11 Commits
ver3 ... 2.3.4

Author SHA1 Message Date
Dmitry Borisenko
ad440eef94 Merge pull request #5 from DmitryBorisenko33/development
Pressure calculation changed
2020-06-12 15:47:45 +02:00
Dmitry Borisenko
5ab6d13ae6 Merge branch 'development' of https://github.com/DmitryBorisenko33/esp32_iot-manager_modules_firmware into development 2020-06-12 15:46:52 +02:00
Dmitry Borisenko
970136bb75 Pressure calc changed 2020-06-12 15:46:29 +02:00
Dmitry Borisenko
0de1df8625 Merge pull request #4 from DmitryBorisenko33/development
2.3.4 version
2020-06-12 15:41:49 +02:00
Dmitry Borisenko
708eb5f67e Merge branch 'master' into development 2020-06-12 15:41:29 +02:00
Dmitry Borisenko
83d1531267 add led blink 2020-06-12 15:34:30 +02:00
Dmitry Borisenko
be5bd3ede4 web interface changed 2020-06-11 22:51:34 +02:00
Dmitry Borisenko
e79be004b9 some changes 2020-06-04 01:08:08 +02:00
Dmitry Borisenko
3135e5658f Global Webinterface Upgrade 2020-05-28 00:33:26 +02:00
Dmitry Borisenko
48ddb1a505 Update set.h 2020-05-26 22:18:27 +02:00
Dmitry Borisenko
01a419d987 uncomment 2020-05-26 22:12:35 +02:00
81 changed files with 1385 additions and 1205 deletions

92
Cmd.ino
View File

@@ -99,16 +99,16 @@ void button() {
String start_state = sCmd.next();
String page_number = sCmd.next();
jsonWriteStr(optionJson, "button_param" + button_number, button_param);
jsonWriteStr(configJson, "button" + button_number, start_state);
jsonWriteStr(configOptionJson, "button_param" + button_number, button_param);
jsonWriteStr(configLiveJson, "button" + button_number, start_state);
if (isDigitStr (button_param)) {
pinMode(button_param.toInt(), OUTPUT);
digitalWrite(button_param.toInt(), start_state.toInt());
}
if (button_param == "scenario") {
jsonWriteStr(configSetup, "scenario", start_state);
if (button_param == "scen") {
jsonWriteStr(configSetupJson, "scen", start_state);
Scenario_init();
saveConfig();
}
@@ -133,14 +133,14 @@ void buttonSet() {
String button_number = sCmd.next();
String button_state = sCmd.next();
String button_param = jsonReadStr(optionJson, "button_param" + button_number);
String button_param = jsonReadStr(configOptionJson, "button_param" + button_number);
if (button_param != "na" || button_param != "scenario" || button_param.indexOf("line") != -1) {
if (button_param != "na" || button_param != "scen" || button_param.indexOf("line") != -1) {
digitalWrite(button_param.toInt(), button_state.toInt());
}
if (button_param == "scenario") {
jsonWriteStr(configSetup, "scenario", button_state);
if (button_param == "scen") {
jsonWriteStr(configSetupJson, "scen", button_state);
Scenario_init();
saveConfig();
}
@@ -161,20 +161,20 @@ void buttonSet() {
eventGen ("button", button_number);
jsonWriteStr(configJson, "button" + button_number, button_state);
jsonWriteStr(configLiveJson, "button" + button_number, button_state);
sendSTATUS("button" + button_number, button_state);
}
void buttonChange() {
String button_number = sCmd.next();
String current_state = jsonReadStr(configJson, "button" + button_number);
String current_state = jsonReadStr(configLiveJson, "button" + button_number);
if (current_state == "1") {
current_state = "0";
} else if (current_state == "0") {
current_state = "1";
}
order_loop += "buttonSet " + button_number + " " + current_state + ",";
jsonWriteStr(configJson, "button" + button_number, current_state);
jsonWriteStr(configLiveJson, "button" + button_number, current_state);
sendSTATUS("button" + button_number, current_state);
}
@@ -205,11 +205,11 @@ void pwm() {
uint8_t pwm_pin_int = pwm_pin.toInt();
jsonWriteStr(optionJson, "pwm_pin" + pwm_number, pwm_pin);
jsonWriteStr(configOptionJson, "pwm_pin" + pwm_number, pwm_pin);
pinMode(pwm_pin_int, INPUT);
analogWrite(pwm_pin_int, start_state.toInt());
//analogWriteFreq(32000);
jsonWriteStr(configJson, "pwm" + pwm_number, start_state);
jsonWriteStr(configLiveJson, "pwm" + pwm_number, start_state);
createWidget (widget_name, page_name, page_number, "widgets/widget.range.json", "pwm" + pwm_number);
}
@@ -220,12 +220,12 @@ void pwmSet() {
String pwm_state = sCmd.next();
int pwm_state_int = pwm_state.toInt();
int pin = jsonReadInt(optionJson, "pwm_pin" + pwm_number);
int pin = jsonReadInt(configOptionJson, "pwm_pin" + pwm_number);
analogWrite(pin, pwm_state_int);
eventGen ("pwm", pwm_number);
jsonWriteStr(configJson, "pwm" + pwm_number, pwm_state);
jsonWriteStr(configLiveJson, "pwm" + pwm_number, pwm_state);
sendSTATUS("pwm" + pwm_number, pwm_state);
}
//==================================================================================================================
@@ -251,13 +251,13 @@ void handleButton() {
eventGen ("switch", String(switch_number));
jsonWriteStr(configJson, "switch" + String(switch_number), "1");
jsonWriteStr(configLiveJson, "switch" + String(switch_number), "1");
}
if (buttons[switch_number].rose()) {
eventGen ("switch", String(switch_number));
jsonWriteStr(configJson, "switch" + String(switch_number), "0");
jsonWriteStr(configLiveJson, "switch" + String(switch_number), "0");
}
}
switch_number++;
@@ -275,13 +275,13 @@ void inputDigit() {
page_name.replace("#", " ");
String start_state = sCmd.next();
String page_number = sCmd.next();
jsonWriteStr(configJson, "digit" + number, start_state);
jsonWriteStr(configLiveJson, "digit" + number, start_state);
createWidget (widget_name, page_name, page_number, "widgets/widget.inputNum.json", "digit" + number);
}
void digitSet() {
String number = sCmd.next();
String value = sCmd.next();
jsonWriteStr(configJson, "digit" + number, value);
jsonWriteStr(configLiveJson, "digit" + number, value);
sendSTATUS("digit" + number, value);
}
//=====================================================================================================================================
@@ -295,13 +295,13 @@ void inputTime() {
page_name.replace("#", " ");
String start_state = sCmd.next();
String page_number = sCmd.next();
jsonWriteStr(configJson, "time" + number, start_state);
jsonWriteStr(configLiveJson, "time" + number, start_state);
createWidget (widget_name, page_name, page_number, "widgets/widget.inputTime.json", "time" + number);
}
void timeSet() {
String number = sCmd.next();
String value = sCmd.next();
jsonWriteStr(configJson, "time" + number, value);
jsonWriteStr(configLiveJson, "time" + number, value);
sendSTATUS("time" + number, value);
}
@@ -309,9 +309,9 @@ void handle_time_init() {
ts.add(TIME, 1000, [&](void*) {
String tmp = GetTime();
jsonWriteStr(configJson, "time", tmp);
jsonWriteStr(configLiveJson, "time", tmp);
tmp.replace(":", "-");
jsonWriteStr(configJson, "timenow", tmp);
jsonWriteStr(configLiveJson, "timenow", tmp);
eventGen ("timenow", "");
}, nullptr, true);
@@ -344,7 +344,7 @@ void textSet() {
text = text + " " + GetDataDigital() + " " + time;
}
jsonWriteStr(configJson, "text" + number, text);
jsonWriteStr(configLiveJson, "text" + number, text);
sendSTATUS("text" + number, text);
}
//=====================================================================================================================================
@@ -356,7 +356,7 @@ void stepper() {
String pin_step = sCmd.next();
String pin_dir = sCmd.next();
jsonWriteStr(optionJson, "stepper" + stepper_number, pin_step + " " + pin_dir);
jsonWriteStr(configOptionJson, "stepper" + stepper_number, pin_step + " " + pin_dir);
pinMode(pin_step.toInt(), OUTPUT);
pinMode(pin_dir.toInt(), OUTPUT);
}
@@ -365,20 +365,20 @@ void stepper() {
void stepperSet() {
String stepper_number = sCmd.next();
String steps = sCmd.next();
jsonWriteStr(optionJson, "steps" + stepper_number, steps);
jsonWriteStr(configOptionJson, "steps" + stepper_number, steps);
String stepper_speed = sCmd.next();
String pin_step = selectToMarker (jsonReadStr(optionJson, "stepper" + stepper_number), " ");
String pin_dir = deleteBeforeDelimiter (jsonReadStr(optionJson, "stepper" + stepper_number), " ");
String pin_step = selectToMarker (jsonReadStr(configOptionJson, "stepper" + stepper_number), " ");
String pin_dir = deleteBeforeDelimiter (jsonReadStr(configOptionJson, "stepper" + stepper_number), " ");
Serial.println(pin_step);
Serial.println(pin_dir);
if (steps.toInt() > 0) digitalWrite(pin_dir.toInt(), HIGH);
if (steps.toInt() < 0) digitalWrite(pin_dir.toInt(), LOW);
if (stepper_number == "1") {
ts.add(STEPPER1, stepper_speed.toInt(), [&](void*) {
int steps_int = abs(jsonReadInt(optionJson, "steps1") * 2);
int steps_int = abs(jsonReadInt(configOptionJson, "steps1") * 2);
static int count;
count++;
String pin_step = selectToMarker (jsonReadStr(optionJson, "stepper1"), " ");
String pin_step = selectToMarker (jsonReadStr(configOptionJson, "stepper1"), " ");
digitalWrite(pin_step.toInt(), !digitalRead(pin_step.toInt()));
yield();
if (count > steps_int) {
@@ -390,10 +390,10 @@ void stepperSet() {
}
if (stepper_number == "2") {
ts.add(STEPPER2, stepper_speed.toInt(), [&](void*) {
int steps_int = abs(jsonReadInt(optionJson, "steps2") * 2);
int steps_int = abs(jsonReadInt(configOptionJson, "steps2") * 2);
static int count;
count++;
String pin_step = selectToMarker (jsonReadStr(optionJson, "stepper2"), " ");
String pin_step = selectToMarker (jsonReadStr(configOptionJson, "stepper2"), " ");
digitalWrite(pin_step.toInt(), !digitalRead(pin_step.toInt()));
yield();
if (count > steps_int) {
@@ -425,7 +425,7 @@ void servo_() {
String page_number = sCmd.next();
jsonWriteStr(optionJson, "servo_pin" + servo_number, servo_pin);
jsonWriteStr(configOptionJson, "servo_pin" + servo_number, servo_pin);
start_state_int = map(start_state_int, min_value.toInt(), max_value.toInt(), min_deg.toInt(), max_deg.toInt());
if (servo_number == "1") {
@@ -450,12 +450,12 @@ void servo_() {
#endif
}
jsonWriteStr(optionJson, "s_min_val" + servo_number, min_value);
jsonWriteStr(optionJson, "s_max_val" + servo_number, max_value);
jsonWriteStr(optionJson, "s_min_deg" + servo_number, min_deg);
jsonWriteStr(optionJson, "s_max_deg" + servo_number, max_deg);
jsonWriteStr(configOptionJson, "s_min_val" + servo_number, min_value);
jsonWriteStr(configOptionJson, "s_max_val" + servo_number, max_value);
jsonWriteStr(configOptionJson, "s_min_deg" + servo_number, min_deg);
jsonWriteStr(configOptionJson, "s_max_deg" + servo_number, max_deg);
jsonWriteStr(configJson, "servo" + servo_number, start_state);
jsonWriteStr(configLiveJson, "servo" + servo_number, start_state);
createWidgetParam (widget_name, page_name, page_number, "widgets/widget.range.json", "servo" + servo_number, "min", min_value, "max", max_value, "k", "1");
}
@@ -465,13 +465,13 @@ void servoSet() {
String servo_state = sCmd.next();
int servo_state_int = servo_state.toInt();
int pin = jsonReadInt(optionJson, "servo_pin" + servo_number);
int pin = jsonReadInt(configOptionJson, "servo_pin" + servo_number);
servo_state_int = map(servo_state_int,
jsonReadInt(optionJson, "s_min_val" + servo_number),
jsonReadInt(optionJson, "s_max_val" + servo_number),
jsonReadInt(optionJson, "s_min_deg" + servo_number),
jsonReadInt(optionJson, "s_max_deg" + servo_number));
jsonReadInt(configOptionJson, "s_min_val" + servo_number),
jsonReadInt(configOptionJson, "s_max_val" + servo_number),
jsonReadInt(configOptionJson, "s_min_deg" + servo_number),
jsonReadInt(configOptionJson, "s_max_deg" + servo_number));
if (servo_number == "1") {
#ifdef ESP8266
@@ -495,7 +495,7 @@ void servoSet() {
eventGen ("servo", servo_number);
jsonWriteStr(configJson, "servo" + servo_number, servo_state);
jsonWriteStr(configLiveJson, "servo" + servo_number, servo_state);
sendSTATUS("servo" + servo_number, servo_state);
}
#endif
@@ -523,7 +523,7 @@ void mqttOrderSend() {
String id = sCmd.next();
String order = sCmd.next();
String all_line = jsonReadStr(configSetup, "mqttPrefix") + "/" + id + "/order";
String all_line = jsonReadStr(configSetupJson, "mqttPrefix") + "/" + id + "/order";
//Serial.print(all_line);
//Serial.print("->");
//Serial.println(order);
@@ -547,7 +547,7 @@ void firmware() {
String widget_name = sCmd.next();
String page_name = sCmd.next();
String page_number = sCmd.next();
jsonWriteStr(configJson, "firm1", firmware_version);
jsonWriteStr(configLiveJson, "firm1", firmware_version);
choose_widget_and_create(widget_name, page_name, page_number, "any-data", "firm1");
}

