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5 Commits
14 changed files with 994 additions and 36 deletions
+1
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@@ -3,3 +3,4 @@
.vscode/c_cpp_properties.json
.vscode/launch.json
.vscode/ipch
include/wifi_credentials.h
+36
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@@ -0,0 +1,36 @@
#ifndef INTERNET_TIME_H
#define INTERNET_TIME_H
#include <Arduino.h>
struct InternetTimeInfo
{
bool valid;
uint16_t year;
uint8_t month;
uint8_t day;
uint8_t hour;
uint8_t minute;
};
class InternetTime
{
public:
InternetTime();
void update(unsigned long now, bool wifiConnected);
InternetTimeInfo info() const;
bool consumeDirty();
private:
void fetch(unsigned long now);
void updateCurrentTime(unsigned long now);
InternetTimeInfo infoFromEpoch(unsigned long epoch) const;
unsigned long lastEpoch_;
unsigned long lastSyncMillis_;
unsigned long nextAttempt_;
InternetTimeInfo current_;
bool dirty_;
};
#endif
+29
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@@ -0,0 +1,29 @@
#ifndef MENU_H
#define MENU_H
#include <Arduino.h>
#include <U8g2lib.h>
enum class MenuAction
{
ShowInternetDetails,
ShowHelloWorld,
BackToCarousel
};
class Menu
{
public:
Menu();
void draw(U8G2 &u8g2);
void nextOption();
MenuAction select();
bool consumeDirty();
void requestRedraw();
private:
size_t selectedIndex_;
bool dirty_;
};
#endif
+9 -2
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@@ -4,10 +4,17 @@
#include <U8g2lib.h>
#include "am2302_sensor.h"
#include "internet_time.h"
#include "weather_forecast.h"
#include "wifi_connection.h"
void drawScreen1(U8G2 &u8g2);
void setInternetTimeInfo(InternetTimeInfo timeInfo);
void drawTimeScreen(U8G2 &u8g2);
void drawHelloWorldScreen(U8G2 &u8g2);
void drawInternetConnectionScreen(U8G2 &u8g2, WifiConnectionInfo wifiInfo);
void setEnvironmentReading(Am2302Reading reading);
void drawEnvironmentScreen(U8G2 &u8g2);
void drawWeatherIconScreen(U8G2 &u8g2);
void setWeatherForecastInfo(WeatherForecastInfo forecastInfo);
void drawWeatherForecastScreen(U8G2 &u8g2);
#endif
+37
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@@ -0,0 +1,37 @@
#ifndef WEATHER_FORECAST_H
#define WEATHER_FORECAST_H
#include <Arduino.h>
struct WeatherForecastInfo
{
bool valid;
float currentTemperatureC;
float minTemperatureC;
float maxTemperatureC;
float precipitationMm;
uint8_t precipitationProbabilityPercent;
int weatherCode;
};
class WeatherForecast
{
public:
WeatherForecast();
void update(unsigned long now, bool wifiConnected);
WeatherForecastInfo info() const;
bool consumeDirty();
private:
void fetch(unsigned long now);
bool readResponse(String &body);
bool parseForecast(const String &body, WeatherForecastInfo &forecast) const;
bool parseFloatArray(const String &body, const char *name, float *values, size_t maxCount, size_t &count) const;
bool parseIntArray(const String &body, const char *name, int *values, size_t maxCount, size_t &count) const;
WeatherForecastInfo current_;
unsigned long nextAttempt_;
bool dirty_;
};
#endif
+34
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@@ -0,0 +1,34 @@
#ifndef WIFI_CONNECTION_H
#define WIFI_CONNECTION_H
#include <Arduino.h>
#include <IPAddress.h>
struct WifiConnectionInfo
{
bool shieldAvailable;
bool connected;
IPAddress ipAddress;
};
class WifiConnection
{
public:
WifiConnection();
void begin(unsigned long now);
void update(unsigned long now);
WifiConnectionInfo info() const;
bool consumeDirty();
private:
void connect(unsigned long now);
void recordStatus();
unsigned long nextAttempt_;
bool shieldAvailable_;
bool connected_;
IPAddress ipAddress_;
bool dirty_;
};
#endif
+14
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@@ -0,0 +1,14 @@
#ifndef WIFI_CREDENTIALS_H
#define WIFI_CREDENTIALS_H
const char WIFI_SSID[] = "your-wifi-name";
const char WIFI_PASSWORD[] = "your-wifi-password";
// Offset from UTC in seconds. Examples: Finland winter 7200, Finland summer 10800.
