST GUID_INFO_BLOCK mGuidStringList[] = {\r
a405b86d 469 {STRING_TOKEN(STR_LOADED_IMAGE), &gEfiLoadedImageProtocolGuid, NULL},\r
470 {STRING_TOKEN(STR_DEVICE_PATH), &gEfiDevicePathProtocolGuid, DevicePathProtocolDumpInformation},\r
471 {STRING_TOKEN(STR_IMAGE_PATH), &gEfiLoadedImageDevicePathProtocolGuid, DevicePathProtocolDumpInformation},\r
472 {STRING_TOKEN(STR_DEVICE_PATH_UTIL), &gEfiDevicePathUtilitiesProtocolGuid, NULL},\r
473 {STRING_TOKEN(STR_DEVICE_PATH_TXT), &gEfiDevicePathToTextProtocolGuid, NULL},\r
474 {STRING_TOKEN(STR_DEVICE_PATH_FTXT), &gEfiDevicePathFromTextProtocolGuid, NULL},\r
475 {STRING_TOKEN(STR_DEVICE_PATH_PC), &gEfiPcAnsiGuid, NULL},\r
476 {STRING_TOKEN(STR_DEVICE_PATH_VT100), &gEfiVT100Guid, NULL},\r
477 {STRING_TOKEN(STR_DEVICE_PATH_VT100P), &gEfiVT100PlusGuid, NULL},\r
478 {STRING_TOKEN(STR_DEVICE_PATH_VTUTF8), &gEfiVTUTF8Guid, NULL},\r
479 {STRING_TOKEN(STR_DRIVER_BINDING), &gEfiDriverBindingProtocolGuid, NULL},\r
480 {STRING_TOKEN(STR_PLATFORM_OVERRIDE), &gEfiPlatformDriverOverrideProtocolGuid, NULL},\r
481 {STRING_TOKEN(STR_BUS_OVERRIDE), &gEfiBusSpecificDriverOverrideProtocolGuid, NULL},\r
482 {STRING_TOKEN(STR_DRIVER_DIAG), &gEfiDriverDiagnosticsProtocolGuid, NULL},\r
483 {STRING_TOKEN(STR_DRIVER_DIAG2), &gEfiDriverDiagnostics2ProtocolGuid, NULL},\r
484 {STRING_TOKEN(STR_DRIVER_CN), &gEfiComponentNameProtocolGuid, NULL},\r
485 {STRING_TOKEN(STR_DRIVER_CN2), &gEfiComponentName2ProtocolGuid, NULL},\r
486 {STRING_TOKEN(STR_PLAT_DRV_CFG), &gEfiPlatformToDriverConfigurationProtocolGuid, NULL},\r
487 {STRING_TOKEN(STR_DRIVER_VERSION), &gEfiDriverSupportedEfiVersionProtocolGuid, DriverEfiVersionProtocolDumpInformation},\r
488 {STRING_TOKEN(STR_TXT_IN), &gEfiSimpleTextInProtocolGuid, NULL},\r
489 {STRING_TOKEN(STR_TXT_IN_EX), &gEfiSimpleTextInputExProtocolGuid, NULL},\r
490 {STRING_TOKEN(STR_TXT_OUT), &gEfiSimpleTextOutProtocolGuid, TxtOutProtocolDumpInformation},\r
491 {STRING_TOKEN(STR_SIM_POINTER), &gEfiSimplePointerProtocolGuid, NULL},\r
492 {STRING_TOKEN(STR_ABS_POINTER), &gEfiAbsolutePointerProtocolGuid, NULL},\r
493 {STRING_TOKEN(STR_SERIAL_IO), &gEfiSerialIoProtocolGuid, NULL},\r
494 {STRING_TOKEN(STR_GRAPHICS_OUTPUT), &gEfiGraphicsOutputProtocolGuid, NULL},\r
495 {STRING_TOKEN(STR_EDID_DISCOVERED), &gEfiEdidDiscoveredProtocolGuid, NULL},\r
496 {STRING_TOKEN(STR_EDID_ACTIVE), &gEfiEdidActiveProtocolGuid, NULL},\r
497 {STRING_TOKEN(STR_EDID_OVERRIDE), &gEfiEdidOverrideProtocolGuid, NULL},\r
498 {STRING_TOKEN(STR_CON_IN), &gEfiConsoleInDeviceGuid, NULL},\r
499 {STRING_TOKEN(STR_CON_OUT), &gEfiConsoleOutDeviceGuid, NULL},\r
500 {STRING_TOKEN(STR_STD_ERR), &gEfiStandardErrorDeviceGuid, NULL},\r
501 {STRING_TOKEN(STR_LOAD_FILE), &gEfiLoadFileProtocolGuid, NULL},\r
502 {STRING_TOKEN(STR_LOAD_FILE2), &gEfiLoadFile2ProtocolGuid, NULL},\r
503 {STRING_TOKEN(STR_SIMPLE_FILE_SYS), &gEfiSimpleFileSystemProtocolGuid, NULL},\r
a405b86d 504 {STRING_TOKEN(STR_TAPE_IO), &gEfiTapeIoProtocolGuid, NULL},\r
505 {STRING_TOKEN(STR_DISK_IO), &gEfiDiskIoProtocolGuid, NULL},\r
506 {STRING_TOKEN(STR_BLK_IO), &gEfiBlockIoProtocolGuid, NULL},\r
507 {STRING_TOKEN(STR_UC), &gEfiUnicodeCollationProtocolGuid, NULL},\r
508 {STRING_TOKEN(STR_UC2), &gEfiUnicodeCollation2ProtocolGuid, NULL},\r
f4f3c6bf 509 {STRING_TOKEN(STR_PCIRB_IO), &gEfiPciRootBridgeIoProtocolGuid, PciRootBridgeIoDumpInformation},\r
a405b86d 510 {STRING_TOKEN(STR_PCI_IO), &gEfiPciIoProtocolGuid, NULL},\r
511 {STRING_TOKEN(STR_SCSI_PT), &gEfiScsiPassThruProtocolGuid, NULL},\r
512 {STRING_TOKEN(STR_SCSI_IO), &gEfiScsiIoProtocolGuid, NULL},\r
513 {STRING_TOKEN(STR_SCSI_PT_EXT), &gEfiExtScsiPassThruProtocolGuid, NULL},\r
514 {STRING_TOKEN(STR_ISCSI), &gEfiIScsiInitiatorNameProtocolGuid, NULL},\r
515 {STRING_TOKEN(STR_USB_IO), &gEfiUsbIoProtocolGuid, NULL},\r
516 {STRING_TOKEN(STR_USB_HC), &gEfiUsbHcProtocolGuid, NULL},\r
517 {STRING_TOKEN(STR_USB_HC2), &gEfiUsb2HcProtocolGuid, NULL},\r
518 {STRING_TOKEN(STR_DEBUG_SUPPORT), &gEfiDebugSupportProtocolGuid, NULL},\r
519 {STRING_TOKEN(STR_DEBUG_PORT), &gEfiDebugPortProtocolGuid, NULL},\r
520 {STRING_TOKEN(STR_DECOMPRESS), &gEfiDecompressProtocolGuid, NULL},\r
521 {STRING_TOKEN(STR_ACPI_TABLE), &gEfiAcpiTableProtocolGuid, NULL},\r
522 {STRING_TOKEN(STR_EBC_INTERPRETER), &gEfiEbcProtocolGuid, NULL},\r
523 {STRING_TOKEN(STR_SNP), &gEfiSimpleNetworkProtocolGuid, NULL},\r
524 {STRING_TOKEN(STR_NII), &gEfiNetworkInterfaceIdentifierProtocolGuid, NULL},\r
525 {STRING_TOKEN(STR_NII_31), &gEfiNetworkInterfaceIdentifierProtocolGuid_31, NULL},\r
526 {STRING_TOKEN(STR_PXE_BC), &gEfiPxeBaseCodeProtocolGuid, NULL},\r
527 {STRING_TOKEN(STR_PXE_CB), &gEfiPxeBaseCodeCallbackProtocolGuid, NULL},\r
528 {STRING_TOKEN(STR_BIS), &gEfiBisProtocolGuid, NULL},\r
529 {STRING_TOKEN(STR_MNP_SB), &gEfiManagedNetworkServiceBindingProtocolGuid, NULL},\r
530 {STRING_TOKEN(STR_MNP), &gEfiManagedNetworkProtocolGuid, NULL},\r
531 {STRING_TOKEN(STR_ARP_SB), &gEfiArpServiceBindingProtocolGuid, NULL},\r
532 {STRING_TOKEN(STR_ARP), &gEfiArpProtocolGuid, NULL},\r
533 {STRING_TOKEN(STR_DHCPV4_SB), &gEfiDhcp4ServiceBindingProtocolGuid, NULL},\r
534 {STRING_TOKEN(STR_DHCPV4), &gEfiDhcp4ProtocolGuid, NULL},\r
535 {STRING_TOKEN(STR_TCPV4_SB), &gEfiTcp4ServiceBindingProtocolGuid, NULL},\r
536 {STRING_TOKEN(STR_TCPV4), &gEfiTcp4ProtocolGuid, NULL},\r
537 {STRING_TOKEN(STR_IPV4_SB), &gEfiIp4ServiceBindingProtocolGuid, NULL},\r
