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1/** @file\r
2 The implementation of common functions shared by IP6 driver.\r
3\r
f75a7f56 4 Copyright (c) 2009 - 2018, 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
18/**\r
19 Build a array of EFI_IP6_ADDRESS_INFO to be returned to the caller. The number\r
20 of EFI_IP6_ADDRESS_INFO is also returned. If AddressList is NULL,\r
21 only the address count is returned.\r
22\r
23 @param[in] IpSb The IP6 service binding instance.\r
24 @param[out] AddressCount The number of returned addresses.\r
25 @param[out] AddressList The pointer to the array of EFI_IP6_ADDRESS_INFO.\r
26 This is an optional parameter.\r
27\r
28\r
29 @retval EFI_SUCCESS The address array successfully built.\r
30 @retval EFI_OUT_OF_RESOURCES Failed to allocate the memory for the address info.\r
31 @retval EFI_INVALID_PARAMETER Any input parameter is invalid.\r
32\r
33**/\r
34EFI_STATUS\r
35Ip6BuildEfiAddressList (\r
36 IN IP6_SERVICE *IpSb,\r
37 OUT UINT32 *AddressCount,\r
38 OUT EFI_IP6_ADDRESS_INFO **AddressList OPTIONAL\r
39 )\r
40{\r
41 UINT32 Count;\r
42 LIST_ENTRY *Entry;\r
43 EFI_IP6_ADDRESS_INFO *EfiAddrInfo;\r
44 IP6_ADDRESS_INFO *AddrInfo;\r
45\r
46 if (AddressCount == NULL) {\r
47 return EFI_INVALID_PARAMETER;\r
48 }\r
49\r
50 if (IpSb->LinkLocalOk) {\r
51 Count = 1 + IpSb->DefaultInterface->AddressCount;\r
52 } else {\r
53 Count = 0;\r
54 }\r
55\r
56 *AddressCount = Count;\r
57\r
58 if ((AddressList == NULL) || (Count == 0)) {\r
59 return EFI_SUCCESS;\r
60 }\r
61\r
62 if (*AddressList == NULL) {\r
63 *AddressList = AllocatePool (sizeof (EFI_IP6_ADDRESS_INFO) * Count);\r
64 if (*AddressList == NULL) {\r
65 return EFI_OUT_OF_RESOURCES;\r
66 }\r
67 }\r
68\r
69 EfiAddrInfo = *AddressList;\r
70\r
71 IP6_COPY_ADDRESS (&EfiAddrInfo->Address, &IpSb->LinkLocalAddr);\r
72 EfiAddrInfo->PrefixLength = IP6_LINK_LOCAL_PREFIX_LENGTH;\r
73\r
74 EfiAddrInfo++;\r
75 Count = 1;\r
76\r
77 NET_LIST_FOR_EACH (Entry, &IpSb->DefaultInterface->AddressList) {\r
78 AddrInfo = NET_LIST_USER_STRUCT_S (Entry, IP6_ADDRESS_INFO, Link, IP6_ADDR_INFO_SIGNATURE);\r
79\r
80 IP6_COPY_ADDRESS (&EfiAddrInfo->Address, &AddrInfo->Address);\r
81 EfiAddrInfo->PrefixLength = AddrInfo->PrefixLength;\r
82\r
83 EfiAddrInfo++;\r
84 Count++;\r
85 }\r
86\r
87 ASSERT (Count == *AddressCount);\r
88\r
89 return EFI_SUCCESS;\r
90}\r
91\r
92/**\r
93 Generate the multicast addresses identify the group of all IPv6 nodes or IPv6\r
94 routers defined in RFC4291.\r
95\r
96 All Nodes Addresses: FF01::1, FF02::1.\r
97 All Router Addresses: FF01::2, FF02::2, FF05::2.\r
98\r
99 @param[in] Router If TRUE, generate all routers addresses,\r
100 else generate all node addresses.\r
101 @param[in] Scope interface-local(1), link-local(2), or site-local(5)\r
102 @param[out] Ip6Addr The generated multicast address.\r
103\r
