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1/** @file\r
2 The implementation of EFI IPv6 Configuration Protocol.\r
3\r
ab50ab6e 4 Copyright (c) 2009 - 2017, Intel Corporation. All rights reserved.<BR>\r
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5\r
6 This program and the accompanying materials\r
7 are licensed and made available under the terms and conditions of the BSD License\r
8 which accompanies this distribution. The full text of the license may be found at\r
9 http://opensource.org/licenses/bsd-license.php.\r
10\r
11 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
12 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
13\r
14**/\r
15\r
16#include "Ip6Impl.h"\r
17\r
18LIST_ENTRY mIp6ConfigInstanceList = {&mIp6ConfigInstanceList, &mIp6ConfigInstanceList};\r
19\r
20/**\r
21 The event process routine when the DHCPv6 service binding protocol is installed\r
22 in the system.\r
23\r
24 @param[in] Event Not used.\r
25 @param[in] Context Pointer to the IP6 config instance data.\r
26\r
27**/\r
28VOID\r
29EFIAPI\r
30Ip6ConfigOnDhcp6SbInstalled (\r
31 IN EFI_EVENT Event,\r
32 IN VOID *Context\r
33 );\r
34\r
35/**\r
36 Update the current policy to NewPolicy. During the transition\r
37 period, the default router list, on-link prefix list, autonomous prefix list\r
38 and address list in all interfaces will be released.\r
39\r
40 @param[in] IpSb The IP6 service binding instance.\r
41 @param[in] NewPolicy The new policy to be updated to.\r
42\r
43**/\r
44VOID\r
45Ip6ConfigOnPolicyChanged (\r
46 IN IP6_SERVICE *IpSb,\r
47 IN EFI_IP6_CONFIG_POLICY NewPolicy\r
48 )\r
49{\r
50 LIST_ENTRY *Entry;\r
51 LIST_ENTRY *Entry2;\r
52 LIST_ENTRY *Next;\r
53 IP6_INTERFACE *IpIf;\r
54 IP6_DAD_ENTRY *DadEntry;\r
cca5e422
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55 IP6_DELAY_JOIN_LIST *DelayNode;\r
56 \r
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57 //\r
58 // Currently there are only two policies: Manual and Automatic. Regardless of\r
59 // what transition is going on, i.e., Manual -> Automatic and Automatic ->\r
60 // Manual, we have to free default router list, on-link prefix list, autonomous\r
61 // prefix list, address list in all the interfaces and destroy any IPv6 child\r
62 // instance whose local IP is neither 0 nor the link-local address.\r
63 //\r
64 Ip6CleanDefaultRouterList (IpSb);\r
65 Ip6CleanPrefixListTable (IpSb, &IpSb->OnlinkPrefix);\r
66 Ip6CleanPrefixListTable (IpSb, &IpSb->AutonomousPrefix);\r
67\r
68 //\r
69 // It's tricky... If the LinkLocal address is O.K., add back the link-local\r
70 // prefix to the on-link prefix table.\r
71 //\r
72 if (IpSb->LinkLocalOk) {\r
73 Ip6CreatePrefixListEntry (\r
74 IpSb,\r
75 TRUE,\r
76 (UINT32) IP6_INFINIT_LIFETIME,\r
77 (UINT32) IP6_INFINIT_LIFETIME,\r
78 IP6_LINK_LOCAL_PREFIX_LENGTH,\r
79 &IpSb->LinkLocalAddr\r
80 );\r
81 }\r
82\r
83 //\r
84 // All IPv6 children that use global unicast address as it's source address\r
85 // should be destryoed now. The survivers are those use the link-local address\r
86 // or the unspecified address as the source address.\r
87 // TODO: Conduct a check here.\r
88 Ip6RemoveAddr (\r
89 IpSb,\r
90 &IpSb->DefaultInterface->AddressList,\r
91 &IpSb->DefaultInterface->AddressCount,\r
92 NULL,\r
93 0\r
94 );\r
95\r
96 NET_LIST_FOR_EACH (Entry, &IpSb->Interfaces) {\r
97 //\r
cca5e422 98 // remove all pending delay node and DAD entries for the global addresses.\r
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99 //\r
100 IpIf = NET_LIST_USER_STRUCT_S (Entry, IP6_INTERFACE, Link, IP6_INTERFACE_SIGNATURE);\r
101\r
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102 NET_LIST_FOR_EACH_SAFE (Entry2, Next, &IpIf->DelayJoinList) {\r
103 DelayNode = NET_LIST_USER_STRUCT (Entry2, IP6_DELAY_JOIN_LIST, Link);\r
104 if (!NetIp6IsLinkLocalAddr (&DelayNode->AddressInfo->Address)) {\r
105 RemoveEntryList (&DelayNode->Link);\r
106 FreePool (DelayNode);\r
107 }\r
108 }\r
109\r
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110 NET_LIST_FOR_EACH_SAFE (Entry2, Next, &IpIf->DupAddrDetectList) {\r
111 DadEntry = NET_LIST_USER_STRUCT_S (Entry2, IP6_DAD_ENTRY, Link, IP6_DAD_ENTRY_SIGNATURE);\r
112\r
113 if (!NetIp6IsLinkLocalAddr (&DadEntry->AddressInfo->Address)) {\r
114 //\r
115 // Fail this DAD entry if the address is not link-local.\r
116 //\r
117 Ip6OnDADFinished (FALSE, IpIf, DadEntry);\r
118 }\r
119 }\r
120 }\r
121\r
122 if (NewPolicy == Ip6ConfigPolicyAutomatic) {\r
123 //\r
d1c85a17 124 // Set parameters to trigger router solicitation sending in timer handler.\r
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125 //\r
126 IpSb->RouterAdvertiseReceived = FALSE;\r
127 IpSb->SolicitTimer = IP6_MAX_RTR_SOLICITATIONS;\r
128 //\r
129 // delay 1 second\r
130 //\r
131 IpSb->Ticks = (UINT32) IP6_GET_TICKS (IP6_ONE_SECOND_IN_MS);\r
132 }\r
133\r
134}\r
135\r
136/**\r
137 The work function to trigger the DHCPv6 process to perform a stateful autoconfiguration.\r
138\r
139 @param[in] Instance Pointer to the IP6 config instance data.\r
140 @param[in] OtherInfoOnly If FALSE, get stateful address and other information\r
141 via DHCPv6. Otherwise, only get the other information.\r
142\r
143 @retval EFI_SUCCESS The operation finished successfully.\r
144 @retval EFI_UNSUPPORTED The DHCP6 driver is not available.\r
145\r
146**/\r
147EFI_STATUS\r
148Ip6ConfigStartStatefulAutoConfig (\r
149 IN IP6_CONFIG_INSTANCE *Instance,\r
150 IN BOOLEAN OtherInfoOnly\r
151 )\r
152{\r
153 EFI_STATUS Status;\r
154 IP6_SERVICE *IpSb;\r
155 EFI_DHCP6_CONFIG_DATA Dhcp6CfgData;\r
156 EFI_DHCP6_PROTOCOL *Dhcp6;\r
157 EFI_DHCP6_PACKET_OPTION *OptList[1];\r
158 UINT16 OptBuf[4];\r
159 EFI_DHCP6_PACKET_OPTION *Oro;\r
160 EFI_DHCP6_RETRANSMISSION InfoReqReXmit;\r
161\r
162 //\r
163 // A host must not invoke stateful address configuration if it is already\r
164 // participating in the statuful protocol as a result of an earlier advertisement.\r
165 //\r
166 if (Instance->Dhcp6Handle != NULL) {\r
167 return EFI_SUCCESS;\r
168 }\r
169\r
170 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
171\r
172 Instance->OtherInfoOnly = OtherInfoOnly;\r
173\r
174 Status = NetLibCreateServiceChild (\r
175 IpSb->Controller,\r
176 IpSb->Image,\r
177 &gEfiDhcp6ServiceBindingProtocolGuid,\r
178 &Instance->Dhcp6Handle\r
179 );\r
180\r
181 if (Status == EFI_UNSUPPORTED) {\r
182 //\r
183 // No DHCPv6 Service Binding protocol, register a notify.\r
184 //\r
185 if (Instance->Dhcp6SbNotifyEvent == NULL) {\r
186 Instance->Dhcp6SbNotifyEvent = EfiCreateProtocolNotifyEvent (\r
187 &gEfiDhcp6ServiceBindingProtocolGuid,\r
188 TPL_CALLBACK,\r
189 Ip6ConfigOnDhcp6SbInstalled,\r
190 (VOID *) Instance,\r
191 &Instance->Registration\r
192 );\r
193 }\r
194 }\r
195\r
196 if (EFI_ERROR (Status)) {\r
197 return Status;\r
198 }\r
199\r
200 if (Instance->Dhcp6SbNotifyEvent != NULL) {\r
201 gBS->CloseEvent (Instance->Dhcp6SbNotifyEvent);\r
202 }\r
203\r
204 Status = gBS->OpenProtocol (\r
205 Instance->Dhcp6Handle,\r
206 &gEfiDhcp6ProtocolGuid,\r
207 (VOID **) &Instance->Dhcp6,\r
208 IpSb->Image,\r
209 IpSb->Controller,\r
210 EFI_OPEN_PROTOCOL_BY_DRIVER\r
211 );\r
212 ASSERT_EFI_ERROR (Status);\r
213\r
214 Dhcp6 = Instance->Dhcp6;\r
215 Dhcp6->Configure (Dhcp6, NULL);\r
216\r
217 //\r
218 // Set the exta options to send. Here we only want the option request option\r
219 // with DNS SERVERS.\r
220 //\r
221 Oro = (EFI_DHCP6_PACKET_OPTION *) OptBuf;\r
142c00c3 222 Oro->OpCode = HTONS (DHCP6_OPT_ORO);\r
a3bcde70 223 Oro->OpLen = HTONS (2);\r
142c00c3 224 *((UINT16 *) &Oro->Data[0]) = HTONS (DHCP6_OPT_DNS_SERVERS);\r
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225 OptList[0] = Oro;\r
226\r
227 Status = EFI_SUCCESS;\r
228\r
229 if (!OtherInfoOnly) {\r
230 //\r
231 // Get stateful address and other information via DHCPv6.\r
232 //\r
233 Dhcp6CfgData.Dhcp6Callback = NULL;\r
234 Dhcp6CfgData.CallbackContext = NULL;\r
235 Dhcp6CfgData.OptionCount = 1;\r
236 Dhcp6CfgData.OptionList = &OptList[0];\r
237 Dhcp6CfgData.IaDescriptor.Type = EFI_DHCP6_IA_TYPE_NA;\r
238 Dhcp6CfgData.IaDescriptor.IaId = Instance->IaId;\r
239 Dhcp6CfgData.IaInfoEvent = Instance->Dhcp6Event;\r
240 Dhcp6CfgData.ReconfigureAccept = FALSE;\r
241 Dhcp6CfgData.RapidCommit = FALSE;\r
242 Dhcp6CfgData.SolicitRetransmission = NULL;\r
243\r
244 Status = Dhcp6->Configure (Dhcp6, &Dhcp6CfgData);\r
245\r
246 if (!EFI_ERROR (Status)) {\r
247\r
248 if (IpSb->LinkLocalOk) {\r
249 Status = Dhcp6->Start (Dhcp6);\r
250 } else {\r
251 IpSb->Dhcp6NeedStart = TRUE;\r
252 }\r
253\r
254 }\r
255 } else {\r
256 //\r
257 // Only get other information via DHCPv6, this doesn't require a config\r
258 // action.\r
259 //\r
260 InfoReqReXmit.Irt = 4;\r
261 InfoReqReXmit.Mrc = 64;\r
262 InfoReqReXmit.Mrt = 60;\r
263 InfoReqReXmit.Mrd = 0;\r
264\r
265 if (IpSb->LinkLocalOk) {\r
266 Status = Dhcp6->InfoRequest (\r
267 Dhcp6,\r
268 TRUE,\r
269 Oro,\r
270 0,\r
271 NULL,\r
272 &InfoReqReXmit,\r
273 Instance->Dhcp6Event,\r
274 Ip6ConfigOnDhcp6Reply,\r
275 Instance\r
276 );\r
277 } else {\r
278 IpSb->Dhcp6NeedInfoRequest = TRUE;\r
279 }\r
280\r
281 }\r
282\r
283 return Status;\r
284}\r
285\r
286/**\r
287 Signal the registered event. It is the callback routine for NetMapIterate.\r
288\r
289 @param[in] Map Points to the list of registered event.\r
290 @param[in] Item The registered event.\r
291 @param[in] Arg Not used.\r
292\r
293**/\r
294EFI_STATUS\r
295EFIAPI\r
296Ip6ConfigSignalEvent (\r
297 IN NET_MAP *Map,\r
298 IN NET_MAP_ITEM *Item,\r
299 IN VOID *Arg\r
300 )\r
301{\r
302 gBS->SignalEvent ((EFI_EVENT) Item->Key);\r
303\r
304 return EFI_SUCCESS;\r
305}\r
306\r
307/**\r