#define TIME_UTC_OFFSET_SECONDS 0
// Coordinates used for the weather forecast.
#define WEATHER_LATITUDE 60.1699
#define WEATHER_LONGITUDE 24.9384
#endif
+1 -1
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@@ -1,6 +1,6 @@
#include "carousel.h"
const unsigned long pageInterval = 5000;
const unsigned long pageInterval = 30000;
Carousel::Carousel(Screen *screens, size_t screenCount)
: screens_(screens),
+142
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@@ -0,0 +1,142 @@
#include "internet_time.h"
#include <WiFi101.h>
#include "wifi_credentials.h"
#ifndef TIME_UTC_OFFSET_SECONDS
#define TIME_UTC_OFFSET_SECONDS 0
#endif
namespace
{
const unsigned long retryInterval = 15000;
const unsigned long refreshInterval = 3600000;
const unsigned long secondsPerDay = 86400;
bool isLeapYear(uint16_t year)
{
return (year % 4 == 0 && year % 100 != 0) || year % 400 == 0;
}
uint8_t daysInMonth(uint16_t year, uint8_t month)
{
const uint8_t days[] = {31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31};
if (month == 2 && isLeapYear(year)) {
return 29;
}
return days[month - 1];
}
unsigned long applyTimeOffset(unsigned long epoch)
{
if (TIME_UTC_OFFSET_SECONDS >= 0) {
return epoch + TIME_UTC_OFFSET_SECONDS;
}
const unsigned long offset = static_cast<unsigned long>(-TIME_UTC_OFFSET_SECONDS);
return epoch > offset ? epoch - offset : 0;
}
}
InternetTime::InternetTime()
: lastEpoch_(0),
lastSyncMillis_(0),
nextAttempt_(0),
current_({false, 0, 0, 0, 0, 0}),
dirty_(true) {}
void InternetTime::update(unsigned long now, bool wifiConnected)
{
if (current_.valid) {
updateCurrentTime(now);
}
if (!wifiConnected) {
return;
}
if (now >= nextAttempt_) {
fetch(now);
}
}
InternetTimeInfo InternetTime::info() const
{
return current_;
}
bool InternetTime::consumeDirty()
{
const bool d = dirty_;
dirty_ = false;
return d;
}
void InternetTime::fetch(unsigned long now)
{
const unsigned long epoch = WiFi.getTime();
nextAttempt_ = now + retryInterval;
if (epoch == 0) {
return;
}
lastEpoch_ = epoch;
lastSyncMillis_ = now;
nextAttempt_ = now + refreshInterval;
updateCurrentTime(now);
}
void InternetTime::updateCurrentTime(unsigned long now)
{
const unsigned long elapsedSeconds = (now - lastSyncMillis_) / 1000;
const InternetTimeInfo updated = infoFromEpoch(lastEpoch_ + elapsedSeconds);
if (!current_.valid ||
current_.year != updated.year ||
current_.month != updated.month ||
current_.day != updated.day ||
current_.hour != updated.hour ||
current_.minute != updated.minute) {
current_ = updated;
dirty_ = true;
}
}
InternetTimeInfo InternetTime::infoFromEpoch(unsigned long epoch) const
{
unsigned long adjustedEpoch = applyTimeOffset(epoch);
unsigned long days = adjustedEpoch / secondsPerDay;
unsigned long secondsToday = adjustedEpoch % secondsPerDay;
uint16_t year = 1970;
while (true) {
const uint16_t yearDays = isLeapYear(year) ? 366 : 365;
if (days < yearDays) {
break;
}
days -= yearDays;
year++;
}
uint8_t month = 1;
while (true) {
const uint8_t monthDays = daysInMonth(year, month);
if (days < monthDays) {
break;
}
days -= monthDays;
month++;
}
InternetTimeInfo info = {
true,
year,
month,
static_cast<uint8_t>(days + 1),
static_cast<uint8_t>(secondsToday / 3600),