104 @retval EFI_INVALID_PARAMETER Any input parameter is invalid.\r
105 @retval EFI_SUCCESS The address is generated.\r
106\r
107**/\r
108EFI_STATUS\r
109Ip6SetToAllNodeMulticast (\r
110 IN BOOLEAN Router,\r
111 IN UINT8 Scope,\r
112 OUT EFI_IPv6_ADDRESS *Ip6Addr\r
113 )\r
114{\r
115 if (Ip6Addr == NULL) {\r
116 return EFI_INVALID_PARAMETER;\r
117 }\r
118\r
119 if (!Router && Scope == IP6_SITE_LOCAL_SCOPE) {\r
120 return EFI_INVALID_PARAMETER;\r
121 }\r
122\r
123 ZeroMem (Ip6Addr, sizeof (EFI_IPv6_ADDRESS));\r
124 Ip6Addr->Addr[0] = 0xFF;\r
125 Ip6Addr->Addr[1] = Scope;\r
126\r
127 if (!Router) {\r
128 Ip6Addr->Addr[15] = 0x1;\r
129 } else {\r
130 Ip6Addr->Addr[15] = 0x2;\r
131 }\r
132\r
133 return EFI_SUCCESS;\r
134}\r
135\r
136/**\r
137 This function converts MAC address to 64 bits interface ID according to RFC4291\r
138 and returns the interface ID. Currently only 48-bit MAC address is supported by\r
139 this function.\r
140\r
141 @param[in, out] IpSb The IP6 service binding instance.\r
142\r
143 @retval NULL The operation fails.\r
144 @return Pointer to the generated interface ID.\r
145\r
146**/\r
147UINT8 *\r
148Ip6CreateInterfaceID (\r
149 IN OUT IP6_SERVICE *IpSb\r
150 )\r
151{\r
152 UINT8 InterfaceId[8];\r
153 UINT8 Byte;\r
154 EFI_MAC_ADDRESS *MacAddr;\r
155 UINT32 AddrLen;\r
156\r
157 NET_CHECK_SIGNATURE (IpSb, IP6_SERVICE_SIGNATURE);\r
158\r
159 AddrLen = IpSb->SnpMode.HwAddressSize;\r
160\r
161 //\r
162 // Currently only IEEE 802 48-bit MACs are supported to create link local address.\r
163 //\r
164 if (AddrLen != IP6_MAC_LEN || IpSb->InterfaceIdLen != IP6_IF_ID_LEN) {\r
165 return NULL;\r
166 }\r
167\r
168 MacAddr = &IpSb->SnpMode.CurrentAddress;\r
169\r
170 //\r
171 // Convert MAC address to 64 bits interface ID according to Appendix A of RFC4291:\r
172 // 1. Insert 0xFFFE to the middle\r
173 // 2. Invert the universal/local bit - bit 6 in network order\r
174 //\r
175 CopyMem (InterfaceId, MacAddr, 3);\r
176 InterfaceId[3] = 0xFF;\r
177 InterfaceId[4] = 0xFE;\r
178 CopyMem (&InterfaceId[5], &MacAddr->Addr[3], 3);\r
179\r
180 Byte = (UINT8) (InterfaceId[0] & IP6_U_BIT);\r
181 if (Byte == IP6_U_BIT) {\r
182 InterfaceId[0] &= ~IP6_U_BIT;\r
183 } else {\r
184 InterfaceId[0] |= IP6_U_BIT;\r
185 }\r
186\r
187 //\r
188 // Return the interface ID.\r
189 //\r
190 return AllocateCopyPool (IpSb->InterfaceIdLen, InterfaceId);\r
191}\r
192\r
193/**\r
194 This function creates link-local address from interface identifier. The\r
195 interface identifier is normally created from MAC address. It might be manually\r
196 configured by administrator if the link-local address created from MAC address\r
197 is a duplicate address.\r
198\r
199 @param[in, out] IpSb The IP6 service binding instance.\r
200\r
201 @retval NULL If the operation fails.\r
202 @return The generated Link Local address, in network order.\r