308 Read the configuration data from variable storage according to the VarName and\r
309 gEfiIp6ConfigProtocolGuid. It checks the integrity of variable data. If the\r
310 data is corrupted, it clears the variable data to ZERO. Othewise, it outputs the\r
311 configuration data to IP6_CONFIG_INSTANCE.\r
312\r
313 @param[in] VarName The pointer to the variable name\r
314 @param[in, out] Instance The pointer to the IP6 config instance data.\r
315\r
316 @retval EFI_NOT_FOUND The variable can not be found or already corrupted.\r
317 @retval EFI_OUT_OF_RESOURCES Fail to allocate resource to complete the operation.\r
318 @retval EFI_SUCCESS The configuration data was retrieved successfully.\r
319\r
320**/\r
321EFI_STATUS\r
322Ip6ConfigReadConfigData (\r
323 IN CHAR16 *VarName,\r
324 IN OUT IP6_CONFIG_INSTANCE *Instance\r
325 )\r
326{\r
327 EFI_STATUS Status;\r
328 UINTN VarSize;\r
329 IP6_CONFIG_VARIABLE *Variable;\r
330 IP6_CONFIG_DATA_ITEM *DataItem;\r
331 UINTN Index;\r
332 IP6_CONFIG_DATA_RECORD DataRecord;\r
333 CHAR8 *Data;\r
334\r
335 //\r
336 // Try to read the configuration variable.\r
337 //\r
338 VarSize = 0;\r
339 Status = gRT->GetVariable (\r
340 VarName,\r
341 &gEfiIp6ConfigProtocolGuid,\r
342 NULL,\r
343 &VarSize,\r
344 NULL\r
345 );\r
346\r
347 if (Status == EFI_BUFFER_TOO_SMALL) {\r
348 //\r
349 // Allocate buffer and read the config variable.\r
350 //\r
351 Variable = AllocatePool (VarSize);\r
352 if (Variable == NULL) {\r
353 return EFI_OUT_OF_RESOURCES;\r
354 }\r
355\r
356 Status = gRT->GetVariable (\r
357 VarName,\r
358 &gEfiIp6ConfigProtocolGuid,\r
359 NULL,\r
360 &VarSize,\r
361 Variable\r
362 );\r
363 if (EFI_ERROR (Status) || (UINT16) (~NetblockChecksum ((UINT8 *) Variable, (UINT32) VarSize)) != 0) {\r
364 //\r
365 // GetVariable still error or the variable is corrupted.\r
366 // Fall back to the default value.\r
367 //\r
368 FreePool (Variable);\r
369\r
370 //\r
371 // Remove the problematic variable and return EFI_NOT_FOUND, a new\r
372 // variable will be set again.\r
373 //\r
374 gRT->SetVariable (\r
375 VarName,\r
376 &gEfiIp6ConfigProtocolGuid,\r
377 IP6_CONFIG_VARIABLE_ATTRIBUTE,\r
378 0,\r
379 NULL\r
380 );\r
381\r
382 return EFI_NOT_FOUND;\r
383 }\r
384\r
385 //\r
386 // Get the IAID we use.\r
387 //\r
388 Instance->IaId = Variable->IaId;\r
389\r
390 for (Index = 0; Index < Variable->DataRecordCount; Index++) {\r
391\r
392 CopyMem (&DataRecord, &Variable->DataRecord[Index], sizeof (DataRecord));\r
393\r
394 DataItem = &Instance->DataItem[DataRecord.DataType];\r
395 if (DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED) &&\r
396 (DataItem->DataSize != DataRecord.DataSize)\r
397 ) {\r
398 //\r
399 // Perhaps a corrupted data record...\r
400 //\r
401 continue;\r
402 }\r
403\r
404 if (!DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED)) {\r
405 //\r
406 // This data item has variable length data.\r
407 //\r
408 DataItem->Data.Ptr = AllocatePool (DataRecord.DataSize);\r
409 if (DataItem->Data.Ptr == NULL) {\r
410 //\r
411 // no memory resource\r
412 //\r
413 continue;\r
414 }\r
415 }\r
416\r
417 Data = (CHAR8 *) Variable + DataRecord.Offset;\r
418 CopyMem (DataItem->Data.Ptr, Data, DataRecord.DataSize);\r
419\r
420 DataItem->DataSize = DataRecord.DataSize;\r
421 DataItem->Status = EFI_SUCCESS;\r
422 }\r
423\r
424 FreePool (Variable);\r
425 return EFI_SUCCESS;\r
426 }\r
427\r
428 return Status;\r
429}\r
430\r
431/**\r
432 Write the configuration data from IP6_CONFIG_INSTANCE to variable storage.\r
433\r
434 @param[in] VarName The pointer to the variable name.\r
435 @param[in] Instance The pointer to the IP6 configuration instance data.\r
436\r
437 @retval EFI_OUT_OF_RESOURCES Fail to allocate resource to complete the operation.\r
438 @retval EFI_SUCCESS The configuration data is written successfully.\r
439\r
440**/\r
441EFI_STATUS\r
442Ip6ConfigWriteConfigData (\r
443 IN CHAR16 *VarName,\r
444 IN IP6_CONFIG_INSTANCE *Instance\r
445 )\r
446{\r
447 UINTN Index;\r
448 UINTN VarSize;\r
449 IP6_CONFIG_DATA_ITEM *DataItem;\r
450 IP6_CONFIG_VARIABLE *Variable;\r
451 IP6_CONFIG_DATA_RECORD *DataRecord;\r
452 CHAR8 *Heap;\r
453 EFI_STATUS Status;\r
454\r
455 VarSize = sizeof (IP6_CONFIG_VARIABLE) - sizeof (IP6_CONFIG_DATA_RECORD);\r
456\r
457 for (Index = 0; Index < Ip6ConfigDataTypeMaximum; Index++) {\r
458\r
459 DataItem = &Instance->DataItem[Index];\r
460 if (!DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_VOLATILE) && !EFI_ERROR (DataItem->Status)) {\r
461\r
462 VarSize += sizeof (IP6_CONFIG_DATA_RECORD) + DataItem->DataSize;\r
463 }\r
464 }\r
465\r
466 Variable = AllocatePool (VarSize);\r
467 if (Variable == NULL) {\r
468 return EFI_OUT_OF_RESOURCES;\r
469 }\r
470\r
471 Variable->IaId = Instance->IaId;\r
472 Heap = (CHAR8 *) Variable + VarSize;\r
473 Variable->DataRecordCount = 0;\r
474\r
475 for (Index = 0; Index < Ip6ConfigDataTypeMaximum; Index++) {\r
476\r
477 DataItem = &Instance->DataItem[Index];\r
478 if (!DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_VOLATILE) && !EFI_ERROR (DataItem->Status)) {\r
479\r
480 Heap -= DataItem->DataSize;\r
481 CopyMem (Heap, DataItem->Data.Ptr, DataItem->DataSize);\r
482\r
483 DataRecord = &Variable->DataRecord[Variable->DataRecordCount];\r
484 DataRecord->DataType = (EFI_IP6_CONFIG_DATA_TYPE) Index;\r
fdc4b0b1 485 DataRecord->DataSize = (UINT32) DataItem->DataSize;\r
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486 DataRecord->Offset = (UINT16) (Heap - (CHAR8 *) Variable);\r
487\r
488 Variable->DataRecordCount++;\r
489 }\r
490 }\r
491\r
492 Variable->Checksum = 0;\r
493 Variable->Checksum = (UINT16) ~NetblockChecksum ((UINT8 *) Variable, (UINT32) VarSize);\r
494\r
495 Status = gRT->SetVariable (\r
496 VarName,\r
497 &gEfiIp6ConfigProtocolGuid,\r
498 IP6_CONFIG_VARIABLE_ATTRIBUTE,\r
499 VarSize,\r
500 Variable\r
501 );\r
502\r
503 FreePool (Variable);\r
504\r
505 return Status;\r
506}\r
507\r
508/**\r
509 The work function for EfiIp6ConfigGetData() to get the interface information\r
510 of the communication device this IP6Config instance manages.\r
511\r
512 @param[in] Instance Pointer to the IP6 config instance data.\r
513 @param[in, out] DataSize On input, in bytes, the size of Data. On output, in\r
514 bytes, the size of buffer required to store the specified\r
515 configuration data.\r
516 @param[in] Data The data buffer in which the configuration data is returned.\r
517 Ignored if DataSize is ZERO.\r
518\r
519 @retval EFI_BUFFER_TOO_SMALL The size of Data is too small for the specified\r
520 configuration data, and the required size is\r
521 returned in DataSize.\r
522 @retval EFI_SUCCESS The specified configuration data was obtained.\r
523\r
524**/\r
525EFI_STATUS\r
526Ip6ConfigGetIfInfo (\r
527 IN IP6_CONFIG_INSTANCE *Instance,\r
528 IN OUT UINTN *DataSize,\r
529 IN VOID *Data OPTIONAL\r
530 )\r
531{\r
532 IP6_SERVICE *IpSb;\r
533 UINTN Length;\r
534 IP6_CONFIG_DATA_ITEM *Item;\r
535 EFI_IP6_CONFIG_INTERFACE_INFO *IfInfo;\r
536 UINT32 AddressCount;\r
537 UINT32 RouteCount;\r
538\r
539 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
540 Length = sizeof (EFI_IP6_CONFIG_INTERFACE_INFO);\r
541\r
542 //\r
543 // Calculate the required length, add the buffer size for AddressInfo and\r
544 // RouteTable\r
545 //\r
546 Ip6BuildEfiAddressList (IpSb, &AddressCount, NULL);\r
547 Ip6BuildEfiRouteTable (IpSb->RouteTable, &RouteCount, NULL);\r
548\r
549 Length += AddressCount * sizeof (EFI_IP6_ADDRESS_INFO) + RouteCount * sizeof (EFI_IP6_ROUTE_TABLE);\r
550\r
551 if (*DataSize < Length) {\r
552 *DataSize = Length;\r
553 return EFI_BUFFER_TOO_SMALL;\r
554 }\r
555\r
556 //\r
557 // Copy the fixed size part of the interface info.\r
558 //\r
559 Item = &Instance->DataItem[Ip6ConfigDataTypeInterfaceInfo];\r
560 IfInfo = (EFI_IP6_CONFIG_INTERFACE_INFO *) Data;\r
561 CopyMem (IfInfo, Item->Data.Ptr, sizeof (EFI_IP6_CONFIG_INTERFACE_INFO));\r
562\r
563 //\r
564 // AddressInfo\r
565 //\r
566 IfInfo->AddressInfo = (EFI_IP6_ADDRESS_INFO *) (IfInfo + 1);\r
567 Ip6BuildEfiAddressList (IpSb, &IfInfo->AddressInfoCount, &IfInfo->AddressInfo);\r
568\r
569 //\r
570 // RouteTable\r
571 //\r
572 IfInfo->RouteTable = (EFI_IP6_ROUTE_TABLE *) (IfInfo->AddressInfo + IfInfo->AddressInfoCount);\r
573 Ip6BuildEfiRouteTable (IpSb->RouteTable, &IfInfo->RouteCount, &IfInfo->RouteTable);\r
574\r
575 if (IfInfo->AddressInfoCount == 0) {\r
576 IfInfo->AddressInfo = NULL;\r
577 }\r
578\r
579 if (IfInfo->RouteCount == 0) {\r
580 IfInfo->RouteTable = NULL;\r
581 }\r
582\r
583 return EFI_SUCCESS;\r
584}\r
585\r
586/**\r
587 The work function for EfiIp6ConfigSetData() to set the alternative inteface ID\r
588 for the communication device managed by this IP6Config instance, if the link local\r
589 IPv6 addresses generated from the interface ID based on the default source the\r
590 EFI IPv6 Protocol uses is a duplicate address.\r
591\r
592 @param[in] Instance Pointer to the IP6 configuration instance data.\r
593 @param[in] DataSize Size of the buffer pointed to by Data in bytes.\r
594 @param[in] Data The data buffer to set.\r
595\r
596 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type,\r
597 8 bytes.\r
598 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
599 network stack was set.\r
600\r
601**/\r
602EFI_STATUS\r
603Ip6ConfigSetAltIfId (\r
604 IN IP6_CONFIG_INSTANCE *Instance,\r
605 IN UINTN DataSize,\r
606 IN VOID *Data\r
607 )\r
608{\r
609 EFI_IP6_CONFIG_INTERFACE_ID *OldIfId;\r
610 EFI_IP6_CONFIG_INTERFACE_ID *NewIfId;\r
611 IP6_CONFIG_DATA_ITEM *DataItem;\r
612\r
613 if (DataSize != sizeof (EFI_IP6_CONFIG_INTERFACE_ID)) {\r
614 return EFI_BAD_BUFFER_SIZE;\r
615 }\r
616\r
617 DataItem = &Instance->DataItem[Ip6ConfigDataTypeAltInterfaceId];\r