20
FS.ino
View File

@@ -5,29 +5,29 @@ void File_system_init() {
Serial.println("--------------started----------------");
//--------------------------------------------------------------
SPIFFS.begin();
configSetup = readFile("config.json", 4096);
configSetup.replace(" ", "");
configSetup.replace("\r\n", "");
Serial.println(configSetup);
jsonWriteStr(configJson, "name", jsonReadStr(configSetup, "name"));
jsonWriteStr(configJson, "lang", jsonReadStr(configSetup, "lang"));
configSetupJson = readFile("config.json", 4096);
configSetupJson.replace(" ", "");
configSetupJson.replace("\r\n", "");
Serial.println(configSetupJson);
//jsonWriteStr(configLiveJson, "name", jsonReadStr(configSetupJson, "name"));
//jsonWriteStr(configLiveJson, "lang", jsonReadStr(configSetupJson, "lang"));
#ifdef ESP32
uint32_t chipID_u = ESP.getEfuseMac();
chipID = String(chipID_u);
jsonWriteStr(configSetup, "chipID", chipID);
jsonWriteStr(configSetupJson, "chipID", chipID);
#endif
#ifdef ESP8266
chipID = String( ESP.getChipId() ) + "-" + String(ESP.getFlashChipId());
jsonWriteStr(configSetup, "chipID", chipID);
jsonWriteStr(configSetupJson, "chipID", chipID);
Serial.setDebugOutput(0);
#endif
jsonWriteStr(configSetup, "firmware_version", firmware_version);
jsonWriteStr(configSetupJson, "firmware_version", firmware_version);
prex = jsonReadStr(configSetup, "mqttPrefix") + "/" + chipID;
prex = jsonReadStr(configSetupJson, "mqttPrefix") + "/" + chipID;
Serial.println(chipID);
}

173
Init.ino
View File

@@ -1,43 +1,4 @@
void All_init() {
server.on("/init", HTTP_GET, [](AsyncWebServerRequest * request) {
String value;
if (request->hasArg("arg")) {
value = request->getParam("arg")->value();
}
if (value == "0") { //выкл сценариев
jsonWriteStr(configSetup, "scenario", value);
saveConfig();
Scenario_init();
request->send(200, "text/text", "OK");
}
if (value == "1") { //вкл сценариев
jsonWriteStr(configSetup, "scenario", value);
saveConfig();
Scenario_init();
request->send(200, "text/text", "OK");
}
if (value == "2") { //инициализация
Device_init();
request->send(200, "text/text", "OK");
}
if (value == "3") {
#ifdef logging_enable
clean_log_date();
#endif
request->send(200, "text/text", "OK");
}
if (value == "4") {
Scenario_init();
request->send(200, "text/text", "OK");
}
if (value == "5") {
i2c_scanning = true;
request->redirect("/?utilities");
}
});
prsets_init();
Device_init();
Scenario_init();
Timer_countdown_init();
@@ -86,135 +47,27 @@ void Device_init() {
//-------------------------------сценарии-----------------------------------------------------
void Scenario_init() {
if (jsonReadStr(configSetup, "scenario") == "1") {
if (jsonReadStr(configSetupJson, "scen") == "1") {
scenario = readFile("firmware.s.txt", 2048);
}
}
void prsets_init() {
server.on("/preset", HTTP_GET, [](AsyncWebServerRequest * request) {
String value;
if (request->hasArg("arg")) {
value = request->getParam("arg")->value();
}
if (value == "1") {
writeFile("firmware.c.txt", readFile("configs/relay.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/relay.s.txt", 2048));
}
if (value == "2") {
writeFile("firmware.c.txt", readFile("configs/relay_t.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/relay_t.s.txt", 2048));
}
if (value == "3") {
writeFile("firmware.c.txt", readFile("configs/relay_c.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/relay_c.s.txt", 2048));
}
if (value == "4") {
writeFile("firmware.c.txt", readFile("configs/relay_s.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/relay_s.s.txt", 2048));
}
if (value == "5") {
writeFile("firmware.c.txt", readFile("configs/relay_sw.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/relay_sw.s.txt", 2048));
}
if (value == "6") {
writeFile("firmware.c.txt", readFile("configs/relay_br.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/relay_br.s.txt", 2048));
}
if (value == "7") {
writeFile("firmware.c.txt", readFile("configs/relay_sr.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/relay_sr.s.txt", 2048));
}
if (value == "8") {
writeFile("firmware.c.txt", readFile("configs/pwm.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/pwm.s.txt", 2048));
}
if (value == "9") {
writeFile("firmware.c.txt", readFile("configs/dht11.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/dht11.s.txt", 2048));
}
if (value == "10") {
writeFile("firmware.c.txt", readFile("configs/dht22.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/dht22.s.txt", 2048));
}
if (value == "11") {
writeFile("firmware.c.txt", readFile("configs/analog.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/analog.s.txt", 2048));
}
if (value == "12") {
writeFile("firmware.c.txt", readFile("configs/dallas.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/dallas.s.txt", 2048));
}
if (value == "13") {
writeFile("firmware.c.txt", readFile("configs/termostat.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/termostat.s.txt", 2048));
}
if (value == "14") {
writeFile("firmware.c.txt", readFile("configs/level.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/level.s.txt", 2048));
}
if (value == "15") {
writeFile("firmware.c.txt", readFile("configs/moution_r.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/moution_r.s.txt", 2048));
}
if (value == "16") {
writeFile("firmware.c.txt", readFile("configs/moution_s.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/moution_s.s.txt", 2048));
}
if (value == "17") {
writeFile("firmware.c.txt", readFile("configs/stepper.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/stepper.s.txt", 2048));
}
if (value == "18") {
writeFile("firmware.c.txt", readFile("configs/servo.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/servo.s.txt", 2048));
}
if (value == "19") {
writeFile("firmware.c.txt", readFile("configs/firmware.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/firmware.s.txt", 2048));
}
Device_init();
Scenario_init();
request->redirect("/?configuration");
});
}
void up_time() {
uint32_t ss = millis() / 1000;
uint32_t mm = ss / 60;
uint32_t hh = mm / 60;
uint32_t dd = hh / 24;
String out = "";
if (ss != 0) {
out = "[i] uptime = " + String(ss) + " sec";
jsonWriteStr(configJson, "uptime", String(ss) + " sec");
}
if (mm != 0) {
out = "[i] uptime = " + String(mm) + " min";
jsonWriteStr(configJson, "uptime", String(mm) + " min");
}
if (hh != 0) {
out = "[i] uptime = " + String(hh) + " hours";
jsonWriteStr(configJson, "uptime", String(hh) + " hours");
}
if (dd != 0) {
out = "[i] uptime = " + String(dd) + " days";
jsonWriteStr(configJson, "uptime", String(dd) + " days");
}
Serial.println(out + ", mqtt_lost_error: " + String(mqtt_lost_error) + ", wifi_lost_error: " + String(wifi_lost_error));
}
void statistics_init() {
void uptime_init() {
ts.add(UPTIME, 5000, [&](void*) {
handle_uptime();
}, nullptr, true);
ts.add(STATISTICS, statistics_update, [&](void*) {
statistics();
handle_statistics();
}, nullptr, true);
}
void statistics() {
void handle_uptime() {
if (myUpTime.check()) {
jsonWriteStr(configSetupJson, "uptime", uptime_as_string());
}
}
void handle_statistics() {
if (WiFi.status() == WL_CONNECTED) {
String urls = "http://backup.privet.lv/visitors/?";
//-----------------------------------------------------------------

View File

@@ -11,40 +11,40 @@ void logging() {
String page_number = sCmd.next();
logging_value_names_list += value_name + ",";
enter_to_logging_counter++; //считаем количество входов в эту функцию
jsonWriteStr(optionJson, value_name + "_c", maxCount); //создаем в файловой системе переменную количества точек на графике с отметкой _c что значит count
jsonWriteStr(configOptionJson, value_name + "_c", maxCount); //создаем в файловой системе переменную количества точек на графике с отметкой _c что значит count
createChart (widget_name, page_name, page_number, "widgets/widget.chart.json", value_name + "_ch", maxCount); //создаем график в приложении с топиком _ch /prefix/3234045-1589487/value_name_ch
if (enter_to_logging_counter == LOG1) {
ts.add(LOG1, period_min.toInt() * 1000 * 60, [&](void*) {
String tmp_buf_1 = selectFromMarkerToMarker(logging_value_names_list, ",", 0);
deleteOldDate("log." + tmp_buf_1 + ".txt", jsonReadInt(optionJson, tmp_buf_1 + "_c"), jsonReadStr(configJson, tmp_buf_1));
deleteOldDate("log." + tmp_buf_1 + ".txt", jsonReadInt(configOptionJson, tmp_buf_1 + "_c"), jsonReadStr(configLiveJson, tmp_buf_1));
Serial.println("[i] LOGGING for sensor '" + tmp_buf_1 + "' done");
}, nullptr, false);
}
if (enter_to_logging_counter == LOG2) {
ts.add(LOG2, period_min.toInt() * 1000 * 60, [&](void*) {
String tmp_buf_2 = selectFromMarkerToMarker(logging_value_names_list, ",", 1);
deleteOldDate("log." + tmp_buf_2 + ".txt", jsonReadInt(optionJson, tmp_buf_2 + "_c"), jsonReadStr(configJson, tmp_buf_2));
deleteOldDate("log." + tmp_buf_2 + ".txt", jsonReadInt(configOptionJson, tmp_buf_2 + "_c"), jsonReadStr(configLiveJson, tmp_buf_2));
Serial.println("[i] LOGGING for sensor '" + tmp_buf_2 + "' done");
}, nullptr, false);
}
if (enter_to_logging_counter == LOG3) {
ts.add(LOG3, period_min.toInt() * 1000 * 60, [&](void*) {
String tmp_buf_3 = selectFromMarkerToMarker(logging_value_names_list, ",", 2);
deleteOldDate("log." + tmp_buf_3 + ".txt", jsonReadInt(optionJson, tmp_buf_3 + "_c"), jsonReadStr(configJson, tmp_buf_3));
deleteOldDate("log." + tmp_buf_3 + ".txt", jsonReadInt(configOptionJson, tmp_buf_3 + "_c"), jsonReadStr(configLiveJson, tmp_buf_3));
Serial.println("[i] LOGGING for sensor '" + tmp_buf_3 + "' done");
}, nullptr, false);
}
if (enter_to_logging_counter == LOG4) {
ts.add(LOG4, period_min.toInt() * 1000 * 60, [&](void*) {
String tmp_buf_4 = selectFromMarkerToMarker(logging_value_names_list, ",", 3);
deleteOldDate("log." + tmp_buf_4 + ".txt", jsonReadInt(optionJson, tmp_buf_4 + "_c"), jsonReadStr(configJson, tmp_buf_4));
deleteOldDate("log." + tmp_buf_4 + ".txt", jsonReadInt(configOptionJson, tmp_buf_4 + "_c"), jsonReadStr(configLiveJson, tmp_buf_4));
Serial.println("[i] LOGGING for sensor '" + tmp_buf_4 + "' done");
}, nullptr, false);
}
if (enter_to_logging_counter == LOG5) {
ts.add(LOG5, period_min.toInt() * 1000 * 60, [&](void*) {
String tmp_buf_5 = selectFromMarkerToMarker(logging_value_names_list, ",", 4);
deleteOldDate("log." + tmp_buf_5 + ".txt", jsonReadInt(optionJson, tmp_buf_5 + "_c"), jsonReadStr(configJson, tmp_buf_5));
deleteOldDate("log." + tmp_buf_5 + ".txt", jsonReadInt(configOptionJson, tmp_buf_5 + "_c"), jsonReadStr(configLiveJson, tmp_buf_5));
Serial.println("[i] LOGGING for sensor '" + tmp_buf_5 + "' done");
}, nullptr, false);
}