203\r
204**/\r
205EFI_IPv6_ADDRESS *\r
206Ip6CreateLinkLocalAddr (\r
207 IN OUT IP6_SERVICE *IpSb\r
208 )\r
209{\r
210 EFI_IPv6_ADDRESS *Ip6Addr;\r
211 EFI_IP6_CONFIG_PROTOCOL *Ip6Config;\r
212 UINTN DataSize;\r
213 EFI_IP6_CONFIG_INTERFACE_ID InterfaceId;\r
214 EFI_STATUS Status;\r
215\r
216 NET_CHECK_SIGNATURE (IpSb, IP6_SERVICE_SIGNATURE);\r
217\r
218 if (IpSb->InterfaceId != NULL) {\r
219 FreePool (IpSb->InterfaceId);\r
220 }\r
221\r
222 //\r
223 // Get the interface id if it is manully configured.\r
224 //\r
225 Ip6Config = &IpSb->Ip6ConfigInstance.Ip6Config;\r
226 DataSize = sizeof (EFI_IP6_CONFIG_INTERFACE_ID);\r
227 ZeroMem (&InterfaceId, DataSize);\r
228\r
229 Status = Ip6Config->GetData (\r
230 Ip6Config,\r
231 Ip6ConfigDataTypeAltInterfaceId,\r
232 &DataSize,\r
233 &InterfaceId\r
234 );\r
235 if (Status == EFI_NOT_FOUND) {\r
236 //\r
237 // Since the interface id is not configured, generate the interface id from\r
238 // MAC address.\r
239 //\r
240 IpSb->InterfaceId = Ip6CreateInterfaceID (IpSb);\r
241 if (IpSb->InterfaceId == NULL) {\r
242 return NULL;\r
243 }\r
244\r
245 CopyMem (&InterfaceId, IpSb->InterfaceId, IpSb->InterfaceIdLen);\r
246 //\r
247 // Record the interface id.\r
248 //\r
249 Status = Ip6Config->SetData (\r
250 Ip6Config,\r
251 Ip6ConfigDataTypeAltInterfaceId,\r
252 DataSize,\r
253 &InterfaceId\r
254 );\r
255 if (EFI_ERROR (Status)) {\r
256 FreePool (IpSb->InterfaceId);\r
257 IpSb->InterfaceId = NULL;\r
258 return NULL;\r
259 }\r
260 } else if (!EFI_ERROR (Status)) {\r
261 IpSb->InterfaceId = AllocateCopyPool (DataSize, &InterfaceId);\r
262 if (IpSb->InterfaceId == NULL) {\r
263 return NULL;\r
264 }\r
265 } else {\r
266 return NULL;\r
267 }\r
268\r
269 //\r
270 // Append FE80::/64 to the left of IPv6 address then return.\r
271 //\r
272 Ip6Addr = AllocateZeroPool (sizeof (EFI_IPv6_ADDRESS));\r
273 if (Ip6Addr == NULL) {\r
274 FreePool (IpSb->InterfaceId);\r
275 IpSb->InterfaceId = NULL;\r
276 return NULL;\r
277 }\r
278\r
279 CopyMem (&Ip6Addr->Addr[8], IpSb->InterfaceId, IpSb->InterfaceIdLen);\r
280 Ip6Addr->Addr[1] = 0x80;\r
281 Ip6Addr->Addr[0] = 0xFE;\r
282\r
283 return Ip6Addr;\r
284}\r
285\r
286/**\r
287 Compute the solicited-node multicast address for an unicast or anycast address,\r
288 by taking the low-order 24 bits of this address, and appending those bits to\r
289 the prefix FF02:0:0:0:0:1:FF00::/104.\r
290\r
291 @param[in] Ip6Addr The unicast or anycast address, in network order.\r
292 @param[out] MulticastAddr The generated solicited-node multicast address,\r
293 in network order.\r
294\r
295**/\r
296VOID\r
297Ip6CreateSNMulticastAddr (\r
298 IN EFI_IPv6_ADDRESS *Ip6Addr,\r
299 OUT EFI_IPv6_ADDRESS *MulticastAddr\r
300 )\r
301{\r
302 ASSERT (Ip6Addr != NULL && MulticastAddr != NULL);\r
303\r
304 ZeroMem (MulticastAddr, sizeof (EFI_IPv6_ADDRESS));\r