618 OldIfId = DataItem->Data.AltIfId;\r
619 NewIfId = (EFI_IP6_CONFIG_INTERFACE_ID *) Data;\r
620\r
621 CopyMem (OldIfId, NewIfId, DataSize);\r
622 DataItem->Status = EFI_SUCCESS;\r
623\r
624 return EFI_SUCCESS;\r
625}\r
626\r
627/**\r
628 The work function for EfiIp6ConfigSetData() to set the general configuration\r
629 policy for the EFI IPv6 network stack that is running on the communication device\r
630 managed by this IP6Config instance. The policy will affect other configuration settings.\r
631\r
632 @param[in] Instance Pointer to the IP6 config instance data.\r
633 @param[in] DataSize Size of the buffer pointed to by Data in bytes.\r
634 @param[in] Data The data buffer to set.\r
635\r
636 @retval EFI_INVALID_PARAMETER The to be set policy is invalid.\r
637 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
638 @retval EFI_ABORTED The new policy equals the current policy.\r
639 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
640 network stack was set.\r
641\r
642**/\r
643EFI_STATUS\r
644Ip6ConfigSetPolicy (\r
645 IN IP6_CONFIG_INSTANCE *Instance,\r
646 IN UINTN DataSize,\r
647 IN VOID *Data\r
648 )\r
649{\r
650 EFI_IP6_CONFIG_POLICY NewPolicy;\r
651 IP6_CONFIG_DATA_ITEM *DataItem;\r
652 IP6_SERVICE *IpSb;\r
653\r
654 if (DataSize != sizeof (EFI_IP6_CONFIG_POLICY)) {\r
655 return EFI_BAD_BUFFER_SIZE;\r
656 }\r
657\r
658 NewPolicy = *((EFI_IP6_CONFIG_POLICY *) Data);\r
659\r
660 if (NewPolicy > Ip6ConfigPolicyAutomatic) {\r
661 return EFI_INVALID_PARAMETER;\r
662 }\r
663\r
664 if (NewPolicy == Instance->Policy) {\r
665\r
666 return EFI_ABORTED;\r
667 } else {\r
00df35fe
JW
668 //\r
669 // Clean the ManualAddress, Gateway and DnsServers, shrink the variable\r
670 // data size, and fire up all the related events.\r
671 //\r
672 DataItem = &Instance->DataItem[Ip6ConfigDataTypeManualAddress];\r
673 if (DataItem->Data.Ptr != NULL) {\r
674 FreePool (DataItem->Data.Ptr);\r
675 }\r
676 DataItem->Data.Ptr = NULL;\r
677 DataItem->DataSize = 0;\r
678 DataItem->Status = EFI_NOT_FOUND;\r
679 NetMapIterate (&DataItem->EventMap, Ip6ConfigSignalEvent, NULL);\r
680\r
681 DataItem = &Instance->DataItem[Ip6ConfigDataTypeGateway];\r
682 if (DataItem->Data.Ptr != NULL) {\r
683 FreePool (DataItem->Data.Ptr);\r
684 }\r
685 DataItem->Data.Ptr = NULL;\r
686 DataItem->DataSize = 0;\r
687 DataItem->Status = EFI_NOT_FOUND;\r
688 NetMapIterate (&DataItem->EventMap, Ip6ConfigSignalEvent, NULL);\r
689\r
690 DataItem = &Instance->DataItem[Ip6ConfigDataTypeDnsServer];\r
691 DataItem->Data.Ptr = NULL;\r
692 DataItem->DataSize = 0;\r
693 DataItem->Status = EFI_NOT_FOUND;\r
694 NetMapIterate (&DataItem->EventMap, Ip6ConfigSignalEvent, NULL);\r
695 \r
696 if (NewPolicy == Ip6ConfigPolicyManual) {\r
a3bcde70
HT
697 //\r
698 // The policy is changed from automatic to manual. Stop the DHCPv6 process\r
699 // and destroy the DHCPv6 child.\r
700 //\r
701 if (Instance->Dhcp6Handle != NULL) {\r
702 Ip6ConfigDestroyDhcp6 (Instance);\r
703 }\r
704 }\r
705\r
706 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
707 Ip6ConfigOnPolicyChanged (IpSb, NewPolicy);\r
708\r
709 Instance->Policy = NewPolicy;\r
710\r
711 return EFI_SUCCESS;\r
712 }\r
713}\r
714\r
715/**\r
716 The work function for EfiIp6ConfigSetData() to set the number of consecutive\r
717 Neighbor Solicitation messages sent while performing Duplicate Address Detection\r
718 on a tentative address. A value of ZERO indicates that Duplicate Address Detection\r
719 will not be performed on a tentative address.\r
720\r
76389e18 721 @param[in] Instance The Instance Pointer to the IP6 config instance data.\r
a3bcde70
HT
722 @param[in] DataSize Size of the buffer pointed to by Data in bytes.\r
723 @param[in] Data The data buffer to set.\r
724\r
725 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
726 @retval EFI_ABORTED The new transmit count equals the current configuration.\r
727 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
728 network stack was set.\r
729\r
730**/\r
731EFI_STATUS\r
732Ip6ConfigSetDadXmits (\r
733 IN IP6_CONFIG_INSTANCE *Instance,\r
734 IN UINTN DataSize,\r
735 IN VOID *Data\r
736 )\r
737{\r
738 EFI_IP6_CONFIG_DUP_ADDR_DETECT_TRANSMITS *OldDadXmits;\r
739\r
740 if (DataSize != sizeof (EFI_IP6_CONFIG_DUP_ADDR_DETECT_TRANSMITS)) {\r
741 return EFI_BAD_BUFFER_SIZE;\r
742 }\r
743\r
744 OldDadXmits = Instance->DataItem[Ip6ConfigDataTypeDupAddrDetectTransmits].Data.DadXmits;\r
745\r
746 if ((*(UINT32 *) Data) == OldDadXmits->DupAddrDetectTransmits) {\r
747\r
748 return EFI_ABORTED;\r
749 } else {\r
750\r
751 OldDadXmits->DupAddrDetectTransmits = *((UINT32 *) Data);\r
752 return EFI_SUCCESS;\r
753 }\r
754}\r
755\r
756/**\r
757 The callback function for Ip6SetAddr. The prototype is defined\r
758 as IP6_DAD_CALLBACK. It is called after Duplicate Address Detection is performed\r
c3149709 759 for the manual address set by Ip6ConfigSetManualAddress.\r
a3bcde70
HT
760\r
761 @param[in] IsDadPassed If TRUE, Duplicate Address Detection passed.\r
762 @param[in] TargetAddress The tentative IPv6 address to be checked.\r
763 @param[in] Context Pointer to the IP6 configuration instance data.\r
764\r
765**/\r
766VOID\r
767Ip6ManualAddrDadCallback (\r
768 IN BOOLEAN IsDadPassed,\r
769 IN EFI_IPv6_ADDRESS *TargetAddress,\r
770 IN VOID *Context\r
771 )\r
772{\r
773 IP6_CONFIG_INSTANCE *Instance;\r
774 UINTN Index;\r
775 IP6_CONFIG_DATA_ITEM *Item;\r
776 EFI_IP6_CONFIG_MANUAL_ADDRESS *ManualAddr;\r
777 EFI_IP6_CONFIG_MANUAL_ADDRESS *PassedAddr;\r
778 UINTN DadPassCount;\r
779 UINTN DadFailCount;\r
780 IP6_SERVICE *IpSb;\r
781\r
782 Instance = (IP6_CONFIG_INSTANCE *) Context;\r
783 NET_CHECK_SIGNATURE (Instance, IP6_CONFIG_INSTANCE_SIGNATURE);\r
784 Item = &Instance->DataItem[Ip6ConfigDataTypeManualAddress];\r
785 ManualAddr = NULL;\r
786\r
52cad7d0
ZL
787 if (Item->DataSize == 0) {\r
788 return;\r
789 }\r
790\r
a3bcde70
HT
791 for (Index = 0; Index < Item->DataSize / sizeof (EFI_IP6_CONFIG_MANUAL_ADDRESS); Index++) {\r
792 //\r
793 // Find the original tag used to place into the NET_MAP.\r
794 //\r
795 ManualAddr = Item->Data.ManualAddress + Index;\r
796 if (EFI_IP6_EQUAL (TargetAddress, &ManualAddr->Address)) {\r
797 break;\r
798 }\r
799 }\r
800\r
801 ASSERT (Index != Item->DataSize / sizeof (EFI_IP6_CONFIG_MANUAL_ADDRESS));\r
802\r
803 if (IsDadPassed) {\r
804 NetMapInsertTail (&Instance->DadPassedMap, ManualAddr, NULL);\r
805 } else {\r
806 NetMapInsertTail (&Instance->DadFailedMap, ManualAddr, NULL);\r
807 }\r
808\r
809 DadPassCount = NetMapGetCount (&Instance->DadPassedMap);\r
810 DadFailCount = NetMapGetCount (&Instance->DadFailedMap);\r
811\r
812 if ((DadPassCount + DadFailCount) == (Item->DataSize / sizeof (EFI_IP6_CONFIG_MANUAL_ADDRESS))) {\r
813 //\r
814 // All addresses have finished the configuration process.\r
815 //\r
816 if (DadFailCount != 0) {\r
817 //\r
818 // There is at least one duplicate address.\r
819 //\r
820 FreePool (Item->Data.Ptr);\r
821\r
822 Item->DataSize = DadPassCount * sizeof (EFI_IP6_CONFIG_MANUAL_ADDRESS);\r
823 if (Item->DataSize == 0) {\r
824 //\r
825 // All failed, bad luck.\r
826 //\r
827 Item->Data.Ptr = NULL;\r
828 Item->Status = EFI_NOT_FOUND;\r
829 } else {\r
830 //\r
831 // Part of addresses are detected to be duplicates, so update the\r
832 // data with those passed.\r
833 //\r
834 PassedAddr = (EFI_IP6_CONFIG_MANUAL_ADDRESS *) AllocatePool (Item->DataSize);\r
835 ASSERT (PassedAddr != NULL);\r
836\r
837 Item->Data.Ptr = PassedAddr;\r
838 Item->Status = EFI_SUCCESS;\r
839\r
840 while (!NetMapIsEmpty (&Instance->DadPassedMap)) {\r
841 ManualAddr = (EFI_IP6_CONFIG_MANUAL_ADDRESS *) NetMapRemoveHead (&Instance->DadPassedMap, NULL);\r
842 CopyMem (PassedAddr, ManualAddr, sizeof (EFI_IP6_CONFIG_MANUAL_ADDRESS));\r
843\r
844 PassedAddr++;\r
845 }\r
846\r
847 ASSERT ((UINTN) PassedAddr - (UINTN) Item->Data.Ptr == Item->DataSize);\r
848 }\r
849 } else {\r
850 //\r
851 // All addresses are valid.\r
852 //\r
853 Item->Status = EFI_SUCCESS;\r
854 }\r
855\r
856 //\r
857 // Remove the tags we put in the NET_MAPs.\r
858 //\r
859 while (!NetMapIsEmpty (&Instance->DadFailedMap)) {\r
860 NetMapRemoveHead (&Instance->DadFailedMap, NULL);\r
861 }\r
862\r
863 while (!NetMapIsEmpty (&Instance->DadPassedMap)) {\r
864 NetMapRemoveHead (&Instance->DadPassedMap, NULL);\r
865 }\r
866\r
867 //\r
868 // Signal the waiting events.\r
869 //\r
870 NetMapIterate (&Item->EventMap, Ip6ConfigSignalEvent, NULL);\r
871 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
872 Ip6ConfigWriteConfigData (IpSb->MacString, Instance);\r
873 }\r
874}\r
875\r
876/**\r
877 The work function for EfiIp6ConfigSetData() to set the station addresses manually\r
878 for the EFI IPv6 network stack. It is only configurable when the policy is\r
879 Ip6ConfigPolicyManual.\r
880\r
881 @param[in] Instance Pointer to the IP6 configuration instance data.\r
882 @param[in] DataSize Size of the buffer pointed to by Data in bytes.\r
883 @param[in] Data The data buffer to set.\r
884\r
885 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
886 @retval EFI_WRITE_PROTECTED The specified configuration data cannot be set\r
887 under the current policy.\r
888 @retval EFI_INVALID_PARAMETER One or more fields in Data is invalid.\r
889 @retval EFI_OUT_OF_RESOURCES Fail to allocate resource to complete the operation.\r
890 @retval EFI_NOT_READY An asynchrous process is invoked to set the specified\r
891 configuration data, and the process is not finished.\r
892 @retval EFI_ABORTED The manual addresses to be set equal current\r
893 configuration.\r
894 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
895 network stack was set.\r
896\r
897**/\r
898EFI_STATUS\r