View File

@@ -1,7 +1,7 @@
void handleScenario() {
if (jsonReadStr(configSetup, "scenario") == "1") {
if ((jsonReadStr(optionJson, "scenario_status") != "")) {
if (jsonReadStr(configSetupJson, "scen") == "1") {
if ((jsonReadStr(configOptionJson, "scenario_status") != "")) {
int i = 0;
String str = scenario; //читаем переменную с сценариями (то что из файла на странице)
str += "\n";
@@ -17,7 +17,7 @@ void handleScenario() {
//Serial.println(i);
String condition = selectToMarker (tmp, "\n"); //выделяем первую строку самого сценария button1 = 1 (условие)
String param_name = selectFromMarkerToMarker(condition, " " , 0);
String order = jsonReadStr(optionJson, "scenario_status"); //читаем весь файл событий
String order = jsonReadStr(configOptionJson, "scenario_status"); //читаем весь файл событий
String param = selectToMarker (order, ","); //читаем первое событие из файла событий
if (param_name == param) { //если поступившее событие равно событию заданному buttonSet1 в файле начинаем его обработку
@@ -25,30 +25,30 @@ void handleScenario() {
String value = selectFromMarkerToMarker(condition, " " , 2); //читаем значение (1)
if (value.indexOf("digit") != -1) {
// value = add_set(value);
value = jsonReadStr(configJson, value);
value = jsonReadStr(configLiveJson, value);
}
if (value.indexOf("time") != -1) {
// value = add_set(value);
value = jsonReadStr(configJson, value);
value = jsonReadStr(configLiveJson, value);
}
boolean flag = false; //если одно из значений совпало то только тогда начинаем выполнять комнады
if (sign == "=") {
if (jsonReadStr(configJson, param_name) == value) flag = true;
if (jsonReadStr(configLiveJson, param_name) == value) flag = true;
}
if (sign == "!=") {
if (jsonReadStr(configJson, param_name) != value) flag = true;
if (jsonReadStr(configLiveJson, param_name) != value) flag = true;
}
if (sign == "<") {
if (jsonReadStr(configJson, param_name).toInt() < value.toInt()) flag = true;
if (jsonReadStr(configLiveJson, param_name).toInt() < value.toInt()) flag = true;
}
if (sign == ">") {
if (jsonReadStr(configJson, param_name).toInt() > value.toInt()) flag = true;
if (jsonReadStr(configLiveJson, param_name).toInt() > value.toInt()) flag = true;
}
if (sign == ">=") {
if (jsonReadStr(configJson, param_name).toInt() >= value.toInt()) flag = true;
if (jsonReadStr(configLiveJson, param_name).toInt() >= value.toInt()) flag = true;
}
if (sign == "<=") {
if (jsonReadStr(configJson, param_name).toInt() <= value.toInt()) flag = true;
if (jsonReadStr(configLiveJson, param_name).toInt() <= value.toInt()) flag = true;
}
if (flag) {
@@ -63,9 +63,9 @@ void handleScenario() {
str = deleteBeforeDelimiter(str, "end\n"); //удаляем первый сценарий
//-----------------------------------------------------------------------------------------------------------------------
}
String tmp2 = jsonReadStr(optionJson, "scenario_status"); //читаем файл событий
String tmp2 = jsonReadStr(configOptionJson, "scenario_status"); //читаем файл событий
tmp2 = deleteBeforeDelimiter(tmp2, ","); //удаляем выполненное событие
jsonWriteStr(optionJson, "scenario_status", tmp2); //записываем обновленный файл событий
jsonWriteStr(configOptionJson, "scenario_status", tmp2); //записываем обновленный файл событий
i = 0;
}
}
@@ -73,10 +73,10 @@ void handleScenario() {
void eventGen (String event_name, String number) { //событие выглядит как имя плюс set плюс номер: button+Set+1
if (jsonReadStr(configSetup, "scenario") == "1") {
String tmp = jsonReadStr(optionJson, "scenario_status") ; //генерирование события
if (jsonReadStr(configSetupJson, "scen") == "1") {
String tmp = jsonReadStr(configOptionJson, "scenario_status") ; //генерирование события
//Serial.println(event_name);
jsonWriteStr(optionJson, "scenario_status", tmp + event_name + number + ",");
jsonWriteStr(configOptionJson, "scenario_status", tmp + event_name + number + ",");
}
}

View File

@@ -57,10 +57,10 @@ void level() {
String full_level = sCmd.next();
String page_number = sCmd.next();
level_value_name = value_name;
jsonWriteStr(optionJson, "e_lev", empty_level);
jsonWriteStr(optionJson, "f_lev", full_level);
jsonWriteStr(optionJson, "trig", trig);
jsonWriteStr(optionJson, "echo", echo);
jsonWriteStr(configOptionJson, "e_lev", empty_level);
jsonWriteStr(configOptionJson, "f_lev", full_level);
jsonWriteStr(configOptionJson, "trig", trig);
jsonWriteStr(configOptionJson, "echo", echo);
pinMode(trig.toInt(), OUTPUT);
pinMode(echo.toInt(), INPUT);
choose_widget_and_create(widget_name, page_name, page_number, type, value_name);
@@ -72,8 +72,8 @@ void level_reading() {
int distance_cm;
int level;
static int counter;
int trig = jsonReadInt(optionJson, "trig");
int echo = jsonReadInt(optionJson, "echo");
int trig = jsonReadInt(configOptionJson, "trig");
int echo = jsonReadInt(configOptionJson, "echo");
digitalWrite(trig, LOW);
delayMicroseconds(2);
digitalWrite(trig, HIGH);
@@ -86,9 +86,9 @@ void level_reading() {
if (counter > tank_level_times_to_send) {
counter = 0;
level = map(distance_cm,
jsonReadInt(optionJson, "e_lev"),
jsonReadInt(optionJson, "f_lev"), 0, 100);
jsonWriteInt(configJson, level_value_name, level);
jsonReadInt(configOptionJson, "e_lev"),
jsonReadInt(configOptionJson, "f_lev"), 0, 100);
jsonWriteInt(configLiveJson, level_value_name, level);
eventGen (level_value_name, "");
sendSTATUS(level_value_name, String(level));
Serial.println("[i] sensor '" + level_value_name + "' data: " + String(level));
@@ -112,10 +112,10 @@ void analog() {
String page_number = sCmd.next();
analog_value_names_list += value_name + ",";
enter_to_analog_counter++;
jsonWriteStr(optionJson, value_name + "_st", analog_start);
jsonWriteStr(optionJson, value_name + "_end", analog_end);
jsonWriteStr(optionJson, value_name + "_st_out", analog_start_out);
jsonWriteStr(optionJson, value_name + "_end_out", analog_end_out);
jsonWriteStr(configOptionJson, value_name + "_st", analog_start);
jsonWriteStr(configOptionJson, value_name + "_end", analog_end);
jsonWriteStr(configOptionJson, value_name + "_st_out", analog_start_out);
jsonWriteStr(configOptionJson, value_name + "_end_out", analog_end_out);
choose_widget_and_create(widget_name, page_name, page_number, type, value_name);
if (enter_to_analog_counter == 1) {
sensors_reading_map[1] = 1;
@@ -134,11 +134,11 @@ void analog_reading1() {
int analog_in = analogRead(A0);
#endif
int analog = map(analog_in,
jsonReadInt(optionJson, value_name + "_st") ,
jsonReadInt(optionJson, value_name + "_end"),
jsonReadInt(optionJson, value_name + "_st_out"),
jsonReadInt(optionJson, value_name + "_end_out"));
jsonWriteInt(configJson, value_name, analog);
jsonReadInt(configOptionJson, value_name + "_st") ,
jsonReadInt(configOptionJson, value_name + "_end"),
jsonReadInt(configOptionJson, value_name + "_st_out"),
jsonReadInt(configOptionJson, value_name + "_end_out"));
jsonWriteInt(configLiveJson, value_name, analog);
eventGen (value_name, "");
sendSTATUS(value_name, String(analog));
Serial.println("[i] sensor '" + value_name + "' data: " + String(analog));
@@ -153,11 +153,11 @@ void analog_reading2() {
int analog_in = analogRead(A0);
#endif
int analog = map(analog_in,
jsonReadInt(optionJson, value_name + "_st") ,
jsonReadInt(optionJson, value_name + "_end"),
jsonReadInt(optionJson, value_name + "_st_out"),
jsonReadInt(optionJson, value_name + "_end_out"));
jsonWriteInt(configJson, value_name, analog);
jsonReadInt(configOptionJson, value_name + "_st") ,
jsonReadInt(configOptionJson, value_name + "_end"),
jsonReadInt(configOptionJson, value_name + "_st_out"),
jsonReadInt(configOptionJson, value_name + "_end_out"));
jsonWriteInt(configLiveJson, value_name, analog);
eventGen (value_name, "");
sendSTATUS(value_name, String(analog));
Serial.println("[i] sensor '" + value_name + "' data: " + String(analog));
@@ -186,7 +186,7 @@ void dallas_reading() {
float temp = 0;
sensors.requestTemperatures();
temp = sensors.getTempCByIndex(0);
jsonWriteStr(configJson, "dallas", String(temp));
jsonWriteStr(configLiveJson, "dallas", String(temp));
eventGen ("dallas", "");
sendSTATUS("dallas", String(temp));
Serial.println("[i] sensor 'dallas' send date " + String(temp));
@@ -226,7 +226,7 @@ void dhtT_reading() {
value = dht.getTemperature();
if (String(value) != "nan") {
eventGen (dhtT_value_name, "");
jsonWriteStr(configJson, dhtT_value_name, String(value));
jsonWriteStr(configLiveJson, dhtT_value_name, String(value));
sendSTATUS(dhtT_value_name, String(value));
Serial.println("[i] sensor '" + dhtT_value_name + "' data: " + String(value));
}
@@ -264,7 +264,7 @@ void dhtH_reading() {
value = dht.getHumidity();
if (String(value) != "nan") {
eventGen (dhtH_value_name, "");
jsonWriteStr(configJson, dhtH_value_name, String(value));
jsonWriteStr(configLiveJson, dhtH_value_name, String(value));
sendSTATUS(dhtH_value_name, String(value));
Serial.println("[i] sensor '" + dhtH_value_name + "' data: " + String(value));
}
@@ -285,9 +285,9 @@ void dhtP_reading() {
if (dht.getStatus() != 0) {
sendSTATUS("dhtPerception", String(dht.getStatusString()));
} else {
value = dht.computePerception(jsonReadStr(configJson, dhtT_value_name).toFloat(), jsonReadStr(configJson, dhtH_value_name).toFloat(), false);
value = dht.computePerception(jsonReadStr(configLiveJson, dhtT_value_name).toFloat(), jsonReadStr(configLiveJson, dhtH_value_name).toFloat(), false);
String final_line = perception(value);
jsonWriteStr(configJson, "dhtPerception", final_line);
jsonWriteStr(configLiveJson, "dhtPerception", final_line);
eventGen ("dhtPerception", "");
sendSTATUS("dhtPerception", final_line);
if (client_mqtt.connected()) {
@@ -322,9 +322,9 @@ void dhtC_reading() {
if (dht.getStatus() != 0) {
sendSTATUS("dhtComfort", String(dht.getStatusString()));
} else {
value = dht.getComfortRatio(cf, jsonReadStr(configJson, dhtT_value_name).toFloat(), jsonReadStr(configJson, dhtH_value_name).toFloat(), false);
value = dht.getComfortRatio(cf, jsonReadStr(configLiveJson, dhtT_value_name).toFloat(), jsonReadStr(configLiveJson, dhtH_value_name).toFloat(), false);
String final_line = get_comfort_status(cf);
jsonWriteStr(configJson, "dhtComfort", final_line);
jsonWriteStr(configLiveJson, "dhtComfort", final_line);
eventGen ("dhtComfort", "");
sendSTATUS("dhtComfort", final_line);
Serial.println("[i] sensor 'dhtComfort' send date " + final_line);
@@ -383,8 +383,8 @@ void dhtD_reading() {
if (dht.getStatus() != 0) {
sendSTATUS("dhtDewpoint", String(dht.getStatusString()));
} else {
value = dht.computeDewPoint(jsonReadStr(configJson, dhtT_value_name).toFloat(), jsonReadStr(configJson, dhtH_value_name).toFloat(), false);
jsonWriteInt(configJson, "dhtDewpoint", value);
value = dht.computeDewPoint(jsonReadStr(configLiveJson, dhtT_value_name).toFloat(), jsonReadStr(configLiveJson, dhtH_value_name).toFloat(), false);
jsonWriteInt(configLiveJson, "dhtDewpoint", value);
eventGen ("dhtDewpoint", "");
sendSTATUS("dhtDewpoint", String(value));
Serial.println("[i] sensor 'dhtDewpoint' data: " + String(value));
@@ -420,7 +420,7 @@ void bmp280T_rading() {
sensors_event_t temp_event, pressure_event;
bmp_temp->getEvent(&temp_event);
value = temp_event.temperature;
jsonWriteStr(configJson, bmp280T_value_name, String(value));
jsonWriteStr(configLiveJson, bmp280T_value_name, String(value));
eventGen(bmp280T_value_name, "");
sendSTATUS(bmp280T_value_name, String(value));
Serial.println("[i] sensor '" + bmp280T_value_name + "' data: " + String(value));
@@ -452,7 +452,7 @@ void bmp280P_reading() {
bmp_pressure->getEvent(&pressure_event);
value = pressure_event.pressure;
value = value / 1.333224;
jsonWriteStr(configJson, bmp280P_value_name, String(value));
jsonWriteStr(configLiveJson, bmp280P_value_name, String(value));
eventGen(bmp280P_value_name, "");
sendSTATUS(bmp280P_value_name, String(value));
Serial.println("[i] sensor '" + bmp280P_value_name + "' data: " + String(value));
@@ -478,7 +478,7 @@ void bme280T() {
void bme280T_reading() {
float value = 0;
value = bme.readTemperature();
jsonWriteStr(configJson, bme280T_value_name, String(value));
jsonWriteStr(configLiveJson, bme280T_value_name, String(value));
eventGen(bme280T_value_name, "");
sendSTATUS(bme280T_value_name, String(value));
Serial.println("[i] sensor '" + bme280T_value_name + "' data: " + String(value));
@@ -502,7 +502,7 @@ void bme280P_reading() {
float value = 0;
value = bme.readPressure();
value = value / 1.333224;
jsonWriteStr(configJson, bme280P_value_name, String(value));
jsonWriteStr(configLiveJson, bme280P_value_name, String(value));
eventGen(bme280P_value_name, "");
sendSTATUS(bme280P_value_name, String(value));
Serial.println("[i] sensor '" + bme280P_value_name + "' data: " + String(value));
@@ -525,7 +525,7 @@ void bme280H() {
void bme280H_reading() {
float value = 0;
value = bme.readHumidity();
jsonWriteStr(configJson, bme280H_value_name, String(value));
jsonWriteStr(configLiveJson, bme280H_value_name, String(value));
eventGen(bme280H_value_name, "");
sendSTATUS(bme280H_value_name, String(value));
Serial.println("[i] sensor '" + bme280H_value_name + "' data: " + String(value));
@@ -548,7 +548,7 @@ void bme280A() {
void bme280A_reading() {
float value = 0;
value = bme.readAltitude(1013.25);
jsonWriteStr(configJson, bme280A_value_name, String(value));
jsonWriteStr(configLiveJson, bme280A_value_name, String(value));
eventGen(bme280A_value_name, "");
sendSTATUS(bme280A_value_name, String(value));
Serial.println("[i] sensor '" + bme280A_value_name + "' data: " + String(value));