305\r
306 MulticastAddr->Addr[0] = 0xFF;\r
307 MulticastAddr->Addr[1] = 0x02;\r
308 MulticastAddr->Addr[11] = 0x1;\r
309 MulticastAddr->Addr[12] = 0xFF;\r
310\r
311 CopyMem (&MulticastAddr->Addr[13], &Ip6Addr->Addr[13], 3);\r
312}\r
313\r
314/**\r
315 Insert a node IP6_ADDRESS_INFO to an IP6 interface.\r
316\r
317 @param[in, out] IpIf Points to an IP6 interface.\r
318 @param[in] AddrInfo Points to IP6_ADDRESS_INFO\r
319\r
320**/\r
321VOID\r
322Ip6AddAddr (\r
323 IN OUT IP6_INTERFACE *IpIf,\r
324 IN IP6_ADDRESS_INFO *AddrInfo\r
325 )\r
326{\r
327 InsertHeadList (&IpIf->AddressList, &AddrInfo->Link);\r
328 IpIf->AddressCount++;\r
329}\r
330\r
216f7970 331/**\r
332 Callback function which provided by user to remove one node in NetDestroyLinkList process.\r
f75a7f56 333\r
216f7970 334 @param[in] Entry The entry to be removed.\r
335 @param[in] Context Pointer to the callback context corresponds to the Context in NetDestroyLinkList.\r
336\r
337 @retval EFI_SUCCESS The entry has been removed successfully.\r
338 @retval Others Fail to remove the entry.\r
339\r
340**/\r
341EFI_STATUS\r
1f7eb561 342EFIAPI\r
216f7970 343Ip6DestroyChildEntryByAddr (\r
344 IN LIST_ENTRY *Entry,\r
345 IN VOID *Context\r
1f7eb561 346 )\r
216f7970 347{\r
348 IP6_PROTOCOL *Instance;\r
349 EFI_SERVICE_BINDING_PROTOCOL *ServiceBinding;\r
350 EFI_IPv6_ADDRESS *Address;\r
f75a7f56 351\r
216f7970 352 Instance = NET_LIST_USER_STRUCT_S (Entry, IP6_PROTOCOL, Link, IP6_PROTOCOL_SIGNATURE);\r
353 ServiceBinding = ((IP6_DESTROY_CHILD_BY_ADDR_CALLBACK_CONTEXT*) Context)->ServiceBinding;\r
354 Address = ((IP6_DESTROY_CHILD_BY_ADDR_CALLBACK_CONTEXT*) Context)->Address;\r
355\r
356 if ((Instance->State == IP6_STATE_CONFIGED) && EFI_IP6_EQUAL (&Instance->ConfigData.StationAddress, Address)) {\r
357 return ServiceBinding->DestroyChild (ServiceBinding, Instance->Handle);\r
358 }\r
f75a7f56 359\r
216f7970 360 return EFI_SUCCESS;\r
361}\r
362\r
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363/**\r
364 Destroy the IP instance if its StationAddress is removed. It is the help function\r
365 for Ip6RemoveAddr().\r
366\r
367 @param[in, out] IpSb Points to an IP6 service binding instance.\r
368 @param[in] Address The to be removed address\r
369\r
370**/\r
371VOID\r
372Ip6DestroyInstanceByAddress (\r
373 IN OUT IP6_SERVICE *IpSb,\r
374 IN EFI_IPv6_ADDRESS *Address\r
375 )\r
376{\r
216f7970 377 LIST_ENTRY *List;\r
378 IP6_DESTROY_CHILD_BY_ADDR_CALLBACK_CONTEXT Context;\r
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379\r
380 NET_CHECK_SIGNATURE (IpSb, IP6_SERVICE_SIGNATURE);\r
381\r
216f7970 382 List = &IpSb->Children;\r
383 Context.ServiceBinding = &IpSb->ServiceBinding;\r
384 Context.Address = Address;\r
385 NetDestroyLinkList (\r
386 List,\r
387 Ip6DestroyChildEntryByAddr,\r
388 &Context,\r
389 NULL\r
390 );\r
