1 /*
2  * rk_aiq_algo_camgroup_awb_itf.c
3  *
4  *  Copyright (c) 2021 Rockchip Corporation
5  *
6  * Licensed under the Apache License, Version 2.0 (the "License");
7  * you may not use this file except in compliance with the License.
8  * You may obtain a copy of the License at
9  *
10  *      http://www.apache.org/licenses/LICENSE-2.0
11  *
12  * Unless required by applicable law or agreed to in writing, software
13  * distributed under the License is distributed on an "AS IS" BASIS,
14  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
15  * See the License for the specific language governing permissions and
16  * limitations under the License.
17  *
18  */
19 
20 #include "rk_aiq_algo_camgroup_acnr_itf.h"
21 #include "rk_aiq_algo_camgroup_types.h"
22 #include "rk_aiq_types_camgroup_acnr_prvt.h"
23 #include "acnr/rk_aiq_acnr_algo_itf_v1.h"
24 #include "acnr/rk_aiq_acnr_algo_v1.h"
25 
26 
27 
28 RKAIQ_BEGIN_DECLARE
29 
30 
groupAcnrCreateCtx(RkAiqAlgoContext ** context,const AlgoCtxInstanceCfg * cfg)31 static XCamReturn groupAcnrCreateCtx(RkAiqAlgoContext **context, const AlgoCtxInstanceCfg* cfg)
32 {
33     LOGI_ANR("%s enter \n", __FUNCTION__ );
34 
35     XCamReturn ret = XCAM_RETURN_NO_ERROR;
36     CamGroup_Acnr_Contex_t *acnr_group_contex = NULL;
37     AlgoCtxInstanceCfgCamGroup *cfgInt = (AlgoCtxInstanceCfgCamGroup*)cfg;
38     //g_acnr_hw_ver = (acnr_hardware_version_t)(cfgInt->cfg_com.module_hw_version);
39 
40 
41     if(CHECK_ISP_HW_V21()) {
42         acnr_group_contex = (CamGroup_Acnr_Contex_t*)malloc(sizeof(CamGroup_Acnr_Contex_t));
43 #if (ACNR_USE_JSON_FILE_V1)
44         Acnr_result_t ret_v1 = ACNR_RET_SUCCESS;
45         ret_v1 = Acnr_Init_V1(&(acnr_group_contex->acnr_contex_v1), (void *)cfgInt->s_calibv2);
46         if(ret_v1 != ACNR_RET_SUCCESS) {
47             ret = XCAM_RETURN_ERROR_FAILED;
48             LOGE_ANR("%s: Initializaion ANR failed (%d)\n", __FUNCTION__, ret);
49         }
50 #endif
51     } else {
52         ret = XCAM_RETURN_ERROR_FAILED;
53         LOGE_ANR("module_hw_version of acnr is invalid!!!!");
54     }
55 
56     if(ret != XCAM_RETURN_NO_ERROR) {
57         LOGE_ANR("%s: Initializaion group cnr failed (%d)\n", __FUNCTION__, ret);
58     } else {
59         // to do got acnrSurrViewClib and initinal paras for for surround view
60         acnr_group_contex->group_CalibV2.groupMethod = CalibDbV2_CAMGROUP_ACNR_METHOD_MEAN;// to do from json
61         acnr_group_contex->camera_Num = cfgInt->camIdArrayLen;
62 
63         *context = (RkAiqAlgoContext *)(acnr_group_contex);
64 
65         LOGI_ANR("%s:%d surrViewMethod(1-mean):%d, cameraNum %d \n",
66                  __FUNCTION__, __LINE__,
67                  acnr_group_contex->group_CalibV2.groupMethod,
68                  acnr_group_contex->camera_Num);
69     }
70 
71     LOGI_ANR("%s exit ret:%d\n", __FUNCTION__, ret);
72     return ret;
73 
74 }
75 
groupAcnrDestroyCtx(RkAiqAlgoContext * context)76 static XCamReturn groupAcnrDestroyCtx(RkAiqAlgoContext *context)
