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a3bcde70 1/** @file\r
9166f840 2 The implementation of IPsec.\r
a3bcde70 3\r
47b27101 4 Copyright (c) 2009 - 2011, Intel Corporation. All rights reserved.<BR>\r
a3bcde70
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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
9166f840 16#include "IpSecImpl.h"\r
17#include "IkeService.h"\r
18#include "IpSecDebug.h"\r
19#include "IpSecCryptIo.h"\r
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20#include "IpSecConfigImpl.h"\r
21\r
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22/**\r
23 Check if the specified Address is the Valid Address Range.\r
24\r
25 This function checks if the bytes after prefixed length are all Zero in this\r
9166f840 26 Address. This Address is supposed to point to a range address. That means it \r
27 should gives the correct prefixed address and the bytes outside the prefixed are\r
28 zero.\r
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29\r
30 @param[in] IpVersion The IP version.\r
31 @param[in] Address Points to EFI_IP_ADDRESS to be checked.\r
32 @param[in] PrefixLength The PrefixeLength of this address.\r
33\r
34 @retval TRUE The address is a vaild address range.\r
35 @retval FALSE The address is not a vaild address range.\r
36\r
37**/\r
38BOOLEAN\r
39IpSecValidAddressRange (\r
40 IN UINT8 IpVersion,\r
41 IN EFI_IP_ADDRESS *Address,\r
42 IN UINT8 PrefixLength\r
43 )\r
44{\r
45 UINT8 Div;\r
46 UINT8 Mod;\r
47 UINT8 Mask;\r
48 UINT8 AddrLen;\r
49 UINT8 *Addr;\r
50 EFI_IP_ADDRESS ZeroAddr;\r
51\r
52 if (PrefixLength == 0) {\r
53 return TRUE;\r
54 }\r
55\r
56 AddrLen = (UINT8) ((IpVersion == IP_VERSION_4) ? 32 : 128);\r
57\r
58 if (AddrLen <= PrefixLength) {\r
59 return FALSE;\r
60 }\r
61\r
62 Div = (UINT8) (PrefixLength / 8);\r
63 Mod = (UINT8) (PrefixLength % 8);\r
64 Addr = (UINT8 *) Address;\r
65 ZeroMem (&ZeroAddr, sizeof (EFI_IP_ADDRESS));\r
66\r
67 //\r
68 // Check whether the mod part of host scope is zero or not.\r
69 //\r
70 if (Mod > 0) {\r
71 Mask = (UINT8) (0xFF << (8 - Mod));\r
72\r
73 if ((Addr[Div] | Mask) != Mask) {\r
74 return FALSE;\r
75 }\r
76\r
77 Div++;\r
78 }\r
79 //\r
80 // Check whether the div part of host scope is zero or not.\r
81 //\r
82 if (CompareMem (\r
83 &Addr[Div],\r
84 &ZeroAddr,\r
85 sizeof (EFI_IP_ADDRESS) - Div\r
86 ) != 0) {\r
87 return FALSE;\r
88 }\r
89\r
90 return TRUE;\r
91}\r
92\r
93/**\r
94 Extrct the Address Range from a Address.\r
95\r
96 This function keep the prefix address and zero other part address.\r
97\r
98 @param[in] Address Point to a specified address.\r
99 @param[in] PrefixLength The prefix length.\r
100 @param[out] Range Contain the return Address Range.\r
101\r
102**/\r
103VOID\r
104IpSecExtractAddressRange (\r
105 IN EFI_IP_ADDRESS *Address,\r
106 IN UINT8 PrefixLength,\r
107 OUT EFI_IP_ADDRESS *Range\r
108 )\r
109{\r
110 UINT8 Div;\r
111 UINT8 Mod;\r
112 UINT8 Mask;\r
113 UINT8 *Addr;\r
114\r
115 if (PrefixLength == 0) {\r
116 return ;\r
117 }\r
118\r
119 Div = (UINT8) (PrefixLength / 8);\r
120 Mod = (UINT8) (PrefixLength % 8);\r
121 Addr = (UINT8 *) Range;\r
122\r
123 CopyMem (Range, Address, sizeof (EFI_IP_ADDRESS));\r
124\r
125 //\r
126 // Zero the mod part of host scope.\r
127 //\r
128 if (Mod > 0) {\r
129 Mask = (UINT8) (0xFF << (8 - Mod));\r
130 Addr[Div] = (UINT8) (Addr[Div] & Mask);\r
131 Div++;\r
132 }\r
133 //\r
134 // Zero the div part of host scope.\r
135 //\r
136 ZeroMem (&Addr[Div], sizeof (EFI_IP_ADDRESS) - Div);\r
137\r
138}\r
139\r
140/**\r
141 Checks if the IP Address in the address range of AddressInfos specified.\r
142\r
143 @param[in] IpVersion The IP version.\r
144 @param[in] IpAddr Point to EFI_IP_ADDRESS to be check.\r
145 @param[in] AddressInfo A list of EFI_IP_ADDRESS_INFO that is used to check\r
146 the IP Address is matched.\r
147 @param[in] AddressCount The total numbers of the AddressInfo.\r
148\r
149 @retval TRUE If the Specified IP Address is in the range of the AddressInfos specified.\r
150 @retval FALSE If the Specified IP Address is not in the range of the AddressInfos specified.\r
151\r
152**/\r
153BOOLEAN\r
154IpSecMatchIpAddress (\r
155 IN UINT8 IpVersion,\r
156 IN EFI_IP_ADDRESS *IpAddr,\r
157 IN EFI_IP_ADDRESS_INFO *AddressInfo,\r
158 IN UINT32 AddressCount\r
159 )\r
160{\r
161 EFI_IP_ADDRESS Range;\r
162 UINT32 Index;\r
163 BOOLEAN IsMatch;\r
164\r
165 IsMatch = FALSE;\r
166\r
167 for (Index = 0; Index < AddressCount; Index++) {\r
168 //\r
169 // Check whether the target address is in the address range\r
170 // if it's a valid range of address.\r
171 //\r
172 if (IpSecValidAddressRange (\r
173 IpVersion,\r
174 &AddressInfo[Index].Address,\r
175 AddressInfo[Index].PrefixLength\r
176 )) {\r
177 //\r
178 // Get the range of the target address belongs to.\r
179 //\r
180 ZeroMem (&Range, sizeof (EFI_IP_ADDRESS));\r
181 IpSecExtractAddressRange (\r
182 IpAddr,\r
183 AddressInfo[Index].PrefixLength,\r
184 &Range\r
185 );\r
186\r
187 if (CompareMem (\r
188 &Range,\r
189 &AddressInfo[Index].Address,\r
190 sizeof (EFI_IP_ADDRESS)\r
191 ) == 0) {\r
192 //\r
193 // The target address is in the address range.\r
194 //\r
195 IsMatch = TRUE;\r
196 break;\r
197 }\r
198 }\r
199\r
200 if (CompareMem (\r
201 IpAddr,\r
202 &AddressInfo[Index].Address,\r
203 sizeof (EFI_IP_ADDRESS)\r
204 ) == 0) {\r
205 //\r
206 // The target address is exact same as the address.\r
207 //\r
208 IsMatch = TRUE;\r
209 break;\r
210 }\r
211 }\r
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212 return IsMatch;\r
213}\r
214\r
215/**\r
216 Check if the specified Protocol and Prot is supported by the specified SPD Entry.\r
217\r
218 This function is the subfunction of IPsecLookUpSpdEntry() that is used to\r
219 check if the sent/received IKE packet has the related SPD entry support.\r
220\r
221 @param[in] Protocol The Protocol to be checked.\r
222 @param[in] IpPayload Point to IP Payload to be check.\r
223 @param[in] SpdProtocol The Protocol supported by SPD.\r
224 @param[in] SpdLocalPort The Local Port in SPD.\r
225 @param[in] SpdRemotePort The Remote Port in SPD.\r
226 @param[in] IsOutbound Flag to indicate the is for IKE Packet sending or recieving.\r
227\r
228 @retval TRUE The Protocol and Port are supported by the SPD Entry.\r
229 @retval FALSE The Protocol and Port are not supported by the SPD Entry.\r
230\r
231**/\r
232BOOLEAN\r
233IpSecMatchNextLayerProtocol (\r
234 IN UINT8 Protocol,\r
235 IN UINT8 *IpPayload,\r
236 IN UINT16 SpdProtocol,\r
237 IN UINT16 SpdLocalPort,\r
238 IN UINT16 SpdRemotePort,\r
239 IN BOOLEAN IsOutbound\r
240 )\r
241{\r
242 BOOLEAN IsMatch;\r
243\r
244 if (SpdProtocol == EFI_IPSEC_ANY_PROTOCOL) {\r
245 return TRUE;\r
246 }\r
247\r
248 IsMatch = FALSE;\r
249\r
250 if (SpdProtocol == Protocol) {\r
251 switch (Protocol) {\r
252 case EFI_IP_PROTO_UDP:\r
253 case EFI_IP_PROTO_TCP:\r
254 //\r
255 // For udp and tcp, (0, 0) means no need to check local and remote\r
256 // port. The payload is passed from upper level, which means it should\r
257 // be in network order.\r
258 //\r
259 IsMatch = (BOOLEAN) (SpdLocalPort == 0 && SpdRemotePort == 0);\r
260 IsMatch = (BOOLEAN) (IsMatch ||\r
261 (IsOutbound &&\r
262 (BOOLEAN)(\r
263 NTOHS (((EFI_UDP_HEADER *) IpPayload)->SrcPort) == SpdLocalPort &&\r
264 NTOHS (((EFI_UDP_HEADER *) IpPayload)->DstPort) == SpdRemotePort\r
265 )\r
266 ));\r
267\r
268 IsMatch = (BOOLEAN) (IsMatch ||\r
269 (!IsOutbound &&\r
270 (BOOLEAN)(\r
271 NTOHS (((EFI_UDP_HEADER *) IpPayload)->DstPort) == SpdLocalPort &&\r
272 NTOHS (((EFI_UDP_HEADER *) IpPayload)->SrcPort) == SpdRemotePort\r
273 )\r
274 ));\r
275 break;\r
276\r
277 case EFI_IP_PROTO_ICMP:\r
278 //\r
279 // For icmpv4, type code is replaced with local port and remote port,\r
280 // and (0, 0) means no need to check.\r
281 //\r
282 IsMatch = (BOOLEAN) (SpdLocalPort == 0 && SpdRemotePort == 0);\r
283 IsMatch = (BOOLEAN) (IsMatch ||\r
284 (BOOLEAN) (((IP4_ICMP_HEAD *) IpPayload)->Type == SpdLocalPort &&\r
285 ((IP4_ICMP_HEAD *) IpPayload)->Code == SpdRemotePort\r
286 )\r
287 );\r
288 break;\r
289\r
290 case IP6_ICMP:\r
291 //\r
292 // For icmpv6, type code is replaced with local port and remote port,\r
293 // and (0, 0) means no need to check.\r
