add support for hardware rtc, not sure if this version won't crash
This commit is contained in:
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+2
-1
@@ -1,6 +1,7 @@
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#pragma once
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#include "TimeLib.h"
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#include <TimeLib.h>
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#include "globals.h"
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#include "rtc.hpp"
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static const char ntpServerName[] = "0.pool.ntp.org";
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static const int localPort = 8944;
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+2
-1
@@ -5,6 +5,7 @@
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#include "Tuner_Interface.h"
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#include "RdsPiBuffer.hpp"
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#include "change_detector.h"
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#include "rtc.hpp"
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extern const unsigned char tuner_init_tab[] PROGMEM;
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extern const unsigned char tuner_init_tab9216[] PROGMEM;
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@@ -455,7 +456,7 @@ typedef struct _rds_ {
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unsigned long blockcounter[33];
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uint16_t rdsA, rdsB, rdsC, rdsD, rdsErr, rdsStat, correctPI, rdsplusTag1, rdsplusTag2, PICTlock = 0;
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bool ps12error, ps34error, ps56error, ps78error;
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time_t time;
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int32_t clock_correction;
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int32_t offset;
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uint16_t aid[10];
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uint32_t dabaffreq;
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+28
-5
@@ -1,8 +1,31 @@
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#pragma once
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#define VERSION "v2.20.5c"
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#include <Arduino.h>
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#define REVERSE false
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#define VERSION "v2.20.5d"
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#define ROTARY_PIN_A 34
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#define ROTARY_PIN_B 36
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#define ROTARY_BUTTON 39
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#define PIN_POT 35
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#define BATTERY_PIN 13
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#define BANDBUTTON 4
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#define BWBUTTON 25
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#define MODEBUTTON 26
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#define CONTRASTPIN 2
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#define STANDBYLED 19
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#define SMETERPIN 27
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#define TOUCHIRQ 33
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#define EXT_IRQ 14
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#define XL9555_ADDRESS 0x20 // GPIO driver used in the DP666 for the 0-9 + DX(Backspace) + Enter buttons
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// Assumes that A0 = A1 = A2 = 0 of the chip, this can range from 0x20 to 0x27
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#define TEF668X_ADDRESS 0x64 // I2C address of the TEF itself! Not sure if this even changes
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#define RX8010SJ_ADDRESS 0x32 // Address of the RTC chip in the DP666 receivers
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#define REVERSE false
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#define ALEFT -1
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#define ACENTER 0
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@@ -15,12 +38,12 @@
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(x_ < y_) ? x_ : y_; }
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#define TIMER_OFFSET_TIMER (TIMER_500_TICK)
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#define TIMER_BW_TIMER 300
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#define TIMER_BW_TIMER (TIMER_500_TICK)
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#define TIMER_SNR_TIMER 50
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#define TIMER_BAT_TIMER 250
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#define TIMER_BAT_TIMER (TIMER_500_TICK)
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#define TIMER_500_TICK 500
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#define BAT_LEVEL_STAGE 4
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#define BAT_LEVEL_STAGE 8
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#define BATTERY_LOW_VALUE 3.2
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#define BATTERY_FULL_VALUE 4.12
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+4
-19
@@ -10,24 +10,11 @@
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#include <WiFiUdp.h>
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#include <WiFiClient.h>
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#include <WebServer.h>
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#include "WiFiConnect.h"
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#include "WiFiConnectParam.h"
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#include "ESP32Time.h"
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#include <WiFiConnect.h>
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#include <WiFiConnectParam.h>
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#include "scrolling_text.h"
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#include "rtc.hpp"
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#define ROTARY_PIN_A 34
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#define ROTARY_PIN_B 36
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#define ROTARY_BUTTON 39
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#define PIN_POT 35
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#define BATTERY_PIN 13
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#define BANDBUTTON 4
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#define BWBUTTON 25
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#define MODEBUTTON 26
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#define CONTRASTPIN 2