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391}\r
392\r
393/**\r
394 Remove the IPv6 address from the address list node points to IP6_ADDRESS_INFO.\r
395\r
396 This function removes the matching IPv6 addresses from the address list and\r
397 adjusts the address count of the address list. If IpSb is not NULL, this function\r
398 calls Ip6LeaveGroup to see whether it should call Mnp->Groups() to remove the\r
399 its solicited-node multicast MAC address from the filter list and sends out\r
400 a Multicast Listener Done. If Prefix is NULL, all address in the address list\r
401 will be removed. If Prefix is not NULL, the address that matching the Prefix\r
402 with PrefixLength in the address list will be removed.\r
403\r
404 @param[in] IpSb NULL or points to IP6 service binding instance.\r
405 @param[in, out] AddressList Address list array.\r
406 @param[in, out] AddressCount The count of addresses in address list array.\r
407 @param[in] Prefix NULL or an IPv6 address prefix.\r
408 @param[in] PrefixLength The length of Prefix.\r
409\r
410 @retval EFI_SUCCESS The operation completed successfully.\r
411 @retval EFI_NOT_FOUND The address matching the Prefix with PrefixLength\r
412 cannot be found in the address list.\r
413 @retval EFI_INVALID_PARAMETER Any input parameter is invalid.\r
414\r
415**/\r
416EFI_STATUS\r
417Ip6RemoveAddr (\r
418 IN IP6_SERVICE *IpSb OPTIONAL,\r
419 IN OUT LIST_ENTRY *AddressList,\r
420 IN OUT UINT32 *AddressCount,\r
421 IN EFI_IPv6_ADDRESS *Prefix OPTIONAL,\r
422 IN UINT8 PrefixLength\r
423 )\r
424{\r
425 EFI_STATUS Status;\r
426 LIST_ENTRY *Entry;\r
427 LIST_ENTRY *Next;\r
428 IP6_ADDRESS_INFO *AddrInfo;\r
429 EFI_IPv6_ADDRESS SnMCastAddr;\r
430\r
c720da28 431 if (IsListEmpty (AddressList) || *AddressCount < 1 || PrefixLength > IP6_PREFIX_MAX) {\r
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432 return EFI_INVALID_PARAMETER;\r
433 }\r
434\r
435 Status = EFI_NOT_FOUND;\r
436\r
437 NET_LIST_FOR_EACH_SAFE (Entry, Next, AddressList) {\r
438 AddrInfo = NET_LIST_USER_STRUCT_S (Entry, IP6_ADDRESS_INFO, Link, IP6_ADDR_INFO_SIGNATURE);\r
439\r
440 if (Prefix == NULL ||\r
441 (PrefixLength == 128 && EFI_IP6_EQUAL (Prefix, &AddrInfo->Address)) ||\r
442 (PrefixLength == AddrInfo->PrefixLength && NetIp6IsNetEqual (Prefix, &AddrInfo->Address, PrefixLength))\r
443 ) {\r
444 if (IpSb != NULL) {\r
445 NET_CHECK_SIGNATURE (IpSb, IP6_SERVICE_SIGNATURE);\r
446 Ip6CreateSNMulticastAddr (&AddrInfo->Address, &SnMCastAddr);\r
447 Ip6LeaveGroup (IpSb, &SnMCastAddr);\r
448\r
449 //\r
450 // Destroy any instance who is using the dying address as the source address.\r
451 //\r
452 Ip6DestroyInstanceByAddress (IpSb, &AddrInfo->Address);\r
453 }\r
454\r
455 RemoveEntryList (Entry);\r
456 FreePool (AddrInfo);\r
457 (*AddressCount)--;\r
458\r
459 Status = EFI_SUCCESS;\r
460 }\r
461 }\r