538 {STRING_TOKEN(STR_IPV4), &gEfiIp4ProtocolGuid, NULL},\r
539 {STRING_TOKEN(STR_IPV4_CFG), &gEfiIp4ConfigProtocolGuid, NULL},\r
540 {STRING_TOKEN(STR_SHELL_PARAMETERS), &gEfiShellParametersProtocolGuid, NULL},\r
541 {STRING_TOKEN(STR_SHELL), &gEfiShellProtocolGuid, NULL},\r
a405b86d 542 {STRING_TOKEN(STR_UDPV4_SB), &gEfiUdp4ServiceBindingProtocolGuid, NULL},\r
543 {STRING_TOKEN(STR_UDPV4), &gEfiUdp4ProtocolGuid, NULL},\r
544 {STRING_TOKEN(STR_MTFTPV4_SB), &gEfiMtftp4ServiceBindingProtocolGuid, NULL},\r
545 {STRING_TOKEN(STR_MTFTPV4), &gEfiMtftp4ProtocolGuid, NULL},\r
546 {STRING_TOKEN(STR_AUTH_INFO), &gEfiAuthenticationInfoProtocolGuid, NULL},\r
547 {STRING_TOKEN(STR_HASH_SB), &gEfiHashServiceBindingProtocolGuid, NULL},\r
548 {STRING_TOKEN(STR_HASH), &gEfiHashProtocolGuid, NULL},\r
549 {STRING_TOKEN(STR_HII_FONT), &gEfiHiiFontProtocolGuid, NULL},\r
550 {STRING_TOKEN(STR_HII_STRING), &gEfiHiiStringProtocolGuid, NULL},\r
551 {STRING_TOKEN(STR_HII_IMAGE), &gEfiHiiImageProtocolGuid, NULL},\r
552 {STRING_TOKEN(STR_HII_DATABASE), &gEfiHiiDatabaseProtocolGuid, NULL},\r
553 {STRING_TOKEN(STR_HII_CONFIG_ROUT), &gEfiHiiConfigRoutingProtocolGuid, NULL},\r
554 {STRING_TOKEN(STR_HII_CONFIG_ACC), &gEfiHiiConfigAccessProtocolGuid, NULL},\r
555 {STRING_TOKEN(STR_HII_FORM_BROWSER2), &gEfiFormBrowser2ProtocolGuid, NULL},\r
dee34318 556 {STRING_TOKEN(STR_DRIVER_FAM_OVERRIDE), &gEfiDriverFamilyOverrideProtocolGuid, NULL},\r
557 {STRING_TOKEN(STR_PCD), &gPcdProtocolGuid, NULL},\r
558 {STRING_TOKEN(STR_TCG), &gEfiTcgProtocolGuid, NULL},\r
559 {STRING_TOKEN(STR_HII_PACKAGE_LIST), &gEfiHiiPackageListProtocolGuid, NULL},\r
560\r
561//\r
562// the ones under this are deprecated by the current UEFI Spec, but may be found anyways...\r
563//\r
a405b86d 564 {STRING_TOKEN(STR_SHELL_INTERFACE), &gEfiShellInterfaceGuid, NULL},\r
565 {STRING_TOKEN(STR_SHELL_ENV2), &gEfiShellEnvironment2Guid, NULL},\r
566 {STRING_TOKEN(STR_SHELL_ENV), &gEfiShellEnvironment2Guid, NULL},\r
567 {STRING_TOKEN(STR_DEVICE_IO), &gEfiDeviceIoProtocolGuid, NULL},\r
568 {STRING_TOKEN(STR_UGA_DRAW), &gEfiUgaDrawProtocolGuid, NULL},\r
569 {STRING_TOKEN(STR_UGA_IO), &gEfiUgaIoProtocolGuid, NULL},\r
570 {STRING_TOKEN(STR_ESP), &gEfiPartTypeSystemPartGuid, NULL},\r
571 {STRING_TOKEN(STR_GPT_NBR), &gEfiPartTypeLegacyMbrGuid, NULL},\r
572 {STRING_TOKEN(STR_DRIVER_CONFIG), &gEfiDriverConfigurationProtocolGuid, NULL},\r
573 {STRING_TOKEN(STR_DRIVER_CONFIG2), &gEfiDriverConfiguration2ProtocolGuid, NULL},\r
dee34318 574\r
575//\r
576// the ones under this are GUID identified structs, not protocols\r
577//\r
578 {STRING_TOKEN(STR_FILE_INFO), &gEfiFileInfoGuid, NULL},\r
579 {STRING_TOKEN(STR_FILE_SYS_INFO), &gEfiFileSystemInfoGuid, NULL},\r
580\r
581//\r
582// the ones under this are misc GUIDS.\r
583//\r
584 {STRING_TOKEN(STR_EFI_GLOBAL_VARIABLE), &gEfiGlobalVariableGuid, NULL},\r
585\r
586//\r
587// UEFI 2.2\r
588//\r
589 {STRING_TOKEN(STR_IP6_SB), &gEfiIp6ServiceBindingProtocolGuid, NULL},\r
590 {STRING_TOKEN(STR_IP6), &gEfiIp6ProtocolGuid, NULL},\r
591 {STRING_TOKEN(STR_IP6_CONFIG), &gEfiIp6ConfigProtocolGuid, NULL},\r
592 {STRING_TOKEN(STR_MTFTP6_SB), &gEfiMtftp6ServiceBindingProtocolGuid, NULL},\r
593 {STRING_TOKEN(STR_MTFTP6), &gEfiMtftp6ProtocolGuid, NULL},\r
594 {STRING_TOKEN(STR_DHCP6_SB), &gEfiDhcp6ServiceBindingProtocolGuid, NULL},\r
595 {STRING_TOKEN(STR_DHCP6), &gEfiDhcp6ProtocolGuid, NULL},\r
596 {STRING_TOKEN(STR_UDP6_SB), &gEfiUdp6ServiceBindingProtocolGuid, NULL},\r
597 {STRING_TOKEN(STR_UDP6), &gEfiUdp6ProtocolGuid, NULL},\r
598 {STRING_TOKEN(STR_TCP6_SB), &gEfiTcp6ServiceBindingProtocolGuid, NULL},\r
599 {STRING_TOKEN(STR_TCP6), &gEfiTcp6ProtocolGuid, NULL},\r
600 {STRING_TOKEN(STR_VLAN_CONFIG), &gEfiVlanConfigProtocolGuid, NULL},\r
601 {STRING_TOKEN(STR_EAP), &gEfiEapProtocolGuid, NULL},\r
602 {STRING_TOKEN(STR_EAP_MGMT), &gEfiEapManagementProtocolGuid, NULL},\r
603 {STRING_TOKEN(STR_FTP4_SB), &gEfiFtp4ServiceBindingProtocolGuid, NULL},\r
604 {STRING_TOKEN(STR_FTP4), &gEfiFtp4ProtocolGuid, NULL},\r
605 {STRING_TOKEN(STR_IP_SEC_CONFIG), &gEfiIpSecConfigProtocolGuid, NULL},\r
606 {STRING_TOKEN(STR_DH), &gEfiDriverHealthProtocolGuid, NULL},\r
607 {STRING_TOKEN(STR_DEF_IMG_LOAD), &gEfiDeferredImageLoadProtocolGuid, NULL},\r
608 {STRING_TOKEN(STR_USER_CRED), &gEfiUserCredentialProtocolGuid, NULL},\r
609 {STRING_TOKEN(STR_USER_MNGR), &gEfiUserManagerProtocolGuid, NULL},\r
610 {STRING_TOKEN(STR_ATA_PASS_THRU), &gEfiAtaPassThruProtocolGuid, NULL},\r
611\r
612//\r
613// UEFI 2.3\r
614//\r
615 {STRING_TOKEN(STR_FW_MGMT), &gEfiFirmwareManagementProtocolGuid, NULL},\r
616 {STRING_TOKEN(STR_IP_SEC), &gEfiIpSecProtocolGuid, NULL},\r
617 {STRING_TOKEN(STR_IP_SEC2), &gEfiIpSec2ProtocolGuid, NULL},\r
618\r
619//\r
620// UEFI 2.3.1\r
621//\r
622 {STRING_TOKEN(STR_KMS), &gEfiKmsProtocolGuid, NULL},\r
623 {STRING_TOKEN(STR_BLK_IO2), &gEfiBlockIo2ProtocolGuid, NULL},\r
624 {STRING_TOKEN(STR_SSC), &gEfiStorageSecurityCommandProtocolGuid, NULL},\r
625 {STRING_TOKEN(STR_UC2), &gEfiUserCredential2ProtocolGuid, NULL},\r
626\r
627//\r
628// terminator\r
629//\r
a405b86d 630 {STRING_TOKEN(STR_UNKNOWN_DEVICE), NULL, NULL},\r
631};\r
632\r
633/**\r
634 Function to get the node for a protocol or struct from it's GUID.\r
635\r
636 if Guid is NULL, then ASSERT.\r
637\r
638 @param[in] Guid The GUID to look for the name of.\r
639\r
640 @return The node.\r
641**/\r
dee34318 642CONST GUID_INFO_BLOCK *\r
a405b86d 643EFIAPI\r
