/*
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* Copyright (c) 2019-2022 Rockchip Eletronics Co., Ltd.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "RkAiqAsharpHandle.h"
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#include "RkAiqCore.h"
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namespace RkCam {
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DEFINE_HANDLE_REGISTER_TYPE(RkAiqAsharpHandleInt);
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void RkAiqAsharpHandleInt::init() {
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ENTER_ANALYZER_FUNCTION();
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RkAiqHandle::deInit();
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mConfig = (RkAiqAlgoCom*)(new RkAiqAlgoConfigAsharp());
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mPreInParam = (RkAiqAlgoCom*)(new RkAiqAlgoPreAsharp());
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mPreOutParam = (RkAiqAlgoResCom*)(new RkAiqAlgoPreResAsharp());
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mProcInParam = (RkAiqAlgoCom*)(new RkAiqAlgoProcAsharp());
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mProcOutParam = (RkAiqAlgoResCom*)(new RkAiqAlgoProcResAsharp());
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mPostInParam = (RkAiqAlgoCom*)(new RkAiqAlgoPostAsharp());
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mPostOutParam = (RkAiqAlgoResCom*)(new RkAiqAlgoPostResAsharp());
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EXIT_ANALYZER_FUNCTION();
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}
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XCamReturn RkAiqAsharpHandleInt::updateConfig(bool needSync) {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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if (needSync) mCfgMutex.lock();
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// if something changed
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if (updateAtt) {
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mCurAtt = mNewAtt;
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updateAtt = false;
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// TODO
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rk_aiq_uapi_asharp_SetAttrib(mAlgoCtx, &mCurAtt, false);
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sendSignal();
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}
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if (updateIQpara) {
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mCurIQPara = mNewIQPara;
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updateIQpara = false;
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// TODO
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rk_aiq_uapi_asharp_SetIQpara(mAlgoCtx, &mCurIQPara, false);
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sendSignal();
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}
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if (needSync) mCfgMutex.unlock();
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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XCamReturn RkAiqAsharpHandleInt::setAttrib(rk_aiq_sharp_attrib_t* att) {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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mCfgMutex.lock();
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// TODO
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// check if there is different between att & mCurAtt
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// if something changed, set att to mNewAtt, and
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// the new params will be effective later when updateConfig
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// called by RkAiqCore
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// if something changed
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if (0 != memcmp(&mCurAtt, att, sizeof(rk_aiq_sharp_attrib_t))) {
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mNewAtt = *att;
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updateAtt = true;
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waitSignal();
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}
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mCfgMutex.unlock();
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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XCamReturn RkAiqAsharpHandleInt::getAttrib(rk_aiq_sharp_attrib_t* att) {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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rk_aiq_uapi_asharp_GetAttrib(mAlgoCtx, att);
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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XCamReturn RkAiqAsharpHandleInt::setIQPara(rk_aiq_sharp_IQpara_t* para) {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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mCfgMutex.lock();
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// TODO
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// check if there is different between att & mCurAtt
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// if something changed, set att to mNewAtt, and
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// the new params will be effective later when updateConfig
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// called by RkAiqCore
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// if something changed
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if (0 != memcmp(&mCurIQPara, para, sizeof(rk_aiq_sharp_IQpara_t))) {
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mNewIQPara = *para;
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updateIQpara = true;
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waitSignal();
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}
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mCfgMutex.unlock();
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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XCamReturn RkAiqAsharpHandleInt::getIQPara(rk_aiq_sharp_IQpara_t* para) {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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rk_aiq_uapi_asharp_GetIQpara(mAlgoCtx, para);
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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XCamReturn RkAiqAsharpHandleInt::setStrength(float fPercent) {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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rk_aiq_uapi_asharp_SetStrength(mAlgoCtx, fPercent);
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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XCamReturn RkAiqAsharpHandleInt::getStrength(float* pPercent) {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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rk_aiq_uapi_asharp_GetStrength(mAlgoCtx, pPercent);
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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XCamReturn RkAiqAsharpHandleInt::prepare() {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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ret = RkAiqHandle::prepare();
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RKAIQCORE_CHECK_RET(ret, "asharp handle prepare failed");
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RkAiqAlgoConfigAsharp* asharp_config_int = (RkAiqAlgoConfigAsharp*)mConfig;
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RkAiqAlgoDescription* des = (RkAiqAlgoDescription*)mDes;
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ret = des->prepare(mConfig);
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RKAIQCORE_CHECK_RET(ret, "asharp algo prepare failed");
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EXIT_ANALYZER_FUNCTION();
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return XCAM_RETURN_NO_ERROR;
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}
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XCamReturn RkAiqAsharpHandleInt::preProcess() {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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RkAiqAlgoPreAsharp* asharp_pre_int = (RkAiqAlgoPreAsharp*)mPreInParam;
