mirror of https://github.com/acidanthera/audk.git
421 lines
12 KiB
C
421 lines
12 KiB
C
/** @file
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Challenge-Handshake Authentication Protocol (CHAP) Configuration
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Copyright (c) 2004 - 2008, Intel Corporation
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All rights reserved. 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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Module Name:
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IScsiCHAP.c
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Abstract:
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This file is for CHAP configuration
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**/
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#include "IScsiImpl.h"
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#include "Md5.h"
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EFI_GUID mIScsiCHAPAuthInfoGuid = ISCSI_CHAP_AUTH_INFO_GUID;
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EFI_STATUS
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IScsiCHAPCalculateResponse (
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IN UINT32 ChapIdentifier,
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IN CHAR8 *ChapSecret,
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IN UINT32 SecretLength,
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IN UINT8 *ChapChallenge,
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IN UINT32 ChallengeLength,
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OUT UINT8 *ChapResponse
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)
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{
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MD5_CTX Md5Ctx;
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CHAR8 IdByte[1];
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EFI_STATUS Status;
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Status = MD5Init (&Md5Ctx);
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//
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// Hash Identifier - Only calculate 1 byte data (RFC1994)
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//
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IdByte[0] = (CHAR8) ChapIdentifier;
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MD5Update (&Md5Ctx, IdByte, 1);
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//
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// Hash Secret
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//
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if (SecretLength < ISCSI_CHAP_SECRET_MIN_LEN - 1) {
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return EFI_PROTOCOL_ERROR;
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}
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MD5Update (&Md5Ctx, ChapSecret, SecretLength);
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//
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// Hash Challenge received from Target
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//
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MD5Update (&Md5Ctx, ChapChallenge, ChallengeLength);
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Status = MD5Final (&Md5Ctx, ChapResponse);
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return Status;
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}
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EFI_STATUS
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IScsiCHAPAuthTarget (
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IN ISCSI_CHAP_AUTH_DATA *AuthData,
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IN UINT8 *TargetResponse
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)
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{
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EFI_STATUS Status;
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UINT32 SecretSize;
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UINT8 VerifyRsp[ISCSI_CHAP_RSP_LEN];
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Status = EFI_SUCCESS;
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SecretSize = (UINT32) AsciiStrLen (AuthData->AuthConfig.ReverseCHAPSecret);
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Status = IScsiCHAPCalculateResponse (
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AuthData->OutIdentifier,
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AuthData->AuthConfig.ReverseCHAPSecret,
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SecretSize,
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AuthData->OutChallenge,
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AuthData->OutChallengeLength,
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VerifyRsp
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);
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if (CompareMem (VerifyRsp, TargetResponse, ISCSI_CHAP_RSP_LEN)) {
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Status = EFI_SECURITY_VIOLATION;
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}
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return Status;
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}
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/**
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This function checks the received iSCSI Login Response during the security
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negotiation stage.
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@param Conn[in] The iSCSI connection.
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@param Transit[in] The transit flag of the latest iSCSI Login Response.
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@retval EFI_SUCCESS The Login Response passed the CHAP validation.
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@retval EFI_OUT_OF_RESOURCES Failed to allocate memory.
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@retval EFI_PROTOCOL_ERROR Some kind of protocol error happend.
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**/
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EFI_STATUS
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IScsiCHAPOnRspReceived (
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IN ISCSI_CONNECTION *Conn,
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IN BOOLEAN Transit
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)
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{
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EFI_STATUS Status;
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ISCSI_SESSION *Session;
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ISCSI_CHAP_AUTH_DATA *AuthData;
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CHAR8 *Value;
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UINT8 *Data;
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UINT32 Len;
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LIST_ENTRY *KeyValueList;
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UINTN Algorithm;
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CHAR8 *Identifier;
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CHAR8 *Challenge;
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CHAR8 *Name;
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CHAR8 *Response;
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UINT8 TargetRsp[ISCSI_CHAP_RSP_LEN];
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UINT32 RspLen;
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ASSERT (Conn->CurrentStage == ISCSI_SECURITY_NEGOTIATION);
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ASSERT (Conn->RspQue.BufNum != 0);
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Session = Conn->Session;
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AuthData = &Session->AuthData;
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Len = Conn->RspQue.BufSize;
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Data = AllocatePool (Len);
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if (Data == NULL) {
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return EFI_OUT_OF_RESOURCES;
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}
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//
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// Copy the data in case the data spans over multiple PDUs.
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//
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NetbufQueCopy (&Conn->RspQue, 0, Len, Data);
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//
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// Build the key-value list from the data segment of the Login Response.
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//
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KeyValueList = IScsiBuildKeyValueList ((CHAR8 *) Data, Len);
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if (KeyValueList == NULL) {
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Status = EFI_OUT_OF_RESOURCES;
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goto ON_EXIT;
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}
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Status = EFI_PROTOCOL_ERROR;
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switch (Conn->CHAPStep) {
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case ISCSI_CHAP_INITIAL:
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//
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// The first Login Response.
