astro data backend implemented
This commit is contained in:
parent
96a7238065
commit
7346de2bdf
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@ -77,7 +77,7 @@ typedef struct
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{
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float lat;
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float lon;
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astro_timer_t timers[CONFIG_WEBGUIAPP_CRON_NUMBER]
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astro_timer_t records[CONFIG_WEBGUIAPP_CRON_NUMBER]
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} astro_handle_t;
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@ -92,7 +92,8 @@ char* GetCronActionName(int idx);
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char* GetCronActAvail(int idx);
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void TimeObtainHandler(struct timeval *tm);
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void CronRecordsInterface(char *argres, int rw);
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void AstroRecordsInterface(char *argres, int rw);
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/**
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* \brief Handle all actions under all objects
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* \param obj Index of the object
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@ -235,7 +235,7 @@ typedef struct
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cron_timer_t Timers[CONFIG_WEBGUIAPP_CRON_NUMBER];
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#ifdef CONFIG_WEBGUIAPP_ASTRO_ENABLE
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astro_handle_t Astro;
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#endif
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} SYS_CONFIG;
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258
src/CronTimers.c
258
src/CronTimers.c
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@ -25,7 +25,6 @@
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#include "string.h"
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#include <math.h>
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#define TAG "CRON_TIMER"
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static cron_job *JobsList[CONFIG_WEBGUIAPP_CRON_NUMBER];
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@ -152,6 +151,52 @@ esp_err_t ReloadCronSheduler()
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return ESP_OK;
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}
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void CronRecordsInterface(char *argres, int rw)
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{
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if (rw)
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{
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struct jReadElement result;
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cron_timer_t T = { 0 };
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jRead(argres, "", &result);
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if (result.dataType == JREAD_ARRAY)
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{
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int i;
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for (i = 0; i < result.elements; i++)
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{
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T.num = jRead_int(argres, "[*{'num'", &i);
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T.del = jRead_int(argres, "[*{'del'", &i);
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T.enab = jRead_int(argres, "[*{'enab'", &i);
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T.prev = jRead_int(argres, "[*{'prev'", &i);
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jRead_string(argres, "[*{'name'", T.name, sizeof(T.name), &i);
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jRead_string(argres, "[*{'cron'", T.cron, sizeof(T.cron), &i);
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jRead_string(argres, "[*{'exec'", T.exec, sizeof(T.exec), &i);
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memcpy(&GetSysConf()->Timers[T.num - 1], &T, sizeof(cron_timer_t));
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}
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ReloadCronSheduler();
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}
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}
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else
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{
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struct jWriteControl jwc;
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jwOpen(&jwc, argres, VAR_MAX_VALUE_LENGTH, JW_ARRAY, JW_COMPACT);
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for (int idx = 0; idx < CRON_TIMERS_NUMBER; idx++)
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{
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cron_timer_t T;
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memcpy(&T, &GetSysConf()->Timers[idx], sizeof(cron_timer_t));
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jwArr_object(&jwc);
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jwObj_int(&jwc, "num", (unsigned int) T.num);
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jwObj_int(&jwc, "del", (T.del) ? 1 : 0);
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jwObj_int(&jwc, "enab", (T.enab) ? 1 : 0);
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jwObj_int(&jwc, "prev", (T.prev) ? 1 : 0);
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jwObj_string(&jwc, "name", T.name);
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jwObj_string(&jwc, "cron", T.cron);
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jwObj_string(&jwc, "exec", T.exec);
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jwEnd(&jwc);
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}
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jwClose(&jwc);
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}
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}
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/************************ ASTRO *******************************/
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#define C (3.14159265/180.0)
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@ -167,17 +212,15 @@ static uint16_t ssTime = 0;
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static float Lat, Lon, Ang;
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static float GetSunEvent(uint8_t event, uint16_t day);
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static int GetSunEvent(uint8_t event, uint32_t unixt, float ang);
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uint16_t NumberDayFromUnix(uint32_t t)
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{
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time_t clock;
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struct tm * tp;
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clock = t;
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tp = gmtime(&clock);
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return ((uint16_t) tp->tm_yday) + 1;
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time_t clock;
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struct tm *tp;
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clock = t;
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tp = gmtime(&clock);
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return ((uint16_t) tp->tm_yday) + 1;
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}
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void SetSunConditions(double lat, double lon, double ang)
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@ -189,110 +232,177 @@ void SetSunConditions(double lat, double lon, double ang)
