/******************************************************************************* * Copyright 2010-2018 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. *******************************************************************************/ /* // // Purpose: // Intel(R) Integrated Performance Primitives. Cryptography Primitives. // EC over GF(p) Operations // // Context: // ippsGFpECGetPointRegular() // */ #include "owndefs.h" #include "owncp.h" #include "pcpgfpecstuff.h" #include "pcphash.h" #include "pcphash_rmf.h" /*F* // Name: ippsGFpECGetPointRegular // // Purpose: Retrieves coordinates of a point on an elliptic curve in the regular domain // // Returns: Reason: // ippStsNullPtrErr pPoint == NULL // pEC == NULL // // // ippStsContextMatchErr invalid pEC->idCtx // invalid pPoint->idCtx // invalid pX->idCtx // invalid pY->idCtx // // ippStsOutOfRangeErr ECP_POINT_FELEN(pPoint)!=GFP_FELEN() // BN_ROOM(pX)*BNU_CHUNK_BITS<GFP_FEBITLEN(pGFE)) // BN_ROOM(pY)*BNU_CHUNK_BITS<GFP_FEBITLEN(pGFE)) // // ippStsNoErr no error // // Parameters: // pPoint Pointer to the IppsGFpECPoint context // pEC Pointer to the context of the elliptic curve // pX, pY Pointers to the X and Y coordinates of a point on the elliptic curve // *F*/ IPPFUN(IppStatus, ippsGFpECGetPointRegular,(const IppsGFpECPoint* pPoint, IppsBigNumState* pX, IppsBigNumState* pY, IppsGFpECState* pEC)) { IppsGFpState* pGF; gsModEngine* pGFE; IPP_BAD_PTR2_RET(pPoint, pEC); pEC = (IppsGFpECState*)( IPP_ALIGNED_PTR(pEC, ECGFP_ALIGNMENT) ); IPP_BADARG_RET( !ECP_TEST_ID(pEC), ippStsContextMatchErr ); IPP_BADARG_RET( !ECP_POINT_TEST_ID(pPoint), ippStsContextMatchErr ); pGF = ECP_GFP(pEC); pGFE = GFP_PMA(pGF); if(pX) { pX = (IppsBigNumState*)( IPP_ALIGNED_PTR(pX, BN_ALIGNMENT) ); IPP_BADARG_RET(!BN_VALID_ID(pX), ippStsContextMatchErr ); IPP_BADARG_RET(BN_ROOM(pX)*BNU_CHUNK_BITS<GFP_FEBITLEN(pGFE), ippStsOutOfRangeErr); } if(pY) { pY = (IppsBigNumState*)( IPP_ALIGNED_PTR(pY, BN_ALIGNMENT) ); IPP_BADARG_RET(!BN_VALID_ID(pY), ippStsContextMatchErr ); IPP_BADARG_RET(BN_ROOM(pY)*BNU_CHUNK_BITS<GFP_FEBITLEN(pGFE), ippStsOutOfRangeErr); } { int elmLen = GFP_FELEN(pGFE); BNU_CHUNK_T* x = cpGFpGetPool(2, pGFE); BNU_CHUNK_T* y = x + elmLen; /* returns (X,Y) == (0,0) if Point is at infinity */ gfec_GetPoint((pX)? x:NULL, (pY)? y:NULL, pPoint, pEC); /* convert into refular domain */ if(pX) { GFP_METHOD(pGFE)->decode(x, x, pGFE); ippsSet_BN(ippBigNumPOS, GFP_FELEN32(pGFE), (Ipp32u*)x, pX); } if(pY) { GFP_METHOD(pGFE)->decode(y, y, pGFE); ippsSet_BN(ippBigNumPOS, GFP_FELEN32(pGFE), (Ipp32u*)y, pY); } cpGFpReleasePool(2, pGFE); return ippStsNoErr; } }