77 {
78     LOGI_ANR("%s enter \n", __FUNCTION__ );
79 
80     XCamReturn ret = XCAM_RETURN_NO_ERROR;
81 
82     CamGroup_Acnr_Contex_t *acnr_group_contex = (CamGroup_Acnr_Contex_t*)context;
83 
84     if(CHECK_ISP_HW_V21()) {
85         Acnr_result_t ret_v1 = ACNR_RET_SUCCESS;
86         ret_v1  = Acnr_Release_V1(acnr_group_contex->acnr_contex_v1);
87         if(ret_v1  != ACNR_RET_SUCCESS) {
88             ret = XCAM_RETURN_ERROR_FAILED;
89             LOGE_ANR("%s: Initializaion ANR failed (%d)\n", __FUNCTION__, ret);
90         }
91     }
92     else {
93         ret = XCAM_RETURN_ERROR_FAILED;
94         LOGE_ANR("module_hw_version of acnr is isvalid!!!!");
95     }
96 
97     if(ret != XCAM_RETURN_NO_ERROR) {
98         LOGE_ANR("%s: release ANR failed (%d)\n", __FUNCTION__, ret);
99     } else {
100         free(acnr_group_contex);
101     }
102 
103 
104     LOGI_ANR("%s exit ret:%d\n", __FUNCTION__, ret);
105     return ret;
106 }
107 
groupAcnrPrepare(RkAiqAlgoCom * params)108 static XCamReturn groupAcnrPrepare(RkAiqAlgoCom* params)
109 {
110     LOGI_ANR("%s enter \n", __FUNCTION__ );
111 
112     XCamReturn ret = XCAM_RETURN_NO_ERROR;
113 
114     CamGroup_Acnr_Contex_t * acnr_group_contex = (CamGroup_Acnr_Contex_t *)params->ctx;
115     RkAiqAlgoCamGroupPrepare* para = (RkAiqAlgoCamGroupPrepare*)params;
116 
117     if(CHECK_ISP_HW_V21()) {
118         Acnr_Context_V1_t * acnr_contex_v1 = acnr_group_contex->acnr_contex_v1;
119         acnr_contex_v1->prepare_type = params->u.prepare.conf_type;
120         if(!!(params->u.prepare.conf_type & RK_AIQ_ALGO_CONFTYPE_UPDATECALIB )) {
121             // todo  update calib pars for surround view
122 #if ACNR_USE_JSON_FILE_V1
123             void *pCalibdbV2 = (void*)(para->s_calibv2);
124             CalibDbV2_CNR_t *cnr_v1 = (CalibDbV2_CNR_t*)(CALIBDBV2_GET_MODULE_PTR((void*)pCalibdbV2, cnr_v1));
125             acnr_contex_v1->cnr_v1 = *cnr_v1;
126             acnr_contex_v1->isIQParaUpdate = true;
127             acnr_contex_v1->isReCalculate |= 1;
128 #endif
129         }
130         Acnr_Config_V1_t stAcnrConfigV1;
131         stAcnrConfigV1.rawHeight =  params->u.prepare.sns_op_height;
132         stAcnrConfigV1.rawWidth = params->u.prepare.sns_op_width;
133         Acnr_result_t ret_v1 = ACNR_RET_SUCCESS;
134         ret_v1 = Acnr_Prepare_V1(acnr_contex_v1, &stAcnrConfigV1);
135         if(ret_v1 != ACNR_RET_SUCCESS) {
136             ret = XCAM_RETURN_ERROR_FAILED;
137             LOGE_ANR("%s: config ANR failed (%d)\n", __FUNCTION__, ret);
138         }
139     }
140     else {
141         ret = XCAM_RETURN_ERROR_FAILED;
142         LOGE_ANR("module_hw_version of acnr is isvalid!!!!");
143     }
144 
145     LOGI_ANR("%s exit ret:%d\n", __FUNCTION__, ret);
146     return ret;
147 }
148 
groupAcnrProcessing(const RkAiqAlgoCom * inparams,RkAiqAlgoResCom * outparams)149 static XCamReturn groupAcnrProcessing(const RkAiqAlgoCom* inparams, RkAiqAlgoResCom* outparams)
