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MdeModulePkg: Fix GCC code build error of iSCSI driver.
[mirror_edk2.git] / MdeModulePkg / Universal / Network / IScsiDxe / IScsiMisc.c
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12618416 1/** @file\r
55a64ae0 2 Miscellaneous routines for iSCSI driver.\r
6a690e23 3\r
e3761c71 4Copyright (c) 2004 - 2016, Intel Corporation. All rights reserved.<BR>\r
e5eed7d3 5This program and the accompanying materials\r
7a444476 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
9\r
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
6a690e23 12\r
12618416 13**/\r
6a690e23 14\r
15#include "IScsiImpl.h"\r
16\r
ac7e320c 17GLOBAL_REMOVE_IF_UNREFERENCED CONST CHAR8 IScsiHexString[] = "0123456789ABCDEFabcdef";\r
6a690e23 18\r
12618416 19/**\r
20 Removes (trims) specified leading and trailing characters from a string.\r
21\r
1055b68d 22 @param[in, out] Str Pointer to the null-terminated string to be trimmed. On return, \r
963dbb30 23 Str will hold the trimmed string. \r
12618416 24\r
1055b68d 25 @param[in] CharC Character will be trimmed from str.\r
12618416 26**/\r
6a690e23 27VOID\r
28StrTrim (\r
1055b68d 29 IN OUT CHAR16 *Str,\r
6a690e23 30 IN CHAR16 CharC\r
31 )\r
6a690e23 32{\r
1055b68d 33 CHAR16 *Pointer1;\r
34 CHAR16 *Pointer2;\r
6a690e23 35 \r
1055b68d 36 if (*Str == 0) {\r
6a690e23 37 return;\r
38 }\r
39 \r
40 //\r
41 // Trim off the leading and trailing characters c\r
42 //\r
1055b68d 43 for (Pointer1 = Str; (*Pointer1 != 0) && (*Pointer1 == CharC); Pointer1++) {\r
6a690e23 44 ;\r
45 }\r
46 \r
1055b68d 47 Pointer2 = Str;\r
48 if (Pointer2 == Pointer1) {\r
49 while (*Pointer1 != 0) {\r
50 Pointer2++;\r
51 Pointer1++;\r
6a690e23 52 }\r
53 } else {\r
1055b68d 54 while (*Pointer1 != 0) { \r
55 *Pointer2 = *Pointer1; \r
56 Pointer1++;\r
57 Pointer2++;\r
6a690e23 58 }\r
1055b68d 59 *Pointer2 = 0;\r
6a690e23 60 }\r
61 \r
62 \r
1055b68d 63 for (Pointer1 = Str + StrLen(Str) - 1; Pointer1 >= Str && *Pointer1 == CharC; Pointer1--) {\r
6a690e23 64 ;\r
65 }\r
1055b68d 66 if (Pointer1 != Str + StrLen(Str) - 1) { \r
67 *(Pointer1 + 1) = 0;\r
6a690e23 68 }\r
69}\r
70\r
12618416 71/**\r
6a690e23 72 Calculate the prefix length of the IPv4 subnet mask.\r
73\r
1055b68d 74 @param[in] SubnetMask The IPv4 subnet mask.\r
6a690e23 75\r
1055b68d 76 @return The prefix length of the subnet mask.\r
963dbb30 77 @retval 0 Other errors as indicated.\r
12618416 78**/\r
79UINT8\r
80IScsiGetSubnetMaskPrefixLength (\r
81 IN EFI_IPv4_ADDRESS *SubnetMask\r
82 )\r
6a690e23 83{\r
84 UINT8 Len;\r
85 UINT32 ReverseMask;\r
86\r
87 //\r
88 // The SubnetMask is in network byte order.\r
89 //\r
90 ReverseMask = (SubnetMask->Addr[0] << 24) | (SubnetMask->Addr[1] << 16) | (SubnetMask->Addr[2] << 8) | (SubnetMask->Addr[3]);\r
91\r
92 //\r
93 // Reverse it.\r
94 //\r
95 ReverseMask = ~ReverseMask;\r
96\r
d5893e0b 97 if ((ReverseMask & (ReverseMask + 1)) != 0) {\r
6a690e23 98 return 0;\r
99 }\r
100\r
101 Len = 0;\r
102\r
103 while (ReverseMask != 0) {\r
104 ReverseMask = ReverseMask >> 1;\r
105 Len++;\r
106 }\r
107\r
69b0882d 108 return (UINT8) (32 - Len);\r
6a690e23 109}\r
110\r
12618416 111/**\r
6a690e23 112 Convert the hexadecimal encoded LUN string into the 64-bit LUN. \r
113\r
1055b68d 114 @param[in] Str The hexadecimal encoded LUN string.\r
115 @param[out] Lun Storage to return the 64-bit LUN.\r
6a690e23 116\r