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//
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Value = IScsiGetValueByKeyFromList (KeyValueList, ISCSI_KEY_TARGET_PORTAL_GROUP_TAG);
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if (Value == NULL) {
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goto ON_EXIT;
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}
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Session->TargetPortalGroupTag = (UINT16) AsciiStrDecimalToUintn (Value);
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Value = IScsiGetValueByKeyFromList (KeyValueList, ISCSI_KEY_AUTH_METHOD);
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if (Value == NULL) {
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goto ON_EXIT;
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}
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//
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// Initiator mandates CHAP authentication but target replies without "CHAP" or
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// initiator suggets "None" but target replies with some kind of auth method.
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//
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if (AsciiStrCmp (Value, ISCSI_AUTH_METHOD_CHAP) == 0) {
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if (AuthData->AuthConfig.CHAPType == ISCSI_CHAP_NONE) {
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goto ON_EXIT;
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}
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} else {
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if (AuthData->AuthConfig.CHAPType != ISCSI_CHAP_NONE) {
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goto ON_EXIT;
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}
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}
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//
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// Transit to CHAP step one.
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//
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Conn->CHAPStep = ISCSI_CHAP_STEP_ONE;
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Status = EFI_SUCCESS;
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break;
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case ISCSI_CHAP_STEP_TWO:
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//
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// The Target replies with CHAP_A=<A> CHAP_I=<I> CHAP_C=<C>
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//
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Value = IScsiGetValueByKeyFromList (KeyValueList, ISCSI_KEY_CHAP_ALGORITHM);
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if (Value == NULL) {
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goto ON_EXIT;
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}
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Algorithm = AsciiStrDecimalToUintn (Value);
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if (Algorithm != ISCSI_CHAP_ALGORITHM_MD5) {
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//
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// Unsupported algorithm is chosen by target.
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//
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goto ON_EXIT;
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}
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Identifier = IScsiGetValueByKeyFromList (KeyValueList, ISCSI_KEY_CHAP_IDENTIFIER);
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if (Identifier == NULL) {
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goto ON_EXIT;
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}
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Challenge = IScsiGetValueByKeyFromList (KeyValueList, ISCSI_KEY_CHAP_CHALLENGE);
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if (Challenge == NULL) {
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goto ON_EXIT;
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}
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//
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// Process the CHAP identifier and CHAP Challenge from Target
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// Calculate Response value
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//
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AuthData->InIdentifier = (UINT32) AsciiStrDecimalToUintn (Identifier);
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AuthData->InChallengeLength = ISCSI_CHAP_AUTH_MAX_LEN;
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IScsiHexToBin ((UINT8 *) AuthData->InChallenge, &AuthData->InChallengeLength, Challenge);
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Status = IScsiCHAPCalculateResponse (
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AuthData->InIdentifier,
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AuthData->AuthConfig.CHAPSecret,
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(UINT32) AsciiStrLen (AuthData->AuthConfig.CHAPSecret),
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AuthData->InChallenge,
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AuthData->InChallengeLength,
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AuthData->CHAPResponse
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);
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//
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// Transit to next step.
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//
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Conn->CHAPStep = ISCSI_CHAP_STEP_THREE;
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break;
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case ISCSI_CHAP_STEP_THREE:
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//
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// one way CHAP authentication and the target would like to
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// authenticate us.
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//
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Status = EFI_SUCCESS;
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break;
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case ISCSI_CHAP_STEP_FOUR:
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ASSERT (AuthData->AuthConfig.CHAPType == ISCSI_CHAP_MUTUAL);
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//
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// The forth step, CHAP_N=<N> CHAP_R=<R> is received from Target.
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//
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Name = IScsiGetValueByKeyFromList (KeyValueList, ISCSI_KEY_CHAP_NAME);
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if (Name == NULL) {
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goto ON_EXIT;
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}
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Response = IScsiGetValueByKeyFromList (KeyValueList, ISCSI_KEY_CHAP_RESPONSE);
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if (Response == NULL) {
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goto ON_EXIT;
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}
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RspLen = ISCSI_CHAP_RSP_LEN;
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IScsiHexToBin (TargetRsp, &RspLen, Response);
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//
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// Check the CHAP Name and Response replied by Target.
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//
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Status = IScsiCHAPAuthTarget (AuthData, TargetRsp);
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break;
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default:
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break;
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}
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ON_EXIT:
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IScsiFreeKeyValueList (KeyValueList);
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gBS->FreePool (Data);
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return Status;
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}
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/**
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This function fills the CHAP authentication information into the login PDU
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during the security negotiation stage in the iSCSI connection login.
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@param Conn[in] The iSCSI connection.
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@param Pdu[in] The PDU to send out.
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@retval EFI_SUCCESS All check passed and the phase-related CHAP
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authentication info is filled into the iSCSI PDU.
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@retval EFI_OUT_OF_RESOURCES Failed to allocate memory.
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@retval EFI_PROTOCOL_ERROR Some kind of protocol error happend.
