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13d40edd 1/** @file\r
2 DevicePathFromText protocol as defined in the UEFI 2.0 specification.\r
95276127 3\r
7795c8f9 4Copyright (c) 2013 - 2015, Intel Corporation. All rights reserved.<BR>\r
e5eed7d3 5This program and the accompanying materials\r
13d40edd 6are licensed and made available under the terms and conditions of the BSD License\r
7which accompanies this distribution. The full text of the license may be found at\r
8http://opensource.org/licenses/bsd-license.php\r
95276127 9\r
13d40edd 10THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
11WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
95276127 12\r
13d40edd 13**/\r
95276127 14\r
4d0a30a4 15#include "UefiDevicePathLib.h"\r
95276127 16\r
572f5d8a 17/**\r
95276127 18\r
572f5d8a 19 Duplicates a string.\r
95276127 20\r
572f5d8a 21 @param Src Source string.\r
95276127 22\r
572f5d8a 23 @return The duplicated string.\r
24\r
25**/\r
26CHAR16 *\r
4d0a30a4 27UefiDevicePathLibStrDuplicate (\r
572f5d8a 28 IN CONST CHAR16 *Src\r
29 )\r
95276127 30{\r
572f5d8a 31 return AllocateCopyPool (StrSize (Src), Src);\r
32}\r
95276127 33\r
572f5d8a 34/**\r
95276127 35\r
572f5d8a 36 Get parameter in a pair of parentheses follow the given node name.\r
37 For example, given the "Pci(0,1)" and NodeName "Pci", it returns "0,1".\r
95276127 38\r
572f5d8a 39 @param Str Device Path Text.\r
40 @param NodeName Name of the node.\r
95276127 41\r
572f5d8a 42 @return Parameter text for the node.\r
43\r
44**/\r
95276127 45CHAR16 *\r
46GetParamByNodeName (\r
47 IN CHAR16 *Str,\r
48 IN CHAR16 *NodeName\r
49 )\r
95276127 50{\r
51 CHAR16 *ParamStr;\r
52 CHAR16 *StrPointer;\r
53 UINTN NodeNameLength;\r
54 UINTN ParameterLength;\r
55\r
56 //\r
57 // Check whether the node name matchs\r
58 //\r
59 NodeNameLength = StrLen (NodeName);\r
4d0a30a4 60 if (StrnCmp (Str, NodeName, NodeNameLength) != 0) {\r
95276127 61 return NULL;\r
62 }\r
63\r
64 ParamStr = Str + NodeNameLength;\r
65 if (!IS_LEFT_PARENTH (*ParamStr)) {\r
66 return NULL;\r
67 }\r
68\r
69 //\r
70 // Skip the found '(' and find first occurrence of ')'\r
71 //\r
72 ParamStr++;\r
73 ParameterLength = 0;\r
74 StrPointer = ParamStr;\r
75 while (!IS_NULL (*StrPointer)) {\r
76 if (IS_RIGHT_PARENTH (*StrPointer)) {\r
77 break;\r
78 }\r
79 StrPointer++;\r
80 ParameterLength++;\r
81 }\r
82 if (IS_NULL (*StrPointer)) {\r
83 //\r
84 // ')' not found\r
85 //\r
86 return NULL;\r
87 }\r
88\r
89 ParamStr = AllocateCopyPool ((ParameterLength + 1) * sizeof (CHAR16), ParamStr);\r
90 if (ParamStr == NULL) {\r
91 return NULL;\r
92 }\r
93 //\r
94 // Terminate the parameter string\r
95 //\r
96 ParamStr[ParameterLength] = L'\0';\r
97\r
98 return ParamStr;\r
99}\r
100\r
572f5d8a 101/**\r
102 Gets current sub-string from a string list, before return\r
103 the list header is moved to next sub-string. The sub-string is separated\r
104 by the specified character. For example, the separator is ',', the string\r
105 list is "2,0,3", it returns "2", the remain list move to "0,3"\r
106\r
107 @param List A string list separated by the specified separator\r
108 @param Separator The separator character\r
109\r
110 @return A pointer to the current sub-string\r
111\r
112**/\r
95276127 113CHAR16 *\r
114SplitStr (\r
115 IN OUT CHAR16 **List,\r
116 IN CHAR16 Separator\r
117 )\r
95276127 118{\r
119 CHAR16 *Str;\r
120 CHAR16 *ReturnStr;\r
121\r
122 Str = *List;\r
123 ReturnStr = Str;\r
124\r
125 if (IS_NULL (*Str)) {\r
126 return ReturnStr;\r
127 }\r
128\r
129 //\r
130 // Find first occurrence of the separator\r
131 //\r
132 while (!IS_NULL (*Str)) {\r
133 if (*Str == Separator) {\r
134 break;\r
135 }\r
136 Str++;\r
137 }\r
138\r
139 if (*Str == Separator) {\r
140 //\r
141 // Find a sub-string, terminate it\r
142 //\r
143 *Str = L'\0';\r
144 Str++;\r
145 }\r
146\r
147 //\r
148 // Move to next sub-string\r
149 //\r
150 *List = Str;\r
151\r
152 return ReturnStr;\r
153}\r
154\r
572f5d8a 155/**\r
156 Gets the next parameter string from the list.\r
157\r
158 @param List A string list separated by the specified separator\r
159\r
160 @return A pointer to the current sub-string\r
161\r
162**/\r
95276127 163CHAR16 *\r
164GetNextParamStr (\r
165 IN OUT CHAR16 **List\r
166 )\r
167{\r
168 //\r
169 // The separator is comma\r
170 //\r
171 return SplitStr (List, L',');\r
172}\r
173\r
572f5d8a 174/**\r
175 Get one device node from entire device path text.\r
176\r
177 @param DevicePath On input, the current Device Path node; on output, the next device path node\r
178 @param IsInstanceEnd This node is the end of a device path instance\r
179\r
180 @return A device node text or NULL if no more device node available\r
181\r
182**/\r
95276127 183CHAR16 *\r
184GetNextDeviceNodeStr (\r
185 IN OUT CHAR16 **DevicePath,\r
186 OUT BOOLEAN *IsInstanceEnd\r
187 )\r
95276127 188{\r
189 CHAR16 *Str;\r
190 CHAR16 *ReturnStr;\r
191 UINTN ParenthesesStack;\r
192\r
193 Str = *DevicePath;\r
194 if (IS_NULL (*Str)) {\r
195 return NULL;\r
196 }\r
197\r
198 //\r
199 // Skip the leading '/', '(', ')' and ','\r
200 //\r
201 while (!IS_NULL (*Str)) {\r
202 if (!IS_SLASH (*Str) &&\r
203 !IS_COMMA (*Str) &&\r
204 !IS_LEFT_PARENTH (*Str) &&\r
205 !IS_RIGHT_PARENTH (*Str)) {\r
206 break;\r
207 }\r
208 Str++;\r
209 }\r
210\r
211 ReturnStr = Str;\r
212\r
213 //\r
214 // Scan for the separator of this device node, '/' or ','\r
215 //\r
216 ParenthesesStack = 0;\r
217 while (!IS_NULL (*Str)) {\r
218 if ((IS_COMMA (*Str) || IS_SLASH (*Str)) && (ParenthesesStack == 0)) {\r
219 break;\r
220 }\r
221\r
222 if (IS_LEFT_PARENTH (*Str)) {\r
223 ParenthesesStack++;\r
224 } else if (IS_RIGHT_PARENTH (*Str)) {\r
225 ParenthesesStack--;\r
226 }\r
227\r
228 Str++;\r
229 }\r
230\r
231 if (ParenthesesStack != 0) {\r
232 //\r
233 // The '(' doesn't pair with ')', invalid device path text\r
234 //\r
235 return NULL;\r
236 }\r
237\r
238 if (IS_COMMA (*Str)) {\r
239 *IsInstanceEnd = TRUE;\r
240 *Str = L'\0';\r
241 Str++;\r
242 } else {\r
243 *IsInstanceEnd = FALSE;\r
244 if (!IS_NULL (*Str)) {\r
245 *Str = L'\0';\r
246 Str++;\r
247 }\r
248 }\r
249\r
250 *DevicePath = Str;\r
251\r
252 return ReturnStr;\r
253}\r
254\r
95276127 255\r
572f5d8a 256/**\r
4d0a30a4 257 Return whether the integer string is a hex string.\r
572f5d8a 258\r
259 @param Str The integer string\r
572f5d8a 260\r
4d0a30a4
RN
261 @retval TRUE Hex string\r
262 @retval FALSE Decimal string\r
572f5d8a 263\r
264**/\r
4d0a30a4
RN
265BOOLEAN\r
266IsHexStr (\r
267 IN CHAR16 *Str\r
95276127 268 )\r
95276127 269{\r
270 //\r
271 // skip preceeding white space\r
272 //\r
4d0a30a4
RN
273 while ((*Str != 0) && *Str == L' ') {\r
274 Str ++;\r
95276127 275 }\r
276 //\r
277 // skip preceeding zeros\r
278 //\r
4d0a30a4
RN
279 while ((*Str != 0) && *Str == L'0') {\r
280 Str ++;\r
cf40f28a 281 }\r
4d0a30a4
RN
282 \r
283 return (BOOLEAN) (*Str == L'x' || *Str == L'X');\r
cf40f28a 284}\r
285\r
572f5d8a 286/**\r
cf40f28a 287\r
288 Convert integer string to uint.\r
289\r
5755841f 290 @param Str The integer string. If leading with "0x" or "0X", it's hexadecimal.\r
cf40f28a 291\r
572f5d8a 292 @return A UINTN value represented by Str\r
cf40f28a 293\r
572f5d8a 294**/\r
295UINTN\r
296Strtoi (\r
297 IN CHAR16 *Str\r
298 )\r
cf40f28a 299{\r
4d0a30a4
RN
300 if (IsHexStr (Str)) {\r
301 return StrHexToUintn (Str);\r
cf40f28a 302 } else {\r
4d0a30a4 303 return StrDecimalToUintn (Str);\r
cf40f28a 304 }\r
305}\r
306\r
572f5d8a 307/**\r
cf40f28a 308\r
309 Convert integer string to 64 bit data.\r
310\r
5755841f 311 @param Str The integer string. If leading with "0x" or "0X", it's hexadecimal.\r
572f5d8a 312 @param Data A pointer to the UINT64 value represented by Str\r
cf40f28a 313\r
572f5d8a 314**/\r
315VOID\r
316Strtoi64 (\r
317 IN CHAR16 *Str,\r
318 OUT UINT64 *Data\r
319 )\r
cf40f28a 320{\r
4d0a30a4
RN
321 if (IsHexStr (Str)) {\r
322 *Data = StrHexToUint64 (Str);\r
cf40f28a 323 } else {\r
4d0a30a4 324 *Data = StrDecimalToUint64 (Str);\r
cf40f28a 325 }\r
326}\r
327\r
572f5d8a 328/**\r
329 Converts a list of string to a specified buffer.\r
330\r
331 @param Buf The output buffer that contains the string.\r
332 @param BufferLength The length of the buffer\r
333 @param Str The input string that contains the hex number\r
334\r
335 @retval EFI_SUCCESS The string was successfully converted to the buffer.\r
336\r
337**/\r
338EFI_STATUS\r
95276127 339StrToBuf (\r
340 OUT UINT8 *Buf,\r
341 IN UINTN BufferLength,\r
342 IN CHAR16 *Str\r
343 )\r
344{\r
345 UINTN Index;\r
346 UINTN StrLength;\r
347 UINT8 Digit;\r
348 UINT8 Byte;\r
349\r
6ee5bbdd 350 Digit = 0;\r
351\r
95276127 352 //\r
353 // Two hex char make up one byte\r
354 //\r
355 StrLength = BufferLength * sizeof (CHAR16);\r
356\r
357 for(Index = 0; Index < StrLength; Index++, Str++) {\r
358\r
ac7e320c
LG
359 if ((*Str >= L'a') && (*Str <= L'f')) {\r
360 Digit = (UINT8) (*Str - L'a' + 0x0A);\r
361 } else if ((*Str >= L'A') && (*Str <= L'F')) {\r
362 Digit = (UINT8) (*Str - L'A' + 0x0A);\r
363 } else if ((*Str >= L'0') && (*Str <= L'9')) {\r
364 Digit = (UINT8) (*Str - L'0');\r
365 } else {\r
366 return EFI_INVALID_PARAMETER;\r
367 }\r
95276127 368\r
369 //\r
5755841f 370 // For odd characters, write the upper nibble for each buffer byte,\r
95276127 371 // and for even characters, the lower nibble.\r
372 //\r
373 if ((Index & 1) == 0) {\r
374 Byte = (UINT8) (Digit << 4);\r
375 } else {\r
376 Byte = Buf[Index / 2];\r
377 Byte &= 0xF0;\r
378 Byte = (UINT8) (Byte | Digit);\r
379 }\r
380\r
381 Buf[Index / 2] = Byte;\r
382 }\r
383\r
384 return EFI_SUCCESS;\r
385}\r
386\r
572f5d8a 387/**\r
388 Converts a string to GUID value.\r
ac7e320c 389 Guid Format is xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx\r
572f5d8a 390\r
391 @param Str The registry format GUID string that contains the GUID value.\r
392 @param Guid A pointer to the converted GUID value.\r
393\r
394 @retval EFI_SUCCESS The GUID string was successfully converted to the GUID value.\r
395 @retval EFI_UNSUPPORTED The input string is not in registry format.\r
396 @return others Some error occurred when converting part of GUID value.\r
397\r
398**/\r
95276127 399EFI_STATUS\r
400StrToGuid (\r
401 IN CHAR16 *Str,\r
402 OUT EFI_GUID *Guid\r
403 )\r
404{\r
ac7e320c
LG
405 //\r
406 // Get the first UINT32 data\r
407 //\r
408 Guid->Data1 = (UINT32) StrHexToUint64 (Str);\r
409 while (!IS_HYPHEN (*Str) && !IS_NULL (*Str)) {\r
410 Str ++;\r
95276127 411 }\r
ac7e320c 412 \r
95276127 413 if (IS_HYPHEN (*Str)) {\r
572f5d8a 414 Str++;\r
95276127 415 } else {\r
416 return EFI_UNSUPPORTED;\r
417 }\r
ac7e320c
LG
418 \r
419 //\r
420 // Get the second UINT16 data\r
421 //\r
422 Guid->Data2 = (UINT16) StrHexToUint64 (Str);\r
423 while (!IS_HYPHEN (*Str) && !IS_NULL (*Str)) {\r
424 Str ++;\r
95276127 425 }\r
ac7e320c 426\r
95276127 427 if (IS_HYPHEN (*Str)) {\r
428 Str++;\r
429 } else {\r
430 return EFI_UNSUPPORTED;\r
431 }\r
ac7e320c
LG
432 \r
433 //\r
434 // Get the third UINT16 data\r
435 //\r
436 Guid->Data3 = (UINT16) StrHexToUint64 (Str);\r
437 while (!IS_HYPHEN (*Str) && !IS_NULL (*Str)) {\r
438 Str ++;\r
95276127 439 }\r
ac7e320c 440\r
95276127 441 if (IS_HYPHEN (*Str)) {\r
442 Str++;\r
443 } else {\r
444 return EFI_UNSUPPORTED;\r
445 }\r
446\r
ac7e320c 447 //\r
5755841f 448 // Get the following 8 bytes data\r
ac7e320c 449 // \r
95276127 450 StrToBuf (&Guid->Data4[0], 2, Str);\r
451 //\r
452 // Skip 2 byte hex chars\r
453 //\r
454 Str += 2 * 2;\r
455\r
456 if (IS_HYPHEN (*Str)) {\r
457 Str++;\r
458 } else {\r
459 return EFI_UNSUPPORTED;\r
460 }\r
461 StrToBuf (&Guid->Data4[2], 6, Str);\r
462\r
463 return EFI_SUCCESS;\r
464}\r
465\r
572f5d8a 466/**\r
467 Converts a string to IPv4 address\r
468\r
469 @param Str A string representation of IPv4 address.\r
470 @param IPv4Addr A pointer to the converted IPv4 address.\r
471\r
472**/\r
95276127 473VOID\r
474StrToIPv4Addr (\r
475 IN OUT CHAR16 **Str,\r
476 OUT EFI_IPv4_ADDRESS *IPv4Addr\r
477 )\r
478{\r
479 UINTN Index;\r
480\r
481 for (Index = 0; Index < 4; Index++) {\r
9da38884 482 IPv4Addr->Addr[Index] = (UINT8) Strtoi (SplitStr (Str, L'.'));\r
95276127 483 }\r
484}\r
485\r
572f5d8a 486/**\r
487 Converts a string to IPv4 address\r
488\r
489 @param Str A string representation of IPv6 address.\r
490 @param IPv6Addr A pointer to the converted IPv6 address.\r
491\r
492**/\r
95276127 493VOID\r
494StrToIPv6Addr (\r
495 IN OUT CHAR16 **Str,\r
496 OUT EFI_IPv6_ADDRESS *IPv6Addr\r
497 )\r
498{\r
499 UINTN Index;\r
500 UINT16 Data;\r
501\r
502 for (Index = 0; Index < 8; Index++) {\r
4d0a30a4 503 Data = (UINT16) StrHexToUintn (SplitStr (Str, L':'));\r
95276127 504 IPv6Addr->Addr[Index * 2] = (UINT8) (Data >> 8);\r
505 IPv6Addr->Addr[Index * 2 + 1] = (UINT8) (Data & 0xff);\r
506 }\r
507}\r
508\r
572f5d8a 509/**\r
510 Converts a Unicode string to ASCII string.\r
511\r
5755841f 512 @param Str The equivalent Unicode string\r
572f5d8a 513 @param AsciiStr On input, it points to destination ASCII string buffer; on output, it points\r
514 to the next ASCII string next to it\r
515\r
516**/\r
95276127 517VOID\r
518StrToAscii (\r
519 IN CHAR16 *Str,\r
520 IN OUT CHAR8 **AsciiStr\r
521 )\r
522{\r
523 CHAR8 *Dest;\r
524\r
525 Dest = *AsciiStr;\r
526 while (!IS_NULL (*Str)) {\r
527 *(Dest++) = (CHAR8) *(Str++);\r
528 }\r
529 *Dest = 0;\r
530\r
531 //\r
532 // Return the string next to it\r
533 //\r
534 *AsciiStr = Dest + 1;\r
535}\r
536\r
5d6a5aee
RN
537/**\r
538 Converts a generic text device path node to device path structure.\r
539\r
540 @param Type The type of the device path node.\r
541 @param TextDeviceNode The input text device path node.\r
542\r
543 @return A pointer to device path structure.\r
544**/\r
545EFI_DEVICE_PATH_PROTOCOL *\r
546DevPathFromTextGenericPath (\r
547 IN UINT8 Type,\r
548 IN CHAR16 *TextDeviceNode\r
549 )\r
550{\r
551 EFI_DEVICE_PATH_PROTOCOL *Node;\r
552 CHAR16 *SubtypeStr;\r
553 CHAR16 *DataStr;\r
554 UINTN DataLength;\r
555\r
556 SubtypeStr = GetNextParamStr (&TextDeviceNode);\r
557 DataStr = GetNextParamStr (&TextDeviceNode);\r
558\r
559 if (DataStr == NULL) {\r
560 DataLength = 0;\r
561 } else {\r
562 DataLength = StrLen (DataStr) / 2;\r
563 }\r
564 Node = CreateDeviceNode (\r
565 Type,\r
566 (UINT8) Strtoi (SubtypeStr),\r