12618416 117 @retval EFI_SUCCESS The 64-bit LUN is stored in Lun.\r
12618416 118 @retval EFI_INVALID_PARAMETER The string is malformatted.\r
12618416 119**/\r
120EFI_STATUS\r
121IScsiAsciiStrToLun (\r
122 IN CHAR8 *Str,\r
123 OUT UINT8 *Lun\r
124 )\r
6a690e23 125{\r
63d55bb9
LG
126 UINTN Index, IndexValue, IndexNum, SizeStr;\r
127 CHAR8 TemStr[2];\r
128 UINT8 TemValue;\r
f6b7393c 129 UINT16 Value[4];\r
63d55bb9 130 \r
e48e37fc 131 ZeroMem (Lun, 8);\r
63d55bb9
LG
132 ZeroMem (TemStr, 2);\r
133 ZeroMem ((UINT8 *) Value, sizeof (Value));\r
134 SizeStr = AsciiStrLen (Str); \r
135 IndexValue = 0;\r
136 IndexNum = 0;\r
137\r
138 for (Index = 0; Index < SizeStr; Index ++) {\r
139 TemStr[0] = Str[Index];\r
140 TemValue = (UINT8) AsciiStrHexToUint64 (TemStr);\r
141 if (TemValue == 0 && TemStr[0] != '0') {\r
142 if ((TemStr[0] != '-') || (IndexNum == 0)) {\r
143 //\r
144 // Invalid Lun Char\r
145 //\r
146 return EFI_INVALID_PARAMETER;\r
6a690e23 147 }\r
6a690e23 148 }\r
63d55bb9
LG
149 \r
150 if ((TemValue == 0) && (TemStr[0] == '-')) {\r
151 //\r
152 // Next Lun value\r
153 //\r
154 if (++IndexValue >= 4) {\r
155 //\r
156 // Max 4 Lun value\r
157 //\r
158 return EFI_INVALID_PARAMETER;\r
159 }\r
160 //\r
161 // Restart str index for the next lun value\r
162 //\r
163 IndexNum = 0;\r
164 continue;\r
165 }\r
166 \r
167 if (++IndexNum > 4) {\r
168 // \r
169 // Each Lun Str can't exceed size 4, because it will be as UINT16 value\r
170 //\r
6a690e23 171 return EFI_INVALID_PARAMETER;\r
172 }\r
63d55bb9
LG
173 \r
174 //\r
175 // Combine UINT16 value\r
176 //\r
177 Value[IndexValue] = (UINT16) ((Value[IndexValue] << 4) + TemValue);\r
6a690e23 178 }\r
63d55bb9
LG
179 \r
180 for (Index = 0; Index <= IndexValue; Index ++) {\r
181 *((UINT16 *) &Lun[Index * 2]) = HTONS (Value[Index]);\r
182 }\r
183 \r
6a690e23 184 return EFI_SUCCESS;\r
185}\r
186\r
12618416 187/**\r
6a690e23 188 Convert the 64-bit LUN into the hexadecimal encoded LUN string.\r
189\r
1055b68d 190 @param[in] Lun The 64-bit LUN.\r
191 @param[out] Str The storage to return the hexadecimal encoded LUN string.\r
12618416 192**/\r
193VOID\r
194IScsiLunToUnicodeStr (\r
195 IN UINT8 *Lun,\r
196 OUT CHAR16 *Str\r
197 )\r
6a690e23 198{\r
199 UINTN Index;\r
200 CHAR16 *TempStr;\r
201\r
202 TempStr = Str;\r
203\r
204 for (Index = 0; Index < 4; Index++) {\r
205\r
206 if ((Lun[2 * Index] | Lun[2 * Index + 1]) == 0) {\r
206b5f51 207 CopyMem(TempStr, L"0-", sizeof (L"0-"));\r
6a690e23 208 } else {\r
209 TempStr[0] = (CHAR16) IScsiHexString[Lun[2 * Index] >> 4];\r
ac7e320c 210 TempStr[1] = (CHAR16) IScsiHexString[Lun[2 * Index] & 0x0F];\r
6a690e23 211 TempStr[2] = (CHAR16) IScsiHexString[Lun[2 * Index + 1] >> 4];\r
ac7e320c 212 TempStr[3] = (CHAR16) IScsiHexString[Lun[2 * Index + 1] & 0x0F];\r
6a690e23 213 TempStr[4] = L'-';\r
214 TempStr[5] = 0;\r
215\r
216 StrTrim (TempStr, L'0');\r
217 }\r
218\r
219 TempStr += StrLen (TempStr);\r
220 }\r
221\r
523f48e7 222 ASSERT (StrLen(Str) >= 1);\r
6a690e23 223 Str[StrLen (Str) - 1] = 0;\r
224\r
225 for (Index = StrLen (Str) - 1; Index > 1; Index = Index - 2) {\r
226 if ((Str[Index] == L'0') && (Str[Index - 1] == L'-')) {\r
227 Str[Index - 1] = 0;\r
228 } else {\r
229 break;\r
230 }\r
231 }\r
232}\r
233\r
12618416 234/**\r
6a690e23 235 Convert the ASCII string into a UNICODE string.\r
236\r
1055b68d 237 @param[in] Source The ASCII string.\r
238 @param[out] Destination The storage to return the UNICODE string.\r