644InternalShellGetNodeFromGuid(\r
645 IN CONST EFI_GUID* Guid\r
646 )\r
647{\r
dee34318 648 CONST GUID_INFO_BLOCK *ListWalker;\r
a405b86d 649\r
650 ASSERT(Guid != NULL);\r
651\r
652 if (PcdGetBool(PcdShellIncludeNtGuids)) {\r
653 for (ListWalker = mGuidStringListNT ; ListWalker != NULL && ListWalker->GuidId != NULL ; ListWalker++) {\r
654 if (CompareGuid(ListWalker->GuidId, Guid)) {\r
655 return (ListWalker);\r
656 }\r
657 }\r
658 }\r
659 for (ListWalker = mGuidStringList ; ListWalker != NULL && ListWalker->GuidId != NULL ; ListWalker++) {\r
660 if (CompareGuid(ListWalker->GuidId, Guid)) {\r
661 return (ListWalker);\r
662 }\r
663 }\r
664 return (ListWalker);\r
665}\r
666\r
667/**\r
668 Function to get the name of a protocol or struct from it's GUID.\r
669\r
670 if Guid is NULL, then ASSERT.\r
671\r
672 @param[in] Guid The GUID to look for the name of.\r
673 @param[in] Lang The language to use.\r
674\r
675 @return pointer to string of the name. The caller\r
676 is responsible to free this memory.\r
677**/\r
678CHAR16*\r
679EFIAPI\r
680GetStringNameFromGuid(\r
681 IN CONST EFI_GUID *Guid,\r
682 IN CONST CHAR8 *Lang OPTIONAL\r
683 )\r
684{\r
dee34318 685 CONST GUID_INFO_BLOCK *Id;\r
a405b86d 686\r
687 Id = InternalShellGetNodeFromGuid(Guid);\r
688 return (HiiGetString(mHandleParsingHiiHandle, Id->StringId, Lang));\r
689}\r
690\r
691/**\r
692 Function to dump protocol information from a handle.\r
693\r
694 This function will return a allocated string buffer containing the\r
695 information. The caller is responsible for freeing the memory.\r
696\r
697 If Guid is NULL, ASSERT().\r
698 If TheHandle is NULL, ASSERT().\r
699\r
700 @param[in] TheHandle The handle to dump information from.\r
701 @param[in] Guid The GUID of the protocol to dump.\r
702 @param[in] Verbose TRUE for extra info. FALSE otherwise.\r
703\r
704 @return The pointer to string.\r
705 @retval NULL An error was encountered.\r
706**/\r
707CHAR16*\r
708EFIAPI\r
709GetProtocolInformationDump(\r
710 IN CONST EFI_HANDLE TheHandle,\r
711 IN CONST EFI_GUID *Guid,\r
712 IN CONST BOOLEAN Verbose\r
713 )\r
714{\r
dee34318 715 CONST GUID_INFO_BLOCK *Id;\r
a405b86d 716\r
717 ASSERT(TheHandle != NULL);\r
718 ASSERT(Guid != NULL);\r
719\r
720 if (TheHandle == NULL || Guid == NULL) {\r
721 return (NULL);\r
722 }\r
723\r
724 Id = InternalShellGetNodeFromGuid(Guid);\r
725 if (Id != NULL && Id->DumpInfo != NULL) {\r
726 return (Id->DumpInfo(TheHandle, Verbose));\r
727 }\r
728 return (NULL);\r
729}\r
730\r
731/**\r
732 Function to get the Guid for a protocol or struct based on it's string name.\r
733\r
734 @param[in] Name The pointer to the string name.\r
735 @param[in] Lang The pointer to the language code.\r
736 @param[in] Guid The pointer to the Guid.\r
737\r
738 @retval EFI_SUCCESS The operation was sucessful.\r
739**/\r
740EFI_STATUS\r
741EFIAPI\r
742GetGuidFromStringName(\r
743 IN CONST CHAR16 *Name,\r
744 IN CONST CHAR8 *Lang OPTIONAL,\r
745 IN EFI_GUID **Guid\r
746 )\r
747{\r
dee34318 748 CONST GUID_INFO_BLOCK *ListWalker;\r
a405b86d 749 CHAR16 *String;\r
750\r
751 ASSERT(Guid != NULL);\r
752 if (Guid == NULL) {\r
753 return (EFI_INVALID_PARAMETER);\r
754 }\r
755 *Guid = NULL;\r
756\r
757 if (PcdGetBool(PcdShellIncludeNtGuids)) {\r
758 for (ListWalker = mGuidStringListNT ; ListWalker != NULL && ListWalker->GuidId != NULL ; ListWalker++) {\r
759 String = HiiGetString(mHandleParsingHiiHandle, ListWalker->StringId, Lang);\r
760 if (Name != NULL && String != NULL && StrCmp(Name, String)==0) {\r
761 *Guid = ListWalker->GuidId;\r
762 }\r
763 SHELL_FREE_NON_NULL(String);\r
764 if (*Guid != NULL) {\r
765 return (EFI_SUCCESS);\r
766 }\r
767 }\r
768 }\r
769 for (ListWalker = mGuidStringList ; ListWalker != NULL && ListWalker->GuidId != NULL ; ListWalker++) {\r
770 String = HiiGetString(mHandleParsingHiiHandle, ListWalker->StringId, Lang);\r
771 if (Name != NULL && String != NULL && StrCmp(Name, String)==0) {\r
772 *Guid = ListWalker->GuidId;\r
773 }\r
774 SHELL_FREE_NON_NULL(String);\r
775 if (*Guid != NULL) {\r
776 return (EFI_SUCCESS);\r
777 }\r
778 }\r
779 return (EFI_NOT_FOUND);\r
780}\r
781\r
782/**\r
783 Function to retrieve the driver name (if possible) from the ComponentName or\r
784 ComponentName2 protocol\r
785\r
786 @param[in] TheHandle The driver handle to get the name of.\r
787 @param[in] Language The language to use.\r
788\r
789 @retval NULL The name could not be found.\r
790 @return A pointer to the string name. Do not de-allocate the memory.\r
791**/\r
792CONST CHAR16*\r
793EFIAPI\r
794GetStringNameFromHandle(\r
795 IN CONST EFI_HANDLE TheHandle,\r
796 IN CONST CHAR8 *Language\r
797 )\r
798{\r
799 EFI_COMPONENT_NAME2_PROTOCOL *CompNameStruct;\r
800 EFI_STATUS Status;\r
801 CHAR16 *RetVal;\r
802\r
803 Status = gBS->OpenProtocol(\r
804 TheHandle,\r
805 &gEfiComponentName2ProtocolGuid,\r
806 (VOID**)&CompNameStruct,\r
807 gImageHandle,\r
808 NULL,\r
809 EFI_OPEN_PROTOCOL_GET_PROTOCOL);\r
810 if (!EFI_ERROR(Status)) {\r
811 Status = CompNameStruct->GetDriverName(CompNameStruct, (CHAR8*)Language, &RetVal);\r
812 if (!EFI_ERROR(Status)) {\r
813 return (RetVal);\r
814 }\r
815 }\r
816 Status = gBS->OpenProtocol(\r
817 TheHandle,\r
818 &gEfiComponentNameProtocolGuid,\r
819 (VOID**)&CompNameStruct,\r
820 gImageHandle,\r
821 NULL,\r
822 EFI_OPEN_PROTOCOL_GET_PROTOCOL);\r
823 if (!EFI_ERROR(Status)) {\r
824 Status = CompNameStruct->GetDriverName(CompNameStruct, (CHAR8*)Language, &RetVal);\r