View File

@@ -1,16 +1,4 @@
void Time_Init() {
server.on("/time", HTTP_GET, [](AsyncWebServerRequest * request) {
if (request->hasArg("timezone")) {
jsonWriteStr(configSetup, "timezone", request->getParam("timezone")->value());
}
if (request->hasArg("ntp")) {
jsonWriteStr(configSetup, "ntp", request->getParam("ntp")->value());
}
saveConfig();
reconfigTime();
request->send(200, "text/text", "OK"); // отправляем ответ о выполнении
});
ts.add(TIME_SYNC, 30000, [&](void*) {
time_check();
}, nullptr, true);
@@ -24,11 +12,11 @@ void time_check() {
}
void reconfigTime() {
if (WiFi.status() == WL_CONNECTED) {
String ntp = jsonReadStr(configSetup, "ntp");
configTime(0, 0, ntp.c_str());
if (WiFi.status() == WL_CONNECTED) {
String ntp = jsonReadStr(configSetupJson, "ntp");
configTime(0, 0, ntp.c_str());
int i = 0;
Serial.println("[i] Awaiting for time ");
Serial.println("[i] Awaiting for time ");
#ifdef ESP32
struct tm timeinfo;
while (!getLocalTime(&timeinfo) && i <= 4) {
@@ -41,7 +29,7 @@ void reconfigTime() {
//while (!time(nullptr) && i < 4) {
// Serial.print(".");
// i++;
delay(2000);
delay(2000);
//}
#endif
if (GetTimeUnix() != "failed") {
@@ -69,7 +57,7 @@ String GetTimeUnix() {
// Получение текущего времени
String GetTime() {
time_t now = time(nullptr); // получаем время с помощью библиотеки time.h
int zone = 3600 * jsonReadStr(configSetup, "timezone").toInt();
int zone = 3600 * jsonReadStr(configSetupJson, "timezone").toInt();
now = now + zone;
String Time = ""; // Строка для результатов времени
Time += ctime(&now); // Преобразуем время в строку формата Thu Jan 19 00:55:35 2017
@@ -80,7 +68,7 @@ String GetTime() {
String GetTimeWOsec() {
time_t now = time(nullptr); // получаем время с помощью библиотеки time.h
int zone = 3600 * jsonReadStr(configSetup, "timezone").toInt();
int zone = 3600 * jsonReadStr(configSetupJson, "timezone").toInt();
now = now + zone;
String Time = ""; // Строка для результатов времени
Time += ctime(&now); // Преобразуем время в строку формата Thu Jan 19 00:55:35 2017
@@ -92,7 +80,7 @@ String GetTimeWOsec() {
// Получение даты
String GetDate() {
time_t now = time(nullptr); // получаем время с помощью библиотеки time.h
int zone = 3600 * jsonReadStr(configSetup, "timezone").toInt();
int zone = 3600 * jsonReadStr(configSetupJson, "timezone").toInt();
now = now + zone;
String Data = ""; // Строка для результатов времени
Data += ctime(&now); // Преобразуем время в строку формата Thu Jan 19 00:55:35 2017

View File

@@ -4,7 +4,7 @@ void Timer_countdown_init() {
ts.add(TIMER_COUNTDOWN, 1000, [&](void*) {
String old_line = jsonReadStr(optionJson, "timers");
String old_line = jsonReadStr(configOptionJson, "timers");
if (old_line != "") {
//Serial.println(old_line);
int i = 0;
@@ -17,7 +17,7 @@ void Timer_countdown_init() {
int time = readTimer(number);
if (time == 0) {
delTimer (String (number));
jsonWriteStr(configJson, "timer" + String(number), "0");
jsonWriteStr(configLiveJson, "timer" + String(number), "0");
eventGen ("timer", String(number));
} else {
time--;
@@ -35,16 +35,16 @@ void timerStart() {
String type = sCmd.next();
if (period_of_time.indexOf("digit") != -1) {
//period_of_time = add_set(period_of_time);
period_of_time = jsonReadStr(configJson, period_of_time);
period_of_time = jsonReadStr(configLiveJson, period_of_time);
}
if (type == "sec") period_of_time = period_of_time;
if (type == "min") period_of_time = String(period_of_time.toInt() * 60);
if (type == "hours") period_of_time = String(period_of_time.toInt() * 60 * 60);
addTimer(number, period_of_time);
jsonWriteStr(configJson, "timer" + number, "1");
jsonWriteStr(configLiveJson, "timer" + number, "1");
}
void addTimer(String number, String time) {
String tmp = jsonReadStr(optionJson, "timers"); //1:60,2:120,
String tmp = jsonReadStr(configOptionJson, "timers"); //1:60,2:120,
String new_timer = number + ":" + time;
int psn1 = tmp.indexOf(number + ":"); //0 ищем позицию таймера который надо заменить
if (psn1 != -1) { //если он есть
@@ -56,7 +56,7 @@ void addTimer(String number, String time) {
} else { //если его нет
tmp += new_timer + ",";
}
jsonWriteStr(optionJson, "timers", tmp);
jsonWriteStr(configOptionJson, "timers", tmp);
//Serial.println("ura");
}
@@ -66,18 +66,18 @@ void timerStop() {
}
void delTimer (String number) {
String tmp = jsonReadStr(optionJson, "timers"); //1:60,2:120,
String tmp = jsonReadStr(configOptionJson, "timers"); //1:60,2:120,
int psn1 = tmp.indexOf(number + ":"); //0 ищем позицию таймера который надо удалить
if (psn1 != -1) { //если он есть
int psn2 = tmp.indexOf(",", psn1); //4 от этой позиции находим позицию запятой
String timer = tmp.substring(psn1, psn2) + ","; //1:60, выделяем таймер который надо удалить
tmp.replace(timer, ""); //удаляем таймер
jsonWriteStr(optionJson, "timers", tmp);
jsonWriteStr(configOptionJson, "timers", tmp);
}
}
int readTimer(int number) {
String tmp = jsonReadStr(optionJson, "timers"); //1:60,2:120,
String tmp = jsonReadStr(configOptionJson, "timers"); //1:60,2:120,
int psn1 = tmp.indexOf(String(number) + ":"); //0 ищем позицию таймера который надо прочитать
String timer;
if (psn1 != -1) { //если он есть