6a690e23 239\r
1055b68d 240 @return CHAR16 * Pointer to the UNICODE string.\r
12618416 241**/\r
242CHAR16 *\r
243IScsiAsciiStrToUnicodeStr (\r
244 IN CHAR8 *Source,\r
245 OUT CHAR16 *Destination\r
246 )\r
6a690e23 247{\r
248 ASSERT (Destination != NULL);\r
249 ASSERT (Source != NULL);\r
250\r
251 while (*Source != '\0') {\r
252 *(Destination++) = (CHAR16) *(Source++);\r
253 }\r
254\r
255 *Destination = '\0';\r
256\r
257 return Destination;\r
258}\r
259\r
12618416 260/**\r
6a690e23 261 Convert the UNICODE string into an ASCII string.\r
262\r
1055b68d 263 @param[in] Source The UNICODE string.\r
264 @param[out] Destination The storage to return the ASCII string.\r
6a690e23 265\r
1055b68d 266 @return CHAR8 * Pointer to the ASCII string.\r
267**/\r
12618416 268CHAR8 *\r
269IScsiUnicodeStrToAsciiStr (\r
270 IN CHAR16 *Source,\r
271 OUT CHAR8 *Destination\r
272 )\r
6a690e23 273{\r
274 ASSERT (Destination != NULL);\r
275 ASSERT (Source != NULL);\r
276\r
277 while (*Source != '\0') {\r
278 //\r
279 // If any Unicode characters in Source contain\r
280 // non-zero value in the upper 8 bits, then ASSERT().\r
281 //\r
282 ASSERT (*Source < 0x100);\r
283 *(Destination++) = (CHAR8) *(Source++);\r
284 }\r
285\r
286 *Destination = '\0';\r
287\r
288 return Destination;\r
289}\r
290\r
12618416 291/**\r
6a690e23 292 Convert the decimal dotted IPv4 address into the binary IPv4 address.\r
293\r
1055b68d 294 @param[in] Str The UNICODE string.\r
295 @param[out] Ip The storage to return the ASCII string.\r
6a690e23 296\r
12618416 297 @retval EFI_SUCCESS The binary IP address is returned in Ip.\r
12618416 298 @retval EFI_INVALID_PARAMETER The IP string is malformatted.\r
12618416 299**/\r
300EFI_STATUS\r
301IScsiAsciiStrToIp (\r
302 IN CHAR8 *Str,\r
303 OUT EFI_IPv4_ADDRESS *Ip\r
304 )\r
6a690e23 305{\r
306 UINTN Index;\r
307 UINTN Number;\r
308\r
309 Index = 0;\r
310\r
c5de0d55 311 while (*Str != 0) {\r
6a690e23 312\r
313 if (Index > 3) {\r
314 return EFI_INVALID_PARAMETER;\r
315 }\r
316\r
317 Number = 0;\r
318 while (NET_IS_DIGIT (*Str)) {\r
319 Number = Number * 10 + (*Str - '0');\r
320 Str++;\r
321 }\r
322\r
323 if (Number > 0xFF) {\r
324 return EFI_INVALID_PARAMETER;\r
325 }\r
326\r
327 Ip->Addr[Index] = (UINT8) Number;\r
328\r
329 if ((*Str != '\0') && (*Str != '.')) {\r
330 //\r
331 // The current character should be either the NULL terminator or\r
332 // the dot delimiter.\r
333 //\r
334 return EFI_INVALID_PARAMETER;\r
335 }\r
336\r
337 if (*Str == '.') {\r
338 //\r
339 // Skip the delimiter.\r
340 //\r
341 Str++;\r
342 }\r
343\r
344 Index++;\r
345 }\r
346\r
347 if (Index != 4) {\r
348 return EFI_INVALID_PARAMETER;\r
349 }\r
350\r
351 return EFI_SUCCESS;\r
352}\r
353\r
12618416 354/**\r
6a690e23 355 Convert the mac address into a hexadecimal encoded "-" seperated string.\r
356\r
779ae357 357 @param[in] Mac The mac address.\r
358 @param[in] Len Length in bytes of the mac address.\r
359 @param[in] VlanId VLAN ID of the network device.\r
360 @param[out] Str The storage to return the mac string.\r
12618416 361**/\r
362VOID\r
363IScsiMacAddrToStr (\r
364 IN EFI_MAC_ADDRESS *Mac,\r
365 IN UINT32 Len,\r
779ae357 366 IN UINT16 VlanId,\r
12618416 367 OUT CHAR16 *Str\r
368 )\r
6a690e23 369{\r
370 UINT32 Index;\r
779ae357 371 CHAR16 *String;\r
6a690e23 372\r
373 for (Index = 0; Index < Len; Index++) {\r
ac7e320c
LG
374 Str[3 * Index] = (CHAR16) IScsiHexString[(Mac->Addr[Index] >> 4) & 0x0F];\r