150 {
151     LOGI_ANR("%s enter \n", __FUNCTION__ );
152     LOGI_ANR("----------------------------------------------frame_id (%d)----------------------------------------------\n", inparams->frame_id);
153 
154     XCamReturn ret = XCAM_RETURN_NO_ERROR;
155     RkAiqAlgoCamGroupProcIn* procParaGroup = (RkAiqAlgoCamGroupProcIn*)inparams;
156     RkAiqAlgoCamGroupProcOut* procResParaGroup = (RkAiqAlgoCamGroupProcOut*)outparams;
157     CamGroup_Acnr_Contex_t * acnr_group_contex = (CamGroup_Acnr_Contex_t *)inparams->ctx;
158     int deltaIso = 0;
159 
160     //method error
161     if (acnr_group_contex->group_CalibV2.groupMethod <= CalibDbV2_CAMGROUP_ACNR_METHOD_MIN
162             ||  acnr_group_contex->group_CalibV2.groupMethod >=  CalibDbV2_CAMGROUP_ACNR_METHOD_MAX) {
163         return (ret);
164     }
165 
166     //group empty
167     if(procParaGroup->camgroupParmasArray == nullptr) {
168         LOGE_ANR("camgroupParmasArray is null");
169         return(XCAM_RETURN_ERROR_FAILED);
170     }
171 
172     //get cur ae exposure
173     Acnr_ExpInfo_t stExpInfoV1;
174     memset(&stExpInfoV1, 0x00, sizeof(stExpInfoV1));
175     stExpInfoV1.hdr_mode = 0; //pAnrProcParams->hdr_mode;
176     stExpInfoV1.snr_mode = 0;
177     for(int i = 0; i < 3; i++) {
178         stExpInfoV1.arIso[i] = 50;
179         stExpInfoV1.arAGain[i] = 1.0;
180         stExpInfoV1.arDGain[i] = 1.0;
181         stExpInfoV1.arTime[i] = 0.01;
182     }
183 
184 
185     //merge ae result, iso mean value
186     rk_aiq_singlecam_3a_result_t* scam_3a_res = procParaGroup->camgroupParmasArray[0];
187     if(scam_3a_res->aec._bEffAecExpValid) {
188         RKAiqAecExpInfo_t* pCurExp = &scam_3a_res->aec._effAecExpInfo;
189         stExpInfoV1.snr_mode = pCurExp->CISFeature.SNR;
190         if((rk_aiq_working_mode_t)procParaGroup->working_mode == RK_AIQ_WORKING_MODE_NORMAL) {
191             stExpInfoV1.hdr_mode = 0;
192             stExpInfoV1.arAGain[0] = pCurExp->LinearExp.exp_real_params.analog_gain;
193             stExpInfoV1.arDGain[0] = pCurExp->LinearExp.exp_real_params.digital_gain * pCurExp->LinearExp.exp_real_params.isp_dgain;
194             stExpInfoV1.arTime[0] = pCurExp->LinearExp.exp_real_params.integration_time;
195             stExpInfoV1.arIso[0] = stExpInfoV1.arAGain[0] * stExpInfoV1.arDGain[0] * 50;
196 
197         } else {
198             if(procParaGroup->working_mode == RK_AIQ_ISP_HDR_MODE_2_FRAME_HDR
199                     || procParaGroup->working_mode == RK_AIQ_ISP_HDR_MODE_2_LINE_HDR)
200                 stExpInfoV1.hdr_mode = 1;
201             else if (procParaGroup->working_mode == RK_AIQ_ISP_HDR_MODE_3_FRAME_HDR
202                      || procParaGroup->working_mode == RK_AIQ_ISP_HDR_MODE_3_LINE_HDR)
203                 stExpInfoV1.hdr_mode = 2;
204             else {
205                 stExpInfoV1.hdr_mode = 0;
206                 LOGE_ANR("mode error\n");
207             }
208 
209             for(int i = 0; i < 3; i++) {
