452 lines
20 KiB
C++
452 lines
20 KiB
C++
/*!
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* \copy
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* Copyright (c) 2009-2013, Cisco Systems
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
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* FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
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* COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
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* BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
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* ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*
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*
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* \file sample.c
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*
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* \brief compute SAD and SATD
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*
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* \date 2009.06.02 Created
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*
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*************************************************************************************
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*/
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#include "sample.h"
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#include "sad_common.h"
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#include "mc.h"
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#include "cpu_core.h"
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namespace WelsSVCEnc {
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int32_t WelsSampleSatd4x4_c (uint8_t* pSample1, int32_t iStride1, uint8_t* pSample2, int32_t iStride2) {
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int32_t iSatdSum = 0;
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int32_t pSampleMix[4][4] = {{ 0 }};
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int32_t iSample0, iSample1, iSample2, iSample3;
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int32_t i = 0;
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uint8_t* pSrc1 = pSample1;
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uint8_t* pSrc2 = pSample2;
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//step 1: get the difference
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for (i = 0; i < 4; i++) {
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pSampleMix[i][0] = pSrc1[0] - pSrc2[0];
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pSampleMix[i][1] = pSrc1[1] - pSrc2[1];
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pSampleMix[i][2] = pSrc1[2] - pSrc2[2];
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pSampleMix[i][3] = pSrc1[3] - pSrc2[3];
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pSrc1 += iStride1;
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pSrc2 += iStride2;
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}
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//step 2: horizontal transform
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for (i = 0; i < 4; i++) {
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iSample0 = pSampleMix[i][0] + pSampleMix[i][2];
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iSample1 = pSampleMix[i][1] + pSampleMix[i][3];
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iSample2 = pSampleMix[i][0] - pSampleMix[i][2];
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iSample3 = pSampleMix[i][1] - pSampleMix[i][3];
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pSampleMix[i][0] = iSample0 + iSample1;
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pSampleMix[i][1] = iSample2 + iSample3;
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pSampleMix[i][2] = iSample2 - iSample3;
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pSampleMix[i][3] = iSample0 - iSample1;
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}
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//step 3: vertical transform and get the sum of SATD
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for (i = 0; i < 4; i++) {
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iSample0 = pSampleMix[0][i] + pSampleMix[2][i];
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iSample1 = pSampleMix[1][i] + pSampleMix[3][i];
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iSample2 = pSampleMix[0][i] - pSampleMix[2][i];
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iSample3 = pSampleMix[1][i] - pSampleMix[3][i];
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pSampleMix[0][i] = iSample0 + iSample1;
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pSampleMix[1][i] = iSample2 + iSample3;
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pSampleMix[2][i] = iSample2 - iSample3;
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pSampleMix[3][i] = iSample0 - iSample1;
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iSatdSum += (WELS_ABS (pSampleMix[0][i]) + WELS_ABS (pSampleMix[1][i]) + WELS_ABS (pSampleMix[2][i]) + WELS_ABS (
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pSampleMix[3][i]));
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}
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return ((iSatdSum + 1) >> 1);
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}
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int32_t WelsSampleSatd8x8_c (uint8_t* pSample1, int32_t iStride1, uint8_t* pSample2, int32_t iStride2) {
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int32_t iSatdSum = 0;