567 (UINT16) (sizeof (EFI_DEVICE_PATH_PROTOCOL) + DataLength)\r
568 );\r
569\r
66a110d7
RN
570 if (DataLength != 0) {\r
571 StrToBuf ((UINT8 *) (Node + 1), DataLength, DataStr);\r
572 }\r
5d6a5aee
RN
573 return Node;\r
574}\r
575\r
576/**\r
577 Converts a generic text device path node to device path structure.\r
578\r
579 @param TextDeviceNode The input Text device path node.\r
580\r
581 @return A pointer to device path structure.\r
582\r
583**/\r
584EFI_DEVICE_PATH_PROTOCOL *\r
585DevPathFromTextPath (\r
586 IN CHAR16 *TextDeviceNode\r
587 )\r
588{\r
589 CHAR16 *TypeStr;\r
590\r
591 TypeStr = GetNextParamStr (&TextDeviceNode);\r
592\r
593 return DevPathFromTextGenericPath ((UINT8) Strtoi (TypeStr), TextDeviceNode);\r
594}\r
595\r
596/**\r
597 Converts a generic hardware text device path node to Hardware device path structure.\r
598\r
599 @param TextDeviceNode The input Text device path node.\r
600\r
601 @return A pointer to Hardware device path structure.\r
602\r
603**/\r
604EFI_DEVICE_PATH_PROTOCOL *\r
605DevPathFromTextHardwarePath (\r
606 IN CHAR16 *TextDeviceNode\r
607 )\r
608{\r
609 return DevPathFromTextGenericPath (HARDWARE_DEVICE_PATH, TextDeviceNode);\r
610}\r
611\r
572f5d8a 612/**\r
613 Converts a text device path node to Hardware PCI device path structure.\r
614\r
615 @param TextDeviceNode The input Text device path node.\r
616\r
617 @return A pointer to Hardware PCI device path structure.\r
618\r
619**/\r
95276127 620EFI_DEVICE_PATH_PROTOCOL *\r
621DevPathFromTextPci (\r
622 IN CHAR16 *TextDeviceNode\r
623 )\r
624{\r
625 CHAR16 *FunctionStr;\r
626 CHAR16 *DeviceStr;\r
627 PCI_DEVICE_PATH *Pci;\r
628\r
95276127 629 DeviceStr = GetNextParamStr (&TextDeviceNode);\r
cf40f28a 630 FunctionStr = GetNextParamStr (&TextDeviceNode);\r
95276127 631 Pci = (PCI_DEVICE_PATH *) CreateDeviceNode (\r
632 HARDWARE_DEVICE_PATH,\r
633 HW_PCI_DP,\r
c9325700 634 (UINT16) sizeof (PCI_DEVICE_PATH)\r
95276127 635 );\r
636\r
cf40f28a 637 Pci->Function = (UINT8) Strtoi (FunctionStr);\r
638 Pci->Device = (UINT8) Strtoi (DeviceStr);\r
95276127 639\r
640 return (EFI_DEVICE_PATH_PROTOCOL *) Pci;\r
641}\r
642\r
572f5d8a 643/**\r
644 Converts a text device path node to Hardware PC card device path structure.\r
645\r
646 @param TextDeviceNode The input Text device path node.\r
647\r
648 @return A pointer to Hardware PC card device path structure.\r
649\r
650**/\r
95276127 651EFI_DEVICE_PATH_PROTOCOL *\r
652DevPathFromTextPcCard (\r
653 IN CHAR16 *TextDeviceNode\r
654 )\r
655{\r
656 CHAR16 *FunctionNumberStr;\r
657 PCCARD_DEVICE_PATH *Pccard;\r
658\r
659 FunctionNumberStr = GetNextParamStr (&TextDeviceNode);\r
660 Pccard = (PCCARD_DEVICE_PATH *) CreateDeviceNode (\r
661 HARDWARE_DEVICE_PATH,\r
662 HW_PCCARD_DP,\r
c9325700 663 (UINT16) sizeof (PCCARD_DEVICE_PATH)\r
95276127 664 );\r
665\r
cf40f28a 666 Pccard->FunctionNumber = (UINT8) Strtoi (FunctionNumberStr);\r
95276127 667\r
668 return (EFI_DEVICE_PATH_PROTOCOL *) Pccard;\r
669}\r
670\r
572f5d8a 671/**\r
672 Converts a text device path node to Hardware memory map device path structure.\r
673\r
674 @param TextDeviceNode The input Text device path node.\r
675\r
676 @return A pointer to Hardware memory map device path structure.\r
677\r
678**/\r
95276127 679EFI_DEVICE_PATH_PROTOCOL *\r
680DevPathFromTextMemoryMapped (\r
681 IN CHAR16 *TextDeviceNode\r
682 )\r
683{\r
cf40f28a 684 CHAR16 *MemoryTypeStr;\r
95276127 685 CHAR16 *StartingAddressStr;\r
686 CHAR16 *EndingAddressStr;\r
687 MEMMAP_DEVICE_PATH *MemMap;\r
688\r
cf40f28a 689 MemoryTypeStr = GetNextParamStr (&TextDeviceNode);\r
95276127 690 StartingAddressStr = GetNextParamStr (&TextDeviceNode);\r
691 EndingAddressStr = GetNextParamStr (&TextDeviceNode);\r
692 MemMap = (MEMMAP_DEVICE_PATH *) CreateDeviceNode (\r
693 HARDWARE_DEVICE_PATH,\r
694 HW_MEMMAP_DP,\r
c9325700 695 (UINT16) sizeof (MEMMAP_DEVICE_PATH)\r
95276127 696 );\r
697\r
cf40f28a 698 MemMap->MemoryType = (UINT32) Strtoi (MemoryTypeStr);\r
699 Strtoi64 (StartingAddressStr, &MemMap->StartingAddress);\r
700 Strtoi64 (EndingAddressStr, &MemMap->EndingAddress);\r
95276127 701\r
702 return (EFI_DEVICE_PATH_PROTOCOL *) MemMap;\r
703}\r
704\r
572f5d8a 705/**\r
706 Converts a text device path node to Vendor device path structure based on the input Type\r
707 and SubType.\r
708\r
709 @param TextDeviceNode The input Text device path node.\r
710 @param Type The type of device path node.\r
711 @param SubType The subtype of device path node.\r
712\r
713 @return A pointer to the newly-created Vendor device path structure.\r
714\r
715**/\r
95276127 716EFI_DEVICE_PATH_PROTOCOL *\r
717ConvertFromTextVendor (\r
718 IN CHAR16 *TextDeviceNode,\r
719 IN UINT8 Type,\r
720 IN UINT8 SubType\r
721 )\r
722{\r
723 CHAR16 *GuidStr;\r
724 CHAR16 *DataStr;\r
725 UINTN Length;\r
726 VENDOR_DEVICE_PATH *Vendor;\r
727\r
728 GuidStr = GetNextParamStr (&TextDeviceNode);\r
729\r
730 DataStr = GetNextParamStr (&TextDeviceNode);\r
731 Length = StrLen (DataStr);\r
732 //\r
733 // Two hex characters make up 1 buffer byte\r
734 //\r
735 Length = (Length + 1) / 2;\r
736\r
737 Vendor = (VENDOR_DEVICE_PATH *) CreateDeviceNode (\r
738 Type,\r
739 SubType,\r
d074a8e1 740 (UINT16) (sizeof (VENDOR_DEVICE_PATH) + Length)\r
95276127 741 );\r
742\r
743 StrToGuid (GuidStr, &Vendor->Guid);\r
744 StrToBuf (((UINT8 *) Vendor) + sizeof (VENDOR_DEVICE_PATH), Length, DataStr);\r
745\r
746 return (EFI_DEVICE_PATH_PROTOCOL *) Vendor;\r
747}\r
748\r
572f5d8a 749/**\r
750 Converts a text device path node to Vendor Hardware device path structure.\r
751\r
752 @param TextDeviceNode The input Text device path node.\r
753\r
754 @return A pointer to the newly-created Vendor Hardware device path structure.\r
755\r
756**/\r
95276127 757EFI_DEVICE_PATH_PROTOCOL *\r
758DevPathFromTextVenHw (\r
759 IN CHAR16 *TextDeviceNode\r
760 )\r
761{\r
762 return ConvertFromTextVendor (\r
763 TextDeviceNode,\r
764 HARDWARE_DEVICE_PATH,\r
765 HW_VENDOR_DP\r
766 );\r
767}\r
768\r
572f5d8a 769/**\r
770 Converts a text device path node to Hardware Controller device path structure.\r
771\r
772 @param TextDeviceNode The input Text device path node.\r
773\r
774 @return A pointer to the newly-created Hardware Controller device path structure.\r
775\r
776**/\r
95276127 777EFI_DEVICE_PATH_PROTOCOL *\r
778DevPathFromTextCtrl (\r
779 IN CHAR16 *TextDeviceNode\r
780 )\r
781{\r
782 CHAR16 *ControllerStr;\r
783 CONTROLLER_DEVICE_PATH *Controller;\r
784\r
785 ControllerStr = GetNextParamStr (&TextDeviceNode);\r
786 Controller = (CONTROLLER_DEVICE_PATH *) CreateDeviceNode (\r
787 HARDWARE_DEVICE_PATH,\r
788 HW_CONTROLLER_DP,\r
c9325700 789 (UINT16) sizeof (CONTROLLER_DEVICE_PATH)\r
95276127 790 );\r
cf40f28a 791 Controller->ControllerNumber = (UINT32) Strtoi (ControllerStr);\r
95276127 792\r
793 return (EFI_DEVICE_PATH_PROTOCOL *) Controller;\r
794}\r
795\r
5d6a5aee
RN
796/**\r
797 Converts a generic ACPI text device path node to ACPI device path structure.\r
798\r
799 @param TextDeviceNode The input Text device path node.\r
800\r
801 @return A pointer to ACPI device path structure.\r
802\r
803**/\r
804EFI_DEVICE_PATH_PROTOCOL *\r
805DevPathFromTextAcpiPath (\r
806 IN CHAR16 *TextDeviceNode\r
807 )\r
808{\r
809 return DevPathFromTextGenericPath (ACPI_DEVICE_PATH, TextDeviceNode);\r
810}\r
811\r
572f5d8a 812/**\r
813 Converts a string to EisaId.\r
814\r
815 @param Text The input string.\r
572f5d8a 816\r
4d0a30a4 817 @return UINT32 EISA ID.\r
572f5d8a 818**/\r
4d0a30a4 819UINT32\r
cf40f28a 820EisaIdFromText (\r
4d0a30a4 821 IN CHAR16 *Text\r
cf40f28a 822 )\r
823{\r
4d0a30a4
RN
824 return (((Text[0] - 'A' + 1) & 0x1f) << 10)\r
825 + (((Text[1] - 'A' + 1) & 0x1f) << 5)\r
826 + (((Text[2] - 'A' + 1) & 0x1f) << 0)\r
827 + (UINT32) (StrHexToUintn (&Text[3]) << 16)\r
828 ;\r
cf40f28a 829}\r
830\r
572f5d8a 831/**\r
832 Converts a text device path node to ACPI HID device path structure.\r
833\r
834 @param TextDeviceNode The input Text device path node.\r
835\r
836 @return A pointer to the newly-created ACPI HID device path structure.\r
837\r
838**/\r
95276127 839EFI_DEVICE_PATH_PROTOCOL *\r
840DevPathFromTextAcpi (\r
841 IN CHAR16 *TextDeviceNode\r
842 )\r
843{\r
844 CHAR16 *HIDStr;\r
845 CHAR16 *UIDStr;\r
846 ACPI_HID_DEVICE_PATH *Acpi;\r
847\r
848 HIDStr = GetNextParamStr (&TextDeviceNode);\r
849 UIDStr = GetNextParamStr (&TextDeviceNode);\r
850 Acpi = (ACPI_HID_DEVICE_PATH *) CreateDeviceNode (\r
851 ACPI_DEVICE_PATH,\r
852 ACPI_DP,\r
c9325700 853 (UINT16) sizeof (ACPI_HID_DEVICE_PATH)\r
95276127 854 );\r
855\r
4d0a30a4 856 Acpi->HID = EisaIdFromText (HIDStr);\r
cf40f28a 857 Acpi->UID = (UINT32) Strtoi (UIDStr);\r
95276127 858\r
859 return (EFI_DEVICE_PATH_PROTOCOL *) Acpi;\r
860}\r
861\r
572f5d8a 862/**\r
863 Converts a text device path node to ACPI HID device path structure.\r
864\r
865 @param TextDeviceNode The input Text device path node.\r
866 @param PnPId The input plug and play identification.\r
867\r
868 @return A pointer to the newly-created ACPI HID device path structure.\r
869\r
870**/\r
95276127 871EFI_DEVICE_PATH_PROTOCOL *\r
872ConvertFromTextAcpi (\r
873 IN CHAR16 *TextDeviceNode,\r
cf40f28a 874 IN UINT32 PnPId\r
95276127 875 )\r
876{\r
877 CHAR16 *UIDStr;\r
878 ACPI_HID_DEVICE_PATH *Acpi;\r
879\r
880 UIDStr = GetNextParamStr (&TextDeviceNode);\r
881 Acpi = (ACPI_HID_DEVICE_PATH *) CreateDeviceNode (\r
882 ACPI_DEVICE_PATH,\r
883 ACPI_DP,\r
c9325700 884 (UINT16) sizeof (ACPI_HID_DEVICE_PATH)\r
95276127 885 );\r
886\r
cf40f28a 887 Acpi->HID = EFI_PNP_ID (PnPId);\r
888 Acpi->UID = (UINT32) Strtoi (UIDStr);\r
95276127 889\r
890 return (EFI_DEVICE_PATH_PROTOCOL *) Acpi;\r
891}\r
892\r
572f5d8a 893/**\r
894 Converts a text device path node to PCI root device path structure.\r
895\r
896 @param TextDeviceNode The input Text device path node.\r
897\r
898 @return A pointer to the newly-created PCI root device path structure.\r
899\r
900**/\r
95276127 901EFI_DEVICE_PATH_PROTOCOL *\r
902DevPathFromTextPciRoot (\r
903 IN CHAR16 *TextDeviceNode\r
904 )\r
905{\r
cf40f28a 906 return ConvertFromTextAcpi (TextDeviceNode, 0x0a03);\r
95276127 907}\r
908\r
e9b3cd55
RN
909/**\r
910 Converts a text device path node to PCIE root device path structure.\r
911\r
912 @param TextDeviceNode The input Text device path node.\r
913\r
914 @return A pointer to the newly-created PCIE root device path structure.\r
915\r
916**/\r
917EFI_DEVICE_PATH_PROTOCOL *\r
918DevPathFromTextPcieRoot (\r
919 IN CHAR16 *TextDeviceNode\r
920 )\r
921{\r
922 return ConvertFromTextAcpi (TextDeviceNode, 0x0a08);\r
923}\r
924\r
572f5d8a 925/**\r
926 Converts a text device path node to Floppy device path structure.\r
927\r
928 @param TextDeviceNode The input Text device path node.\r
929\r
930 @return A pointer to the newly-created Floppy device path structure.\r
931\r
932**/\r
95276127 933EFI_DEVICE_PATH_PROTOCOL *\r
934DevPathFromTextFloppy (\r
935 IN CHAR16 *TextDeviceNode\r
936 )\r
937{\r
cf40f28a 938 return ConvertFromTextAcpi (TextDeviceNode, 0x0604);\r
95276127 939}\r
940\r
572f5d8a 941/**\r
942 Converts a text device path node to Keyboard device path structure.\r
943\r
944 @param TextDeviceNode The input Text device path node.\r
945\r
946 @return A pointer to the newly-created Keyboard device path structure.\r
947\r
948**/\r
95276127 949EFI_DEVICE_PATH_PROTOCOL *\r
950DevPathFromTextKeyboard (\r
951 IN CHAR16 *TextDeviceNode\r
952 )\r
953{\r
cf40f28a 954 return ConvertFromTextAcpi (TextDeviceNode, 0x0301);\r
95276127 955}\r
956\r
572f5d8a 957/**\r
958 Converts a text device path node to Serial device path structure.\r
959\r
960 @param TextDeviceNode The input Text device path node.\r
961\r
962 @return A pointer to the newly-created Serial device path structure.\r
963\r
964**/\r
95276127 965EFI_DEVICE_PATH_PROTOCOL *\r
966DevPathFromTextSerial (\r
967 IN CHAR16 *TextDeviceNode\r
968 )\r
969{\r
cf40f28a 970 return ConvertFromTextAcpi (TextDeviceNode, 0x0501);\r
95276127 971}\r
972\r
572f5d8a 973/**\r
974 Converts a text device path node to Parallel Port device path structure.\r
975\r
976 @param TextDeviceNode The input Text device path node.\r
977\r
978 @return A pointer to the newly-created Parallel Port device path structure.\r
979\r
980**/\r
95276127 981EFI_DEVICE_PATH_PROTOCOL *\r
982DevPathFromTextParallelPort (\r
983 IN CHAR16 *TextDeviceNode\r
984 )\r
985{\r
cf40f28a 986 return ConvertFromTextAcpi (TextDeviceNode, 0x0401);\r
95276127 987}\r
988\r
572f5d8a 989/**\r
5755841f 990 Converts a text device path node to ACPI extension device path structure.\r
572f5d8a 991\r
992 @param TextDeviceNode The input Text device path node.\r
993\r
5755841f 994 @return A pointer to the newly-created ACPI extension device path structure.\r
572f5d8a 995\r
996**/\r
95276127 997EFI_DEVICE_PATH_PROTOCOL *\r
998DevPathFromTextAcpiEx (\r
999 IN CHAR16 *TextDeviceNode\r
1000 )\r
1001{\r
cf40f28a 1002 CHAR16 *HIDStr;\r
1003 CHAR16 *CIDStr;\r
1004 CHAR16 *UIDStr;\r
1005 CHAR16 *HIDSTRStr;\r
1006 CHAR16 *CIDSTRStr;\r
1007 CHAR16 *UIDSTRStr;\r
1008 CHAR8 *AsciiStr;\r
1009 UINT16 Length;\r
1010 ACPI_EXTENDED_HID_DEVICE_PATH *AcpiEx;\r
95276127 1011\r
1012 HIDStr = GetNextParamStr (&TextDeviceNode);\r
1013 CIDStr = GetNextParamStr (&TextDeviceNode);\r
1014 UIDStr = GetNextParamStr (&TextDeviceNode);\r
1015 HIDSTRStr = GetNextParamStr (&TextDeviceNode);\r
1016 CIDSTRStr = GetNextParamStr (&TextDeviceNode);\r
1017 UIDSTRStr = GetNextParamStr (&TextDeviceNode);\r
1018\r
1019 Length = (UINT16) (sizeof (ACPI_EXTENDED_HID_DEVICE_PATH) + StrLen (HIDSTRStr) + 1);\r
1020 Length = (UINT16) (Length + StrLen (UIDSTRStr) + 1);\r
1021 Length = (UINT16) (Length + StrLen (CIDSTRStr) + 1);\r
cf40f28a 1022 AcpiEx = (ACPI_EXTENDED_HID_DEVICE_PATH *) CreateDeviceNode (\r
1023 ACPI_DEVICE_PATH,\r
1024 ACPI_EXTENDED_DP,\r
1025 Length\r
1026 );\r
95276127 1027\r
4d0a30a4
RN
1028 AcpiEx->HID = EisaIdFromText (HIDStr);\r
1029 AcpiEx->CID = EisaIdFromText (CIDStr);\r
cf40f28a 1030 AcpiEx->UID = (UINT32) Strtoi (UIDStr);\r
95276127 1031\r
cf40f28a 1032 AsciiStr = (CHAR8 *) ((UINT8 *)AcpiEx + sizeof (ACPI_EXTENDED_HID_DEVICE_PATH));\r
95276127 1033 StrToAscii (HIDSTRStr, &AsciiStr);\r
1034 StrToAscii (UIDSTRStr, &AsciiStr);\r
1035 StrToAscii (CIDSTRStr, &AsciiStr);\r
cf40f28a 1036\r