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#define STANDBYLED 19
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#define SMETERPIN 27
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#define TOUCHIRQ 33
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#define EXT_IRQ 14
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extern bool RDSstatus;
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extern bool RDSstatusold;
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@@ -52,14 +39,12 @@ extern bool memorystore;
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extern bool memreset, memtune;
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extern bool menu, menuopen;
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extern bool mwstepsize;
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extern bool NTPupdated;
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extern bool optenc;
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extern bool rdsflagreset;
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extern bool rdsreset;
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extern bool rdsstatscreen;
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extern bool RDSSPYTCP, RDSSPYUSB;
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extern bool rotaryaccelerate;
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extern bool rtcset;
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extern bool scandxmode;
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extern bool scanholdflag;
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extern bool scanholdonsignal;
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@@ -359,7 +344,6 @@ extern const size_t language_entrynumber;
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extern mem presets[EE_PRESETS_CNT];
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extern TEF6686 radio;
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extern ESP32Time rtc;
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extern TFT_eSprite FrequencySprite;
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extern TFT_eSprite RDSSprite;
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@@ -369,6 +353,7 @@ extern TFT_eSprite OneBigLineSprite;
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extern TFT_eSprite SignalSprite;
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extern TFT_eSprite PSSprite;
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extern TFT_eSprite PTYSprite;
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extern TFT_eSprite CTSprite;
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extern WiFiConnect wc;
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extern WiFiServer Server;
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@@ -5,6 +5,7 @@ using fs::FS;
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#include <WebServer.h>
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#include <SPIFFS.h>
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#include "globals.h"
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#include "rtc.hpp"
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void handleRoot();
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void handleDownloadCSV();
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@@ -7,6 +7,8 @@
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#include <WiFi.h>
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#include <ESP32Time.h>
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#include "globals.h"
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#include "NTPupdate.h"
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#include "rtc.hpp"
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void ShowAdvancedRDS();
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void readRds();
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@@ -0,0 +1,18 @@
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#pragma once
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#include "constants.h"
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#include <ESP32Time.h>
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#include <RX8010SJ.h>
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extern bool rtcset;
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extern bool NTPupdated;
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extern ESP32Time rtc;
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extern bool rx_rtc_avail;
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extern RX8010SJ::Adapter rx_rtc;
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void timeToDateTime(time_t t, struct RX8010SJ::DateTime* dateTime);
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time_t dateTimeToTime(const struct RX8010SJ::DateTime* dateTime);
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void sync_to_rx_rtc(int32_t offset = 0);
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void sync_from_rx_rtc(int32_t offset = 0);
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@@ -0,0 +1,429 @@
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#include "RX8010SJ.h"
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namespace RX8010SJ {
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Adapter::Adapter(byte i2cSlaveAddr) {
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i2cAddress = i2cSlaveAddr;
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}
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Adapter::~Adapter() {}
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/**
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*
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* PUBLIC FUNCTIONS
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*
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*/
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/**
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* GENERAL
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*/
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bool Adapter::initAdapter() {
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Wire.begin();
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delay(40);
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return initModule();
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}
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bool Adapter::initModule() {
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byte flagValue = readFromModule(RX8010_FLAG);
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byte vlf = getValueFromBinary(flagValue, RX8010_VLF_POS);
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// It's 1 when the module had power issues and needs to be reinitialised
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if (vlf == 1) {
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// The oscillator takes some time stabilise
