xref: /OK3568_Linux_fs/external/camera_engine_rkaiq/rkaiq/algos/aynr2/rk_aiq_aynr_algo_itf_v2.cpp (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1 /*
2  * rk_aiq_algo_anr_itf.c
3  *
4  *  Copyright (c) 2019 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 "aynr2/rk_aiq_aynr_algo_itf_v2.h"
21 #include "aynr2/rk_aiq_aynr_algo_v2.h"
22 #include "rk_aiq_algo_types.h"
23 #include "RkAiqCalibDbV2Helper.h"
24 
25 RKAIQ_BEGIN_DECLARE
26 
27 typedef struct _RkAiqAlgoContext {
28     Aynr_Context_V2_t AynrCtx;
29 } RkAiqAlgoContext;
30 
31 
32 static XCamReturn
create_context(RkAiqAlgoContext ** context,const AlgoCtxInstanceCfg * cfg)33 create_context(RkAiqAlgoContext **context, const AlgoCtxInstanceCfg* cfg)
34 {
35 
36     XCamReturn result = XCAM_RETURN_NO_ERROR;
37     LOGI_ANR("%s: (enter)\n", __FUNCTION__ );
38 
39 #if 1
40     Aynr_Context_V2_t* pAynrCtx = NULL;
41 #if (AYNR_USE_JSON_FILE_V2)
42     Aynr_result_t ret = Aynr_Init_V2(&pAynrCtx, cfg->calibv2);
43 #else
44     Aynr_result_t ret = Aynr_Init_V2(&pAynrCtx, cfg->calib);
45 #endif
46     if(ret != AYNR_RET_SUCCESS) {
47         result = XCAM_RETURN_ERROR_FAILED;
48         LOGE_ANR("%s: Initializaion ANR failed (%d)\n", __FUNCTION__, ret);
49     } else {
50         *context = (RkAiqAlgoContext *)(pAynrCtx);
51     }
52 #endif
53 
54     LOGI_ANR("%s: (exit)\n", __FUNCTION__ );
55     return result;
56 }
57 
58 static XCamReturn
destroy_context(RkAiqAlgoContext * context)59 destroy_context(RkAiqAlgoContext *context)
60 {
61     XCamReturn result = XCAM_RETURN_NO_ERROR;
62 
63     LOGI_ANR("%s: (enter)\n", __FUNCTION__ );
64 
65 #if 1
66     Aynr_Context_V2_t* pAynrCtx = (Aynr_Context_V2_t*)context;
67     Aynr_result_t ret = Aynr_Release_V2(pAynrCtx);
68     if(ret != AYNR_RET_SUCCESS) {
69         result = XCAM_RETURN_ERROR_FAILED;
70         LOGE_ANR("%s: release ANR failed (%d)\n", __FUNCTION__, ret);
71     }
72 #endif
73 
74     LOGI_ANR("%s: (exit)\n", __FUNCTION__ );
75     return result;
76 }
77 
78 static XCamReturn
prepare(RkAiqAlgoCom * params)79 prepare(RkAiqAlgoCom* params)
80 {
81     XCamReturn result = XCAM_RETURN_NO_ERROR;
82 
83     LOGI_ANR("%s: (enter)\n", __FUNCTION__ );
84 
85     Aynr_Context_V2_t* pAynrCtx = (Aynr_Context_V2_t *)params->ctx;
86     RkAiqAlgoConfigAynrV2* pCfgParam = (RkAiqAlgoConfigAynrV2*)params;
87     pAynrCtx->prepare_type = params->u.prepare.conf_type;
88 
89     if(!!(params->u.prepare.conf_type & RK_AIQ_ALGO_CONFTYPE_UPDATECALIB )) {
90 #if AYNR_USE_JSON_FILE_V2
91         void *pCalibDbV2 = (void*)(pCfgParam->com.u.prepare.calibv2);
92         CalibDbV2_YnrV2_t *ynr_v2 = (CalibDbV2_YnrV2_t*)(CALIBDBV2_GET_MODULE_PTR((void*)pCalibDbV2, ynr_v2));
93         pAynrCtx->ynr_v2 = *ynr_v2;
94 #else
95         void *pCalibDb = (void*)(pCfgParam->com.u.prepare.calib);
96         pAynrCtx->list_ynr_v2 =
97             (struct list_head*)(CALIBDB_GET_MODULE_PTR((void*)pCalibDb, list_ynr_v2));
98 #endif
99         pAynrCtx->isIQParaUpdate = true;
100         pAynrCtx->isReCalculate |= 1;
101     }
102 
103     Aynr_result_t ret = Aynr_Prepare_V2(pAynrCtx, &pCfgParam->stAynrConfig);
104     if(ret != AYNR_RET_SUCCESS) {
105         result = XCAM_RETURN_ERROR_FAILED;
106         LOGE_ANR("%s: config ANR failed (%d)\n", __FUNCTION__, ret);
107     }
108 
109     LOGI_ANR("%s: (exit)\n", __FUNCTION__ );
110     return result;
111 }
112 
113 static XCamReturn
pre_process(const RkAiqAlgoCom * inparams,RkAiqAlgoResCom * outparams)114 pre_process(const RkAiqAlgoCom* inparams, RkAiqAlgoResCom* outparams)
115 {
116     XCamReturn result = XCAM_RETURN_NO_ERROR;
117     bool oldGrayMode = false;
118 
119     LOGI_ANR("%s: (enter)\n", __FUNCTION__ );
120     Aynr_Context_V2_t* pAynrCtx = (Aynr_Context_V2_t *)inparams->ctx;