825 if (!EFI_ERROR(Status)) {\r
826 return (RetVal);\r
827 }\r
828 }\r
829 return (NULL);\r
830}\r
831\r
832/**\r
833 Function to initialize the file global mHandleList object for use in\r
834 vonverting handles to index and index to handle.\r
835\r
836 @retval EFI_SUCCESS The operation was successful.\r
837**/\r
838EFI_STATUS\r
839EFIAPI\r
840InternalShellInitHandleList(\r
841 VOID\r
842 )\r
843{\r
844 EFI_STATUS Status;\r
845 EFI_HANDLE *HandleBuffer;\r
846 UINTN HandleCount;\r
847 HANDLE_LIST *ListWalker;\r
848\r
849 if (mHandleList.NextIndex != 0) {\r
850 return EFI_SUCCESS;\r
851 }\r
852 InitializeListHead(&mHandleList.List.Link);\r
853 mHandleList.NextIndex = 1;\r
854 Status = gBS->LocateHandleBuffer (\r
855 AllHandles,\r
856 NULL,\r
857 NULL,\r
858 &HandleCount,\r
859 &HandleBuffer\r
860 );\r
861 ASSERT_EFI_ERROR(Status);\r
862 if (EFI_ERROR(Status)) {\r
863 return (Status);\r
864 }\r
865 for (mHandleList.NextIndex = 1 ; mHandleList.NextIndex <= HandleCount ; mHandleList.NextIndex++){\r
78ed876b 866 ListWalker = AllocateZeroPool(sizeof(HANDLE_LIST));\r
a405b86d 867 ASSERT(ListWalker != NULL);\r
868 ListWalker->TheHandle = HandleBuffer[mHandleList.NextIndex-1];\r
869 ListWalker->TheIndex = mHandleList.NextIndex;\r
870 InsertTailList(&mHandleList.List.Link,&ListWalker->Link);\r
871 }\r
872 FreePool(HandleBuffer);\r
873 return (EFI_SUCCESS);\r
874}\r
875\r
876/**\r
877 Function to retrieve the human-friendly index of a given handle. If the handle\r
878 does not have a index one will be automatically assigned. The index value is valid\r
879 until the termination of the shell application.\r
880\r
881 @param[in] TheHandle The handle to retrieve an index for.\r
882\r
883 @retval 0 A memory allocation failed.\r
884 @return The index of the handle.\r
885\r
886**/\r
887UINTN\r
888EFIAPI\r
889ConvertHandleToHandleIndex(\r
890 IN CONST EFI_HANDLE TheHandle\r
891 )\r
892{\r
893 HANDLE_LIST *ListWalker;\r
78ed876b 894 if (TheHandle == NULL) {\r
895 return 0;\r
896 }\r
a405b86d 897\r
898 InternalShellInitHandleList();\r
899\r
900 for (ListWalker = (HANDLE_LIST*)GetFirstNode(&mHandleList.List.Link)\r
901 ; !IsNull(&mHandleList.List.Link,&ListWalker->Link)\r
902 ; ListWalker = (HANDLE_LIST*)GetNextNode(&mHandleList.List.Link,&ListWalker->Link)\r
903 ){\r
904 if (ListWalker->TheHandle == TheHandle) {\r
905 return (ListWalker->TheIndex);\r
906 }\r
907 }\r
78ed876b 908 ListWalker = AllocateZeroPool(sizeof(HANDLE_LIST));\r
a405b86d 909 ASSERT(ListWalker != NULL);\r
910 ListWalker->TheHandle = TheHandle;\r
911 ListWalker->TheIndex = mHandleList.NextIndex++;\r
912 InsertTailList(&mHandleList.List.Link,&ListWalker->Link);\r
913 return (ListWalker->TheIndex);\r
914}\r
915\r
916\r
917\r
918/**\r
919 Function to retrieve the EFI_HANDLE from the human-friendly index.\r
920\r
921 @param[in] TheIndex The index to retrieve the EFI_HANDLE for.\r
922\r
923 @retval NULL The index was invalid.\r
924 @return The EFI_HANDLE that index represents.\r
925\r
926**/\r
927EFI_HANDLE\r
928EFIAPI\r
929ConvertHandleIndexToHandle(\r
930 IN CONST UINTN TheIndex\r
931 )\r
932{\r
933 HANDLE_LIST *ListWalker;\r
934\r
935 InternalShellInitHandleList();\r
936\r
937 if (TheIndex >= mHandleList.NextIndex) {\r
938 return (NULL);\r
939 }\r
940\r
941 for (ListWalker = (HANDLE_LIST*)GetFirstNode(&mHandleList.List.Link)\r
942 ; !IsNull(&mHandleList.List.Link,&ListWalker->Link)\r
943 ; ListWalker = (HANDLE_LIST*)GetNextNode(&mHandleList.List.Link,&ListWalker->Link)\r
944 ){\r
945 if (ListWalker->TheIndex == TheIndex) {\r
946 return (ListWalker->TheHandle);\r
947 }\r
948 }\r
949 return (NULL);\r
950}\r
951\r
952/**\r
953 Gets all the related EFI_HANDLEs based on the mask supplied.\r
954\r
955 This function scans all EFI_HANDLES in the UEFI environment's handle database\r
956 and returns the ones with the specified relationship (Mask) to the specified\r
957 controller handle.\r
958\r
959 If both DriverBindingHandle and ControllerHandle are NULL, then ASSERT.\r
960 If MatchingHandleCount is NULL, then ASSERT.\r
961\r
962 If MatchingHandleBuffer is not NULL upon a successful return the memory must be\r
963 caller freed.\r
964\r
965 @param[in] DriverBindingHandle The handle with Driver Binding protocol on it.\r
966 @param[in] ControllerHandle The handle with Device Path protocol on it.\r
967 @param[in] MatchingHandleCount The pointer to UINTN that specifies the number of HANDLES in\r
968 MatchingHandleBuffer.\r
969 @param[out] MatchingHandleBuffer On a successful return, a buffer of MatchingHandleCount\r
970 EFI_HANDLEs with a terminating NULL EFI_HANDLE.\r
971 @param[out] HandleType An array of type information.\r
972\r
973 @retval EFI_SUCCESS The operation was successful, and any related handles\r
974 are in MatchingHandleBuffer.\r
975 @retval EFI_NOT_FOUND No matching handles were found.\r
976 @retval EFI_INVALID_PARAMETER A parameter was invalid or out of range.\r
977**/\r
978EFI_STATUS\r
979EFIAPI\r
980ParseHandleDatabaseByRelationshipWithType (\r
981 IN CONST EFI_HANDLE DriverBindingHandle OPTIONAL,\r
982 IN CONST EFI_HANDLE ControllerHandle OPTIONAL,\r
983 IN UINTN *HandleCount,\r
984 OUT EFI_HANDLE **HandleBuffer,\r
985 OUT UINTN **HandleType\r
986 )\r
987{\r
988 EFI_STATUS Status;\r
989 UINTN HandleIndex;\r
990 EFI_GUID **ProtocolGuidArray;\r
991 UINTN ArrayCount;\r
992 UINTN ProtocolIndex;\r
993 EFI_OPEN_PROTOCOL_INFORMATION_ENTRY *OpenInfo;\r