static_cast<uint8_t>((secondsToday % 3600) / 60)
};
return info;
}
+154 -11
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@@ -4,48 +4,191 @@
#include "am2302_sensor.h"
#include "carousel.h"
#include "internet_time.h"
#include "menu.h"
#include "screens.h"
#include "weather_forecast.h"
#include "wifi_connection.h"
U8G2_SH1106_128X64_NONAME_F_HW_I2C u8g2(U8G2_R2, U8X8_PIN_NONE);
int lastButtonNextState = LOW;
uint8_t buttonNext = A4;
Am2302Sensor am2302(A3);
int lastButtonSelectState = LOW;
uint8_t buttonNext = A3;
uint8_t buttonSelect = A4;
Am2302Sensor am2302(A5);
WifiConnection wifiConnection;
InternetTime internetTime;
WeatherForecast weatherForecast;
enum class AppMode
{
Carousel,
Menu,
InternetDetails,
HelloWorld
};
Screen screens[] = {
{ drawScreen1 },
{ drawTimeScreen },
{ drawEnvironmentScreen },
{ drawWeatherIconScreen }
{ drawWeatherForecastScreen }
};
Carousel carousel(screens, sizeof(screens) / sizeof(screens[0]));
Menu menu;
AppMode appMode = AppMode::Carousel;
bool appDirty = true;
void setup() {
pinMode(buttonNext, INPUT);
pinMode(buttonSelect, INPUT);
am2302.begin();
wifiConnection.begin(millis());
u8g2.begin();
u8g2.clearBuffer();
u8g2.sendBuffer();
}
void openMenu()
{
appMode = AppMode::Menu;
menu.requestRedraw();
appDirty = true;
}
void selectMenuOption()
{
switch (menu.select()) {
case MenuAction::ShowInternetDetails:
appMode = AppMode::InternetDetails;
break;
case MenuAction::ShowHelloWorld:
appMode = AppMode::HelloWorld;
break;
case MenuAction::BackToCarousel:
appMode = AppMode::Carousel;
carousel.requestRedraw();
break;
}
appDirty = true;
}
void handleNextButton()
{
switch (appMode) {
case AppMode::Carousel:
carousel.nextScreen();
break;
case AppMode::Menu:
menu.nextOption();
break;
case AppMode::InternetDetails:
case AppMode::HelloWorld:
break;
}
}
void handleSelectButton()
{
switch (appMode) {
case AppMode::Carousel:
case AppMode::InternetDetails:
case AppMode::HelloWorld:
openMenu();
break;
case AppMode::Menu:
selectMenuOption();
break;
}
}
bool displayNeedsRedraw()
{
if (appDirty) {
appDirty = false;
return true;
}
switch (appMode) {
case AppMode::Carousel:
return carousel.consumeDirty();
case AppMode::Menu:
return menu.consumeDirty();
case AppMode::InternetDetails:
return wifiConnection.consumeDirty();
case AppMode::HelloWorld:
return false;
}
return false;
}
void drawActiveView()
{
switch (appMode) {
case AppMode::Carousel:
carousel.draw(u8g2);
break;
case AppMode::Menu:
menu.draw(u8g2);
break;
case AppMode::InternetDetails:
drawInternetConnectionScreen(u8g2, wifiConnection.info());
break;
case AppMode::HelloWorld:
drawHelloWorldScreen(u8g2);
break;
}
}
void loop(){
const unsigned long now = millis();
wifiConnection.update(now);
internetTime.update(now, wifiConnection.info().connected);
weatherForecast.update(now, wifiConnection.info().connected);
if (internetTime.consumeDirty()) {
setInternetTimeInfo(internetTime.info());
if (appMode == AppMode::Carousel) {
carousel.requestRedraw();
}
}
if (weatherForecast.consumeDirty()) {
setWeatherForecastInfo(weatherForecast.info());
if (appMode == AppMode::Carousel) {
carousel.requestRedraw();
}
}
if (appMode == AppMode::Carousel) {
carousel.update(now);
}