294 //\r
295 IsMatch = (BOOLEAN) (SpdLocalPort == 0 && SpdRemotePort == 0);\r
296\r
297 IsMatch = (BOOLEAN) (IsMatch ||\r
298 (BOOLEAN) (((IP6_ICMP_HEAD *) IpPayload)->Type == SpdLocalPort &&\r
299 ((IP6_ICMP_HEAD *) IpPayload)->Code == SpdRemotePort\r
300 )\r
301 );\r
302 break;\r
303\r
304 default:\r
305 IsMatch = TRUE;\r
306 break;\r
307 }\r
308 }\r
309\r
310 return IsMatch;\r
311}\r
312\r
313/**\r
314 Find the SAD through a specified SPD's SAD list.\r
315\r
316 @param[in] SadList SAD list related to a specified SPD entry.\r
317 @param[in] DestAddress The destination address used to find the SAD entry.\r
9166f840 318 @param[in] IpVersion The IP version. Ip4 or Ip6.\r
a3bcde70
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319\r
320 @return The pointer to a certain SAD entry.\r
321\r
322**/\r
323IPSEC_SAD_ENTRY *\r
324IpSecLookupSadBySpd (\r
325 IN LIST_ENTRY *SadList,\r
9166f840 326 IN EFI_IP_ADDRESS *DestAddress,\r
327 IN UINT8 IpVersion\r
a3bcde70
HT
328 )\r
329{\r
330 LIST_ENTRY *Entry;\r
331 IPSEC_SAD_ENTRY *SadEntry;\r
9166f840 332 \r
333 NET_LIST_FOR_EACH (Entry, SadList) {\r
a3bcde70
HT
334\r
335 SadEntry = IPSEC_SAD_ENTRY_FROM_SPD (Entry);\r
336 //\r
9166f840 337 // Find the right SAD entry which contains the appointed dest address.\r
a3bcde70 338 //\r
9166f840 339 if (IpSecMatchIpAddress (\r
340 IpVersion,\r
a3bcde70 341 DestAddress,\r
9166f840 342 SadEntry->Data->SpdSelector->RemoteAddress,\r
343 SadEntry->Data->SpdSelector->RemoteAddressCount\r
344 )){ \r
a3bcde70
HT
345 return SadEntry;\r
346 }\r
347 }\r
348\r
349 return NULL;\r
350}\r
351\r
352/**\r
353 Find the SAD through whole SAD list.\r
354\r
355 @param[in] Spi The SPI used to search the SAD entry.\r
356 @param[in] DestAddress The destination used to search the SAD entry.\r
9166f840 357 @param[in] IpVersion The IP version. Ip4 or Ip6.\r
a3bcde70
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358\r
359 @return the pointer to a certain SAD entry.\r
360\r
361**/\r
362IPSEC_SAD_ENTRY *\r
363IpSecLookupSadBySpi (\r
364 IN UINT32 Spi,\r
9166f840 365 IN EFI_IP_ADDRESS *DestAddress,\r
366 IN UINT8 IpVersion\r
a3bcde70
HT
367 )\r
368{\r
369 LIST_ENTRY *Entry;\r
370 LIST_ENTRY *SadList;\r
371 IPSEC_SAD_ENTRY *SadEntry;\r
372\r
373 SadList = &mConfigData[IPsecConfigDataTypeSad];\r
374\r
9166f840 375 NET_LIST_FOR_EACH (Entry, SadList) {\r
a3bcde70
HT
376\r
377 SadEntry = IPSEC_SAD_ENTRY_FROM_LIST (Entry);\r
9166f840 378\r
a3bcde70 379 //\r
9166f840 380 // Find the right SAD entry which contain the appointed spi and dest addr.\r
a3bcde70 381 //\r
9166f840 382 if (SadEntry->Id->Spi == Spi) {\r
383 if (SadEntry->Data->Mode == EfiIPsecTunnel) {\r
384 if (CompareMem (\r
385 &DestAddress, \r
386 &SadEntry->Data->TunnelDestAddress,\r
387 sizeof (EFI_IP_ADDRESS)\r
388 )) {\r
389 return SadEntry;\r
390 }\r
391 } else {\r
392 if (SadEntry->Data->SpdSelector != NULL &&\r
393 IpSecMatchIpAddress (\r
394 IpVersion, \r
395 DestAddress, \r
396 SadEntry->Data->SpdSelector->RemoteAddress,\r
397 SadEntry->Data->SpdSelector->RemoteAddressCount\r
398 )\r
399 ) {\r
400 return SadEntry;\r
401 } \r
402 }\r
a3bcde70
HT
403 }\r
404 }\r
a3bcde70
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405 return NULL;\r
406}\r
407\r
408/**\r
409 Look up if there is existing SAD entry for specified IP packet sending.\r
410\r
411 This function is called by the IPsecProcess when there is some IP packet needed to\r
412 send out. This function checks if there is an existing SAD entry that can be serviced\r
413 to this IP packet sending. If no existing SAD entry could be used, this\r
414 function will invoke an IPsec Key Exchange Negotiation.\r
415\r
416 @param[in] Private Points to private data.\r
417 @param[in] NicHandle Points to a NIC handle.\r
418 @param[in] IpVersion The version of IP.\r
419 @param[in] IpHead The IP Header of packet to be sent out.\r
420 @param[in] IpPayload The IP Payload to be sent out.\r
421 @param[in] OldLastHead The Last protocol of the IP packet.\r
422 @param[in] SpdEntry Points to a related SPD entry.\r
423 @param[out] SadEntry Contains the Point of a related SAD entry.\r
424\r
425 @retval EFI_DEVICE_ERROR One of following conditions is TRUE:\r
426 - If don't find related UDP service.\r
427 - Sequence Number is used up.\r
428 - Extension Sequence Number is used up.\r
a3bcde70
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429 @retval EFI_NOT_READY No existing SAD entry could be used.\r
430 @retval EFI_SUCCESS Find the related SAD entry.\r
431\r
432**/\r
433EFI_STATUS\r
434IpSecLookupSadEntry (\r
435 IN IPSEC_PRIVATE_DATA *Private,\r
436 IN EFI_HANDLE NicHandle,\r
437 IN UINT8 IpVersion,\r
438 IN VOID *IpHead,\r
439 IN UINT8 *IpPayload,\r
440 IN UINT8 OldLastHead,\r
441 IN IPSEC_SPD_ENTRY *SpdEntry,\r
442 OUT IPSEC_SAD_ENTRY **SadEntry\r
443 )\r
444{\r
9166f840 445 IKE_UDP_SERVICE *UdpService;\r
a3bcde70
HT
446 IPSEC_SAD_ENTRY *Entry;\r
447 IPSEC_SAD_DATA *Data;\r
448 EFI_IP_ADDRESS DestIp;\r
449 UINT32 SeqNum32;\r
450\r
451 *SadEntry = NULL;\r
9166f840 452 UdpService = IkeLookupUdp (Private, NicHandle, IpVersion);\r
453\r
454 if (UdpService == NULL) {\r
455 return EFI_DEVICE_ERROR;\r
456 }\r
a3bcde70
HT
457 //\r
458 // Parse the destination address from ip header.\r
459 //\r
460 ZeroMem (&DestIp, sizeof (EFI_IP_ADDRESS));\r
461 if (IpVersion == IP_VERSION_4) {\r
462 CopyMem (\r
463 &DestIp,\r
464 &((IP4_HEAD *) IpHead)->Dst,\r
465 sizeof (IP4_ADDR)\r
466 );\r
467 } else {\r
468 CopyMem (\r
469 &DestIp,\r
470 &((EFI_IP6_HEADER *) IpHead)->DestinationAddress,\r
471 sizeof (EFI_IP_ADDRESS)\r
472 );\r
473 }\r
9166f840 474 \r
a3bcde70 475 //\r
9166f840 476 // Find the SAD entry in the spd.sas list according to the dest address.\r
a3bcde70 477 //\r
9166f840 478 Entry = IpSecLookupSadBySpd (&SpdEntry->Data->Sas, &DestIp, IpVersion);\r
a3bcde70
HT
479\r
480 if (Entry == NULL) {\r
481\r
482 if (OldLastHead != IP6_ICMP ||\r
483 (OldLastHead == IP6_ICMP && *IpPayload == ICMP_V6_ECHO_REQUEST)\r
484 ) {\r
485 //\r
9166f840 486 // Start ike negotiation process except the request packet of ping.\r
a3bcde70 487 //\r
9166f840 488 if (SpdEntry->Data->ProcessingPolicy->Mode == EfiIPsecTunnel) {\r
489 IkeNegotiate (\r
490 UdpService,\r
491 SpdEntry,\r
492 &SpdEntry->Data->ProcessingPolicy->TunnelOption->RemoteTunnelAddress\r
493 );\r
494 } else {\r
495 IkeNegotiate (\r
496 UdpService,\r
497 SpdEntry,\r
498 &DestIp\r
499 );\r
500 }\r
501 \r
a3bcde70
HT
502 }\r
503\r
504 return EFI_NOT_READY;\r
505 }\r
506\r
507 Data = Entry->Data;\r
508\r
509 if (!Data->ManualSet) {\r
510 if (Data->ESNEnabled) {\r
511 //\r
512 // Validate the 64bit sn number if 64bit sn enabled.\r
513 //\r
9166f840 514 if ((UINT64) (Data->SequenceNumber + 1) == 0) {\r
a3bcde70
HT
515 //\r
516 // TODO: Re-negotiate SA\r
517 //\r
518 return EFI_DEVICE_ERROR;\r
519 }\r
520 } else {\r
521 //\r
522 // Validate the 32bit sn number if 64bit sn disabled.\r
523 //\r
524 SeqNum32 = (UINT32) Data->SequenceNumber;\r
9166f840 525 if ((UINT32) (SeqNum32 + 1) == 0) {\r
a3bcde70
HT
526 //\r
527 // TODO: Re-negotiate SA\r
528 //\r
529 return EFI_DEVICE_ERROR;\r
530 }\r
531 }\r
532 }\r
533\r
534 *SadEntry = Entry;\r
535\r
536 return EFI_SUCCESS;\r
537}\r
538\r
539/**\r
540 Find a PAD entry according to a remote IP address.\r
541\r
542 @param[in] IpVersion The version of IP.\r
543 @param[in] IpAddr Points to remote IP address.\r
544\r
545 @return the pointer of related PAD entry.\r
546\r
547**/\r
548IPSEC_PAD_ENTRY *\r
549IpSecLookupPadEntry (\r
550 IN UINT8 IpVersion,\r
551 IN EFI_IP_ADDRESS *IpAddr\r
552 )\r
553{\r
554 LIST_ENTRY *PadList;\r
555 LIST_ENTRY *Entry;\r
556 EFI_IP_ADDRESS_INFO *IpAddrInfo;\r
557 IPSEC_PAD_ENTRY *PadEntry;\r
558\r
559 PadList = &mConfigData[IPsecConfigDataTypePad];\r
560\r
561 for (Entry = PadList->ForwardLink; Entry != PadList; Entry = Entry->ForwardLink) {\r
562\r
563 PadEntry = IPSEC_PAD_ENTRY_FROM_LIST (Entry);\r
564 IpAddrInfo = &PadEntry->Id->Id.IpAddress;\r
565 //\r
566 // Find the right pad entry which contain the appointed dest addr.\r
567 //\r
568 if (IpSecMatchIpAddress (IpVersion, IpAddr, IpAddrInfo, 1)) {\r
569 return PadEntry;\r
570 }\r
571 }\r
572\r
573 return NULL;\r
574}\r
575\r
576/**\r
