2010-12-31 11:43:54 +01:00
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/** @file
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Common operation of the IKE
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2018-06-27 15:12:32 +02:00
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Copyright (c) 2010 - 2018, Intel Corporation. All rights reserved.<BR>
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2010-12-31 11:43:54 +01:00
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This program and the accompanying materials
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are licensed and made available under the terms and conditions of the BSD License
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which accompanies this distribution. The full text of the license may be found at
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http://opensource.org/licenses/bsd-license.php.
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THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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**/
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#include "Ike.h"
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#include "IkeCommon.h"
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#include "IpSecConfigImpl.h"
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#include "IpSecDebug.h"
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2016-07-20 04:53:31 +02:00
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/**
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Check whether the new generated Spi has existed.
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@param[in] IkeSaSession Pointer to the Child SA Session.
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@param[in] SpiValue SPI Value.
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@retval TRUE This SpiValue has existed in the Child SA Session
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@retval FALSE This SpiValue doesn't exist in the Child SA Session.
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2018-06-27 15:12:32 +02:00
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2016-07-20 04:53:31 +02:00
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**/
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BOOLEAN
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IkeSpiValueExisted (
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IN IKEV2_SA_SESSION *IkeSaSession,
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IN UINT32 SpiValue
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)
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{
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LIST_ENTRY *Entry;
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LIST_ENTRY *Next;
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IKEV2_CHILD_SA_SESSION *SaSession;
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Entry = NULL;
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Next = NULL;
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2018-06-27 15:12:32 +02:00
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SaSession = NULL;
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2016-07-20 04:53:31 +02:00
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//
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// Check whether the SPI value has existed in ChildSaEstablishSessionList.
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//
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NET_LIST_FOR_EACH_SAFE (Entry, Next, &IkeSaSession->ChildSaEstablishSessionList) {
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SaSession= IKEV2_CHILD_SA_SESSION_BY_IKE_SA (Entry);
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if (SaSession->LocalPeerSpi == SpiValue) {
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return TRUE;
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}
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}
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//
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// Check whether the SPI value has existed in ChildSaSessionList.
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//
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NET_LIST_FOR_EACH_SAFE (Entry, Next, &IkeSaSession->ChildSaSessionList) {
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SaSession= IKEV2_CHILD_SA_SESSION_BY_IKE_SA (Entry);
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if (SaSession->LocalPeerSpi == SpiValue) {
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return TRUE;
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}
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}
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return FALSE;
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}
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2010-12-31 11:43:54 +01:00
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/**
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Call Crypto Lib to generate a random value with eight-octet length.
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2018-06-27 15:12:32 +02:00
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2010-12-31 11:43:54 +01:00
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@return the 64 byte vaule.
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**/
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UINT64
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IkeGenerateCookie (
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VOID
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)
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{
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UINT64 Cookie;
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EFI_STATUS Status;
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Status = IpSecCryptoIoGenerateRandomBytes ((UINT8 *)&Cookie, sizeof (UINT64));
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if (EFI_ERROR (Status)) {
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return 0;
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} else {
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return Cookie;
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}
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}
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/**
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Generate the random data for Nonce payload.
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@param[in] NonceSize Size of the data in bytes.
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2018-06-27 15:12:32 +02:00
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@return Buffer which contains the random data of the spcified size.
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2010-12-31 11:43:54 +01:00
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**/
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UINT8 *
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IkeGenerateNonce (
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IN UINTN NonceSize
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)
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{
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UINT8 *Nonce;
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EFI_STATUS Status;
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Nonce = AllocateZeroPool (NonceSize);
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if (Nonce == NULL) {
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return NULL;
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}
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Status = IpSecCryptoIoGenerateRandomBytes (Nonce, NonceSize);
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if (EFI_ERROR (Status)) {
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FreePool (Nonce);
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return NULL;
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} else {
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return Nonce;
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}
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}
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/**
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Convert the IKE Header from Network order to Host order.
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@param[in, out] Header The pointer of the IKE_HEADER.
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**/
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VOID
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IkeHdrNetToHost (
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IN OUT IKE_HEADER *Header
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)
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{
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Header->InitiatorCookie = NTOHLL (Header->InitiatorCookie);
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Header->ResponderCookie = NTOHLL (Header->ResponderCookie);
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Header->MessageId = NTOHL (Header->MessageId);
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Header->Length = NTOHL (Header->Length);
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}
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/**
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Convert the IKE Header from Host order to Network order.
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@param[in, out] Header The pointer of the IKE_HEADER.
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**/
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VOID
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IkeHdrHostToNet (
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IN OUT IKE_HEADER *Header
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)
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{
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Header->InitiatorCookie = HTONLL (Header->InitiatorCookie);
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Header->ResponderCookie = HTONLL (Header->ResponderCookie);
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Header->MessageId = HTONL (Header->MessageId);
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Header->Length = HTONL (Header->Length);
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}
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/**
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Allocate a buffer of IKE_PAYLOAD and set its Signature.
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@return A buffer of IKE_PAYLOAD.
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**/
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IKE_PAYLOAD *
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IkePayloadAlloc (
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VOID
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)
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{
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IKE_PAYLOAD *IkePayload;
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IkePayload = (IKE_PAYLOAD *) AllocateZeroPool (sizeof (IKE_PAYLOAD));
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if (IkePayload == NULL) {
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return NULL;
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}
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2018-06-27 15:12:32 +02:00
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2010-12-31 11:43:54 +01:00
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IkePayload->Signature = IKE_PAYLOAD_SIGNATURE;
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return IkePayload;
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}
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/**
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Free a specified IKE_PAYLOAD buffer.