994 UINTN OpenInfoCount;\r
995 UINTN OpenInfoIndex;\r
996 UINTN ChildIndex;\r
997\r
998 ASSERT(HandleCount != NULL);\r
999 ASSERT(HandleBuffer != NULL);\r
1000 ASSERT(HandleType != NULL);\r
1001 ASSERT(DriverBindingHandle != NULL || ControllerHandle != NULL);\r
1002\r
1003 *HandleCount = 0;\r
1004 *HandleBuffer = NULL;\r
1005 *HandleType = NULL;\r
1006\r
1007 //\r
1008 // Retrieve the list of all handles from the handle database\r
1009 //\r
1010 Status = gBS->LocateHandleBuffer (\r
1011 AllHandles,\r
1012 NULL,\r
1013 NULL,\r
1014 HandleCount,\r
1015 HandleBuffer\r
1016 );\r
1017 if (EFI_ERROR (Status)) {\r
1018 return (Status);\r
1019 }\r
1020\r
1021 *HandleType = AllocateZeroPool (*HandleCount * sizeof (UINTN));\r
1022 ASSERT(*HandleType != NULL);\r
1023\r
1024 for (HandleIndex = 0; HandleIndex < *HandleCount; HandleIndex++) {\r
1025 //\r
1026 // Retrieve the list of all the protocols on each handle\r
1027 //\r
1028 Status = gBS->ProtocolsPerHandle (\r
1029 (*HandleBuffer)[HandleIndex],\r
1030 &ProtocolGuidArray,\r
1031 &ArrayCount\r
1032 );\r
1033 if (!EFI_ERROR (Status)) {\r
1034\r
1035 for (ProtocolIndex = 0; ProtocolIndex < ArrayCount; ProtocolIndex++) {\r
1036\r
1037 //\r
1038 // Set the bit describing what this handle has\r
1039 //\r
1040 if (CompareGuid (ProtocolGuidArray[ProtocolIndex], &gEfiLoadedImageProtocolGuid) ) {\r
1041 (*HandleType)[HandleIndex] |= HR_IMAGE_HANDLE;\r
1042 } else if (CompareGuid (ProtocolGuidArray[ProtocolIndex], &gEfiDriverBindingProtocolGuid) ) {\r
1043 (*HandleType)[HandleIndex] |= HR_DRIVER_BINDING_HANDLE;\r
1044 } else if (CompareGuid (ProtocolGuidArray[ProtocolIndex], &gEfiDriverConfiguration2ProtocolGuid)) {\r
1045 (*HandleType)[HandleIndex] |= HR_DRIVER_CONFIGURATION_HANDLE;\r
1046 } else if (CompareGuid (ProtocolGuidArray[ProtocolIndex], &gEfiDriverConfigurationProtocolGuid) ) {\r
1047 (*HandleType)[HandleIndex] |= HR_DRIVER_CONFIGURATION_HANDLE;\r
1048 } else if (CompareGuid (ProtocolGuidArray[ProtocolIndex], &gEfiDriverDiagnostics2ProtocolGuid) ) {\r
1049 (*HandleType)[HandleIndex] |= HR_DRIVER_DIAGNOSTICS_HANDLE;\r
1050 } else if (CompareGuid (ProtocolGuidArray[ProtocolIndex], &gEfiDriverDiagnosticsProtocolGuid) ) {\r
1051 (*HandleType)[HandleIndex] |= HR_DRIVER_DIAGNOSTICS_HANDLE;\r
1052 } else if (CompareGuid (ProtocolGuidArray[ProtocolIndex], &gEfiComponentName2ProtocolGuid) ) {\r
1053 (*HandleType)[HandleIndex] |= HR_COMPONENT_NAME_HANDLE;\r
1054 } else if (CompareGuid (ProtocolGuidArray[ProtocolIndex], &gEfiComponentNameProtocolGuid) ) {\r
1055 (*HandleType)[HandleIndex] |= HR_COMPONENT_NAME_HANDLE;\r
1056 } else if (CompareGuid (ProtocolGuidArray[ProtocolIndex], &gEfiDevicePathProtocolGuid) ) {\r
1057 (*HandleType)[HandleIndex] |= HR_DEVICE_HANDLE;\r
1058 } else {\r
1059 DEBUG_CODE_BEGIN();\r
1060 ASSERT((*HandleType)[HandleIndex] == (*HandleType)[HandleIndex]);\r
1061 DEBUG_CODE_END();\r
1062 }\r
1063 //\r
1064 // Retrieve the list of agents that have opened each protocol\r
1065 //\r
1066 Status = gBS->OpenProtocolInformation (\r
1067 (*HandleBuffer)[HandleIndex],\r
1068 ProtocolGuidArray[ProtocolIndex],\r
1069 &OpenInfo,\r
1070 &OpenInfoCount\r
1071 );\r
1072 if (!EFI_ERROR (Status)) {\r
1073 for (OpenInfoIndex = 0; OpenInfoIndex < OpenInfoCount; OpenInfoIndex++) {\r
1074 if (DriverBindingHandle != NULL && OpenInfo[OpenInfoIndex].AgentHandle == DriverBindingHandle) {\r
1075 if ((OpenInfo[OpenInfoIndex].Attributes & EFI_OPEN_PROTOCOL_BY_DRIVER) == EFI_OPEN_PROTOCOL_BY_DRIVER) {\r
1076 (*HandleType)[HandleIndex] |= (HR_DEVICE_HANDLE | HR_CONTROLLER_HANDLE);\r
1077 }\r
1078 if (ControllerHandle != NULL && (*HandleBuffer)[HandleIndex] == ControllerHandle) {\r
1079 if ((OpenInfo[OpenInfoIndex].Attributes & EFI_OPEN_PROTOCOL_BY_CHILD_CONTROLLER) == EFI_OPEN_PROTOCOL_BY_CHILD_CONTROLLER) {\r
1080 for (ChildIndex = 0; ChildIndex < *HandleCount; ChildIndex++) {\r
1081 if ((*HandleBuffer)[ChildIndex] == OpenInfo[OpenInfoIndex].ControllerHandle) {\r
1082 (*HandleType)[ChildIndex] |= (HR_DEVICE_HANDLE | HR_CHILD_HANDLE);\r
1083 }\r
1084 }\r
1085 }\r
1086 }\r
1087 }\r
1088 if (DriverBindingHandle == NULL && OpenInfo[OpenInfoIndex].ControllerHandle == ControllerHandle) {\r
1089 if ((OpenInfo[OpenInfoIndex].Attributes & EFI_OPEN_PROTOCOL_BY_DRIVER) == EFI_OPEN_PROTOCOL_BY_DRIVER) {\r
1090 for (ChildIndex = 0; ChildIndex < *HandleCount; ChildIndex++) {\r
1091 if ((*HandleBuffer)[ChildIndex] == OpenInfo[OpenInfoIndex].AgentHandle) {\r
1092 (*HandleType)[ChildIndex] |= HR_DEVICE_DRIVER;\r
1093 }\r
1094 }\r
1095 }\r
1096 if ((OpenInfo[OpenInfoIndex].Attributes & EFI_OPEN_PROTOCOL_BY_CHILD_CONTROLLER) == EFI_OPEN_PROTOCOL_BY_CHILD_CONTROLLER) {\r
1097 (*HandleType)[HandleIndex] |= HR_PARENT_HANDLE;\r
1098 for (ChildIndex = 0; ChildIndex < *HandleCount; ChildIndex++) {\r
1099 if ((*HandleBuffer)[ChildIndex] == OpenInfo[OpenInfoIndex].AgentHandle) {\r
1100 (*HandleType)[ChildIndex] |= HR_BUS_DRIVER;\r
1101 }\r
1102 }\r
1103 }\r
1104 }\r
1105 }\r
1106\r
1107 FreePool (OpenInfo);\r
1108 }\r
1109 }\r
1110\r
1111 FreePool (ProtocolGuidArray);\r
1112 }\r
1113 }\r
1114\r
1115 if (EFI_ERROR(Status)) {\r
1116 if (*HandleType != NULL) {\r
1117 FreePool (*HandleType);\r
1118 }\r
1119 if (*HandleBuffer != NULL) {\r
1120 FreePool (*HandleBuffer);\r
1121 }\r
1122\r
1123 *HandleCount = 0;\r
1124 *HandleBuffer = NULL;\r
1125 *HandleType = NULL;\r
1126 }\r
1127\r
1128 return Status;\r
1129}\r