121 
122     RkAiqAlgoPreAynrV2* pAnrPreParams = (RkAiqAlgoPreAynrV2*)inparams;
123 
124     oldGrayMode = pAynrCtx->isGrayMode;
125     if (pAnrPreParams->com.u.proc.gray_mode) {
126         pAynrCtx->isGrayMode = true;
127     } else {
128         pAynrCtx->isGrayMode = false;
129     }
130 
131     if(oldGrayMode != pAynrCtx->isGrayMode) {
132         pAynrCtx->isReCalculate |= 1;
133     }
134 
135     Aynr_result_t ret = Aynr_PreProcess_V2(pAynrCtx);
136     if(ret != AYNR_RET_SUCCESS) {
137         result = XCAM_RETURN_ERROR_FAILED;
138         LOGE_ANR("%s: ANRPreProcess failed (%d)\n", __FUNCTION__, ret);
139     }
140 
141     LOGI_ANR("%s: (exit)\n", __FUNCTION__ );
142     return result;
143 }
144 
145 static XCamReturn
processing(const RkAiqAlgoCom * inparams,RkAiqAlgoResCom * outparams)146 processing(const RkAiqAlgoCom* inparams, RkAiqAlgoResCom* outparams)
147 {
148     XCamReturn result = XCAM_RETURN_NO_ERROR;
149     int deltaIso = 0;
150     LOGI_ANR("%s: (enter)\n", __FUNCTION__ );
151 
152 #if 1
153     RkAiqAlgoProcAynrV2* pAynrProcParams = (RkAiqAlgoProcAynrV2*)inparams;
154     RkAiqAlgoProcResAynrV2* pAynrProcResParams = (RkAiqAlgoProcResAynrV2*)outparams;
155     Aynr_Context_V2_t* pAynrCtx = (Aynr_Context_V2_t *)inparams->ctx;
156     Aynr_ExpInfo_t stExpInfo;
157     memset(&stExpInfo, 0x00, sizeof(Aynr_ExpInfo_t));
158 
159     LOGD_ANR("%s:%d init:%d hdr mode:%d  \n",
160              __FUNCTION__, __LINE__,
161              inparams->u.proc.init,
162              pAynrProcParams->hdr_mode);
163 
164     stExpInfo.hdr_mode = 0; //pAnrProcParams->hdr_mode;
165     for(int i = 0; i < 3; i++) {
166         stExpInfo.arIso[i] = 50;
167         stExpInfo.arAGain[i] = 1.0;
168         stExpInfo.arDGain[i] = 1.0;
169         stExpInfo.arTime[i] = 0.01;
170     }
171 
172     if(pAynrProcParams->hdr_mode == RK_AIQ_WORKING_MODE_NORMAL) {
173         stExpInfo.hdr_mode = 0;
174     } else if(pAynrProcParams->hdr_mode == RK_AIQ_ISP_HDR_MODE_2_FRAME_HDR
175               || pAynrProcParams->hdr_mode == RK_AIQ_ISP_HDR_MODE_2_LINE_HDR ) {
176         stExpInfo.hdr_mode = 1;
177     } else if(pAynrProcParams->hdr_mode == RK_AIQ_ISP_HDR_MODE_3_FRAME_HDR
178               || pAynrProcParams->hdr_mode == RK_AIQ_ISP_HDR_MODE_3_LINE_HDR ) {
179         stExpInfo.hdr_mode = 2;
180     }
181     stExpInfo.snr_mode = 0;
182 
183 #if 0// TODO Merge:
184     XCamVideoBuffer* xCamAePreRes = pAynrProcParams->com.u.proc.res_comb->ae_pre_res;
185     RkAiqAlgoPreResAe* pAEPreRes = nullptr;
186     if (xCamAePreRes) {
187         // xCamAePreRes->ref(xCamAePreRes);
188         pAEPreRes = (RkAiqAlgoPreResAe*)xCamAePreRes->map(xCamAePreRes);
189         if (!pAEPreRes) {
190             LOGE_ANR("ae pre result is null");
191         } else {
192             LOGD_ANR("ae_pre_result: meanluma:%f time:%f gain:%f env_luma:%f \n",
193                      pAEPreRes->ae_pre_res_rk.MeanLuma[0],
194                      pAEPreRes->ae_pre_res_rk.LinearExp.exp_real_params.integration_time,
195                      pAEPreRes->ae_pre_res_rk.LinearExp.exp_real_params.analog_gain,
196                      pAEPreRes->ae_pre_res_rk.GlobalEnvLux);
197         }
198         // xCamAePreRes->unref(xCamAePreRes);
199     }
200 #endif
201 
202     RKAiqAecExpInfo_t *curExp = pAynrProcParams->com.u.proc.curExp;
203     if(curExp != NULL) {
204         stExpInfo.snr_mode = curExp->CISFeature.SNR;
205         if(pAynrProcParams->hdr_mode == RK_AIQ_WORKING_MODE_NORMAL) {
206             stExpInfo.hdr_mode = 0;
207             stExpInfo.arAGain[0] = curExp->LinearExp.exp_real_params.analog_gain;
208             stExpInfo.arDGain[0] = curExp->LinearExp.exp_real_params.digital_gain;