1037 return (EFI_DEVICE_PATH_PROTOCOL *) AcpiEx;\r
95276127 1038}\r
1039\r
572f5d8a 1040/**\r
5755841f 1041 Converts a text device path node to ACPI extension device path structure.\r
572f5d8a 1042\r
1043 @param TextDeviceNode The input Text device path node.\r
1044\r
5755841f 1045 @return A pointer to the newly-created ACPI extension device path structure.\r
572f5d8a 1046\r
1047**/\r
95276127 1048EFI_DEVICE_PATH_PROTOCOL *\r
1049DevPathFromTextAcpiExp (\r
1050 IN CHAR16 *TextDeviceNode\r
1051 )\r
1052{\r
cf40f28a 1053 CHAR16 *HIDStr;\r
1054 CHAR16 *CIDStr;\r
1055 CHAR16 *UIDSTRStr;\r
1056 CHAR8 *AsciiStr;\r
1057 UINT16 Length;\r
1058 ACPI_EXTENDED_HID_DEVICE_PATH *AcpiEx;\r
95276127 1059\r
1060 HIDStr = GetNextParamStr (&TextDeviceNode);\r
1061 CIDStr = GetNextParamStr (&TextDeviceNode);\r
1062 UIDSTRStr = GetNextParamStr (&TextDeviceNode);\r
d074a8e1 1063 Length = (UINT16) (sizeof (ACPI_EXTENDED_HID_DEVICE_PATH) + StrLen (UIDSTRStr) + 3);\r
cf40f28a 1064 AcpiEx = (ACPI_EXTENDED_HID_DEVICE_PATH *) CreateDeviceNode (\r
1065 ACPI_DEVICE_PATH,\r
1066 ACPI_EXTENDED_DP,\r
1067 Length\r
1068 );\r
95276127 1069\r
4d0a30a4
RN
1070 AcpiEx->HID = EisaIdFromText (HIDStr);\r
1071 AcpiEx->CID = EisaIdFromText (CIDStr);\r
cf40f28a 1072 AcpiEx->UID = 0;\r
95276127 1073\r
cf40f28a 1074 AsciiStr = (CHAR8 *) ((UINT8 *)AcpiEx + sizeof (ACPI_EXTENDED_HID_DEVICE_PATH));\r
95276127 1075 //\r
1076 // HID string is NULL\r
1077 //\r
cf40f28a 1078 *AsciiStr = '\0';\r
95276127 1079 //\r
1080 // Convert UID string\r
1081 //\r
1082 AsciiStr++;\r
1083 StrToAscii (UIDSTRStr, &AsciiStr);\r
1084 //\r
1085 // CID string is NULL\r
1086 //\r
cf40f28a 1087 *AsciiStr = '\0';\r
95276127 1088\r
cf40f28a 1089 return (EFI_DEVICE_PATH_PROTOCOL *) AcpiEx;\r
95276127 1090}\r
1091\r
5b84091f
RN
1092/**\r
1093 Converts a text device path node to ACPI _ADR device path structure.\r
1094\r
1095 @param TextDeviceNode The input Text device path node.\r
1096\r
1097 @return A pointer to the newly-created ACPI _ADR device path structure.\r
1098\r
1099**/\r
1100EFI_DEVICE_PATH_PROTOCOL *\r
1101DevPathFromTextAcpiAdr (\r
1102 IN CHAR16 *TextDeviceNode\r
1103 )\r
1104{\r
1105 CHAR16 *DisplayDeviceStr;\r
1106 ACPI_ADR_DEVICE_PATH *AcpiAdr;\r
1107 UINTN Index;\r
b36653bc 1108 UINTN Length;\r
5b84091f
RN
1109\r
1110 AcpiAdr = (ACPI_ADR_DEVICE_PATH *) CreateDeviceNode (\r
1111 ACPI_DEVICE_PATH,\r
1112 ACPI_ADR_DP,\r
e7cc9dcc 1113 (UINT16) sizeof (ACPI_ADR_DEVICE_PATH)\r
5b84091f
RN
1114 );\r
1115 ASSERT (AcpiAdr != NULL);\r
1116\r
1117 for (Index = 0; ; Index++) {\r
1118 DisplayDeviceStr = GetNextParamStr (&TextDeviceNode);\r
1119 if (IS_NULL (*DisplayDeviceStr)) {\r
1120 break;\r
1121 }\r
1122 if (Index > 0) {\r
b36653bc 1123 Length = DevicePathNodeLength (AcpiAdr);\r
5b84091f 1124 AcpiAdr = ReallocatePool (\r
b36653bc
RN
1125 Length,\r
1126 Length + sizeof (UINT32),\r
5b84091f
RN
1127 AcpiAdr\r
1128 );\r
1129 ASSERT (AcpiAdr != NULL);\r
b36653bc 1130 SetDevicePathNodeLength (AcpiAdr, Length + sizeof (UINT32));\r
5b84091f
RN
1131 }\r
1132 \r
1133 (&AcpiAdr->ADR)[Index] = (UINT32) Strtoi (DisplayDeviceStr);\r
1134 }\r
1135\r
1136 return (EFI_DEVICE_PATH_PROTOCOL *) AcpiAdr;\r
1137}\r
1138\r
5d6a5aee
RN
1139/**\r
1140 Converts a generic messaging text device path node to messaging device path structure.\r
1141\r
1142 @param TextDeviceNode The input Text device path node.\r
1143\r
1144 @return A pointer to messaging device path structure.\r
1145\r
1146**/\r
1147EFI_DEVICE_PATH_PROTOCOL *\r
1148DevPathFromTextMsg (\r
1149 IN CHAR16 *TextDeviceNode\r
1150 )\r
1151{\r
1152 return DevPathFromTextGenericPath (MESSAGING_DEVICE_PATH, TextDeviceNode);\r
1153}\r
1154\r
572f5d8a 1155/**\r
1156 Converts a text device path node to Parallel Port device path structure.\r
1157\r
1158 @param TextDeviceNode The input Text device path node.\r
1159\r
1160 @return A pointer to the newly-created Parallel Port device path structure.\r
1161\r
1162**/\r
95276127 1163EFI_DEVICE_PATH_PROTOCOL *\r
1164DevPathFromTextAta (\r
9da38884
RN
1165IN CHAR16 *TextDeviceNode\r
1166)\r
95276127 1167{\r
1168 CHAR16 *PrimarySecondaryStr;\r
1169 CHAR16 *SlaveMasterStr;\r
1170 CHAR16 *LunStr;\r
1171 ATAPI_DEVICE_PATH *Atapi;\r
1172\r
1173 Atapi = (ATAPI_DEVICE_PATH *) CreateDeviceNode (\r
9da38884
RN
1174 MESSAGING_DEVICE_PATH,\r
1175 MSG_ATAPI_DP,\r
1176 (UINT16) sizeof (ATAPI_DEVICE_PATH)\r
1177 );\r
1178\r
1179 PrimarySecondaryStr = GetNextParamStr (&TextDeviceNode);\r
1180 SlaveMasterStr = GetNextParamStr (&TextDeviceNode);\r
1181 LunStr = GetNextParamStr (&TextDeviceNode);\r
1182\r
1183 if (StrCmp (PrimarySecondaryStr, L"Primary") == 0) {\r
1184 Atapi->PrimarySecondary = 0;\r
1185 } else if (StrCmp (PrimarySecondaryStr, L"Secondary") == 0) {\r
1186 Atapi->PrimarySecondary = 1;\r
1187 } else {\r
1188 Atapi->PrimarySecondary = (UINT8) Strtoi (PrimarySecondaryStr);\r
1189 }\r
1190 if (StrCmp (SlaveMasterStr, L"Master") == 0) {\r
1191 Atapi->SlaveMaster = 0;\r
1192 } else if (StrCmp (SlaveMasterStr, L"Slave") == 0) {\r
1193 Atapi->SlaveMaster = 1;\r
1194 } else {\r
1195 Atapi->SlaveMaster = (UINT8) Strtoi (SlaveMasterStr);\r
1196 }\r
95276127 1197\r
9da38884 1198 Atapi->Lun = (UINT16) Strtoi (LunStr);\r
95276127 1199\r
1200 return (EFI_DEVICE_PATH_PROTOCOL *) Atapi;\r
1201}\r
1202\r
572f5d8a 1203/**\r
1204 Converts a text device path node to SCSI device path structure.\r
1205\r
1206 @param TextDeviceNode The input Text device path node.\r
1207\r
1208 @return A pointer to the newly-created SCSI device path structure.\r
1209\r
1210**/\r
95276127 1211EFI_DEVICE_PATH_PROTOCOL *\r
1212DevPathFromTextScsi (\r
1213 IN CHAR16 *TextDeviceNode\r
1214 )\r
1215{\r
1216 CHAR16 *PunStr;\r
1217 CHAR16 *LunStr;\r
1218 SCSI_DEVICE_PATH *Scsi;\r
1219\r
1220 PunStr = GetNextParamStr (&TextDeviceNode);\r
1221 LunStr = GetNextParamStr (&TextDeviceNode);\r
1222 Scsi = (SCSI_DEVICE_PATH *) CreateDeviceNode (\r
1223 MESSAGING_DEVICE_PATH,\r
1224 MSG_SCSI_DP,\r
c9325700 1225 (UINT16) sizeof (SCSI_DEVICE_PATH)\r
95276127 1226 );\r
1227\r
cf40f28a 1228 Scsi->Pun = (UINT16) Strtoi (PunStr);\r
1229 Scsi->Lun = (UINT16) Strtoi (LunStr);\r
95276127 1230\r
1231 return (EFI_DEVICE_PATH_PROTOCOL *) Scsi;\r
1232}\r
1233\r
572f5d8a 1234/**\r
1235 Converts a text device path node to Fibre device path structure.\r
1236\r
1237 @param TextDeviceNode The input Text device path node.\r
1238\r
1239 @return A pointer to the newly-created Fibre device path structure.\r
1240\r
1241**/\r
95276127 1242EFI_DEVICE_PATH_PROTOCOL *\r
1243DevPathFromTextFibre (\r
1244 IN CHAR16 *TextDeviceNode\r
1245 )\r
1246{\r
1247 CHAR16 *WWNStr;\r
1248 CHAR16 *LunStr;\r
1249 FIBRECHANNEL_DEVICE_PATH *Fibre;\r
1250\r
1251 WWNStr = GetNextParamStr (&TextDeviceNode);\r
1252 LunStr = GetNextParamStr (&TextDeviceNode);\r
1253 Fibre = (FIBRECHANNEL_DEVICE_PATH *) CreateDeviceNode (\r
1254 MESSAGING_DEVICE_PATH,\r
1255 MSG_FIBRECHANNEL_DP,\r
c9325700 1256 (UINT16) sizeof (FIBRECHANNEL_DEVICE_PATH)\r
95276127 1257 );\r
1258\r
1259 Fibre->Reserved = 0;\r
cf40f28a 1260 Strtoi64 (WWNStr, &Fibre->WWN);\r
1261 Strtoi64 (LunStr, &Fibre->Lun);\r
95276127 1262\r
1263 return (EFI_DEVICE_PATH_PROTOCOL *) Fibre;\r
1264}\r
1265\r
e9b3cd55
RN
1266/**\r
1267 Converts a text device path node to FibreEx device path structure.\r
1268\r
1269 @param TextDeviceNode The input Text device path node.\r
1270\r
1271 @return A pointer to the newly-created FibreEx device path structure.\r
1272\r
1273**/\r
1274EFI_DEVICE_PATH_PROTOCOL *\r
1275DevPathFromTextFibreEx (\r
1276 IN CHAR16 *TextDeviceNode\r
1277 )\r
1278{\r
1279 CHAR16 *WWNStr;\r
1280 CHAR16 *LunStr;\r
1281 FIBRECHANNELEX_DEVICE_PATH *FibreEx;\r
1282\r
1283 WWNStr = GetNextParamStr (&TextDeviceNode);\r
1284 LunStr = GetNextParamStr (&TextDeviceNode);\r
1285 FibreEx = (FIBRECHANNELEX_DEVICE_PATH *) CreateDeviceNode (\r
1286 MESSAGING_DEVICE_PATH,\r
1287 MSG_FIBRECHANNELEX_DP,\r
1288 (UINT16) sizeof (FIBRECHANNELEX_DEVICE_PATH)\r
1289 );\r
1290\r
1291 FibreEx->Reserved = 0;\r
1292 Strtoi64 (WWNStr, (UINT64 *) (&FibreEx->WWN));\r
1293 Strtoi64 (LunStr, (UINT64 *) (&FibreEx->Lun));\r
1294\r
1295 *(UINT64 *) (&FibreEx->WWN) = SwapBytes64 (*(UINT64 *) (&FibreEx->WWN));\r
1296 *(UINT64 *) (&FibreEx->Lun) = SwapBytes64 (*(UINT64 *) (&FibreEx->Lun));\r
1297\r
1298 return (EFI_DEVICE_PATH_PROTOCOL *) FibreEx;\r
1299}\r
1300\r
572f5d8a 1301/**\r
1302 Converts a text device path node to 1394 device path structure.\r
1303\r
1304 @param TextDeviceNode The input Text device path node.\r
1305\r
1306 @return A pointer to the newly-created 1394 device path structure.\r
1307\r
1308**/\r
95276127 1309EFI_DEVICE_PATH_PROTOCOL *\r
1310DevPathFromText1394 (\r
1311 IN CHAR16 *TextDeviceNode\r
1312 )\r
1313{\r
1314 CHAR16 *GuidStr;\r
572f5d8a 1315 F1394_DEVICE_PATH *F1394DevPath;\r
95276127 1316\r
1317 GuidStr = GetNextParamStr (&TextDeviceNode);\r
572f5d8a 1318 F1394DevPath = (F1394_DEVICE_PATH *) CreateDeviceNode (\r
1319 MESSAGING_DEVICE_PATH,\r
1320 MSG_1394_DP,\r
c9325700 1321 (UINT16) sizeof (F1394_DEVICE_PATH)\r
572f5d8a 1322 );\r
95276127 1323\r
572f5d8a 1324 F1394DevPath->Reserved = 0;\r
4d0a30a4 1325 F1394DevPath->Guid = StrHexToUint64 (GuidStr);\r
95276127 1326\r
572f5d8a 1327 return (EFI_DEVICE_PATH_PROTOCOL *) F1394DevPath;\r
95276127 1328}\r
1329\r
572f5d8a 1330/**\r
1331 Converts a text device path node to USB device path structure.\r
1332\r
1333 @param TextDeviceNode The input Text device path node.\r
1334\r
1335 @return A pointer to the newly-created USB device path structure.\r
1336\r
1337**/\r
95276127 1338EFI_DEVICE_PATH_PROTOCOL *\r
1339DevPathFromTextUsb (\r
1340 IN CHAR16 *TextDeviceNode\r
1341 )\r
1342{\r
1343 CHAR16 *PortStr;\r
1344 CHAR16 *InterfaceStr;\r
1345 USB_DEVICE_PATH *Usb;\r
1346\r
1347 PortStr = GetNextParamStr (&TextDeviceNode);\r
1348 InterfaceStr = GetNextParamStr (&TextDeviceNode);\r
1349 Usb = (USB_DEVICE_PATH *) CreateDeviceNode (\r
1350 MESSAGING_DEVICE_PATH,\r
1351 MSG_USB_DP,\r
c9325700 1352 (UINT16) sizeof (USB_DEVICE_PATH)\r
95276127 1353 );\r
1354\r
cf40f28a 1355 Usb->ParentPortNumber = (UINT8) Strtoi (PortStr);\r
1356 Usb->InterfaceNumber = (UINT8) Strtoi (InterfaceStr);\r
95276127 1357\r
1358 return (EFI_DEVICE_PATH_PROTOCOL *) Usb;\r
1359}\r
1360\r
572f5d8a 1361/**\r
1362 Converts a text device path node to I20 device path structure.\r
1363\r
1364 @param TextDeviceNode The input Text device path node.\r
1365\r
1366 @return A pointer to the newly-created I20 device path structure.\r
1367\r
1368**/\r
95276127 1369EFI_DEVICE_PATH_PROTOCOL *\r
1370DevPathFromTextI2O (\r
1371 IN CHAR16 *TextDeviceNode\r
1372 )\r
1373{\r
1374 CHAR16 *TIDStr;\r
572f5d8a 1375 I2O_DEVICE_PATH *I2ODevPath;\r
95276127 1376\r
572f5d8a 1377 TIDStr = GetNextParamStr (&TextDeviceNode);\r
1378 I2ODevPath = (I2O_DEVICE_PATH *) CreateDeviceNode (\r
95276127 1379 MESSAGING_DEVICE_PATH,\r
1380 MSG_I2O_DP,\r
c9325700 1381 (UINT16) sizeof (I2O_DEVICE_PATH)\r
95276127 1382 );\r
1383\r
572f5d8a 1384 I2ODevPath->Tid = (UINT32) Strtoi (TIDStr);\r
95276127 1385\r
572f5d8a 1386 return (EFI_DEVICE_PATH_PROTOCOL *) I2ODevPath;\r
95276127 1387}\r
1388\r
572f5d8a 1389/**\r
1390 Converts a text device path node to Infini Band device path structure.\r
1391\r
1392 @param TextDeviceNode The input Text device path node.\r
1393\r
1394 @return A pointer to the newly-created Infini Band device path structure.\r
1395\r
1396**/\r
95276127 1397EFI_DEVICE_PATH_PROTOCOL *\r
1398DevPathFromTextInfiniband (\r
1399 IN CHAR16 *TextDeviceNode\r
1400 )\r
1401{\r
1402 CHAR16 *FlagsStr;\r
1403 CHAR16 *GuidStr;\r
1404 CHAR16 *SidStr;\r
1405 CHAR16 *TidStr;\r
1406 CHAR16 *DidStr;\r
1407 EFI_GUID PortGid;\r
1408 INFINIBAND_DEVICE_PATH *InfiniBand;\r
1409\r
1410 FlagsStr = GetNextParamStr (&TextDeviceNode);\r
1411 GuidStr = GetNextParamStr (&TextDeviceNode);\r
1412 SidStr = GetNextParamStr (&TextDeviceNode);\r
1413 TidStr = GetNextParamStr (&TextDeviceNode);\r
1414 DidStr = GetNextParamStr (&TextDeviceNode);\r
1415 InfiniBand = (INFINIBAND_DEVICE_PATH *) CreateDeviceNode (\r
1416 MESSAGING_DEVICE_PATH,\r
1417 MSG_INFINIBAND_DP,\r
c9325700 1418 (UINT16) sizeof (INFINIBAND_DEVICE_PATH)\r
95276127 1419 );\r
1420\r
cf40f28a 1421 InfiniBand->ResourceFlags = (UINT32) Strtoi (FlagsStr);\r
95276127 1422 StrToGuid (GuidStr, &PortGid);\r
1423 CopyMem (InfiniBand->PortGid, &PortGid, sizeof (EFI_GUID));\r
cf40f28a 1424 Strtoi64 (SidStr, &InfiniBand->ServiceId);\r
1425 Strtoi64 (TidStr, &InfiniBand->TargetPortId);\r
1426 Strtoi64 (DidStr, &InfiniBand->DeviceId);\r
95276127 1427\r
1428 return (EFI_DEVICE_PATH_PROTOCOL *) InfiniBand;\r
1429}\r
1430\r
572f5d8a 1431/**\r
1432 Converts a text device path node to Vendor-Defined Messaging device path structure.\r
1433\r
1434 @param TextDeviceNode The input Text device path node.\r
1435\r
1436 @return A pointer to the newly-created Vendor-Defined Messaging device path structure.\r
1437\r
1438**/\r
95276127 1439EFI_DEVICE_PATH_PROTOCOL *\r
1440DevPathFromTextVenMsg (\r
1441 IN CHAR16 *TextDeviceNode\r
1442 )\r
1443{\r
1444 return ConvertFromTextVendor (\r
1445 TextDeviceNode,\r
1446 MESSAGING_DEVICE_PATH,\r
1447 MSG_VENDOR_DP\r
1448 );\r
1449}\r
1450\r
572f5d8a 1451/**\r
1452 Converts a text device path node to Vendor defined PC-ANSI device path structure.\r
1453\r
1454 @param TextDeviceNode The input Text device path node.\r
1455\r
1456 @return A pointer to the newly-created Vendor defined PC-ANSI device path structure.\r
1457\r
1458**/\r
95276127 1459EFI_DEVICE_PATH_PROTOCOL *\r
1460DevPathFromTextVenPcAnsi (\r
1461 IN CHAR16 *TextDeviceNode\r
1462 )\r
1463{\r
1464 VENDOR_DEVICE_PATH *Vendor;\r
1465\r
1466 Vendor = (VENDOR_DEVICE_PATH *) CreateDeviceNode (\r
1467 MESSAGING_DEVICE_PATH,\r
1468 MSG_VENDOR_DP,\r
c9325700 1469 (UINT16) sizeof (VENDOR_DEVICE_PATH));\r
95276127 1470 CopyGuid (&Vendor->Guid, &gEfiPcAnsiGuid);\r
1471\r
1472 return (EFI_DEVICE_PATH_PROTOCOL *) Vendor;\r
1473}\r
1474\r
572f5d8a 1475/**\r
1476 Converts a text device path node to Vendor defined VT100 device path structure.\r
1477\r
1478 @param TextDeviceNode The input Text device path node.\r
1479\r
1480 @return A pointer to the newly-created Vendor defined VT100 device path structure.\r
1481\r
1482**/\r
95276127 1483EFI_DEVICE_PATH_PROTOCOL *\r
