mirror of https://github.com/acidanthera/audk.git
401 lines
13 KiB
C
401 lines
13 KiB
C
/** @file
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The Implementations for Information Exchange.
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(C) Copyright 2015 Hewlett-Packard Development Company, L.P.<BR>
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Copyright (c) 2010, Intel Corporation. All rights reserved.<BR>
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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 "Utility.h"
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#include "IpSecDebug.h"
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#include "IpSecConfigImpl.h"
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/**
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Generate Information Packet.
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The information Packet may contain one Delete Payload, or Notify Payload, which
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dependes on the Context's parameters.
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@param[in] SaSession Pointer to IKE SA Session or Child SA Session which is
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related to the information Exchange.
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@param[in] Context The Data passed from the caller. If the Context is not NULL
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it should contain the information for Notification Data.
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@retval Pointer of IKE_PACKET generated.
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**/
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IKE_PACKET *
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Ikev2InfoGenerator (
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IN UINT8 *SaSession,
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IN VOID *Context
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)
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{
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IKEV2_SA_SESSION *IkeSaSession;
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IKEV2_CHILD_SA_SESSION *ChildSaSession;
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IKE_PACKET *IkePacket;
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IKE_PAYLOAD *IkePayload;
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IKEV2_INFO_EXCHANGE_CONTEXT *InfoContext;
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InfoContext = NULL;
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IkeSaSession = (IKEV2_SA_SESSION *) SaSession;
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IkePacket = IkePacketAlloc ();
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ASSERT (IkePacket != NULL);
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//
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// Fill IkePacket Header.
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//
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IkePacket->Header->ExchangeType = IKEV2_EXCHANGE_TYPE_INFO;
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IkePacket->Header->Version = (UINT8) (2 << 4);
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if (Context != NULL) {
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InfoContext = (IKEV2_INFO_EXCHANGE_CONTEXT *) Context;
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}
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//
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// For Liveness Check
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//
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if (InfoContext != NULL &&
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(InfoContext->InfoType == Ikev2InfoLiveCheck || InfoContext->InfoType == Ikev2InfoNotify)
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) {
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IkePacket->Header->MessageId = InfoContext->MessageId;
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IkePacket->Header->InitiatorCookie = IkeSaSession->InitiatorCookie;
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IkePacket->Header->ResponderCookie = IkeSaSession->ResponderCookie;
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IkePacket->Header->NextPayload = IKEV2_PAYLOAD_TYPE_NONE;
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IkePacket->Header->Flags = IKE_HEADER_FLAGS_RESPOND;
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//
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// TODO: add Notify Payload for Notification Information.
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//
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return IkePacket;
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}
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//
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// For delete SAs
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//
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if (IkeSaSession->SessionCommon.IkeSessionType == IkeSessionTypeIkeSa) {
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IkePacket->Header->InitiatorCookie = IkeSaSession->InitiatorCookie;
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IkePacket->Header->ResponderCookie = IkeSaSession->ResponderCookie;
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//
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// If the information message is response message,the MessageId should
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// be same as the request MessageId which passed through the Context.
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//
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if (InfoContext != NULL) {
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IkePacket->Header->MessageId = InfoContext->MessageId;
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} else {
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IkePacket->Header->MessageId = IkeSaSession->MessageId;
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Ikev2SaSessionIncreaseMessageId (IkeSaSession);
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}
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//
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// If the state is on deleting generate a Delete Payload for it.
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//
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if (IkeSaSession->SessionCommon.State == IkeStateSaDeleting ) {
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IkePayload = Ikev2GenerateDeletePayload (
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IkeSaSession,
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IKEV2_PAYLOAD_TYPE_NONE,
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0,
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0,
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NULL
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);
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if (IkePayload == NULL) {
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goto ERROR_EXIT;
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}
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//
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// Fill the next payload in IkePacket's Header.
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//
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IkePacket->Header->NextPayload = IKEV2_PAYLOAD_TYPE_DELETE;
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IKE_PACKET_APPEND_PAYLOAD (IkePacket, IkePayload);
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IkePacket->Private = IkeSaSession->SessionCommon.Private;
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IkePacket->Spi = 0;
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IkePacket->IsDeleteInfo = TRUE;
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} else if (Context != NULL) {
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//
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// TODO: If contest is not NULL Generate a Notify Payload.
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//
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} else {
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//
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// The input parameter is not correct.
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//
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goto ERROR_EXIT;
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}
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} else {
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//
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// Delete the Child SA Information Exchagne
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//
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ChildSaSession = (IKEV2_CHILD_SA_SESSION *) SaSession;
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IkeSaSession = ChildSaSession->IkeSaSession;
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IkePacket->Header->InitiatorCookie = ChildSaSession->IkeSaSession->InitiatorCookie;
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IkePacket->Header->ResponderCookie = ChildSaSession->IkeSaSession->ResponderCookie;
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//
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// If the information message is response message,the MessageId should
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// be same as the request MessageId which passed through the Context.