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while (vlf == 1) {
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flagValue = setBinary(flagValue, RX8010_VLF_POS, 0);
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writeToModule(RX8010_FLAG, vlf);
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delay(10);
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flagValue = readFromModule(RX8010_FLAG);
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vlf = getValueFromBinary(flagValue, RX8010_VLF_POS);
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}
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resetModule();
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return true;
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}
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return false;
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}
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void Adapter::resetModule() {
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writeToModule(RX8010_RESV17, RX8010_ADDR17_DEF_VAL);
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writeToModule(RX8010_RESV30, RX8010_ADDR30_DEF_VAL);
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writeToModule(RX8010_RESV31, RX8010_ADDR31_DEF_VAL);
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writeToModule(RX8010_IRQ, RX8010_IRQ_DEF_VAL);
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writeFlag(RX8010_EXT, RX8010_TE_POS, 0);
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writeFlag(RX8010_FLAG, RX8010_VLF_POS, 0);
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writeToModule(RX8010_CTRL, RX8010_CTRL_DEF_VAL);
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}
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void Adapter::toggleGlobalStop(bool stopEnabled) {
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writeFlag(RX8010_CTRL, RX8010_STOP_POS, stopEnabled ? 1 : 0);
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}
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/**
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* DATE TIME
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*/
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DateTime Adapter::readDateTime() {
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byte secondBin = readFromModule(RX8010_SEC);
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byte minuteBin = readFromModule(RX8010_MIN);
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byte hourBin = readFromModule(RX8010_HOUR);
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byte dayOfWeekBin = readFromModule(RX8010_WDAY);
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byte dayOfMonthBin = readFromModule(RX8010_MDAY);
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byte monthBin = readFromModule(RX8010_MONTH);
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byte yearBin = readFromModule(RX8010_YEAR);
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DateTime dateTime;
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dateTime.second = sumValueFromBinary(secondBin, 7);
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dateTime.minute =sumValueFromBinary(minuteBin, 7);
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dateTime.hour = sumValueFromBinary(hourBin, 6);
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dateTime.dayOfWeek = getSingleBit(dayOfWeekBin);
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dateTime.dayOfMonth = sumValueFromBinary(dayOfMonthBin, 6);
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dateTime.month = sumValueFromBinary(monthBin, 5);
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dateTime.year = sumValueFromBinary(yearBin, 8);
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return dateTime;
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}
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void Adapter::writeDateTime(DateTime dateTime) {
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byte second = dateTime.second % 10;
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byte minute = dateTime.minute % 10;
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byte hour = dateTime.hour % 10;
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byte dayOfWeek = setBinary(0, dateTime.dayOfWeek, 1);
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byte dayOfMonth = dateTime.dayOfMonth % 10;
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byte month = dateTime.month % 10;
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byte year = dateTime.year % 10;
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second = setFortyBinary(second, dateTime.second);
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second = setTwentyBinary(second, dateTime.second);
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second = setTenBinary(second, dateTime.second);
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minute = setFortyBinary(minute, dateTime.minute);
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minute = setTwentyBinary(minute, dateTime.minute);
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minute = setTenBinary(minute, dateTime.minute);
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hour = setTwentyBinary(hour, dateTime.hour);
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hour = setTenBinary(hour, dateTime.hour);
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dayOfMonth = setTwentyBinary(dayOfMonth, dateTime.dayOfMonth);
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dayOfMonth = setTenBinary(dayOfMonth, dateTime.dayOfMonth);
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month = setTenBinary(month, dateTime.month);
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year = setEightyBinary(year, dateTime.year);
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year = setFortyBinary(year, dateTime.year);
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year = setTwentyBinary(year, dateTime.year);
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year = setTenBinary(year, dateTime.year);
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writeToModule(RX8010_SEC, second);
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writeToModule(RX8010_MIN, minute);
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writeToModule(RX8010_HOUR, hour);
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writeToModule(RX8010_WDAY, dayOfWeek);
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writeToModule(RX8010_MDAY, dayOfMonth);
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writeToModule(RX8010_MONTH, month);
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writeToModule(RX8010_YEAR, year);
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}
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/**
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* FCT