462\r
463 return Status;\r
464}\r
465\r
466/**\r
467 Check whether the incoming Ipv6 address is a solicited-node multicast address.\r
468\r
469 @param[in] Ip6 Ip6 address, in network order.\r
470\r
471 @retval TRUE Yes, solicited-node multicast address\r
472 @retval FALSE No\r
473\r
474**/\r
475BOOLEAN\r
476Ip6IsSNMulticastAddr (\r
477 IN EFI_IPv6_ADDRESS *Ip6\r
478 )\r
479{\r
480 EFI_IPv6_ADDRESS Sn;\r
481 BOOLEAN Flag;\r
482\r
483 Ip6CreateSNMulticastAddr (Ip6, &Sn);\r
484 Flag = FALSE;\r
485\r
486 if (CompareMem (Sn.Addr, Ip6->Addr, 13) == 0) {\r
487 Flag = TRUE;\r
488 }\r
489\r
490 return Flag;\r
491}\r
492\r
493/**\r
494 Check whether the incoming IPv6 address is one of the maintained addresses in\r
495 the IP6 service binding instance.\r
496\r
497 @param[in] IpSb Points to a IP6 service binding instance.\r
498 @param[in] Address The IP6 address to be checked.\r
499 @param[out] Interface If not NULL, output the IP6 interface which\r
500 maintains the Address.\r
501 @param[out] AddressInfo If not NULL, output the IP6 address information\r
502 of the Address.\r
503\r
504 @retval TRUE Yes, it is one of the maintained address.\r
505 @retval FALSE No, it is not one of the maintained address.\r
506\r
507**/\r
508BOOLEAN\r
509Ip6IsOneOfSetAddress (\r
510 IN IP6_SERVICE *IpSb,\r
511 IN EFI_IPv6_ADDRESS *Address,\r
512 OUT IP6_INTERFACE **Interface OPTIONAL,\r
513 OUT IP6_ADDRESS_INFO **AddressInfo OPTIONAL\r
514 )\r
515{\r
516 LIST_ENTRY *Entry;\r
517 LIST_ENTRY *Entry2;\r
518 IP6_INTERFACE *IpIf;\r
519 IP6_ADDRESS_INFO *TmpAddressInfo;\r
520\r
521 //\r
522 // Check link-local address first\r
523 //\r
524 if (IpSb->LinkLocalOk && EFI_IP6_EQUAL (&IpSb->LinkLocalAddr, Address)) {\r
525 if (Interface != NULL) {\r
526 *Interface = IpSb->DefaultInterface;\r
527 }\r
528\r
529 if (AddressInfo != NULL) {\r
530 *AddressInfo = NULL;\r
531 }\r
532\r
533 return TRUE;\r
534 }\r
535\r
536 NET_LIST_FOR_EACH (Entry, &IpSb->Interfaces) {\r
537 IpIf = NET_LIST_USER_STRUCT_S (Entry, IP6_INTERFACE, Link, IP6_INTERFACE_SIGNATURE);\r
538\r
539 NET_LIST_FOR_EACH (Entry2, &IpIf->AddressList) {\r
540 TmpAddressInfo = NET_LIST_USER_STRUCT_S (Entry2, IP6_ADDRESS_INFO, Link, IP6_ADDR_INFO_SIGNATURE);\r
541\r
542 if (EFI_IP6_EQUAL (&TmpAddressInfo->Address, Address)) {\r
543 if (Interface != NULL) {\r
544 *Interface = IpIf;\r
545 }\r
546\r
547 if (AddressInfo != NULL) {\r
548 *AddressInfo = TmpAddressInfo;\r
549 }\r
550\r
551 return TRUE;\r
552 }\r
553 }\r
554 }\r
555\r
556 return FALSE;\r
557}\r
558\r
559/**\r
560 Check whether the incoming MAC address is valid.\r
561\r
562 @param[in] IpSb Points to a IP6 service binding instance.\r
563 @param[in] LinkAddress The MAC address.\r
564\r
565 @retval TRUE Yes, it is valid.\r
566 @retval FALSE No, it is not valid.\r
567\r
568**/\r
569BOOLEAN\r
570Ip6IsValidLinkAddress (\r