1484DevPathFromTextVenVt100 (\r
1485 IN CHAR16 *TextDeviceNode\r
1486 )\r
1487{\r
1488 VENDOR_DEVICE_PATH *Vendor;\r
1489\r
1490 Vendor = (VENDOR_DEVICE_PATH *) CreateDeviceNode (\r
1491 MESSAGING_DEVICE_PATH,\r
1492 MSG_VENDOR_DP,\r
c9325700 1493 (UINT16) sizeof (VENDOR_DEVICE_PATH));\r
95276127 1494 CopyGuid (&Vendor->Guid, &gEfiVT100Guid);\r
1495\r
1496 return (EFI_DEVICE_PATH_PROTOCOL *) Vendor;\r
1497}\r
1498\r
572f5d8a 1499/**\r
1500 Converts a text device path node to Vendor defined VT100 Plus device path structure.\r
1501\r
1502 @param TextDeviceNode The input Text device path node.\r
1503\r
1504 @return A pointer to the newly-created Vendor defined VT100 Plus device path structure.\r
1505\r
1506**/\r
95276127 1507EFI_DEVICE_PATH_PROTOCOL *\r
1508DevPathFromTextVenVt100Plus (\r
1509 IN CHAR16 *TextDeviceNode\r
1510 )\r
1511{\r
1512 VENDOR_DEVICE_PATH *Vendor;\r
1513\r
1514 Vendor = (VENDOR_DEVICE_PATH *) CreateDeviceNode (\r
1515 MESSAGING_DEVICE_PATH,\r
1516 MSG_VENDOR_DP,\r
c9325700 1517 (UINT16) sizeof (VENDOR_DEVICE_PATH));\r
95276127 1518 CopyGuid (&Vendor->Guid, &gEfiVT100PlusGuid);\r
1519\r
1520 return (EFI_DEVICE_PATH_PROTOCOL *) Vendor;\r
1521}\r
1522\r
572f5d8a 1523/**\r
1524 Converts a text device path node to Vendor defined UTF8 device path structure.\r
1525\r
1526 @param TextDeviceNode The input Text device path node.\r
1527\r
1528 @return A pointer to the newly-created Vendor defined UTF8 device path structure.\r
1529\r
1530**/\r
95276127 1531EFI_DEVICE_PATH_PROTOCOL *\r
1532DevPathFromTextVenUtf8 (\r
1533 IN CHAR16 *TextDeviceNode\r
1534 )\r
1535{\r
1536 VENDOR_DEVICE_PATH *Vendor;\r
1537\r
1538 Vendor = (VENDOR_DEVICE_PATH *) CreateDeviceNode (\r
1539 MESSAGING_DEVICE_PATH,\r
1540 MSG_VENDOR_DP,\r
c9325700 1541 (UINT16) sizeof (VENDOR_DEVICE_PATH));\r
95276127 1542 CopyGuid (&Vendor->Guid, &gEfiVTUTF8Guid);\r
1543\r
1544 return (EFI_DEVICE_PATH_PROTOCOL *) Vendor;\r
1545}\r
1546\r
572f5d8a 1547/**\r
1548 Converts a text device path node to UART Flow Control device path structure.\r
1549\r
1550 @param TextDeviceNode The input Text device path node.\r
1551\r
1552 @return A pointer to the newly-created UART Flow Control device path structure.\r
1553\r
1554**/\r
95276127 1555EFI_DEVICE_PATH_PROTOCOL *\r
1556DevPathFromTextUartFlowCtrl (\r
1557 IN CHAR16 *TextDeviceNode\r
1558 )\r
1559{\r
1560 CHAR16 *ValueStr;\r
1561 UART_FLOW_CONTROL_DEVICE_PATH *UartFlowControl;\r
1562\r
1563 ValueStr = GetNextParamStr (&TextDeviceNode);\r
1564 UartFlowControl = (UART_FLOW_CONTROL_DEVICE_PATH *) CreateDeviceNode (\r
1565 MESSAGING_DEVICE_PATH,\r
1566 MSG_VENDOR_DP,\r
c9325700 1567 (UINT16) sizeof (UART_FLOW_CONTROL_DEVICE_PATH)\r
95276127 1568 );\r
1569\r
48557c65 1570 CopyGuid (&UartFlowControl->Guid, &gEfiUartDevicePathGuid);\r
95276127 1571 if (StrCmp (ValueStr, L"XonXoff") == 0) {\r
1572 UartFlowControl->FlowControlMap = 2;\r
1573 } else if (StrCmp (ValueStr, L"Hardware") == 0) {\r
1574 UartFlowControl->FlowControlMap = 1;\r
1575 } else {\r
1576 UartFlowControl->FlowControlMap = 0;\r
1577 }\r
1578\r
1579 return (EFI_DEVICE_PATH_PROTOCOL *) UartFlowControl;\r
1580}\r
1581\r
572f5d8a 1582/**\r
1583 Converts a text device path node to Serial Attached SCSI device path structure.\r
1584\r
1585 @param TextDeviceNode The input Text device path node.\r
1586\r
1587 @return A pointer to the newly-created Serial Attached SCSI device path structure.\r
1588\r
1589**/\r
95276127 1590EFI_DEVICE_PATH_PROTOCOL *\r
1591DevPathFromTextSAS (\r
1592 IN CHAR16 *TextDeviceNode\r
1593 )\r
1594{\r
1595 CHAR16 *AddressStr;\r
1596 CHAR16 *LunStr;\r
1597 CHAR16 *RTPStr;\r
1598 CHAR16 *SASSATAStr;\r
1599 CHAR16 *LocationStr;\r
1600 CHAR16 *ConnectStr;\r
1601 CHAR16 *DriveBayStr;\r
1602 CHAR16 *ReservedStr;\r
1603 UINT16 Info;\r
562fce0b 1604 UINT16 Uint16;\r
95276127 1605 SAS_DEVICE_PATH *Sas;\r
1606\r
1607 AddressStr = GetNextParamStr (&TextDeviceNode);\r
1608 LunStr = GetNextParamStr (&TextDeviceNode);\r
1609 RTPStr = GetNextParamStr (&TextDeviceNode);\r
1610 SASSATAStr = GetNextParamStr (&TextDeviceNode);\r
1611 LocationStr = GetNextParamStr (&TextDeviceNode);\r
1612 ConnectStr = GetNextParamStr (&TextDeviceNode);\r
1613 DriveBayStr = GetNextParamStr (&TextDeviceNode);\r
1614 ReservedStr = GetNextParamStr (&TextDeviceNode);\r
95276127 1615 Sas = (SAS_DEVICE_PATH *) CreateDeviceNode (\r
1616 MESSAGING_DEVICE_PATH,\r
1617 MSG_VENDOR_DP,\r
c9325700 1618 (UINT16) sizeof (SAS_DEVICE_PATH)\r
95276127 1619 );\r
1620\r
48557c65 1621 CopyGuid (&Sas->Guid, &gEfiSasDevicePathGuid);\r
cf40f28a 1622 Strtoi64 (AddressStr, &Sas->SasAddress);\r
1623 Strtoi64 (LunStr, &Sas->Lun);\r
1624 Sas->RelativeTargetPort = (UINT16) Strtoi (RTPStr);\r
562fce0b
RN
1625\r
1626 if (StrCmp (SASSATAStr, L"NoTopology") == 0) {\r
1627 Info = 0x0;\r
1628\r
1629 } else if ((StrCmp (SASSATAStr, L"SATA") == 0) || (StrCmp (SASSATAStr, L"SAS") == 0)) {\r
1630\r
1631 Uint16 = (UINT16) Strtoi (DriveBayStr);\r
1632 if (Uint16 == 0) {\r
1633 Info = 0x1;\r
95276127 1634 } else {\r
562fce0b 1635 Info = (UINT16) (0x2 | ((Uint16 - 1) << 8));\r
95276127 1636 }\r
1637\r
1638 if (StrCmp (SASSATAStr, L"SATA") == 0) {\r
562fce0b 1639 Info |= BIT4;\r
95276127 1640 }\r
1641\r
562fce0b
RN
1642 //\r
1643 // Location is an integer between 0 and 1 or else\r
1644 // the keyword Internal (0) or External (1).\r
1645 //\r
95276127 1646 if (StrCmp (LocationStr, L"External") == 0) {\r
562fce0b
RN
1647 Uint16 = 1;\r
1648 } else if (StrCmp (LocationStr, L"Internal") == 0) {\r
1649 Uint16 = 0;\r
1650 } else {\r
2d34b53e 1651 Uint16 = ((UINT16) Strtoi (LocationStr) & BIT0);\r
95276127 1652 }\r
562fce0b 1653 Info |= (Uint16 << 5);\r
95276127 1654\r
562fce0b
RN
1655 //\r
1656 // Connect is an integer between 0 and 3 or else\r
1657 // the keyword Direct (0) or Expanded (1).\r
1658 //\r
95276127 1659 if (StrCmp (ConnectStr, L"Expanded") == 0) {\r
562fce0b
RN
1660 Uint16 = 1;\r
1661 } else if (StrCmp (ConnectStr, L"Direct") == 0) {\r
1662 Uint16 = 0;\r
1663 } else {\r
2d34b53e 1664 Uint16 = ((UINT16) Strtoi (ConnectStr) & (BIT0 | BIT1));\r
95276127 1665 }\r
562fce0b
RN
1666 Info |= (Uint16 << 6);\r
1667\r
1668 } else {\r
1669 Info = (UINT16) Strtoi (SASSATAStr);\r
95276127 1670 }\r
1671\r
1672 Sas->DeviceTopology = Info;\r
cf40f28a 1673 Sas->Reserved = (UINT32) Strtoi (ReservedStr);\r
95276127 1674\r
1675 return (EFI_DEVICE_PATH_PROTOCOL *) Sas;\r
1676}\r
1677\r
501793fa
RN
1678/**\r
1679 Converts a text device path node to Serial Attached SCSI Ex device path structure.\r
1680\r
1681 @param TextDeviceNode The input Text device path node.\r
1682\r
1683 @return A pointer to the newly-created Serial Attached SCSI Ex device path structure.\r
1684\r
1685**/\r
1686EFI_DEVICE_PATH_PROTOCOL *\r
1687DevPathFromTextSasEx (\r
1688 IN CHAR16 *TextDeviceNode\r
1689 )\r
1690{\r
1691 CHAR16 *AddressStr;\r
1692 CHAR16 *LunStr;\r
1693 CHAR16 *RTPStr;\r
1694 CHAR16 *SASSATAStr;\r
1695 CHAR16 *LocationStr;\r
1696 CHAR16 *ConnectStr;\r
1697 CHAR16 *DriveBayStr;\r
1698 UINT16 Info;\r
562fce0b
RN
1699 UINT16 Uint16;\r
1700 UINT64 SasAddress;\r
1701 UINT64 Lun;\r
501793fa
RN
1702 SASEX_DEVICE_PATH *SasEx;\r
1703\r
1704 AddressStr = GetNextParamStr (&TextDeviceNode);\r
1705 LunStr = GetNextParamStr (&TextDeviceNode);\r
1706 RTPStr = GetNextParamStr (&TextDeviceNode);\r
1707 SASSATAStr = GetNextParamStr (&TextDeviceNode);\r
1708 LocationStr = GetNextParamStr (&TextDeviceNode);\r
1709 ConnectStr = GetNextParamStr (&TextDeviceNode);\r
1710 DriveBayStr = GetNextParamStr (&TextDeviceNode);\r
501793fa
RN
1711 SasEx = (SASEX_DEVICE_PATH *) CreateDeviceNode (\r
1712 MESSAGING_DEVICE_PATH,\r
1713 MSG_SASEX_DP,\r
1714 (UINT16) sizeof (SASEX_DEVICE_PATH)\r
1715 );\r
1716\r
562fce0b
RN
1717 Strtoi64 (AddressStr, &SasAddress);\r
1718 Strtoi64 (LunStr, &Lun);\r
1719 WriteUnaligned64 ((UINT64 *) &SasEx->SasAddress, SwapBytes64 (SasAddress));\r
1720 WriteUnaligned64 ((UINT64 *) &SasEx->Lun, SwapBytes64 (Lun));\r
501793fa 1721 SasEx->RelativeTargetPort = (UINT16) Strtoi (RTPStr);\r
562fce0b
RN
1722\r
1723 if (StrCmp (SASSATAStr, L"NoTopology") == 0) {\r
1724 Info = 0x0;\r
1725\r
1726 } else if ((StrCmp (SASSATAStr, L"SATA") == 0) || (StrCmp (SASSATAStr, L"SAS") == 0)) {\r
1727\r
1728 Uint16 = (UINT16) Strtoi (DriveBayStr);\r
1729 if (Uint16 == 0) {\r
1730 Info = 0x1;\r
501793fa 1731 } else {\r
562fce0b 1732 Info = (UINT16) (0x2 | ((Uint16 - 1) << 8));\r
501793fa
RN
1733 }\r
1734\r
1735 if (StrCmp (SASSATAStr, L"SATA") == 0) {\r
562fce0b 1736 Info |= BIT4;\r
501793fa
RN
1737 }\r
1738\r
562fce0b
RN
1739 //\r
1740 // Location is an integer between 0 and 1 or else\r
1741 // the keyword Internal (0) or External (1).\r
1742 //\r
501793fa 1743 if (StrCmp (LocationStr, L"External") == 0) {\r
562fce0b
RN
1744 Uint16 = 1;\r
1745 } else if (StrCmp (LocationStr, L"Internal") == 0) {\r
1746 Uint16 = 0;\r
1747 } else {\r
2d34b53e 1748 Uint16 = ((UINT16) Strtoi (LocationStr) & BIT0);\r
501793fa 1749 }\r
562fce0b 1750 Info |= (Uint16 << 5);\r
501793fa 1751\r
562fce0b
RN
1752 //\r
1753 // Connect is an integer between 0 and 3 or else\r
1754 // the keyword Direct (0) or Expanded (1).\r
1755 //\r
501793fa 1756 if (StrCmp (ConnectStr, L"Expanded") == 0) {\r
562fce0b
RN
1757 Uint16 = 1;\r
1758 } else if (StrCmp (ConnectStr, L"Direct") == 0) {\r
1759 Uint16 = 0;\r
1760 } else {\r
2d34b53e 1761 Uint16 = ((UINT16) Strtoi (ConnectStr) & (BIT0 | BIT1));\r
501793fa 1762 }\r
562fce0b
RN
1763 Info |= (Uint16 << 6);\r
1764\r
1765 } else {\r
1766 Info = (UINT16) Strtoi (SASSATAStr);\r
501793fa
RN
1767 }\r
1768\r
1769 SasEx->DeviceTopology = Info;\r
1770\r
1771 return (EFI_DEVICE_PATH_PROTOCOL *) SasEx;\r
1772}\r
1773\r
a06ec3e2
RN
1774/**\r
1775 Converts a text device path node to NVM Express Namespace device path structure.\r
1776\r
1777 @param TextDeviceNode The input Text device path node.\r
1778\r
1779 @return A pointer to the newly-created NVM Express Namespace device path structure.\r
1780\r
1781**/\r
1782EFI_DEVICE_PATH_PROTOCOL *\r
1783DevPathFromTextNVMe (\r
1784 IN CHAR16 *TextDeviceNode\r
1785 )\r
1786{\r
1787 CHAR16 *NamespaceIdStr;\r
1788 CHAR16 *NamespaceUuidStr;\r
1789 NVME_NAMESPACE_DEVICE_PATH *Nvme;\r
1790 UINT8 *Uuid;\r
1791 UINTN Index;\r
1792\r
1793 NamespaceIdStr = GetNextParamStr (&TextDeviceNode);\r
1794 NamespaceUuidStr = GetNextParamStr (&TextDeviceNode);\r
1795 Nvme = (NVME_NAMESPACE_DEVICE_PATH *) CreateDeviceNode (\r
1796 MESSAGING_DEVICE_PATH,\r
1797 MSG_NVME_NAMESPACE_DP,\r
1798 (UINT16) sizeof (NVME_NAMESPACE_DEVICE_PATH)\r
1799 );\r
1800\r
1801 Nvme->NamespaceId = (UINT32) Strtoi (NamespaceIdStr);\r
1802 Uuid = (UINT8 *) &Nvme->NamespaceUuid;\r
1803\r
1804 Index = sizeof (Nvme->NamespaceUuid) / sizeof (UINT8);\r
1805 while (Index-- != 0) {\r
1806 Uuid[Index] = (UINT8) StrHexToUintn (SplitStr (&NamespaceUuidStr, L'-'));\r
1807 }\r
1808\r
1809 return (EFI_DEVICE_PATH_PROTOCOL *) Nvme;\r
1810}\r
1811\r
52306166
FT
1812/**\r
1813 Converts a text device path node to UFS device path structure.\r
1814\r
1815 @param TextDeviceNode The input Text device path node.\r
1816\r
1817 @return A pointer to the newly-created UFS device path structure.\r
1818\r
1819**/\r
1820EFI_DEVICE_PATH_PROTOCOL *\r
1821DevPathFromTextUfs (\r
1822 IN CHAR16 *TextDeviceNode\r
1823 )\r
1824{\r
1825 CHAR16 *PunStr;\r
1826 CHAR16 *LunStr;\r
1827 UFS_DEVICE_PATH *Ufs;\r
1828\r
1829 PunStr = GetNextParamStr (&TextDeviceNode);\r
1830 LunStr = GetNextParamStr (&TextDeviceNode);\r
1831 Ufs = (UFS_DEVICE_PATH *) CreateDeviceNode (\r
1832 MESSAGING_DEVICE_PATH,\r
1833 MSG_UFS_DP,\r
1834 (UINT16) sizeof (UFS_DEVICE_PATH)\r
1835 );\r
1836\r
1837 Ufs->Pun = (UINT8) Strtoi (PunStr);\r
1838 Ufs->Lun = (UINT8) Strtoi (LunStr);\r
1839\r
1840 return (EFI_DEVICE_PATH_PROTOCOL *) Ufs;\r
1841}\r
1842\r
ab8686b8
FT
1843/**\r
1844 Converts a text device path node to SD (Secure Digital) device path structure.\r
1845\r
1846 @param TextDeviceNode The input Text device path node.\r
1847\r
1848 @return A pointer to the newly-created SD device path structure.\r
1849\r
1850**/\r
1851EFI_DEVICE_PATH_PROTOCOL *\r
1852DevPathFromTextSd (\r
1853 IN CHAR16 *TextDeviceNode\r
1854 )\r
1855{\r
1856 CHAR16 *SlotNumberStr;\r
1857 SD_DEVICE_PATH *Sd;\r
1858\r
1859 SlotNumberStr = GetNextParamStr (&TextDeviceNode);\r
1860 Sd = (SD_DEVICE_PATH *) CreateDeviceNode (\r
1861 MESSAGING_DEVICE_PATH,\r
1862 MSG_SD_DP,\r
1863 (UINT16) sizeof (SD_DEVICE_PATH)\r
1864 );\r
1865\r
1866 Sd->SlotNumber = (UINT8) Strtoi (SlotNumberStr);\r
1867\r
1868 return (EFI_DEVICE_PATH_PROTOCOL *) Sd;\r
1869}\r
1870\r
572f5d8a 1871/**\r
1872 Converts a text device path node to Debug Port device path structure.\r
1873\r
1874 @param TextDeviceNode The input Text device path node.\r
1875\r
1876 @return A pointer to the newly-created Debug Port device path structure.\r
1877\r
1878**/\r
95276127 1879EFI_DEVICE_PATH_PROTOCOL *\r
1880DevPathFromTextDebugPort (\r
1881 IN CHAR16 *TextDeviceNode\r
1882 )\r
1883{\r
1884 VENDOR_DEFINED_MESSAGING_DEVICE_PATH *Vend;\r
1885\r
1886 Vend = (VENDOR_DEFINED_MESSAGING_DEVICE_PATH *) CreateDeviceNode (\r
1887 MESSAGING_DEVICE_PATH,\r
1888 MSG_VENDOR_DP,\r
c9325700 1889 (UINT16) sizeof (VENDOR_DEFINED_MESSAGING_DEVICE_PATH)\r
95276127 1890 );\r
1891\r
1892 CopyGuid (&Vend->Guid, &gEfiDebugPortProtocolGuid);\r
1893\r
1894 return (EFI_DEVICE_PATH_PROTOCOL *) Vend;\r
1895}\r
1896\r
572f5d8a 1897/**\r
1898 Converts a text device path node to MAC device path structure.\r
1899\r
1900 @param TextDeviceNode The input Text device path node.\r
1901\r
1902 @return A pointer to the newly-created MAC device path structure.\r
1903\r
1904**/\r
95276127 1905EFI_DEVICE_PATH_PROTOCOL *\r
1906DevPathFromTextMAC (\r
1907 IN CHAR16 *TextDeviceNode\r
1908 )\r
1909{\r
1910 CHAR16 *AddressStr;\r
1911 CHAR16 *IfTypeStr;\r
1912 UINTN Length;\r
572f5d8a 1913 MAC_ADDR_DEVICE_PATH *MACDevPath;\r
95276127 1914\r
1915 AddressStr = GetNextParamStr (&TextDeviceNode);\r
1916 IfTypeStr = GetNextParamStr (&TextDeviceNode);\r
572f5d8a 1917 MACDevPath = (MAC_ADDR_DEVICE_PATH *) CreateDeviceNode (\r
95276127 1918 MESSAGING_DEVICE_PATH,\r
1919 MSG_MAC_ADDR_DP,\r
c9325700 1920 (UINT16) sizeof (MAC_ADDR_DEVICE_PATH)\r
95276127 1921 );\r
1922\r