375 Str[3 * Index + 1] = (CHAR16) IScsiHexString[Mac->Addr[Index] & 0x0F];\r
6a690e23 376 Str[3 * Index + 2] = L'-';\r
377 }\r
378\r
779ae357 379 String = &Str[3 * Index - 1] ;\r
380 if (VlanId != 0) {\r
381 String += UnicodeSPrint (String, 6 * sizeof (CHAR16), L"\\%04x", (UINTN) VlanId);\r
382 }\r
383\r
384 *String = L'\0';\r
6a690e23 385}\r
386\r
12618416 387/**\r
388 Convert the binary encoded buffer into a hexadecimal encoded string.\r
6a690e23 389\r
1055b68d 390 @param[in] BinBuffer The buffer containing the binary data.\r
391 @param[in] BinLength Length of the binary buffer.\r
392 @param[in, out] HexStr Pointer to the string.\r
393 @param[in, out] HexLength The length of the string.\r
6a690e23 394\r
12618416 395 @retval EFI_SUCCESS The binary data is converted to the hexadecimal string \r
396 and the length of the string is updated.\r
12618416 397 @retval EFI_BUFFER_TOO_SMALL The string is too small.\r
1055b68d 398 @retval EFI_INVALID_PARAMETER The IP string is malformatted.\r
12618416 399**/\r
400EFI_STATUS\r
401IScsiBinToHex (\r
402 IN UINT8 *BinBuffer,\r
403 IN UINT32 BinLength,\r
404 IN OUT CHAR8 *HexStr,\r
405 IN OUT UINT32 *HexLength\r
406 )\r
6a690e23 407{\r
408 UINTN Index;\r
409\r
410 if ((HexStr == NULL) || (BinBuffer == NULL) || (BinLength == 0)) {\r
411 return EFI_INVALID_PARAMETER;\r
412 }\r
413\r
414 if (((*HexLength) - 3) < BinLength * 2) {\r
415 *HexLength = BinLength * 2 + 3;\r
416 return EFI_BUFFER_TOO_SMALL;\r
417 }\r
418\r
419 *HexLength = BinLength * 2 + 3;\r
420 //\r
421 // Prefix for Hex String\r
422 //\r
423 HexStr[0] = '0';\r
424 HexStr[1] = 'x';\r
425\r
426 for (Index = 0; Index < BinLength; Index++) {\r
427 HexStr[Index * 2 + 2] = IScsiHexString[BinBuffer[Index] >> 4];\r
ac7e320c 428 HexStr[Index * 2 + 3] = IScsiHexString[BinBuffer[Index] & 0x0F];\r
6a690e23 429 }\r
430\r
431 HexStr[Index * 2 + 2] = '\0';\r
432\r
433 return EFI_SUCCESS;\r
434}\r
435\r
12618416 436/**\r
6a690e23 437 Convert the hexadecimal string into a binary encoded buffer.\r
438\r
1055b68d 439 @param[in, out] BinBuffer The binary buffer.\r
440 @param[in, out] BinLength Length of the binary buffer.\r
441 @param[in] HexStr The hexadecimal string.\r
6a690e23 442\r
12618416 443 @retval EFI_SUCCESS The hexadecimal string is converted into a binary\r
444 encoded buffer.\r
963dbb30 445 @retval EFI_BUFFER_TOO_SMALL The binary buffer is too small to hold the converted data.\r
12618416 446**/\r
447EFI_STATUS\r
448IScsiHexToBin (\r
449 IN OUT UINT8 *BinBuffer,\r
450 IN OUT UINT32 *BinLength,\r
451 IN CHAR8 *HexStr\r
452 )\r
6a690e23 453{\r
454 UINTN Index;\r
63d55bb9 455 UINTN Length;\r
6a690e23 456 UINT8 Digit;\r
63d55bb9
LG
457 CHAR8 TemStr[2];\r
458 \r
459 ZeroMem (TemStr, sizeof (TemStr));\r
7c3eaa27 460\r
6a690e23 461 //\r
462 // Find out how many hex characters the string has.\r
463 //\r
63d55bb9
LG
464 if ((HexStr[0] == '0') && ((HexStr[1] == 'x') || (HexStr[1] == 'X'))) {\r
465 HexStr += 2;\r
6a690e23 466 }\r
63d55bb9
LG
467 \r
468 Length = AsciiStrLen (HexStr);\r
6a690e23 469\r
63d55bb9
LG
470 for (Index = 0; Index < Length; Index ++) {\r
471 TemStr[0] = HexStr[Index];\r
472 Digit = (UINT8) AsciiStrHexToUint64 (TemStr);\r
473 if (Digit == 0 && TemStr[0] != '0') {\r
474 //\r
475 // Invalid Lun Char\r
476 //\r
477 break;\r
478 }\r
6a690e23 479 if ((Index & 1) == 0) {\r
63d55bb9 480 BinBuffer [Index/2] = Digit;\r