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void SetSunTimes(uint32_t t)
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{
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if (1)
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{
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double tt;
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tt = GetSunEvent(0, NumberDayFromUnix(t));
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if (tt > 0)
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srTime = (uint16_t) (60.0 * tt);
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else
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double tt;
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tt = GetSunEvent(0, t, SUN_ANG);
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if (tt > 0)
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srTime = tt;
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else
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srTime = 0xffff; //no valid sinrise time
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tt = GetSunEvent(1, NumberDayFromUnix(t));
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if (tt > 0)
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ssTime = (uint16_t) (60.0 * tt);
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else
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tt = GetSunEvent(1, t, SUN_ANG);
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if (tt > 0)
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ssTime = tt;
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else
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ssTime = 0xffff; //no valid sunset time
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}
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ESP_LOGI("ASTRO", "Day number %d", NumberDayFromUnix(t));
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ESP_LOGI("ASTRO", "Sanrise %dh %dm", srTime/60 + 2, srTime - (srTime/60 * 60));
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ESP_LOGI("ASTRO", "Sanset %dh %dm", ssTime/60 + 2 , ssTime - (ssTime/60 * 60));
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ESP_LOGI("ASTRO", "Day number %d", NumberDayFromUnix(t));
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ESP_LOGI("ASTRO", "Sanrise %dh %dm", srTime / 60 + 2, srTime - (srTime / 60 * 60));
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ESP_LOGI("ASTRO", "Sanset %dh %dm", ssTime / 60 + 2, ssTime - (ssTime / 60 * 60));
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}
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uint16_t GetSunrise(void)
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{
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return srTime;
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return srTime;
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}
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uint16_t GetSunset(void)
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{
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return ssTime;
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return ssTime;
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}
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static float GetSunEvent(uint8_t event, uint16_t day)
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static int GetSunEvent(uint8_t event, uint32_t unixt, float ang)
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{
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float lngHour, t, M, L, RA, sinDec, cosDec, cosH, H, T, UT;
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float Lquadrant, RAquadrant;
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float zen;
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if (SUN_ANG == 0)
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zen = zenith + (float) SUN_ANG; //sunrise/set
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else
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zen = 90.0 + (float) SUN_ANG; //twilight
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lngHour = LON / 15;
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if (event == 0)
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t = day + ((6 - lngHour) / 24);
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else
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t = day + ((18 - lngHour) / 24);
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float lngHour, t, M, L, RA, sinDec, cosDec, cosH, H, T, UT;
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float Lquadrant, RAquadrant;
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float zen;
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int day = NumberDayFromUnix(unixt);
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if (ang == 0)
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zen = zenith + (float) ang; //sunrise/set
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else
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zen = 90.0 + (float) ang; //twilight
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lngHour = LON / 15;
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if (event == 0)
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t = day + ((6 - lngHour) / 24);
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else
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t = day + ((18 - lngHour) / 24);
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M = (0.9856 * t) - 3.289;
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L = M + (1.916 * sin(M * C)) + (0.020 * sin(2 * M * C)) + 282.634;
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if (L > 360)
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M = (0.9856 * t) - 3.289;
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L = M + (1.916 * sin(M * C)) + (0.020 * sin(2 * M * C)) + 282.634;
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if (L > 360)
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{
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L = L - 360;
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L = L - 360;
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}
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else if (L < 0)
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else if (L < 0)
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{
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L = L + 360;
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L = L + 360;
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}
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RA = B * atan(0.91764 * tan(L * C));
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if (RA > 360)
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RA = B * atan(0.91764 * tan(L * C));
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if (RA > 360)
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{
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RA = RA - 360;
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RA = RA - 360;
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}
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else if (RA < 0)
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else if (RA < 0)
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{
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RA = RA + 360;
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RA = RA + 360;
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}
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Lquadrant = (floor(L / 90)) * 90;
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RAquadrant = (floor(RA / 90)) * 90;
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RA = RA + (Lquadrant - RAquadrant);
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RA = RA / 15;
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sinDec = 0.39782 * sin(L * C);