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RkAiqAlgoPreResAsharp* asharp_pre_res_int = (RkAiqAlgoPreResAsharp*)mPreOutParam;
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RkAiqCore::RkAiqAlgosGroupShared_t* shared =
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(RkAiqCore::RkAiqAlgosGroupShared_t*)(getGroupShared());
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RkAiqCore::RkAiqAlgosComShared_t* sharedCom = &mAiqCore->mAlogsComSharedParams;
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ret = RkAiqHandle::preProcess();
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if (ret) {
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RKAIQCORE_CHECK_RET(ret, "asharp handle preProcess failed");
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}
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RkAiqAlgoDescription* des = (RkAiqAlgoDescription*)mDes;
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ret = des->pre_process(mPreInParam, mPreOutParam);
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RKAIQCORE_CHECK_RET(ret, "asharp algo pre_process failed");
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EXIT_ANALYZER_FUNCTION();
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return XCAM_RETURN_NO_ERROR;
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}
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XCamReturn RkAiqAsharpHandleInt::processing() {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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RkAiqAlgoProcAsharp* asharp_proc_int = (RkAiqAlgoProcAsharp*)mProcInParam;
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RkAiqAlgoProcResAsharp* asharp_proc_res_int = (RkAiqAlgoProcResAsharp*)mProcOutParam;
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RkAiqCore::RkAiqAlgosGroupShared_t* shared =
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(RkAiqCore::RkAiqAlgosGroupShared_t*)(getGroupShared());
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RkAiqCore::RkAiqAlgosComShared_t* sharedCom = &mAiqCore->mAlogsComSharedParams;
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static int asharp_proc_framecnt = 0;
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asharp_proc_framecnt++;
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ret = RkAiqHandle::processing();
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if (ret) {
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RKAIQCORE_CHECK_RET(ret, "asharp handle processing failed");
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}
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// TODO: fill procParam
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asharp_proc_int->iso = sharedCom->iso;
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asharp_proc_int->hdr_mode = sharedCom->working_mode;
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RkAiqAlgoDescription* des = (RkAiqAlgoDescription*)mDes;
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ret = des->processing(mProcInParam, mProcOutParam);
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RKAIQCORE_CHECK_RET(ret, "asharp algo processing failed");
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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XCamReturn RkAiqAsharpHandleInt::postProcess() {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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RkAiqAlgoPostAsharp* asharp_post_int = (RkAiqAlgoPostAsharp*)mPostInParam;
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RkAiqAlgoPostResAsharp* asharp_post_res_int = (RkAiqAlgoPostResAsharp*)mPostOutParam;
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RkAiqCore::RkAiqAlgosGroupShared_t* shared =
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(RkAiqCore::RkAiqAlgosGroupShared_t*)(getGroupShared());
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RkAiqCore::RkAiqAlgosComShared_t* sharedCom = &mAiqCore->mAlogsComSharedParams;
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ret = RkAiqHandle::postProcess();
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if (ret) {
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RKAIQCORE_CHECK_RET(ret, "asharp handle postProcess failed");
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return ret;
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}
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RkAiqAlgoDescription* des = (RkAiqAlgoDescription*)mDes;
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ret = des->post_process(mPostInParam, mPostOutParam);
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RKAIQCORE_CHECK_RET(ret, "asharp algo post_process failed");
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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XCamReturn RkAiqAsharpHandleInt::genIspResult(RkAiqFullParams* params,
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RkAiqFullParams* cur_params) {
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ENTER_ANALYZER_FUNCTION();
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XCamReturn ret = XCAM_RETURN_NO_ERROR;
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RkAiqCore::RkAiqAlgosGroupShared_t* shared =
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(RkAiqCore::RkAiqAlgosGroupShared_t*)(getGroupShared());
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RkAiqCore::RkAiqAlgosComShared_t* sharedCom = &mAiqCore->mAlogsComSharedParams;
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RkAiqAlgoProcResAsharp* asharp_com = (RkAiqAlgoProcResAsharp*)mProcOutParam;
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if (!asharp_com) {
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LOGD_ANALYZER("no asharp result");
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return XCAM_RETURN_NO_ERROR;
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}
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if (!this->getAlgoId()) {
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RkAiqAlgoProcResAsharp* asharp_rk = (RkAiqAlgoProcResAsharp*)asharp_com;
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LOGD_ASHARP("oyyf: %s:%d output isp param start\n", __FUNCTION__, __LINE__);
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rk_aiq_isp_sharpen_params_v20_t* sharpen_params = params->mSharpenParams->data().ptr();
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sharpen_params->update_mask |= RKAIQ_ISPP_SHARP_ID;
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memcpy(&sharpen_params->result, &asharp_rk->stAsharpProcResult.stSharpFix,
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sizeof(rk_aiq_isp_sharpen_t));
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rk_aiq_isp_edgeflt_params_v20_t* edgeflt_params = params->mEdgefltParams->data().ptr();
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memcpy(&edgeflt_params->result, &asharp_rk->stAsharpProcResult.stEdgefltFix,
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sizeof(rk_aiq_isp_edgeflt_t));
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if (sharedCom->init) {
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sharpen_params->frame_id = 0;
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edgeflt_params->frame_id = 0;
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} else {
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sharpen_params->frame_id = shared->frameId;
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edgeflt_params->frame_id = shared->frameId;
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}
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LOGD_ASHARP("oyyf: %s:%d output isp param end \n", __FUNCTION__, __LINE__);
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}
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cur_params->mSharpenParams = params->mSharpenParams;
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cur_params->mEdgefltParams = params->mEdgefltParams;
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EXIT_ANALYZER_FUNCTION();
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return ret;
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}
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}; // namespace RkCam
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