6a690e23 481 } else {\r
63d55bb9 482 BinBuffer [Index/2] = (UINT8) ((BinBuffer [Index/2] << 4) + Digit);\r
6a690e23 483 }\r
6a690e23 484 }\r
63d55bb9
LG
485 \r
486 *BinLength = (UINT32) ((Index + 1)/2);\r
6a690e23 487\r
488 return EFI_SUCCESS;\r
489}\r
490\r
12618416 491/**\r
6a690e23 492 Generate random numbers.\r
493\r
1055b68d 494 @param[in, out] Rand The buffer to contain random numbers.\r
495 @param[in] RandLength The length of the Rand buffer.\r
12618416 496**/\r
497VOID\r
498IScsiGenRandom (\r
499 IN OUT UINT8 *Rand,\r
500 IN UINTN RandLength\r
501 )\r
6a690e23 502{\r
503 UINT32 Random;\r
504\r
505 while (RandLength > 0) {\r
506 Random = NET_RANDOM (NetRandomInitSeed ());\r
507 *Rand++ = (UINT8) (Random);\r
508 RandLength--;\r
509 }\r
510}\r
511\r
12618416 512/**\r
6a690e23 513 Create the iSCSI driver data..\r
514\r
1055b68d 515 @param[in] Image The handle of the driver image.\r
516 @param[in] Controller The handle of the controller.\r
6a690e23 517\r
1055b68d 518 @return The iSCSI driver data created.\r
963dbb30 519 @retval NULL Other errors as indicated.\r
12618416 520**/\r
521ISCSI_DRIVER_DATA *\r
522IScsiCreateDriverData (\r
523 IN EFI_HANDLE Image,\r
524 IN EFI_HANDLE Controller\r
525 )\r
6a690e23 526{\r
527 ISCSI_DRIVER_DATA *Private;\r
528 EFI_STATUS Status;\r
529\r
e48e37fc 530 Private = AllocateZeroPool (sizeof (ISCSI_DRIVER_DATA));\r
6a690e23 531 if (Private == NULL) {\r
532 return NULL;\r
533 }\r
534\r
535 Private->Signature = ISCSI_DRIVER_DATA_SIGNATURE;\r
536 Private->Image = Image;\r
537 Private->Controller = Controller;\r
538\r
539 //\r
540 // Create an event to be signal when the BS to RT transition is triggerd so\r
541 // as to abort the iSCSI session.\r
542 //\r
01a5c994 543 Status = gBS->CreateEventEx (\r
544 EVT_NOTIFY_SIGNAL,\r
6a690e23 545 TPL_CALLBACK,\r
546 IScsiOnExitBootService,\r
547 Private,\r
01a5c994 548 &gEfiEventExitBootServicesGuid,\r
6a690e23 549 &Private->ExitBootServiceEvent\r
550 );\r
551 if (EFI_ERROR (Status)) {\r
766c7483 552 FreePool (Private);\r
6a690e23 553 return NULL;\r
554 }\r
555\r
e48e37fc 556 CopyMem(&Private->IScsiExtScsiPassThru, &gIScsiExtScsiPassThruProtocolTemplate, sizeof(EFI_EXT_SCSI_PASS_THRU_PROTOCOL));\r
6a690e23 557\r
558 //\r
559 // 0 is designated to the TargetId, so use another value for the AdapterId.\r
560 //\r
561 Private->ExtScsiPassThruMode.AdapterId = 2;\r
562 Private->ExtScsiPassThruMode.Attributes = EFI_EXT_SCSI_PASS_THRU_ATTRIBUTES_PHYSICAL | EFI_EXT_SCSI_PASS_THRU_ATTRIBUTES_LOGICAL;\r
563 Private->ExtScsiPassThruMode.IoAlign = 4;\r
564 Private->IScsiExtScsiPassThru.Mode = &Private->ExtScsiPassThruMode;\r
565\r
566 //\r
567 // Install the Ext SCSI PASS THRU protocol.\r
568 //\r
569 Status = gBS->InstallProtocolInterface (\r
570 &Private->ExtScsiPassThruHandle,\r
571 &gEfiExtScsiPassThruProtocolGuid,\r
572 EFI_NATIVE_INTERFACE,\r
573 &Private->IScsiExtScsiPassThru\r
574 );\r
575 if (EFI_ERROR (Status)) {\r
576 gBS->CloseEvent (Private->ExitBootServiceEvent);\r
766c7483 577 FreePool (Private);\r
6a690e23 578\r
579 return NULL;\r
580 }\r
581\r
582 IScsiSessionInit (&Private->Session, FALSE);\r
583\r
584 return Private;\r
585}\r
586\r
12618416 587/**\r
6a690e23 588 Clean the iSCSI driver data.\r
589\r
e3761c71
ZL
590 @param[in] Private The iSCSI driver data.\r
591\r
6a270910 592 @retval EFI_SUCCESS The clean operation is successful.\r
e3761c71
ZL
593 @retval Others Other errors as indicated.\r