577 Check if the specified IP packet can be serviced by this SPD entry.\r
578\r
579 @param[in] SpdEntry Point to SPD entry.\r
580 @param[in] IpVersion Version of IP.\r
581 @param[in] IpHead Point to IP header.\r
582 @param[in] IpPayload Point to IP payload.\r
583 @param[in] Protocol The Last protocol of IP packet.\r
584 @param[in] IsOutbound Traffic direction.\r
9166f840 585 @param[out] Action The support action of SPD entry.\r
a3bcde70 586\r
9166f840 587 @retval EFI_SUCCESS Find the related SPD.\r
588 @retval EFI_NOT_FOUND Not find the related SPD entry;\r
a3bcde70
HT
589\r
590**/\r
9166f840 591EFI_STATUS\r
a3bcde70 592IpSecLookupSpdEntry (\r
9166f840 593 IN IPSEC_SPD_ENTRY *SpdEntry,\r
594 IN UINT8 IpVersion,\r
595 IN VOID *IpHead,\r
596 IN UINT8 *IpPayload,\r
597 IN UINT8 Protocol,\r
598 IN BOOLEAN IsOutbound, \r
599 OUT EFI_IPSEC_ACTION *Action\r
a3bcde70
HT
600 )\r
601{\r
602 EFI_IPSEC_SPD_SELECTOR *SpdSel;\r
603 IP4_HEAD *Ip4;\r
604 EFI_IP6_HEADER *Ip6;\r
605 EFI_IP_ADDRESS SrcAddr;\r
606 EFI_IP_ADDRESS DstAddr;\r
607 BOOLEAN SpdMatch;\r
608\r
609 ASSERT (SpdEntry != NULL);\r
610 SpdSel = SpdEntry->Selector;\r
611 Ip4 = (IP4_HEAD *) IpHead;\r
612 Ip6 = (EFI_IP6_HEADER *) IpHead;\r
613\r
614 ZeroMem (&SrcAddr, sizeof (EFI_IP_ADDRESS));\r
615 ZeroMem (&DstAddr, sizeof (EFI_IP_ADDRESS));\r
616\r
617 //\r
618 // Parse the source and destination address from ip header.\r
619 //\r
620 if (IpVersion == IP_VERSION_4) {\r
621 CopyMem (&SrcAddr, &Ip4->Src, sizeof (IP4_ADDR));\r
622 CopyMem (&DstAddr, &Ip4->Dst, sizeof (IP4_ADDR));\r
623 } else {\r
624 CopyMem (&SrcAddr, &Ip6->SourceAddress, sizeof (EFI_IPv6_ADDRESS));\r
625 CopyMem (&DstAddr, &Ip6->DestinationAddress, sizeof (EFI_IPv6_ADDRESS));\r
626 }\r
627 //\r
628 // Check the local and remote addresses for outbound traffic\r
629 //\r
630 SpdMatch = (BOOLEAN)(IsOutbound &&\r
631 IpSecMatchIpAddress (\r
632 IpVersion,\r
633 &SrcAddr,\r
634 SpdSel->LocalAddress,\r
635 SpdSel->LocalAddressCount\r
636 ) &&\r
637 IpSecMatchIpAddress (\r
638 IpVersion,\r
639 &DstAddr,\r
640 SpdSel->RemoteAddress,\r
641 SpdSel->RemoteAddressCount\r
642 )\r
643 );\r
644\r
645 //\r
646 // Check the local and remote addresses for inbound traffic\r
647 //\r
648 SpdMatch = (BOOLEAN) (SpdMatch ||\r
649 (!IsOutbound &&\r
650 IpSecMatchIpAddress (\r
651 IpVersion,\r
652 &DstAddr,\r
653 SpdSel->LocalAddress,\r
654 SpdSel->LocalAddressCount\r
655 ) &&\r
656 IpSecMatchIpAddress (\r
657 IpVersion,\r
658 &SrcAddr,\r
659 SpdSel->RemoteAddress,\r
660 SpdSel->RemoteAddressCount\r
661 )\r
662 ));\r
663\r
664 //\r
665 // Check the next layer protocol and local and remote ports.\r
666 //\r
667 SpdMatch = (BOOLEAN) (SpdMatch &&\r
668 IpSecMatchNextLayerProtocol (\r
669 Protocol,\r
670 IpPayload,\r
671 SpdSel->NextLayerProtocol,\r
672 SpdSel->LocalPort,\r
673 SpdSel->RemotePort,\r
674 IsOutbound\r
675 )\r
676 );\r
677\r
678 if (SpdMatch) {\r
679 //\r
9166f840 680 // Find the right SPD entry if match the 5 key elements.\r
a3bcde70 681 //\r
9166f840 682 *Action = SpdEntry->Data->Action;\r
683 return EFI_SUCCESS;\r
a3bcde70
HT
684 }\r
685\r
9166f840 686 return EFI_NOT_FOUND;\r
a3bcde70
HT
687}\r
688\r
689/**\r
9166f840 690 The call back function of NetbufFromExt.\r
691\r
692 @param[in] Arg The argument passed from the caller.\r
a3bcde70
HT
693\r
694**/\r
9166f840 695VOID\r
a3bcde70 696EFIAPI\r
9166f840 697IpSecOnRecyclePacket (\r
698 IN VOID *Arg\r
a3bcde70
HT
699 )\r
700{\r
9166f840 701}\r
702\r
703/**\r
704 This is a Notification function. It is called when the related IP6_TXTOKEN_WRAP\r
705 is released.\r
706\r
707 @param[in] Event The related event.\r
708 @param[in] Context The data passed by the caller.\r
709\r
710**/\r
711VOID\r
712EFIAPI\r
713IpSecRecycleCallback (\r
714 IN EFI_EVENT Event,\r
715 IN VOID *Context\r
716 )\r
717{\r
718 IPSEC_RECYCLE_CONTEXT *RecycleContext;\r
719\r
720 RecycleContext = (IPSEC_RECYCLE_CONTEXT *) Context;\r
721\r
722 if (RecycleContext->FragmentTable != NULL) {\r
723 FreePool (RecycleContext->FragmentTable);\r
724 }\r
725\r
726 if (RecycleContext->PayloadBuffer != NULL) {\r
727 FreePool (RecycleContext->PayloadBuffer);\r
728 }\r
729\r
730 FreePool (RecycleContext);\r
731 gBS->CloseEvent (Event);\r
732\r
733}\r
734\r
735/**\r
736 Calculate the extension hader of IP. The return length only doesn't contain \r
737 the fixed IP header length.\r
738\r
739 @param[in] IpHead Points to an IP head to be calculated.\r
740 @param[in] LastHead Points to the last header of the IP header.\r
741\r
742 @return The length of the extension header.\r
743\r
744**/\r
745UINT16\r
746IpSecGetPlainExtHeadSize (\r
747 IN VOID *IpHead,\r
748 IN UINT8 *LastHead\r
749 )\r
750{\r
751 UINT16 Size;\r
752\r
753 Size = (UINT16) (LastHead - (UINT8 *) IpHead);\r
754\r
755 if (Size > sizeof (EFI_IP6_HEADER)) {\r
756 //\r
757 // * (LastHead+1) point the last header's length but not include the first\r
758 // 8 octers, so this formluation add 8 at the end.\r
759 //\r
760 Size = (UINT16) (Size - sizeof (EFI_IP6_HEADER) + *(LastHead + 1) + 8);\r
761 } else {\r
762 Size = 0;\r
763 }\r
764\r
765 return Size;\r
766}\r
767\r
768/**\r
769 Verify if the Authentication payload is correct.\r
770\r
771 @param[in] EspBuffer Points to the ESP wrapped buffer.\r
772 @param[in] EspSize The size of the ESP wrapped buffer.\r
773 @param[in] SadEntry The related SAD entry to store the authentication\r
774 algorithm key.\r
775 @param[in] IcvSize The length of ICV.\r
776\r
777 @retval EFI_SUCCESS The authentication data is correct.\r
778 @retval EFI_ACCESS_DENIED The authentication data is not correct.\r
779\r
780**/\r
781EFI_STATUS\r
782IpSecEspAuthVerifyPayload (\r
783 IN UINT8 *EspBuffer,\r
784 IN UINTN EspSize,\r
785 IN IPSEC_SAD_ENTRY *SadEntry,\r
4cb0548d 786 IN UINTN IcvSize\r
9166f840 787 )\r
788{\r
789 EFI_STATUS Status;\r
790 UINTN AuthSize;\r
791 UINT8 IcvBuffer[12];\r
792 HASH_DATA_FRAGMENT HashFragment[1];\r
793\r
794 //\r
795 // Calculate the size of authentication payload.\r
796 //\r
4cb0548d 797 AuthSize = EspSize - IcvSize;\r
9166f840 798\r
799 //\r
800 // Calculate the icv buffer and size of the payload.\r
801 //\r
802 HashFragment[0].Data = EspBuffer;\r
803 HashFragment[0].DataSize = AuthSize;\r
804 \r
805 Status = IpSecCryptoIoHmac (\r
806 SadEntry->Data->AlgoInfo.EspAlgoInfo.AuthAlgoId,\r
807 SadEntry->Data->AlgoInfo.EspAlgoInfo.AuthKey,\r
808 SadEntry->Data->AlgoInfo.EspAlgoInfo.AuthKeyLength,\r
809 HashFragment,\r
810 1,\r
811 IcvBuffer,\r
4cb0548d 812 IcvSize\r
9166f840 813 );\r
814 if (EFI_ERROR (Status)) {\r
815 return Status;\r
816 }\r
817 \r
818 //\r
819 // Compare the calculated icv and the appended original icv.\r
820 //\r
4cb0548d 821 if (CompareMem (EspBuffer + AuthSize, IcvBuffer, IcvSize) == 0) {\r
9166f840 822 return EFI_SUCCESS;\r
823 }\r
824\r
825 DEBUG ((DEBUG_ERROR, "Error auth verify payload\n"));\r
826 return EFI_ACCESS_DENIED;\r
827}\r
828\r
829/**\r
830 Search the related SAD entry by the input .\r
831\r
832 @param[in] IpHead The pointer to IP header.\r
833 @param[in] IpVersion The version of IP (IP4 or IP6).\r
834 @param[in] Spi The SPI used to search the related SAD entry.\r
835 \r
836\r
837 @retval NULL Not find the related SAD entry.\r
838 @retval IPSEC_SAD_ENTRY Return the related SAD entry. \r
839\r
840**/\r
841IPSEC_SAD_ENTRY *\r
842IpSecFoundSadFromInboundPacket (\r
843 UINT8 *IpHead,\r
844 UINT8 IpVersion,\r
845 UINT32 Spi\r
846 ) \r
847{\r
848 EFI_IP_ADDRESS DestIp;\r
849 \r
850 //\r
851 // Parse destination address from ip header.\r
852 //\r
853 ZeroMem (&DestIp, sizeof (EFI_IP_ADDRESS));\r
854 if (IpVersion == IP_VERSION_4) {\r
855 CopyMem (\r
856 &DestIp,\r
857 &((IP4_HEAD *) IpHead)->Dst,\r
858 sizeof (IP4_ADDR)\r
859 );\r
860 } else {\r
861 CopyMem (\r
862 &DestIp,\r
863 &((EFI_IP6_HEADER *) IpHead)->DestinationAddress,\r
864 sizeof (EFI_IPv6_ADDRESS)\r
865 );\r
866 }\r
867 \r
868 //\r
869 // Lookup SAD entry according to the spi and dest address.\r
870 // \r
871 return IpSecLookupSadBySpi (Spi, &DestIp, IpVersion);\r
872}\r
873\r
874/**\r
875 Validate the IP6 extension header format for both the packets we received\r
876 and that we will transmit.\r
877\r
878 @param[in] NextHeader The next header field in IPv6 basic header.\r