View File

@@ -1,55 +1,13 @@
void initUpgrade() {
#ifdef ESP8266
if (WiFi.status() == WL_CONNECTED) last_version = getURL("http://91.204.228.124:1100/update/esp8266/version.txt");
#endif
#ifdef ESP32
if (WiFi.status() == WL_CONNECTED) last_version = getURL("http://91.204.228.124:1100/update/esp32/version.txt");
#endif
jsonWriteStr(configSetup, "last_version", last_version);
jsonWriteStr(configSetupJson, "last_version", last_version);
Serial.print("[i] Last firmware version: ");
Serial.println(last_version);
server.on("/check", HTTP_GET, [](AsyncWebServerRequest * request) {
upgrade_url = true;
Serial.print("[i] Last firmware version: ");
Serial.println(last_version);
String tmp = "{}";
if (WiFi.status() == WL_CONNECTED) {
if (mb_4_of_memory) {
if (last_version != "") {
if (last_version != "error") {
if (last_version == firmware_version) {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Последняя версия прошивки уже установлена.");
jsonWriteStr(tmp, "class", "pop-up");
} else {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Имеется новая версия прошивки<a href=\"#\" class=\"btn btn-block btn-danger\" onclick=\"send_request(this, '/upgrade');setTimeout(function(){ location.href='/'; }, 120000);html('my-block','<span class=loader></span>Идет обновление прошивки, после обновления страница перезагрузится автоматически...')\">Установить</a>");
jsonWriteStr(tmp, "class", "pop-up");
}
} else {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Ошибка... Cервер не найден. Попробуйте позже...");
jsonWriteStr(tmp, "class", "pop-up");
}
} else {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Нажмите на кнопку \"обновить прошивку\" повторно...");
jsonWriteStr(tmp, "class", "pop-up");
}
} else {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Обновление по воздуху не поддерживается, модуль имеет меньше 4 мб памяти...");
jsonWriteStr(tmp, "class", "pop-up");
}
} else {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Устройство не подключен к роутеру...");
jsonWriteStr(tmp, "class", "pop-up");
}
request->send(200, "text/text", tmp);
});
server.on("/upgrade", HTTP_GET, [](AsyncWebServerRequest * request) {
upgrade = true;
String tmp = "{}";
request->send(200, "text/text", "ok");
});
}
void do_upgrade_url() {
@@ -57,12 +15,11 @@ void do_upgrade_url() {
upgrade_url = false;
#ifdef ESP32
last_version = getURL("http://91.204.228.124:1100/update/esp32/version.txt");
jsonWriteStr(configSetup, "last_version", last_version);
#endif
#ifdef ESP8266
last_version = getURL("http://91.204.228.124:1100/update/esp8266/version.txt");
jsonWriteStr(configSetup, "last_version", last_version);
#endif
jsonWriteStr(configSetupJson, "last_version", last_version);
}
}
@@ -73,7 +30,7 @@ void upgrade_firmware() {
String configSetup_for_update;
scenario_for_update = readFile("firmware.s.txt", 4000);
config_for_update = readFile("firmware.c.txt", 4000);
configSetup_for_update = configSetup;
configSetup_for_update = configSetupJson;
Serial.println("Start upgrade SPIFFS, please wait...");
@@ -108,7 +65,7 @@ void upgrade_firmware() {
#endif
if (ret == HTTP_UPDATE_OK) {
Serial.println("BUILD upgrade done!");
Serial.println("Restart ESP....");
ESP.restart();

352
Web.ino Normal file
View File

@@ -0,0 +1,352 @@
void web_init() {
server.on("/set", HTTP_GET, [](AsyncWebServerRequest * request) {
String value;
//============================device settings=====================================
if (request->hasArg("preset")) {
//--------------------------------------------------------------------------------
String value;
value = request->getParam("preset")->value();
if (value == "1") {
writeFile("firmware.c.txt", readFile("configs/1-relay.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/1-relay.s.txt", 2048));
}
if (value == "2") {
writeFile("firmware.c.txt", readFile("configs/2-relay.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/2-relay.s.txt", 2048));
}
if (value == "3") {
writeFile("firmware.c.txt", readFile("configs/3-relay.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/3-relay.s.txt", 2048));
}
if (value == "4") {
writeFile("firmware.c.txt", readFile("configs/4-relay.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/4-relay.s.txt", 2048));
}
if (value == "5") {
writeFile("firmware.c.txt", readFile("configs/5-relay.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/5-relay.s.txt", 2048));
}
if (value == "6") {
writeFile("firmware.c.txt", readFile("configs/6-relay.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/6-relay.s.txt", 2048));
}
if (value == "7") {
writeFile("firmware.c.txt", readFile("configs/7-relay.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/7-relay.s.txt", 2048));
}
if (value == "8") {
writeFile("firmware.c.txt", readFile("configs/8-pwm.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/8-pwm.s.txt", 2048));
}
if (value == "9") {
writeFile("firmware.c.txt", readFile("configs/9-dht11.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/9-dht11.s.txt", 2048));
}
if (value == "10") {
writeFile("firmware.c.txt", readFile("configs/10-dht22.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/10-dht22.s.txt", 2048));
}
if (value == "11") {
writeFile("firmware.c.txt", readFile("configs/11-analog.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/11-analog.s.txt", 2048));
}
if (value == "12") {
writeFile("firmware.c.txt", readFile("configs/12-bmp280.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/12-bmp280.s.txt", 2048));
}
if (value == "13") {
writeFile("firmware.c.txt", readFile("configs/13-bme280.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/13-bme280.s.txt", 2048));
}
if (value == "14") {
writeFile("firmware.c.txt", readFile("configs/14-dallas.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/14-dallas.s.txt", 2048));
}
if (value == "15") {
writeFile("firmware.c.txt", readFile("configs/15-termostat.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/15-termostat.s.txt", 2048));
}
if (value == "16") {
writeFile("firmware.c.txt", readFile("configs/16-level.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/16-level.s.txt", 2048));
}
if (value == "17") {
writeFile("firmware.c.txt", readFile("configs/17-moution.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/17-moution.s.txt", 2048));
}
if (value == "18") {
writeFile("firmware.c.txt", readFile("configs/18-moution.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/18-moution.s.txt", 2048));
}
if (value == "19") {
writeFile("firmware.c.txt", readFile("configs/19-stepper.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/19-stepper.s.txt", 2048));
}
if (value == "20") {
writeFile("firmware.c.txt", readFile("configs/20-servo.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/20-servo.s.txt", 2048));
}
if (value == "21") {
writeFile("firmware.c.txt", readFile("configs/firmware.c.txt", 2048));
writeFile("firmware.s.txt", readFile("configs/firmware.s.txt", 2048));
}
Device_init();
Scenario_init();
request->redirect("/?set.device");
}
//--------------------------------------------------------------------------------
if (request->hasArg("devinit")) {
Device_init();
request->send(200, "text/text", "OK");
}
//--------------------------------------------------------------------------------
if (request->hasArg("scen")) {
value = request->getParam("scen")->value();
if (value == "0") {
jsonWriteStr(configSetupJson, "scen", value);
saveConfig();
Scenario_init();
}
if (value == "1") {
jsonWriteStr(configSetupJson, "scen", value);
saveConfig();
Scenario_init();
}
request->send(200, "text/text", "OK");
}
//--------------------------------------------------------------------------------
if (request->hasArg("sceninit")) {
Scenario_init();
request->send(200, "text/text", "OK");
}
//--------------------------------------------------------------------------------
#ifdef logging_enable
if (request->hasArg("cleanlog")) {
clean_log_date();
request->send(200, "text/text", "OK");
}
#endif
//==============================udp settings=============================================
if (request->hasArg("udponoff")) {
value = request->getParam("udponoff")->value();
if (value == "0") {
jsonWriteStr(configSetupJson, "udponoff", value);
saveConfig();
Scenario_init();
}
if (value == "1") {
jsonWriteStr(configSetupJson, "udponoff", value);
saveConfig();
Scenario_init();
}
request->send(200, "text/text", "OK");
}
//--------------------------------------------------------------------------------
if (request->hasArg("updatelist")) {
SPIFFS.remove("/dev.csv");
addFile("dev.csv", "device id;device name;ip address");
request->redirect("/?set.udp");
}
//--------------------------------------------------------------------------------
if (request->hasArg("updatepage")) {
request->redirect("/?set.udp");
}
//--------------------------------------------------------------------------------
if (request->hasArg("devname")) {
jsonWriteStr(configSetupJson, "name", request->getParam("devname")->value());
saveConfig();
request->send(200, "text/text", "OK");
}
//==============================wifi settings=============================================
if (request->hasArg("routerssid")) {
jsonWriteStr(configSetupJson, "routerssid", request->getParam("routerssid")->value());
saveConfig();
request->send(200, "text/text", "OK");
}
if (request->hasArg("routerpass")) {
jsonWriteStr(configSetupJson, "routerpass", request->getParam("routerpass")->value());
saveConfig();
request->send(200, "text/text", "OK");
}
//--------------------------------------------------------------------------------
if (request->hasArg("apssid")) {
jsonWriteStr(configSetupJson, "apssid", request->getParam("apssid")->value());
saveConfig();
request->send(200, "text/text", "OK");
}
if (request->hasArg("appass")) {
jsonWriteStr(configSetupJson, "appass", request->getParam("appass")->value());
saveConfig();
request->send(200, "text/text", "OK");
}
//--------------------------------------------------------------------------------
if (request->hasArg("weblogin")) {
jsonWriteStr(configSetupJson, "weblogin", request->getParam("weblogin")->value());
saveConfig();
request->send(200, "text/text", "OK");
}
if (request->hasArg("webpass")) {
jsonWriteStr(configSetupJson, "webpass", request->getParam("webpass")->value());
saveConfig();
request->send(200, "text/text", "OK");
}
//--------------------------------------------------------------------------------
if (request->hasArg("timezone")) {
jsonWriteStr(configSetupJson, "timezone", request->getParam("timezone")->value());
saveConfig();
reconfigTime();
request->send(200, "text/text", "OK");
}
if (request->hasArg("ntp")) {
jsonWriteStr(configSetupJson, "ntp", request->getParam("ntp")->value());
saveConfig();
reconfigTime();
request->send(200, "text/text", "OK");
}
//--------------------------------------------------------------------------------
if (request->hasArg("device")) {
if (request->getParam("device")->value() == "ok") ESP.restart();
request->send(200, "text/text", "OK");
}
//--------------------------------------------------------------------------------
if (request->hasArg("blink")) {
value = request->getParam("blink")->value();
if (value == "0") {
jsonWriteStr(configSetupJson, "blink", value);
saveConfig();
}
if (value == "1") {
jsonWriteStr(configSetupJson, "blink", value);
saveConfig();
}
request->send(200, "text/text", "OK");
}
//==============================mqtt settings=============================================
if (request->hasArg("mqttServer")) {
jsonWriteStr(configSetupJson, "mqttServer", request->getParam("mqttServer")->value());
saveConfig();
mqtt_connection = true;
request->send(200, "text/text", "ok");
}
if (request->hasArg("mqttPort")) {
int port = (request->getParam("mqttPort")->value()).toInt();
jsonWriteInt(configSetupJson, "mqttPort", port);
saveConfig();
mqtt_connection = true;
request->send(200, "text/text", "ok");
}
if (request->hasArg("mqttPrefix")) {
jsonWriteStr(configSetupJson, "mqttPrefix", request->getParam("mqttPrefix")->value());
saveConfig();
mqtt_connection = true;
request->send(200, "text/text", "ok");
}
if (request->hasArg("mqttUser")) {
jsonWriteStr(configSetupJson, "mqttUser", request->getParam("mqttUser")->value());
saveConfig();
mqtt_connection = true;
request->send(200, "text/text", "ok");
}
if (request->hasArg("mqttPass")) {
jsonWriteStr(configSetupJson, "mqttPass", request->getParam("mqttPass")->value());
saveConfig();
mqtt_connection = true;
request->send(200, "text/text", "ok");
}
//--------------------------------------------------------------------------------
if (request->hasArg("mqttsend")) {
mqtt_send_settings_to_udp = true;
request->send(200, "text/text", "ok");
}
//--------------------------------------------------------------------------------
if (request->hasArg("mqttcheck")) {
String tmp = "{}";
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>" + stateMQTT());
jsonWriteStr(tmp, "class", "pop-up");
request->send(200, "text/text", tmp);
}
//==============================push settings=============================================
#ifdef push_enable
if (request->hasArg("pushingboxid")) {
jsonWriteStr(configSetupJson, "pushingboxid", request->getParam("pushingboxid")->value());
saveConfig();
request->send(200, "text/text", "ok");
}
#endif
//==============================utilities settings=============================================
if (request->hasArg("itoc")) {
i2c_scanning = true;
request->redirect("/?set.utilities");
}
});
//==============================upgrade settings=============================================
server.on("/check", HTTP_GET, [](AsyncWebServerRequest * request) {
upgrade_url = true;
Serial.print("[i] Last firmware version: ");
Serial.println(last_version);
String tmp = "{}";
int case_of_update;
if (WiFi.status() != WL_CONNECTED) last_version = "nowifi";
if (!mb_4_of_memory) last_version = "less";
if (last_version == firmware_version) case_of_update = 1;
if (last_version != firmware_version) case_of_update = 2;
if (last_version == "error") case_of_update = 3;
if (last_version == "") case_of_update = 4;
if (last_version == "less") case_of_update = 5;
if (last_version == "nowifi") case_of_update = 6;
if (last_version == "notsupported") case_of_update = 7;
switch (case_of_update) {
case 1: {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Последняя версия прошивки уже установлена.");
jsonWriteStr(tmp, "class", "pop-up");
}
break;
case 2: {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Имеется новая версия прошивки<a href=\"#\" class=\"btn btn-block btn-danger\" onclick=\"send_request(this, '/upgrade');setTimeout(function(){ location.href='/'; }, 120000);html('my-block','<span class=loader></span>Идет обновление прошивки, после обновления страница перезагрузится автоматически...')\">Установить</a>");
jsonWriteStr(tmp, "class", "pop-up");
}
break;
case 3: {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Ошибка... Cервер не найден. Попробуйте позже...");
jsonWriteStr(tmp, "class", "pop-up");
}
break;
case 4: {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Нажмите на кнопку \"обновить прошивку\" повторно...");
jsonWriteStr(tmp, "class", "pop-up");
break;
}
case 5: {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Обновление по воздуху не поддерживается, модуль имеет меньше 4 мб памяти...");
jsonWriteStr(tmp, "class", "pop-up");
break;
}
case 6: {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Устройство не подключено к роутеру...");
jsonWriteStr(tmp, "class", "pop-up");
break;
}
case 7: {
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>Обновление на новую версию возможно только через usb...");
jsonWriteStr(tmp, "class", "pop-up");
break;
}
}
request->send(200, "text/text", tmp);
});
server.on("/upgrade", HTTP_GET, [](AsyncWebServerRequest * request) {
upgrade = true;
String tmp = "{}";
request->send(200, "text/text", "ok");
});
}