1130\r
1131/**\r
1132 Gets all the related EFI_HANDLEs based on the single EFI_HANDLE and the mask\r
1133 supplied.\r
1134\r
1135 This function will scan all EFI_HANDLES in the UEFI environment's handle database\r
1136 and return all the ones with the specified relationship (Mask) to the specified\r
1137 controller handle.\r
1138\r
1139 If both DriverBindingHandle and ControllerHandle are NULL, then ASSERT.\r
1140 If MatchingHandleCount is NULL, then ASSERT.\r
1141\r
1142 If MatchingHandleBuffer is not NULL upon a sucessful return the memory must be\r
1143 caller freed.\r
1144\r
1145 @param[in] DriverBindingHandle Handle to a object with Driver Binding protocol\r
1146 on it.\r
1147 @param[in] ControllerHandle Handle to a device with Device Path protocol on it.\r
1148 @param[in] Mask Mask of what relationship(s) is desired.\r
1149 @param[in] MatchingHandleCount Poitner to UINTN specifying number of HANDLES in\r
1150 MatchingHandleBuffer.\r
1151 @param[out] MatchingHandleBuffer On a sucessful return a buffer of MatchingHandleCount\r
1152 EFI_HANDLEs and a terminating NULL EFI_HANDLE.\r
1153\r
1154 @retval EFI_SUCCESS The operation was sucessful and any related handles\r
1155 are in MatchingHandleBuffer;\r
1156 @retval EFI_NOT_FOUND No matching handles were found.\r
1157 @retval EFI_INVALID_PARAMETER A parameter was invalid or out of range.\r
1158**/\r
1159EFI_STATUS\r
1160EFIAPI\r
1161ParseHandleDatabaseByRelationship (\r
1162 IN CONST EFI_HANDLE DriverBindingHandle OPTIONAL,\r
1163 IN CONST EFI_HANDLE ControllerHandle OPTIONAL,\r
1164 IN CONST UINTN Mask,\r
1165 IN UINTN *MatchingHandleCount,\r
1166 OUT EFI_HANDLE **MatchingHandleBuffer OPTIONAL\r
1167 )\r
1168{\r
1169 EFI_STATUS Status;\r
1170 UINTN HandleCount;\r
1171 EFI_HANDLE *HandleBuffer;\r
1172 UINTN *HandleType;\r
1173 UINTN HandleIndex;\r
1174\r
1175 ASSERT(MatchingHandleCount != NULL);\r
1176 ASSERT(DriverBindingHandle != NULL || ControllerHandle != NULL);\r
1177\r
1178 if ((Mask & HR_VALID_MASK) != Mask) {\r
1179 return (EFI_INVALID_PARAMETER);\r
1180 }\r
1181\r
1182 if ((Mask & HR_CHILD_HANDLE) != 0 && DriverBindingHandle == NULL) {\r
1183 return (EFI_INVALID_PARAMETER);\r
1184 }\r
1185\r
1186 *MatchingHandleCount = 0;\r
1187 if (MatchingHandleBuffer != NULL) {\r
1188 *MatchingHandleBuffer = NULL;\r
1189 }\r
1190\r
1191 HandleBuffer = NULL;\r
1192 HandleType = NULL;\r
1193\r
1194 Status = ParseHandleDatabaseByRelationshipWithType (\r
1195 DriverBindingHandle,\r
1196 ControllerHandle,\r
1197 &HandleCount,\r
1198 &HandleBuffer,\r
1199 &HandleType\r
1200 );\r
1201 if (!EFI_ERROR (Status)) {\r
1202 //\r
1203 // Count the number of handles that match the attributes in Mask\r
1204 //\r
1205 for (HandleIndex = 0; HandleIndex < HandleCount; HandleIndex++) {\r
1206 if ((HandleType[HandleIndex] & Mask) == Mask) {\r
1207 (*MatchingHandleCount)++;\r
1208 }\r
1209 }\r
1210 //\r
1211 // If no handles match the attributes in Mask then return EFI_NOT_FOUND\r
1212 //\r
1213 if (*MatchingHandleCount == 0) {\r
1214 Status = EFI_NOT_FOUND;\r
1215 } else {\r
1216\r
1217 if (MatchingHandleBuffer == NULL) {\r
1218 //\r
1219 // Someone just wanted the count...\r
1220 //\r
1221 Status = EFI_SUCCESS;\r
1222 } else {\r
1223 //\r
1224 // Allocate a handle buffer for the number of handles that matched the attributes in Mask\r
1225 //\r
78ed876b 1226 *MatchingHandleBuffer = AllocateZeroPool ((*MatchingHandleCount +1)* sizeof (EFI_HANDLE));\r
a405b86d 1227 ASSERT(*MatchingHandleBuffer != NULL);\r
1228\r
1229 for (HandleIndex = 0,*MatchingHandleCount = 0\r
1230 ; HandleIndex < HandleCount\r
1231 ; HandleIndex++\r
1232 ){\r
1233 //\r
1234 // Fill the allocated buffer with the handles that matched the attributes in Mask\r
1235 //\r
1236 if ((HandleType[HandleIndex] & Mask) == Mask) {\r
1237 (*MatchingHandleBuffer)[(*MatchingHandleCount)++] = HandleBuffer[HandleIndex];\r
1238 }\r
1239 }\r
1240\r
1241 //\r
1242 // Make the last one NULL\r
1243 //\r
1244 (*MatchingHandleBuffer)[*MatchingHandleCount] = NULL;\r
1245\r
1246 Status = EFI_SUCCESS;\r
1247 } // MacthingHandleBuffer == NULL (ELSE)\r
1248 } // *MatchingHandleCount == 0 (ELSE)\r
1249 } // no error on ParseHandleDatabaseByRelationshipWithType\r
1250\r
1251 if (HandleBuffer != NULL) {\r
1252 FreePool (HandleBuffer);\r
1253 }\r
1254\r
1255 if (HandleType != NULL) {\r
1256 FreePool (HandleType);\r
1257 }\r
1258\r
1259 return Status;\r
1260}\r
1261\r
1262/**\r
1263 Gets handles for any child controllers of the passed in controller.\r
1264\r
1265 @param[in] ControllerHandle The handle of the "parent controller"\r
1266 @param[in] MatchingHandleCount Pointer to the number of handles in\r
1267 MatchingHandleBuffer on return.\r
1268 @param[out] MatchingHandleBuffer Buffer containing handles on a successful\r
1269 return.\r
1270\r
1271\r
1272 @retval EFI_SUCCESS The operation was sucessful.\r
1273**/\r
1274EFI_STATUS\r
1275EFIAPI\r
1276ParseHandleDatabaseForChildControllers(\r
1277 IN CONST EFI_HANDLE ControllerHandle,\r
1278 IN UINTN *MatchingHandleCount,\r
1279 OUT EFI_HANDLE **MatchingHandleBuffer OPTIONAL\r
1280 )\r
1281{\r
1282 EFI_STATUS Status;\r
78ed876b 1283// UINTN HandleIndex;\r
a405b86d 1284 UINTN DriverBindingHandleCount;\r
1285 EFI_HANDLE *DriverBindingHandleBuffer;\r
1286 UINTN DriverBindingHandleIndex;\r
1287 UINTN ChildControllerHandleCount;\r
1288 EFI_HANDLE *ChildControllerHandleBuffer;\r
1289 UINTN ChildControllerHandleIndex;\r