879 @param[in] ExtHdrs The first bye of the option.\r
880 @param[in] ExtHdrsLen The length of the whole option.\r
881 @param[out] LastHeader The pointer of NextHeader of the last extension\r
882 header processed by IP6.\r
883 @param[out] RealExtsLen The length of extension headers processed by IP6 layer.\r
884 This is an optional parameter that may be NULL.\r
885\r
886 @retval TRUE The option is properly formated.\r
887 @retval FALSE The option is malformated.\r
888\r
889**/\r
890BOOLEAN\r
891IpSecIsIp6ExtsValid (\r
892 IN UINT8 *NextHeader,\r
893 IN UINT8 *ExtHdrs,\r
894 IN UINT32 ExtHdrsLen,\r
895 OUT UINT8 **LastHeader,\r
896 OUT UINT32 *RealExtsLen OPTIONAL\r
897 )\r
898{\r
899 UINT32 Pointer;\r
900 UINT8 *Option;\r
901 UINT8 OptionLen;\r
902 BOOLEAN Flag;\r
903 UINT8 CountD;\r
904 UINT8 CountF;\r
905 UINT8 CountA;\r
906\r
907 if (RealExtsLen != NULL) {\r
908 *RealExtsLen = 0;\r
909 }\r
910\r
911 *LastHeader = NextHeader;\r
a3bcde70 912\r
9166f840 913 if (ExtHdrs == NULL && ExtHdrsLen == 0) {\r
914 return TRUE;\r
915 }\r
916\r
917 if ((ExtHdrs == NULL && ExtHdrsLen != 0) || (ExtHdrs != NULL && ExtHdrsLen == 0)) {\r
918 return FALSE;\r
919 }\r
920\r
921 Pointer = 0;\r
922 Flag = FALSE;\r
923 CountD = 0;\r
924 CountF = 0;\r
925 CountA = 0;\r
926\r
927 while (Pointer <= ExtHdrsLen) {\r
928\r
929 switch (*NextHeader) {\r
930 case IP6_HOP_BY_HOP:\r
931 if (Pointer != 0) {\r
932 return FALSE;\r
933 }\r
934\r
935 Flag = TRUE;\r
936\r
937 //\r
938 // Fall through\r
939 //\r
940 case IP6_DESTINATION:\r
941 if (*NextHeader == IP6_DESTINATION) {\r
942 CountD++;\r
943 }\r
944\r
945 if (CountD > 2) {\r
946 return FALSE;\r
947 }\r
948\r
949 NextHeader = ExtHdrs + Pointer;\r
950\r
951 Pointer++;\r
952 Option = ExtHdrs + Pointer;\r
953 OptionLen = (UINT8) ((*Option + 1) * 8 - 2);\r
954 Option++;\r
955 Pointer++;\r
956\r
957 Pointer = Pointer + OptionLen;\r
958 break;\r
959\r
960 case IP6_FRAGMENT:\r
961 if (++CountF > 1) {\r
962 return FALSE;\r
963 }\r
a3bcde70 964 //\r
9166f840 965 // RFC2402, AH header should after fragment header.\r
a3bcde70 966 //\r
9166f840 967 if (CountA > 1) {\r
968 return FALSE;\r
969 }\r
970\r
971 NextHeader = ExtHdrs + Pointer;\r
972 Pointer = Pointer + 8;\r
973 break;\r
a3bcde70 974\r
9166f840 975 case IP6_AH:\r
976 if (++CountA > 1) {\r
977 return FALSE;\r
978 }\r
979\r
980 Option = ExtHdrs + Pointer;\r
981 NextHeader = Option;\r
982 Option++;\r
a3bcde70 983 //\r
9166f840 984 // RFC2402, Payload length is specified in 32-bit words, minus "2".\r
a3bcde70 985 //\r
9166f840 986 OptionLen = (UINT8) ((*Option + 2) * 4);\r
987 Pointer = Pointer + OptionLen;\r
988 break;\r
989\r
990 default:\r
991 *LastHeader = NextHeader;\r
992 if (RealExtsLen != NULL) {\r
993 *RealExtsLen = Pointer;\r
994 }\r
995\r
996 return TRUE;\r
997 } \r
998 }\r
999\r
1000 *LastHeader = NextHeader;\r
1001\r
1002 if (RealExtsLen != NULL) {\r
1003 *RealExtsLen = Pointer;\r
1004 }\r
1005\r
1006 return TRUE;\r
1007}\r
1008\r
1009/**\r
1010 The actual entry to process the tunnel header and inner header for tunnel mode \r
1011 outbound traffic.\r
1012\r
1013 This function is the subfunction of IpSecEspInboundPacket(). It change the destination \r
1014 Ip address to the station address and recalculate the uplayyer's checksum.\r
1015 \r
1016\r
1017 @param[in, out] IpHead Points to the IP header containing the ESP header \r
1018 to be trimed on input, and without ESP header\r
1019 on return.\r
1020 @param[in] IpPayload The decrypted Ip payload. It start from the inner\r
1021 header.\r
1022 @param[in] IpVersion The version of IP.\r
1023 @param[in] SadData Pointer of the relevant SAD.\r
1024 @param[in, out] LastHead The Last Header in IP header on return.\r
1025\r
1026**/\r
1027VOID\r
1028IpSecTunnelInboundPacket (\r
1029 IN OUT UINT8 *IpHead,\r
1030 IN UINT8 *IpPayload,\r
1031 IN UINT8 IpVersion,\r
1032 IN IPSEC_SAD_DATA *SadData,\r
1033 IN OUT UINT8 *LastHead\r
1034 )\r
1035{\r
1036 EFI_UDP_HEADER *UdpHeader;\r
1037 TCP_HEAD *TcpHeader;\r
1038 UINT16 *Checksum;\r
1039 UINT16 PseudoChecksum;\r
1040 UINT16 PacketChecksum;\r
1041 UINT32 OptionLen;\r
1042 IP6_ICMP_HEAD *Icmp6Head;\r
1043\r
1044 Checksum = NULL;\r
1045 \r
1046 if (IpVersion == IP_VERSION_4) {\r
1047 //\r
1048 // Zero OutIP header use this to indicate the input packet is under \r
1049 // IPsec Tunnel protected.\r
1050 //\r
1051 ZeroMem (\r
1052 (IP4_HEAD *)IpHead,\r
1053 sizeof (IP4_HEAD)\r
1054 );\r
1055 CopyMem (\r
1056 &((IP4_HEAD *)IpPayload)->Dst,\r
1057 &SadData->TunnelDestAddress.v4,\r
1058 sizeof (EFI_IPv4_ADDRESS)\r
1059 );\r
1060 \r
1061 //\r
1062 // Recalculate IpHeader Checksum\r
1063 //\r
1064 if (((IP4_HEAD *)(IpPayload))->Checksum != 0 ) {\r
1065 ((IP4_HEAD *)(IpPayload))->Checksum = 0;\r
1066 ((IP4_HEAD *)(IpPayload))->Checksum = (UINT16) (~NetblockChecksum (\r
1067 (UINT8 *)IpPayload, \r
1068 ((IP4_HEAD *)IpPayload)->HeadLen << 2\r
1069 ));\r
1070\r
1071\r
1072 }\r
1073 \r
1074 //\r
1075 // Recalcualte PseudoChecksum\r
1076 //\r
1077 switch (((IP4_HEAD *)IpPayload)->Protocol) {\r
1078 case EFI_IP_PROTO_UDP :\r
1079 UdpHeader = (EFI_UDP_HEADER *)((UINT8 *)IpPayload + (((IP4_HEAD *)IpPayload)->HeadLen << 2));\r
1080 Checksum = & UdpHeader->Checksum;\r
1081 *Checksum = 0;\r
1082 break;\r
1083\r
1084 case EFI_IP_PROTO_TCP:\r
1085 TcpHeader = (TCP_HEAD *) ((UINT8 *)IpPayload + (((IP4_HEAD *)IpPayload)->HeadLen << 2));\r
1086 Checksum = &TcpHeader->Checksum;\r
1087 *Checksum = 0;\r
1088 break;\r
1089\r
1090 default:\r
1091 break;\r
a3bcde70 1092 }\r
9166f840 1093 PacketChecksum = NetblockChecksum (\r
1094 (UINT8 *)IpPayload + (((IP4_HEAD *)IpPayload)->HeadLen << 2), \r
1095 NTOHS (((IP4_HEAD *)IpPayload)->TotalLen) - (((IP4_HEAD *)IpPayload)->HeadLen << 2)\r
1096 );\r
1097 PseudoChecksum = NetPseudoHeadChecksum (\r
1098 ((IP4_HEAD *)IpPayload)->Src,\r
1099 ((IP4_HEAD *)IpPayload)->Dst,\r
1100 ((IP4_HEAD *)IpPayload)->Protocol,\r
1101 0\r
1102 );\r
1103 \r
1104 if (Checksum != NULL) {\r
1105 *Checksum = NetAddChecksum (PacketChecksum, PseudoChecksum);\r
1106 *Checksum = (UINT16) ~(NetAddChecksum (*Checksum, HTONS((UINT16)(NTOHS (((IP4_HEAD *)IpPayload)->TotalLen) - (((IP4_HEAD *)IpPayload)->HeadLen << 2)))));\r
a3bcde70 1107 }\r
9166f840 1108 }else {\r
1109 //\r
1110 // Zero OutIP header use this to indicate the input packet is under \r
1111 // IPsec Tunnel protected.\r
1112 //\r
1113 ZeroMem (\r
1114 IpHead,\r
1115 sizeof (EFI_IP6_HEADER)\r
1116 );\r
1117 CopyMem (\r
1118 &((EFI_IP6_HEADER*)IpPayload)->DestinationAddress,\r
1119 &SadData->TunnelDestAddress.v6,\r
1120 sizeof (EFI_IPv6_ADDRESS)\r
1121 );\r
1122 \r
1123 //\r
1124 // Get the Extension Header and Header length.\r
1125 //\r
1126 IpSecIsIp6ExtsValid (\r
1127 &((EFI_IP6_HEADER *)IpPayload)->NextHeader,\r
1128 IpPayload + sizeof (EFI_IP6_HEADER),\r
1129 ((EFI_IP6_HEADER *)IpPayload)->PayloadLength,\r
1130 &LastHead,\r
1131 &OptionLen\r
1132 );\r
1133 \r
1134 //\r
1135 // Recalcualte PseudoChecksum\r
1136 //\r
1137 switch (*LastHead) {\r
1138 case EFI_IP_PROTO_UDP:\r
1139 UdpHeader = (EFI_UDP_HEADER *)((UINT8 *)IpPayload + sizeof (EFI_IP6_HEADER) + OptionLen);\r
1140 Checksum = &UdpHeader->Checksum;\r
1141 *Checksum = 0;\r
1142 break;\r
a3bcde70 1143\r
9166f840 1144 case EFI_IP_PROTO_TCP:\r
1145 TcpHeader = (TCP_HEAD *)(IpPayload + sizeof (EFI_IP6_HEADER) + OptionLen);\r
1146 Checksum = &TcpHeader->Checksum;\r
1147 *Checksum = 0;\r
1148 break;\r
1149\r
1150 case IP6_ICMP:\r
1151 Icmp6Head = (IP6_ICMP_HEAD *) (IpPayload + sizeof (EFI_IP6_HEADER) + OptionLen);\r
1152 Checksum = &Icmp6Head->Checksum;\r
1153 *Checksum = 0;\r
1154 break;\r
1155 }\r
1156 PacketChecksum = NetblockChecksum (\r
1157 IpPayload + sizeof (EFI_IP6_HEADER) + OptionLen, \r
1158 NTOHS(((EFI_IP6_HEADER *)IpPayload)->PayloadLength) - OptionLen\r
1159 );\r
1160 PseudoChecksum = NetIp6PseudoHeadChecksum (\r
1161 &((EFI_IP6_HEADER *)IpPayload)->SourceAddress,\r
1162 &((EFI_IP6_HEADER *)IpPayload)->DestinationAddress,\r
1163 *LastHead,\r
1164 0\r
1165 );\r
1166 \r
1167 if (Checksum != NULL) {\r
1168 *Checksum = NetAddChecksum (PacketChecksum, PseudoChecksum);\r
1169 *Checksum = (UINT16) ~(NetAddChecksum (\r
1170 *Checksum,\r
1171 HTONS ((UINT16)((NTOHS (((EFI_IP6_HEADER *)(IpPayload))->PayloadLength)) - OptionLen))\r