c3149709 899Ip6ConfigSetManualAddress (\r
a3bcde70
HT
900 IN IP6_CONFIG_INSTANCE *Instance,\r
901 IN UINTN DataSize,\r
902 IN VOID *Data\r
903 )\r
904{\r
905 EFI_IP6_CONFIG_MANUAL_ADDRESS *NewAddress;\r
906 EFI_IP6_CONFIG_MANUAL_ADDRESS *TmpAddress;\r
907 IP6_CONFIG_DATA_ITEM *DataItem;\r
908 UINTN NewAddressCount;\r
909 UINTN Index1;\r
910 UINTN Index2;\r
911 IP6_SERVICE *IpSb;\r
912 IP6_ADDRESS_INFO *CurrentAddrInfo;\r
913 IP6_ADDRESS_INFO *Copy;\r
914 LIST_ENTRY CurrentSourceList;\r
915 UINT32 CurrentSourceCount;\r
916 LIST_ENTRY *Entry;\r
917 LIST_ENTRY *Entry2;\r
918 IP6_INTERFACE *IpIf;\r
919 IP6_PREFIX_LIST_ENTRY *PrefixEntry;\r
920 EFI_STATUS Status;\r
921 BOOLEAN IsUpdated;\r
922\r
923 ASSERT (Instance->DataItem[Ip6ConfigDataTypeManualAddress].Status != EFI_NOT_READY);\r
924\r
925 if (((DataSize % sizeof (EFI_IP6_CONFIG_MANUAL_ADDRESS)) != 0) || (DataSize == 0)) {\r
926 return EFI_BAD_BUFFER_SIZE;\r
927 }\r
928\r
929 if (Instance->Policy != Ip6ConfigPolicyManual) {\r
930 return EFI_WRITE_PROTECTED;\r
931 }\r
932\r
933 NewAddressCount = DataSize / sizeof (EFI_IP6_CONFIG_MANUAL_ADDRESS);\r
934 NewAddress = (EFI_IP6_CONFIG_MANUAL_ADDRESS *) Data;\r
935\r
936 for (Index1 = 0; Index1 < NewAddressCount; Index1++, NewAddress++) {\r
937\r
938 if (NetIp6IsLinkLocalAddr (&NewAddress->Address) ||\r
939 !NetIp6IsValidUnicast (&NewAddress->Address) ||\r
940 (NewAddress->PrefixLength > 128)\r
941 ) {\r
942 //\r
943 // make sure the IPv6 address is unicast and not link-local address &&\r
944 // the prefix length is valid.\r
945 //\r
946 return EFI_INVALID_PARAMETER;\r
947 }\r
948\r
949 TmpAddress = NewAddress + 1;\r
950 for (Index2 = Index1 + 1; Index2 < NewAddressCount; Index2++, TmpAddress++) {\r
951 //\r
952 // Any two addresses in the array can't be equal.\r
953 //\r
954 if (EFI_IP6_EQUAL (&TmpAddress->Address, &NewAddress->Address)) {\r
955\r
956 return EFI_INVALID_PARAMETER;\r
957 }\r
958 }\r
959 }\r
960\r
961 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
962\r
963 //\r
964 // Build the current source address list.\r
965 //\r
966 InitializeListHead (&CurrentSourceList);\r
967 CurrentSourceCount = 0;\r
968\r
969 NET_LIST_FOR_EACH (Entry, &IpSb->Interfaces) {\r
970 IpIf = NET_LIST_USER_STRUCT_S (Entry, IP6_INTERFACE, Link, IP6_INTERFACE_SIGNATURE);\r
971\r
972 NET_LIST_FOR_EACH (Entry2, &IpIf->AddressList) {\r
973 CurrentAddrInfo = NET_LIST_USER_STRUCT_S (Entry2, IP6_ADDRESS_INFO, Link, IP6_ADDR_INFO_SIGNATURE);\r
974\r
975 Copy = AllocateCopyPool (sizeof (IP6_ADDRESS_INFO), CurrentAddrInfo);\r
976 if (Copy == NULL) {\r
977 break;\r
978 }\r
979\r
980 InsertTailList (&CurrentSourceList, &Copy->Link);\r
981 CurrentSourceCount++;\r
982 }\r
983 }\r
984\r
985 //\r
986 // Update the value... a long journey starts\r
987 //\r
988 NewAddress = AllocateCopyPool (DataSize, Data);\r
989 if (NewAddress == NULL) {\r
990 Ip6RemoveAddr (NULL, &CurrentSourceList, &CurrentSourceCount, NULL, 0);\r
991\r
992 return EFI_OUT_OF_RESOURCES;\r
993 }\r
994\r
995 //\r
996 // Store the new data, and init the DataItem status to EFI_NOT_READY because\r
997 // we may have an asynchronous configuration process.\r
998 //\r
999 DataItem = &Instance->DataItem[Ip6ConfigDataTypeManualAddress];\r
1000 if (DataItem->Data.Ptr != NULL) {\r
1001 FreePool (DataItem->Data.Ptr);\r
1002 }\r
1003 DataItem->Data.Ptr = NewAddress;\r
1004 DataItem->DataSize = DataSize;\r
1005 DataItem->Status = EFI_NOT_READY;\r
1006\r
1007 //\r
1008 // Trigger DAD, it's an asynchronous process.\r
1009 //\r
1010 IsUpdated = FALSE;\r
1011\r
1012 for (Index1 = 0; Index1 < NewAddressCount; Index1++, NewAddress++) {\r
1013 if (Ip6IsOneOfSetAddress (IpSb, &NewAddress->Address, NULL, &CurrentAddrInfo)) {\r
1014 ASSERT (CurrentAddrInfo != NULL);\r
1015 //\r
1016 // Remove this already existing source address from the CurrentSourceList\r
1017 // built before.\r
1018 //\r
1019 Ip6RemoveAddr (\r
1020 NULL,\r
1021 &CurrentSourceList,\r
1022 &CurrentSourceCount,\r
1023 &CurrentAddrInfo->Address,\r
1024 128\r
1025 );\r
1026\r
ae97201c
FS
1027 //\r
1028 // If the new address's prefix length is not specified, just use the previous configured\r
1029 // prefix length for this address.\r
1030 //\r
1031 if (NewAddress->PrefixLength == 0) {\r
1032 NewAddress->PrefixLength = CurrentAddrInfo->PrefixLength;\r
1033 }\r
1034\r
a3bcde70
HT
1035 //\r
1036 // This manual address is already in use, see whether prefix length is changed.\r
1037 //\r
1038 if (NewAddress->PrefixLength != CurrentAddrInfo->PrefixLength) {\r
1039 //\r
1040 // Remove the on-link prefix table, the route entry will be removed\r
1041 // implicitly.\r
1042 //\r
1043 PrefixEntry = Ip6FindPrefixListEntry (\r
1044 IpSb,\r
1045 TRUE,\r
1046 CurrentAddrInfo->PrefixLength,\r
1047 &CurrentAddrInfo->Address\r
1048 );\r
1049 if (PrefixEntry != NULL) {\r
1050 Ip6DestroyPrefixListEntry (IpSb, PrefixEntry, TRUE, FALSE);\r
1051 }\r
1052\r
1053 //\r
1054 // Save the prefix length.\r
1055 //\r
1056 CurrentAddrInfo->PrefixLength = NewAddress->PrefixLength;\r
1057 IsUpdated = TRUE;\r
1058 }\r
1059\r
1060 //\r
1061 // create a new on-link prefix entry.\r
1062 //\r
1063 PrefixEntry = Ip6FindPrefixListEntry (\r
1064 IpSb,\r
1065 TRUE,\r
1066 NewAddress->PrefixLength,\r
1067 &NewAddress->Address\r
1068 );\r
1069 if (PrefixEntry == NULL) {\r
1070 Ip6CreatePrefixListEntry (\r
1071 IpSb,\r
1072 TRUE,\r
1073 (UINT32) IP6_INFINIT_LIFETIME,\r
1074 (UINT32) IP6_INFINIT_LIFETIME,\r
1075 NewAddress->PrefixLength,\r
1076 &NewAddress->Address\r
1077 );\r
1078 }\r
1079\r
1080 CurrentAddrInfo->IsAnycast = NewAddress->IsAnycast;\r
1081 //\r
1082 // Artificially mark this address passed DAD be'coz it is already in use.\r
1083 //\r
1084 Ip6ManualAddrDadCallback (TRUE, &NewAddress->Address, Instance);\r
1085 } else {\r
1086 //\r
1087 // A new address.\r
1088 //\r
1089 IsUpdated = TRUE;\r
1090\r
1091 //\r
1092 // Set the new address, this will trigger DAD and activate the address if\r
1093 // DAD succeeds.\r
1094 //\r
1095 Ip6SetAddress (\r
1096 IpSb->DefaultInterface,\r
1097 &NewAddress->Address,\r
1098 NewAddress->IsAnycast,\r
1099 NewAddress->PrefixLength,\r
1100 (UINT32) IP6_INFINIT_LIFETIME,\r
1101 (UINT32) IP6_INFINIT_LIFETIME,\r
1102 Ip6ManualAddrDadCallback,\r
1103 Instance\r
1104 );\r
1105 }\r
1106 }\r
1107\r
1108 //\r
1109 // Check the CurrentSourceList, it now contains those addresses currently in\r
1110 // use and will be removed.\r
1111 //\r
1112 IpIf = IpSb->DefaultInterface;\r
1113\r
1114 while (!IsListEmpty (&CurrentSourceList)) {\r
1115 IsUpdated = TRUE;\r
1116\r
1117 CurrentAddrInfo = NET_LIST_HEAD (&CurrentSourceList, IP6_ADDRESS_INFO, Link);\r
1118\r
1119 //\r
1120 // This local address is going to be removed, the IP instances that are\r
1121 // currently using it will be destroyed.\r
1122 //\r
1123 Ip6RemoveAddr (\r
1124 IpSb,\r
1125 &IpIf->AddressList,\r
1126 &IpIf->AddressCount,\r
1127 &CurrentAddrInfo->Address,\r
1128 128\r
1129 );\r
1130\r
1131 //\r
1132 // Remove the on-link prefix table, the route entry will be removed\r
1133 // implicitly.\r
1134 //\r
1135 PrefixEntry = Ip6FindPrefixListEntry (\r
1136 IpSb,\r
1137 TRUE,\r
1138 CurrentAddrInfo->PrefixLength,\r
1139 &CurrentAddrInfo->Address\r
1140 );\r
1141 if (PrefixEntry != NULL) {\r
1142 Ip6DestroyPrefixListEntry (IpSb, PrefixEntry, TRUE, FALSE);\r
1143 }\r
1144\r
1145 RemoveEntryList (&CurrentAddrInfo->Link);\r
1146 FreePool (CurrentAddrInfo);\r
1147 }\r
1148\r
1149 if (IsUpdated) {\r
1150 if (DataItem->Status == EFI_NOT_READY) {\r
1151 //\r
1152 // If DAD is disabled on this interface, the configuration process is\r
1153 // actually synchronous, and the data item's status will be changed to\r
1154 // the final status before we reach here, just check it.\r
1155 //\r
1156 Status = EFI_NOT_READY;\r
1157 } else {\r
1158 Status = EFI_SUCCESS;\r
1159 }\r
1160 } else {\r
1161 //\r
1162 // No update is taken, reset the status to success and return EFI_ABORTED.\r
1163 //\r
1164 DataItem->Status = EFI_SUCCESS;\r
1165 Status = EFI_ABORTED;\r
1166 }\r
1167\r
1168 return Status;\r
1169}\r
1170\r
1171/**\r
1172 The work function for EfiIp6ConfigSetData() to set the gateway addresses manually\r
1173 for the EFI IPv6 network stack that is running on the communication device that\r
1174 this EFI IPv6 Configuration Protocol manages. It is not configurable when the policy is\r
1175 Ip6ConfigPolicyAutomatic. The gateway addresses must be unicast IPv6 addresses.\r
1176\r
1177 @param[in] Instance The pointer to the IP6 config instance data.\r
1178 @param[in] DataSize The size of the buffer pointed to by Data in bytes.\r
1179 @param[in] Data The data buffer to set. This points to an array of\r
1180 EFI_IPv6_ADDRESS instances.\r
1181\r
1182 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
1183 @retval EFI_WRITE_PROTECTED The specified configuration data cannot be set\r
1184 under the current policy.\r
1185 @retval EFI_INVALID_PARAMETER One or more fields in Data is invalid.\r
1186 @retval EFI_OUT_OF_RESOURCES Failed to allocate resource to complete the operation.\r
1187 @retval EFI_ABORTED The manual gateway addresses to be set equal the\r
1188 current configuration.\r
1189 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
1190 network stack was set.\r
1191\r
1192**/\r
1193EFI_STATUS\r
1194Ip6ConfigSetGateway (\r
1195 IN IP6_CONFIG_INSTANCE *Instance,\r
1196 IN UINTN DataSize,\r
1197 IN VOID *Data\r
1198 )\r
1199{\r
1200 UINTN Index1;\r
1201 UINTN Index2;\r
1202 EFI_IPv6_ADDRESS *OldGateway;\r
1203 EFI_IPv6_ADDRESS *NewGateway;\r
1204 UINTN OldGatewayCount;\r
1205 UINTN NewGatewayCount;\r
1206 IP6_CONFIG_DATA_ITEM *Item;\r
1207 BOOLEAN OneRemoved;\r