572f5d8a 1923 MACDevPath->IfType = (UINT8) Strtoi (IfTypeStr);\r
95276127 1924\r
1925 Length = sizeof (EFI_MAC_ADDRESS);\r
572f5d8a 1926 StrToBuf (&MACDevPath->MacAddress.Addr[0], Length, AddressStr);\r
95276127 1927\r
572f5d8a 1928 return (EFI_DEVICE_PATH_PROTOCOL *) MACDevPath;\r
95276127 1929}\r
1930\r
052019e1 1931\r
1932/**\r
1933 Converts a text format to the network protocol ID.\r
1934\r
1935 @param Text String of protocol field.\r
1936\r
1937 @return Network protocol ID .\r
1938\r
1939**/\r
1940UINTN\r
1941NetworkProtocolFromText (\r
1942 IN CHAR16 *Text\r
1943 )\r
1944{\r
1945 if (StrCmp (Text, L"UDP") == 0) {\r
1946 return RFC_1700_UDP_PROTOCOL;\r
1947 }\r
1948\r
1949 if (StrCmp (Text, L"TCP") == 0) {\r
1950 return RFC_1700_TCP_PROTOCOL;\r
1951 }\r
1952\r
1953 return Strtoi (Text);\r
1954}\r
1955\r
1956\r
572f5d8a 1957/**\r
1958 Converts a text device path node to IPV4 device path structure.\r
1959\r
1960 @param TextDeviceNode The input Text device path node.\r
1961\r
1962 @return A pointer to the newly-created IPV4 device path structure.\r
1963\r
1964**/\r
95276127 1965EFI_DEVICE_PATH_PROTOCOL *\r
1966DevPathFromTextIPv4 (\r
1967 IN CHAR16 *TextDeviceNode\r
1968 )\r
1969{\r
1970 CHAR16 *RemoteIPStr;\r
1971 CHAR16 *ProtocolStr;\r
1972 CHAR16 *TypeStr;\r
1973 CHAR16 *LocalIPStr;\r
e9b3cd55
RN
1974 CHAR16 *GatewayIPStr;\r
1975 CHAR16 *SubnetMaskStr;\r
95276127 1976 IPv4_DEVICE_PATH *IPv4;\r
1977\r
1978 RemoteIPStr = GetNextParamStr (&TextDeviceNode);\r
1979 ProtocolStr = GetNextParamStr (&TextDeviceNode);\r
1980 TypeStr = GetNextParamStr (&TextDeviceNode);\r
1981 LocalIPStr = GetNextParamStr (&TextDeviceNode);\r
e9b3cd55
RN
1982 GatewayIPStr = GetNextParamStr (&TextDeviceNode);\r
1983 SubnetMaskStr = GetNextParamStr (&TextDeviceNode);\r
95276127 1984 IPv4 = (IPv4_DEVICE_PATH *) CreateDeviceNode (\r
1985 MESSAGING_DEVICE_PATH,\r
1986 MSG_IPv4_DP,\r
c9325700 1987 (UINT16) sizeof (IPv4_DEVICE_PATH)\r
95276127 1988 );\r
1989\r
1990 StrToIPv4Addr (&RemoteIPStr, &IPv4->RemoteIpAddress);\r
052019e1 1991 IPv4->Protocol = (UINT16) NetworkProtocolFromText (ProtocolStr);\r
95276127 1992 if (StrCmp (TypeStr, L"Static") == 0) {\r
1993 IPv4->StaticIpAddress = TRUE;\r
1994 } else {\r
1995 IPv4->StaticIpAddress = FALSE;\r
1996 }\r
1997\r
1998 StrToIPv4Addr (&LocalIPStr, &IPv4->LocalIpAddress);\r
e9b3cd55
RN
1999 if (!IS_NULL (*GatewayIPStr) && !IS_NULL (*SubnetMaskStr)) {\r
2000 StrToIPv4Addr (&GatewayIPStr, &IPv4->GatewayIpAddress);\r
2001 StrToIPv4Addr (&SubnetMaskStr, &IPv4->SubnetMask);\r
2002 } else {\r
2003 ZeroMem (&IPv4->GatewayIpAddress, sizeof (IPv4->GatewayIpAddress));\r
2004 ZeroMem (&IPv4->SubnetMask, sizeof (IPv4->SubnetMask));\r
2005 }\r
95276127 2006\r
cf40f28a 2007 IPv4->LocalPort = 0;\r
2008 IPv4->RemotePort = 0;\r
95276127 2009\r
2010 return (EFI_DEVICE_PATH_PROTOCOL *) IPv4;\r
2011}\r
2012\r
572f5d8a 2013/**\r
2014 Converts a text device path node to IPV6 device path structure.\r
2015\r
2016 @param TextDeviceNode The input Text device path node.\r
2017\r
2018 @return A pointer to the newly-created IPV6 device path structure.\r
2019\r
2020**/\r
95276127 2021EFI_DEVICE_PATH_PROTOCOL *\r
2022DevPathFromTextIPv6 (\r
2023 IN CHAR16 *TextDeviceNode\r
2024 )\r
2025{\r
2026 CHAR16 *RemoteIPStr;\r
2027 CHAR16 *ProtocolStr;\r
2028 CHAR16 *TypeStr;\r
2029 CHAR16 *LocalIPStr;\r
501793fa
RN
2030 CHAR16 *GatewayIPStr;\r
2031 CHAR16 *PrefixLengthStr;\r
95276127 2032 IPv6_DEVICE_PATH *IPv6;\r
2033\r
2034 RemoteIPStr = GetNextParamStr (&TextDeviceNode);\r
2035 ProtocolStr = GetNextParamStr (&TextDeviceNode);\r
2036 TypeStr = GetNextParamStr (&TextDeviceNode);\r
2037 LocalIPStr = GetNextParamStr (&TextDeviceNode);\r
501793fa
RN
2038 PrefixLengthStr = GetNextParamStr (&TextDeviceNode);\r
2039 GatewayIPStr = GetNextParamStr (&TextDeviceNode);\r
95276127 2040 IPv6 = (IPv6_DEVICE_PATH *) CreateDeviceNode (\r
2041 MESSAGING_DEVICE_PATH,\r
2042 MSG_IPv6_DP,\r
c9325700 2043 (UINT16) sizeof (IPv6_DEVICE_PATH)\r
95276127 2044 );\r
2045\r
2046 StrToIPv6Addr (&RemoteIPStr, &IPv6->RemoteIpAddress);\r
052019e1 2047 IPv6->Protocol = (UINT16) NetworkProtocolFromText (ProtocolStr);\r
95276127 2048 if (StrCmp (TypeStr, L"Static") == 0) {\r
501793fa
RN
2049 IPv6->IpAddressOrigin = 0;\r
2050 } else if (StrCmp (TypeStr, L"StatelessAutoConfigure") == 0) {\r
2051 IPv6->IpAddressOrigin = 1;\r
95276127 2052 } else {\r
501793fa 2053 IPv6->IpAddressOrigin = 2;\r
95276127 2054 }\r
2055\r
2056 StrToIPv6Addr (&LocalIPStr, &IPv6->LocalIpAddress);\r
501793fa
RN
2057 if (!IS_NULL (*GatewayIPStr) && !IS_NULL (*PrefixLengthStr)) {\r
2058 StrToIPv6Addr (&GatewayIPStr, &IPv6->GatewayIpAddress);\r
2059 IPv6->PrefixLength = (UINT8) Strtoi (PrefixLengthStr);\r
2060 } else {\r
2061 ZeroMem (&IPv6->GatewayIpAddress, sizeof (IPv6->GatewayIpAddress));\r
2062 IPv6->PrefixLength = 0;\r
2063 }\r
95276127 2064\r
2065 IPv6->LocalPort = 0;\r
2066 IPv6->RemotePort = 0;\r
2067\r
2068 return (EFI_DEVICE_PATH_PROTOCOL *) IPv6;\r
2069}\r
2070\r
572f5d8a 2071/**\r
2072 Converts a text device path node to UART device path structure.\r
2073\r
2074 @param TextDeviceNode The input Text device path node.\r
2075\r
2076 @return A pointer to the newly-created UART device path structure.\r
2077\r
2078**/\r
95276127 2079EFI_DEVICE_PATH_PROTOCOL *\r
2080DevPathFromTextUart (\r
2081 IN CHAR16 *TextDeviceNode\r
2082 )\r
2083{\r
2084 CHAR16 *BaudStr;\r
2085 CHAR16 *DataBitsStr;\r
2086 CHAR16 *ParityStr;\r
2087 CHAR16 *StopBitsStr;\r
2088 UART_DEVICE_PATH *Uart;\r
2089\r
2090 BaudStr = GetNextParamStr (&TextDeviceNode);\r
2091 DataBitsStr = GetNextParamStr (&TextDeviceNode);\r
2092 ParityStr = GetNextParamStr (&TextDeviceNode);\r
2093 StopBitsStr = GetNextParamStr (&TextDeviceNode);\r
2094 Uart = (UART_DEVICE_PATH *) CreateDeviceNode (\r
2095 MESSAGING_DEVICE_PATH,\r
2096 MSG_UART_DP,\r
c9325700 2097 (UINT16) sizeof (UART_DEVICE_PATH)\r
95276127 2098 );\r
2099\r
9da38884
RN
2100 if (StrCmp (BaudStr, L"DEFAULT") == 0) {\r
2101 Uart->BaudRate = 115200;\r
2102 } else {\r
2103 Strtoi64 (BaudStr, &Uart->BaudRate);\r
2104 }\r
2105 Uart->DataBits = (UINT8) ((StrCmp (DataBitsStr, L"DEFAULT") == 0) ? 8 : Strtoi (DataBitsStr));\r
95276127 2106 switch (*ParityStr) {\r
2107 case L'D':\r
2108 Uart->Parity = 0;\r
2109 break;\r
2110\r
2111 case L'N':\r
2112 Uart->Parity = 1;\r
2113 break;\r
2114\r
2115 case L'E':\r
2116 Uart->Parity = 2;\r
2117 break;\r
2118\r
2119 case L'O':\r
2120 Uart->Parity = 3;\r
2121 break;\r
2122\r
2123 case L'M':\r
2124 Uart->Parity = 4;\r
2125 break;\r
2126\r
2127 case L'S':\r
2128 Uart->Parity = 5;\r
bd07919c 2129 break;\r
95276127 2130\r
2131 default:\r
9da38884
RN
2132 Uart->Parity = (UINT8) Strtoi (ParityStr);\r
2133 break;\r
95276127 2134 }\r
2135\r
2136 if (StrCmp (StopBitsStr, L"D") == 0) {\r
2137 Uart->StopBits = (UINT8) 0;\r
2138 } else if (StrCmp (StopBitsStr, L"1") == 0) {\r
2139 Uart->StopBits = (UINT8) 1;\r
2140 } else if (StrCmp (StopBitsStr, L"1.5") == 0) {\r
2141 Uart->StopBits = (UINT8) 2;\r
2142 } else if (StrCmp (StopBitsStr, L"2") == 0) {\r
2143 Uart->StopBits = (UINT8) 3;\r
2144 } else {\r
9da38884 2145 Uart->StopBits = (UINT8) Strtoi (StopBitsStr);\r
95276127 2146 }\r
2147\r
2148 return (EFI_DEVICE_PATH_PROTOCOL *) Uart;\r
2149}\r
2150\r
572f5d8a 2151/**\r
2152 Converts a text device path node to USB class device path structure.\r
2153\r
2154 @param TextDeviceNode The input Text device path node.\r
2155 @param UsbClassText A pointer to USB_CLASS_TEXT structure to be integrated to USB Class Text.\r
2156\r
2157 @return A pointer to the newly-created USB class device path structure.\r
2158\r
2159**/\r
95276127 2160EFI_DEVICE_PATH_PROTOCOL *\r
2161ConvertFromTextUsbClass (\r
2162 IN CHAR16 *TextDeviceNode,\r
2163 IN USB_CLASS_TEXT *UsbClassText\r
2164 )\r
2165{\r
2166 CHAR16 *VIDStr;\r
2167 CHAR16 *PIDStr;\r
2168 CHAR16 *ClassStr;\r
2169 CHAR16 *SubClassStr;\r
2170 CHAR16 *ProtocolStr;\r
2171 USB_CLASS_DEVICE_PATH *UsbClass;\r
2172\r
2173 UsbClass = (USB_CLASS_DEVICE_PATH *) CreateDeviceNode (\r
2174 MESSAGING_DEVICE_PATH,\r
2175 MSG_USB_CLASS_DP,\r
c9325700 2176 (UINT16) sizeof (USB_CLASS_DEVICE_PATH)\r
95276127 2177 );\r
2178\r
2179 VIDStr = GetNextParamStr (&TextDeviceNode);\r
2180 PIDStr = GetNextParamStr (&TextDeviceNode);\r
2181 if (UsbClassText->ClassExist) {\r
2182 ClassStr = GetNextParamStr (&TextDeviceNode);\r
cf40f28a 2183 UsbClass->DeviceClass = (UINT8) Strtoi (ClassStr);\r
95276127 2184 } else {\r
2185 UsbClass->DeviceClass = UsbClassText->Class;\r
2186 }\r
2187 if (UsbClassText->SubClassExist) {\r
2188 SubClassStr = GetNextParamStr (&TextDeviceNode);\r
cf40f28a 2189 UsbClass->DeviceSubClass = (UINT8) Strtoi (SubClassStr);\r
95276127 2190 } else {\r
2191 UsbClass->DeviceSubClass = UsbClassText->SubClass;\r
572f5d8a 2192 }\r
95276127 2193\r
2194 ProtocolStr = GetNextParamStr (&TextDeviceNode);\r
2195\r
cf40f28a 2196 UsbClass->VendorId = (UINT16) Strtoi (VIDStr);\r
2197 UsbClass->ProductId = (UINT16) Strtoi (PIDStr);\r
2198 UsbClass->DeviceProtocol = (UINT8) Strtoi (ProtocolStr);\r
95276127 2199\r
2200 return (EFI_DEVICE_PATH_PROTOCOL *) UsbClass;\r
2201}\r
2202\r
2203\r
572f5d8a 2204/**\r
2205 Converts a text device path node to USB class device path structure.\r
2206\r
2207 @param TextDeviceNode The input Text device path node.\r
2208\r
2209 @return A pointer to the newly-created USB class device path structure.\r
2210\r
2211**/\r
95276127 2212EFI_DEVICE_PATH_PROTOCOL *\r
2213DevPathFromTextUsbClass (\r
2214 IN CHAR16 *TextDeviceNode\r
2215 )\r
2216{\r
2217 USB_CLASS_TEXT UsbClassText;\r
2218\r
2219 UsbClassText.ClassExist = TRUE;\r
2220 UsbClassText.SubClassExist = TRUE;\r
2221\r
2222 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2223}\r
2224\r
572f5d8a 2225/**\r
2226 Converts a text device path node to USB audio device path structure.\r
2227\r
2228 @param TextDeviceNode The input Text device path node.\r
2229\r
2230 @return A pointer to the newly-created USB audio device path structure.\r
2231\r
2232**/\r
95276127 2233EFI_DEVICE_PATH_PROTOCOL *\r
2234DevPathFromTextUsbAudio (\r
2235 IN CHAR16 *TextDeviceNode\r
2236 )\r
2237{\r
2238 USB_CLASS_TEXT UsbClassText;\r
2239\r
2240 UsbClassText.ClassExist = FALSE;\r
2241 UsbClassText.Class = USB_CLASS_AUDIO;\r
2242 UsbClassText.SubClassExist = TRUE;\r
2243\r
2244 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2245}\r
2246\r
572f5d8a 2247/**\r
2248 Converts a text device path node to USB CDC Control device path structure.\r
2249\r
2250 @param TextDeviceNode The input Text device path node.\r
2251\r
2252 @return A pointer to the newly-created USB CDC Control device path structure.\r
2253\r
2254**/\r
95276127 2255EFI_DEVICE_PATH_PROTOCOL *\r
2256DevPathFromTextUsbCDCControl (\r
2257 IN CHAR16 *TextDeviceNode\r
2258 )\r
2259{\r
2260 USB_CLASS_TEXT UsbClassText;\r
2261\r
2262 UsbClassText.ClassExist = FALSE;\r
2263 UsbClassText.Class = USB_CLASS_CDCCONTROL;\r
2264 UsbClassText.SubClassExist = TRUE;\r
2265\r
2266 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2267}\r
2268\r
572f5d8a 2269/**\r
2270 Converts a text device path node to USB HID device path structure.\r
2271\r
2272 @param TextDeviceNode The input Text device path node.\r
2273\r
2274 @return A pointer to the newly-created USB HID device path structure.\r
2275\r
2276**/\r
95276127 2277EFI_DEVICE_PATH_PROTOCOL *\r
2278DevPathFromTextUsbHID (\r
2279 IN CHAR16 *TextDeviceNode\r
2280 )\r
2281{\r
2282 USB_CLASS_TEXT UsbClassText;\r
2283\r
2284 UsbClassText.ClassExist = FALSE;\r
2285 UsbClassText.Class = USB_CLASS_HID;\r
2286 UsbClassText.SubClassExist = TRUE;\r
2287\r
2288 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2289}\r
2290\r
572f5d8a 2291/**\r
2292 Converts a text device path node to USB Image device path structure.\r
2293\r
2294 @param TextDeviceNode The input Text device path node.\r
2295\r
2296 @return A pointer to the newly-created USB Image device path structure.\r
2297\r
2298**/\r
95276127 2299EFI_DEVICE_PATH_PROTOCOL *\r
2300DevPathFromTextUsbImage (\r
2301 IN CHAR16 *TextDeviceNode\r
2302 )\r
2303{\r
2304 USB_CLASS_TEXT UsbClassText;\r
2305\r
2306 UsbClassText.ClassExist = FALSE;\r
2307 UsbClassText.Class = USB_CLASS_IMAGE;\r
2308 UsbClassText.SubClassExist = TRUE;\r
2309\r
2310 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2311}\r
2312\r
572f5d8a 2313/**\r
2314 Converts a text device path node to USB Print device path structure.\r
2315\r
2316 @param TextDeviceNode The input Text device path node.\r
2317\r
2318 @return A pointer to the newly-created USB Print device path structure.\r
2319\r
2320**/\r
95276127 2321EFI_DEVICE_PATH_PROTOCOL *\r
2322DevPathFromTextUsbPrinter (\r
2323 IN CHAR16 *TextDeviceNode\r
2324 )\r
2325{\r
2326 USB_CLASS_TEXT UsbClassText;\r
2327\r
2328 UsbClassText.ClassExist = FALSE;\r
2329 UsbClassText.Class = USB_CLASS_PRINTER;\r
2330 UsbClassText.SubClassExist = TRUE;\r
2331\r
2332 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2333}\r
2334\r
572f5d8a 2335/**\r
2336 Converts a text device path node to USB mass storage device path structure.\r
2337\r
2338 @param TextDeviceNode The input Text device path node.\r
2339\r
2340 @return A pointer to the newly-created USB mass storage device path structure.\r
2341\r
2342**/\r
95276127 2343EFI_DEVICE_PATH_PROTOCOL *\r
2344DevPathFromTextUsbMassStorage (\r
2345 IN CHAR16 *TextDeviceNode\r
2346 )\r
2347{\r
2348 USB_CLASS_TEXT UsbClassText;\r
2349\r
2350 UsbClassText.ClassExist = FALSE;\r
2351 UsbClassText.Class = USB_CLASS_MASS_STORAGE;\r
2352 UsbClassText.SubClassExist = TRUE;\r
2353\r
2354 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2355}\r
2356\r
572f5d8a 2357/**\r
2358 Converts a text device path node to USB HUB device path structure.\r
2359\r
2360 @param TextDeviceNode The input Text device path node.\r
2361\r
2362 @return A pointer to the newly-created USB HUB device path structure.\r
2363\r
2364**/\r
95276127 2365EFI_DEVICE_PATH_PROTOCOL *\r
2366DevPathFromTextUsbHub (\r
2367 IN CHAR16 *TextDeviceNode\r
2368 )\r
2369{\r
2370 USB_CLASS_TEXT UsbClassText;\r
2371\r
2372 UsbClassText.ClassExist = FALSE;\r
2373 UsbClassText.Class = USB_CLASS_HUB;\r
2374 UsbClassText.SubClassExist = TRUE;\r
2375\r
2376 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2377}\r