1172 ));\r
a3bcde70 1173 }\r
9166f840 1174 } \r
1175}\r
1176\r
1177/**\r
1178 The actual entry to create inner header for tunnel mode inbound traffic.\r
1179\r
1180 This function is the subfunction of IpSecEspOutboundPacket(). It create \r
1181 the sending packet by encrypting its payload and inserting ESP header in the orginal \r
1182 IP header, then return the IpHeader and IPsec protected Fragmentable.\r
1183 \r
1184 @param[in, out] IpHead Points to IP header containing the orginal IP header \r
1185 to be processed on input, and inserted ESP header\r
1186 on return.\r
1187 @param[in] IpVersion The version of IP.\r
1188 @param[in] SadData The related SAD data.\r
1189 @param[in, out] LastHead The Last Header in IP header. \r
47b27101 1190 @param[in] OptionsBuffer Pointer to the options buffer.\r
1191 @param[in] OptionsLength Length of the options buffer.\r
9166f840 1192 @param[in, out] FragmentTable Pointer to a list of fragments to be protected by\r
1193 IPsec on input, and with IPsec protected\r
1194 on return.\r
1195 @param[in] FragmentCount The number of fragments.\r
1196\r
1197 @retval EFI_SUCCESS The operation was successful.\r
1198 @retval EFI_OUT_OF_RESOURCES The required system resources can't be allocated.\r
1199\r
1200**/\r
1201UINT8 *\r
1202IpSecTunnelOutboundPacket (\r
1203 IN OUT UINT8 *IpHead,\r
1204 IN UINT8 IpVersion,\r
1205 IN IPSEC_SAD_DATA *SadData,\r
1206 IN OUT UINT8 *LastHead,\r
1207 IN VOID **OptionsBuffer,\r
1208 IN UINT32 *OptionsLength,\r
1209 IN OUT EFI_IPSEC_FRAGMENT_DATA **FragmentTable,\r
1210 IN UINT32 *FragmentCount\r
1211 )\r
1212{\r
1213 UINT8 *InnerHead;\r
1214 NET_BUF *Packet;\r
1215 UINT16 PacketChecksum;\r
1216 UINT16 *Checksum;\r
1217 UINT16 PseudoChecksum;\r
1218 IP6_ICMP_HEAD *IcmpHead;\r
1219\r
1220 Checksum = NULL;\r
1221 if (OptionsLength == NULL) {\r
1222 return NULL;\r
a3bcde70 1223 }\r
9166f840 1224 \r
1225 if (IpVersion == IP_VERSION_4) {\r
1226 InnerHead = AllocateZeroPool (sizeof (IP4_HEAD) + *OptionsLength);\r
1227 ASSERT (InnerHead != NULL);\r
1228 CopyMem (\r
1229 InnerHead,\r
1230 IpHead,\r
1231 sizeof (IP4_HEAD)\r
1232 );\r
1233 CopyMem (\r
1234 InnerHead + sizeof (IP4_HEAD),\r
1235 *OptionsBuffer,\r
1236 *OptionsLength\r
1237 );\r
1238 } else {\r
1239 InnerHead = AllocateZeroPool (sizeof (EFI_IP6_HEADER) + *OptionsLength);\r
02a758cb 1240 ASSERT (InnerHead != NULL);\r
9166f840 1241 CopyMem (\r
1242 InnerHead,\r
1243 IpHead,\r
1244 sizeof (EFI_IP6_HEADER)\r
1245 );\r
1246 CopyMem (\r
1247 InnerHead + sizeof (EFI_IP6_HEADER),\r
1248 *OptionsBuffer,\r
1249 *OptionsLength\r
1250 );\r
1251 }\r
1252 if (OptionsBuffer != NULL) {\r
1253 if (*OptionsLength != 0) {\r
a3bcde70 1254\r
9166f840 1255 *OptionsBuffer = NULL;\r
1256 *OptionsLength = 0;\r
1257 }\r
1258 }\r
1259 \r
1260 //\r
1261 // 2. Reassamlbe Fragment into Packet\r
1262 //\r
1263 Packet = NetbufFromExt (\r
1264 (NET_FRAGMENT *)(*FragmentTable),\r
1265 *FragmentCount,\r
1266 0,\r
1267 0,\r
1268 IpSecOnRecyclePacket,\r
1269 NULL\r
1270 );\r
1271 ASSERT (Packet != NULL);\r
1272 //\r
1273 // 3. Check the Last Header, if it is TCP, UDP or ICMP recalcualate its pesudo\r
1274 // CheckSum.\r
1275 //\r
1276 switch (*LastHead) {\r
1277 case EFI_IP_PROTO_UDP:\r
1278 Packet->Udp = (EFI_UDP_HEADER *) NetbufGetByte (Packet, 0, 0);\r
1279 ASSERT (Packet->Udp != NULL);\r
1280 Checksum = &Packet->Udp->Checksum;\r
1281 *Checksum = 0;\r
1282 break;\r
1283\r
1284 case EFI_IP_PROTO_TCP:\r
1285 Packet->Tcp = (TCP_HEAD *) NetbufGetByte (Packet, 0, 0);\r
1286 ASSERT (Packet->Tcp != NULL);\r
1287 Checksum = &Packet->Tcp->Checksum;\r
1288 *Checksum = 0;\r
1289 break;\r
1290\r
1291 case IP6_ICMP:\r
1292 IcmpHead = (IP6_ICMP_HEAD *) NetbufGetByte (Packet, 0, NULL);\r
1293 ASSERT (IcmpHead != NULL);\r
1294 Checksum = &IcmpHead->Checksum;\r
1295 *Checksum = 0;\r
1296 break;\r
1297 \r
1298 default: \r
1299 break;\r
1300 }\r
a3bcde70 1301\r
9166f840 1302 PacketChecksum = NetbufChecksum (Packet);\r
1303 \r
1304 if (IpVersion == IP_VERSION_4) {\r
a3bcde70 1305 //\r
9166f840 1306 // Replace the source address of Inner Header.\r
a3bcde70 1307 //\r
9166f840 1308 CopyMem (\r
1309 &((IP4_HEAD *)InnerHead)->Src,\r
1310 &SadData->SpdSelector->LocalAddress[0].Address.v4,\r
1311 sizeof (EFI_IPv4_ADDRESS)\r
1312 );\r
1313\r
1314 PacketChecksum = NetbufChecksum (Packet);\r
1315 PseudoChecksum = NetPseudoHeadChecksum (\r
1316 ((IP4_HEAD *)InnerHead)->Src,\r
1317 ((IP4_HEAD *)InnerHead)->Dst,\r
1318 *LastHead,\r
1319 0\r
1320 );\r
1321 \r
1322 } else {\r
1323 //\r
1324 // Replace the source address of Inner Header.\r
1325 //\r
1326 CopyMem (\r
1327 &((EFI_IP6_HEADER *)InnerHead)->SourceAddress,\r
1328 &(SadData->SpdSelector->LocalAddress[0].Address.v6),\r
1329 sizeof (EFI_IPv6_ADDRESS)\r
1330 );\r
1331 PacketChecksum = NetbufChecksum (Packet);\r
1332 PseudoChecksum = NetIp6PseudoHeadChecksum (\r
1333 &((EFI_IP6_HEADER *)InnerHead)->SourceAddress,\r
1334 &((EFI_IP6_HEADER *)InnerHead)->DestinationAddress,\r
1335 *LastHead,\r
1336 0\r
1337 );\r
1338 \r
1339 }\r
1340 if (Checksum != NULL) {\r
1341 *Checksum = NetAddChecksum (PacketChecksum, PseudoChecksum);\r
1342 *Checksum = (UINT16) ~(NetAddChecksum ((UINT16)*Checksum, HTONS ((UINT16) Packet->TotalSize)));\r
1343 }\r
1344\r
1345 if (Packet != NULL) {\r
1346 NetbufFree (Packet);\r
1347 }\r
1348 return InnerHead;\r
1349}\r
1350\r
1351/**\r
1352 The actual entry to relative function processes the inbound traffic of ESP header.\r
1353\r
1354 This function is the subfunction of IpSecProtectInboundPacket(). It checks the \r
1355 received packet security property and trim the ESP header and then returns without\r
1356 an IPsec protected IP Header and FramgmentTable.\r
1357 \r
1358 @param[in] IpVersion The version of IP.\r
1359 @param[in, out] IpHead Points to the IP header containing the ESP header \r
1360 to be trimed on input, and without ESP header\r
1361 on return.\r
1362 @param[out] LastHead The Last Header in IP header on return.\r
47b27101 1363 @param[in, out] OptionsBuffer Pointer to the options buffer.\r
1364 @param[in, out] OptionsLength Length of the options buffer.\r
9166f840 1365 @param[in, out] FragmentTable Pointer to a list of fragments in the form of IPsec\r
1366 protected on input, and without IPsec protected\r
1367 on return.\r
1368 @param[in, out] FragmentCount The number of fragments.\r
1369 @param[out] SpdSelector Pointer to contain the address of SPD selector on return.\r
1370 @param[out] RecycleEvent The event for recycling of resources.\r
1371\r
1372 @retval EFI_SUCCESS The operation was successful.\r
1373 @retval EFI_ACCESS_DENIED One or more following conditions is TRUE:\r
4cb0548d 1374 - ESP header was not found or mal-format.\r
9166f840 1375 - The related SAD entry was not found.\r
1376 - The related SAD entry does not support the ESP protocol.\r
1377 @retval EFI_OUT_OF_RESOURCES The required system resource can't be allocated.\r
1378\r
1379**/\r
1380EFI_STATUS\r
1381IpSecEspInboundPacket (\r
1382 IN UINT8 IpVersion,\r
1383 IN OUT VOID *IpHead,\r
1384 OUT UINT8 *LastHead,\r
47b27101 1385 IN OUT VOID **OptionsBuffer,\r
1386 IN OUT UINT32 *OptionsLength,\r
9166f840 1387 IN OUT EFI_IPSEC_FRAGMENT_DATA **FragmentTable,\r
1388 IN OUT UINT32 *FragmentCount,\r
1389 OUT EFI_IPSEC_SPD_SELECTOR **SpdSelector,\r
1390 OUT EFI_EVENT *RecycleEvent\r
1391 )\r
1392{\r
1393 EFI_STATUS Status;\r
1394 NET_BUF *Payload;\r
1395 UINTN EspSize;\r
1396 UINTN IvSize;\r
4cb0548d 1397 UINTN BlockSize;\r
1398 UINTN MiscSize;\r
9166f840 1399 UINTN PlainPayloadSize;\r
1400 UINTN PaddingSize;\r
1401 UINTN IcvSize;\r
1402 UINT8 *ProcessBuffer;\r
1403 EFI_ESP_HEADER *EspHeader;\r
1404 EFI_ESP_TAIL *EspTail;\r
1405 EFI_IPSEC_SA_ID *SaId;\r
1406 IPSEC_SAD_DATA *SadData;\r
1407 IPSEC_SAD_ENTRY *SadEntry;\r
1408 IPSEC_RECYCLE_CONTEXT *RecycleContext;\r
1409 UINT8 NextHeader;\r
1410 UINT16 IpSecHeadSize;\r
1411 UINT8 *InnerHead;\r
1412\r
1413 Status = EFI_SUCCESS;\r
1414 Payload = NULL;\r
1415 ProcessBuffer = NULL;\r
1416 RecycleContext = NULL;\r
1417 *RecycleEvent = NULL;\r
1418 PlainPayloadSize = 0;\r
1419 NextHeader = 0;\r
1420 \r
1421 //\r
1422 // Build netbuf from fragment table first.\r
1423 //\r
1424 Payload = NetbufFromExt (\r