1208 BOOLEAN OneAdded;\r
1209 IP6_SERVICE *IpSb;\r
1210 IP6_DEFAULT_ROUTER *DefaultRouter;\r
1211 VOID *Tmp;\r
1212\r
1213 if ((DataSize % sizeof (EFI_IPv6_ADDRESS) != 0) || (DataSize == 0)) {\r
1214 return EFI_BAD_BUFFER_SIZE;\r
1215 }\r
1216\r
1217 if (Instance->Policy != Ip6ConfigPolicyManual) {\r
1218 return EFI_WRITE_PROTECTED;\r
1219 }\r
1220\r
1221 NewGateway = (EFI_IPv6_ADDRESS *) Data;\r
1222 NewGatewayCount = DataSize / sizeof (EFI_IPv6_ADDRESS);\r
1223 for (Index1 = 0; Index1 < NewGatewayCount; Index1++) {\r
1224\r
1225 if (!NetIp6IsValidUnicast (NewGateway + Index1)) {\r
1226\r
1227 return EFI_INVALID_PARAMETER;\r
1228 }\r
1229\r
1230 for (Index2 = Index1 + 1; Index2 < NewGatewayCount; Index2++) {\r
1231 if (EFI_IP6_EQUAL (NewGateway + Index1, NewGateway + Index2)) {\r
1232 return EFI_INVALID_PARAMETER;\r
1233 }\r
1234 }\r
1235 }\r
1236\r
1237 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
1238 Item = &Instance->DataItem[Ip6ConfigDataTypeGateway];\r
1239 OldGateway = Item->Data.Gateway;\r
1240 OldGatewayCount = Item->DataSize / sizeof (EFI_IPv6_ADDRESS);\r
1241 OneRemoved = FALSE;\r
1242 OneAdded = FALSE;\r
1243\r
1244 if (NewGatewayCount != OldGatewayCount) {\r
1245 Tmp = AllocatePool (DataSize);\r
1246 if (Tmp == NULL) {\r
1247 return EFI_OUT_OF_RESOURCES;\r
1248 }\r
1249 } else {\r
1250 Tmp = NULL;\r
1251 }\r
1252\r
1253 for (Index1 = 0; Index1 < OldGatewayCount; Index1++) {\r
1254 //\r
1255 // Find the gateways that are no long in the new setting and remove them.\r
1256 //\r
1257 for (Index2 = 0; Index2 < NewGatewayCount; Index2++) {\r
1258 if (EFI_IP6_EQUAL (OldGateway + Index1, NewGateway + Index2)) {\r
1259 OneRemoved = TRUE;\r
1260 break;\r
1261 }\r
1262 }\r
1263\r
1264 if (Index2 == NewGatewayCount) {\r
1265 //\r
1266 // Remove this default router.\r
1267 //\r
1268 DefaultRouter = Ip6FindDefaultRouter (IpSb, OldGateway + Index1);\r
1269 if (DefaultRouter != NULL) {\r
1270 Ip6DestroyDefaultRouter (IpSb, DefaultRouter);\r
1271 }\r
1272 }\r
1273 }\r
1274\r
1275 for (Index1 = 0; Index1 < NewGatewayCount; Index1++) {\r
1276\r
1277 DefaultRouter = Ip6FindDefaultRouter (IpSb, NewGateway + Index1);\r
1278 if (DefaultRouter == NULL) {\r
1279 Ip6CreateDefaultRouter (IpSb, NewGateway + Index1, IP6_INF_ROUTER_LIFETIME);\r
1280 OneAdded = TRUE;\r
1281 }\r
1282 }\r
1283\r
1284 if (!OneRemoved && !OneAdded) {\r
1285 Item->Status = EFI_SUCCESS;\r
1286 return EFI_ABORTED;\r
1287 } else {\r
1288\r
1289 if (Tmp != NULL) {\r
1290 if (Item->Data.Ptr != NULL) {\r
1291 FreePool (Item->Data.Ptr);\r
1292 }\r
1293 Item->Data.Ptr = Tmp;\r
1294 }\r
1295\r
1296 CopyMem (Item->Data.Ptr, Data, DataSize);\r
1297 Item->DataSize = DataSize;\r
1298 Item->Status = EFI_SUCCESS;\r
1299 return EFI_SUCCESS;\r
1300 }\r
1301}\r
1302\r
1303/**\r
1304 The work function for EfiIp6ConfigSetData() to set the DNS server list for the\r
1305 EFI IPv6 network stack running on the communication device that this EFI IPv6\r
1306 Configuration Protocol manages. It is not configurable when the policy is\r
1307 Ip6ConfigPolicyAutomatic. The DNS server addresses must be unicast IPv6 addresses.\r
1308\r
1309 @param[in] Instance The pointer to the IP6 config instance data.\r
1310 @param[in] DataSize The size of the buffer pointed to by Data in bytes.\r
1311 @param[in] Data The data buffer to set, points to an array of\r
1312 EFI_IPv6_ADDRESS instances.\r
1313\r
1314 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
1315 @retval EFI_WRITE_PROTECTED The specified configuration data cannot be set\r
1316 under the current policy.\r
1317 @retval EFI_INVALID_PARAMETER One or more fields in Data is invalid.\r
1318 @retval EFI_OUT_OF_RESOURCES Failed to allocate resources to complete the operation.\r
1319 @retval EFI_ABORTED The DNS server addresses to be set equal the current\r
1320 configuration.\r
1321 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
1322 network stack was set.\r
1323\r
1324**/\r
1325EFI_STATUS\r
1326Ip6ConfigSetDnsServer (\r
1327 IN IP6_CONFIG_INSTANCE *Instance,\r
1328 IN UINTN DataSize,\r
1329 IN VOID *Data\r
1330 )\r
1331{\r
1332 UINTN OldIndex;\r
1333 UINTN NewIndex;\r
a3bcde70
HT
1334 EFI_IPv6_ADDRESS *OldDns;\r
1335 EFI_IPv6_ADDRESS *NewDns;\r
1336 UINTN OldDnsCount;\r
1337 UINTN NewDnsCount;\r
1338 IP6_CONFIG_DATA_ITEM *Item;\r
1339 BOOLEAN OneAdded;\r
1340 VOID *Tmp;\r
1341\r
1342 if ((DataSize % sizeof (EFI_IPv6_ADDRESS) != 0) || (DataSize == 0)) {\r
1343 return EFI_BAD_BUFFER_SIZE;\r
1344 }\r
1345\r
1346 if (Instance->Policy != Ip6ConfigPolicyManual) {\r
1347 return EFI_WRITE_PROTECTED;\r
1348 }\r
1349\r
1350 Item = &Instance->DataItem[Ip6ConfigDataTypeDnsServer];\r
1351 NewDns = (EFI_IPv6_ADDRESS *) Data;\r
1352 OldDns = Item->Data.DnsServers;\r
1353 NewDnsCount = DataSize / sizeof (EFI_IPv6_ADDRESS);\r
1354 OldDnsCount = Item->DataSize / sizeof (EFI_IPv6_ADDRESS);\r
1355 OneAdded = FALSE;\r
1356\r
1357 if (NewDnsCount != OldDnsCount) {\r
1358 Tmp = AllocatePool (DataSize);\r
1359 if (Tmp == NULL) {\r
1360 return EFI_OUT_OF_RESOURCES;\r
1361 }\r
1362 } else {\r
1363 Tmp = NULL;\r
1364 }\r
1365\r
1366 for (NewIndex = 0; NewIndex < NewDnsCount; NewIndex++) {\r
1367\r
1368 if (!NetIp6IsValidUnicast (NewDns + NewIndex)) {\r
1369 //\r
1370 // The dns server address must be unicast.\r
1371 //\r
ab50ab6e
JW
1372 if (Tmp != NULL) {\r
1373 FreePool (Tmp);\r
1374 }\r
a3bcde70
HT
1375 return EFI_INVALID_PARAMETER;\r
1376 }\r
1377\r
a3bcde70
HT
1378 if (OneAdded) {\r
1379 //\r
1380 // If any address in the new setting is not in the old settings, skip the\r
1381 // comparision below.\r
1382 //\r
1383 continue;\r
1384 }\r
1385\r
1386 for (OldIndex = 0; OldIndex < OldDnsCount; OldIndex++) {\r
1387 if (EFI_IP6_EQUAL (NewDns + NewIndex, OldDns + OldIndex)) {\r
1388 //\r
1389 // If found break out.\r
1390 //\r
1391 break;\r
1392 }\r
1393 }\r
1394\r
1395 if (OldIndex == OldDnsCount) {\r
1396 OneAdded = TRUE;\r
1397 }\r
1398 }\r
1399\r
1400 if (!OneAdded && (DataSize == Item->DataSize)) {\r
1401 //\r
1402 // No new item is added and the size is the same.\r
1403 //\r
1404 Item->Status = EFI_SUCCESS;\r
1405 return EFI_ABORTED;\r
1406 } else {\r
1407 if (Tmp != NULL) {\r
1408 if (Item->Data.Ptr != NULL) {\r
1409 FreePool (Item->Data.Ptr);\r
1410 }\r
1411 Item->Data.Ptr = Tmp;\r
1412 }\r
1413\r
1414 CopyMem (Item->Data.Ptr, Data, DataSize);\r
1415 Item->DataSize = DataSize;\r
1416 Item->Status = EFI_SUCCESS;\r
1417 return EFI_SUCCESS;\r
1418 }\r
1419}\r
1420\r
1421/**\r
1422 Generate the operational state of the interface this IP6 config instance manages\r
1423 and output in EFI_IP6_CONFIG_INTERFACE_INFO.\r
1424\r
1425 @param[in] IpSb The pointer to the IP6 service binding instance.\r
1426 @param[out] IfInfo The pointer to the IP6 configuration interface information structure.\r
1427\r
1428**/\r
1429VOID\r
1430Ip6ConfigInitIfInfo (\r
1431 IN IP6_SERVICE *IpSb,\r
1432 OUT EFI_IP6_CONFIG_INTERFACE_INFO *IfInfo\r
1433 )\r
1434{\r
80e63e84
ZL
1435 UnicodeSPrint (\r
1436 IfInfo->Name,\r
1437 sizeof (IfInfo->Name),\r
625b39ce 1438 L"eth%d",\r
80e63e84
ZL
1439 IpSb->Ip6ConfigInstance.IfIndex\r
1440 );\r
a3bcde70
HT
1441\r
1442 IfInfo->IfType = IpSb->SnpMode.IfType;\r
1443 IfInfo->HwAddressSize = IpSb->SnpMode.HwAddressSize;\r
1444 CopyMem (&IfInfo->HwAddress, &IpSb->SnpMode.CurrentAddress, IfInfo->HwAddressSize);\r
1445}\r
1446\r
1447/**\r
1448 Parse DHCPv6 reply packet to get the DNS server list.\r
1449 It is the work function for Ip6ConfigOnDhcp6Reply and Ip6ConfigOnDhcp6Event.\r
1450\r
1451 @param[in] Dhcp6 The pointer to the EFI_DHCP6_PROTOCOL instance.\r
1452 @param[in, out] Instance The pointer to the IP6 configuration instance data.\r
1453 @param[in] Reply The pointer to the DHCPv6 reply packet.\r
1454\r
1455 @retval EFI_SUCCESS The DNS server address was retrieved from the reply packet.\r
1456 @retval EFI_NOT_READY The reply packet does not contain the DNS server option, or\r
1457 the DNS server address is not valid.\r
1458\r
1459**/\r
1460EFI_STATUS\r
1461Ip6ConfigParseDhcpReply (\r
1462 IN EFI_DHCP6_PROTOCOL *Dhcp6,\r
1463 IN OUT IP6_CONFIG_INSTANCE *Instance,\r
1464 IN EFI_DHCP6_PACKET *Reply\r
1465 )\r
1466{\r
1467 EFI_STATUS Status;\r
1468 UINT32 OptCount;\r
1469 EFI_DHCP6_PACKET_OPTION **OptList;\r
1470 UINT16 OpCode;\r
1471 UINT16 Length;\r
1472 UINTN Index;\r
1473 UINTN Index2;\r
1474 EFI_IPv6_ADDRESS *DnsServer;\r
1475 IP6_CONFIG_DATA_ITEM *Item;\r
1476\r
1477 //\r
1478 // A DHCPv6 reply packet is received as the response to our InfoRequest\r
1479 // packet.\r
1480 //\r
1481 OptCount = 0;\r
1482 Status = Dhcp6->Parse (Dhcp6, Reply, &OptCount, NULL);\r
1483 if (Status != EFI_BUFFER_TOO_SMALL) {\r
1484 return EFI_NOT_READY;\r
1485 }\r
1486\r
1487 OptList = AllocatePool (OptCount * sizeof (EFI_DHCP6_PACKET_OPTION *));\r
1488 if (OptList == NULL) {\r
1489 return EFI_NOT_READY;\r
1490 }\r
1491\r
1492 Status = Dhcp6->Parse (Dhcp6, Reply, &OptCount, OptList);\r
1493 if (EFI_ERROR (Status)) {\r
1494 Status = EFI_NOT_READY;\r
1495 goto ON_EXIT;\r
1496 }\r
1497\r
1498 Status = EFI_SUCCESS;\r
1499\r
1500 for (Index = 0; Index < OptCount; Index++) {\r
1501 //\r
1502 // Go through all the options to check the ones we are interested in.\r
1503 // The OpCode and Length are in network byte-order and may not be naturally\r
1504 // aligned.\r
1505 //\r
1506 CopyMem (&OpCode, &OptList[Index]->OpCode, sizeof (OpCode));\r
1507 OpCode = NTOHS (OpCode);\r
1508\r
142c00c3 1509 if (OpCode == DHCP6_OPT_DNS_SERVERS) {\r
a3bcde70
HT
1510 CopyMem (&Length, &OptList[Index]->OpLen, sizeof (Length));\r
1511 Length = NTOHS (Length);\r
1512\r
1513 if ((Length == 0) || ((Length % sizeof (EFI_IPv6_ADDRESS)) != 0)) {\r