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cosDec = cos(asin(sinDec));
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cosH = (cos(zen * C) - (sinDec * sin(LAT * C))) / (cosDec * cos(LAT * C));
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Lquadrant = (floor(L / 90)) * 90;
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RAquadrant = (floor(RA / 90)) * 90;
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RA = RA + (Lquadrant - RAquadrant);
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RA = RA / 15;
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sinDec = 0.39782 * sin(L * C);
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cosDec = cos(asin(sinDec));
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cosH = (cos(zen * C) - (sinDec * sin(LAT * C))) / (cosDec * cos(LAT * C));
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if (event == 0)
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if (event == 0)
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{ //rise
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if (cosH > 1)
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return -1;
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H = 360 - B * (acos(cosH));
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if (cosH > 1)
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return -1;
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H = 360 - B * (acos(cosH));
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}
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else
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else
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{ //set
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if (cosH < -1)
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return -1;
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H = B * (acos(cosH));
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if (cosH < -1)
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return -1;
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H = B * (acos(cosH));
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}
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H = H / 15;
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T = H + RA - (0.06571 * t) - 6.622;
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H = H / 15;
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T = H + RA - (0.06571 * t) - 6.622;
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UT = T - lngHour;
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UT = T - lngHour;
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if (UT >= 24)
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if (UT >= 24)
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{
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UT = UT - 24;
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UT = UT - 24;
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}
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else if (UT < 0)
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else if (UT < 0)
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{
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UT = UT + 24;
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UT = UT + 24;
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}
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return UT;
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return (int) floor(UT * 60.0);
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}
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void AstroRecordsInterface(char *argres, int rw)
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{
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if (rw)
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{
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struct jReadElement result;
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struct jReadElement arr;
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jRead(argres, "", &result);
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if (result.dataType == JREAD_OBJECT)
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{
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GetSysConf()->Astro.lat = jRead_double(argres, "{'lat'", 0);
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GetSysConf()->Astro.lon = jRead_double(argres, "{'lon'", 0);
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jRead(argres, "{'records'", &arr);
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char *asto_rec = (char*) arr.pValue;
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for (int i = 0; i < arr.elements; i++)
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{
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astro_timer_t T;
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T.num = jRead_int(asto_rec, "[*{'num'", &i);
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T.del = jRead_int(asto_rec, "[*{'del'", &i);
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T.enab = jRead_int(asto_rec, "[*{'enab'", &i);
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T.rise = jRead_int(asto_rec, "[*{'rise'", &i);
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T.sensor_enab = jRead_int(asto_rec, "[*{'sensor_enab'", &i);
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T.sensor_angle = (float) jRead_double(asto_rec, "[*{'sensor_angle'", &i);
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//T.sensor_time = jRead_int(asto_rec, "[*{'sensor_time'", &i);
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T.main_angle = (float) jRead_double(asto_rec, "[*{'main_angle'", &i);
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//T.main_time = jRead_int(asto_rec, "[*{'main_time'", &i);
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jRead_string(asto_rec, "[*{'name'", T.name, sizeof(T.name), &i);
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jRead_string(asto_rec, "[*{'exec'", T.exec, sizeof(T.exec), &i);
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time_t now;
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time(&now);
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T.sensor_time = GetSunEvent((T.rise) ? 0 : 1, now, T.sensor_angle);
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T.main_time = GetSunEvent((T.rise) ? 0 : 1, now, T.main_angle);
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memcpy(&GetSysConf()->Astro.records[T.num - 1], &T, sizeof(astro_timer_t));
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}
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}
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}
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struct jWriteControl jwc;
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jwOpen(&jwc, argres, VAR_MAX_VALUE_LENGTH, JW_OBJECT, JW_COMPACT);
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jwObj_double(&jwc, "lat", GetSysConf()->Astro.lat);
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jwObj_double(&jwc, "lon", GetSysConf()->Astro.lon);
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jwObj_array(&jwc, "records");
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for (int idx = 0; idx < CRON_TIMERS_NUMBER; idx++)
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{
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astro_timer_t T;
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memcpy(&T, &GetSysConf()->Astro.records[idx], sizeof(astro_timer_t));
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jwArr_object(&jwc);
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jwObj_int(&jwc, "num", (unsigned int) T.num);
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jwObj_int(&jwc, "del", (T.del) ? 1 : 0);
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jwObj_int(&jwc, "enab", (T.enab) ? 1 : 0);
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jwObj_int(&jwc, "rise", (T.rise) ? 1 : 0);