View File

@@ -48,9 +48,9 @@ void Web_server_init() {
**************************************WEB****************************************
*********************************************************************************/
#ifdef ESP32
server.addHandler(new SPIFFSEditor(SPIFFS, jsonReadStr(configSetup, "web_login").c_str(), jsonReadStr(configSetup, "web_pass").c_str()));
server.addHandler(new SPIFFSEditor(SPIFFS, jsonReadStr(configSetupJson, "web_login").c_str(), jsonReadStr(configSetupJson, "web_pass").c_str()));
#elif defined(ESP8266)
server.addHandler(new SPIFFSEditor(jsonReadStr(configSetup, "web_login").c_str(), jsonReadStr(configSetup, "web_pass").c_str()));
server.addHandler(new SPIFFSEditor(jsonReadStr(configSetupJson, "web_login").c_str(), jsonReadStr(configSetupJson, "web_pass").c_str()));
#endif
/* server.on("/heap", HTTP_GET, [](AsyncWebServerRequest * request) {
@@ -60,9 +60,10 @@ void Web_server_init() {
server.serveStatic("/css/", SPIFFS, "/css/").setCacheControl("max-age=31536000");
server.serveStatic("/js/", SPIFFS, "/js/").setCacheControl("max-age=31536000");
server.serveStatic("/favicon.ico", SPIFFS, "/favicon.ico").setCacheControl("max-age=31536000");
server.serveStatic("/icon.jpeg", SPIFFS, "/icon.jpeg").setCacheControl("max-age=31536000");
server.serveStatic("/", SPIFFS, "/").setDefaultFile("index.htm")
.setAuthentication(jsonReadStr(configSetup, "web_login").c_str(), jsonReadStr(configSetup, "web_pass").c_str());
.setAuthentication(jsonReadStr(configSetupJson, "web_login").c_str(), jsonReadStr(configSetupJson, "web_pass").c_str());
server.onNotFound([](AsyncWebServerRequest * request) {
Serial.printf("NOT_FOUND: ");
@@ -133,15 +134,15 @@ void Web_server_init() {
// --------------------Выдаем данные configJson //config.live.json - динамические данные
server.on("/config.live.json", HTTP_GET, [](AsyncWebServerRequest * request) {
request->send(200, "application/json", configJson);
request->send(200, "application/json", configLiveJson);
});
// --------------------Выдаем данные optionJson //config.option.json - данные не являющиеся событиями
server.on("/config.option.json", HTTP_GET, [](AsyncWebServerRequest * request) {
request->send(200, "application/json", optionJson);
request->send(200, "application/json", configOptionJson);
});
// -------------------Выдаем данные configSetup //config.setup.json - для хранения постоянных данных
server.on("/config.setup.json", HTTP_GET, [](AsyncWebServerRequest * request) {
request->send(200, "application/json", configSetup);
request->send(200, "application/json", configSetupJson);
});
// ------------------Выполнение команды из запроса

View File

@@ -1,59 +1,12 @@
void WIFI_init() {
// --------------------Получаем ssid password со страницы
server.on("/ssid", HTTP_GET, [](AsyncWebServerRequest * request) {
if (request->hasArg("ssid")) {
jsonWriteStr(configSetup, "ssid", request->getParam("ssid")->value());
}
if (request->hasArg("password")) {
jsonWriteStr(configSetup, "password", request->getParam("password")->value());
}
saveConfig(); // Функция сохранения данных во Flash
request->send(200, "text/text", "OK"); // отправляем ответ о выполнении
});
// --------------------Получаем ssidAP passwordAP со страницы
server.on("/ssidap", HTTP_GET, [](AsyncWebServerRequest * request) {
if (request->hasArg("ssidAP")) {
jsonWriteStr(configSetup, "ssidAP", request->getParam("ssidAP")->value());
}
if (request->hasArg("passwordAP")) {
jsonWriteStr(configSetup, "passwordAP", request->getParam("passwordAP")->value());
}
saveConfig(); // Функция сохранения данных во Flash
request->send(200, "text/text", "OK"); // отправляем ответ о выполнении
});
// --------------------Получаем логин и пароль для web со страницы
server.on("/web", HTTP_GET, [](AsyncWebServerRequest * request) {
if (request->hasArg("web_login")) {
jsonWriteStr(configSetup, "web_login", request->getParam("web_login")->value());
}
if (request->hasArg("web_pass")) {
jsonWriteStr(configSetup, "web_pass", request->getParam("web_pass")->value());
}
saveConfig(); // Функция сохранения данных во Flash
//Web_server_init();
request->send(200, "text/text", "OK"); // отправляем ответ о выполнении
});
server.on("/restart", HTTP_GET, [](AsyncWebServerRequest * request) {
if (request->hasArg("device")) {
if (request->getParam("device")->value() == "ok") ESP.restart();
}
request->send(200, "text/text", "OK"); // отправляем ответ о выполнении
});
ROUTER_Connecting();
}
void ROUTER_Connecting() {
led_blink("slow");
led_blink("slow");
WiFi.mode(WIFI_STA);
byte tries = 20;
String _ssid = jsonReadStr(configSetup, "ssid");
String _password = jsonReadStr(configSetup, "password");
String _ssid = jsonReadStr(configSetupJson, "routerssid");
String _password = jsonReadStr(configSetupJson, "routerpass");
//WiFi.persistent(false);
if (_ssid == "" && _password == "") {
@@ -66,12 +19,11 @@ void ROUTER_Connecting() {
}
// Делаем проверку подключения до тех пор пока счетчик tries
// не станет равен нулю или не получим подключение
while (--tries && WiFi.status() != WL_CONNECTED)
{
while (--tries && WiFi.status() != WL_CONNECTED) {
if (WiFi.status() == WL_CONNECT_FAILED) {
Serial.println("[E] password is not correct");
tries = 1;
jsonWriteInt(optionJson, "pass_status", 1);
jsonWriteInt(configOptionJson, "pass_status", 1);
}
Serial.print(".");
delay(1000);
@@ -93,12 +45,10 @@ void ROUTER_Connecting() {
Serial.print("[V] IP address: http://");
Serial.print(WiFi.localIP());
Serial.println("");
jsonWriteStr(configJson, "ip", WiFi.localIP().toString());
jsonWriteStr(configSetupJson, "ip", WiFi.localIP().toString());
led_blink("off");
//add_dev_in_list("dev.txt", chipID, WiFi.localIP().toString());
MQTT_init();
}
}
@@ -108,26 +58,25 @@ bool StartAPMode() {
WiFi.mode(WIFI_AP);
String _ssidAP = jsonReadStr(configSetup, "ssidAP");
String _passwordAP = jsonReadStr(configSetup, "passwordAP");
String _ssidAP = jsonReadStr(configSetupJson, "apssid");
String _passwordAP = jsonReadStr(configSetupJson, "appass");
WiFi.softAP(_ssidAP.c_str(), _passwordAP.c_str());
IPAddress myIP = WiFi.softAPIP();
led_blink("on");
Serial.print("AP IP address: ");
Serial.println(myIP);
jsonWriteStr(configJson, "ip", myIP.toString());
jsonWriteStr(configSetupJson, "ip", myIP.toString());
if (jsonReadInt(optionJson, "pass_status") != 1) {
//if (jsonReadInt(configOptionJson, "pass_status") != 1) {
ts.add(ROUTER_SEARCHING, 10 * 1000, [&](void*) {
Serial.println("->try find router");
if (RouterFind(jsonReadStr(configSetup, "ssid"))) {
if (RouterFind(jsonReadStr(configSetupJson, "routerssid"))) {
ts.remove(ROUTER_SEARCHING);
WiFi.scanDelete();
ROUTER_Connecting();
MQTT_init();
}
}, nullptr, true);
}
//}
return true;
}
@@ -182,12 +131,12 @@ boolean RouterFind(String ssid) {
for (uint8_t i = 0; i < n; i++) {
JsonObject& data = networks.createNestedObject();
String ssidMy = WiFi.SSID(i);
data["ssid"] = ssidMy;
data["routerssid"] = ssidMy;
data["pass"] = (WiFi.encryptionType(i) == ENC_TYPE_NONE) ? "" : "*";
int8_t dbm = WiFi.RSSI(i);
data["dbm"] = dbm;
if (ssidMy == jsonReadStr(configSetup, "ssid")) {
jsonWriteStr(configJson, "dbm", dbm);
if (ssidMy == jsonReadStr(configSetupJson, "routerssid")) {
jsonWriteStr(configLiveJson, "dbm", dbm);
}
}
String root;
@@ -199,14 +148,14 @@ boolean RouterFind(String ssid) {
{
"type":"wifi",
"title":"{{LangWiFi1}}",
"name":"ssid",
"name":"routerssid",
"state":"{{ssid}}",
"pattern":".{1,}"
},
{
"type":"password",
"type":"routerpass",
"title":"{{LangPass}}",
"name":"ssidPass",
"name":"routerpass",
"state":"{{ssidPass}}",
"pattern":".{8,}"
},

View File

@@ -5,10 +5,10 @@ void do_i2c_scanning() {
if (tmp == "error") {
tmp = i2c_scan();
Serial.println(tmp);
jsonWriteStr(configJson, "i2c", tmp);
jsonWriteStr(configLiveJson, "i2c", tmp);
} else {
Serial.println(tmp);
jsonWriteStr(configJson, "i2c", tmp);
jsonWriteStr(configLiveJson, "i2c", tmp);
}
}
}