1514 //\r
1515 // The length should be a multiple of 16 bytes.\r
1516 //\r
1517 Status = EFI_NOT_READY;\r
1518 break;\r
1519 }\r
1520\r
1521 //\r
1522 // Validate the DnsServers: whether they are unicast addresses.\r
1523 //\r
1524 DnsServer = (EFI_IPv6_ADDRESS *) OptList[Index]->Data;\r
1525 for (Index2 = 0; Index2 < Length / sizeof (EFI_IPv6_ADDRESS); Index2++) {\r
1526 if (!NetIp6IsValidUnicast (DnsServer)) {\r
1527 Status = EFI_NOT_READY;\r
1528 goto ON_EXIT;\r
1529 }\r
1530\r
1531 DnsServer++;\r
1532 }\r
1533\r
1534 Item = &Instance->DataItem[Ip6ConfigDataTypeDnsServer];\r
1535\r
1536 if (Item->DataSize != Length) {\r
1537 if (Item->Data.Ptr != NULL) {\r
1538 FreePool (Item->Data.Ptr);\r
1539 }\r
1540\r
1541 Item->Data.Ptr = AllocatePool (Length);\r
1542 ASSERT (Item->Data.Ptr != NULL);\r
1543 }\r
1544\r
1545 CopyMem (Item->Data.Ptr, OptList[Index]->Data, Length);\r
1546 Item->DataSize = Length;\r
1547 Item->Status = EFI_SUCCESS;\r
1548\r
1549 //\r
1550 // Signal the waiting events.\r
1551 //\r
1552 NetMapIterate (&Item->EventMap, Ip6ConfigSignalEvent, NULL);\r
1553\r
1554 break;\r
1555 }\r
1556 }\r
1557\r
1558ON_EXIT:\r
1559\r
1560 FreePool (OptList);\r
1561 return Status;\r
1562}\r
1563\r
1564/**\r
1565 The callback function for Ip6SetAddr. The prototype is defined\r
1566 as IP6_DAD_CALLBACK. It is called after Duplicate Address Detection is performed\r
1567 on the tentative address by DHCPv6 in Ip6ConfigOnDhcp6Event().\r
1568\r
1569 @param[in] IsDadPassed If TRUE, Duplicate Address Detection passes.\r
1570 @param[in] TargetAddress The tentative IPv6 address to be checked.\r
1571 @param[in] Context Pointer to the IP6 configuration instance data.\r
1572\r
1573**/\r
1574VOID\r
1575Ip6ConfigSetStatefulAddrCallback (\r
1576 IN BOOLEAN IsDadPassed,\r
1577 IN EFI_IPv6_ADDRESS *TargetAddress,\r
1578 IN VOID *Context\r
1579 )\r
1580{\r
1581 IP6_CONFIG_INSTANCE *Instance;\r
1582\r
1583 Instance = (IP6_CONFIG_INSTANCE *) Context;\r
1584 NET_CHECK_SIGNATURE (Instance, IP6_CONFIG_INSTANCE_SIGNATURE);\r
1585\r
1586 //\r
1587 // We should record the addresses that fail the DAD, and DECLINE them.\r
1588 //\r
1589 if (IsDadPassed) {\r
1590 //\r
1591 // Decrease the count, no interests in those passed DAD.\r
1592 //\r
1593 if (Instance->FailedIaAddressCount > 0 ) {\r
1594 Instance->FailedIaAddressCount--;\r
1595 }\r
1596 } else {\r
1597 //\r
1598 // Record it.\r
1599 //\r
1600 IP6_COPY_ADDRESS (Instance->DeclineAddress + Instance->DeclineAddressCount, TargetAddress);\r
1601 Instance->DeclineAddressCount++;\r
1602 }\r
1603\r
1604 if (Instance->FailedIaAddressCount == Instance->DeclineAddressCount) {\r
1605 //\r
1606 // The checking on all addresses are finished.\r
1607 //\r
1608 if (Instance->DeclineAddressCount != 0) {\r
1609 //\r
1610 // Decline those duplicates.\r
1611 //\r
ae97201c
FS
1612 if (Instance->Dhcp6 != NULL) {\r
1613 Instance->Dhcp6->Decline (\r
1614 Instance->Dhcp6,\r
1615 Instance->DeclineAddressCount,\r
1616 Instance->DeclineAddress\r
1617 );\r
1618 }\r
a3bcde70
HT
1619 }\r
1620\r
1621 if (Instance->DeclineAddress != NULL) {\r
1622 FreePool (Instance->DeclineAddress);\r
1623 }\r
1624 Instance->DeclineAddress = NULL;\r
1625 Instance->DeclineAddressCount = 0;\r
1626 }\r
1627}\r
1628\r
1629/**\r
1630 The event handle routine when DHCPv6 process is finished or is updated.\r
1631\r
1632 @param[in] Event Not used.\r
1633 @param[in] Context The pointer to the IP6 configuration instance data.\r
1634\r
1635**/\r
1636VOID\r
1637EFIAPI\r
1638Ip6ConfigOnDhcp6Event (\r
1639 IN EFI_EVENT Event,\r
1640 IN VOID *Context\r
1641 )\r
1642{\r
1643 IP6_CONFIG_INSTANCE *Instance;\r
1644 EFI_DHCP6_PROTOCOL *Dhcp6;\r
1645 EFI_STATUS Status;\r
1646 EFI_DHCP6_MODE_DATA Dhcp6ModeData;\r
1647 EFI_DHCP6_IA *Ia;\r
1648 EFI_DHCP6_IA_ADDRESS *IaAddr;\r
1649 UINT32 Index;\r
1650 IP6_SERVICE *IpSb;\r
1651 IP6_ADDRESS_INFO *AddrInfo;\r
1652 IP6_INTERFACE *IpIf;\r
1653\r
1654 Instance = (IP6_CONFIG_INSTANCE *) Context;\r
1655\r
1656 if ((Instance->Policy != Ip6ConfigPolicyAutomatic) || Instance->OtherInfoOnly) {\r
1657 //\r
1658 // IPv6 is not operating in the automatic policy now or\r
1659 // the DHCPv6 information request message exchange is aborted.\r
1660 //\r
1661 return ;\r
1662 }\r
1663\r
1664 //\r
1665 // The stateful address autoconfiguration is done or updated.\r
1666 //\r
1667 Dhcp6 = Instance->Dhcp6;\r
1668\r
1669 Status = Dhcp6->GetModeData (Dhcp6, &Dhcp6ModeData, NULL);\r
1670 if (EFI_ERROR (Status)) {\r
1671 return ;\r
1672 }\r
1673\r
1674 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
1675 IpIf = IpSb->DefaultInterface;\r
1676 Ia = Dhcp6ModeData.Ia;\r
1677 IaAddr = Ia->IaAddress;\r
1678\r
1679 if (Instance->DeclineAddress != NULL) {\r
1680 FreePool (Instance->DeclineAddress);\r
1681 }\r
1682\r
1683 Instance->DeclineAddress = (EFI_IPv6_ADDRESS *) AllocatePool (Ia->IaAddressCount * sizeof (EFI_IPv6_ADDRESS));\r
1684 if (Instance->DeclineAddress == NULL) {\r
1685 goto ON_EXIT;\r
1686 }\r
1687\r
1688 Instance->FailedIaAddressCount = Ia->IaAddressCount;\r
1689 Instance->DeclineAddressCount = 0;\r
1690\r
1691 for (Index = 0; Index < Ia->IaAddressCount; Index++, IaAddr++) {\r
1692 if (Ia->IaAddress[Index].ValidLifetime != 0 && Ia->State == Dhcp6Bound) {\r
1693 //\r
1694 // Set this address, either it's a new address or with updated lifetimes.\r
1695 // An appropriate prefix length will be set.\r
1696 //\r
1697 Ip6SetAddress (\r
1698 IpIf,\r
1699 &IaAddr->IpAddress,\r
1700 FALSE,\r
1701 0,\r
1702 IaAddr->ValidLifetime,\r
1703 IaAddr->PreferredLifetime,\r
1704 Ip6ConfigSetStatefulAddrCallback,\r
1705 Instance\r
1706 );\r
1707 } else {\r
1708 //\r
1709 // discard this address, artificially decrease the count as if this address\r
1710 // passed DAD.\r
1711 //\r
1712 if (Ip6IsOneOfSetAddress (IpSb, &IaAddr->IpAddress, NULL, &AddrInfo)) {\r
1713 ASSERT (AddrInfo != NULL);\r
1714 Ip6RemoveAddr (\r
1715 IpSb,\r
1716 &IpIf->AddressList,\r
1717 &IpIf->AddressCount,\r
1718 &AddrInfo->Address,\r
1719 AddrInfo->PrefixLength\r
1720 );\r
1721 }\r
1722\r
1723 if (Instance->FailedIaAddressCount > 0) {\r
1724 Instance->FailedIaAddressCount--;\r
1725 }\r
1726 }\r
1727 }\r
1728\r
1729 //\r
1730 // Parse the Reply packet to get the options we need.\r
1731 //\r
1732 if (Dhcp6ModeData.Ia->ReplyPacket != NULL) {\r
1733 Ip6ConfigParseDhcpReply (Dhcp6, Instance, Dhcp6ModeData.Ia->ReplyPacket);\r
1734 }\r
1735\r
1736ON_EXIT:\r
1737\r
1738 FreePool (Dhcp6ModeData.ClientId);\r
1739 FreePool (Dhcp6ModeData.Ia);\r
1740}\r
1741\r
1742/**\r
1743 The event process routine when the DHCPv6 server is answered with a reply packet\r
1744 for an information request.\r
1745\r
1746 @param[in] This Points to the EFI_DHCP6_PROTOCOL.\r
1747 @param[in] Context The pointer to the IP6 configuration instance data.\r
1748 @param[in] Packet The DHCPv6 reply packet.\r
1749\r
1750 @retval EFI_SUCCESS The DNS server address was retrieved from the reply packet.\r
1751 @retval EFI_NOT_READY The reply packet does not contain the DNS server option, or\r
1752 the DNS server address is not valid.\r
1753\r
1754**/\r
1755EFI_STATUS\r
1756EFIAPI\r
1757Ip6ConfigOnDhcp6Reply (\r
1758 IN EFI_DHCP6_PROTOCOL *This,\r
1759 IN VOID *Context,\r
1760 IN EFI_DHCP6_PACKET *Packet\r
1761 )\r
1762{\r
1763 return Ip6ConfigParseDhcpReply (This, (IP6_CONFIG_INSTANCE *) Context, Packet);\r
1764}\r
1765\r
1766/**\r
1767 The event process routine when the DHCPv6 service binding protocol is installed\r
1768 in the system.\r
1769\r
1770 @param[in] Event Not used.\r
1771 @param[in] Context The pointer to the IP6 config instance data.\r
1772\r
1773**/\r
1774VOID\r
1775EFIAPI\r
1776Ip6ConfigOnDhcp6SbInstalled (\r
1777 IN EFI_EVENT Event,\r
1778 IN VOID *Context\r
1779 )\r
1780{\r
1781 IP6_CONFIG_INSTANCE *Instance;\r
1782\r
1783 Instance = (IP6_CONFIG_INSTANCE *) Context;\r
1784\r
1785 if ((Instance->Dhcp6Handle != NULL) || (Instance->Policy != Ip6ConfigPolicyAutomatic)) {\r
1786 //\r
1787 // The DHCP6 child is already created or the policy is no longer AUTOMATIC.\r
1788 //\r
1789 return ;\r
1790 }\r
1791\r
1792 Ip6ConfigStartStatefulAutoConfig (Instance, Instance->OtherInfoOnly);\r
1793}\r
1794\r
1795/**\r
1796 Set the configuration for the EFI IPv6 network stack running on the communication\r
1797 device this EFI IPv6 Configuration Protocol instance manages.\r
1798\r
1799 This function is used to set the configuration data of type DataType for the EFI\r
1800 IPv6 network stack that is running on the communication device that this EFI IPv6\r
1801 Configuration Protocol instance manages.\r
1802\r
1803 DataSize is used to calculate the count of structure instances in the Data for\r
1804 a DataType in which multiple structure instances are allowed.\r
1805\r
1806 This function is always non-blocking. When setting some type of configuration data,\r
1807 an asynchronous process is invoked to check the correctness of the data, such as\r
1808 performing Duplicate Address Detection on the manually set local IPv6 addresses.\r
1809 EFI_NOT_READY is returned immediately to indicate that such an asynchronous process\r
1810 is invoked, and the process is not finished yet. The caller wanting to get the result\r
1811 of the asynchronous process is required to call RegisterDataNotify() to register an\r
1812 event on the specified configuration data. Once the event is signaled, the caller\r
1813 can call GetData() to obtain the configuration data and know the result.\r
1814 For other types of configuration data that do not require an asynchronous configuration\r
1815 process, the result of the operation is immediately returned.\r
1816\r
1817 @param[in] This The pointer to the EFI_IP6_CONFIG_PROTOCOL instance.\r