if (am2302.update(now)) {
setEnvironmentReading(am2302.reading());
if (appMode == AppMode::Carousel) {
carousel.requestRedraw();
}
const int currentButtonState = digitalRead(buttonNext);
if (lastButtonNextState == LOW && currentButtonState == HIGH) {
carousel.nextScreen();
}
lastButtonNextState = currentButtonState;
if (carousel.consumeDirty()) {
const int currentButtonNextState = digitalRead(buttonNext);
if (lastButtonNextState == LOW && currentButtonNextState == HIGH) {
handleNextButton();
}
lastButtonNextState = currentButtonNextState;
const int currentButtonSelectState = digitalRead(buttonSelect);
if (lastButtonSelectState == LOW && currentButtonSelectState == HIGH) {
handleSelectButton();
}
lastButtonSelectState = currentButtonSelectState;
if (displayNeedsRedraw()) {
u8g2.clearBuffer();
carousel.draw(u8g2);
drawActiveView();
u8g2.sendBuffer();
}
+67
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@@ -0,0 +1,67 @@
#include "menu.h"
namespace
{
const char *menuOptions[] = {
"Internet",
"Hello world",
"Back"
};
const size_t menuOptionCount = sizeof(menuOptions) / sizeof(menuOptions[0]);
MenuAction actionForIndex(size_t index)
{
switch (index) {
case 0:
return MenuAction::ShowInternetDetails;
case 1:
return MenuAction::ShowHelloWorld;
default:
return MenuAction::BackToCarousel;
}
}
}
Menu::Menu()
: selectedIndex_(0),
dirty_(true) {}
void Menu::draw(U8G2 &u8g2)
{
u8g2.setFont(u8g2_font_6x12_tr);
u8g2.drawStr(0, 12, "Menu");
for (size_t i = 0; i < menuOptionCount; i++) {
const uint8_t y = 28 + (i * 14);
if (i == selectedIndex_) {
u8g2.drawStr(0, y, ">");
}
u8g2.drawStr(12, y, menuOptions[i]);
}
dirty_ = false;
}
void Menu::nextOption()
{
selectedIndex_ = (selectedIndex_ + 1) % menuOptionCount;
dirty_ = true;
}
MenuAction Menu::select()
{
return actionForIndex(selectedIndex_);
}
bool Menu::consumeDirty()
{
const bool d = dirty_;
dirty_ = false;
return d;
}
void Menu::requestRedraw()
{
dirty_ = true;
}
+138 -21
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@@ -3,34 +3,120 @@
namespace
{
Am2302Reading environmentReading = {0.0F, 0.0F, false};
InternetTimeInfo internetTimeInfo = {false, 0, 0, 0, 0, 0};
WeatherForecastInfo weatherForecastInfo = {false, 0.0F, 0.0F, 0.0F, 0.0F, 0, 0};
void drawSun(U8G2 &u8g2, uint8_t x, uint8_t y)
void printTwoDigits(U8G2 &u8g2, uint8_t value)
{
u8g2.drawDisc(x, y, 11);
u8g2.drawLine(x, y - 18, x, y - 14);
u8g2.drawLine(x, y + 14, x, y + 18);
u8g2.drawLine(x - 18, y, x - 14, y);
u8g2.drawLine(x + 14, y, x + 18, y);
u8g2.drawLine(x - 13, y - 13, x - 10, y - 10);
u8g2.drawLine(x + 10, y - 10, x + 13, y - 13);
u8g2.drawLine(x - 13, y + 13, x - 10, y + 10);
u8g2.drawLine(x + 10, y + 10, x + 13, y + 13);
if (value < 10) {
u8g2.print("0");
}
u8g2.print(value);
}
void drawCloud(U8G2 &u8g2, uint8_t x, uint8_t y)
const char *weatherDescription(int code)
{
u8g2.drawDisc(x + 18, y + 14, 12);
u8g2.drawDisc(x + 34, y + 8, 17);
u8g2.drawDisc(x + 52, y + 15, 13);
u8g2.drawBox(x + 17, y + 15, 38, 14);
u8g2.drawRBox(x + 8, y + 18, 58, 15, 7);
switch (code) {
case 0:
return "Clear";
case 1:
case 2:
return "Partly cloudy";
case 3:
return "Cloudy";
case 45:
case 48:
return "Fog";
case 51:
case 53:
case 55:
case 56:
case 57:
return "Drizzle";
case 61:
case 63:
case 65:
case 66:
case 67:
return "Rain";
case 71:
case 73:
case 75:
case 77:
return "Snow";
case 80:
case 81:
case 82:
return "Showers";
case 85:
case 86:
return "Snow showers";
case 95:
case 96:
case 99:
return "Thunder";
default:
return "Forecast";
}
}
}
void drawScreen1(U8G2 &u8g2)
void setInternetTimeInfo(InternetTimeInfo timeInfo)
{
internetTimeInfo = timeInfo;
}
void drawTimeScreen(U8G2 &u8g2)
{
if (!internetTimeInfo.valid) {
u8g2.setFont(u8g2_font_6x12_tr);
u8g2.drawStr(0, 24, "Time has not");
u8g2.drawStr(0, 40, "been updated");
return;
}
u8g2.setFont(u8g2_font_6x12_tr);
u8g2.setCursor(0, 14);
printTwoDigits(u8g2, internetTimeInfo.day);
u8g2.print(".");
printTwoDigits(u8g2, internetTimeInfo.month);
u8g2.print(".");
u8g2.print(internetTimeInfo.year);
u8g2.setFont(u8g2_font_ncenB24_tr);
u8g2.setCursor(0, 54);
printTwoDigits(u8g2, internetTimeInfo.hour);
u8g2.print(":");
printTwoDigits(u8g2, internetTimeInfo.minute);
}
void drawHelloWorldScreen(U8G2 &u8g2)
{
u8g2.setFont(u8g2_font_ncenB14_tr);
u8g2.drawStr(0, 20, "Screen 1");
u8g2.drawStr(0, 30, "Hello");
u8g2.drawStr(0, 54, "world");
}
void drawInternetConnectionScreen(U8G2 &u8g2, WifiConnectionInfo wifiInfo)
{
u8g2.setFont(u8g2_font_6x12_tr);
u8g2.drawStr(0, 12, "Internet");
if (!wifiInfo.shieldAvailable) {
u8g2.drawStr(0, 34, "WiFi shield missing");
return;
}
if (!wifiInfo.connected) {
u8g2.setFont(u8g2_font_ncenB14_tr);
u8g2.drawStr(0, 42, "Disconnected");
return;
}
u8g2.drawStr(0, 32, "Connected");
u8g2.drawStr(0, 48, "IP address:");
u8g2.setCursor(0, 64);
u8g2.print(wifiInfo.ipAddress);
}
void setEnvironmentReading(Am2302Reading reading)
@@ -58,8 +144,39 @@ void drawEnvironmentScreen(U8G2 &u8g2)
u8g2.print(" %");
}
void drawWeatherIconScreen(U8G2 &u8g2)
void setWeatherForecastInfo(WeatherForecastInfo forecastInfo)
{
drawSun(u8g2, 78, 22);
drawCloud(u8g2, 29, 24);
weatherForecastInfo = forecastInfo;
}
void drawWeatherForecastScreen(U8G2 &u8g2)
{
u8g2.setFont(u8g2_font_6x12_tr);
u8g2.drawStr(0, 12, "Weather next 12h");
if (!weatherForecastInfo.valid) {
u8g2.drawStr(0, 34, "Weather has not");
u8g2.drawStr(0, 50, "been updated");
return;
}
u8g2.setCursor(0, 28);
u8g2.print("Now ");
u8g2.print(weatherForecastInfo.currentTemperatureC, 1);
u8g2.print(" C ");
u8g2.print(weatherDescription(weatherForecastInfo.weatherCode));
u8g2.setCursor(0, 42);
u8g2.print("Temp ");
u8g2.print(weatherForecastInfo.minTemperatureC, 0);
u8g2.print("-");
u8g2.print(weatherForecastInfo.maxTemperatureC, 0);
u8g2.print(" C");
u8g2.setCursor(0, 56);
u8g2.print("Rain ");
u8g2.print(weatherForecastInfo.precipitationProbabilityPercent);
u8g2.print("% ");
u8g2.print(weatherForecastInfo.precipitationMm, 1);
u8g2.print(" mm");
}
+247
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@@ -0,0 +1,247 @@
#include "weather_forecast.h"
#include <WiFi101.h>
#include "wifi_credentials.h"
#ifndef WEATHER_LATITUDE
#define WEATHER_LATITUDE 0.0
#endif
#ifndef WEATHER_LONGITUDE
#define WEATHER_LONGITUDE 0.0
#endif
namespace
{
const char weatherHost[] = "api.open-meteo.com";
const unsigned long retryInterval = 300000;
const unsigned long refreshInterval = 3600000;
const size_t forecastHours = 12;