2378\r
572f5d8a 2379/**\r
2380 Converts a text device path node to USB CDC data device path structure.\r
2381\r
2382 @param TextDeviceNode The input Text device path node.\r
2383\r
2384 @return A pointer to the newly-created USB CDC data device path structure.\r
2385\r
2386**/\r
95276127 2387EFI_DEVICE_PATH_PROTOCOL *\r
2388DevPathFromTextUsbCDCData (\r
2389 IN CHAR16 *TextDeviceNode\r
2390 )\r
2391{\r
2392 USB_CLASS_TEXT UsbClassText;\r
2393\r
2394 UsbClassText.ClassExist = FALSE;\r
2395 UsbClassText.Class = USB_CLASS_CDCDATA;\r
2396 UsbClassText.SubClassExist = TRUE;\r
2397\r
2398 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2399}\r
2400\r
572f5d8a 2401/**\r
2402 Converts a text device path node to USB smart card device path structure.\r
2403\r
2404 @param TextDeviceNode The input Text device path node.\r
2405\r
2406 @return A pointer to the newly-created USB smart card device path structure.\r
2407\r
2408**/\r
95276127 2409EFI_DEVICE_PATH_PROTOCOL *\r
2410DevPathFromTextUsbSmartCard (\r
2411 IN CHAR16 *TextDeviceNode\r
2412 )\r
2413{\r
2414 USB_CLASS_TEXT UsbClassText;\r
2415\r
2416 UsbClassText.ClassExist = FALSE;\r
2417 UsbClassText.Class = USB_CLASS_SMART_CARD;\r
2418 UsbClassText.SubClassExist = TRUE;\r
2419\r
2420 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2421}\r
2422\r
572f5d8a 2423/**\r
2424 Converts a text device path node to USB video device path structure.\r
2425\r
2426 @param TextDeviceNode The input Text device path node.\r
2427\r
2428 @return A pointer to the newly-created USB video device path structure.\r
2429\r
2430**/\r
95276127 2431EFI_DEVICE_PATH_PROTOCOL *\r
2432DevPathFromTextUsbVideo (\r
2433 IN CHAR16 *TextDeviceNode\r
2434 )\r
2435{\r
2436 USB_CLASS_TEXT UsbClassText;\r
2437\r
2438 UsbClassText.ClassExist = FALSE;\r
2439 UsbClassText.Class = USB_CLASS_VIDEO;\r
2440 UsbClassText.SubClassExist = TRUE;\r
2441\r
2442 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2443}\r
2444\r
572f5d8a 2445/**\r
2446 Converts a text device path node to USB diagnostic device path structure.\r
2447\r
2448 @param TextDeviceNode The input Text device path node.\r
2449\r
2450 @return A pointer to the newly-created USB diagnostic device path structure.\r
2451\r
2452**/\r
95276127 2453EFI_DEVICE_PATH_PROTOCOL *\r
2454DevPathFromTextUsbDiagnostic (\r
2455 IN CHAR16 *TextDeviceNode\r
2456 )\r
2457{\r
2458 USB_CLASS_TEXT UsbClassText;\r
2459\r
2460 UsbClassText.ClassExist = FALSE;\r
2461 UsbClassText.Class = USB_CLASS_DIAGNOSTIC;\r
2462 UsbClassText.SubClassExist = TRUE;\r
2463\r
2464 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2465}\r
2466\r
572f5d8a 2467/**\r
2468 Converts a text device path node to USB wireless device path structure.\r
2469\r
2470 @param TextDeviceNode The input Text device path node.\r
2471\r
2472 @return A pointer to the newly-created USB wireless device path structure.\r
2473\r
2474**/\r
95276127 2475EFI_DEVICE_PATH_PROTOCOL *\r
2476DevPathFromTextUsbWireless (\r
2477 IN CHAR16 *TextDeviceNode\r
2478 )\r
2479{\r
2480 USB_CLASS_TEXT UsbClassText;\r
2481\r
2482 UsbClassText.ClassExist = FALSE;\r
2483 UsbClassText.Class = USB_CLASS_WIRELESS;\r
2484 UsbClassText.SubClassExist = TRUE;\r
2485\r
2486 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2487}\r
2488\r
572f5d8a 2489/**\r
2490 Converts a text device path node to USB device firmware update device path structure.\r
2491\r
2492 @param TextDeviceNode The input Text device path node.\r
2493\r
2494 @return A pointer to the newly-created USB device firmware update device path structure.\r
2495\r
2496**/\r
95276127 2497EFI_DEVICE_PATH_PROTOCOL *\r
2498DevPathFromTextUsbDeviceFirmwareUpdate (\r
2499 IN CHAR16 *TextDeviceNode\r
2500 )\r
2501{\r
2502 USB_CLASS_TEXT UsbClassText;\r
2503\r
2504 UsbClassText.ClassExist = FALSE;\r
2505 UsbClassText.Class = USB_CLASS_RESERVE;\r
2506 UsbClassText.SubClassExist = FALSE;\r
2507 UsbClassText.SubClass = USB_SUBCLASS_FW_UPDATE;\r
2508\r
2509 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2510}\r
2511\r
572f5d8a 2512/**\r
2513 Converts a text device path node to USB IRDA bridge device path structure.\r
2514\r
2515 @param TextDeviceNode The input Text device path node.\r
2516\r
2517 @return A pointer to the newly-created USB IRDA bridge device path structure.\r
2518\r
2519**/\r
95276127 2520EFI_DEVICE_PATH_PROTOCOL *\r
2521DevPathFromTextUsbIrdaBridge (\r
2522 IN CHAR16 *TextDeviceNode\r
2523 )\r
2524{\r
2525 USB_CLASS_TEXT UsbClassText;\r
2526\r
2527 UsbClassText.ClassExist = FALSE;\r
2528 UsbClassText.Class = USB_CLASS_RESERVE;\r
2529 UsbClassText.SubClassExist = FALSE;\r
2530 UsbClassText.SubClass = USB_SUBCLASS_IRDA_BRIDGE;\r
2531\r
2532 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2533}\r
2534\r
572f5d8a 2535/**\r
2536 Converts a text device path node to USB text and measurement device path structure.\r
2537\r
2538 @param TextDeviceNode The input Text device path node.\r
2539\r
2540 @return A pointer to the newly-created USB text and measurement device path structure.\r
2541\r
2542**/\r
95276127 2543EFI_DEVICE_PATH_PROTOCOL *\r
2544DevPathFromTextUsbTestAndMeasurement (\r
2545 IN CHAR16 *TextDeviceNode\r
2546 )\r
2547{\r
2548 USB_CLASS_TEXT UsbClassText;\r
2549\r
2550 UsbClassText.ClassExist = FALSE;\r
2551 UsbClassText.Class = USB_CLASS_RESERVE;\r
2552 UsbClassText.SubClassExist = FALSE;\r
2553 UsbClassText.SubClass = USB_SUBCLASS_TEST;\r
2554\r
2555 return ConvertFromTextUsbClass (TextDeviceNode, &UsbClassText);\r
2556}\r
2557\r
572f5d8a 2558/**\r
2559 Converts a text device path node to USB WWID device path structure.\r
2560\r
2561 @param TextDeviceNode The input Text device path node.\r
2562\r
2563 @return A pointer to the newly-created USB WWID device path structure.\r
2564\r
2565**/\r
95276127 2566EFI_DEVICE_PATH_PROTOCOL *\r
2567DevPathFromTextUsbWwid (\r
2568 IN CHAR16 *TextDeviceNode\r
2569 )\r
2570{\r
2571 CHAR16 *VIDStr;\r
2572 CHAR16 *PIDStr;\r
2573 CHAR16 *InterfaceNumStr;\r
cf40f28a 2574 CHAR16 *SerialNumberStr;\r
95276127 2575 USB_WWID_DEVICE_PATH *UsbWwid;\r
9da38884
RN
2576 UINTN SerialNumberStrLen;\r
2577\r
2578 VIDStr = GetNextParamStr (&TextDeviceNode);\r
2579 PIDStr = GetNextParamStr (&TextDeviceNode);\r
2580 InterfaceNumStr = GetNextParamStr (&TextDeviceNode);\r
2581 SerialNumberStr = GetNextParamStr (&TextDeviceNode);\r
2582 SerialNumberStrLen = StrLen (SerialNumberStr);\r
2583 if (SerialNumberStrLen >= 2 &&\r
2584 SerialNumberStr[0] == L'\"' &&\r
2585 SerialNumberStr[SerialNumberStrLen - 1] == L'\"'\r
2586 ) {\r
2587 SerialNumberStr[SerialNumberStrLen - 1] = L'\0';\r
2588 SerialNumberStr++;\r
2589 SerialNumberStrLen -= 2;\r
2590 }\r
2591 UsbWwid = (USB_WWID_DEVICE_PATH *) CreateDeviceNode (\r
95276127 2592 MESSAGING_DEVICE_PATH,\r
2593 MSG_USB_WWID_DP,\r
9da38884 2594 (UINT16) (sizeof (USB_WWID_DEVICE_PATH) + SerialNumberStrLen * sizeof (CHAR16))\r
95276127 2595 );\r
9da38884
RN
2596 UsbWwid->VendorId = (UINT16) Strtoi (VIDStr);\r
2597 UsbWwid->ProductId = (UINT16) Strtoi (PIDStr);\r
2598 UsbWwid->InterfaceNumber = (UINT16) Strtoi (InterfaceNumStr);\r
750b4513
HW
2599\r
2600 //\r
2601 // There is no memory allocated in UsbWwid for the '\0' in SerialNumberStr.\r
2602 // Therefore, the '\0' will not be copied.\r
2603 //\r
2604 CopyMem (\r
2605 (UINT8 *) UsbWwid + sizeof (USB_WWID_DEVICE_PATH),\r
2606 SerialNumberStr,\r
2607 SerialNumberStrLen * sizeof (CHAR16)\r
2608 );\r
95276127 2609\r
2610 return (EFI_DEVICE_PATH_PROTOCOL *) UsbWwid;\r
2611}\r
2612\r
572f5d8a 2613/**\r
2614 Converts a text device path node to Logic Unit device path structure.\r
2615\r
2616 @param TextDeviceNode The input Text device path node.\r
2617\r
2618 @return A pointer to the newly-created Logic Unit device path structure.\r
2619\r
2620**/\r
95276127 2621EFI_DEVICE_PATH_PROTOCOL *\r
2622DevPathFromTextUnit (\r
2623 IN CHAR16 *TextDeviceNode\r
2624 )\r
2625{\r
2626 CHAR16 *LunStr;\r
2627 DEVICE_LOGICAL_UNIT_DEVICE_PATH *LogicalUnit;\r
2628\r
2629 LunStr = GetNextParamStr (&TextDeviceNode);\r
2630 LogicalUnit = (DEVICE_LOGICAL_UNIT_DEVICE_PATH *) CreateDeviceNode (\r
2631 MESSAGING_DEVICE_PATH,\r
2632 MSG_DEVICE_LOGICAL_UNIT_DP,\r
cf40f28a 2633 (UINT16) sizeof (DEVICE_LOGICAL_UNIT_DEVICE_PATH)\r
95276127 2634 );\r
2635\r
cf40f28a 2636 LogicalUnit->Lun = (UINT8) Strtoi (LunStr);\r
95276127 2637\r
2638 return (EFI_DEVICE_PATH_PROTOCOL *) LogicalUnit;\r
2639}\r
2640\r
572f5d8a 2641/**\r
2642 Converts a text device path node to iSCSI device path structure.\r
2643\r
2644 @param TextDeviceNode The input Text device path node.\r
2645\r
2646 @return A pointer to the newly-created iSCSI device path structure.\r
2647\r
2648**/\r
95276127 2649EFI_DEVICE_PATH_PROTOCOL *\r
2650DevPathFromTextiSCSI (\r
2651 IN CHAR16 *TextDeviceNode\r
2652 )\r
2653{\r
2654 UINT16 Options;\r
2655 CHAR16 *NameStr;\r
2656 CHAR16 *PortalGroupStr;\r
2657 CHAR16 *LunStr;\r
2658 CHAR16 *HeaderDigestStr;\r
2659 CHAR16 *DataDigestStr;\r
2660 CHAR16 *AuthenticationStr;\r
2661 CHAR16 *ProtocolStr;\r
cf40f28a 2662 CHAR8 *AsciiStr;\r
572f5d8a 2663 ISCSI_DEVICE_PATH_WITH_NAME *ISCSIDevPath;\r
95276127 2664\r
2665 NameStr = GetNextParamStr (&TextDeviceNode);\r
2666 PortalGroupStr = GetNextParamStr (&TextDeviceNode);\r
2667 LunStr = GetNextParamStr (&TextDeviceNode);\r
2668 HeaderDigestStr = GetNextParamStr (&TextDeviceNode);\r
2669 DataDigestStr = GetNextParamStr (&TextDeviceNode);\r
2670 AuthenticationStr = GetNextParamStr (&TextDeviceNode);\r
2671 ProtocolStr = GetNextParamStr (&TextDeviceNode);\r
572f5d8a 2672 ISCSIDevPath = (ISCSI_DEVICE_PATH_WITH_NAME *) CreateDeviceNode (\r
95276127 2673 MESSAGING_DEVICE_PATH,\r
2674 MSG_ISCSI_DP,\r
047c6449 2675 (UINT16) (sizeof (ISCSI_DEVICE_PATH_WITH_NAME) + StrLen (NameStr))\r
95276127 2676 );\r
2677\r
184f7d83 2678 AsciiStr = ISCSIDevPath->TargetName;\r
cf40f28a 2679 StrToAscii (NameStr, &AsciiStr);\r
2680\r
572f5d8a 2681 ISCSIDevPath->TargetPortalGroupTag = (UINT16) Strtoi (PortalGroupStr);\r
2682 Strtoi64 (LunStr, &ISCSIDevPath->Lun);\r
95276127 2683\r
2684 Options = 0x0000;\r
2685 if (StrCmp (HeaderDigestStr, L"CRC32C") == 0) {\r
2686 Options |= 0x0002;\r
2687 }\r
2688\r
2689 if (StrCmp (DataDigestStr, L"CRC32C") == 0) {\r
2690 Options |= 0x0008;\r
2691 }\r
2692\r
2693 if (StrCmp (AuthenticationStr, L"None") == 0) {\r
2694 Options |= 0x0800;\r
2695 }\r
2696\r
2697 if (StrCmp (AuthenticationStr, L"CHAP_UNI") == 0) {\r
2698 Options |= 0x1000;\r
2699 }\r
2700\r
572f5d8a 2701 ISCSIDevPath->LoginOption = (UINT16) Options;\r
95276127 2702\r
572f5d8a 2703 ISCSIDevPath->NetworkProtocol = (UINT16) StrCmp (ProtocolStr, L"TCP");\r
95276127 2704\r
572f5d8a 2705 return (EFI_DEVICE_PATH_PROTOCOL *) ISCSIDevPath;\r
95276127 2706}\r
2707\r
8f97f911 2708/**\r
2709 Converts a text device path node to VLAN device path structure.\r
2710\r
2711 @param TextDeviceNode The input Text device path node.\r
2712\r
2713 @return A pointer to the newly-created VLAN device path structure.\r
2714\r
2715**/\r
2716EFI_DEVICE_PATH_PROTOCOL *\r
2717DevPathFromTextVlan (\r
2718 IN CHAR16 *TextDeviceNode\r
2719 )\r
2720{\r
2721 CHAR16 *VlanStr;\r
2722 VLAN_DEVICE_PATH *Vlan;\r
2723\r
2724 VlanStr = GetNextParamStr (&TextDeviceNode);\r
2725 Vlan = (VLAN_DEVICE_PATH *) CreateDeviceNode (\r
2726 MESSAGING_DEVICE_PATH,\r
2727 MSG_VLAN_DP,\r
c9325700 2728 (UINT16) sizeof (VLAN_DEVICE_PATH)\r
8f97f911 2729 );\r
2730\r
2731 Vlan->VlanId = (UINT16) Strtoi (VlanStr);\r
2732\r
2733 return (EFI_DEVICE_PATH_PROTOCOL *) Vlan;\r
2734}\r
2735\r
7795c8f9
QS
2736/**\r
2737 Converts a text device path node to Bluetooth device path structure.\r
2738\r
2739 @param TextDeviceNode The input Text device path node.\r
2740\r
2741 @return A pointer to the newly-created Bluetooth device path structure.\r
2742\r
2743**/\r
2744EFI_DEVICE_PATH_PROTOCOL *\r
2745DevPathFromTextBluetooth (\r
2746 IN CHAR16 *TextDeviceNode\r
2747 )\r
2748{\r
2749 CHAR16 *BluetoothStr;\r
2750 CHAR16 *Walker;\r
2751 CHAR16 *TempNumBuffer;\r
2752 UINTN TempBufferSize;\r
2753 INT32 Index;\r
2754 BLUETOOTH_DEVICE_PATH *BluetoothDp;\r
2755\r
2756 BluetoothStr = GetNextParamStr (&TextDeviceNode);\r
2757 BluetoothDp = (BLUETOOTH_DEVICE_PATH *) CreateDeviceNode (\r
2758 MESSAGING_DEVICE_PATH,\r
2759 MSG_BLUETOOTH_DP,\r
2760 (UINT16) sizeof (BLUETOOTH_DEVICE_PATH)\r
2761 );\r
2762\r
2763 Index = sizeof (BLUETOOTH_ADDRESS) - 1;\r
2764 while (!IS_NULL(BluetoothStr) && Index >= 0) {\r
2765 Walker = SplitStr (&BluetoothStr, L':');\r
2766 TempBufferSize = StrSize (Walker) + StrLen (L"0x") * sizeof (CHAR16);\r
2767 TempNumBuffer = AllocateZeroPool (TempBufferSize);\r
2768 if (TempNumBuffer == NULL) {\r
2769 break;\r
2770 }\r
750b4513
HW
2771 StrCpyS (TempNumBuffer, TempBufferSize / sizeof (CHAR16), L"0x");\r
2772 StrCatS (TempNumBuffer, TempBufferSize / sizeof (CHAR16), Walker);\r
7795c8f9
QS
2773 BluetoothDp->BD_ADDR.Address[Index] = (UINT8)Strtoi (TempNumBuffer);\r
2774 FreePool (TempNumBuffer);\r
2775 Index--;\r
2776 }\r
2777 \r
2778 return (EFI_DEVICE_PATH_PROTOCOL *) BluetoothDp;\r
2779}\r
2780\r
3bafd562
HW
2781/**\r
2782 Converts a text device path node to Wi-Fi device path structure.\r
2783\r
2784 @param TextDeviceNode The input Text device path node.\r
2785\r
2786 @return A pointer to the newly-created Wi-Fi device path structure.\r
2787\r
2788**/\r
2789EFI_DEVICE_PATH_PROTOCOL *\r
2790DevPathFromTextWiFi (\r
2791 IN CHAR16 *TextDeviceNode\r
2792 )\r
2793{\r
2794 CHAR16 *SSIdStr;\r
2795 CHAR8 *AsciiStr;\r
2796 WIFI_DEVICE_PATH *WiFiDp;\r
2797\r
2798 SSIdStr = GetNextParamStr (&TextDeviceNode);\r
2799 WiFiDp = (WIFI_DEVICE_PATH *) CreateDeviceNode (\r
2800 MESSAGING_DEVICE_PATH,\r
2801 MSG_WIFI_DP,\r
2802 (UINT16) sizeof (WIFI_DEVICE_PATH)\r
2803 );\r
2804\r
1d13077b 2805 AsciiStr = (CHAR8 *) WiFiDp->SSId;\r
3bafd562
HW
2806 StrToAscii (SSIdStr, &AsciiStr);\r
2807\r
2808 return (EFI_DEVICE_PATH_PROTOCOL *) WiFiDp;\r
2809}\r
2810\r
c808ac7b
RN
2811/**\r
2812 Converts a text device path node to URI device path structure.\r
2813\r
2814 @param TextDeviceNode The input Text device path node.\r
2815\r
2816 @return A pointer to the newly-created URI device path structure.\r
2817\r
2818**/\r
2819EFI_DEVICE_PATH_PROTOCOL *\r
2820DevPathFromTextUri (\r
2821 IN CHAR16 *TextDeviceNode\r