594\r
12618416 595**/\r
e3761c71 596EFI_STATUS\r
12618416 597IScsiCleanDriverData (\r
598 IN ISCSI_DRIVER_DATA *Private\r
599 )\r
6a690e23 600{\r
e3761c71
ZL
601 EFI_STATUS Status;\r
602\r
6a270910
ZL
603 Status = EFI_SUCCESS;\r
604 \r
6a690e23 605 if (Private->DevicePath != NULL) {\r
e3761c71
ZL
606 Status = gBS->UninstallProtocolInterface (\r
607 Private->ExtScsiPassThruHandle,\r
608 &gEfiDevicePathProtocolGuid,\r
609 Private->DevicePath\r
610 );\r
611 if (EFI_ERROR (Status)) {\r
612 goto EXIT;\r
613 }\r
6a690e23 614\r
766c7483 615 FreePool (Private->DevicePath);\r
6a690e23 616 }\r
617\r
618 if (Private->ExtScsiPassThruHandle != NULL) {\r
e3761c71
ZL
619 Status = gBS->UninstallProtocolInterface (\r
620 Private->ExtScsiPassThruHandle,\r
621 &gEfiExtScsiPassThruProtocolGuid,\r
622 &Private->IScsiExtScsiPassThru\r
623 );\r
6a690e23 624 }\r
625\r
e3761c71
ZL
626EXIT:\r
627\r
6a690e23 628 gBS->CloseEvent (Private->ExitBootServiceEvent);\r
629\r
766c7483 630 FreePool (Private);\r
e3761c71 631 return Status;\r
6a690e23 632}\r
633\r
05a30011
WJ
634/**\r
635 Check wheather the Controller is configured to use DHCP protocol.\r
636\r
637 @param[in] Controller The handle of the controller.\r
638 \r
639 @retval TRUE The handle of the controller need the Dhcp protocol.\r
640 @retval FALSE The handle of the controller does not need the Dhcp protocol.\r
641 \r
642**/\r
643BOOLEAN\r
644IScsiDhcpIsConfigured (\r
645 IN EFI_HANDLE Controller\r
646 )\r
647{\r
648 EFI_STATUS Status;\r
649 EFI_MAC_ADDRESS MacAddress;\r
650 UINTN HwAddressSize;\r
651 UINT16 VlanId;\r
652 CHAR16 MacString[70];\r
653 ISCSI_SESSION_CONFIG_NVDATA *ConfigDataTmp;\r
654\r
655 //\r
656 // Get the mac string, it's the name of various variable\r
657 //\r
658 Status = NetLibGetMacAddress (Controller, &MacAddress, &HwAddressSize);\r
659 if (EFI_ERROR (Status)) {\r
660 return FALSE;\r
661 }\r
662 VlanId = NetLibGetVlanId (Controller);\r
663 IScsiMacAddrToStr (&MacAddress, (UINT32) HwAddressSize, VlanId, MacString);\r
664\r
665 //\r
666 // Get the normal configuration.\r
667 //\r
668 Status = GetVariable2 (\r
669 MacString,\r
670 &gEfiIScsiInitiatorNameProtocolGuid,\r
671 (VOID**)&ConfigDataTmp,\r
672 NULL\r
673 );\r
25a516ab 674 if (ConfigDataTmp == NULL || EFI_ERROR (Status)) {\r
05a30011
WJ
675 return FALSE;\r
676 }\r
05a30011
WJ
677\r
678 if (ConfigDataTmp->Enabled && ConfigDataTmp->InitiatorInfoFromDhcp) {\r
679 FreePool (ConfigDataTmp);\r
680 return TRUE;\r
681 }\r
682\r
683 FreePool (ConfigDataTmp);\r
684 return FALSE;\r
685}\r
686\r
12618416 687/**\r
6a690e23 688 Get the various configuration data of this iSCSI instance.\r
689\r
1055b68d 690 @param[in] Private The iSCSI driver data.\r
6a690e23 691\r
12618416 692 @retval EFI_SUCCESS The configuration of this instance is got.\r
1055b68d 693 @retval EFI_ABORTED The operation was aborted.\r
963dbb30 694 @retval Others Other errors as indicated.\r
12618416 695**/\r
696EFI_STATUS\r
697IScsiGetConfigData (\r
698 IN ISCSI_DRIVER_DATA *Private\r
699 )\r
6a690e23 700{\r
701 EFI_STATUS Status;\r
702 ISCSI_SESSION *Session;\r
703 UINTN BufferSize;\r
779ae357 704 EFI_MAC_ADDRESS MacAddress;\r
705 UINTN HwAddressSize;\r
706 UINT16 VlanId;\r
707 CHAR16 MacString[70];\r
6a690e23 708\r
709 //\r
710 // get the iSCSI Initiator Name\r
711 //\r
712 Session = &Private->Session;\r
713 Session->InitiatorNameLength = ISCSI_NAME_MAX_SIZE;\r