210                 stExpInfoV1.arAGain[i] = pCurExp->HdrExp[i].exp_real_params.analog_gain;
211                 stExpInfoV1.arDGain[i] = pCurExp->HdrExp[i].exp_real_params.digital_gain;
212                 stExpInfoV1.arTime[i] = pCurExp->HdrExp[i].exp_real_params.integration_time;
213                 stExpInfoV1.arIso[i] = stExpInfoV1.arAGain[i] * stExpInfoV1.arDGain[i] * 50;
214             }
215 
216         }
217     } else {
218         LOGW("fail to get sensor gain form AE module,use default value ");
219     }
220 
221 
222 
223     if(CHECK_ISP_HW_V21()) {
224         Acnr_Context_V1_t * acnr_contex_v1 = acnr_group_contex->acnr_contex_v1;
225         Acnr_ProcResult_V1_t stAcnrResultV1;
226         RK_CNR_Fix_V1_t stFix;
227         stAcnrResultV1.stFix = &stFix;
228 
229         deltaIso = abs(stExpInfoV1.arIso[stExpInfoV1.hdr_mode] - acnr_contex_v1->stExpInfo.arIso[stExpInfoV1.hdr_mode]);
230         if(deltaIso > ACNRV1_RECALCULATE_DELTA_ISO) {
231             acnr_contex_v1->isReCalculate |= 1;
232         }
233         if(acnr_contex_v1->isReCalculate) {
234             Acnr_result_t ret_v1 = ACNR_RET_SUCCESS;
235             ret_v1 = Acnr_Process_V1(acnr_contex_v1, &stExpInfoV1);
236             if(ret_v1 != ACNR_RET_SUCCESS) {
237                 ret = XCAM_RETURN_ERROR_FAILED;
238                 LOGE_ANR("%s: processing ANR failed (%d)\n", __FUNCTION__, ret);
239             }
240             outparams->cfg_update = true;
241             LOGD_ANR("recalculate: %d delta_iso:%d \n ", acnr_contex_v1->isReCalculate, deltaIso);
242         } else {
243             outparams->cfg_update = false;
244         }
245         Acnr_GetProcResult_V1(acnr_contex_v1, &stAcnrResultV1);
246         for (int i = 0; i < procResParaGroup->arraySize; i++) {
247             *(procResParaGroup->camgroupParmasArray[i]->acnr._acnr_procRes_v1) = *stAcnrResultV1.stFix;
248             IS_UPDATE_MEM((procResParaGroup->camgroupParmasArray[i]->acnr._acnr_procRes_v1), procParaGroup->_offset_is_update) =
249                 outparams->cfg_update;
250         }
251         acnr_contex_v1->isReCalculate = 0;
252 
253     }
254     else {
255         ret = XCAM_RETURN_ERROR_FAILED;
256         LOGE_ANR("module_hw_version of acnr is isvalid!!!!");
257     }
258 
259     LOGI_ANR("%s exit\n", __FUNCTION__);
260     return ret;
261 }
262 
263 RkAiqAlgoDescription g_RkIspAlgoDescCamgroupAcnr = {
264     .common = {
265         .version = RKISP_ALGO_CAMGROUP_ACNR_VERSION,
266         .vendor  = RKISP_ALGO_CAMGROUP_ACNR_VENDOR,
267         .description = RKISP_ALGO_CAMGROUP_ACNR_DESCRIPTION,
268         .type    = RK_AIQ_ALGO_TYPE_ACNR,
269         .id      = 0,
270         .create_context  = groupAcnrCreateCtx,
271         .destroy_context = groupAcnrDestroyCtx,
272     },
273     .prepare = groupAcnrPrepare,
274     .pre_process = NULL,
275     .processing = groupAcnrProcessing,
276     .post_process = NULL,
277 };
278 
279 RKAIQ_END_DECLARE
280