View File

@@ -1,10 +1,10 @@
{
"name": "IoTmanager",
"chipID": "",
"ssidAP": "WiFi2",
"passwordAP": "",
"ssid": "rise",
"password": "hostel3333",
"apssid": "IoTmanager",
"appass": "",
"routerssid": "rise",
"routerpass": "hostel3333",
"timezone": 2,
"ntp": "pool.ntp.org",
"mqttServer": "91.204.228.124",
@@ -12,9 +12,10 @@
"mqttPrefix": "/rise",
"mqttUser": "test",
"mqttPass": "test",
"scenario": "1",
"pushingbox_id": "v7C133E426B0C69E",
"web_login": "admin",
"web_pass": "admin",
"udponoff": "1"
"scen": "1",
"pushingboxid": "v7C133E426B0C69E",
"weblogin": "admin",
"webpass": "admin",
"udponoff": "1",
"blink":"1"
}

View File

@@ -0,0 +1,6 @@
bmp280T temp1 0x76 Температура#bmp280 Датчики any-data 1
bmp280P press1 0x76 Давление#bmp280 Датчики any-data 2
logging temp1 1 100 Температура Датчики 3
logging press1 1 100 Давление Датчики 4
//Чтение и логгирование датчика bmp280. Датчик подключается к шине i2c (esp8266 - gpio 5, 4)

View File

@@ -0,0 +1,9 @@
bme280T temp1 0x76 Температура#bmp280 Датчики any-data 1
bme280P pres1 0x76 Давление#bmp280 Датчики any-data 2
bme280H hum1 0x76 Влажность#bmp280 Датчики any-data 3
bme280A altit1 0x76 Высота#bmp280 Датчики any-data 4
logging temp1 1 100 Температура Датчики 5
logging press1 1 100 Давление Датчики 6
logging hum1 1 100 Влажность Датчики 7
//Чтение и логгирование датчика bme280. Датчик подключается к шине i2c (esp8266 - gpio 5, 4)

1
data/configs/8-pwm.s.txt Normal file
View File

@@ -0,0 +1 @@

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@@ -0,0 +1 @@

View File

@@ -1,3 +0,0 @@
switch 1 0 10
//физическая кнопка номер 1 подключенная к пину 0, задержка от дребезга 10 мс

View File

@@ -1,3 +0,0 @@
switch1 = 1
mqtt 3233662-1589489 buttonChange_1
end

View File

@@ -1,118 +0,0 @@
{
"configs": [
"/config.live.json",
"/config.setup.json",
"/config.option.json"
],
"class": "col-sm-offset-1 col-sm-10",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class": "alert-warning"
},
{
"type": "h4",
"title": "Device ID: {{chipID}}"
},
{
"type": "h4",
"title": "IP address: {{ip}}"
},
{
"type": "h4",
"title": "Uptime: {{uptime}}"
},
{
"type": "h4",
"title": "Time: {{time}}"
},
{
"type": "hr"
},
{
"type": "dropdown",
"name": "help-url",
"class": "btn btn-warning btn-lg",
"style": "display:inline",
"title": {
"#": "Выбирите то, во что Вы хотите превратить это устройство <span class=\"caret\"></span>",
"/preset?arg=1": "1.Вкл. выкл. локального реле",
"/preset?arg=2": "2.Вкл. выкл. локального реле в определенное время",
"/preset?arg=3": "3.Вкл. выкл. локального реле на определенный период времени",
"/preset?arg=4": "4.Вкл. выкл. нескольких локальных реле кнопкой в приложении",
"/preset?arg=5": "5.Вкл. выкл. локального реле физической кнопкой и кнопкой в приложении параллельно (для выключателя света)",
"/preset?arg=6": "6.Вкл. выкл. нескольких удаленных реле кнопкой в приложении (нужно указать Device ID)",
"/preset?arg=7": "7.Вкл. выкл. нескольких удаленных реле физической кнопкой (нужно указать Device ID)",
"/preset?arg=8": "8.Широтно импульсная модуляция",
"/preset?arg=9": "9.Сенсор DHT11 и логгирование",
"/preset?arg=10": "10.Сенсор DHT22, DHT33, DHT44, AM2302, RHT03 и логгирование",
"/preset?arg=11": "11.Аналоговый сенсор и логгирование",
"/preset?arg=12": "12.Сенсор DS18B20 и логгирование",
"/preset?arg=13": "13.Термостат на DS18B20 с переключением в ручной режим и логгированием",
"/preset?arg=14": "14.Контроль уровня в баке на сенсорах: JSN-SR04T, HC-SR04, HY-SRF05 и логгирование (управление насосом)",
"/preset?arg=15": "15.Датчик движения включающий свет",
"/preset?arg=16": "16.Охранный датчик движения",
"/preset?arg=17": "17.Система управления шаговыми двигателями на основе драйвера A4988 (открытие закрытие штор)",
"/preset?arg=18": "18.Система управления сервоприводами",
"/preset?arg=19": "Настройки по умолчанию"
}
},
{
"type": "h2",
"title": "Конфигурация устройства"
},
{
"type": "file",
"state": "firmware.c.txt",
"style": "width:100%;height:400px",
"title": "Сохранить",
"action": "/init?arg=2",
"class": "btn btn-block btn-success"
},
{
"type": "link",
"title": "Подробная инструкция",
"action": "https://github.com/DmitryBorisenko33/esp32-esp8266_iot-manager_modules_firmware/wiki/Instruction",
"class": "btn btn-block btn-primary"
},
{
"type": "h2",
"title": "Сценарии"
},
{
"type": "checkbox",
"name": "scenario",
"title": "Включить сценарии",
"action": "/init?arg=[[scenario]]",
"state": "{{scenario}}"
},
{
"type": "h6",
"title": ""
},
{
"type": "file",
"state": "firmware.s.txt",
"style": "width:100%;height:400px",
"title": "Сохранить",
"action": "/init?arg=4",
"class": "btn btn-block btn-success"
},
{
"type": "hr"
},
{
"type": "link",
"title": "Очистить логи сенсоров",
"action": "/init?arg=3",
"class": "btn btn-block btn-success"
},
{
"type": "link",
"title": "Главная",
"action": "/",
"class": "btn btn-block btn-danger btn-sm"
}
]
}

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@@ -1,92 +0,0 @@
{
"configs": [
"/config.live.json",
"/config.setup.json"
],
"title": "Главная",
"class": "col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class": "alert-warning"
},
{
"type": "h3",
"title": "Список других устройств в сети:"
},
{
"type": "hr"
},
{
"type": "csv",
"title": [
"html",
"html",
"html"
],
"state": "dev.csv",
"style": "width:100%;",
"class": "nan"
},
{
"type": "hr"
},
{
"type": "link",
"title": "Переформировать список устройств",
"action": "udp?arg=3",
"class": "btn btn-block btn-success"
},
{
"type": "link",
"title": "Обновить страницу",
"action": "udp?arg=4",
"class": "btn btn-block btn-success"
},
{
"type": "hr"
},
{
"type": "text",
"class": "alert alert-warning",
"title": "После нажатия на кнопку 'Переформировать список устройств' ждите примерно минуту, а затем обновите страницу и список появится вновь"
},
{
"type": "h3",
"title": "Имя этого устройства:"
},
{
"type": "input",
"title": "Имя устройства",
"name": "dev_name",
"state": "{{name}}",
"pattern": "[A-Za-z0-9]{6,12}"
},
{
"type": "button",
"title": "Сохранить",
"action": "name?arg=[[dev_name]]",
"class": "btn btn-block btn-success"
},
{
"type": "hr"
},
{
"type": "checkbox",
"name": "udponoff",
"title": "Включить обмен данными между устройствами",
"action": "/udp?arg=[[udponoff]]",
"state": "{{udponoff}}"
},
{
"type": "hr"
},
{
"type": "link",
"title": "Главная",
"action": "/",
"class": "btn btn-block btn-danger"
}
]
}

BIN
data/icon.jpeg Normal file

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After

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@@ -1,7 +1,8 @@
{
"configs": [
"/config.live.json",
"/config.setup.json"
"/config.setup.json",
"/lang/lang.ru.json"
],
"title": "Главная",
"class": "col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
@@ -9,104 +10,60 @@
{
"type": "h5",
"title": "{{name}}",
"class": "alert-warning"
"class": "alert-default"
},
{
"type": "h4",
"title": "Device ID: {{chipID}}"
},
{
"type": "h4",
"title": "IP address: {{ip}}"
},
{
"type": "h4",
"title": "Uptime: {{uptime}}"
},
{
"type": "h4",
"title": "Time: {{time}}"
},
{
"type": "h4",
"title": "Build version: {{firmware_version}}"
},
{
"type": "h4",
"title": "SPIFFS version: 2.3.3"
},
{
"type": "hr"
},
"type": "text",
"class": "alert alert-light",
"title": "<center><img src='/icon.jpeg' alt='IoT Manager'></center>"
},
{
"type": "link",
"title": "Конфигурация устройства",
"action": "/?configuration",
"class": "btn btn-block btn-primary"
},
{
"type": "hr"
"action": "/?set.device",
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "Список других устройств в сети",
"action": "/?dev",
"class": "btn btn-block btn-success"
"action": "/?set.udp",
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "Конфигурация WIFI",
"action": "/?setup",
"class": "btn btn-block btn-success"
"action": "/?set.wifi",
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "Конфигурация MQTT",
"action": "/?mqtt",
"class": "btn btn-block btn-success"
"action": "/?set.mqtt",
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "Конфигурация push",
"action": "/?pushingbox",
"class": "btn btn-block btn-success"
"action": "/?set.push",
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "Утилиты",
"action": "/?utilities",
"class": "btn btn-block btn-success"
},
{
"type": "h3",
"name": "my-block",
"style": "position:fixed;top:50%;left:50%;width:400px;margin-left:-200px;text-align:center;",
"class": "hidden"
},
{
"type": "hr"
},
{
"type": "button",
"title": "Обновить прошивку",
"action": "/check",
"response": "[[my-block]]",
"class": "btn btn-block btn-danger"
},
{
"type": "hr"
"action": "/?set.utilities",
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "Скачать приложение IoT Manager для android",
"action": "https://play.google.com/store/apps/details?id=ru.esp8266.iotmanager",
"class": "btn btn-block btn-warning"
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "Скачать приложение IoT Manager для iphone",
"action": "https://apps.apple.com/ru/app/iot-manager/id1155934877",
"class": "btn btn-block btn-warning"
"class": "btn btn-block btn-default"
}
]
}

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39
data/lang/lang.ru.json Normal file
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@@ -0,0 +1,39 @@
{
"SetDevConf": "Конфигурация устройства",
"SetDevPreset": "Выберите из списка подходящий пресет кофигурации",
"ButSave":"Сохранить",
"ButMainPage":"Главная",
"SetUDPList": "Список других устройств в сети:",
"SetUDPWarn1": "После нажатия на кнопку <b>переформировать список устройств</b> ждите примерно минуту, а затем обновите страницу и список появится вновь",
"SetUDPUpdateList":"Переформировать список устройств",
"SetUDPUpdatePage":"Обновить страницу",
"SetUDPNameOfDev":"Имя этого устройства:",
"SetUDPDateExchange":"Включить обмен данными между устройствами",
"SetUDPWarn2":"Если обмен данными включен, то устройства будут обмениваться широковещательными пакетами udp для формирования списка устройств и для осуществления посылки настроек mqtt. Данный обмен создает дополнительную нагрузку на wifi сеть.",
"SetWiFiNameOfDev":"Имя устройства:",
"SetWiFiRouterConnect":"Подключение к WiFi роутеру:",
"SetWiFiAccessPoint":"Точка доступа:",
"SetWiFiWeb":"Логин и пароль web interface:",
"SetWiFiTimeZone":"Временная зона:",
"SetWiFiNTP":"Сервер NTP:",
"SetWiFiWarn1":"Имя устройства должно состоять из английских букв и иметь длинну от 6 до 12 символов",
"SetWiFiWarn2":"После того как вы введете логин пароль от вашего wifi роутера необходимо нажать кнопку сохранить, а затем обязательно нажать кнопку <b>перезагрузить устройство</b> внизу этой страницы",
"SetWiFiWarn3":"Устройство постоянно сканирует сеть на наличие wifi. Если роутер отключен, то устройство автоматически перейдет в режим точки доступа. Когда wifi появится устройство автоматически подключится к роутеру снова, и выключит точку доступа",
"SetWiFiWarn4":"После изменения поля <b>NTP сервер</b> необходимо перезагрузить устройство",
"SetWiFiWarn5":"Светодиод статуса подключения показывает четыре состояния подключения: <br><b>1. мигает редко</b> - идет подключение к wifi <br><b>2. мигает часто</b> - идет подключение к серверу mqtt <br><b>3. горит постоянно</b> - модуль в режиме точки доступа, <br><b>4. не горит</b> - модуль подключен к wifi и к mqtt. <br>Светодиод подключен к gpio2. Если галочка стоит - то использовать этот пин нельзя",
"SetMQTTServerName":"Имя сервера:",
"SetMQTTPort":"Номер порта:",
"SetMQTTPrefix":"Префикс:",
"SetMQTTUserName":"Имя пользователя:",
"SetMQTTPassword":"Пароль:",
"SetMQTTSendSettings":"Отправить настройки MQTT с этого устройства на все остальные",
"SetMQTTWarn1":"Обратите внимание что поле префикс может состоять только из одного слова и одного разделителя: <b>/prefix</b>, вариант вида: <b>/prefix1/prefix2</b> работать не будет. После изменения поля prefix необходимо перезагрузить устройство",
"SetMQTTWarn2":"Прежде чем нажимать на кнопку <b>Отправить настройки MQTT</b> сохрание их, если Вы их меняли. Настройки получат и перезапишут все устройства в локальной сети"
}