714 Status = gIScsiInitiatorName.Get (\r
715 &gIScsiInitiatorName,\r
716 &Session->InitiatorNameLength,\r
717 Session->InitiatorName\r
718 );\r
719 if (EFI_ERROR (Status)) {\r
720 return Status;\r
721 }\r
722\r
6a690e23 723 //\r
724 // Get the mac string, it's the name of various variable\r
725 //\r
779ae357 726 Status = NetLibGetMacAddress (Private->Controller, &MacAddress, &HwAddressSize);\r
727 ASSERT (Status == EFI_SUCCESS);\r
728 VlanId = NetLibGetVlanId (Private->Controller);\r
729 IScsiMacAddrToStr (&MacAddress, (UINT32) HwAddressSize, VlanId, MacString);\r
6a690e23 730\r
731 //\r
732 // Get the normal configuration.\r
733 //\r
734 BufferSize = sizeof (Session->ConfigData.NvData);\r
735 Status = gRT->GetVariable (\r
736 MacString,\r
737 &gEfiIScsiInitiatorNameProtocolGuid,\r
738 NULL,\r
739 &BufferSize,\r
740 &Session->ConfigData.NvData\r
741 );\r
742 if (EFI_ERROR (Status)) {\r
743 return Status;\r
744 }\r
745\r
746 if (!Session->ConfigData.NvData.Enabled) {\r
747 return EFI_ABORTED;\r
748 }\r
749 //\r
750 // Get the CHAP Auth information.\r
751 //\r
752 BufferSize = sizeof (Session->AuthData.AuthConfig);\r
753 Status = gRT->GetVariable (\r
754 MacString,\r
c8ad2d7a 755 &gIScsiCHAPAuthInfoGuid,\r
6a690e23 756 NULL,\r
757 &BufferSize,\r
758 &Session->AuthData.AuthConfig\r
759 );\r
760\r
761 if (!EFI_ERROR (Status) && Session->ConfigData.NvData.InitiatorInfoFromDhcp) {\r
762 //\r
763 // Start dhcp.\r
764 //\r
765 Status = IScsiDoDhcp (Private->Image, Private->Controller, &Session->ConfigData);\r
766 }\r
767\r
768 return Status;\r
769}\r
770\r
12618416 771/**\r
6a690e23 772 Get the device path of the iSCSI tcp connection and update it.\r
773\r
1055b68d 774 @param[in] Private The iSCSI driver data.\r
6a690e23 775\r
1055b68d 776 @return The updated device path.\r
963dbb30 777 @retval NULL Other errors as indicated.\r
12618416 778**/\r
779EFI_DEVICE_PATH_PROTOCOL *\r
780IScsiGetTcpConnDevicePath (\r
781 IN ISCSI_DRIVER_DATA *Private\r
782 )\r
6a690e23 783{\r
784 ISCSI_SESSION *Session;\r
785 ISCSI_CONNECTION *Conn;\r
786 TCP4_IO *Tcp4Io;\r
787 EFI_DEVICE_PATH_PROTOCOL *DevicePath;\r
788 EFI_STATUS Status;\r
789 EFI_DEV_PATH *DPathNode;\r
790\r
791 Session = &Private->Session;\r
792 if (Session->State != SESSION_STATE_LOGGED_IN) {\r
793 return NULL;\r
794 }\r
795\r
796 Conn = NET_LIST_USER_STRUCT_S (\r
797 Session->Conns.ForwardLink,\r
798 ISCSI_CONNECTION,\r
799 Link,\r
800 ISCSI_CONNECTION_SIGNATURE\r
801 );\r
802 Tcp4Io = &Conn->Tcp4Io;\r
803\r
804 Status = gBS->HandleProtocol (\r
805 Tcp4Io->Handle,\r
806 &gEfiDevicePathProtocolGuid,\r
69b0882d 807 (VOID **)&DevicePath\r
6a690e23 808 );\r
809 if (EFI_ERROR (Status)) {\r
810 return NULL;\r
811 }\r
812 //\r
813 // Duplicate it.\r
814 //\r
815 DevicePath = DuplicateDevicePath (DevicePath);\r
894d038a 816 if (DevicePath == NULL) {\r
817 return NULL;\r
818 }\r
6a690e23 819\r
820 DPathNode = (EFI_DEV_PATH *) DevicePath;\r
821\r
822 while (!IsDevicePathEnd (&DPathNode->DevPath)) {\r
823 if ((DevicePathType (&DPathNode->DevPath) == MESSAGING_DEVICE_PATH) &&\r
824 (DevicePathSubType (&DPathNode->DevPath) == MSG_IPv4_DP)\r
825 ) {\r
826\r
827 DPathNode->Ipv4.LocalPort = 0;\r
501793fa
RN
828 DPathNode->Ipv4.StaticIpAddress = \r
829 (BOOLEAN) (!Session->ConfigData.NvData.InitiatorInfoFromDhcp);\r
830\r
7b0b3606 831 //\r
832 // Add a judgement here to support previous versions of IPv4_DEVICE_PATH.\r