209             stExpInfo.arTime[0] = curExp->LinearExp.exp_real_params.integration_time;
210             stExpInfo.arIso[0] = stExpInfo.arAGain[0] * stExpInfo.arDGain[0] * 50;
211         } else {
212             for(int i = 0; i < 3; i++) {
213                 stExpInfo.arAGain[i] = curExp->HdrExp[i].exp_real_params.analog_gain;
214                 stExpInfo.arDGain[i] = curExp->HdrExp[i].exp_real_params.digital_gain;
215                 stExpInfo.arTime[i] = curExp->HdrExp[i].exp_real_params.integration_time;
216                 stExpInfo.arIso[i] = stExpInfo.arAGain[i] * stExpInfo.arDGain[i] * 50;
217 
218                 LOGD_ANR("%s:%d index:%d again:%f dgain:%f time:%f iso:%d hdr_mode:%d\n",
219                          __FUNCTION__, __LINE__,
220                          i,
221                          stExpInfo.arAGain[i],
222                          stExpInfo.arDGain[i],
223                          stExpInfo.arTime[i],
224                          stExpInfo.arIso[i],
225                          stExpInfo.hdr_mode);
226             }
227         }
228     } else {
229         LOGE_ANR("%s:%d curExp is NULL, so use default instead \n", __FUNCTION__, __LINE__);
230     }
231 
232 #if 0
233     static int anr_cnt = 0;
234     anr_cnt++;
235 
236     if(anr_cnt % 50 == 0) {
237         for(int i = 0; i < stExpInfo.hdr_mode + 1; i++) {
238             printf("%s:%d index:%d again:%f dgain:%f time:%f iso:%d hdr_mode:%d snr_mode:%d\n",
239                    __FUNCTION__, __LINE__,
240                    i,
241                    stExpInfo.arAGain[i],
242                    stExpInfo.arDGain[i],
243                    stExpInfo.arTime[i],
244                    stExpInfo.arIso[i],
245                    stExpInfo.hdr_mode,
246                    stExpInfo.snr_mode);
247         }
248     }
249 #endif
250 
251     deltaIso = abs(stExpInfo.arIso[stExpInfo.hdr_mode] - pAynrCtx->stExpInfo.arIso[stExpInfo.hdr_mode]);
252     if(deltaIso > AYNRV2_RECALCULATE_DELTA_ISO) {
253         pAynrCtx->isReCalculate |= 1;
254     }
255 
256     if(pAynrCtx->isReCalculate) {
257         Aynr_result_t ret = Aynr_Process_V2(pAynrCtx, &stExpInfo);
258         if(ret != AYNR_RET_SUCCESS) {
259             result = XCAM_RETURN_ERROR_FAILED;
260             LOGE_ANR("%s: processing ANR failed (%d)\n", __FUNCTION__, ret);
261         }
262 
263         Aynr_GetProcResult_V2(pAynrCtx, &pAynrProcResParams->stAynrProcResult);
264         outparams->cfg_update = true;
265         LOGD_ANR("recalculate: %d delta_iso:%d \n ", pAynrCtx->isReCalculate, deltaIso);
266     } else {
267         outparams->cfg_update = false;
268     }
269 #endif
270 
271     pAynrCtx->isReCalculate = 0;
272 
273     LOGI_ANR("%s: (exit)\n", __FUNCTION__ );
274     return XCAM_RETURN_NO_ERROR;
275 }
276 
277 static XCamReturn
post_process(const RkAiqAlgoCom * inparams,RkAiqAlgoResCom * outparams)278 post_process(const RkAiqAlgoCom* inparams, RkAiqAlgoResCom* outparams)
279 {
280     LOGI_ANR("%s: (enter)\n", __FUNCTION__ );
281 
282     //nothing todo now
283 
284     LOGI_ANR("%s: (exit)\n", __FUNCTION__ );
285     return XCAM_RETURN_NO_ERROR;
286 }
287 
288 RkAiqAlgoDescription g_RkIspAlgoDescAynrV2 = {
289     .common = {
290         .version = RKISP_ALGO_AYNR_VERSION_V2,
291         .vendor  = RKISP_ALGO_AYNR_VENDOR_V2,
292         .description = RKISP_ALGO_AYNR_DESCRIPTION_V2,
293         .type    = RK_AIQ_ALGO_TYPE_AYNR,
294         .id      = 0,
295         .create_context  = create_context,
296         .destroy_context = destroy_context,
297     },
298     .prepare = prepare,
299     .pre_process = pre_process,
300     .processing = processing,
301     .post_process = post_process,
302 };
303 
304 RKAIQ_END_DECLARE
305