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*/
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void Adapter::setFCTCounter(uint16_t multiplier, byte frequency) {
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byte firstHalf = multiplier & 0b11111111;
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byte secondHalf = multiplier >> 8;
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writeToModule(RX8010_TCOUNT0, firstHalf);
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writeToModule(RX8010_TCOUNT1, secondHalf);
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writeFlag(RX8010_EXT, RX8010_TSEL0_POS, getValueFromBinary(frequency, RX8010_TSEL0_POS));
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writeFlag(RX8010_EXT, RX8010_TSEL1_POS, getValueFromBinary(frequency, RX8010_TSEL1_POS));
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writeFlag(RX8010_EXT, RX8010_TSEL2_POS, getValueFromBinary(frequency, RX8010_TSEL2_POS));
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}
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uint16_t Adapter::getFCTCounter() {
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byte firstHalf = readFromModule(RX8010_TCOUNT0);
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byte secondHalf = readFromModule(RX8010_TCOUNT1);
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return firstHalf + (secondHalf << 8);
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}
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void Adapter::setFCTOutput(byte pin) {
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if (pin > 1) {
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writeFlag(RX8010_CTRL, RX8010_TIE_POS, 0);
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} else {
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writeFlag(RX8010_IRQ, RX8010_TMPIN_POS, pin);
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writeFlag(RX8010_CTRL, RX8010_TIE_POS, 1);
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}
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}
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void Adapter::enableFCT() {
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writeFlag(RX8010_CTRL, RX8010_TSTP_POS, 0);
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writeFlag(RX8010_CTRL, RX8010_TIE_POS, 1);
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writeFlag(RX8010_EXT, RX8010_TE_POS, 1);
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}
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void Adapter::disableFCT() {
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writeFlag(RX8010_EXT, RX8010_TE_POS, 0);
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writeFlag(RX8010_CTRL, RX8010_TSTP_POS, 1);
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}
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bool Adapter::checkFCT() {
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byte flag = readFromModule(RX8010_FLAG);
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bool interrupted = getValueFromBinary(flag, RX8010_TF_POS) == 1;
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if (interrupted) {
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writeFlag(RX8010_FLAG, RX8010_TF_POS, 0);
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}
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return interrupted;
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}
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/**
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* ALARM
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*/
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void Adapter::setAlarm(DateTime time, byte mode) {
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byte minute;
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byte hour;
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if (time.minute == RX8010_ALARM_IGNORE) {
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minute = RX8010_AL_DISABLED;
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} else {
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minute = time.minute % 10;
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minute = setFortyBinary(minute, time.minute);
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minute = setTwentyBinary(minute, time.minute);
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minute = setTenBinary(minute, time.minute);
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}
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if (time.hour == RX8010_ALARM_IGNORE) {
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hour = RX8010_AL_DISABLED;
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} else {
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hour = time.hour % 10;
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hour = setTwentyBinary(hour, time.hour);
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hour = setTenBinary(hour, time.hour);
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}
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writeToModule(RX8010_ALMIN, minute);
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writeToModule(RX8010_ALHOUR, hour);
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if (mode == RX8010_ALARM_MOD_WEEK) {
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writeToModule(RX8010_ALWDAY, time.dayOfWeek == RX8010_ALARM_IGNORE ? RX8010_AL_DISABLED : time.dayOfWeek);
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} else {
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byte day;
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if (time.hour == RX8010_ALARM_IGNORE) {
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day = RX8010_AL_DISABLED;
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} else {
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day = time.dayOfMonth % 10;
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day = setTwentyBinary(hour, time.hour);
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day = setTenBinary(hour, time.hour);
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}
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writeToModule(RX8010_ALWDAY, day);
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}
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writeFlag(RX8010_EXT, RX8010_WADA_POS, mode == RX8010_ALARM_MOD_WEEK ? 0 : 1);
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}
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void Adapter::enableAlarm() {
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writeFlag(RX8010_FLAG, RX8010_AF_POS, 0);
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writeFlag(RX8010_CTRL, RX8010_AIE_POS, 1);
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}
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void Adapter::disableAlarm() {