833 // In previous versions of IPv4_DEVICE_PATH, GatewayIpAddress and SubnetMask\r
834 // do not exist.\r
835 // In new version of IPv4_DEVICE_PATH, structcure length is 27.\r
836 //\r
00f6c6cf 837 if (DevicePathNodeLength (&DPathNode->Ipv4) == IP4_NODE_LEN_NEW_VERSIONS) { \r
7b0b3606 838\r
839 IP4_COPY_ADDRESS (\r
840 &DPathNode->Ipv4.GatewayIpAddress,\r
841 &Session->ConfigData.NvData.Gateway\r
842 );\r
843\r
844 IP4_COPY_ADDRESS (\r
845 &DPathNode->Ipv4.SubnetMask,\r
846 &Session->ConfigData.NvData.SubnetMask\r
847 );\r
848 }\r
501793fa 849\r
6a690e23 850 break;\r
851 }\r
852\r
853 DPathNode = (EFI_DEV_PATH *) NextDevicePathNode (&DPathNode->DevPath);\r
854 }\r
855\r
856 return DevicePath;\r
857}\r
858\r
12618416 859/**\r
860 Abort the session when the transition from BS to RT is initiated.\r
861\r
1055b68d 862 @param[in] Event The event signaled.\r
863 @param[in] Context The iSCSI driver data.\r
12618416 864**/\r
6a690e23 865VOID\r
866EFIAPI\r
867IScsiOnExitBootService (\r
868 IN EFI_EVENT Event,\r
869 IN VOID *Context\r
870 )\r
6a690e23 871{\r
872 ISCSI_DRIVER_DATA *Private;\r
873\r
874 Private = (ISCSI_DRIVER_DATA *) Context;\r
875 gBS->CloseEvent (Private->ExitBootServiceEvent);\r
876\r
877 IScsiSessionAbort (&Private->Session);\r
878}\r
18b24f92
FS
879\r
880/**\r
881 Tests whether a controller handle is being managed by IScsi driver.\r
882\r
883 This function tests whether the driver specified by DriverBindingHandle is\r
884 currently managing the controller specified by ControllerHandle. This test\r
885 is performed by evaluating if the the protocol specified by ProtocolGuid is\r
886 present on ControllerHandle and is was opened by DriverBindingHandle and Nic\r
887 Device handle with an attribute of EFI_OPEN_PROTOCOL_BY_DRIVER. \r
888 If ProtocolGuid is NULL, then ASSERT().\r
889\r
890 @param ControllerHandle A handle for a controller to test.\r
891 @param DriverBindingHandle Specifies the driver binding handle for the\r
892 driver.\r
893 @param ProtocolGuid Specifies the protocol that the driver specified\r
894 by DriverBindingHandle opens in its Start()\r
895 function.\r
896\r
897 @retval EFI_SUCCESS ControllerHandle is managed by the driver\r
898 specified by DriverBindingHandle.\r
899 @retval EFI_UNSUPPORTED ControllerHandle is not managed by the driver\r
900 specified by DriverBindingHandle.\r
901\r
902**/\r
903EFI_STATUS\r
904EFIAPI\r
905IScsiTestManagedDevice (\r
906 IN EFI_HANDLE ControllerHandle,\r
907 IN EFI_HANDLE DriverBindingHandle,\r
908 IN EFI_GUID *ProtocolGuid\r
909 )\r
910{\r
911 EFI_STATUS Status;\r
912 VOID *ManagedInterface;\r
913 EFI_HANDLE NicControllerHandle;\r
914\r
915 ASSERT (ProtocolGuid != NULL);\r
916\r
917 NicControllerHandle = NetLibGetNicHandle (ControllerHandle, ProtocolGuid);\r
918 if (NicControllerHandle == NULL) {\r
919 return EFI_UNSUPPORTED;\r
920 }\r
921\r
922 Status = gBS->OpenProtocol (\r
923 ControllerHandle,\r
924 (EFI_GUID *) ProtocolGuid,\r
925 &ManagedInterface,\r
926 DriverBindingHandle,\r
927 NicControllerHandle,\r
928 EFI_OPEN_PROTOCOL_BY_DRIVER\r
929 );\r
930 if (!EFI_ERROR (Status)) {\r
931 gBS->CloseProtocol (\r
932 ControllerHandle,\r
933 (EFI_GUID *) ProtocolGuid,\r
934 DriverBindingHandle,\r
935 NicControllerHandle\r
936 );\r
937 return EFI_UNSUPPORTED;\r
938 }\r
939\r
940 if (Status != EFI_ALREADY_STARTED) {\r
941 return EFI_UNSUPPORTED;\r
942 }\r
943\r
944 return EFI_SUCCESS;\r
945}\r