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jwObj_int(&jwc, "sensor_enab", (T.sensor_enab) ? 1 : 0);
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jwObj_double(&jwc, "sensor_angle", (double) T.sensor_angle);
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jwObj_int(&jwc, "sensor_time", T.sensor_time);
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jwObj_double(&jwc, "main_angle", (double) T.main_angle);
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jwObj_int(&jwc, "main_time", T.main_time);
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jwObj_string(&jwc, "name", T.name);
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jwObj_string(&jwc, "exec", T.exec);
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jwEnd(&jwc);
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}
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jwEnd(&jwc);
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jwClose(&jwc);
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}
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@ -311,52 +311,15 @@ static void funct_ota_newver(char *argres, int rw)
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//CRON implementation BEGIN
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static void funct_cronrecs(char *argres, int rw)
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{
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if (rw)
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{
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struct jReadElement result;
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cron_timer_t T = { 0 };
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jRead(argres, "", &result);
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if (result.dataType == JREAD_ARRAY)
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{
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int i;
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for (i = 0; i < result.elements; i++)
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{
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T.num = jRead_int(argres, "[*{'num'", &i);
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T.del = jRead_int(argres, "[*{'del'", &i);
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T.enab = jRead_int(argres, "[*{'enab'", &i);
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T.prev = jRead_int(argres, "[*{'prev'", &i);
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jRead_string(argres, "[*{'name'", T.name, sizeof(T.name), &i);
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jRead_string(argres, "[*{'cron'", T.cron, sizeof(T.cron), &i);
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jRead_string(argres, "[*{'exec'", T.exec, sizeof(T.exec), &i);
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memcpy(&GetSysConf()->Timers[T.num - 1], &T, sizeof(cron_timer_t));
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}
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ReloadCronSheduler();
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}
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}
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else
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{
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struct jWriteControl jwc;
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jwOpen(&jwc, argres, VAR_MAX_VALUE_LENGTH, JW_ARRAY, JW_COMPACT);
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for (int idx = 0; idx < CRON_TIMERS_NUMBER; idx++)
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{
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cron_timer_t T;
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memcpy(&T, &GetSysConf()->Timers[idx], sizeof(cron_timer_t));
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jwArr_object(&jwc);
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jwObj_int(&jwc, "num", (unsigned int) T.num);
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jwObj_int(&jwc, "del", (T.del) ? 1 : 0);
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jwObj_int(&jwc, "enab", (T.enab) ? 1 : 0);
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jwObj_int(&jwc, "prev", (T.prev) ? 1 : 0);
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jwObj_string(&jwc, "name", T.name);
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jwObj_string(&jwc, "cron", T.cron);
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jwObj_string(&jwc, "exec", T.exec);
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jwEnd(&jwc);
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}
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jwClose(&jwc);
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}
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CronRecordsInterface(argres, rw);
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}
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//CRON implementation END
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static void funct_astrorecs(char *argres, int rw)
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{
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AstroRecordsInterface(argres, rw);
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}
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static void funct_serial_mode(char *argres, int rw)
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{
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@ -411,7 +374,6 @@ static void funct_sd_block(char *argres, int rw)
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}
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#endif
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static void funct_astro_test(char *argres, int rw)
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{
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ESP_LOGI("API", "Astro test executed");
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@ -420,7 +382,6 @@ static void funct_astro_test(char *argres, int rw)
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}
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const int hw_rev = CONFIG_BOARD_HARDWARE_REVISION;
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const bool VAR_TRUE = true;
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const bool VAR_FALSE = false;
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@ -608,10 +569,11 @@ const rest_var_t SystemVariables[] =
|
|||
{ 0, "sd_visible", (bool*) (&VAR_TRUE), VAR_BOOL, R, 0, 1 }
|
||||
#else
|
||||
{ 0, "sd_visible", (bool*) (&VAR_FALSE), VAR_BOOL, R, 0, 1 },
|
||||
#endif
|
||||
#endif
|
||||
|
||||
{ 0, "astro_test", &funct_astro_test, VAR_FUNCT, RW, 0, 0 },
|
||||
#ifdef CONFIG_WEBGUIAPP_ASTRO_ENABLE
|
||||
#ifdef CONFIG_WEBGUIAPP_ASTRO_ENABLE
|
||||
{ 0, "astrorecs", &funct_astrorecs, VAR_FUNCT, RW, 0, 0 },
|
||||
|
||||
#endif
|
||||
|
||||
|
|
|
|||
|
|
@ -447,6 +447,26 @@ esp_netif_str_to_ip4(CONFIG_WEBGUIAPP_DNS3_ADDRESS_DEFAULT, (esp_ip4_addr_t*) &C
|
|||
strcpy(Conf->Timers[i].exec, "OBJECT,ACTION,ARGUMENTS");
|
||||
|
||||
}
|
||||
|
||||
#ifdef CONFIG_WEBGUIAPP_ASTRO_ENABLE
|
||||
Conf->Astro.lat = 0.00;
|
||||
Conf->Astro.lon = 0.00;
|
||||
for (int i = 0; i < CONFIG_WEBGUIAPP_CRON_NUMBER; i++)
|
||||
{
|
||||
Conf->Astro.records[i].num = i + 1;
|
||||
Conf-> Astro.records[i].del = true;
|
||||
Conf-> Astro.records[i].enab = false;
|
||||
Conf->Astro.records[i].rise = true;
|
||||
Conf->Astro.records[i].sensor_enab = false;
|
||||
Conf->Astro.records[i].sensor_angle = 3.00;
|
||||
Conf->Astro.records[i].sensor_time = 0;
|
||||
Conf->Astro.records[i].main_angle = 6.00;
|
||||
Conf->Astro.records[i].main_time = 0;
|
||||
|
||||
strcpy(Conf->Astro.records[i].name, "Astro Name");
|
||||
strcpy(Conf->Astro.records[i].exec, "OBJECT,ACTION,ARGUMENTS");
|
||||
}
|
||||
#endif
|
||||
}
|
||||
|
||||
esp_err_t ReadNVSSysConfig(SYS_CONFIG *SysConf)
|
||||
|
|
|
|||
Loading…
Reference in New Issue
Block a user