1425 (NET_FRAGMENT *) *FragmentTable,\r
1426 *FragmentCount,\r
1427 0,\r
1428 sizeof (EFI_ESP_HEADER),\r
1429 IpSecOnRecyclePacket,\r
1430 NULL\r
a3bcde70 1431 );\r
9166f840 1432 if (Payload == NULL) {\r
1433 Status = EFI_OUT_OF_RESOURCES;\r
1434 goto ON_EXIT;\r
1435 }\r
1436 \r
1437 //\r
1438 // Get the esp size and esp header from netbuf.\r
1439 //\r
1440 EspSize = Payload->TotalSize;\r
1441 EspHeader = (EFI_ESP_HEADER *) NetbufGetByte (Payload, 0, NULL);\r
1442 \r
1443 if (EspHeader == NULL) {\r
1444 Status = EFI_ACCESS_DENIED;\r
1445 goto ON_EXIT;\r
1446 }\r
1447 \r
1448 //\r
1449 // Parse destination address from ip header and found the related SAD Entry.\r
1450 //\r
1451 SadEntry = IpSecFoundSadFromInboundPacket (\r
1452 IpHead, \r
1453 IpVersion,\r
1454 NTOHL (EspHeader->Spi)\r
1455 );\r
1456 \r
1457 if (SadEntry == NULL) {\r
1458 Status = EFI_ACCESS_DENIED;\r
1459 goto ON_EXIT;\r
1460 }\r
a3bcde70 1461\r
9166f840 1462 SaId = SadEntry->Id;\r
1463 SadData = SadEntry->Data;\r
a3bcde70 1464\r
9166f840 1465 //\r
1466 // Only support esp protocol currently.\r
1467 //\r
1468 if (SaId->Proto != EfiIPsecESP) {\r
1469 Status = EFI_ACCESS_DENIED;\r
1470 goto ON_EXIT;\r
1471 }\r
a3bcde70 1472\r
9166f840 1473 if (!SadData->ManualSet) {\r
1474 //\r
1475 // TODO: Check SA lifetime and sequence number\r
1476 //\r
1477 }\r
1478 \r
1479 //\r
1480 // Allocate buffer for decryption and authentication.\r
1481 //\r
1482 ProcessBuffer = AllocateZeroPool (EspSize);\r
1483 if (ProcessBuffer == NULL) {\r
1484 Status = EFI_OUT_OF_RESOURCES;\r
1485 goto ON_EXIT;\r
1486 }\r
1487\r
1488 NetbufCopy (Payload, 0, (UINT32) EspSize, ProcessBuffer);\r
1489\r
1490 //\r
4cb0548d 1491 // Get the IcvSize for authentication and BlockSize/IvSize for Decryption.\r
1492 //\r
1493 IcvSize = IpSecGetIcvLength (SadEntry->Data->AlgoInfo.EspAlgoInfo.AuthAlgoId);\r
1494 IvSize = IpSecGetEncryptIvLength (SadEntry->Data->AlgoInfo.EspAlgoInfo.EncAlgoId);\r
1495 BlockSize = IpSecGetEncryptBlockSize (SadEntry->Data->AlgoInfo.EspAlgoInfo.EncAlgoId);\r
1496 \r
1497 //\r
1498 // Make sure the ESP packet is not mal-formt.\r
1499 // 1. Check whether the Espsize is larger than ESP header + IvSize + EspTail + IcvSize.\r
1500 // 2. Check whether the left payload size is multiple of IvSize.\r
1501 //\r
1502 MiscSize = sizeof (EFI_ESP_HEADER) + IvSize + IcvSize;\r
1503 if (EspSize <= (MiscSize + sizeof (EFI_ESP_TAIL))) {\r
1504 Status = EFI_ACCESS_DENIED;\r
1505 goto ON_EXIT;\r
1506 }\r
1507 if ((EspSize - MiscSize) % BlockSize != 0) {\r
1508 Status = EFI_ACCESS_DENIED;\r
1509 goto ON_EXIT;\r
1510 }\r
1511\r
1512 //\r
1513 // Authenticate the ESP packet.\r
9166f840 1514 //\r
9166f840 1515 if (SadData->AlgoInfo.EspAlgoInfo.AuthKey != NULL) {\r
1516 Status = IpSecEspAuthVerifyPayload (\r
1517 ProcessBuffer,\r
1518 EspSize,\r
1519 SadEntry,\r
4cb0548d 1520 IcvSize\r
9166f840 1521 );\r
1522 if (EFI_ERROR (Status)) {\r
1523 goto ON_EXIT;\r
1524 }\r
1525 }\r
1526 //\r
1527 // Decrypt the payload by the SAD entry if it has decrypt key.\r
1528 //\r
9166f840 1529 if (SadData->AlgoInfo.EspAlgoInfo.EncKey != NULL) {\r
1530 Status = IpSecCryptoIoDecrypt (\r
1531 SadEntry->Data->AlgoInfo.EspAlgoInfo.EncAlgoId,\r
1532 SadEntry->Data->AlgoInfo.EspAlgoInfo.EncKey,\r
1533 SadEntry->Data->AlgoInfo.EspAlgoInfo.EncKeyLength << 3,\r
1534 ProcessBuffer + sizeof (EFI_ESP_HEADER),\r
1535 ProcessBuffer + sizeof (EFI_ESP_HEADER) + IvSize,\r
1536 EspSize - sizeof (EFI_ESP_HEADER) - IvSize - IcvSize,\r
1537 ProcessBuffer + sizeof (EFI_ESP_HEADER) + IvSize\r
1538 );\r
1539 if (EFI_ERROR (Status)) {\r
1540 goto ON_EXIT;\r
1541 }\r
1542 }\r
1543 \r
1544 //\r
1545 // Parse EspTail and compute the plain payload size.\r
1546 //\r
1547 EspTail = (EFI_ESP_TAIL *) (ProcessBuffer + EspSize - IcvSize - sizeof (EFI_ESP_TAIL));\r
1548 PaddingSize = EspTail->PaddingLength;\r
1549 NextHeader = EspTail->NextHeader;\r
4cb0548d 1550 \r
1551 if (EspSize <= (MiscSize + sizeof (EFI_ESP_TAIL) + PaddingSize)) {\r
1552 Status = EFI_ACCESS_DENIED;\r
1553 goto ON_EXIT;\r
1554 }\r
1555 PlainPayloadSize = EspSize - MiscSize - sizeof (EFI_ESP_TAIL) - PaddingSize;\r
9166f840 1556 \r
1557 //\r
1558 // TODO: handle anti-replay window\r
1559 //\r
1560 //\r
1561 // Decryption and authentication with esp has been done, so it's time to\r
1562 // reload the new packet, create recycle event and fixup ip header.\r
1563 //\r
1564 RecycleContext = AllocateZeroPool (sizeof (IPSEC_RECYCLE_CONTEXT));\r
1565 if (RecycleContext == NULL) {\r
1566 Status = EFI_OUT_OF_RESOURCES;\r
1567 goto ON_EXIT;\r
1568 }\r
1569\r
1570 Status = gBS->CreateEvent (\r
1571 EVT_NOTIFY_SIGNAL,\r
1572 TPL_NOTIFY,\r
1573 IpSecRecycleCallback,\r
1574 RecycleContext,\r
1575 RecycleEvent\r
1576 );\r
1577 if (EFI_ERROR (Status)) {\r
1578 goto ON_EXIT;\r
1579 }\r
1580 \r
1581 //\r
1582 // The caller will take responsible to handle the original fragment table\r
1583 //\r
1584 *FragmentTable = AllocateZeroPool (sizeof (EFI_IPSEC_FRAGMENT_DATA));\r
1585 if (*FragmentTable == NULL) {\r
1586 Status = EFI_OUT_OF_RESOURCES;\r
1587 goto ON_EXIT;\r
1588 }\r
1589\r
1590 RecycleContext->PayloadBuffer = ProcessBuffer;\r
1591 RecycleContext->FragmentTable = *FragmentTable;\r
1592 \r
1593 //\r
1594 // If Tunnel, recalculate upper-layyer PesudoCheckSum and trim the out\r
1595 //\r
1596 if (SadData->Mode == EfiIPsecTunnel) {\r
1597 InnerHead = ProcessBuffer + sizeof (EFI_ESP_HEADER) + IvSize;\r
1598 IpSecTunnelInboundPacket (\r
1599 IpHead,\r
1600 InnerHead,\r
1601 IpVersion,\r
1602 SadData,\r
1603 LastHead\r
1604 );\r
1605 \r
1606 if (IpVersion == IP_VERSION_4) {\r
1607 (*FragmentTable)[0].FragmentBuffer = InnerHead ;\r
1608 (*FragmentTable)[0].FragmentLength = (UINT32) PlainPayloadSize;\r
1609 \r
1610 }else { \r
1611 (*FragmentTable)[0].FragmentBuffer = InnerHead;\r
1612 (*FragmentTable)[0].FragmentLength = (UINT32) PlainPayloadSize;\r
1613 } \r
1614 } else {\r
1615 (*FragmentTable)[0].FragmentBuffer = ProcessBuffer + sizeof (EFI_ESP_HEADER) + IvSize;\r
1616 (*FragmentTable)[0].FragmentLength = (UINT32) PlainPayloadSize;\r
1617 }\r
1618 \r
1619 *FragmentCount = 1;\r
1620\r
1621 //\r
1622 // Update the total length field in ip header since processed by esp.\r
1623 //\r
1624 if (!SadData->Mode == EfiIPsecTunnel) {\r
1625 if (IpVersion == IP_VERSION_4) {\r
94b928ca 1626 ((IP4_HEAD *) IpHead)->TotalLen = HTONS ((UINT16) ((((IP4_HEAD *) IpHead)->HeadLen << 2) + PlainPayloadSize));\r
9166f840 1627 } else {\r
1628 IpSecHeadSize = IpSecGetPlainExtHeadSize (IpHead, LastHead);\r
1629 ((EFI_IP6_HEADER *) IpHead)->PayloadLength = HTONS ((UINT16)(IpSecHeadSize + PlainPayloadSize));\r
1630 }\r
1631 //\r
1632 // Update the next layer field in ip header since esp header inserted.\r
1633 //\r
1634 *LastHead = NextHeader;\r
1635 }\r
1636 \r
1637\r
1638 //\r
1639 // Update the SPD association of the SAD entry.\r
1640 //\r
1641 *SpdSelector = SadData->SpdSelector;\r
1642\r
1643ON_EXIT:\r
1644 if (Payload != NULL) {\r
1645 NetbufFree (Payload);\r
1646 }\r
1647\r
1648 if (EFI_ERROR (Status)) {\r
1649 if (ProcessBuffer != NULL) {\r
1650 FreePool (ProcessBuffer);\r
1651 }\r
1652\r
1653 if (RecycleContext != NULL) {\r
1654 FreePool (RecycleContext);\r
1655 }\r
1656\r
1657 if (*RecycleEvent != NULL) {\r
1658 gBS->CloseEvent (*RecycleEvent);\r
1659 }\r
1660 }\r
1661\r
1662 return Status;\r
1663}\r
1664\r
1665/**\r
1666 The actual entry to the relative function processes the output traffic using the ESP protocol.\r
1667\r
1668 This function is the subfunction of IpSecProtectOutboundPacket(). It protected\r
1669 the sending packet by encrypting its payload and inserting ESP header in the orginal\r
1670 IP header, then return the IpHeader and IPsec protected Fragmentable.\r
1671\r
1672 @param[in] IpVersion The version of IP.\r
1673 @param[in, out] IpHead Points to IP header containing the orginal IP header\r
1674 to be processed on input, and inserted ESP header\r
1675 on return.\r
1676 @param[in, out] LastHead The Last Header in IP header.\r
47b27101 1677 @param[in, out] OptionsBuffer Pointer to the options buffer.\r
1678 @param[in, out] OptionsLength Length of the options buffer.\r
9166f840 1679 @param[in, out] FragmentTable Pointer to a list of fragments to be protected by\r