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iSatdSum += WelsSampleSatd4x4_c (pSample1, iStride1, pSample2, iStride2);
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iSatdSum += WelsSampleSatd4x4_c (pSample1 + 4, iStride1, pSample2 + 4, iStride2);
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iSatdSum += WelsSampleSatd4x4_c (pSample1 + (iStride1 << 2), iStride1, pSample2 + (iStride2 << 2), iStride2);
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iSatdSum += WelsSampleSatd4x4_c (pSample1 + (iStride1 << 2) + 4, iStride1, pSample2 + (iStride2 << 2) + 4, iStride2);
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return iSatdSum;
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}
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int32_t WelsSampleSatd16x8_c (uint8_t* pSample1, int32_t iStride1, uint8_t* pSample2, int32_t iStride2) {
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int32_t iSatdSum = 0;
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iSatdSum += WelsSampleSatd8x8_c (pSample1, iStride1, pSample2, iStride2);
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iSatdSum += WelsSampleSatd8x8_c (pSample1 + 8, iStride1, pSample2 + 8, iStride2);
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return iSatdSum;
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}
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int32_t WelsSampleSatd8x16_c (uint8_t* pSample1, int32_t iStride1, uint8_t* pSample2, int32_t iStride2) {
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int32_t iSatdSum = 0;
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iSatdSum += WelsSampleSatd8x8_c (pSample1, iStride1, pSample2, iStride2);
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iSatdSum += WelsSampleSatd8x8_c (pSample1 + (iStride1 << 3), iStride1, pSample2 + (iStride2 << 3), iStride2);
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return iSatdSum;
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}
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int32_t WelsSampleSatd16x16_c (uint8_t* pSample1, int32_t iStride1, uint8_t* pSample2, int32_t iStride2) {
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int32_t iSatdSum = 0;
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iSatdSum += WelsSampleSatd8x8_c (pSample1, iStride1, pSample2, iStride2);
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iSatdSum += WelsSampleSatd8x8_c (pSample1 + 8, iStride1, pSample2 + 8, iStride2);
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iSatdSum += WelsSampleSatd8x8_c (pSample1 + (iStride1 << 3), iStride1, pSample2 + (iStride2 << 3), iStride2);
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iSatdSum += WelsSampleSatd8x8_c (pSample1 + (iStride1 << 3) + 8, iStride1, pSample2 + (iStride2 << 3) + 8, iStride2);
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return iSatdSum;
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}
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void WelsSampleSadFour16x16_c (uint8_t* iSample1, int32_t iStride1, uint8_t* iSample2, int32_t iStride2,
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int32_t* pSad) {
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* (pSad) = WelsSampleSad16x16_c (iSample1, iStride1, (iSample2 - iStride2), iStride2);
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* (pSad + 1) = WelsSampleSad16x16_c (iSample1, iStride1, (iSample2 + iStride2), iStride2);
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* (pSad + 2) = WelsSampleSad16x16_c (iSample1, iStride1, (iSample2 - 1), iStride2);
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* (pSad + 3) = WelsSampleSad16x16_c (iSample1, iStride1, (iSample2 + 1), iStride2);
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}
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void WelsSampleSadFour16x8_c (uint8_t* iSample1, int32_t iStride1, uint8_t* iSample2, int32_t iStride2, int32_t* pSad) {
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* (pSad) = WelsSampleSad16x8_c (iSample1, iStride1, (iSample2 - iStride2), iStride2);
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* (pSad + 1) = WelsSampleSad16x8_c (iSample1, iStride1, (iSample2 + iStride2), iStride2);
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* (pSad + 2) = WelsSampleSad16x8_c (iSample1, iStride1, (iSample2 - 1), iStride2);
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* (pSad + 3) = WelsSampleSad16x8_c (iSample1, iStride1, (iSample2 + 1), iStride2);
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}
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void WelsSampleSadFour8x16_c (uint8_t* iSample1, int32_t iStride1, uint8_t* iSample2, int32_t iStride2, int32_t* pSad) {
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* (pSad) = WelsSampleSad8x16_c (iSample1, iStride1, (iSample2 - iStride2), iStride2);
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* (pSad + 1) = WelsSampleSad8x16_c (iSample1, iStride1, (iSample2 + iStride2), iStride2);
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* (pSad + 2) = WelsSampleSad8x16_c (iSample1, iStride1, (iSample2 - 1), iStride2);
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* (pSad + 3) = WelsSampleSad8x16_c (iSample1, iStride1, (iSample2 + 1), iStride2);
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}
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void WelsSampleSadFour8x8_c (uint8_t* iSample1, int32_t iStride1, uint8_t* iSample2, int32_t iStride2, int32_t* pSad) {
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* (pSad) = WelsSampleSad8x8_c (iSample1, iStride1, (iSample2 - iStride2), iStride2);