const size_t maxResponseLength = 3500;
const char *weatherRequestPath()
{
static String path;
path = "/v1/forecast?latitude=";
path += String(WEATHER_LATITUDE, 4);
path += "&longitude=";
path += String(WEATHER_LONGITUDE, 4);
path += "&hourly=temperature_2m,precipitation_probability,precipitation,weather_code";
path += "&forecast_hours=12&timezone=auto&forecast_days=1";
return path.c_str();
}
const char *arrayStartForName(const String &body, const char *name)
{
const String key = String("\"") + name + "\":[";
const int start = body.indexOf(key);
if (start < 0) {
return nullptr;
}
return body.c_str() + start + key.length();
}
void skipWhitespace(const char *&cursor)
{
while (*cursor == ' ' || *cursor == '\n' || *cursor == '\r' || *cursor == '\t') {
cursor++;
}
}
}
WeatherForecast::WeatherForecast()
: current_({false, 0.0F, 0.0F, 0.0F, 0.0F, 0, 0}),
nextAttempt_(0),
dirty_(true) {}
void WeatherForecast::update(unsigned long now, bool wifiConnected)
{
if (!wifiConnected) {
return;
}
if (now >= nextAttempt_) {
fetch(now);
}
}
WeatherForecastInfo WeatherForecast::info() const
{
return current_;
}
bool WeatherForecast::consumeDirty()
{
const bool d = dirty_;
dirty_ = false;
return d;
}
void WeatherForecast::fetch(unsigned long now)
{
nextAttempt_ = now + retryInterval;
String body;
if (!readResponse(body)) {
return;
}
WeatherForecastInfo forecast;
if (!parseForecast(body, forecast)) {
return;
}
current_ = forecast;
dirty_ = true;
nextAttempt_ = now + refreshInterval;
}
bool WeatherForecast::readResponse(String &body)
{
WiFiClient client;
if (!client.connect(weatherHost, 80)) {
return false;
}
client.print("GET ");
client.print(weatherRequestPath());
client.println(" HTTP/1.0");
client.print("Host: ");
client.println(weatherHost);
client.println("Connection: close");
client.println();
const unsigned long started = millis();
bool inBody = false;
char headerTail[4] = {0, 0, 0, 0};
while ((client.connected() || client.available()) && millis() - started < 10000) {
while (client.available()) {
const char c = client.read();
if (!inBody) {
headerTail[0] = headerTail[1];
headerTail[1] = headerTail[2];
headerTail[2] = headerTail[3];
headerTail[3] = c;
inBody = headerTail[0] == '\r' &&
headerTail[1] == '\n' &&
headerTail[2] == '\r' &&
headerTail[3] == '\n';
continue;
}
if (body.length() < maxResponseLength) {
body += c;
}
}
}
client.stop();
return body.indexOf("\"hourly\"") >= 0;
}
bool WeatherForecast::parseForecast(const String &body, WeatherForecastInfo &forecast) const
{
float temperatures[forecastHours];
float precipitation[forecastHours];
int precipitationProbability[forecastHours];
int weatherCodes[forecastHours];
size_t temperatureCount = 0;
size_t precipitationCount = 0;
size_t probabilityCount = 0;
size_t weatherCodeCount = 0;
if (!parseFloatArray(body, "temperature_2m", temperatures, forecastHours, temperatureCount) ||
!parseFloatArray(body, "precipitation", precipitation, forecastHours, precipitationCount) ||
!parseIntArray(body, "precipitation_probability", precipitationProbability, forecastHours, probabilityCount) ||
!parseIntArray(body, "weather_code", weatherCodes, forecastHours, weatherCodeCount)) {
return false;
}