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@param[in] IkePayload Pointer of IKE_PAYLOAD to be freed.
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**/
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VOID
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IkePayloadFree (
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IN IKE_PAYLOAD *IkePayload
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)
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{
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if (IkePayload == NULL) {
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return;
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}
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//
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// If this IkePayload is not referred by others, free it.
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//
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if (!IkePayload->IsPayloadBufExt && (IkePayload->PayloadBuf != NULL)) {
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FreePool (IkePayload->PayloadBuf);
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}
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FreePool (IkePayload);
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}
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/**
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Generate an new SPI.
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2018-06-27 15:12:32 +02:00
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@param[in] IkeSaSession Pointer to IKEV2_SA_SESSION related to this Child SA
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2016-10-20 03:46:19 +02:00
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Session.
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2018-06-27 15:12:32 +02:00
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@param[in, out] SpiValue Pointer to the new generated SPI value.
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2016-07-20 04:53:31 +02:00
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@retval EFI_SUCCESS The operation performs successfully.
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@retval Otherwise The operation is failed.
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2010-12-31 11:43:54 +01:00
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**/
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2016-07-20 04:53:31 +02:00
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EFI_STATUS
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2010-12-31 11:43:54 +01:00
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IkeGenerateSpi (
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2016-10-20 03:46:19 +02:00
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IN IKEV2_SA_SESSION *IkeSaSession,
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IN OUT UINT32 *SpiValue
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2010-12-31 11:43:54 +01:00
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)
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{
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2016-07-20 04:53:31 +02:00
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EFI_STATUS Status;
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Status = EFI_SUCCESS;
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2018-06-27 15:12:32 +02:00
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2016-07-20 04:53:31 +02:00
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while (TRUE) {
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//
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// Generate SPI randomly
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//
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Status = IpSecCryptoIoGenerateRandomBytes ((UINT8 *)SpiValue, sizeof (UINT32));
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if (EFI_ERROR (Status)) {
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break;
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}
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//
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2018-06-27 15:12:32 +02:00
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// The set of SPI values in the range 1 through 255 are reserved by the
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// Internet Assigned Numbers Authority (IANA) for future use; a reserved
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// SPI value will not normally be assigned by IANA unless the use of the
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2016-07-20 04:53:31 +02:00
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// assigned SPI value is specified in an RFC.
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//
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if (*SpiValue < IKE_SPI_BASE) {
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2018-06-27 15:12:32 +02:00
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*SpiValue += IKE_SPI_BASE;
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2016-07-20 04:53:31 +02:00
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}
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//
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// Check whether the new generated SPI has existed.
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//
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if (!IkeSpiValueExisted (IkeSaSession, *SpiValue)) {
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break;
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}
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}
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2018-06-27 15:12:32 +02:00
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2016-07-20 04:53:31 +02:00
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return Status;
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2010-12-31 11:43:54 +01:00
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}
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/**
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Generate a random data for IV
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@param[in] IvBuffer The pointer of the IV buffer.
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@param[in] IvSize The IV size.
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@retval EFI_SUCCESS Create a random data for IV.
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@retval otherwise Failed.
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**/
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EFI_STATUS
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IkeGenerateIv (
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IN UINT8 *IvBuffer,
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IN UINTN IvSize
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)
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{
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return IpSecCryptoIoGenerateRandomBytes (IvBuffer, IvSize);
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}
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2014-01-22 09:39:32 +01:00
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/**
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Find SPD entry by a specified SPD selector.
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2010-12-31 11:43:54 +01:00
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@param[in] SpdSel Point to SPD Selector to be searched for.
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2014-01-22 09:39:32 +01:00
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2010-12-31 11:43:54 +01:00
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@retval Point to SPD Entry if the SPD entry found.
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2014-01-22 09:39:32 +01:00
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@retval NULL if not found.
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**/
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IPSEC_SPD_ENTRY *
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2010-12-31 11:43:54 +01:00
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IkeSearchSpdEntry (
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2014-01-22 09:39:32 +01:00
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IN EFI_IPSEC_SPD_SELECTOR *SpdSel
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)
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{
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IPSEC_SPD_ENTRY *SpdEntry;
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LIST_ENTRY *SpdList;
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LIST_ENTRY *Entry;
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SpdList = &mConfigData[IPsecConfigDataTypeSpd];
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NET_LIST_FOR_EACH (Entry, SpdList) {
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SpdEntry = IPSEC_SPD_ENTRY_FROM_LIST (Entry);
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//
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2010-12-31 11:43:54 +01:00
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// Find the required SPD entry
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2014-01-22 09:39:32 +01:00
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//
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if (CompareSpdSelector (
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(EFI_IPSEC_CONFIG_SELECTOR *) SpdSel,
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(EFI_IPSEC_CONFIG_SELECTOR *) SpdEntry->Selector
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)) {
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return SpdEntry;
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}
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}
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return NULL;
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2010-12-31 11:43:54 +01:00
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}
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/**
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Get the IKE Version from the IKE_SA_SESSION.
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@param[in] Session Pointer of the IKE_SA_SESSION.
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**/
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UINT8
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IkeGetVersionFromSession (
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IN UINT8 *Session
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)
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{
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if (*(UINT32 *) Session == IKEV2_SA_SESSION_SIGNATURE) {
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return ((IKEV2_SA_SESSION *) Session)->SessionCommon.IkeVer;
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} else {
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//
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// Add IKEv1 support here.
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//
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return 0;
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}
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}
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