2822 )\r
2823{\r
2824 CHAR16 *UriStr;\r
2825 UINTN UriLength;\r
2826 URI_DEVICE_PATH *Uri;\r
2827\r
2828 UriStr = GetNextParamStr (&TextDeviceNode);\r
2829 UriLength = StrnLenS (UriStr, MAX_UINT16 - sizeof (URI_DEVICE_PATH));\r
2830 Uri = (URI_DEVICE_PATH *) CreateDeviceNode (\r
2831 MESSAGING_DEVICE_PATH,\r
2832 MSG_URI_DP,\r
2833 (UINT16) (sizeof (URI_DEVICE_PATH) + UriLength)\r
2834 );\r
2835\r
2836 while (UriLength-- != 0) {\r
2837 Uri->Uri[UriLength] = (CHAR8) UriStr[UriLength];\r
2838 }\r
2839\r
2840 return (EFI_DEVICE_PATH_PROTOCOL *) Uri;\r
2841}\r
2842\r
5d6a5aee
RN
2843/**\r
2844 Converts a media text device path node to media device path structure.\r
2845\r
2846 @param TextDeviceNode The input Text device path node.\r
2847\r
2848 @return A pointer to media device path structure.\r
2849\r
2850**/\r
2851EFI_DEVICE_PATH_PROTOCOL *\r
2852DevPathFromTextMediaPath (\r
2853 IN CHAR16 *TextDeviceNode\r
2854 )\r
2855{\r
2856 return DevPathFromTextGenericPath (MEDIA_DEVICE_PATH, TextDeviceNode);\r
2857}\r
2858\r
572f5d8a 2859/**\r
2860 Converts a text device path node to HD device path structure.\r
2861\r
2862 @param TextDeviceNode The input Text device path node.\r
2863\r
2864 @return A pointer to the newly-created HD device path structure.\r
2865\r
2866**/\r
95276127 2867EFI_DEVICE_PATH_PROTOCOL *\r
2868DevPathFromTextHD (\r
2869 IN CHAR16 *TextDeviceNode\r
2870 )\r
2871{\r
2872 CHAR16 *PartitionStr;\r
2873 CHAR16 *TypeStr;\r
2874 CHAR16 *SignatureStr;\r
2875 CHAR16 *StartStr;\r
2876 CHAR16 *SizeStr;\r
2877 UINT32 Signature32;\r
2878 EFI_GUID SignatureGuid;\r
2879 HARDDRIVE_DEVICE_PATH *Hd;\r
2880\r
2881 PartitionStr = GetNextParamStr (&TextDeviceNode);\r
2882 TypeStr = GetNextParamStr (&TextDeviceNode);\r
2883 SignatureStr = GetNextParamStr (&TextDeviceNode);\r
2884 StartStr = GetNextParamStr (&TextDeviceNode);\r
2885 SizeStr = GetNextParamStr (&TextDeviceNode);\r
2886 Hd = (HARDDRIVE_DEVICE_PATH *) CreateDeviceNode (\r
2887 MEDIA_DEVICE_PATH,\r
2888 MEDIA_HARDDRIVE_DP,\r
c9325700 2889 (UINT16) sizeof (HARDDRIVE_DEVICE_PATH)\r
95276127 2890 );\r
2891\r
9da38884 2892 Hd->PartitionNumber = (UINT32) Strtoi (PartitionStr);\r
95276127 2893\r
2894 ZeroMem (Hd->Signature, 16);\r
2895 Hd->MBRType = (UINT8) 0;\r
2896\r
cf40f28a 2897 if (StrCmp (TypeStr, L"MBR") == 0) {\r
95276127 2898 Hd->SignatureType = SIGNATURE_TYPE_MBR;\r
2899 Hd->MBRType = 0x01;\r
2900\r
cf40f28a 2901 Signature32 = (UINT32) Strtoi (SignatureStr);\r
95276127 2902 CopyMem (Hd->Signature, &Signature32, sizeof (UINT32));\r
cf40f28a 2903 } else if (StrCmp (TypeStr, L"GPT") == 0) {\r
95276127 2904 Hd->SignatureType = SIGNATURE_TYPE_GUID;\r
2905 Hd->MBRType = 0x02;\r
2906\r
2907 StrToGuid (SignatureStr, &SignatureGuid);\r
2908 CopyMem (Hd->Signature, &SignatureGuid, sizeof (EFI_GUID));\r
2909 } else {\r
cf40f28a 2910 Hd->SignatureType = (UINT8) Strtoi (TypeStr);\r
95276127 2911 }\r
2912\r
cf40f28a 2913 Strtoi64 (StartStr, &Hd->PartitionStart);\r
2914 Strtoi64 (SizeStr, &Hd->PartitionSize);\r
95276127 2915\r
2916 return (EFI_DEVICE_PATH_PROTOCOL *) Hd;\r
2917}\r
2918\r
572f5d8a 2919/**\r
2920 Converts a text device path node to CDROM device path structure.\r
2921\r
2922 @param TextDeviceNode The input Text device path node.\r
2923\r
2924 @return A pointer to the newly-created CDROM device path structure.\r
2925\r
2926**/\r
95276127 2927EFI_DEVICE_PATH_PROTOCOL *\r
2928DevPathFromTextCDROM (\r
2929 IN CHAR16 *TextDeviceNode\r
2930 )\r
2931{\r
2932 CHAR16 *EntryStr;\r
2933 CHAR16 *StartStr;\r
2934 CHAR16 *SizeStr;\r
572f5d8a 2935 CDROM_DEVICE_PATH *CDROMDevPath;\r
95276127 2936\r
2937 EntryStr = GetNextParamStr (&TextDeviceNode);\r
2938 StartStr = GetNextParamStr (&TextDeviceNode);\r
2939 SizeStr = GetNextParamStr (&TextDeviceNode);\r
572f5d8a 2940 CDROMDevPath = (CDROM_DEVICE_PATH *) CreateDeviceNode (\r
95276127 2941 MEDIA_DEVICE_PATH,\r
2942 MEDIA_CDROM_DP,\r
c9325700 2943 (UINT16) sizeof (CDROM_DEVICE_PATH)\r
95276127 2944 );\r
2945\r
572f5d8a 2946 CDROMDevPath->BootEntry = (UINT32) Strtoi (EntryStr);\r
2947 Strtoi64 (StartStr, &CDROMDevPath->PartitionStart);\r
2948 Strtoi64 (SizeStr, &CDROMDevPath->PartitionSize);\r
95276127 2949\r
572f5d8a 2950 return (EFI_DEVICE_PATH_PROTOCOL *) CDROMDevPath;\r
95276127 2951}\r
2952\r
572f5d8a 2953/**\r
2954 Converts a text device path node to Vendor-defined media device path structure.\r
2955\r
2956 @param TextDeviceNode The input Text device path node.\r
2957\r
2958 @return A pointer to the newly-created Vendor-defined media device path structure.\r
2959\r
2960**/\r
95276127 2961EFI_DEVICE_PATH_PROTOCOL *\r
9da38884 2962DevPathFromTextVenMedia (\r
95276127 2963 IN CHAR16 *TextDeviceNode\r
2964 )\r
2965{\r
2966 return ConvertFromTextVendor (\r
2967 TextDeviceNode,\r
2968 MEDIA_DEVICE_PATH,\r
2969 MEDIA_VENDOR_DP\r
2970 );\r
2971}\r
2972\r
572f5d8a 2973/**\r
2974 Converts a text device path node to File device path structure.\r
2975\r
2976 @param TextDeviceNode The input Text device path node.\r
2977\r
2978 @return A pointer to the newly-created File device path structure.\r
2979\r
2980**/\r
95276127 2981EFI_DEVICE_PATH_PROTOCOL *\r
2982DevPathFromTextFilePath (\r
2983 IN CHAR16 *TextDeviceNode\r
2984 )\r
2985{\r
2986 FILEPATH_DEVICE_PATH *File;\r
2987\r
2988 File = (FILEPATH_DEVICE_PATH *) CreateDeviceNode (\r
2989 MEDIA_DEVICE_PATH,\r
2990 MEDIA_FILEPATH_DP,\r
d074a8e1 2991 (UINT16) (sizeof (FILEPATH_DEVICE_PATH) + StrLen (TextDeviceNode) * 2)\r
95276127 2992 );\r
2993\r
750b4513 2994 StrCpyS (File->PathName, StrLen (TextDeviceNode) + 1, TextDeviceNode);\r
95276127 2995\r
2996 return (EFI_DEVICE_PATH_PROTOCOL *) File;\r
2997}\r
2998\r
572f5d8a 2999/**\r
3000 Converts a text device path node to Media protocol device path structure.\r
3001\r
3002 @param TextDeviceNode The input Text device path node.\r
3003\r
3004 @return A pointer to the newly-created Media protocol device path structure.\r
3005\r
3006**/\r
95276127 3007EFI_DEVICE_PATH_PROTOCOL *\r
3008DevPathFromTextMedia (\r
3009 IN CHAR16 *TextDeviceNode\r
3010 )\r
3011{\r
3012 CHAR16 *GuidStr;\r
3013 MEDIA_PROTOCOL_DEVICE_PATH *Media;\r
3014\r
3015 GuidStr = GetNextParamStr (&TextDeviceNode);\r
3016 Media = (MEDIA_PROTOCOL_DEVICE_PATH *) CreateDeviceNode (\r
3017 MEDIA_DEVICE_PATH,\r
3018 MEDIA_PROTOCOL_DP,\r
c9325700 3019 (UINT16) sizeof (MEDIA_PROTOCOL_DEVICE_PATH)\r
95276127 3020 );\r
3021\r
3022 StrToGuid (GuidStr, &Media->Protocol);\r
3023\r
3024 return (EFI_DEVICE_PATH_PROTOCOL *) Media;\r
3025}\r
3026\r
572f5d8a 3027/**\r
3028 Converts a text device path node to firmware volume device path structure.\r
3029\r
3030 @param TextDeviceNode The input Text device path node.\r
3031\r
3032 @return A pointer to the newly-created firmware volume device path structure.\r
3033\r
3034**/\r
cf40f28a 3035EFI_DEVICE_PATH_PROTOCOL *\r
3036DevPathFromTextFv (\r
3037 IN CHAR16 *TextDeviceNode\r
3038 )\r
3039{\r
3040 CHAR16 *GuidStr;\r
3041 MEDIA_FW_VOL_DEVICE_PATH *Fv;\r
3042\r
3043 GuidStr = GetNextParamStr (&TextDeviceNode);\r
3044 Fv = (MEDIA_FW_VOL_DEVICE_PATH *) CreateDeviceNode (\r
3045 MEDIA_DEVICE_PATH,\r
3046 MEDIA_PIWG_FW_VOL_DP,\r
c9325700 3047 (UINT16) sizeof (MEDIA_FW_VOL_DEVICE_PATH)\r
cf40f28a 3048 );\r
3049\r
3050 StrToGuid (GuidStr, &Fv->FvName);\r
3051\r
3052 return (EFI_DEVICE_PATH_PROTOCOL *) Fv;\r
3053}\r
3054\r
572f5d8a 3055/**\r
3056 Converts a text device path node to firmware file device path structure.\r
3057\r
3058 @param TextDeviceNode The input Text device path node.\r
3059\r
3060 @return A pointer to the newly-created firmware file device path structure.\r
3061\r
3062**/\r
cf40f28a 3063EFI_DEVICE_PATH_PROTOCOL *\r
3064DevPathFromTextFvFile (\r
3065 IN CHAR16 *TextDeviceNode\r
3066 )\r
3067{\r
3068 CHAR16 *GuidStr;\r
3069 MEDIA_FW_VOL_FILEPATH_DEVICE_PATH *FvFile;\r
3070\r
3071 GuidStr = GetNextParamStr (&TextDeviceNode);\r
3072 FvFile = (MEDIA_FW_VOL_FILEPATH_DEVICE_PATH *) CreateDeviceNode (\r
3073 MEDIA_DEVICE_PATH,\r
3074 MEDIA_PIWG_FW_FILE_DP,\r
c9325700 3075 (UINT16) sizeof (MEDIA_FW_VOL_FILEPATH_DEVICE_PATH)\r
cf40f28a 3076 );\r
3077\r
3078 StrToGuid (GuidStr, &FvFile->FvFileName);\r
3079\r
3080 return (EFI_DEVICE_PATH_PROTOCOL *) FvFile;\r
3081}\r
3082\r
192b057b 3083/**\r
3084 Converts a text device path node to text relative offset device path structure.\r
3085\r
3086 @param TextDeviceNode The input Text device path node.\r
3087\r
3088 @return A pointer to the newly-created Text device path structure.\r
3089\r
3090**/\r
3091EFI_DEVICE_PATH_PROTOCOL *\r
3092DevPathFromTextRelativeOffsetRange (\r
3093 IN CHAR16 *TextDeviceNode\r
3094 )\r
3095{\r
395ed063 3096 CHAR16 *StartingOffsetStr;\r
3097 CHAR16 *EndingOffsetStr;\r
3098 MEDIA_RELATIVE_OFFSET_RANGE_DEVICE_PATH *Offset;\r
192b057b 3099\r
3100 StartingOffsetStr = GetNextParamStr (&TextDeviceNode);\r
3101 EndingOffsetStr = GetNextParamStr (&TextDeviceNode);\r
395ed063 3102 Offset = (MEDIA_RELATIVE_OFFSET_RANGE_DEVICE_PATH *) CreateDeviceNode (\r
3103 MEDIA_DEVICE_PATH,\r
3104 MEDIA_RELATIVE_OFFSET_RANGE_DP,\r
c9325700 3105 (UINT16) sizeof (MEDIA_RELATIVE_OFFSET_RANGE_DEVICE_PATH)\r
395ed063 3106 );\r
3107\r
792a1534 3108 Strtoi64 (StartingOffsetStr, &Offset->StartingOffset);\r
3109 Strtoi64 (EndingOffsetStr, &Offset->EndingOffset);\r
192b057b 3110\r
3111 return (EFI_DEVICE_PATH_PROTOCOL *) Offset;\r
3112}\r
3113\r
6a46c1a2
FT
3114/**\r
3115 Converts a text device path node to text ram disk device path structure.\r
3116\r
3117 @param TextDeviceNode The input Text device path node.\r
3118\r
3119 @return A pointer to the newly-created Text device path structure.\r
3120\r
3121**/\r
3122EFI_DEVICE_PATH_PROTOCOL *\r
3123DevPathFromTextRamDisk (\r
3124 IN CHAR16 *TextDeviceNode\r
3125 )\r
3126{\r
3127 CHAR16 *StartingAddrStr;\r
3128 CHAR16 *EndingAddrStr;\r
3129 CHAR16 *TypeGuidStr;\r
3130 CHAR16 *InstanceStr;\r
3131 MEDIA_RAM_DISK_DEVICE_PATH *RamDisk;\r
3132 UINT64 StartingAddr;\r
3133 UINT64 EndingAddr;\r
3134\r
3135 StartingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3136 EndingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3137 InstanceStr = GetNextParamStr (&TextDeviceNode);\r
3138 TypeGuidStr = GetNextParamStr (&TextDeviceNode);\r
3139 RamDisk = (MEDIA_RAM_DISK_DEVICE_PATH *) CreateDeviceNode (\r
3140 MEDIA_DEVICE_PATH,\r
3141 MEDIA_RAM_DISK_DP,\r
3142 (UINT16) sizeof (MEDIA_RAM_DISK_DEVICE_PATH)\r
3143 );\r
3144\r
3145 Strtoi64 (StartingAddrStr, &StartingAddr);\r
3146 WriteUnaligned64 ((UINT64 *) &(RamDisk->StartingAddr[0]), StartingAddr);\r
3147 Strtoi64 (EndingAddrStr, &EndingAddr);\r
3148 WriteUnaligned64 ((UINT64 *) &(RamDisk->EndingAddr[0]), EndingAddr);\r
3149 RamDisk->Instance = (UINT16) Strtoi (InstanceStr);\r
3150 StrToGuid (TypeGuidStr, &RamDisk->TypeGuid);\r
3151\r
3152 return (EFI_DEVICE_PATH_PROTOCOL *) RamDisk;\r
3153}\r
3154\r
3155/**\r
3156 Converts a text device path node to text virtual disk device path structure.\r
3157\r
3158 @param TextDeviceNode The input Text device path node.\r
3159\r
3160 @return A pointer to the newly-created Text device path structure.\r
3161\r
3162**/\r
3163EFI_DEVICE_PATH_PROTOCOL *\r
3164DevPathFromTextVirtualDisk (\r
3165 IN CHAR16 *TextDeviceNode\r
3166 )\r
3167{\r
3168 CHAR16 *StartingAddrStr;\r
3169 CHAR16 *EndingAddrStr;\r
3170 CHAR16 *InstanceStr;\r
3171 MEDIA_RAM_DISK_DEVICE_PATH *RamDisk;\r
3172 UINT64 StartingAddr;\r
3173 UINT64 EndingAddr;\r
3174\r
3175 StartingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3176 EndingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3177 InstanceStr = GetNextParamStr (&TextDeviceNode);\r
3178\r
3179 RamDisk = (MEDIA_RAM_DISK_DEVICE_PATH *) CreateDeviceNode (\r
3180 MEDIA_DEVICE_PATH,\r
3181 MEDIA_RAM_DISK_DP,\r
3182 (UINT16) sizeof (MEDIA_RAM_DISK_DEVICE_PATH)\r
3183 );\r
3184\r
3185 Strtoi64 (StartingAddrStr, &StartingAddr);\r
3186 WriteUnaligned64 ((UINT64 *) &(RamDisk->StartingAddr[0]), StartingAddr);\r
3187 Strtoi64 (EndingAddrStr, &EndingAddr);\r
3188 WriteUnaligned64 ((UINT64 *) &(RamDisk->EndingAddr[0]), EndingAddr);\r
3189 RamDisk->Instance = (UINT16) Strtoi (InstanceStr);\r
3190 CopyGuid (&RamDisk->TypeGuid, &gEfiVirtualDiskGuid);\r
3191\r
3192 return (EFI_DEVICE_PATH_PROTOCOL *) RamDisk;\r
3193}\r
3194\r
3195/**\r
3196 Converts a text device path node to text virtual cd device path structure.\r
3197\r
3198 @param TextDeviceNode The input Text device path node.\r
3199\r
3200 @return A pointer to the newly-created Text device path structure.\r
3201\r
3202**/\r
3203EFI_DEVICE_PATH_PROTOCOL *\r
3204DevPathFromTextVirtualCd (\r
3205 IN CHAR16 *TextDeviceNode\r
3206 )\r
3207{\r
3208 CHAR16 *StartingAddrStr;\r
3209 CHAR16 *EndingAddrStr;\r
3210 CHAR16 *InstanceStr;\r
3211 MEDIA_RAM_DISK_DEVICE_PATH *RamDisk;\r
3212 UINT64 StartingAddr;\r
3213 UINT64 EndingAddr;\r
3214\r
3215 StartingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3216 EndingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3217 InstanceStr = GetNextParamStr (&TextDeviceNode);\r
3218\r
3219 RamDisk = (MEDIA_RAM_DISK_DEVICE_PATH *) CreateDeviceNode (\r
3220 MEDIA_DEVICE_PATH,\r
3221 MEDIA_RAM_DISK_DP,\r
3222 (UINT16) sizeof (MEDIA_RAM_DISK_DEVICE_PATH)\r
3223 );\r
3224\r
3225 Strtoi64 (StartingAddrStr, &StartingAddr);\r
3226 WriteUnaligned64 ((UINT64 *) &(RamDisk->StartingAddr[0]), StartingAddr);\r
3227 Strtoi64 (EndingAddrStr, &EndingAddr);\r
3228 WriteUnaligned64 ((UINT64 *) &(RamDisk->EndingAddr[0]), EndingAddr);\r
3229 RamDisk->Instance = (UINT16) Strtoi (InstanceStr);\r
3230 CopyGuid (&RamDisk->TypeGuid, &gEfiVirtualCdGuid);\r
3231\r
3232 return (EFI_DEVICE_PATH_PROTOCOL *) RamDisk;\r
3233}\r
3234\r
3235/**\r
3236 Converts a text device path node to text persistent virtual disk device path structure.\r
3237\r
3238 @param TextDeviceNode The input Text device path node.\r
3239\r
3240 @return A pointer to the newly-created Text device path structure.\r
3241\r
3242**/\r
3243EFI_DEVICE_PATH_PROTOCOL *\r
3244DevPathFromTextPersistentVirtualDisk (\r
3245 IN CHAR16 *TextDeviceNode\r
3246 )\r
3247{\r
3248 CHAR16 *StartingAddrStr;\r
3249 CHAR16 *EndingAddrStr;\r
3250 CHAR16 *InstanceStr;\r
3251 MEDIA_RAM_DISK_DEVICE_PATH *RamDisk;\r
3252 UINT64 StartingAddr;\r
3253 UINT64 EndingAddr;\r
3254\r