78ed876b 1290// BOOLEAN Found;\r
a405b86d 1291 EFI_HANDLE *HandleBufferForReturn;\r
1292\r
ff51746b 1293 if (MatchingHandleCount == NULL) {\r
1294 return (EFI_INVALID_PARAMETER);\r
1295 }\r
64d753f1 1296 *MatchingHandleCount = 0;\r
a405b86d 1297\r
1298 Status = PARSE_HANDLE_DATABASE_UEFI_DRIVERS (\r
1299 ControllerHandle,\r
1300 &DriverBindingHandleCount,\r
1301 &DriverBindingHandleBuffer\r
1302 );\r
1303 if (EFI_ERROR (Status)) {\r
1304 return Status;\r
1305 }\r
1306\r
ff51746b 1307 //\r
1308 // Get a buffer big enough for all the controllers.\r
1309 //\r
1310 HandleBufferForReturn = GetHandleListByProtocol(&gEfiDevicePathProtocolGuid);\r
a405b86d 1311 if (HandleBufferForReturn == NULL) {\r
1312 FreePool (DriverBindingHandleBuffer);\r
ff51746b 1313 return (EFI_NOT_FOUND);\r
a405b86d 1314 }\r
1315\r
a405b86d 1316 for (DriverBindingHandleIndex = 0; DriverBindingHandleIndex < DriverBindingHandleCount; DriverBindingHandleIndex++) {\r
1317 Status = PARSE_HANDLE_DATABASE_MANAGED_CHILDREN (\r
1318 DriverBindingHandleBuffer[DriverBindingHandleIndex],\r
1319 ControllerHandle,\r
1320 &ChildControllerHandleCount,\r
1321 &ChildControllerHandleBuffer\r
1322 );\r
1323 if (EFI_ERROR (Status)) {\r
1324 continue;\r
1325 }\r
1326\r
1327 for (ChildControllerHandleIndex = 0;\r
1328 ChildControllerHandleIndex < ChildControllerHandleCount;\r
1329 ChildControllerHandleIndex++\r
1330 ) {\r
78ed876b 1331// Found = FALSE;\r
1332 HandleBufferForReturn[(*MatchingHandleCount)++] = ChildControllerHandleBuffer[ChildControllerHandleIndex];\r
1333// for (HandleIndex = 0; HandleBufferForReturn[HandleIndex] != NULL; HandleIndex++) {\r
1334// if (HandleBufferForReturn[HandleIndex] == ChildControllerHandleBuffer[ChildControllerHandleIndex]) {\r
1335// Found = TRUE;\r
1336// break;\r
1337// }\r
1338// }\r
1339\r
1340// if (Found) {\r
1341// HandleBufferForReturn[(*MatchingHandleCount)++] = ChildControllerHandleBuffer[ChildControllerHandleIndex];\r
1342// }\r
a405b86d 1343 }\r
1344\r
1345 FreePool (ChildControllerHandleBuffer);\r
1346 }\r
1347\r
1348 FreePool (DriverBindingHandleBuffer);\r
1349\r
1350 if (MatchingHandleBuffer != NULL) {\r
1351 *MatchingHandleBuffer = HandleBufferForReturn;\r
1352 } else {\r
1353 FreePool(HandleBufferForReturn);\r
1354 }\r
1355\r
1356 return (EFI_SUCCESS);\r
1357}\r
1358\r
1359/**\r
1360 Appends 1 buffer to another buffer. This will re-allocate the destination buffer\r
1361 if necessary to fit all of the data.\r
1362\r
1363 If DestinationBuffer is NULL, then ASSERT().\r
1364\r
4ff7e37b
ED
1365 @param[in, out] DestinationBuffer The pointer to the pointer to the buffer to append onto.\r
1366 @param[in, out] DestinationSize The pointer to the size of DestinationBuffer.\r
1367 @param[in] SourceBuffer The pointer to the buffer to append onto DestinationBuffer.\r
1368 @param[in] SourceSize The number of bytes of SourceBuffer to append.\r
a405b86d 1369\r
1370 @retval NULL A memory allocation failed.\r
1371 @retval NULL A parameter was invalid.\r
1372 @return A pointer to (*DestinationBuffer).\r
1373**/\r
1374VOID*\r
1375EFIAPI\r
1376BuffernCatGrow (\r
1377 IN OUT VOID **DestinationBuffer,\r
1378 IN OUT UINTN *DestinationSize,\r
1379 IN VOID *SourceBuffer,\r
1380 IN UINTN SourceSize\r
1381 )\r
1382{\r
1383 UINTN LocalDestinationSize;\r
1384 UINTN LocalDestinationFinalSize;\r
1385\r
1386 ASSERT(DestinationBuffer != NULL);\r
1387\r
1388 if (SourceSize == 0 || SourceBuffer == NULL) {\r
1389 return (*DestinationBuffer);\r
1390 }\r
1391\r
1392 if (DestinationSize == NULL) {\r
1393 LocalDestinationSize = 0;\r
1394 } else {\r
1395 LocalDestinationSize = *DestinationSize;\r
1396 }\r
1397\r
1398 LocalDestinationFinalSize = LocalDestinationSize + SourceSize;\r
1399\r
1400 if (DestinationSize != NULL) {\r
1401 *DestinationSize = LocalDestinationSize;\r
1402 }\r
1403\r
1404 if (LocalDestinationSize == 0) {\r
1405 // allcoate\r
78ed876b 1406 *DestinationBuffer = AllocateZeroPool(LocalDestinationFinalSize);\r
a405b86d 1407 } else {\r
1408 // reallocate\r
1409 *DestinationBuffer = ReallocatePool(LocalDestinationSize, LocalDestinationFinalSize, *DestinationBuffer);\r
1410 }\r
1411\r
1412 ASSERT(*DestinationBuffer != NULL);\r
1413\r
1414 // copy\r
1415 return (CopyMem(((UINT8*)(*DestinationBuffer)) + LocalDestinationSize, SourceBuffer, SourceSize));\r
1416}\r
1417\r
1418/**\r
1419 Gets handles for any child devices produced by the passed in driver.\r
1420\r
1421 @param[in] DriverHandle The handle of the driver.\r
1422 @param[in] MatchingHandleCount Pointer to the number of handles in\r
1423 MatchingHandleBuffer on return.\r
1424 @param[out] MatchingHandleBuffer Buffer containing handles on a successful\r
1425 return.\r
1426 @retval EFI_SUCCESS The operation was sucessful.\r
1427 @sa ParseHandleDatabaseByRelationship\r
1428**/\r
1429EFI_STATUS\r
1430EFIAPI\r
1431ParseHandleDatabaseForChildDevices(\r
1432 IN CONST EFI_HANDLE DriverHandle,\r
1433 IN UINTN *MatchingHandleCount,\r
1434 OUT EFI_HANDLE **MatchingHandleBuffer OPTIONAL\r
1435 )\r
1436{\r
1437 EFI_HANDLE *Buffer;\r
1438 EFI_HANDLE *Buffer2;\r
1439 UINTN Count1;\r
1440 UINTN Count2;\r
1441 UINTN HandleIndex;\r
1442 EFI_STATUS Status;\r
1443 UINTN HandleBufferSize;\r
1444\r
1445 ASSERT(MatchingHandleCount != NULL);\r
1446\r
1447 HandleBufferSize = 0;\r
1448 Buffer = NULL;\r
1449 Buffer2 = NULL;\r
1450 *MatchingHandleCount = 0;\r
1451\r
1452 Status = PARSE_HANDLE_DATABASE_DEVICES (\r