if (temperatureCount == 0 ||
precipitationCount == 0 ||
probabilityCount == 0 ||
weatherCodeCount == 0) {
return false;
}
float minTemperature = temperatures[0];
float maxTemperature = temperatures[0];
float totalPrecipitation = 0.0F;
uint8_t maxProbability = 0;
for (size_t i = 0; i < temperatureCount; i++) {
if (temperatures[i] < minTemperature) {
minTemperature = temperatures[i];
}
if (temperatures[i] > maxTemperature) {
maxTemperature = temperatures[i];
}
}
for (size_t i = 0; i < precipitationCount; i++) {
totalPrecipitation += precipitation[i];
}
for (size_t i = 0; i < probabilityCount; i++) {
if (precipitationProbability[i] > maxProbability) {
maxProbability = precipitationProbability[i];
}
}
forecast = {
true,
temperatures[0],
minTemperature,
maxTemperature,
totalPrecipitation,
maxProbability,
weatherCodes[0]
};
return true;
}
bool WeatherForecast::parseFloatArray(const String &body, const char *name, float *values, size_t maxCount, size_t &count) const
{
const char *cursor = arrayStartForName(body, name);
if (cursor == nullptr) {
return false;
}
count = 0;
while (*cursor != '\0' && *cursor != ']' && count < maxCount) {
skipWhitespace(cursor);
values[count++] = atof(cursor);
while (*cursor != '\0' && *cursor != ',' && *cursor != ']') {
cursor++;
}
if (*cursor == ',') {
cursor++;
}
}
return count > 0;
}
bool WeatherForecast::parseIntArray(const String &body, const char *name, int *values, size_t maxCount, size_t &count) const
{
const char *cursor = arrayStartForName(body, name);
if (cursor == nullptr) {
return false;
}
count = 0;
while (*cursor != '\0' && *cursor != ']' && count < maxCount) {
skipWhitespace(cursor);
values[count++] = atoi(cursor);
while (*cursor != '\0' && *cursor != ',' && *cursor != ']') {
cursor++;
}
if (*cursor == ',') {
cursor++;
}
}
return count > 0;
}
+84
View File
@@ -0,0 +1,84 @@
#include "wifi_connection.h"
#include <WiFi101.h>
#include "wifi_credentials.h"
namespace
{
const unsigned long reconnectInterval = 30000;
}
WifiConnection::WifiConnection()
: nextAttempt_(0),
shieldAvailable_(true),
connected_(false),
ipAddress_(0, 0, 0, 0),
dirty_(true) {}
void WifiConnection::begin(unsigned long now)
{
shieldAvailable_ = WiFi.status() != WL_NO_SHIELD;
connect(now);
recordStatus();
}
void WifiConnection::update(unsigned long now)
{
if (!shieldAvailable_) {
return;
}
if (WiFi.status() == WL_CONNECTED) {
recordStatus();
return;
}
if (now >= nextAttempt_) {
connect(now);
}
recordStatus();
}
WifiConnectionInfo WifiConnection::info() const
{
WifiConnectionInfo current = {
shieldAvailable_,
connected_,
ipAddress_
};
return current;
}
bool WifiConnection::consumeDirty()
{
const bool d = dirty_;
dirty_ = false;
return d;
}
void WifiConnection::connect(unsigned long now)
{
if (!shieldAvailable_) {
return;
}
WiFi.begin(WIFI_SSID, WIFI_PASSWORD);
nextAttempt_ = now + reconnectInterval;
}
void WifiConnection::recordStatus()
{
const bool currentConnected = WiFi.status() == WL_CONNECTED;
IPAddress currentIpAddress(0, 0, 0, 0);
if (currentConnected) {
currentIpAddress = WiFi.localIP();
}
if (connected_ != currentConnected || ipAddress_ != currentIpAddress) {
connected_ = currentConnected;
ipAddress_ = currentIpAddress;
dirty_ = true;
}
}