/******************************************************************************* * Copyright 2018 Intel Corporation * All Rights Reserved. * * If this software was obtained under the Intel Simplified Software License, * the following terms apply: * * The source code, information and material ("Material") contained herein is * owned by Intel Corporation or its suppliers or licensors, and title to such * Material remains with Intel Corporation or its suppliers or licensors. The * Material contains proprietary information of Intel or its suppliers and * licensors. The Material is protected by worldwide copyright laws and treaty * provisions. No part of the Material may be used, copied, reproduced, * modified, published, uploaded, posted, transmitted, distributed or disclosed * in any way without Intel's prior express written permission. No license under * any patent, copyright or other intellectual property rights in the Material * is granted to or conferred upon you, either expressly, by implication, * inducement, estoppel or otherwise. Any license under such intellectual * property rights must be express and approved by Intel in writing. * * Unless otherwise agreed by Intel in writing, you may not remove or alter this * notice or any other notice embedded in Materials by Intel or Intel's * suppliers or licensors in any way. * * * If this software was obtained under the Apache License, Version 2.0 (the * "License"), the following terms apply: * * You may not use this file except in compliance with the License. You may * obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 * * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * * See the License for the specific language governing permissions and * limitations under the License. *******************************************************************************/ /* // Intel(R) Integrated Performance Primitives. Cryptography Primitives. // Operations over GF(p). // // Context: // ippsGFpSetElementHash() // */ #include "owndefs.h" #include "owncp.h" #include "pcpgfpstuff.h" #include "pcpgfpxstuff.h" #include "pcphash.h" #include "pcptool.h" /*F* // Name: ippsGFpSetElementHash // // Purpose: Set GF Element Hash of the Message // // Returns: Reason: // ippStsNullPtrErr NULL == pGFp // NULL == pElm // NULL == pMsg if msgLen>0 // // ippStsNotSupportedModeErr hashID is not supported // // ippStsContextMatchErr invalid pGFp->idCtx // invalid pElm->idCtx // // ippStsOutOfRangeErr GFPE_ROOM() != GFP_FELEN() // // ippStsBadArgErr !GFP_IS_BASIC(pGFE) // // ippStsLengthErr msgLen<0 // // ippStsNoErr no error // // Parameters: // pMsg pointer to the message is being hashed // msgLen length of the message above // pElm pointer to Finite Field Element context // pGFp pointer to Finite Field context // hashID applied hash algorithm ID *F*/ IPPFUN(IppStatus, ippsGFpSetElementHash,(const Ipp8u* pMsg, int msgLen, IppsGFpElement* pElm, IppsGFpState* pGFp, IppHashAlgId hashID)) { /* get algorithm id */ hashID = cpValidHashAlg(hashID); IPP_BADARG_RET(ippHashAlg_Unknown==hashID, ippStsNotSupportedModeErr); /* test message length and pointer */ IPP_BADARG_RET((msgLen<0), ippStsLengthErr); IPP_BADARG_RET((msgLen && !pMsg), ippStsNullPtrErr); IPP_BAD_PTR2_RET(pElm, pGFp); pGFp = (IppsGFpState*)( IPP_ALIGNED_PTR(pGFp, GFP_ALIGNMENT) ); IPP_BADARG_RET( !GFP_TEST_ID(pGFp), ippStsContextMatchErr); IPP_BADARG_RET( !GFPE_TEST_ID(pElm), ippStsContextMatchErr); { gsModEngine* pGFE = GFP_PMA(pGFp); IPP_BADARG_RET( !GFP_IS_BASIC(pGFE), ippStsBadArgErr); IPP_BADARG_RET( GFPE_ROOM(pElm)!=GFP_FELEN(pGFE), ippStsOutOfRangeErr); { Ipp8u md[MAX_HASH_SIZE]; BNU_CHUNK_T hashVal[(MAX_HASH_SIZE*8)/BITSIZE(BNU_CHUNK_T)+1]; /* +1 to meet cpMod_BNU() implementtaion specific */ IppStatus sts = ippsHashMessage(pMsg, msgLen, md, hashID); if(ippStsNoErr==sts) { int elemLen = GFP_FELEN(pGFE); int hashLen = cpHashAlgAttr[hashID].hashSize; int hashValLen = cpFromOctStr_BNU(hashVal, md, hashLen); hashValLen = cpMod_BNU(hashVal, hashValLen, GFP_MODULUS(pGFE), elemLen); cpGFpSet(GFPE_DATA(pElm), hashVal, hashValLen, pGFE); } return sts; } } }