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* (pSad + 1) = WelsSampleSad8x8_c (iSample1, iStride1, (iSample2 + iStride2), iStride2);
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* (pSad + 2) = WelsSampleSad8x8_c (iSample1, iStride1, (iSample2 - 1), iStride2);
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* (pSad + 3) = WelsSampleSad8x8_c (iSample1, iStride1, (iSample2 + 1), iStride2);
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}
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void WelsSampleSadFour4x4_c (uint8_t* iSample1, int32_t iStride1, uint8_t* iSample2, int32_t iStride2, int32_t* pSad) {
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* (pSad) = WelsSampleSad4x4_c (iSample1, iStride1, (iSample2 - iStride2), iStride2);
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* (pSad + 1) = WelsSampleSad4x4_c (iSample1, iStride1, (iSample2 + iStride2), iStride2);
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* (pSad + 2) = WelsSampleSad4x4_c (iSample1, iStride1, (iSample2 - 1), iStride2);
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* (pSad + 3) = WelsSampleSad4x4_c (iSample1, iStride1, (iSample2 + 1), iStride2);
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}
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extern void WelsI4x4LumaPredDc_c (uint8_t* pPred, uint8_t* pRef, const int32_t iStride);
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extern void WelsI4x4LumaPredH_c (uint8_t* pPred, uint8_t* pRef, const int32_t iStride);
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extern void WelsI4x4LumaPredV_c (uint8_t* pPred, uint8_t* pRef, const int32_t iStride);
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int32_t WelsSampleSatdIntra4x4Combined3_c (uint8_t* pDec, int32_t iDecStride, uint8_t* pEnc, int32_t iEncStride,
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uint8_t* pDst,
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int32_t* pBestMode, int32_t iLambda2, int32_t iLambda1, int32_t iLambda0) {
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int32_t iBestMode = -1;
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int32_t iCurCost, iBestCost = INT_MAX;
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ENFORCE_STACK_ALIGN_2D (uint8_t, uiLocalBuffer, 3, 16, 16)
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WelsI4x4LumaPredDc_c (uiLocalBuffer[2], pDec, iDecStride);
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iCurCost = WelsSampleSatd4x4_c (uiLocalBuffer[2], 4, pEnc, iEncStride) + iLambda2;
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if (iCurCost < iBestCost) {
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iBestMode = 2;
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iBestCost = iCurCost;
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}
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WelsI4x4LumaPredH_c (uiLocalBuffer[1], pDec, iDecStride);
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iCurCost = WelsSampleSatd4x4_c (uiLocalBuffer[1], 4, pEnc, iEncStride) + iLambda1;
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if (iCurCost < iBestCost) {
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iBestMode = 1;
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iBestCost = iCurCost;
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}
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WelsI4x4LumaPredV_c (uiLocalBuffer[0], pDec, iDecStride);
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iCurCost = WelsSampleSatd4x4_c (uiLocalBuffer[0], 4, pEnc, iEncStride) + iLambda0;
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if (iCurCost < iBestCost) {
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iBestMode = 0;
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iBestCost = iCurCost;
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}
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memcpy (pDst, uiLocalBuffer[iBestMode], 16 * sizeof (uint8_t)); // confirmed_safe_unsafe_usage
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*pBestMode = iBestMode;
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return iBestCost;
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}
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extern void WelsIChormaPredDc_c (uint8_t* pPred, uint8_t* pRef, const int32_t iStride);
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extern void WelsIChormaPredH_c (uint8_t* pPred, uint8_t* pRef, const int32_t iStride);
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extern void WelsIChormaPredV_c (uint8_t* pPred, uint8_t* pRef, const int32_t iStride);
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int32_t WelsSampleSatdIntra8x8Combined3_c (uint8_t* pDecCb, int32_t iDecStride, uint8_t* pEncCb, int32_t iEncStride,
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int32_t* pBestMode, int32_t iLambda, uint8_t* pDstChroma, uint8_t* pDecCr, uint8_t* pEncCr) {
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int32_t iBestMode = -1;
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int32_t iCurCost, iBestCost = INT_MAX;
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WelsIChormaPredV_c (pDstChroma, pDecCb, iDecStride);
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WelsIChormaPredV_c (pDstChroma + 64, pDecCr, iDecStride);
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iCurCost = WelsSampleSatd8x8_c (pDstChroma, 8, pEncCb, iEncStride);
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iCurCost += WelsSampleSatd8x8_c (pDstChroma + 64, 8, pEncCr, iEncStride) + iLambda * 2;
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if (iCurCost < iBestCost) {