3255 StartingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3256 EndingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3257 InstanceStr = GetNextParamStr (&TextDeviceNode);\r
3258\r
3259 RamDisk = (MEDIA_RAM_DISK_DEVICE_PATH *) CreateDeviceNode (\r
3260 MEDIA_DEVICE_PATH,\r
3261 MEDIA_RAM_DISK_DP,\r
3262 (UINT16) sizeof (MEDIA_RAM_DISK_DEVICE_PATH)\r
3263 );\r
3264\r
3265 Strtoi64 (StartingAddrStr, &StartingAddr);\r
3266 WriteUnaligned64 ((UINT64 *) &(RamDisk->StartingAddr[0]), StartingAddr);\r
3267 Strtoi64 (EndingAddrStr, &EndingAddr);\r
3268 WriteUnaligned64 ((UINT64 *) &(RamDisk->EndingAddr[0]), EndingAddr);\r
3269 RamDisk->Instance = (UINT16) Strtoi (InstanceStr);\r
3270 CopyGuid (&RamDisk->TypeGuid, &gEfiPersistentVirtualDiskGuid);\r
3271\r
3272 return (EFI_DEVICE_PATH_PROTOCOL *) RamDisk;\r
3273}\r
3274\r
3275/**\r
3276 Converts a text device path node to text persistent virtual cd device path structure.\r
3277\r
3278 @param TextDeviceNode The input Text device path node.\r
3279\r
3280 @return A pointer to the newly-created Text device path structure.\r
3281\r
3282**/\r
3283EFI_DEVICE_PATH_PROTOCOL *\r
3284DevPathFromTextPersistentVirtualCd (\r
3285 IN CHAR16 *TextDeviceNode\r
3286 )\r
3287{\r
3288 CHAR16 *StartingAddrStr;\r
3289 CHAR16 *EndingAddrStr;\r
3290 CHAR16 *InstanceStr;\r
3291 MEDIA_RAM_DISK_DEVICE_PATH *RamDisk;\r
3292 UINT64 StartingAddr;\r
3293 UINT64 EndingAddr;\r
3294\r
3295 StartingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3296 EndingAddrStr = GetNextParamStr (&TextDeviceNode);\r
3297 InstanceStr = GetNextParamStr (&TextDeviceNode);\r
3298\r
3299 RamDisk = (MEDIA_RAM_DISK_DEVICE_PATH *) CreateDeviceNode (\r
3300 MEDIA_DEVICE_PATH,\r
3301 MEDIA_RAM_DISK_DP,\r
3302 (UINT16) sizeof (MEDIA_RAM_DISK_DEVICE_PATH)\r
3303 );\r
3304\r
3305 Strtoi64 (StartingAddrStr, &StartingAddr);\r
3306 WriteUnaligned64 ((UINT64 *) &(RamDisk->StartingAddr[0]), StartingAddr);\r
3307 Strtoi64 (EndingAddrStr, &EndingAddr);\r
3308 WriteUnaligned64 ((UINT64 *) &(RamDisk->EndingAddr[0]), EndingAddr);\r
3309 RamDisk->Instance = (UINT16) Strtoi (InstanceStr);\r
3310 CopyGuid (&RamDisk->TypeGuid, &gEfiPersistentVirtualCdGuid);\r
3311\r
3312 return (EFI_DEVICE_PATH_PROTOCOL *) RamDisk;\r
3313}\r
5d6a5aee
RN
3314\r
3315/**\r
3316 Converts a BBS text device path node to BBS device path structure.\r
3317\r
3318 @param TextDeviceNode The input Text device path node.\r
3319\r
3320 @return A pointer to BBS device path structure.\r
3321\r
3322**/\r
3323EFI_DEVICE_PATH_PROTOCOL *\r
3324DevPathFromTextBbsPath (\r
3325 IN CHAR16 *TextDeviceNode\r
3326 )\r
3327{\r
3328 return DevPathFromTextGenericPath (BBS_DEVICE_PATH, TextDeviceNode);\r
3329}\r
3330\r
572f5d8a 3331/**\r
3332 Converts a text device path node to BIOS Boot Specification device path structure.\r
3333\r
3334 @param TextDeviceNode The input Text device path node.\r
3335\r
5755841f 3336 @return A pointer to the newly-created BIOS Boot Specification device path structure.\r
572f5d8a 3337\r
3338**/\r
95276127 3339EFI_DEVICE_PATH_PROTOCOL *\r
3340DevPathFromTextBBS (\r
3341 IN CHAR16 *TextDeviceNode\r
3342 )\r
3343{\r
3344 CHAR16 *TypeStr;\r
3345 CHAR16 *IdStr;\r
3346 CHAR16 *FlagsStr;\r
cf40f28a 3347 CHAR8 *AsciiStr;\r
95276127 3348 BBS_BBS_DEVICE_PATH *Bbs;\r
3349\r
3350 TypeStr = GetNextParamStr (&TextDeviceNode);\r
3351 IdStr = GetNextParamStr (&TextDeviceNode);\r
3352 FlagsStr = GetNextParamStr (&TextDeviceNode);\r
3353 Bbs = (BBS_BBS_DEVICE_PATH *) CreateDeviceNode (\r
3354 BBS_DEVICE_PATH,\r
3355 BBS_BBS_DP,\r
d074a8e1 3356 (UINT16) (sizeof (BBS_BBS_DEVICE_PATH) + StrLen (IdStr))\r
95276127 3357 );\r
3358\r
3359 if (StrCmp (TypeStr, L"Floppy") == 0) {\r
3360 Bbs->DeviceType = BBS_TYPE_FLOPPY;\r
3361 } else if (StrCmp (TypeStr, L"HD") == 0) {\r
3362 Bbs->DeviceType = BBS_TYPE_HARDDRIVE;\r
3363 } else if (StrCmp (TypeStr, L"CDROM") == 0) {\r
3364 Bbs->DeviceType = BBS_TYPE_CDROM;\r
3365 } else if (StrCmp (TypeStr, L"PCMCIA") == 0) {\r
3366 Bbs->DeviceType = BBS_TYPE_PCMCIA;\r
3367 } else if (StrCmp (TypeStr, L"USB") == 0) {\r
3368 Bbs->DeviceType = BBS_TYPE_USB;\r
3369 } else if (StrCmp (TypeStr, L"Network") == 0) {\r
3370 Bbs->DeviceType = BBS_TYPE_EMBEDDED_NETWORK;\r
3371 } else {\r
cf40f28a 3372 Bbs->DeviceType = (UINT16) Strtoi (TypeStr);\r
95276127 3373 }\r
3374\r
cf40f28a 3375 AsciiStr = Bbs->String;\r
3376 StrToAscii (IdStr, &AsciiStr);\r
95276127 3377\r
cf40f28a 3378 Bbs->StatusFlag = (UINT16) Strtoi (FlagsStr);\r
95276127 3379\r
3380 return (EFI_DEVICE_PATH_PROTOCOL *) Bbs;\r
3381}\r
3382\r
572f5d8a 3383/**\r
3384 Converts a text device path node to SATA device path structure.\r
3385\r
3386 @param TextDeviceNode The input Text device path node.\r
3387\r
3388 @return A pointer to the newly-created SATA device path structure.\r
3389\r
3390**/\r
cf40f28a 3391EFI_DEVICE_PATH_PROTOCOL *\r
3392DevPathFromTextSata (\r
3393 IN CHAR16 *TextDeviceNode\r
3394 )\r
3395{\r
3396 SATA_DEVICE_PATH *Sata;\r
3397 CHAR16 *Param1;\r
3398 CHAR16 *Param2;\r
3399 CHAR16 *Param3;\r
3400\r
cf40f28a 3401 Param1 = GetNextParamStr (&TextDeviceNode);\r
3402 Param2 = GetNextParamStr (&TextDeviceNode);\r
9da38884 3403 Param3 = GetNextParamStr (&TextDeviceNode);\r
cf40f28a 3404\r
3405 Sata = (SATA_DEVICE_PATH *) CreateDeviceNode (\r
3406 MESSAGING_DEVICE_PATH,\r
3407 MSG_SATA_DP,\r
c9325700 3408 (UINT16) sizeof (SATA_DEVICE_PATH)\r
cf40f28a 3409 );\r
9da38884
RN
3410 Sata->HBAPortNumber = (UINT16) Strtoi (Param1);\r
3411 Sata->PortMultiplierPortNumber = (UINT16) Strtoi (Param2);\r
3412 Sata->Lun = (UINT16) Strtoi (Param3);\r
cf40f28a 3413\r
3414 return (EFI_DEVICE_PATH_PROTOCOL *) Sata;\r
3415}\r
3416\r
4d0a30a4 3417GLOBAL_REMOVE_IF_UNREFERENCED DEVICE_PATH_FROM_TEXT_TABLE mUefiDevicePathLibDevPathFromTextTable[] = {\r
5d6a5aee
RN
3418 {L"Path", DevPathFromTextPath },\r
3419\r
3420 {L"HardwarePath", DevPathFromTextHardwarePath },\r
4d0a30a4
RN
3421 {L"Pci", DevPathFromTextPci },\r
3422 {L"PcCard", DevPathFromTextPcCard },\r
3423 {L"MemoryMapped", DevPathFromTextMemoryMapped },\r
3424 {L"VenHw", DevPathFromTextVenHw },\r
3425 {L"Ctrl", DevPathFromTextCtrl },\r
5d6a5aee
RN
3426\r
3427 {L"AcpiPath", DevPathFromTextAcpiPath },\r
4d0a30a4
RN
3428 {L"Acpi", DevPathFromTextAcpi },\r
3429 {L"PciRoot", DevPathFromTextPciRoot },\r
3430 {L"PcieRoot", DevPathFromTextPcieRoot },\r
3431 {L"Floppy", DevPathFromTextFloppy },\r
3432 {L"Keyboard", DevPathFromTextKeyboard },\r
3433 {L"Serial", DevPathFromTextSerial },\r
3434 {L"ParallelPort", DevPathFromTextParallelPort },\r
3435 {L"AcpiEx", DevPathFromTextAcpiEx },\r
3436 {L"AcpiExp", DevPathFromTextAcpiExp },\r
3437 {L"AcpiAdr", DevPathFromTextAcpiAdr },\r
5d6a5aee
RN
3438\r
3439 {L"Msg", DevPathFromTextMsg },\r
4d0a30a4
RN
3440 {L"Ata", DevPathFromTextAta },\r
3441 {L"Scsi", DevPathFromTextScsi },\r
3442 {L"Fibre", DevPathFromTextFibre },\r
3443 {L"FibreEx", DevPathFromTextFibreEx },\r
3444 {L"I1394", DevPathFromText1394 },\r
3445 {L"USB", DevPathFromTextUsb },\r
3446 {L"I2O", DevPathFromTextI2O },\r
3447 {L"Infiniband", DevPathFromTextInfiniband },\r
3448 {L"VenMsg", DevPathFromTextVenMsg },\r
3449 {L"VenPcAnsi", DevPathFromTextVenPcAnsi },\r
3450 {L"VenVt100", DevPathFromTextVenVt100 },\r
3451 {L"VenVt100Plus", DevPathFromTextVenVt100Plus },\r
3452 {L"VenUtf8", DevPathFromTextVenUtf8 },\r
3453 {L"UartFlowCtrl", DevPathFromTextUartFlowCtrl },\r
3454 {L"SAS", DevPathFromTextSAS },\r
3455 {L"SasEx", DevPathFromTextSasEx },\r
a06ec3e2 3456 {L"NVMe", DevPathFromTextNVMe },\r
52306166 3457 {L"UFS", DevPathFromTextUfs },\r
ab8686b8 3458 {L"SD", DevPathFromTextSd },\r
4d0a30a4
RN
3459 {L"DebugPort", DevPathFromTextDebugPort },\r
3460 {L"MAC", DevPathFromTextMAC },\r
3461 {L"IPv4", DevPathFromTextIPv4 },\r
3462 {L"IPv6", DevPathFromTextIPv6 },\r
3463 {L"Uart", DevPathFromTextUart },\r
3464 {L"UsbClass", DevPathFromTextUsbClass },\r
3465 {L"UsbAudio", DevPathFromTextUsbAudio },\r
3466 {L"UsbCDCControl", DevPathFromTextUsbCDCControl },\r
3467 {L"UsbHID", DevPathFromTextUsbHID },\r
3468 {L"UsbImage", DevPathFromTextUsbImage },\r
3469 {L"UsbPrinter", DevPathFromTextUsbPrinter },\r
3470 {L"UsbMassStorage", DevPathFromTextUsbMassStorage },\r
3471 {L"UsbHub", DevPathFromTextUsbHub },\r
3472 {L"UsbCDCData", DevPathFromTextUsbCDCData },\r
3473 {L"UsbSmartCard", DevPathFromTextUsbSmartCard },\r
3474 {L"UsbVideo", DevPathFromTextUsbVideo },\r
3475 {L"UsbDiagnostic", DevPathFromTextUsbDiagnostic },\r
3476 {L"UsbWireless", DevPathFromTextUsbWireless },\r
3477 {L"UsbDeviceFirmwareUpdate", DevPathFromTextUsbDeviceFirmwareUpdate },\r
3478 {L"UsbIrdaBridge", DevPathFromTextUsbIrdaBridge },\r
3479 {L"UsbTestAndMeasurement", DevPathFromTextUsbTestAndMeasurement },\r
3480 {L"UsbWwid", DevPathFromTextUsbWwid },\r
3481 {L"Unit", DevPathFromTextUnit },\r
3482 {L"iSCSI", DevPathFromTextiSCSI },\r
3483 {L"Vlan", DevPathFromTextVlan },\r
c808ac7b 3484 {L"Uri", DevPathFromTextUri },\r
7795c8f9 3485 {L"Bluetooth", DevPathFromTextBluetooth },\r
3bafd562 3486 {L"WiFi", DevPathFromTextWiFi },\r
5d6a5aee 3487 {L"MediaPath", DevPathFromTextMediaPath },\r
4d0a30a4
RN
3488 {L"HD", DevPathFromTextHD },\r
3489 {L"CDROM", DevPathFromTextCDROM },\r
9da38884 3490 {L"VenMedia", DevPathFromTextVenMedia },\r
4d0a30a4
RN
3491 {L"Media", DevPathFromTextMedia },\r
3492 {L"Fv", DevPathFromTextFv },\r
3493 {L"FvFile", DevPathFromTextFvFile },\r
3494 {L"Offset", DevPathFromTextRelativeOffsetRange },\r
6a46c1a2
FT
3495 {L"RamDisk", DevPathFromTextRamDisk },\r
3496 {L"VirtualDisk", DevPathFromTextVirtualDisk },\r
3497 {L"VirtualCD", DevPathFromTextVirtualCd },\r
3498 {L"PersistentVirtualDisk", DevPathFromTextPersistentVirtualDisk },\r
3499 {L"PersistentVirtualCD", DevPathFromTextPersistentVirtualCd },\r
5d6a5aee
RN
3500\r
3501 {L"BbsPath", DevPathFromTextBbsPath },\r
4d0a30a4
RN
3502 {L"BBS", DevPathFromTextBBS },\r
3503 {L"Sata", DevPathFromTextSata },\r
95276127 3504 {NULL, NULL}\r
3505};\r
3506\r
572f5d8a 3507/**\r
3508 Convert text to the binary representation of a device node.\r
95276127 3509\r
572f5d8a 3510 @param TextDeviceNode TextDeviceNode points to the text representation of a device\r
95276127 3511 node. Conversion starts with the first character and continues\r
3512 until the first non-device node character.\r
3513\r
572f5d8a 3514 @return A pointer to the EFI device node or NULL if TextDeviceNode is NULL or there was\r
3515 insufficient memory or text unsupported.\r
95276127 3516\r
572f5d8a 3517**/\r
3518EFI_DEVICE_PATH_PROTOCOL *\r
3519EFIAPI\r
4d0a30a4 3520UefiDevicePathLibConvertTextToDeviceNode (\r
572f5d8a 3521 IN CONST CHAR16 *TextDeviceNode\r
3522 )\r
95276127 3523{\r
4d0a30a4 3524 DEVICE_PATH_FROM_TEXT FromText;\r
95276127 3525 CHAR16 *ParamStr;\r
3526 EFI_DEVICE_PATH_PROTOCOL *DeviceNode;\r
3527 CHAR16 *DeviceNodeStr;\r
3528 UINTN Index;\r
3529\r
3530 if ((TextDeviceNode == NULL) || (IS_NULL (*TextDeviceNode))) {\r
3531 return NULL;\r
3532 }\r
3533\r
3534 ParamStr = NULL;\r
4d0a30a4
RN
3535 FromText = NULL;\r
3536 DeviceNodeStr = UefiDevicePathLibStrDuplicate (TextDeviceNode);\r
3069bc19 3537 ASSERT (DeviceNodeStr != NULL);\r
95276127 3538\r
4d0a30a4
RN
3539 for (Index = 0; mUefiDevicePathLibDevPathFromTextTable[Index].Function != NULL; Index++) {\r
3540 ParamStr = GetParamByNodeName (DeviceNodeStr, mUefiDevicePathLibDevPathFromTextTable[Index].DevicePathNodeText);\r
95276127 3541 if (ParamStr != NULL) {\r
4d0a30a4 3542 FromText = mUefiDevicePathLibDevPathFromTextTable[Index].Function;\r
95276127 3543 break;\r
3544 }\r
3545 }\r
3546\r
4d0a30a4 3547 if (FromText == NULL) {\r
95276127 3548 //\r
3549 // A file path\r
3550 //\r
4d0a30a4
RN
3551 FromText = DevPathFromTextFilePath;\r
3552 DeviceNode = FromText (DeviceNodeStr);\r
95276127 3553 } else {\r
4d0a30a4 3554 DeviceNode = FromText (ParamStr);\r
95276127 3555 FreePool (ParamStr);\r
3556 }\r
3557\r
3558 FreePool (DeviceNodeStr);\r
3559\r
3560 return DeviceNode;\r
3561}\r
3562\r
572f5d8a 3563/**\r
3564 Convert text to the binary representation of a device path.\r
95276127 3565\r
95276127 3566\r
572f5d8a 3567 @param TextDevicePath TextDevicePath points to the text representation of a device\r
95276127 3568 path. Conversion starts with the first character and continues\r
3569 until the first non-device node character.\r
3570\r
572f5d8a 3571 @return A pointer to the allocated device path or NULL if TextDeviceNode is NULL or\r
3572 there was insufficient memory.\r
95276127 3573\r
572f5d8a 3574**/\r
3575EFI_DEVICE_PATH_PROTOCOL *\r
3576EFIAPI\r
4d0a30a4 3577UefiDevicePathLibConvertTextToDevicePath (\r
572f5d8a 3578 IN CONST CHAR16 *TextDevicePath\r
3579 )\r
95276127 3580{\r
95276127 3581 EFI_DEVICE_PATH_PROTOCOL *DeviceNode;\r
95276127 3582 EFI_DEVICE_PATH_PROTOCOL *NewDevicePath;\r
3583 CHAR16 *DevicePathStr;\r
3584 CHAR16 *Str;\r
3585 CHAR16 *DeviceNodeStr;\r
4d0a30a4 3586 BOOLEAN IsInstanceEnd;\r
95276127 3587 EFI_DEVICE_PATH_PROTOCOL *DevicePath;\r
3588\r
3589 if ((TextDevicePath == NULL) || (IS_NULL (*TextDevicePath))) {\r
3590 return NULL;\r
3591 }\r
3592\r
3593 DevicePath = (EFI_DEVICE_PATH_PROTOCOL *) AllocatePool (END_DEVICE_PATH_LENGTH);\r
3069bc19 3594 ASSERT (DevicePath != NULL);\r
95276127 3595 SetDevicePathEndNode (DevicePath);\r
3596\r
4d0a30a4 3597 DevicePathStr = UefiDevicePathLibStrDuplicate (TextDevicePath);\r
95276127 3598\r
4d0a30a4 3599 Str = DevicePathStr;\r
95276127 3600 while ((DeviceNodeStr = GetNextDeviceNodeStr (&Str, &IsInstanceEnd)) != NULL) {\r
4d0a30a4 3601 DeviceNode = UefiDevicePathLibConvertTextToDeviceNode (DeviceNodeStr);\r
95276127 3602\r
4d0a30a4 3603 NewDevicePath = AppendDevicePathNode (DevicePath, DeviceNode);\r
95276127 3604 FreePool (DevicePath);\r
3605 FreePool (DeviceNode);\r
3606 DevicePath = NewDevicePath;\r
3607\r
4d0a30a4 3608 if (IsInstanceEnd) {\r
95276127 3609 DeviceNode = (EFI_DEVICE_PATH_PROTOCOL *) AllocatePool (END_DEVICE_PATH_LENGTH);\r
3069bc19 3610 ASSERT (DeviceNode != NULL);\r
4d0a30a4 3611 SetDevicePathEndNode (DeviceNode);\r
95276127 3612\r
4d0a30a4 3613 NewDevicePath = AppendDevicePathNode (DevicePath, DeviceNode);\r
95276127 3614 FreePool (DevicePath);\r
3615 FreePool (DeviceNode);\r
3616 DevicePath = NewDevicePath;\r
3617 }\r
3618 }\r
3619\r
3620 FreePool (DevicePathStr);\r
3621 return DevicePath;\r
3622}\r