1453 DriverHandle,\r
1454 &Count1,\r
1455 &Buffer\r
1456 );\r
1457 if (!EFI_ERROR (Status)) {\r
1458 for (HandleIndex = 0; HandleIndex < Count1; HandleIndex++) {\r
1459 //\r
1460 // now find the children\r
1461 //\r
1462 Status = PARSE_HANDLE_DATABASE_MANAGED_CHILDREN (\r
1463 DriverHandle,\r
1464 Buffer[HandleIndex],\r
1465 &Count2,\r
1466 &Buffer2\r
1467 );\r
1468 if (EFI_ERROR(Status)) {\r
1469 break;\r
1470 }\r
1471 //\r
1472 // save out required and optional data elements\r
1473 //\r
1474 *MatchingHandleCount += Count2;\r
1475 if (MatchingHandleBuffer != NULL) {\r
1476 *MatchingHandleBuffer = BuffernCatGrow((VOID**)MatchingHandleBuffer, &HandleBufferSize, Buffer2, Count2 * sizeof(Buffer2[0]));\r
1477 }\r
1478\r
1479 //\r
1480 // free the memory\r
1481 //\r
1482 if (Buffer2 != NULL) {\r
1483 FreePool(Buffer2);\r
1484 }\r
1485 }\r
1486 }\r
1487\r
1488 if (Buffer != NULL) {\r
1489 FreePool(Buffer);\r
1490 }\r
1491 return (Status);\r
1492}\r
1493\r
1494/**\r
1495 Function to get all handles that support a given protocol or all handles.\r
1496\r
1497 @param[in] ProtocolGuid The guid of the protocol to get handles for. If NULL\r
1498 then the function will return all handles.\r
1499\r
1500 @retval NULL A memory allocation failed.\r
1501 @return A NULL terminated list of handles.\r
1502**/\r
1503EFI_HANDLE*\r
1504EFIAPI\r
40d7a9cf 1505GetHandleListByProtocol (\r
a405b86d 1506 IN CONST EFI_GUID *ProtocolGuid OPTIONAL\r
1507 )\r
1508{\r
1509 EFI_HANDLE *HandleList;\r
1510 UINTN Size;\r
1511 EFI_STATUS Status;\r
1512\r
1513 Size = 0;\r
1514 HandleList = NULL;\r
1515\r
1516 //\r
1517 // We cannot use LocateHandleBuffer since we need that NULL item on the ends of the list!\r
1518 //\r
1519 if (ProtocolGuid == NULL) {\r
1520 Status = gBS->LocateHandle(AllHandles, NULL, NULL, &Size, HandleList);\r
1521 if (Status == EFI_BUFFER_TOO_SMALL) {\r
78ed876b 1522 HandleList = AllocateZeroPool(Size + sizeof(EFI_HANDLE));\r
40d7a9cf 1523 if (HandleList == NULL) {\r
1524 return (NULL);\r
1525 }\r
a405b86d 1526 Status = gBS->LocateHandle(AllHandles, NULL, NULL, &Size, HandleList);\r
1527 HandleList[Size/sizeof(EFI_HANDLE)] = NULL;\r
1528 }\r
1529 } else {\r
1530 Status = gBS->LocateHandle(ByProtocol, (EFI_GUID*)ProtocolGuid, NULL, &Size, HandleList);\r
1531 if (Status == EFI_BUFFER_TOO_SMALL) {\r
78ed876b 1532 HandleList = AllocateZeroPool(Size + sizeof(EFI_HANDLE));\r
40d7a9cf 1533 if (HandleList == NULL) {\r
1534 return (NULL);\r
1535 }\r
a405b86d 1536 Status = gBS->LocateHandle(ByProtocol, (EFI_GUID*)ProtocolGuid, NULL, &Size, HandleList);\r
1537 HandleList[Size/sizeof(EFI_HANDLE)] = NULL;\r
1538 }\r
1539 }\r
1540 if (EFI_ERROR(Status)) {\r
1541 if (HandleList != NULL) {\r
1542 FreePool(HandleList);\r
1543 }\r
1544 return (NULL);\r
1545 }\r
1546 return (HandleList);\r
1547}\r
1548\r
1549/**\r
1550 Function to get all handles that support some protocols.\r
1551\r
1552 @param[in] ProtocolGuids A NULL terminated list of protocol GUIDs.\r
1553\r
1554 @retval NULL A memory allocation failed.\r
ff51746b 1555 @retval NULL ProtocolGuids was NULL.\r
1556 @return A NULL terminated list of EFI_HANDLEs.\r
a405b86d 1557**/\r
1558EFI_HANDLE*\r
1559EFIAPI\r
40d7a9cf 1560GetHandleListByProtocolList (\r
a405b86d 1561 IN CONST EFI_GUID **ProtocolGuids\r
1562 )\r
1563{\r
1564 EFI_HANDLE *HandleList;\r
1565 UINTN Size;\r
1566 UINTN TotalSize;\r
40d7a9cf 1567 UINTN TempSize;\r
a405b86d 1568 EFI_STATUS Status;\r
1569 CONST EFI_GUID **GuidWalker;\r
1570 EFI_HANDLE *HandleWalker1;\r
1571 EFI_HANDLE *HandleWalker2;\r
1572\r
1573 Size = 0;\r
1574 HandleList = NULL;\r
1575 TotalSize = sizeof(EFI_HANDLE);\r
1576\r
1577 for (GuidWalker = ProtocolGuids ; GuidWalker != NULL && *GuidWalker != NULL ; GuidWalker++,Size = 0){\r
1578 Status = gBS->LocateHandle(ByProtocol, (EFI_GUID*)(*GuidWalker), NULL, &Size, NULL);\r
1579 if (Status == EFI_BUFFER_TOO_SMALL) {\r
1580 TotalSize += Size;\r
1581 }\r
1582 }\r
40d7a9cf 1583\r
1584 //\r
1585 // No handles were found... \r
1586 //\r
1587 if (TotalSize == sizeof(EFI_HANDLE)) {\r
1588 return (NULL);\r
1589 }\r
1590\r
1591 HandleList = AllocateZeroPool(TotalSize);\r
a405b86d 1592 if (HandleList == NULL) {\r
1593 return (NULL);\r
1594 }\r
1595\r
1596 Size = 0;\r
1597 for (GuidWalker = ProtocolGuids ; GuidWalker != NULL && *GuidWalker != NULL ; GuidWalker++){\r
40d7a9cf 1598 TempSize = TotalSize - Size;\r
ff51746b 1599 Status = gBS->LocateHandle(ByProtocol, (EFI_GUID*)(*GuidWalker), NULL, &TempSize, HandleList+(Size/sizeof(EFI_HANDLE)));\r
40d7a9cf 1600\r
1601 //\r
1602 // Allow for missing protocols... Only update the 'used' size upon success.\r
1603 //\r
1604 if (!EFI_ERROR(Status)) {\r
ff51746b 1605 Size += TempSize;\r
40d7a9cf 1606 }\r
a405b86d 1607 }\r
ff51746b 1608 ASSERT(HandleList[(TotalSize/sizeof(EFI_HANDLE))-1] == NULL);\r
a405b86d 1609\r
1610 for (HandleWalker1 = HandleList ; HandleWalker1 != NULL && *HandleWalker1 != NULL ; HandleWalker1++) {\r
1611 for (HandleWalker2 = HandleWalker1 + 1; HandleWalker2 != NULL && *HandleWalker2 != NULL ; HandleWalker2++) {\r
1612 if (*HandleWalker1 == *HandleWalker2) {\r
1613 //\r
1614 // copy memory back 1 handle width.\r
1615 //\r
1616 CopyMem(HandleWalker2, HandleWalker2 + 1, TotalSize - ((HandleWalker2-HandleList+1)*sizeof(EFI_HANDLE)));\r
1617 }\r
1618 }\r
1619 }\r
1620\r
1621 return (HandleList);\r
1622}\r
1623\r
1624\r
1625\r
1626\r
1627\r
1628\r
1629\r
1630\r
1631\r
1632\r