1818 @param[in] DataType The type of data to set.\r
1819 @param[in] DataSize Size of the buffer pointed to by Data in bytes.\r
1820 @param[in] Data The data buffer to set. The type of the data buffer is\r
1821 associated with the DataType.\r
1822\r
1823 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
1824 network stack was set successfully.\r
1825 @retval EFI_INVALID_PARAMETER One or more of the following are TRUE:\r
1826 - This is NULL.\r
1827 - Data is NULL.\r
1828 - One or more fields in Data do not match the requirement of the\r
1829 data type indicated by DataType.\r
1830 @retval EFI_WRITE_PROTECTED The specified configuration data is read-only or the specified\r
1831 configuration data cannot be set under the current policy.\r
1832 @retval EFI_ACCESS_DENIED Another set operation on the specified configuration\r
1833 data is already in process.\r
1834 @retval EFI_NOT_READY An asynchronous process was invoked to set the specified\r
1835 configuration data, and the process is not finished yet.\r
1836 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type\r
1837 indicated by DataType.\r
1838 @retval EFI_UNSUPPORTED This DataType is not supported.\r
1839 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
1840 @retval EFI_DEVICE_ERROR An unexpected system error or network error occurred.\r
1841\r
1842**/\r
1843EFI_STATUS\r
1844EFIAPI\r
1845EfiIp6ConfigSetData (\r
1846 IN EFI_IP6_CONFIG_PROTOCOL *This,\r
1847 IN EFI_IP6_CONFIG_DATA_TYPE DataType,\r
1848 IN UINTN DataSize,\r
1849 IN VOID *Data\r
1850 )\r
1851{\r
1852 EFI_TPL OldTpl;\r
1853 EFI_STATUS Status;\r
1854 IP6_CONFIG_INSTANCE *Instance;\r
1855 IP6_SERVICE *IpSb;\r
1856\r
1857 if ((This == NULL) || (Data == NULL)) {\r
1858 return EFI_INVALID_PARAMETER;\r
1859 }\r
1860\r
1861 if (DataType >= Ip6ConfigDataTypeMaximum) {\r
1862 return EFI_UNSUPPORTED;\r
1863 }\r
1864\r
1865 Instance = IP6_CONFIG_INSTANCE_FROM_PROTOCOL (This);\r
1866 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
1867 NET_CHECK_SIGNATURE (IpSb, IP6_SERVICE_SIGNATURE);\r
1868\r
1869 if (IpSb->LinkLocalDadFail) {\r
1870 return EFI_DEVICE_ERROR;\r
1871 }\r
1872\r
1873 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
1874\r
1875 Status = Instance->DataItem[DataType].Status;\r
1876 if (Status != EFI_NOT_READY) {\r
1877\r
1878 if (Instance->DataItem[DataType].SetData == NULL) {\r
1879 //\r
1880 // This type of data is readonly.\r
1881 //\r
1882 Status = EFI_WRITE_PROTECTED;\r
1883 } else {\r
1884\r
1885 Status = Instance->DataItem[DataType].SetData (Instance, DataSize, Data);\r
1886 if (!EFI_ERROR (Status)) {\r
1887 //\r
1888 // Fire up the events registered with this type of data.\r
1889 //\r
1890 NetMapIterate (&Instance->DataItem[DataType].EventMap, Ip6ConfigSignalEvent, NULL);\r
1891 Ip6ConfigWriteConfigData (IpSb->MacString, Instance);\r
1892 } else if (Status == EFI_ABORTED) {\r
1893 //\r
1894 // The SetData is aborted because the data to set is the same with\r
1895 // the one maintained.\r
1896 //\r
1897 Status = EFI_SUCCESS;\r
1898 NetMapIterate (&Instance->DataItem[DataType].EventMap, Ip6ConfigSignalEvent, NULL);\r
1899 }\r
1900 }\r
1901 } else {\r
1902 //\r
1903 // Another asynchornous process is on the way.\r
1904 //\r
1905 Status = EFI_ACCESS_DENIED;\r
1906 }\r
1907\r
1908 gBS->RestoreTPL (OldTpl);\r
1909\r
1910 return Status;\r
1911}\r
1912\r
1913/**\r
1914 Get the configuration data for the EFI IPv6 network stack running on the communication\r
1915 device that this EFI IPv6 Configuration Protocol instance manages.\r
1916\r
1917 This function returns the configuration data of type DataType for the EFI IPv6 network\r
1918 stack running on the communication device that this EFI IPv6 Configuration Protocol instance\r
1919 manages.\r
1920\r
1921 The caller is responsible for allocating the buffer used to return the specified\r
1922 configuration data. The required size will be returned to the caller if the size of\r
1923 the buffer is too small.\r
1924\r
1925 EFI_NOT_READY is returned if the specified configuration data is not ready due to an\r
1926 asynchronous configuration process already in progress. The caller can call RegisterDataNotify()\r
1927 to register an event on the specified configuration data. Once the asynchronous configuration\r
1928 process is finished, the event will be signaled, and a subsequent GetData() call will return\r
1929 the specified configuration data.\r
1930\r
1931 @param[in] This Pointer to the EFI_IP6_CONFIG_PROTOCOL instance.\r
1932 @param[in] DataType The type of data to get.\r
1933 @param[in, out] DataSize On input, in bytes, the size of Data. On output, in bytes, the\r
1934 size of buffer required to store the specified configuration data.\r
1935 @param[in] Data The data buffer in which the configuration data is returned. The\r
1936 type of the data buffer is associated with the DataType.\r
1937 This is an optional parameter that may be NULL.\r
1938\r
1939 @retval EFI_SUCCESS The specified configuration data was obtained successfully.\r
1940 @retval EFI_INVALID_PARAMETER One or more of the followings are TRUE:\r
1941 - This is NULL.\r
1942 - DataSize is NULL.\r
1943 - Data is NULL if *DataSize is not zero.\r
1944 @retval EFI_BUFFER_TOO_SMALL The size of Data is too small for the specified configuration data,\r
1945 and the required size is returned in DataSize.\r
1946 @retval EFI_NOT_READY The specified configuration data is not ready due to an\r
1947 asynchronous configuration process already in progress.\r
1948 @retval EFI_NOT_FOUND The specified configuration data is not found.\r
1949\r
1950**/\r
1951EFI_STATUS\r
1952EFIAPI\r
1953EfiIp6ConfigGetData (\r
1954 IN EFI_IP6_CONFIG_PROTOCOL *This,\r
1955 IN EFI_IP6_CONFIG_DATA_TYPE DataType,\r
1956 IN OUT UINTN *DataSize,\r
1957 IN VOID *Data OPTIONAL\r
1958 )\r
1959{\r
1960 EFI_TPL OldTpl;\r
1961 EFI_STATUS Status;\r
1962 IP6_CONFIG_INSTANCE *Instance;\r
1963 IP6_CONFIG_DATA_ITEM *DataItem;\r
1964\r
1965 if ((This == NULL) || (DataSize == NULL) || ((*DataSize != 0) && (Data == NULL))) {\r
1966 return EFI_INVALID_PARAMETER;\r
1967 }\r
1968\r
1969 if (DataType >= Ip6ConfigDataTypeMaximum) {\r
1970 return EFI_NOT_FOUND;\r
1971 }\r
1972\r
1973 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
1974\r
1975 Instance = IP6_CONFIG_INSTANCE_FROM_PROTOCOL (This);\r
1976 DataItem = &Instance->DataItem[DataType];\r
1977\r
1978 Status = Instance->DataItem[DataType].Status;\r
1979 if (!EFI_ERROR (Status)) {\r
1980\r
1981 if (DataItem->GetData != NULL) {\r
1982\r
1983 Status = DataItem->GetData (Instance, DataSize, Data);\r
1984 } else if (*DataSize < Instance->DataItem[DataType].DataSize) {\r
1985 //\r
1986 // Update the buffer length.\r
1987 //\r
1988 *DataSize = Instance->DataItem[DataType].DataSize;\r
1989 Status = EFI_BUFFER_TOO_SMALL;\r
1990 } else {\r
1991\r
1992 *DataSize = Instance->DataItem[DataType].DataSize;\r
1993 CopyMem (Data, Instance->DataItem[DataType].Data.Ptr, *DataSize);\r
1994 }\r
1995 }\r
1996\r
1997 gBS->RestoreTPL (OldTpl);\r
1998\r
1999 return Status;\r
2000}\r
2001\r
2002/**\r
2003 Register an event that is signaled whenever a configuration process on the specified\r
2004 configuration data is done.\r
2005\r
2006 This function registers an event that is to be signaled whenever a configuration\r
2007 process on the specified configuration data is performed. An event can be registered\r
2008 for a different DataType simultaneously. The caller is responsible for determining\r
2009 which type of configuration data causes the signaling of the event in such an event.\r
2010\r
2011 @param[in] This Pointer to the EFI_IP6_CONFIG_PROTOCOL instance.\r
2012 @param[in] DataType The type of data to unregister the event for.\r
2013 @param[in] Event The event to register.\r
2014\r
2015 @retval EFI_SUCCESS The notification event for the specified configuration data is\r
2016 registered.\r
2017 @retval EFI_INVALID_PARAMETER This is NULL or Event is NULL.\r
2018 @retval EFI_UNSUPPORTED The configuration data type specified by DataType is not\r
2019 supported.\r
2020 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
2021 @retval EFI_ACCESS_DENIED The Event is already registered for the DataType.\r
2022\r
2023**/\r
2024EFI_STATUS\r
2025EFIAPI\r
2026EfiIp6ConfigRegisterDataNotify (\r
2027 IN EFI_IP6_CONFIG_PROTOCOL *This,\r
2028 IN EFI_IP6_CONFIG_DATA_TYPE DataType,\r
2029 IN EFI_EVENT Event\r
2030 )\r
2031{\r
2032 EFI_TPL OldTpl;\r
2033 EFI_STATUS Status;\r
2034 IP6_CONFIG_INSTANCE *Instance;\r
2035 NET_MAP *EventMap;\r
2036 NET_MAP_ITEM *Item;\r
2037\r
2038 if ((This == NULL) || (Event == NULL)) {\r
2039 return EFI_INVALID_PARAMETER;\r
2040 }\r
2041\r
2042 if (DataType >= Ip6ConfigDataTypeMaximum) {\r
2043 return EFI_UNSUPPORTED;\r
2044 }\r
2045\r
2046 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
2047\r
2048 Instance = IP6_CONFIG_INSTANCE_FROM_PROTOCOL (This);\r
2049 EventMap = &Instance->DataItem[DataType].EventMap;\r
2050\r
2051 //\r
2052 // Check whether this event is already registered for this DataType.\r
2053 //\r
2054 Item = NetMapFindKey (EventMap, Event);\r
2055 if (Item == NULL) {\r
2056\r
2057 Status = NetMapInsertTail (EventMap, Event, NULL);\r
2058\r
2059 if (EFI_ERROR (Status)) {\r
2060\r
2061 Status = EFI_OUT_OF_RESOURCES;\r
2062 }\r
2063\r
2064 } else {\r
2065\r
2066 Status = EFI_ACCESS_DENIED;\r
2067 }\r
2068\r
2069 gBS->RestoreTPL (OldTpl);\r
2070\r
2071 return Status;\r
2072}\r
2073\r
2074/**\r
2075 Remove a previously registered event for the specified configuration data.\r
2076\r
2077 @param This The pointer to the EFI_IP6_CONFIG_PROTOCOL instance.\r