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writeFlag(RX8010_CTRL, RX8010_AIE_POS, 0);
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writeFlag(RX8010_FLAG, RX8010_AF_POS, 0);
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}
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bool Adapter::checkAlarm() {
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byte flag = readFromModule(RX8010_FLAG);
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bool triggered = getValueFromBinary(flag, RX8010_AF_POS) == 1;
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if (triggered) {
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writeFlag(RX8010_FLAG, RX8010_AF_POS, 0);
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}
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return triggered;
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}
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/**
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* TIME UPDATE INTERRUPT
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*/
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void Adapter::setTUIMode(byte mode) {
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writeFlag(RX8010_EXT, RX8010_USEL_POS, mode);
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}
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void Adapter::enableTUI() {
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writeFlag(RX8010_CTRL, RX8010_UIE_POS, 1);
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}
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void Adapter::disableTUI() {
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writeFlag(RX8010_CTRL, RX8010_UIE_POS, 0);
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}
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bool Adapter::checkTUI() {
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byte flag = readFromModule(RX8010_FLAG);
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bool interrupted = getValueFromBinary(flag, RX8010_UF_POS) == 1;
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if (interrupted) {
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writeFlag(RX8010_FLAG, RX8010_UF_POS, 0);
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}
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return interrupted;
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}
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/**
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* FREQUENCY OUTPUT
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*/
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void Adapter::enableFOUT(byte frequency, byte pin) {
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switch (frequency) {
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case 3:
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writeFlag(RX8010_EXT, RX8010_FSEL0_POS, 1);
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writeFlag(RX8010_EXT, RX8010_FSEL1_POS, 1);
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break;
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case 2:
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writeFlag(RX8010_EXT, RX8010_FSEL0_POS, 0);
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writeFlag(RX8010_EXT, RX8010_FSEL1_POS, 1);
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break;
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case 1:
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writeFlag(RX8010_EXT, RX8010_FSEL0_POS, 1);
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writeFlag(RX8010_EXT, RX8010_FSEL1_POS, 0);
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break;
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case 0:
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default:
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disableFOUT();
|
||||
return;
|
||||
}
|
||||
|
||||
writeFlag(RX8010_IRQ, RX8010_FOPIN0_POS, pin);
|
||||
writeFlag(RX8010_IRQ, RX8010_FOPIN1_POS, 0);
|
||||
}
|
||||
|
||||
void Adapter::disableFOUT() {
|
||||
writeFlag(RX8010_EXT, RX8010_FSEL0_POS, 0);
|
||||
writeFlag(RX8010_EXT, RX8010_FSEL1_POS, 0);
|
||||
}
|
||||
|
||||
/**
|
||||
*
|
||||
* PRIVATE FUNCTIONS
|
||||
*
|
||||
*/
|
||||
|
||||
byte Adapter::readFromModule(byte address) {
|
||||
Wire.beginTransmission(i2cAddress);
|
||||
Wire.write(address);
|
||||
Wire.endTransmission();
|
||||
Wire.requestFrom((uint8_t)i2cAddress, (uint8_t) 1);
|
||||
|
||||
if (Wire.available()) {
|
||||
return Wire.read();
|
||||
}
|
||||
|
||||
return -1;
|
||||
}
|
||||
|
||||
void Adapter::writeToModule(byte address, byte data) {
|
||||
Wire.beginTransmission(i2cAddress);
|
||||
Wire.write(address);
|
||||
Wire.write(data);
|
||||
Wire.endTransmission();
|
||||
}
|
||||
|
||||
void Adapter::writeFlag(byte address, byte pos, byte value) {
|
||||
byte addressValue = readFromModule(address);
|
||||
addressValue = setBinary(addressValue, pos, value);
|
||||
writeToModule(address, addressValue);
|
||||
}
|
||||
|
||||
byte Adapter::getSingleBit(byte binary) {
|
||||
for (byte i = 0; i <= 7; i++) {
|
||||
if (binary >> i == 1) {
|
||||
return i;
|
||||
}
|
||||
}
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
||||
byte Adapter::getValueFromBinary(byte binary, byte pos) {
|
||||
return getValueFromBinary(binary, pos, 1);
|
||||
}
|
||||
|
||||
byte Adapter::getValueFromBinary(byte binary, byte pos, byte val) {
|
||||
return ((binary >> pos) & 1) == 1 ? val : 0;
|
||||
}
|
||||
|
||||
byte Adapter::sumValueFromBinary(byte binary, byte length) {
|
||||
byte sum = 0;
|
||||
|
||||
for (byte i = 0; i < length; i++) {
|
||||
byte value;
|
||||
|
||||
if (i < 4 ) {
|
||||
value = 1 << i;
|
||||
} else {
|
||||
value = 10 * (1 << (i - 4));
|
||||
}
|
||||
|
||||
sum += getValueFromBinary(binary, i, value);
|
||||
}
|
||||
|
||||
return sum;
|
||||
}
|
||||
|
||||
byte Adapter::setEightyBinary(byte binary, byte val) {
|
||||
if (val >= 80) {
|
||||
return setBinary(binary, 7, 1);
|
||||
}
|
||||
|
||||
return setBinary(binary, 7, 0);
|
||||
}
|
||||
|
||||
byte Adapter::setFortyBinary(byte binary, byte val) {
|
||||
if (val >= 40 && val < 80) {
|
||||
return setBinary(binary, 6, 1);
|
||||
}
|
||||
|
||||
return setBinary(binary, 6, 0);
|
||||
}
|
||||
|
||||
byte Adapter::setTwentyBinary(byte binary, byte val) {
|
||||
if ((val >= 20 && val < 40) ||
|
||||
(val >= 60 && val < 80)) {
|
||||
|
||||
return setBinary(binary, 5, 1);
|
||||
}
|
||||
|
||||
return setBinary(binary, 5, 0);
|
||||
}
|
||||
|
||||
byte Adapter::setTenBinary(byte binary, byte val) {
|
||||
if ((val >= 10 && val < 20) ||
|
||||
(val >= 30 && val < 40) ||
|
||||
(val >= 50 && val < 60) ||
|
||||
(val >= 70 && val < 80) ||
|
||||
(val >= 90 && val < 100)) {
|
||||
|
||||
return setBinary(binary, 4, 1);
|
||||
}
|
||||
|
||||
return setBinary(binary, 4, 0);
|
||||
}
|
||||
|
||||