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**/
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EFI_STATUS
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IScsiCHAPToSendReq (
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IN ISCSI_CONNECTION *Conn,
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IN NET_BUF *Pdu
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)
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{
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EFI_STATUS Status;
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ISCSI_SESSION *Session;
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ISCSI_LOGIN_REQUEST *LoginReq;
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ISCSI_CHAP_AUTH_DATA *AuthData;
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CHAR8 *Value;
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CHAR8 ValueStr[256];
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CHAR8 *Response;
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UINT32 RspLen;
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CHAR8 *Challenge;
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UINT32 ChallengeLen;
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ASSERT (Conn->CurrentStage == ISCSI_SECURITY_NEGOTIATION);
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Session = Conn->Session;
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AuthData = &Session->AuthData;
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LoginReq = (ISCSI_LOGIN_REQUEST *) NetbufGetByte (Pdu, 0, 0);
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Status = EFI_SUCCESS;
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RspLen = 2 * ISCSI_CHAP_RSP_LEN + 3;
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Response = AllocatePool (RspLen);
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if (Response == NULL) {
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return EFI_OUT_OF_RESOURCES;
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}
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ChallengeLen = 2 * ISCSI_CHAP_RSP_LEN + 3;
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Challenge = AllocatePool (ChallengeLen);
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if (Challenge == NULL) {
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return EFI_OUT_OF_RESOURCES;
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}
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switch (Conn->CHAPStep) {
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case ISCSI_CHAP_INITIAL:
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//
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// It's the initial Login Request. Fill in the key=value pairs mandatory
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// for the initial Login Request.
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//
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IScsiAddKeyValuePair (Pdu, ISCSI_KEY_INITIATOR_NAME, Session->InitiatorName);
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IScsiAddKeyValuePair (Pdu, ISCSI_KEY_SESSION_TYPE, "Normal");
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IScsiAddKeyValuePair (Pdu, ISCSI_KEY_TARGET_NAME, Session->ConfigData.NvData.TargetName);
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if (AuthData->AuthConfig.CHAPType == ISCSI_CHAP_NONE) {
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Value = ISCSI_KEY_VALUE_NONE;
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ISCSI_SET_FLAG (LoginReq, ISCSI_LOGIN_REQ_PDU_FLAG_TRANSIT);
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} else {
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Value = ISCSI_AUTH_METHOD_CHAP;
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}
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IScsiAddKeyValuePair (Pdu, ISCSI_KEY_AUTH_METHOD, Value);
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break;
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case ISCSI_CHAP_STEP_ONE:
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//
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// First step, send the Login Request with CHAP_A=<A1,A2...> key-value pair.
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//
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AsciiSPrint (ValueStr, sizeof (ValueStr), "%d", ISCSI_CHAP_ALGORITHM_MD5);
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IScsiAddKeyValuePair (Pdu, ISCSI_KEY_CHAP_ALGORITHM, ValueStr);
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Conn->CHAPStep = ISCSI_CHAP_STEP_TWO;
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break;
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case ISCSI_CHAP_STEP_THREE:
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//
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// Third step, send the Login Request with CHAP_N=<N> CHAP_R=<R> or
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// CHAP_N=<N> CHAP_R=<R> CHAP_I=<I> CHAP_C=<C> if target ahtentication is
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// required too.
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//
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// CHAP_N=<N>
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//
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IScsiAddKeyValuePair (Pdu, ISCSI_KEY_CHAP_NAME, (CHAR8 *) &AuthData->AuthConfig.CHAPName);
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//
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// CHAP_R=<R>
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//
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IScsiBinToHex ((UINT8 *) AuthData->CHAPResponse, ISCSI_CHAP_RSP_LEN, Response, &RspLen);
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IScsiAddKeyValuePair (Pdu, ISCSI_KEY_CHAP_RESPONSE, Response);
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if (AuthData->AuthConfig.CHAPType == ISCSI_CHAP_MUTUAL) {
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//
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// CHAP_I=<I>
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//
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IScsiGenRandom ((UINT8 *) &AuthData->OutIdentifier, 1);
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AsciiSPrint (ValueStr, sizeof (ValueStr), "%d", AuthData->OutIdentifier);
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IScsiAddKeyValuePair (Pdu, ISCSI_KEY_CHAP_IDENTIFIER, ValueStr);
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//
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// CHAP_C=<C>
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//
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IScsiGenRandom ((UINT8 *) AuthData->OutChallenge, ISCSI_CHAP_RSP_LEN);
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AuthData->OutChallengeLength = ISCSI_CHAP_RSP_LEN;
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IScsiBinToHex ((UINT8 *) AuthData->OutChallenge, ISCSI_CHAP_RSP_LEN, Challenge, &ChallengeLen);
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IScsiAddKeyValuePair (Pdu, ISCSI_KEY_CHAP_CHALLENGE, Challenge);
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Conn->CHAPStep = ISCSI_CHAP_STEP_FOUR;
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}
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//
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// set the stage transition flag.
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//
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ISCSI_SET_FLAG (LoginReq, ISCSI_LOGIN_REQ_PDU_FLAG_TRANSIT);
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break;
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default:
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Status = EFI_PROTOCOL_ERROR;
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break;
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}
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gBS->FreePool (Response);
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gBS->FreePool (Challenge);
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return Status;
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}
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