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//
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if (InfoContext != NULL && InfoContext->MessageId != 0) {
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IkePacket->Header->MessageId = InfoContext->MessageId;
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} else {
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IkePacket->Header->MessageId = ChildSaSession->IkeSaSession->MessageId;
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Ikev2SaSessionIncreaseMessageId (IkeSaSession);
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}
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IkePayload = Ikev2GenerateDeletePayload (
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ChildSaSession->IkeSaSession,
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IKEV2_PAYLOAD_TYPE_DELETE,
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4,
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1,
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(UINT8 *)&ChildSaSession->LocalPeerSpi
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);
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if (IkePayload == NULL) {
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goto ERROR_EXIT;
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}
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//
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// Fill the Next Payload in IkePacket's Header.
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//
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IkePacket->Header->NextPayload = IKEV2_PAYLOAD_TYPE_DELETE;
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IKE_PACKET_APPEND_PAYLOAD (IkePacket, IkePayload);
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IkePacket->Private = IkeSaSession->SessionCommon.Private;
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IkePacket->Spi = ChildSaSession->LocalPeerSpi;
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IkePacket->IsDeleteInfo = TRUE;
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if (!ChildSaSession->SessionCommon.IsInitiator) {
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//
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// If responder, use the MessageId fromt the initiator.
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//
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IkePacket->Header->MessageId = ChildSaSession->MessageId;
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}
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//
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// Change the IsOnDeleting Flag
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//
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ChildSaSession->SessionCommon.IsOnDeleting = TRUE;
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}
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if (InfoContext == NULL) {
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IkePacket->Header->Flags = IKE_HEADER_FLAGS_INIT;
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} else {
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IkePacket->Header->Flags = IKE_HEADER_FLAGS_RESPOND;
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}
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return IkePacket;
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ERROR_EXIT:
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if (IkePacket != NULL) {
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FreePool (IkePacket);
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}
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return NULL;
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}
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/**
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Parse the Info Exchange.
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@param[in] SaSession Pointer to IKEV2_SA_SESSION.
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@param[in] IkePacket Pointer to IkePacket related to the Information Exchange.
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@retval EFI_SUCCESS The operation finised successed.
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**/
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EFI_STATUS
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Ikev2InfoParser (
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IN UINT8 *SaSession,
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IN IKE_PACKET *IkePacket
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)
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{
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IKEV2_CHILD_SA_SESSION *ChildSaSession;
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IKEV2_SA_SESSION *IkeSaSession;
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IKE_PAYLOAD *DeletePayload;
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IKE_PAYLOAD *IkePayload;
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IKEV2_DELETE *Delete;
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LIST_ENTRY *Entry;
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LIST_ENTRY *ListEntry;
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UINT8 Index;
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UINT32 Spi;
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UINT8 *SpiBuffer;
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IPSEC_PRIVATE_DATA *Private;
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UINT8 Value;
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EFI_STATUS Status;
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IKE_PACKET *RespondPacket;
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IKEV2_INFO_EXCHANGE_CONTEXT Context;
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IkeSaSession = (IKEV2_SA_SESSION *) SaSession;
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DeletePayload = NULL;
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Private = NULL;
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RespondPacket = NULL;
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Status = EFI_SUCCESS;
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//
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// For Liveness Check
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//
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if (IkePacket->Header->NextPayload == IKEV2_PAYLOAD_TYPE_NONE &&
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(IkePacket->PayloadTotalSize == 0)
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) {
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if (IkePacket->Header->Flags == IKE_HEADER_FLAGS_INIT) {
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//
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// If it is Liveness check request, reply it.
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//
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Context.InfoType = Ikev2InfoLiveCheck;
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Context.MessageId = IkePacket->Header->MessageId;
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RespondPacket = Ikev2InfoGenerator ((UINT8 *)IkeSaSession, &Context);
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if (RespondPacket == NULL) {
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Status = EFI_INVALID_PARAMETER;
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return Status;
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}
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Status = Ikev2SendIkePacket (
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IkeSaSession->SessionCommon.UdpService,
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(UINT8 *)(&IkeSaSession->SessionCommon),
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RespondPacket,
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0
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);
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} else {
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//
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// Todo: verify the liveness check response packet.
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//
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}
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return Status;
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}
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//
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// For SA Delete
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//
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NET_LIST_FOR_EACH (Entry, &(IkePacket)->PayloadList) {
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//
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// Iterate payloads to find the Delete/Notify Payload.