byte Adapter::setBinary(byte binary, byte pos, byte flagVal) {
|
||||
if (flagVal == 1) {
|
||||
return binary | (1 << pos);
|
||||
}
|
||||
|
||||
return binary & (~(1 << pos));
|
||||
}
|
||||
|
||||
}
|
||||
@@ -0,0 +1,152 @@
|
||||
#ifndef RX8010SJ_ADAPTER
|
||||
#define RX8010SJ_ADAPTER
|
||||
|
||||
#include "Arduino.h"
|
||||
#include "Wire.h"
|
||||
|
||||
#define RX8010_FCT_FREQ_4096 0b000
|
||||
#define RX8010_FCT_FREQ_64 0b001
|
||||
#define RX8010_FCT_FREQ_1 0b010
|
||||
#define RX8010_FCT_FREQ_1_60 0b011
|
||||
#define RX8010_FCT_FREQ_1_3600 0b100
|
||||
|
||||
#define RX8010_FCT_OUT_IRQ1 0b01
|
||||
#define RX8010_FCT_OUT_IRQ2 0b00
|
||||
#define RX8010_FCT_OUT_OFF 0b10
|
||||
|
||||
#define RX8010_ALARM_IGNORE 0b11111111
|
||||
#define RX8010_ALARM_MOD_MONTH 0b0
|
||||
#define RX8010_ALARM_MOD_WEEK 0b1
|
||||
|
||||
#define RX8010_TUI_MOD_SEC 0b0
|
||||
#define RX8010_TUI_MOD_MIN 0b1
|
||||
|
||||
#define RX8010_FOUT_FREQ_OFF 0b00
|
||||
#define RX8010_FOUT_FREQ_1 0b01
|
||||
#define RX8010_FOUT_FREQ_1024 0b10
|
||||
#define RX8010_FOUT_FREQ_32768 0b11
|
||||
#define RX8010_FOUT_IRQ1 0b01
|
||||
#define RX8010_FOUT_IRQ2 0b00
|
||||
|
||||
namespace RX8010SJ {
|
||||
#define RX8010_SEC 0x10
|
||||
#define RX8010_MIN 0x11
|
||||
#define RX8010_HOUR 0x12
|
||||
#define RX8010_WDAY 0x13
|
||||
#define RX8010_MDAY 0x14
|
||||
#define RX8010_MONTH 0x15
|
||||
#define RX8010_YEAR 0x16
|
||||
#define RX8010_RESV17 0x17
|
||||
#define RX8010_ALMIN 0x18
|
||||
#define RX8010_ALHOUR 0x19
|
||||
#define RX8010_ALWDAY 0x1A
|
||||
#define RX8010_TCOUNT0 0x1B
|
||||
#define RX8010_TCOUNT1 0x1C
|
||||
#define RX8010_EXT 0x1D
|
||||
#define RX8010_FLAG 0x1E
|
||||
#define RX8010_CTRL 0x1F
|
||||
/* 0x20 to 0x2F are user registers */
|
||||
#define RX8010_RESV30 0x30
|
||||
#define RX8010_RESV31 0x31
|
||||
#define RX8010_IRQ 0x32
|
||||
|
||||
/* Default values for reseting the module */
|
||||
#define RX8010_ADDR17_DEF_VAL 0xD8
|
||||
#define RX8010_ADDR30_DEF_VAL 0x00
|
||||
#define RX8010_ADDR31_DEF_VAL 0x08
|
||||
#define RX8010_ADDR31_DEF_VAL 0x08
|
||||
#define RX8010_IRQ_DEF_VAL 0x04
|
||||
#define RX8010_CTRL_DEF_VAL 0x04
|
||||
|
||||
#define RX8010_VLF_POS 1
|
||||
#define RX8010_TE_POS 4
|
||||
#define RX8010_TSEL0_POS 0
|
||||
#define RX8010_TSEL1_POS 1
|
||||
#define RX8010_TSEL2_POS 2
|
||||
#define RX8010_TIE_POS 4
|
||||
#define RX8010_TMPIN_POS 2
|
||||
#define RX8010_TF_POS 4
|
||||
#define RX8010_STOP_POS 6
|
||||
#define RX8010_TSTP_POS 2
|
||||
#define RX8010_AIE_POS 3
|
||||
#define RX8010_WADA_POS 3
|
||||
#define RX8010_AF_POS 3
|
||||
#define RX8010_USEL_POS 5
|
||||
#define RX8010_UF_POS 5
|
||||
#define RX8010_UIE_POS 5
|
||||
#define RX8010_FSEL0_POS 6
|
||||
#define RX8010_FSEL1_POS 7
|
||||
#define RX8010_FOPIN0_POS 0
|
||||
#define RX8010_FOPIN1_POS 1
|
||||
|
||||
#define RX8010_AL_DISABLED 0b10000000
|
||||
|
||||
struct DateTime {
|
||||
byte second;
|
||||
byte minute;
|
||||
byte hour;
|
||||
byte dayOfWeek; // Has to be set
|
||||
byte dayOfMonth;
|
||||
byte month;
|
||||
byte year; // Two digits
|
||||
};
|
||||
|
||||
class Adapter {
|
||||
public:
|
||||
// Constructor/destructor
|
||||
Adapter(byte i2cSlaveAddr);
|
||||
virtual ~Adapter();
|
||||
|
||||
// Methods
|
||||
bool initAdapter();
|
||||
bool initModule();
|
||||
void resetModule(void);
|
||||
void toggleGlobalStop(bool stopEnabled);
|
||||
|
||||
// Calendar
|
||||
DateTime readDateTime(void);
|
||||
void writeDateTime(DateTime dateTime);
|
||||
|
||||
// Fixed cycle interrupt
|
||||
void setFCTCounter(uint16_t multiplier, byte frequency);
|
||||
uint16_t getFCTCounter();
|
||||
void setFCTOutput(byte pin);
|
||||
void enableFCT();
|
||||
void disableFCT();
|
||||
bool checkFCT();
|
||||
|
||||
// Alarm
|
||||
void setAlarm(DateTime time, byte mode);
|
||||
void enableAlarm();
|
||||
void disableAlarm();
|
||||
bool checkAlarm();
|
||||
|
||||
// Time Update Interrupt
|
||||
void setTUIMode(byte mode);
|
||||
void enableTUI();
|
||||
void disableTUI();
|
||||
bool checkTUI();
|
||||
|
||||
// Frequency output
|
||||
void enableFOUT(byte frequency, byte pin);
|
||||
void disableFOUT();
|
||||
|
||||
private:
|
||||
byte i2cAddress;
|
||||
|
||||
byte readFromModule(byte address);
|
||||
void writeToModule(byte address, byte data);
|
||||
void writeFlag(byte address, byte pos, byte value);
|
||||
byte getSingleBit(byte binary);
|
||||
byte getValueFromBinary(byte binary, byte pos);
|
||||
byte getValueFromBinary(byte binary, byte pos, byte val);
|
||||
byte sumValueFromBinary(byte binary, byte length);
|
||||
byte setEightyBinary(byte binary, byte val);
|
||||
byte setFortyBinary(byte binary, byte val);
|
||||
byte setTwentyBinary(byte binary, byte val);
|
||||
byte setTenBinary(byte binary, byte val);
|
||||
byte setBinary(byte binary, byte pos, byte flagVal);
|
||||
};
|
||||
}
|
||||
|
||||
#endif
|
||||
@@ -0,0 +1,20 @@
|
||||
{
|
||||
"name": "RX8010SJ",
|
||||
"version": "1.03",
|
||||
"repository":
|
||||
{
|
||||
"type": "git",
|
||||
"url": "https://github.com/Wh1teRabbitHU/RX8010SJ"
|
||||
},
|
||||
"authors":
|
||||
[
|
||||
{
|
||||
"name": "Wh1teRabbitHU",
|
||||
"email": "ruszka.tamas@gmail.com",
|
||||
"maintainer": true
|
||||
}
|
||||
],
|
||||
"frameworks": "arduino",
|
||||
"platforms": "espressif32",
|
||||
"headers": "TFT_eSPI.h"
|
||||
}
|
||||
+4
-1
@@ -4,6 +4,7 @@ default_envs = dp66x
|
||||
[esp32dev]
|
||||
platform = espressif32
|
||||
upload_speed = 921600
|
||||
monitor_speed = 115200
|
||||
board = esp32dev
|
||||
framework = arduino
|
||||
board_build.partitions = maxapp.csv
|
||||
@@ -19,7 +20,9 @@ build_flags =
|
||||
-Wl,--gc-sections
|
||||
-DARDUINO_LOOP_STACK_SIZE=4096
|
||||
-Werror
|
||||
|
||||
monitor_filters =
|
||||
esp32_exception_decoder
|
||||
default
|
||||
build_unflags =
|
||||
-fexceptions
|
||||
-frtti
|
||||
|
||||
@@ -55,6 +55,11 @@ void NTPupdate() {
|
||||
|
||||
if (currentTime) {
|
||||
rtc.setTime(currentTime);
|
||||
if(rx_rtc_avail) {
|
||||
RX8010SJ::DateTime rx_currenttime = RX8010SJ::DateTime();
|
||||
timeToDateTime(currentTime, &rx_currenttime);
|
||||
rx_rtc.writeDateTime(rx_currenttime);
|
||||
}
|
||||
rtcset = true;
|
||||
NTPupdated = true;
|
||||
radio.rds.ctupdate = false;
|
||||
|
||||
+14
-10
@@ -2,7 +2,7 @@
|
||||
#include <map>
|
||||
#include <Arduino.h>
|
||||
#include <TimeLib.h>
|
||||
#include "SPIFFS.h"
|
||||
#include <SPIFFS.h>
|
||||
#include "constants.h"
|
||||
#include "utils.h"
|
||||
|
||||
@@ -1212,11 +1212,12 @@ void TEF6686::readRDS(byte showrdserrors) {
|
||||
|
||||
case RDS_GROUP_4A: {
|
||||
if (!rdsBerrorThreshold && !rdsCerrorThreshold && !rdsDerrorThreshold && rds.ctupdate && (rds.PICTlock == pi || rds.PICTlock == 0)) {
|
||||
uint32_t mjd = (rds.rdsB & 0x03) << 15 | ((rds.rdsC >> 1) & 0x7FFF);;
|
||||
auto rtc_time = rtc.getEpoch();
|
||||
uint32_t mjd = (rds.rdsB & 0x03) << 15 | ((rds.rdsC >> 1) & 0x7FFF);
|
||||
uint16_t hour, minute, day = 5, month = 1, year = 2026;