1680 IPsec on input, and with IPsec protected\r
1681 on return.\r
1682 @param[in, out] FragmentCount The number of fragments.\r
1683 @param[in] SadEntry The related SAD entry.\r
1684 @param[out] RecycleEvent The event for recycling of resources.\r
1685\r
1686 @retval EFI_SUCCESS The operation was successful.\r
1687 @retval EFI_OUT_OF_RESOURCES The required system resources can't be allocated.\r
1688\r
1689**/\r
1690EFI_STATUS\r
1691IpSecEspOutboundPacket (\r
1692 IN UINT8 IpVersion,\r
1693 IN OUT VOID *IpHead,\r
1694 IN OUT UINT8 *LastHead,\r
47b27101 1695 IN OUT VOID **OptionsBuffer,\r
1696 IN OUT UINT32 *OptionsLength,\r
9166f840 1697 IN OUT EFI_IPSEC_FRAGMENT_DATA **FragmentTable,\r
1698 IN OUT UINT32 *FragmentCount,\r
1699 IN IPSEC_SAD_ENTRY *SadEntry,\r
1700 OUT EFI_EVENT *RecycleEvent\r
1701 )\r
1702{\r
1703 EFI_STATUS Status;\r
1704 UINTN Index;\r
1705 EFI_IPSEC_SA_ID *SaId;\r
1706 IPSEC_SAD_DATA *SadData;\r
1707 IPSEC_RECYCLE_CONTEXT *RecycleContext;\r
1708 UINT8 *ProcessBuffer;\r
1709 UINTN BytesCopied;\r
1710 INTN EncryptBlockSize;// Size of encryption block, 4 bytes aligned and >= 4\r
1711 UINTN EspSize; // Total size of esp wrapped ip payload\r
1712 UINTN IvSize; // Size of IV, optional, might be 0\r
1713 UINTN PlainPayloadSize;// Original IP payload size\r
1714 UINTN PaddingSize; // Size of padding\r
1715 UINTN EncryptSize; // Size of data to be encrypted, start after IV and\r
1716 // stop before ICV\r
1717 UINTN IcvSize; // Size of ICV, optional, might be 0\r
1718 UINT8 *RestOfPayload; // Start of Payload after IV\r
1719 UINT8 *Padding; // Start address of padding\r
1720 EFI_ESP_HEADER *EspHeader; // Start address of ESP frame\r
1721 EFI_ESP_TAIL *EspTail; // Address behind padding\r
1722 UINT8 *InnerHead;\r
1723 HASH_DATA_FRAGMENT HashFragment[1];\r
1724 \r
1725 Status = EFI_ACCESS_DENIED;\r
1726 SaId = SadEntry->Id;\r
1727 SadData = SadEntry->Data;\r
1728 ProcessBuffer = NULL;\r
1729 RecycleContext = NULL;\r
1730 *RecycleEvent = NULL;\r
1731 InnerHead = NULL;\r
1732\r
1733 if (!SadData->ManualSet &&\r
1734 SadData->AlgoInfo.EspAlgoInfo.EncKey == NULL &&\r
1735 SadData->AlgoInfo.EspAlgoInfo.AuthKey == NULL\r
1736 ) {\r
1737 //\r
1738 // Invalid manual SAD entry configuration.\r
1739 //\r
1740 goto ON_EXIT;\r
1741 }\r
1742\r
1743 //\r
1744 // Create OutHeader according to Inner Header\r
1745 //\r
1746 if (SadData->Mode == EfiIPsecTunnel) {\r
1747 InnerHead = IpSecTunnelOutboundPacket (\r
a3bcde70 1748 IpHead,\r
9166f840 1749 IpVersion,\r
1750 SadData,\r
1751 LastHead,\r
1752 OptionsBuffer,\r
1753 OptionsLength,\r
1754 FragmentTable,\r
1755 FragmentCount\r
a3bcde70 1756 );\r
9166f840 1757 \r
1758 if (InnerHead == NULL) {\r
1759 return EFI_INVALID_PARAMETER;\r
1760 }\r
a3bcde70 1761\r
9166f840 1762 }\r
a3bcde70 1763\r
9166f840 1764 //\r
1765 // Calculate enctrypt block size, need iv by default and 4 bytes alignment.\r
1766 //\r
1767 EncryptBlockSize = 4;\r
1768\r
1769 if (SadData->AlgoInfo.EspAlgoInfo.EncKey != NULL) {\r
1770 EncryptBlockSize = IpSecGetEncryptBlockSize (SadEntry->Data->AlgoInfo.EspAlgoInfo.EncAlgoId);\r
a3bcde70 1771\r
9166f840 1772 if (EncryptBlockSize < 0 || (EncryptBlockSize != 1 && EncryptBlockSize % 4 != 0)) {\r
a3bcde70 1773 goto ON_EXIT;\r
9166f840 1774 }\r
1775 }\r
1776\r
1777 //\r
1778 // Calculate the plain payload size accroding to the fragment table.\r
1779 //\r
1780 PlainPayloadSize = 0;\r
1781 for (Index = 0; Index < *FragmentCount; Index++) {\r
1782 PlainPayloadSize += (*FragmentTable)[Index].FragmentLength;\r
1783 }\r
1784\r
1785 //\r
1786 // Add IPHeader size for Tunnel Mode\r
1787 //\r
1788 if (SadData->Mode == EfiIPsecTunnel) {\r
1789 if (IpVersion == IP_VERSION_4) {\r
1790 PlainPayloadSize += sizeof (IP4_HEAD);\r
1791 } else {\r
1792 PlainPayloadSize += sizeof (EFI_IP6_HEADER);\r
1793 }\r
1794 //\r
1795 // OPtions should be encryption into it\r
1796 //\r
1797 PlainPayloadSize += *OptionsLength; \r
1798 }\r
1799\r
a3bcde70 1800\r
9166f840 1801 //\r
1802 // Calculate icv size, optional by default and 4 bytes alignment.\r
1803 //\r
1804 IcvSize = 0;\r
1805 if (SadData->AlgoInfo.EspAlgoInfo.AuthKey != NULL) {\r
1806 IcvSize = IpSecGetIcvLength (SadEntry->Data->AlgoInfo.EspAlgoInfo.AuthAlgoId);\r
1807 if (IcvSize % 4 != 0) {\r
a3bcde70 1808 goto ON_EXIT;\r
9166f840 1809 }\r
1810 }\r
a3bcde70 1811\r
9166f840 1812 //\r
1813 // Calcuate the total size of esp wrapped ip payload.\r
1814 //\r
1815 IvSize = IpSecGetEncryptIvLength (SadEntry->Data->AlgoInfo.EspAlgoInfo.EncAlgoId);\r
1816 EncryptSize = (PlainPayloadSize + sizeof (EFI_ESP_TAIL) + EncryptBlockSize - 1) / EncryptBlockSize * EncryptBlockSize;\r
1817 PaddingSize = EncryptSize - PlainPayloadSize - sizeof (EFI_ESP_TAIL);\r
1818 EspSize = sizeof (EFI_ESP_HEADER) + IvSize + EncryptSize + IcvSize;\r
1819\r
1820 ProcessBuffer = AllocateZeroPool (EspSize);\r
1821 if (ProcessBuffer == NULL) {\r
1822 Status = EFI_OUT_OF_RESOURCES;\r
1823 goto ON_EXIT;\r
1824 }\r
1825\r
1826 //\r
1827 // Calculate esp header and esp tail including header, payload and padding.\r
1828 //\r
1829 EspHeader = (EFI_ESP_HEADER *) ProcessBuffer;\r
1830 RestOfPayload = (UINT8 *) (EspHeader + 1) + IvSize;\r
1831 Padding = RestOfPayload + PlainPayloadSize;\r
1832 EspTail = (EFI_ESP_TAIL *) (Padding + PaddingSize);\r
1833\r
1834 //\r
1835 // Fill the sn and spi fields in esp header.\r
1836 //\r
1837 EspHeader->SequenceNumber = HTONL ((UINT32) SadData->SequenceNumber + 1);\r
1838 //EspHeader->SequenceNumber = HTONL ((UINT32) SadData->SequenceNumber);\r
1839 EspHeader->Spi = HTONL (SaId->Spi);\r
1840\r
1841 //\r
1842 // Copy the rest of payload (after iv) from the original fragment buffer.\r
1843 //\r
1844 BytesCopied = 0;\r
1845\r
1846 //\r
1847 // For Tunnel Mode\r
1848 //\r
1849 if (SadData->Mode == EfiIPsecTunnel) {\r
1850 if (IpVersion == IP_VERSION_4) {\r
a3bcde70 1851 //\r
9166f840 1852 // HeadLen, Total Length\r
a3bcde70 1853 //\r
9166f840 1854 ((IP4_HEAD *)InnerHead)->HeadLen = (UINT8) ((sizeof (IP4_HEAD) + *OptionsLength) >> 2);\r
1855 ((IP4_HEAD *)InnerHead)->TotalLen = HTONS ((UINT16) PlainPayloadSize); \r
1856 ((IP4_HEAD *)InnerHead)->Checksum = 0;\r
1857 ((IP4_HEAD *)InnerHead)->Checksum = (UINT16) (~NetblockChecksum (\r
1858 (UINT8 *)InnerHead,\r
1859 sizeof(IP4_HEAD)\r
1860 ));\r
1861 CopyMem (\r
1862 RestOfPayload + BytesCopied,\r
1863 InnerHead,\r
1864 sizeof (IP4_HEAD) + *OptionsLength\r
1865 );\r
1866 BytesCopied += sizeof (IP4_HEAD) + *OptionsLength;\r
1867\r
1868 } else {\r
1869 ((EFI_IP6_HEADER *)InnerHead)->PayloadLength = HTONS ((UINT16) (PlainPayloadSize - sizeof (EFI_IP6_HEADER)));\r
1870 CopyMem (\r
1871 RestOfPayload + BytesCopied,\r
1872 InnerHead,\r
1873 sizeof (EFI_IP6_HEADER) + *OptionsLength\r
1874 );\r
1875 BytesCopied += sizeof (EFI_IP6_HEADER) + *OptionsLength;\r
a3bcde70
HT
1876 }\r
1877 }\r
1878\r
9166f840 1879 for (Index = 0; Index < *FragmentCount; Index++) {\r
1880 CopyMem (\r
1881 (RestOfPayload + BytesCopied),\r
1882 (*FragmentTable)[Index].FragmentBuffer,\r
1883 (*FragmentTable)[Index].FragmentLength\r
1884 );\r
1885 BytesCopied += (*FragmentTable)[Index].FragmentLength;\r
1886 }\r
1887 //\r
1888 // Fill the padding buffer by natural number sequence.\r
1889 //\r
1890 for (Index = 0; Index < PaddingSize; Index++) {\r
1891 Padding[Index] = (UINT8) (Index + 1);\r
1892 }\r
1893 //\r
1894 // Fill the padding length and next header fields in esp tail.\r
1895 //\r
1896 EspTail->PaddingLength = (UINT8) PaddingSize;\r
1897 EspTail->NextHeader = *LastHead;\r
1898\r
1899 //\r
1900 // Fill the next header for Tunnel mode.\r
1901 //\r
1902 if (SadData->Mode == EfiIPsecTunnel) {\r
1903 if (IpVersion == IP_VERSION_4) {\r
1904 EspTail->NextHeader = 4;\r
1905 } else {\r
1906 EspTail->NextHeader = 41;\r
1907 } \r
1908 }\r
1909\r
1910 //\r
1911 // Generate iv at random by crypt library.\r
1912 //\r
1913 Status = IpSecGenerateIv (\r
1914 (UINT8 *) (EspHeader + 1),\r
1915 IvSize\r
1916 );\r
1917 \r
1918 \r
1919 if (EFI_ERROR (Status)) {\r
1920 goto ON_EXIT;\r
1921 }\r
1922\r
1923 //\r
1924 // Encryption the payload (after iv) by the SAD entry if has encrypt key.\r
1925 //\r
1926 if (SadData->AlgoInfo.EspAlgoInfo.EncKey != NULL) {\r
1927 Status = IpSecCryptoIoEncrypt (\r