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iBestMode = 2;
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iBestCost = iCurCost;
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}
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WelsIChormaPredH_c (pDstChroma, pDecCb, iDecStride);
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WelsIChormaPredH_c (pDstChroma + 64, pDecCr, iDecStride);
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iCurCost = WelsSampleSatd8x8_c (pDstChroma, 8, pEncCb, iEncStride);
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iCurCost += WelsSampleSatd8x8_c (pDstChroma + 64, 8, pEncCr, iEncStride) + iLambda * 2;
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if (iCurCost < iBestCost) {
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iBestMode = 1;
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iBestCost = iCurCost;
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}
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WelsIChormaPredDc_c (pDstChroma, pDecCb, iDecStride);
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WelsIChormaPredDc_c (pDstChroma + 64, pDecCr, iDecStride);
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iCurCost = WelsSampleSatd8x8_c (pDstChroma, 8, pEncCb, iEncStride);
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iCurCost += WelsSampleSatd8x8_c (pDstChroma + 64, 8, pEncCr, iEncStride);
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if (iCurCost < iBestCost) {
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iBestMode = 0;
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iBestCost = iCurCost;
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}
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*pBestMode = iBestMode;
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return iBestCost;
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}
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int32_t WelsSampleSadIntra8x8Combined3_c (uint8_t* pDecCb, int32_t iDecStride, uint8_t* pEncCb, int32_t iEncStride,
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int32_t* pBestMode, int32_t iLambda, uint8_t* pDstChroma, uint8_t* pDecCr, uint8_t* pEncCr) {
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int32_t iBestMode = -1;
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int32_t iCurCost, iBestCost = INT_MAX;
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WelsIChormaPredV_c (pDstChroma, pDecCb, iDecStride);
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WelsIChormaPredV_c (pDstChroma + 64, pDecCr, iDecStride);
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iCurCost = WelsSampleSad8x8_c (pDstChroma, 8, pEncCb, iEncStride);
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iCurCost += WelsSampleSad8x8_c (pDstChroma + 64, 8, pEncCr, iEncStride) + iLambda * 2;
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if (iCurCost < iBestCost) {
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iBestMode = 2;
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iBestCost = iCurCost;
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}
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WelsIChormaPredH_c (pDstChroma, pDecCb, iDecStride);
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WelsIChormaPredH_c (pDstChroma + 64, pDecCr, iDecStride);
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iCurCost = WelsSampleSad8x8_c (pDstChroma, 8, pEncCb, iEncStride);
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iCurCost += WelsSampleSad8x8_c (pDstChroma + 64, 8, pEncCr, iEncStride) + iLambda * 2;
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if (iCurCost < iBestCost) {
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iBestMode = 1;
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iBestCost = iCurCost;
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}
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WelsIChormaPredDc_c (pDstChroma, pDecCb, iDecStride);
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WelsIChormaPredDc_c (pDstChroma + 64, pDecCr, iDecStride);
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iCurCost = WelsSampleSad8x8_c (pDstChroma, 8, pEncCb, iEncStride);
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iCurCost += WelsSampleSad8x8_c (pDstChroma + 64, 8, pEncCr, iEncStride);
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if (iCurCost < iBestCost) {
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iBestMode = 0;
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iBestCost = iCurCost;
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}
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*pBestMode = iBestMode;
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return iBestCost;
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}
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extern void WelsI16x16LumaPredDc_c (uint8_t* pPred, uint8_t* pRef, const int32_t iStride);
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extern void WelsI16x16LumaPredH_c (uint8_t* pPred, uint8_t* pRef, const int32_t iStride);
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extern void WelsI16x16LumaPredV_c (uint8_t* pPred, uint8_t* pRef, const int32_t iStride);
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int32_t WelsSampleSatdIntra16x16Combined3_c (uint8_t* pDec, int32_t iDecStride, uint8_t* pEnc, int32_t iEncStride,
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int32_t* pBestMode, int32_t iLambda, uint8_t* pDst) {
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int32_t iBestMode = -1;
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int32_t iCurCost, iBestCost = INT_MAX;