|
||||
int32_t timeoffset;
|
||||
|
||||
long J = mjd + 2400001 + 68569;
|
||||
long J = mjd + 2400001 + 68569;
|
||||
long C = 4 * J / 146097;
|
||||
J = J - (146097 * C + 3) / 4;
|
||||
long Y = 4000 * (J + 1) / 1461001;
|
||||
@@ -1247,20 +1248,23 @@ void TEF6686::readRDS(byte showrdserrors) {
|
||||
tm.tm_isdst = -1;
|
||||
time_t rdstime = mktime(&tm);
|
||||
|
||||
if (lastrdstime == 0) {
|
||||
lastrdstime = rdstime;
|
||||
lasttimeoffset = timeoffset;
|
||||
}
|
||||
if ((rdstime == lastrdstime + 60 && timeoffset == lasttimeoffset) || showrdserrors != 0) {
|
||||
if (((rdstime == lastrdstime + 60 && timeoffset == lasttimeoffset) || (lastrdstime == 0 && lasttimeoffset == 0)) || showrdserrors != 0) {
|
||||
rds.hasCT = true;
|
||||
rds.time = rdstime;
|
||||
rds.offset = timeoffset;
|
||||
rtcset = true;
|
||||
|
||||
time_t rds_utc_time = rdstime + timeoffset;
|
||||
rds.clock_correction = rtc_time - rds_utc_time;
|
||||
|
||||
if (!NTPupdated) {
|
||||
rtc.setTime(rds_utc_time);
|
||||
sync_to_rx_rtc();
|
||||
}
|
||||
} else rds.hasCT = false;
|
||||
lastrdstime = rdstime;
|
||||
lasttimeoffset = timeoffset;
|
||||
}
|
||||
} break;
|
||||
|
||||
case RDS_GROUP_10A: {
|
||||
if (!rdsCerrorThreshold && !rdsDerrorThreshold) {
|
||||
uint8_t segment = bitRead(rds.rdsB, 0);
|
||||
|
||||
@@ -51,7 +51,7 @@ const unsigned char tuner_init_tab55000[] PROGMEM = {
|
||||
};
|
||||
|
||||
bool Tuner_WriteBuffer(unsigned char *buf, uint16_t len) {
|
||||
Wire.beginTransmission(0x64);
|
||||
Wire.beginTransmission(TEF668X_ADDRESS);
|
||||
for (uint16_t i = 0; i < len; i++) Wire.write(buf[i]);
|
||||
uint8_t r = Wire.endTransmission();
|
||||
if (!Data_Accelerator) delay(2);
|
||||
@@ -59,7 +59,7 @@ bool Tuner_WriteBuffer(unsigned char *buf, uint16_t len) {
|
||||
}
|
||||
|
||||
bool Tuner_ReadBuffer(unsigned char *buf, uint16_t len) {
|
||||
Wire.requestFrom(0x64, len);
|
||||
Wire.requestFrom(TEF668X_ADDRESS, len);
|
||||
if (Wire.available() == len) {
|
||||
for (uint16_t i = 0; i < len; i++) buf[i] = Wire.read();
|
||||
return true;
|
||||
@@ -92,7 +92,7 @@ bool Tuner_Table_Write(const unsigned char *tab) {
|
||||
}
|
||||
|
||||
void Tuner_Reset(void) {
|
||||
Wire.beginTransmission(0x64);
|
||||
Wire.beginTransmission(TEF668X_ADDRESS);
|
||||
Wire.write(0x1e);
|
||||
Wire.write(0x5a);
|
||||
Wire.write(0x01);
|
||||
@@ -104,13 +104,13 @@ void Tuner_Reset(void) {
|
||||
void Tuner_Patch(byte TEF) {
|
||||
Tuner_Reset();
|
||||
delay(100);
|
||||
Wire.beginTransmission(0x64);
|
||||
Wire.beginTransmission(TEF668X_ADDRESS);
|
||||
Wire.write(0x1c);
|
||||
Wire.write(0x00);
|
||||
Wire.write(0x00);
|
||||
Wire.endTransmission();
|
||||
delay(100);
|
||||
Wire.beginTransmission(0x64);
|
||||
Wire.beginTransmission(TEF668X_ADDRESS);
|
||||
Wire.write(0x1c);
|
||||
Wire.write(0x00);
|
||||
Wire.write(0x74);
|
||||
@@ -123,13 +123,13 @@ void Tuner_Patch(byte TEF) {
|
||||
Tuner_Patch_Load(pPatchBytes205, PatchSize205);
|
||||
break;
|
||||
}
|
||||
Wire.beginTransmission(0x64);
|
||||
Wire.beginTransmission(TEF668X_ADDRESS);
|
||||
Wire.write(0x1c);
|
||||
Wire.write(0x00);
|
||||
Wire.write(0x00);
|
||||
Wire.endTransmission();
|
||||
delay(100);
|
||||
Wire.beginTransmission(0x64);
|
||||
Wire.beginTransmission(TEF668X_ADDRESS);
|
||||
Wire.write(0x1c);
|
||||
Wire.write(0x00);
|
||||
Wire.write(0x75);
|
||||
@@ -142,7 +142,7 @@ void Tuner_Patch(byte TEF) {
|
||||
Tuner_Patch_Load(pLutBytes205, LutSize205);
|
||||
break;
|
||||
}
|
||||
Wire.beginTransmission(0x64);
|
||||
Wire.beginTransmission(TEF668X_ADDRESS);
|
||||
Wire.write(0x1c);
|
||||
Wire.write(0x00);
|
||||
Wire.write(0x00);
|
||||
|
||||
+3
-5
@@ -720,7 +720,6 @@ void XDRGTKRoutine() {
|
||||
if (scandxmode) cancelDXScan();
|
||||
if (!XDRScan) BWsetRecall = BWset;
|
||||
XDRScan = true;
|
||||
Data_Accelerator = true;
|
||||
|
||||
switch (buff[1]) {
|
||||
case 'a': scanner_start = (atoi(buff + 2) + 5) / 10; break;
|
||||
@@ -748,9 +747,8 @@ void XDRGTKRoutine() {
|
||||
}
|
||||
doBW();
|
||||
break;
|
||||
case 'w':
|
||||
unsigned int bwtemp;
|
||||
bwtemp = atoi(buff + 2);
|
||||
case 'w': {
|
||||
unsigned int bwtemp = atoi(buff + 2);
|
||||
switch (bwtemp) {
|
||||
case 0: BWset = 0; break;
|
||||
case 56000: BWset = 1; break;
|
||||
@@ -772,6 +770,7 @@ void XDRGTKRoutine() {
|
||||
}
|
||||
doBW();
|
||||
break;
|
||||
}
|
||||
|
||||
case '\0':
|
||||
radio.setMute();
|
||||
@@ -808,7 +807,6 @@ void XDRGTKRoutine() {
|
||||
}
|
||||
break;
|
||||
}
|
||||
Data_Accelerator = false;
|
||||
break;
|
||||
} case 'W': {
|
||||
unsigned int bwtemp = atoi(buff + 1);
|
||||
|
||||
+1
-4
@@ -25,14 +25,12 @@ bool memorystore;
|
||||
bool memreset, memtune;
|
||||
bool menu, menuopen;
|
||||
bool mwstepsize;
|
||||
bool NTPupdated;
|
||||
bool optenc;
|
||||
bool rdsflagreset;
|
||||
bool rdsreset;
|
||||
bool rdsstatscreen;
|
||||
bool RDSSPYTCP, RDSSPYUSB;
|
||||
bool rotaryaccelerate = true;
|
||||
bool rtcset;
|
||||
bool scandxmode;
|
||||
bool scanholdflag;
|
||||
bool scanholdonsignal;
|
||||
@@ -332,7 +330,6 @@ const size_t language_entrynumber = sizeof(myLanguage[0]) / sizeof(myLanguage[0]
|
||||
|
||||
mem presets[EE_PRESETS_CNT];
|
||||
TEF6686 radio;
|
||||
ESP32Time rtc(0);
|
||||
|
||||
// FrequencySprite.createSprite(200, 50);
|
||||
// RDSSprite.createSprite(165, 19);
|
||||
@@ -345,10 +342,10 @@ ESP32Time rtc(0);
|
||||
TFT_eSprite FrequencySprite = TFT_eSprite(&tft);
|
||||
TFT_eSprite RDSSprite = TFT_eSprite(&tft);
|
||||
TFT_eSprite PTYSprite = TFT_eSprite(&tft);
|
||||
TFT_eSprite SignalSprite = TFT_eSprite(&tft);
|
||||
TFT_eSprite SquelchSprite = TFT_eSprite(&tft);
|
||||
TFT_eSprite FullLineSprite = TFT_eSprite(&tft);
|
||||
TFT_eSprite OneBigLineSprite = TFT_eSprite(&tft);
|
||||
TFT_eSprite SignalSprite = TFT_eSprite(&tft);
|
||||
TFT_eSprite PSSprite = TFT_eSprite(&tft);
|
||||
|
||||
WiFiConnect wc;
|
||||
|
||||
+2
-12
@@ -3081,11 +3081,8 @@ void BuildDisplay() {
|
||||
tft.drawBitmap(68, 5, RDSLogo, 35, 22, GreyoutColor);
|
||||
tft.drawBitmap(249, 4, Speaker, 28, 24, GreyoutColor);
|
||||
|
||||
if (!StereoToggle) {
|
||||
tft.drawBitmap(38, 5, Mono, 22, 22, SecondaryColor);
|
||||
} else {
|
||||
tft.drawBitmap(32, 5, Stereo, 32, 22, GreyoutColor);
|
||||
}
|
||||
if (!StereoToggle) tft.drawBitmap(38, 5, Mono, 22, 22, SecondaryColor);
|
||||
else tft.drawBitmap(32, 5, Stereo, 32, 22, GreyoutColor);
|
||||
|
||||
if (autosquelch) showAutoSquelch(1);
|
||||
|
||||
@@ -3822,13 +3819,6 @@ void MenuUpDown(bool dir) {
|
||||
}
|
||||
}
|
||||
|
||||
if (ConverterSet >= 200) {
|
||||
Wire.beginTransmission(0x12);
|
||||
Wire.write(ConverterSet >> 8);
|
||||
Wire.write(ConverterSet & (0xFF));
|
||||
Wire.endTransmission();
|
||||
}
|
||||
|
||||
OneBigLineSprite.setTextDatum(TL_DATUM);
|
||||
OneBigLineSprite.setTextColor(ActiveColor, ActiveColorSmooth, false);
|
||||
OneBigLineSprite.drawString("MHz", 155, 0);
|
||||
|
||||
+49
-3