571 IN IP6_SERVICE *IpSb,\r
572 IN EFI_MAC_ADDRESS *LinkAddress\r
573 )\r
574{\r
575 UINT32 Index;\r
576\r
577 //\r
578 // TODO: might be updated later to be more acceptable.\r
579 //\r
580 for (Index = IpSb->SnpMode.HwAddressSize; Index < sizeof (EFI_MAC_ADDRESS); Index++) {\r
581 if (LinkAddress->Addr[Index] != 0) {\r
582 return FALSE;\r
583 }\r
584 }\r
585\r
586 return TRUE;\r
587}\r
588\r
589/**\r
590 Copy the PrefixLength bits from Src to Dest.\r
591\r
592 @param[out] Dest A pointer to the buffer to copy to.\r
593 @param[in] Src A pointer to the buffer to copy from.\r
594 @param[in] PrefixLength The number of bits to copy.\r
595\r
596**/\r
597VOID\r
598Ip6CopyAddressByPrefix (\r
599 OUT EFI_IPv6_ADDRESS *Dest,\r
600 IN EFI_IPv6_ADDRESS *Src,\r
601 IN UINT8 PrefixLength\r
602 )\r
603{\r
604 UINT8 Byte;\r
605 UINT8 Bit;\r
606 UINT8 Mask;\r
607\r
608 ASSERT (Dest != NULL && Src != NULL);\r
c720da28 609 ASSERT (PrefixLength <= IP6_PREFIX_MAX);\r
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610\r
611 Byte = (UINT8) (PrefixLength / 8);\r
612 Bit = (UINT8) (PrefixLength % 8);\r
613\r
614 ZeroMem (Dest, sizeof (EFI_IPv6_ADDRESS));\r
615\r
616 CopyMem (Dest, Src, Byte);\r
617\r
618 if (Bit > 0) {\r
619 Mask = (UINT8) (0xFF << (8 - Bit));\r
620 ASSERT (Byte < 16);\r
621 Dest->Addr[Byte] = (UINT8) (Src->Addr[Byte] & Mask);\r
622 }\r
623}\r
624\r
625/**\r
626 Get the MAC address for a multicast IP address. Call\r
627 Mnp's McastIpToMac to find the MAC address instead of\r
628 hard-coding the NIC to be Ethernet.\r
629\r
630 @param[in] Mnp The Mnp instance to get the MAC address.\r
631 @param[in] Multicast The multicast IP address to translate.\r
632 @param[out] Mac The buffer to hold the translated address.\r
633\r
634 @retval EFI_SUCCESS The multicast IP successfully\r
635 translated to a multicast MAC address.\r
636 @retval Other The address is not converted because an error occurred.\r
637\r
638**/\r
639EFI_STATUS\r
640Ip6GetMulticastMac (\r
641 IN EFI_MANAGED_NETWORK_PROTOCOL *Mnp,\r
642 IN EFI_IPv6_ADDRESS *Multicast,\r
643 OUT EFI_MAC_ADDRESS *Mac\r
644 )\r
645{\r
646 EFI_IP_ADDRESS EfiIp;\r
647\r
648 IP6_COPY_ADDRESS (&EfiIp.v6, Multicast);\r
649\r
650 return Mnp->McastIpToMac (Mnp, TRUE, &EfiIp, Mac);\r
651}\r
652\r
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653/**\r
654 Convert the multibyte field in IP header's byter order.\r
655 In spite of its name, it can also be used to convert from\r
656 host to network byte order.\r
657\r
658 @param[in, out] Head The IP head to convert.\r
659\r
660 @return Point to the converted IP head.\r
661\r
662**/\r
663EFI_IP6_HEADER *\r
664Ip6NtohHead (\r
665 IN OUT EFI_IP6_HEADER *Head\r
666 )\r
667{\r
668 Head->FlowLabelL = NTOHS (Head->FlowLabelL);\r
669 Head->PayloadLength = NTOHS (Head->PayloadLength);\r
670\r
671 return Head;\r
672}\r
673\r