1928 SadEntry->Data->AlgoInfo.EspAlgoInfo.EncAlgoId,\r
1929 SadEntry->Data->AlgoInfo.EspAlgoInfo.EncKey,\r
1930 SadEntry->Data->AlgoInfo.EspAlgoInfo.EncKeyLength << 3,\r
1931 (UINT8 *)(EspHeader + 1),\r
1932 RestOfPayload,\r
1933 EncryptSize,\r
1934 RestOfPayload\r
1935 );\r
1936\r
1937 if (EFI_ERROR (Status)) {\r
1938 goto ON_EXIT;\r
1939 }\r
1940 }\r
1941\r
1942 //\r
1943 // Authenticate the esp wrapped buffer by the SAD entry if it has auth key.\r
1944 //\r
1945 if (SadData->AlgoInfo.EspAlgoInfo.AuthKey != NULL) {\r
1946\r
1947 HashFragment[0].Data = ProcessBuffer;\r
1948 HashFragment[0].DataSize = EspSize - IcvSize;\r
1949 Status = IpSecCryptoIoHmac (\r
1950 SadEntry->Data->AlgoInfo.EspAlgoInfo.AuthAlgoId,\r
1951 SadEntry->Data->AlgoInfo.EspAlgoInfo.AuthKey,\r
1952 SadEntry->Data->AlgoInfo.EspAlgoInfo.AuthKeyLength,\r
1953 HashFragment,\r
1954 1,\r
1955 ProcessBuffer + EspSize - IcvSize,\r
1956 IcvSize\r
1957 );\r
1958 if (EFI_ERROR (Status)) {\r
1959 goto ON_EXIT;\r
1960 }\r
1961 }\r
1962\r
1963 //\r
1964 // Encryption and authentication with esp has been done, so it's time to\r
1965 // reload the new packet, create recycle event and fixup ip header.\r
1966 //\r
1967 RecycleContext = AllocateZeroPool (sizeof (IPSEC_RECYCLE_CONTEXT));\r
1968 if (RecycleContext == NULL) {\r
1969 Status = EFI_OUT_OF_RESOURCES;\r
1970 goto ON_EXIT;\r
1971 }\r
1972\r
1973 Status = gBS->CreateEvent (\r
1974 EVT_NOTIFY_SIGNAL,\r
1975 TPL_NOTIFY,\r
1976 IpSecRecycleCallback,\r
1977 RecycleContext,\r
1978 RecycleEvent\r
1979 );\r
1980 if (EFI_ERROR (Status)) {\r
1981 goto ON_EXIT;\r
1982 }\r
1983 //\r
1984 // Caller take responsible to handle the original fragment table.\r
1985 //\r
1986 *FragmentTable = AllocateZeroPool (sizeof (EFI_IPSEC_FRAGMENT_DATA));\r
1987 if (*FragmentTable == NULL) {\r
1988 Status = EFI_OUT_OF_RESOURCES;\r
1989 goto ON_EXIT;\r
1990 }\r
1991\r
1992 RecycleContext->FragmentTable = *FragmentTable;\r
1993 RecycleContext->PayloadBuffer = ProcessBuffer;\r
1994 (*FragmentTable)[0].FragmentBuffer = ProcessBuffer;\r
1995 (*FragmentTable)[0].FragmentLength = (UINT32) EspSize;\r
1996 *FragmentCount = 1;\r
1997\r
1998 //\r
1999 // Update the total length field in ip header since processed by esp.\r
2000 //\r
2001 if (IpVersion == IP_VERSION_4) {\r
2002 ((IP4_HEAD *) IpHead)->TotalLen = HTONS ((UINT16) ((((IP4_HEAD *) IpHead)->HeadLen << 2) + EspSize));\r
2003 } else {\r
2004 ((EFI_IP6_HEADER *) IpHead)->PayloadLength = (UINT16) (IpSecGetPlainExtHeadSize (IpHead, LastHead) + EspSize);\r
2005 }\r
2006\r
2007 //\r
2008 // If tunnel mode, it should change the outer Ip header with tunnel source address\r
2009 // and destination tunnel address.\r
2010 //\r
2011 if (SadData->Mode == EfiIPsecTunnel) {\r
2012 if (IpVersion == IP_VERSION_4) {\r
2013 CopyMem (\r
2014 &((IP4_HEAD *) IpHead)->Src, \r
2015 &SadData->TunnelSourceAddress.v4,\r
2016 sizeof (EFI_IPv4_ADDRESS)\r
2017 ); \r
2018 CopyMem (\r
2019 &((IP4_HEAD *) IpHead)->Dst,\r
2020 &SadData->TunnelDestAddress.v4,\r
2021 sizeof (EFI_IPv4_ADDRESS)\r
2022 );\r
2023 } else {\r
2024 CopyMem (\r
2025 &((EFI_IP6_HEADER *) IpHead)->SourceAddress,\r
2026 &SadData->TunnelSourceAddress.v6,\r
2027 sizeof (EFI_IPv6_ADDRESS)\r
2028 );\r
2029 CopyMem (\r
2030 &((EFI_IP6_HEADER *) IpHead)->DestinationAddress,\r
2031 &SadData->TunnelDestAddress.v6,\r
2032 sizeof (EFI_IPv6_ADDRESS)\r
2033 );\r
2034 }\r
2035 }\r
2036\r
2037 //\r
2038 // Update the next layer field in ip header since esp header inserted.\r
2039 //\r
2040 *LastHead = IPSEC_ESP_PROTOCOL;\r
2041\r
2042 //\r
2043 // Increase the sn number in SAD entry according to rfc4303.\r
2044 //\r
2045 SadData->SequenceNumber++;\r
2046\r
a3bcde70 2047ON_EXIT:\r
9166f840 2048 if (EFI_ERROR (Status)) {\r
2049 if (ProcessBuffer != NULL) {\r
2050 FreePool (ProcessBuffer);\r
2051 }\r
2052\r
2053 if (RecycleContext != NULL) {\r
2054 FreePool (RecycleContext);\r
2055 }\r
2056\r
2057 if (*RecycleEvent != NULL) {\r
2058 gBS->CloseEvent (*RecycleEvent);\r
2059 }\r
2060 }\r
2061\r
a3bcde70
HT
2062 return Status;\r
2063}\r
2064\r
9166f840 2065/**\r
2066 This function processes the inbound traffic with IPsec.\r
2067\r
2068 It checks the received packet security property, trims the ESP/AH header, and then \r
2069 returns without an IPsec protected IP Header and FragmentTable.\r
2070 \r
2071 @param[in] IpVersion The version of IP.\r
2072 @param[in, out] IpHead Points to IP header containing the ESP/AH header \r
2073 to be trimed on input, and without ESP/AH header\r
2074 on return.\r
2075 @param[in, out] LastHead The Last Header in IP header on return.\r
47b27101 2076 @param[in, out] OptionsBuffer Pointer to the options buffer.\r
2077 @param[in, out] OptionsLength Length of the options buffer.\r
9166f840 2078 @param[in, out] FragmentTable Pointer to a list of fragments in form of IPsec\r
2079 protected on input, and without IPsec protected\r
2080 on return.\r
2081 @param[in, out] FragmentCount The number of fragments.\r
2082 @param[out] SpdEntry Pointer to contain the address of SPD entry on return.\r
2083 @param[out] RecycleEvent The event for recycling of resources.\r
2084\r
2085 @retval EFI_SUCCESS The operation was successful.\r
2086 @retval EFI_UNSUPPORTED The IPSEC protocol is not supported.\r
2087\r
2088**/\r
2089EFI_STATUS\r
2090IpSecProtectInboundPacket (\r
2091 IN UINT8 IpVersion,\r
2092 IN OUT VOID *IpHead,\r
2093 IN OUT UINT8 *LastHead,\r
47b27101 2094 IN OUT VOID **OptionsBuffer,\r
2095 IN OUT UINT32 *OptionsLength,\r
9166f840 2096 IN OUT EFI_IPSEC_FRAGMENT_DATA **FragmentTable,\r
2097 IN OUT UINT32 *FragmentCount,\r
2098 OUT EFI_IPSEC_SPD_SELECTOR **SpdEntry,\r
2099 OUT EFI_EVENT *RecycleEvent\r
2100 )\r
2101{\r
2102 if (*LastHead == IPSEC_ESP_PROTOCOL) {\r
2103 //\r
2104 // Process the esp ipsec header of the inbound traffic.\r
2105 //\r
2106 return IpSecEspInboundPacket (\r
2107 IpVersion,\r
2108 IpHead,\r
2109 LastHead,\r
2110 OptionsBuffer,\r
2111 OptionsLength,\r
2112 FragmentTable,\r
2113 FragmentCount,\r
2114 SpdEntry,\r
2115 RecycleEvent\r
2116 );\r
2117 }\r
2118 //\r
2119 // The other protocols are not supported.\r
2120 //\r
2121 return EFI_UNSUPPORTED;\r
2122}\r
2123\r
2124/**\r
2125 This fucntion processes the output traffic with IPsec.\r
2126\r
2127 It protected the sending packet by encrypting it payload and inserting ESP/AH header\r
2128 in the orginal IP header, then return the IpHeader and IPsec protected Fragmentable.\r
2129\r
2130 @param[in] IpVersion The version of IP.\r
2131 @param[in, out] IpHead Point to IP header containing the orginal IP header\r
2132 to be processed on input, and inserted ESP/AH header\r
2133 on return.\r
2134 @param[in, out] LastHead The Last Header in IP header.\r
47b27101 2135 @param[in, out] OptionsBuffer Pointer to the options buffer.\r
2136 @param[in, out] OptionsLength Length of the options buffer.\r
9166f840 2137 @param[in, out] FragmentTable Pointer to a list of fragments to be protected by\r
2138 IPsec on input, and with IPsec protected\r
2139 on return.\r
2140 @param[in, out] FragmentCount Number of fragments.\r
2141 @param[in] SadEntry Related SAD entry.\r
2142 @param[out] RecycleEvent Event for recycling of resources.\r
2143\r
2144 @retval EFI_SUCCESS The operation is successful.\r
2145 @retval EFI_UNSUPPORTED If the IPSEC protocol is not supported.\r
2146\r
2147**/\r
2148EFI_STATUS\r
2149IpSecProtectOutboundPacket (\r
2150 IN UINT8 IpVersion,\r
2151 IN OUT VOID *IpHead,\r
2152 IN OUT UINT8 *LastHead,\r
47b27101 2153 IN OUT VOID **OptionsBuffer,\r
2154 IN OUT UINT32 *OptionsLength,\r
9166f840 2155 IN OUT EFI_IPSEC_FRAGMENT_DATA **FragmentTable,\r
2156 IN OUT UINT32 *FragmentCount,\r
2157 IN IPSEC_SAD_ENTRY *SadEntry,\r
2158 OUT EFI_EVENT *RecycleEvent\r
2159 )\r
2160{\r
2161 if (SadEntry->Id->Proto == EfiIPsecESP) {\r
2162 //\r
2163 // Process the esp ipsec header of the outbound traffic.\r
2164 //\r
2165 return IpSecEspOutboundPacket (\r
2166 IpVersion,\r
2167 IpHead,\r
2168 LastHead,\r
2169 OptionsBuffer,\r
2170 OptionsLength,\r
2171 FragmentTable,\r
2172 FragmentCount,\r
2173 SadEntry,\r
2174 RecycleEvent\r
2175 );\r
2176 }\r
2177 //\r
2178 // The other protocols are not supported.\r
2179 //\r
2180 return EFI_UNSUPPORTED;\r
2181}\r