@@ -841,10 +841,10 @@ int GetNum() {
|
||||
int cnt = 0;
|
||||
unsigned int num;
|
||||
|
||||
Wire.beginTransmission(0x20);
|
||||
Wire.beginTransmission(XL9555_ADDRESS);
|
||||
Wire.write(0x00);
|
||||
Wire.endTransmission();
|
||||
Wire.requestFrom(0x20, 2);
|
||||
Wire.requestFrom(XL9555_ADDRESS, 2);
|
||||
|
||||
if (Wire.available() == 2) {
|
||||
keypadtimer = millis();
|
||||
@@ -1146,6 +1146,52 @@ void setup() {
|
||||
gpio_set_drive_capability((gpio_num_t) 23, GPIO_DRIVE_CAP_0);
|
||||
|
||||
setupmode = true;
|
||||
|
||||
Tuner_I2C_Init();
|
||||
Serial.begin(115200);
|
||||
byte error, address;
|
||||
for (address = 1; address < 127; address++) { // I2C addresses 0x01–0x7F
|
||||
Wire.beginTransmission(address);
|
||||
error = Wire.endTransmission();
|
||||
|
||||
if (error == 0) {
|
||||
Serial.print("I2C device found at 0x");
|
||||
if (address < 16) Serial.print("0");
|
||||
Serial.print(address, HEX);
|
||||
if(address == RX8010SJ_ADDRESS) {
|
||||
Serial.print(" RTC");
|
||||
rx_rtc_avail = true;
|
||||
}
|
||||
Serial.println(" !");
|
||||
} else if (error == 4) {
|
||||
Serial.print("Unknown error at 0x");
|
||||
if (address < 16) Serial.print("0");
|
||||
Serial.println(address, HEX);
|
||||
}
|
||||
}
|
||||
Serial.flush();
|
||||
Serial.end();
|
||||
|
||||
rtc.setTime(0);
|
||||
if(rx_rtc_avail) {
|
||||
RX8010SJ::DateTime defaulttime = RX8010SJ::DateTime();
|
||||
defaulttime.second = 21;
|
||||
defaulttime.minute = 45;
|
||||
defaulttime.hour = 11;
|
||||
defaulttime.dayOfWeek = 6;
|
||||
defaulttime.dayOfMonth = 11;
|
||||
defaulttime.month = 1;
|
||||
defaulttime.year = 26;
|
||||
bool reset = rx_rtc.initModule(); // initModule, not initAdapter, adapter also reinits wire
|
||||
if(reset) {
|
||||
Serial.println("RTC reset with defaults");
|
||||
rx_rtc.writeDateTime(defaulttime);
|
||||
} else {
|
||||
rtcset = true;
|
||||
sync_from_rx_rtc();
|
||||
}
|
||||
}
|
||||
|
||||
EEPROM.begin(EE_TOTAL_CNT);
|
||||
loadData();
|
||||
|
||||
@@ -1417,7 +1463,7 @@ void setup() {
|
||||
}
|
||||
tftPrint(ACENTER, "Patch: v" + String(TEF), 160, 202, ActiveColor, ActiveColorSmooth, 28);
|
||||
|
||||
Wire.beginTransmission(0x20);
|
||||
Wire.beginTransmission(XL9555_ADDRESS);
|
||||
Wire.write(0x06);
|
||||
Wire.write(0xFF);
|
||||
Wire.write(0xFF);
|
||||
|
||||
+11
-19
@@ -514,50 +514,42 @@ void showPS() {
|
||||
void showCT() {
|
||||
char timeStr[16];
|
||||
char dateStr[9];
|
||||
time_t t;
|
||||
|
||||
if (radio.rds.hasCT && !dropout && !NTPupdated) t = radio.rds.time + radio.rds.offset;
|
||||
else {
|
||||
t = rtc.getEpoch() + (NTPupdated ? 0 : radio.rds.offset);
|
||||
|
||||
// Update RDS time during dropout
|
||||
if (dropout) radio.rds.time = static_cast<time_t>(rtc.getEpoch());
|
||||
}
|
||||
time_t t = rtc.getEpoch() + (NTPupdated ? 0 : radio.rds.offset);
|
||||
|
||||
if (NTPupdated) {
|
||||
t += NTPoffset * 3600; // Convert offset from hours to seconds
|
||||
if (autoDST && isDST(t)) t += 3600;
|
||||
}
|
||||
|
||||
auto localtm = localtime(&t);
|
||||
|
||||
if (clockampm) { // USA region: 12-hour AM/PM format
|
||||
int hour = localtime(&t)->tm_hour;
|
||||
int hour = localtm->tm_hour;
|
||||
|
||||
if (hour < 1 || hour > 12) {
|
||||
if (hour == 0) hour = 12;
|
||||
else if (hour > 12) hour -= 12;
|
||||
}
|
||||
|
||||
String ampm = (localtime(&t)->tm_hour >= 12) ? "PM" : "AM";
|
||||
snprintf(timeStr, sizeof(timeStr), "%d:%02d %s", hour, localtime(&t)->tm_min, ampm.c_str());
|
||||
String ampm = (localtm->tm_hour >= 12) ? "PM" : "AM";
|
||||
snprintf(timeStr, sizeof(timeStr), "%d:%02d %s", hour, localtm->tm_min, ampm.c_str());
|
||||
} else {
|
||||
int hour = localtime(&t)->tm_hour;
|
||||
int hour = localtm->tm_hour;
|
||||
if (hour < 0 || hour > 23) hour = 0;
|
||||
|
||||
snprintf(timeStr, sizeof(timeStr), "%02d:%02d", hour, localtime(&t)->tm_min);
|
||||
snprintf(timeStr, sizeof(timeStr), "%02d:%02d", hour, localtm->tm_min);
|
||||
|
||||
}
|
||||
|
||||
rds_clock = String(timeStr);
|
||||
|
||||
if (clockampm) strftime(dateStr, sizeof(dateStr), "%m-%d-%y", localtime(&t));
|
||||
else strftime(dateStr, sizeof(dateStr), "%d-%m-%y", localtime(&t));
|
||||
if (clockampm) strftime(dateStr, sizeof(dateStr), "%m-%d-%y", localtm);
|
||||
else strftime(dateStr, sizeof(dateStr), "%d-%m-%y", localtm);
|
||||
rds_date = String(dateStr);
|
||||
|
||||
if (!screenmute && showclock && (rds_clock != rds_clockold || rds_date != rds_dateold || radio.rds.hasCT.changed(0))) {
|
||||
|
||||
if ((radio.rds.hasCT && RDSstatus) || NTPupdated) {
|
||||
rtcset = true;
|
||||
if (!NTPupdated) rtc.setTime(radio.rds.time);
|
||||
|
||||
tftReplace(ACENTER, rds_clockold, rds_clock, 134, 1, RDSColor, RDSColorSmooth, BackgroundColor, 16);
|
||||
tftReplace(ACENTER, rds_dateold, rds_date, 134, 15, RDSColor, RDSColorSmooth, BackgroundColor, 16);
|
||||
} else { // Handle dropout scenarios
|
||||
|
||||
+58
@@ -0,0 +1,58 @@
|
||||
#include "rtc.hpp"
|
||||
|
||||
bool rtcset;
|
||||
bool NTPupdated;
|
||||
|
||||
ESP32Time rtc(0);
|
||||
bool rx_rtc_avail = false;
|
||||
RX8010SJ::Adapter rx_rtc = RX8010SJ::Adapter(RX8010SJ_ADDRESS);
|
||||
|
||||
void timeToDateTime(time_t t, struct RX8010SJ::DateTime* dateTime) {
|
||||
struct tm* timeinfo = gmtime(&t);
|
||||
dateTime->second = timeinfo->tm_sec;
|
||||
dateTime->minute = timeinfo->tm_min;
|
||||
dateTime->hour = timeinfo->tm_hour;
|
||||
dateTime->dayOfWeek = (timeinfo->tm_wday + 6) % 7;
|
||||
dateTime->dayOfMonth = timeinfo->tm_mday;
|
||||
dateTime->month = timeinfo->tm_mon + 1; // tm_mon is 0-11, convert to 1-12
|
||||
dateTime->year = (timeinfo->tm_year + 1900) % 100; // Get last 2 digits
|
||||
}
|
||||
|
||||
time_t timegm(struct tm *tm) {
|
||||
// https://linux.die.net/man/3/timegm
|
||||
time_t ret;
|
||||
char *tz;
|
||||
|
||||
tz = getenv("TZ");
|
||||
setenv("TZ", "", 1);
|
||||
tzset();
|
||||
ret = mktime(tm);
|
||||
if (tz) setenv("TZ", tz, 1);
|
||||
else unsetenv("TZ");
|
||||
tzset();
|
||||
return ret;
|
||||
}
|
||||
|
||||
time_t dateTimeToTime(const struct RX8010SJ::DateTime* dateTime) {
|
||||
struct tm timeinfo;
|
||||
timeinfo.tm_sec = dateTime->second;
|
||||
timeinfo.tm_min = dateTime->minute;
|
||||
timeinfo.tm_hour = dateTime->hour;
|
||||
timeinfo.tm_mday = dateTime->dayOfMonth;
|
||||
timeinfo.tm_mon = dateTime->month - 1;
|
||||
timeinfo.tm_year = dateTime->year + 100;
|
||||
timeinfo.tm_isdst = 0;
|
||||
return timegm(&timeinfo);
|
||||
}
|
||||
|
||||
void sync_to_rx_rtc(int32_t offset) {
|
||||
if(!rx_rtc_avail) return;
|
||||
RX8010SJ::DateTime rx_currenttime = RX8010SJ::DateTime();
|
||||
timeToDateTime(rtc.getEpoch() + offset, &rx_currenttime);
|
||||
rx_rtc.writeDateTime(rx_currenttime);
|
||||
}
|
||||
void sync_from_rx_rtc(int32_t offset) {
|
||||
if(!rx_rtc_avail) return;
|
||||
RX8010SJ::DateTime dateTime = rx_rtc.readDateTime();
|
||||
rtc.setTime(dateTimeToTime(&dateTime) + offset);
|
||||
}
|
||||
Reference in New Issue
Block a user