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WelsI16x16LumaPredV_c (pDst, pDec, iDecStride);
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iCurCost = WelsSampleSatd16x16_c (pDst, 16, pEnc, iEncStride);
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if (iCurCost < iBestCost) {
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iBestMode = 0;
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iBestCost = iCurCost;
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}
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WelsI16x16LumaPredH_c (pDst, pDec, iDecStride);
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iCurCost = WelsSampleSatd16x16_c (pDst, 16, pEnc, iEncStride) + iLambda * 2;
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if (iCurCost < iBestCost) {
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iBestMode = 1;
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iBestCost = iCurCost;
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}
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WelsI16x16LumaPredDc_c (pDst, pDec, iDecStride);
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iCurCost = WelsSampleSatd16x16_c (pDst, 16, pEnc, iEncStride) + iLambda * 2;
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if (iCurCost < iBestCost) {
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iBestMode = 2;
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iBestCost = iCurCost;
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}
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*pBestMode = iBestMode;
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return iBestCost;
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}
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int32_t WelsSampleSadIntra16x16Combined3_c (uint8_t* pDec, int32_t iDecStride, uint8_t* pEnc, int32_t iEncStride,
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int32_t* pBestMode, int32_t iLambda, uint8_t* pDst) {
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int32_t iBestMode = -1;
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int32_t iCurCost, iBestCost = INT_MAX;
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WelsI16x16LumaPredV_c (pDst, pDec, iDecStride);
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iCurCost = WelsSampleSad16x16_c (pDst, 16, pEnc, iEncStride);
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if (iCurCost < iBestCost) {
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iBestMode = 0;
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iBestCost = iCurCost;
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}
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WelsI16x16LumaPredH_c (pDst, pDec, iDecStride);
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iCurCost = WelsSampleSad16x16_c (pDst, 16, pEnc, iEncStride) + iLambda * 2;
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if (iCurCost < iBestCost) {
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iBestMode = 1;
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iBestCost = iCurCost;
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}
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WelsI16x16LumaPredDc_c (pDst, pDec, iDecStride);
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iCurCost = WelsSampleSad16x16_c (pDst, 16, pEnc, iEncStride) + iLambda * 2;
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if (iCurCost < iBestCost) {
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iBestMode = 2;
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iBestCost = iCurCost;
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}
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*pBestMode = iBestMode;
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return iBestCost;
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}
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void WelsInitSampleSadFunc (SWelsFuncPtrList* pFuncList, uint32_t uiCpuFlag) {
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//pfSampleSad init
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pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_16x16] = WelsSampleSad16x16_c;
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pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_16x8 ] = WelsSampleSad16x8_c;
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pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_8x16 ] = WelsSampleSad8x16_c;
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pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_8x8 ] = WelsSampleSad8x8_c;
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pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_4x4 ] = WelsSampleSad4x4_c;
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//pfSampleSatd init
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pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_16x16] = WelsSampleSatd16x16_c;
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pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_16x8 ] = WelsSampleSatd16x8_c;
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pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_8x16 ] = WelsSampleSatd8x16_c;
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pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_8x8 ] = WelsSampleSatd8x8_c;
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pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_4x4 ] = WelsSampleSatd4x4_c;
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|
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pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_16x16] = WelsSampleSadFour16x16_c;