2078 @param DataType The type of data to remove from the previously\r
2079 registered event.\r
2080 @param Event The event to be unregistered.\r
2081\r
2082 @retval EFI_SUCCESS The event registered for the specified\r
2083 configuration data was removed.\r
2084 @retval EFI_INVALID_PARAMETER This is NULL or Event is NULL.\r
2085 @retval EFI_NOT_FOUND The Event has not been registered for the\r
2086 specified DataType.\r
2087\r
2088**/\r
2089EFI_STATUS\r
2090EFIAPI\r
2091EfiIp6ConfigUnregisterDataNotify (\r
2092 IN EFI_IP6_CONFIG_PROTOCOL *This,\r
2093 IN EFI_IP6_CONFIG_DATA_TYPE DataType,\r
2094 IN EFI_EVENT Event\r
2095 )\r
2096{\r
2097 EFI_TPL OldTpl;\r
2098 EFI_STATUS Status;\r
2099 IP6_CONFIG_INSTANCE *Instance;\r
2100 NET_MAP_ITEM *Item;\r
2101\r
2102 if ((This == NULL) || (Event == NULL)) {\r
2103 return EFI_INVALID_PARAMETER;\r
2104 }\r
2105\r
2106 if (DataType >= Ip6ConfigDataTypeMaximum) {\r
2107 return EFI_NOT_FOUND;\r
2108 }\r
2109\r
2110 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
2111\r
2112 Instance = IP6_CONFIG_INSTANCE_FROM_PROTOCOL (This);\r
2113\r
2114 Item = NetMapFindKey (&Instance->DataItem[DataType].EventMap, Event);\r
2115 if (Item != NULL) {\r
2116\r
2117 NetMapRemoveItem (&Instance->DataItem[DataType].EventMap, Item, NULL);\r
2118 Status = EFI_SUCCESS;\r
2119 } else {\r
2120\r
2121 Status = EFI_NOT_FOUND;\r
2122 }\r
2123\r
2124 gBS->RestoreTPL (OldTpl);\r
2125\r
2126 return Status;\r
2127}\r
2128\r
2129/**\r
2130 Initialize an IP6_CONFIG_INSTANCE.\r
2131\r
2132 @param[out] Instance The buffer of IP6_CONFIG_INSTANCE to be initialized.\r
2133\r
2134 @retval EFI_OUT_OF_RESOURCES Failed to allocate resources to complete the operation.\r
2135 @retval EFI_SUCCESS The IP6_CONFIG_INSTANCE initialized successfully.\r
2136\r
2137**/\r
2138EFI_STATUS\r
2139Ip6ConfigInitInstance (\r
2140 OUT IP6_CONFIG_INSTANCE *Instance\r
2141 )\r
2142{\r
2143 IP6_SERVICE *IpSb;\r
2144 IP6_CONFIG_INSTANCE *TmpInstance;\r
2145 LIST_ENTRY *Entry;\r
2146 EFI_STATUS Status;\r
2147 UINTN Index;\r
2148 UINT16 IfIndex;\r
2149 IP6_CONFIG_DATA_ITEM *DataItem;\r
2150\r
2151 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
2152\r
2153 Instance->Signature = IP6_CONFIG_INSTANCE_SIGNATURE;\r
2154\r
2155 //\r
2156 // Determine the index of this interface.\r
2157 //\r
2158 IfIndex = 0;\r
2159 NET_LIST_FOR_EACH (Entry, &mIp6ConfigInstanceList) {\r
2160 TmpInstance = NET_LIST_USER_STRUCT_S (Entry, IP6_CONFIG_INSTANCE, Link, IP6_CONFIG_INSTANCE_SIGNATURE);\r
2161\r
2162 if (TmpInstance->IfIndex > IfIndex) {\r
2163 //\r
2164 // There is a sequence hole because some interface is down.\r
2165 //\r
2166 break;\r
2167 }\r
2168\r
2169 IfIndex++;\r
2170 }\r
2171\r
2172 Instance->IfIndex = IfIndex;\r
2173 NetListInsertBefore (Entry, &Instance->Link);\r
2174\r
2175 for (Index = 0; Index < Ip6ConfigDataTypeMaximum; Index++) {\r
2176 //\r
2177 // Initialize the event map for each data item.\r
2178 //\r
2179 NetMapInit (&Instance->DataItem[Index].EventMap);\r
2180 }\r
2181\r
2182 //\r
2183 // Initialize the NET_MAPs used for DAD on manually configured source addresses.\r
2184 //\r
2185 NetMapInit (&Instance->DadFailedMap);\r
2186 NetMapInit (&Instance->DadPassedMap);\r
2187\r
2188 //\r
2189 // Initialize each data type: associate storage and set data size for the\r
2190 // fixed size data types, hook the SetData function, set the data attribute.\r
2191 //\r
2192 DataItem = &Instance->DataItem[Ip6ConfigDataTypeInterfaceInfo];\r
2193 DataItem->GetData = Ip6ConfigGetIfInfo;\r
2194 DataItem->Data.Ptr = &Instance->InterfaceInfo;\r
2195 DataItem->DataSize = sizeof (Instance->InterfaceInfo);\r
2196 SET_DATA_ATTRIB (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED | DATA_ATTRIB_VOLATILE);\r
2197 Ip6ConfigInitIfInfo (IpSb, &Instance->InterfaceInfo);\r
2198\r
2199 DataItem = &Instance->DataItem[Ip6ConfigDataTypeAltInterfaceId];\r
2200 DataItem->SetData = Ip6ConfigSetAltIfId;\r
2201 DataItem->Data.Ptr = &Instance->AltIfId;\r
2202 DataItem->DataSize = sizeof (Instance->AltIfId);\r
2203 DataItem->Status = EFI_NOT_FOUND;\r
2204 SET_DATA_ATTRIB (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED);\r
2205\r
2206 DataItem = &Instance->DataItem[Ip6ConfigDataTypePolicy];\r
2207 DataItem->SetData = Ip6ConfigSetPolicy;\r
2208 DataItem->Data.Ptr = &Instance->Policy;\r
2209 DataItem->DataSize = sizeof (Instance->Policy);\r
4720106b 2210 Instance->Policy = Ip6ConfigPolicyManual;\r
a3bcde70
HT
2211 SET_DATA_ATTRIB (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED);\r
2212\r
2213 DataItem = &Instance->DataItem[Ip6ConfigDataTypeDupAddrDetectTransmits];\r
2214 DataItem->SetData = Ip6ConfigSetDadXmits;\r
2215 DataItem->Data.Ptr = &Instance->DadXmits;\r
2216 DataItem->DataSize = sizeof (Instance->DadXmits);\r
2217 Instance->DadXmits.DupAddrDetectTransmits = IP6_CONFIG_DEFAULT_DAD_XMITS;\r
2218 SET_DATA_ATTRIB (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED);\r
2219\r
2220 DataItem = &Instance->DataItem[Ip6ConfigDataTypeManualAddress];\r
c3149709 2221 DataItem->SetData = Ip6ConfigSetManualAddress;\r
a3bcde70
HT
2222 DataItem->Status = EFI_NOT_FOUND;\r
2223\r
2224 DataItem = &Instance->DataItem[Ip6ConfigDataTypeGateway];\r
2225 DataItem->SetData = Ip6ConfigSetGateway;\r
2226 DataItem->Status = EFI_NOT_FOUND;\r
2227\r
2228 DataItem = &Instance->DataItem[Ip6ConfigDataTypeDnsServer];\r
2229 DataItem->SetData = Ip6ConfigSetDnsServer;\r
2230 DataItem->Status = EFI_NOT_FOUND;\r
2231\r
2232 //\r
2233 // Create the event used for DHCP.\r
2234 //\r
2235 Status = gBS->CreateEvent (\r
2236 EVT_NOTIFY_SIGNAL,\r
2237 TPL_CALLBACK,\r
2238 Ip6ConfigOnDhcp6Event,\r
2239 Instance,\r
2240 &Instance->Dhcp6Event\r
2241 );\r
2242 ASSERT_EFI_ERROR (Status);\r
2243\r
2244 Instance->Configured = TRUE;\r
2245\r
2246 //\r
2247 // Try to read the config data from NV variable.\r
2248 //\r
2249 Status = Ip6ConfigReadConfigData (IpSb->MacString, Instance);\r
2250 if (Status == EFI_NOT_FOUND) {\r
2251 //\r
2252 // The NV variable is not set, so generate a random IAID, and write down the\r
2253 // fresh new configuration as the NV variable now.\r
2254 //\r
2255 Instance->IaId = NET_RANDOM (NetRandomInitSeed ());\r
2256\r
2257 for (Index = 0; Index < IpSb->SnpMode.HwAddressSize; Index++) {\r
2258 Instance->IaId |= (IpSb->SnpMode.CurrentAddress.Addr[Index] << ((Index << 3) & 31));\r
2259 }\r
2260\r
2261 Ip6ConfigWriteConfigData (IpSb->MacString, Instance);\r
2262 } else if (EFI_ERROR (Status)) {\r
2263 return Status;\r
2264 }\r
2265\r
2266 Instance->Ip6Config.SetData = EfiIp6ConfigSetData;\r
2267 Instance->Ip6Config.GetData = EfiIp6ConfigGetData;\r
2268 Instance->Ip6Config.RegisterDataNotify = EfiIp6ConfigRegisterDataNotify;\r
2269 Instance->Ip6Config.UnregisterDataNotify = EfiIp6ConfigUnregisterDataNotify;\r
2270\r
2271\r
2272 //\r
2273 // Publish the IP6 configuration form\r
2274 //\r
2275 return Ip6ConfigFormInit (Instance);\r
2276}\r
2277\r
2278/**\r
2279 Release an IP6_CONFIG_INSTANCE.\r
2280\r
2281 @param[in, out] Instance The buffer of IP6_CONFIG_INSTANCE to be freed.\r
2282\r
2283**/\r
2284VOID\r
2285Ip6ConfigCleanInstance (\r
2286 IN OUT IP6_CONFIG_INSTANCE *Instance\r
2287 )\r
2288{\r
2289 UINTN Index;\r
2290 IP6_CONFIG_DATA_ITEM *DataItem;\r
2291\r
2292 if (Instance->DeclineAddress != NULL) {\r
2293 FreePool (Instance->DeclineAddress);\r
2294 }\r
2295\r
2296 if (!Instance->Configured) {\r
2297 return ;\r
2298 }\r
2299\r
2300 if (Instance->Dhcp6Handle != NULL) {\r
2301\r
2302 Ip6ConfigDestroyDhcp6 (Instance);\r
2303 }\r
2304\r
2305 //\r
2306 // Close the event.\r
2307 //\r
2308 if (Instance->Dhcp6Event != NULL) {\r
2309 gBS->CloseEvent (Instance->Dhcp6Event);\r
2310 }\r
2311\r
2312 NetMapClean (&Instance->DadPassedMap);\r
2313 NetMapClean (&Instance->DadFailedMap);\r
2314\r
2315 for (Index = 0; Index < Ip6ConfigDataTypeMaximum; Index++) {\r
2316\r
2317 DataItem = &Instance->DataItem[Index];\r
2318\r
2319 if (!DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED)) {\r
2320 if (DataItem->Data.Ptr != NULL) {\r
2321 FreePool (DataItem->Data.Ptr);\r
2322 }\r
2323 DataItem->Data.Ptr = NULL;\r
2324 DataItem->DataSize = 0;\r
2325 }\r
2326\r
2327 NetMapClean (&Instance->DataItem[Index].EventMap);\r
2328 }\r
2329\r
2330 Ip6ConfigFormUnload (Instance);\r
2331\r
2332 RemoveEntryList (&Instance->Link);\r
2333}\r
2334\r
2335/**\r
75dce340 2336 Destroy the Dhcp6 child in IP6_CONFIG_INSTANCE and release the resources.\r
a3bcde70
HT
2337\r
2338 @param[in, out] Instance The buffer of IP6_CONFIG_INSTANCE to be freed.\r
2339\r
2340 @retval EFI_SUCCESS The child was successfully destroyed.\r
75dce340 2341 @retval Others Failed to destroy the child.\r
a3bcde70
HT
2342\r
2343**/\r
2344EFI_STATUS\r
2345Ip6ConfigDestroyDhcp6 (\r
2346 IN OUT IP6_CONFIG_INSTANCE *Instance\r
2347 )\r
2348{\r
2349 IP6_SERVICE *IpSb;\r
2350 EFI_STATUS Status;\r
2351 EFI_DHCP6_PROTOCOL *Dhcp6;\r
2352\r
2353 Dhcp6 = Instance->Dhcp6;\r
2354 ASSERT (Dhcp6 != NULL);\r
2355\r
2356 Dhcp6->Stop (Dhcp6);\r
2357 Dhcp6->Configure (Dhcp6, NULL);\r
2358 Instance->Dhcp6 = NULL;\r
2359\r
2360 IpSb = IP6_SERVICE_FROM_IP6_CONFIG_INSTANCE (Instance);\r
2361\r
2362 //\r
2363 // Close DHCPv6 protocol and destroy the child.\r
2364 //\r
2365 Status = gBS->CloseProtocol (\r
2366 Instance->Dhcp6Handle,\r
2367 &gEfiDhcp6ProtocolGuid,\r
2368 IpSb->Image,\r
2369 IpSb->Controller\r
2370 );\r
2371 if (EFI_ERROR (Status)) {\r
2372 return Status;\r
2373 }\r
2374\r
2375 Status = NetLibDestroyServiceChild (\r
2376 IpSb->Controller,\r
2377 IpSb->Image,\r
2378 &gEfiDhcp6ServiceBindingProtocolGuid,\r
2379 Instance->Dhcp6Handle\r
2380 );\r
2381\r
2382 Instance->Dhcp6Handle = NULL;\r
2383\r
2384 return Status;\r
2385}\r
2386\r