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//
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IkePayload = IKE_PAYLOAD_BY_PACKET (Entry);
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if (IkePayload->PayloadType == IKEV2_PAYLOAD_TYPE_DELETE) {
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DeletePayload = IkePayload;
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Delete = (IKEV2_DELETE *)DeletePayload->PayloadBuf;
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if (Delete->SpiSize == 0) {
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//
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// Delete IKE SA.
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//
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if (IkeSaSession->SessionCommon.State == IkeStateSaDeleting) {
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RemoveEntryList (&IkeSaSession->BySessionTable);
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Ikev2SaSessionFree (IkeSaSession);
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//
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// Checking the Private status.
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//
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//
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// when all IKE SAs were disabled by calling "IPsecConfig -disable", the IPsec
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// status should be changed.
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//
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Private = IkeSaSession->SessionCommon.Private;
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if (Private != NULL && Private->IsIPsecDisabling) {
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//
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// After all IKE SAs were deleted, set the IPSEC_STATUS_DISABLED value in
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// IPsec status variable.
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//
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if (IsListEmpty (&Private->Ikev1EstablishedList) &&
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(IsListEmpty (&Private->Ikev2EstablishedList))
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) {
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Value = IPSEC_STATUS_DISABLED;
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Status = gRT->SetVariable (
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IPSECCONFIG_STATUS_NAME,
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&gEfiIpSecConfigProtocolGuid,
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EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_NON_VOLATILE,
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sizeof (Value),
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&Value
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);
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if (!EFI_ERROR (Status)) {
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//
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// Set the DisabledFlag in Private data.
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//
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Private->IpSec.DisabledFlag = TRUE;
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Private->IsIPsecDisabling = FALSE;
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}
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}
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}
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} else {
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IkeSaSession->SessionCommon.State = IkeStateSaDeleting;
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Context.InfoType = Ikev2InfoDelete;
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Context.MessageId = IkePacket->Header->MessageId;
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RespondPacket = Ikev2InfoGenerator ((UINT8 *)IkeSaSession, &Context);
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if (RespondPacket == NULL) {
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Status = EFI_INVALID_PARAMETER;
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return Status;
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}
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Status = Ikev2SendIkePacket (
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IkeSaSession->SessionCommon.UdpService,
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(UINT8 *)(&IkeSaSession->SessionCommon),
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RespondPacket,
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0
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);
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}
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} else if (Delete->SpiSize == 4) {
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//
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// Move the Child SAs to DeleteList
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//
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SpiBuffer = (UINT8 *)(Delete + 1);
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for (Index = 0; Index < Delete->NumSpis; Index++) {
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Spi = ReadUnaligned32 ((UINT32 *)SpiBuffer);
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for (ListEntry = IkeSaSession->ChildSaEstablishSessionList.ForwardLink;
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ListEntry != &IkeSaSession->ChildSaEstablishSessionList;
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) {
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ChildSaSession = IKEV2_CHILD_SA_SESSION_BY_IKE_SA (ListEntry);
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ListEntry = ListEntry->ForwardLink;
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if (ChildSaSession->RemotePeerSpi == HTONL(Spi)) {
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if (ChildSaSession->SessionCommon.State != IkeStateSaDeleting) {
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//
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// Insert the ChildSa Session into Delete List.
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//
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InsertTailList (&IkeSaSession->DeleteSaList, &ChildSaSession->ByDelete);
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ChildSaSession->SessionCommon.State = IkeStateSaDeleting;
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ChildSaSession->SessionCommon.IsInitiator = FALSE;
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ChildSaSession->MessageId = IkePacket->Header->MessageId;
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Context.InfoType = Ikev2InfoDelete;
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Context.MessageId = IkePacket->Header->MessageId;
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RespondPacket = Ikev2InfoGenerator ((UINT8 *)ChildSaSession, &Context);
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if (RespondPacket == NULL) {
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Status = EFI_INVALID_PARAMETER;
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return Status;
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}
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Status = Ikev2SendIkePacket (
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ChildSaSession->SessionCommon.UdpService,
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(UINT8 *)(&ChildSaSession->SessionCommon),
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RespondPacket,
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0
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);
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} else {
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//
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// Delete the Child SA.
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//
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Ikev2ChildSaSilentDelete (IkeSaSession, Spi);
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RemoveEntryList (&ChildSaSession->ByDelete);
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}
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}
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}
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SpiBuffer = SpiBuffer + sizeof (Spi);
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}
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}
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}
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}
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return Status;
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}
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GLOBAL_REMOVE_IF_UNREFERENCED IKEV2_PACKET_HANDLER mIkev2Info = {
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Ikev2InfoParser,
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Ikev2InfoGenerator
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};
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