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pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_16x8] = WelsSampleSadFour16x8_c;
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pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_8x16] = WelsSampleSadFour8x16_c;
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pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_8x8] = WelsSampleSadFour8x8_c;
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pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_4x4] = WelsSampleSadFour4x4_c;
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|
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pFuncList->sSampleDealingFuncs.pfIntra4x4Combined3Satd = NULL;
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pFuncList->sSampleDealingFuncs.pfIntra8x8Combined3Satd = NULL;
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pFuncList->sSampleDealingFuncs.pfIntra8x8Combined3Sad = NULL;
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pFuncList->sSampleDealingFuncs.pfIntra16x16Combined3Satd = NULL;
|
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pFuncList->sSampleDealingFuncs.pfIntra16x16Combined3Sad = NULL;
|
|
|
|
#if defined (X86_ASM)
|
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if (uiCpuFlag & WELS_CPU_MMXEXT) {
|
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pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_4x4 ] = WelsSampleSad4x4_mmx;
|
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}
|
|
|
|
if (uiCpuFlag & WELS_CPU_SSE2) {
|
|
pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_16x16] = WelsSampleSad16x16_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_16x8 ] = WelsSampleSad16x8_sse2;
|
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pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_8x16] = WelsSampleSad8x16_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_8x8] = WelsSampleSad8x8_sse21;
|
|
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_16x16] = WelsSampleSadFour16x16_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_16x8] = WelsSampleSadFour16x8_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_8x16] = WelsSampleSadFour8x16_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_8x8] = WelsSampleSadFour8x8_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_4x4] = WelsSampleSadFour4x4_sse2;
|
|
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_4x4 ] = WelsSampleSatd4x4_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_8x8 ] = WelsSampleSatd8x8_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_8x16 ] = WelsSampleSatd8x16_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_16x8 ] = WelsSampleSatd16x8_sse2;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_16x16] = WelsSampleSatd16x16_sse2;
|
|
//pFuncList->sSampleDealingFuncs.pfIntra4x4Combined3Satd = WelsSampleSatdThree4x4_sse2;
|
|
}
|
|
|
|
if (uiCpuFlag & WELS_CPU_SSSE3) {
|
|
//pFuncList->sSampleDealingFuncs.pfIntra16x16Combined3Sad = WelsIntra16x16Combined3Sad_ssse3;
|
|
}
|
|
|
|
if (uiCpuFlag & WELS_CPU_SSE41) {
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_16x16] = WelsSampleSatd16x16_sse41;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_16x8] = WelsSampleSatd16x8_sse41;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_8x16] = WelsSampleSatd8x16_sse41;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_8x8] = WelsSampleSatd8x8_sse41;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_4x4] = WelsSampleSatd4x4_sse41;
|
|
//pFuncList->sSampleDealingFuncs.pfIntra16x16Combined3Satd = WelsIntra16x16Combined3Satd_sse41;
|
|
//pFuncList->sSampleDealingFuncs.pfIntra8x8Combined3Satd = WelsIntraChroma8x8Combined3Satd_sse41;
|
|
}
|
|
|
|
#endif //(X86_ASM)
|
|
|
|
#if defined (HAVE_NEON)
|
|
if (uiCpuFlag & WELS_CPU_NEON) {
|
|
pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_4x4 ] = WelsSampleSad4x4_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_16x16] = WelsSampleSad16x16_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_16x8 ] = WelsSampleSad16x8_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_8x16] = WelsSampleSad8x16_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSad[BLOCK_8x8] = WelsSampleSad8x8_neon;
|
|
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_16x16] = WelsSampleSadFour16x16_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_16x8] = WelsSampleSadFour16x8_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_8x16] = WelsSampleSadFour8x16_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_8x8] = WelsSampleSadFour8x8_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSample4Sad[BLOCK_4x4] = WelsSampleSadFour4x4_neon;
|
|
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_4x4 ] = WelsSampleSatd4x4_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_8x8 ] = WelsSampleSatd8x8_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_8x16 ] = WelsSampleSatd8x16_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_16x8 ] = WelsSampleSatd16x8_neon;
|
|
pFuncList->sSampleDealingFuncs.pfSampleSatd[BLOCK_16x16] = WelsSampleSatd16x16_neon;
|
|
|
|
pFuncList->sSampleDealingFuncs.pfIntra4x4Combined3Satd = WelsIntra4x4Combined3Satd_neon;
|
|
pFuncList->sSampleDealingFuncs.pfIntra8x8Combined3Satd = WelsIntra8x8Combined3Satd_neon;
|
|
pFuncList->sSampleDealingFuncs.pfIntra8x8Combined3Sad = WelsIntra8x8Combined3Sad_neon;
|
|
pFuncList->sSampleDealingFuncs.pfIntra16x16Combined3Satd = WelsIntra16x16Combined3Satd_neon;
|
|
pFuncList->sSampleDealingFuncs.pfIntra16x16Combined3Sad = WelsIntra16x16Combined3Sad_neon;
|
|
}
|
|
#endif
|
|
}
|
|
|
|
} // namespace WelsSVCEnc
|