View File

@@ -1,111 +0,0 @@
{
"configs": [
"/config.setup.json"
],
"class": "col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class": "alert-warning"
},
{
"type": "text",
"class": "alert alert-warning",
"title": "Обратите внимание что поле prefix может состоять только из одного слова и одного разделителя: <b>/prefix</b>, вариант вида: <b>/prefix1/prefix2</b> работать не будет. После изменения поля prefix необходимо перезагрузить устройство"
},
{
"type": "h4",
"title": "Server name:"
},
{
"type": "input",
"title": "",
"name": "1",
"state": "{{mqttServer}}"
},
{
"type": "h4",
"title": "Port:"
},
{
"type": "input",
"title": "",
"name": "2",
"state": "{{mqttPort}}"
},
{
"type": "h4",
"title": "Prefix:"
},
{
"type": "input",
"title": "",
"name": "3",
"state": "{{mqttPrefix}}"
},
{
"type": "h4",
"title": "User name:"
},
{
"type": "input",
"title": "",
"name": "4",
"state": "{{mqttUser}}"
},
{
"type": "h4",
"title": "Password:"
},
{
"type": "input",
"title": "",
"name": "5",
"state": "{{mqttPass}}"
},
{
"type": "h3",
"name": "my-block",
"style": "position:fixed;top:30%;left:50%;width:400px;margin-left:-200px;text-align:center;",
"class": "hidden"
},
{
"type": "text",
"class": "alert alert-warning",
"title": "Прежде чем нажимать на кнопку <b>'Отправить настройки MQTT'</b> сохрание их, если Вы их меняли. Настройки получат и перезапишут все устройства в локальной сети"
},
{
"type": "button",
"title": "Сохранить",
"action": "mqttSave?mqttServer=[[1]]&mqttPort=[[2]]&mqttPrefix=[[3]]&mqttUser=[[4]]&mqttPass=[[5]]",
"class": "btn btn-block btn-success"
},
{
"type": "button",
"title": "Отправить настройки MQTT с этого устройства на все остальные",
"action": "udp?arg=2",
"class": "btn btn-block btn-success"
},
{
"type": "button",
"title": "Проверить соединение с MQTT",
"action": "mqttCheck",
"response": "[[my-block]]",
"class": "btn btn-block btn-success"
},
{
"type": "link",
"title": "Перезагрузить устройство",
"action": "javascript:if(confirm(renameBlock(jsonResponse,'Перезагрузить?'))){send_request(this,'/restart?device=ok');}",
"class": "btn btn-block btn-success"
},
{
"type": "link",
"title": "Главная",
"action": "/",
"class": "btn btn-block btn-danger btn-sm"
}
]
}

View File

@@ -1,46 +0,0 @@
{
"configs": [
"/config.setup.json"
],
"class":"col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class":"alert-warning"
},
{
"type": "h4",
"title": "Device id:"
},
{
"type": "input",
"title": "",
"name":"1",
"state": "{{pushingbox_id}}"
},
{
"type": "button",
"title":"Сохранить",
"action": "pushingboxDate?pushingbox_id=[[1]]",
"class": "btn btn-block btn-success",
"style": "width:100%;display:inline"
},
{
"type": "hr"
},
{
"type": "link",
"title": "Перезагрузить устройство",
"action": "javascript:if(confirm(renameBlock(jsonResponse,'Перезагрузить?'))){send_request(this,'/restart?device=ok');}",
"class": "btn btn-block btn-warning"
},
{
"type": "link",
"title": "Главная",
"action": "/",
"class": "btn btn-block btn-danger btn-sm"
}
]
}

143
data/set.device.json Normal file
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@@ -0,0 +1,143 @@
{
"configs": [
"/config.setup.json",
"/config.option.json",
"/config.live.json",
"/lang/lang.ru.json"
],
"class": "col-sm-offset-1 col-sm-10",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class": "alert-default"
},
{
"type": "link",
"title": "{{ButMainPage}}",
"action": "/",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
},
{
"type": "h4",
"title": "Device ID: {{chipID}}"
},
{
"type": "h4",
"title": "IP address: {{ip}}"
},
{
"type": "h4",
"title": "Time: {{time}}"
},
{
"type": "h4",
"title": "Uptime: {{uptime}}"
},
{
"type": "h4",
"title": "Build version: {{firmware_version}}"
},
{
"type": "h4",
"title": "SPIFFS version: 2.3.3"
},
{
"type": "hr"
},
{
"type": "dropdown",
"name": "help-url",
"class": "btn btn-default",
"style": "display:inline",
"title": {
"#": "{{SetDevPreset}}<span class=\"caret\"></span>",
"/set?preset=1": "1.Вкл. выкл. локального реле",
"/set?preset=2": "2.Вкл. выкл. локального реле в определенное время",
"/set?preset=3": "3.Вкл. выкл. локального реле на определенный период времени",
"/set?preset=4": "4.Вкл. выкл. нескольких локальных реле кнопкой в приложении",
"/set?preset=5": "5.Вкл. выкл. локального реле физической кнопкой и кнопкой в приложении параллельно (для выключателя света)",
"/set?preset=6": "6.Вкл. выкл. нескольких удаленных реле кнопкой в приложении (нужно указать Device ID)",
"/set?preset=7": "7.Вкл. выкл. нескольких удаленных реле физической кнопкой (нужно указать Device ID)",
"/set?preset=8": "8.Широтно импульсная модуляция",
"/set?preset=9": "9.Сенсор DHT11 (темп, влажность) и логгирование",
"/set?preset=10": "10.Сенсор DHT22, DHT33, DHT44, AM2302, RHT03 (темп, влажность) и логгирование",
"/set?preset=11": "11.Аналоговый сенсор и логгирование",
"/set?preset=12": "12.Cенсор bmp280 (темп, давление) и логгирование",
"/set?preset=13": "13.Cенсор bme280 (темп, давление, влажность, высота) и логгирование",
"/set?preset=14": "12.Сенсор DS18B20 (темп) и логгирование",
"/set?preset=15": "13.Термостат на DS18B20 с переключением в ручной режим и логгированием",
"/set?preset=16": "14.Котроль уровня в баке (датчик расстояния) на сенсорах: JSN-SR04T, HC-SR04, HY-SRF05 и логгирование",
"/set?preset=17": "15.Датчик движения включающий свет",
"/set?preset=18": "16.Охранный датчик движения",
"/set?preset=19": "17.Система управления шаговыми двигателями на основе драйвера A4988 (открытие закрытие штор)",
"/set?preset=20": "18.Система управления сервоприводами",
"/set?preset=21": "Настройки по умолчанию"
}
},
{
"type": "h2",
"title": "{{SetDevConf}}"
},
{
"type": "file",
"state": "firmware.c.txt",
"style": "width:100%;height:350px",
"title": "Сохранить",
"action": "/set?devinit",
"class": "btn btn-block btn-default"
},
{
"type": "h2",
"title": "Сценарии"
},
{
"type": "checkbox",
"name": "scen",
"title": "Включить сценарии",
"action": "/set?scen=[[scen]]",
"state": "{{scen}}"
},
{
"type": "file",
"state": "firmware.s.txt",
"style": "width:100%;height:350px",
"title": "Сохранить",
"action": "/set?sceninit",
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "Инструкция к системе автоматизации",
"action": "https://github.com/DmitryBorisenko33/esp32-esp8266_iot-manager_modules_firmware/wiki/Instruction",
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "Очистить логи сенсоров",
"action": "/set?cleanlog",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
},
{
"type": "h3",
"name": "my-block",
"style": "position:fixed;top:50%;left:50%;width:400px;margin-left:-200px;text-align:center;",
"class": "hidden"
},
{
"type": "button",
"title": "Обновить прошивку устройства",
"action": "/check",
"response": "[[my-block]]",
"class": "btn btn-block btn-default"
}
]
}

133
data/set.mqtt.json Normal file
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@@ -0,0 +1,133 @@
{
"configs": [
"/config.setup.json",
"/lang/lang.ru.json"
],
"class": "col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class": "alert-default"
},
{
"type": "link",
"title": "{{ButMainPage}}",
"action": "/",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
},
{
"type": "h4",
"title": "{{SetMQTTServerName}}",
"style": "width:60%;float:left;"
},
{
"type": "input",
"title": "",
"name": "mqttServer-arg",
"state": "{{mqttServer}}",
"style": "width:40%;float:right"
},
{
"type": "h4",
"title": "{{SetMQTTPort}}",
"style": "width:60%;float:left;"
},
{
"type": "input",
"title": "",
"name": "mqttPort-arg",
"state": "{{mqttPort}}",
"style": "width:40%;float:right"
},
{
"type": "h4",
"title": "{{SetMQTTPrefix}}",
"style": "width:60%;float:left;"
},
{
"type": "input",
"title": "",
"name": "mqttPrefix-arg",
"state": "{{mqttPrefix}}",
"style": "width:40%;float:right"
},
{
"type": "h4",
"title": "{{SetMQTTUserName}}",
"style": "width:60%;float:left;"
},
{
"type": "input",
"title": "",
"name": "mqttUser-arg",
"state": "{{mqttUser}}",
"style": "width:40%;float:right"
},
{
"type": "h4",
"title": "{{SetMQTTPassword}}",
"style": "width:60%;float:left;"
},
{
"type": "input",
"title": "",
"name": "mqttPass-arg",
"state": "{{mqttPass}}",
"style": "width:40%;float:right"
},
{
"type": "h3",
"name": "my-block",
"style": "position:fixed;top:30%;left:50%;width:400px;margin-left:-200px;text-align:center;",
"class": "hidden"
},
{
"type": "button",
"title": "{{ButSave}}",
"style": "width:100%;float:left;",
"action": "set?mqttServer=[[mqttServer-arg]]&mqttPort=[[mqttPort-arg]]&mqttPrefix=[[mqttPrefix-arg]]&mqttUser=[[mqttUser-arg]]&mqttPass=[[mqttPass-arg]]",
"class": "btn btn-block btn-default"
},
{
"type": "button",
"style": "width:100%;float:left;",
"title": "{{SetMQTTSendSettings}}",
"action": "set?mqttsend",
"class": "btn btn-block btn-default"
},
{
"type": "button",
"style": "width:100%;float:left;",
"title": "Проверить соединение с MQTT",
"action": "set?mqttcheck",
"response": "[[my-block]]",
"class": "btn btn-block btn-default"
},
{
"type": "text",
"style": "width:100%;float:left;",
"title": "<div style='margin-top:10px;margin-bottom:10px;'><font color='black'><p style='border: 1px solid #DCDCDC; border-radius: 3px; background-color: #F5F5F5; padding: 10px;'>{{SetMQTTWarn1}}</p></font></div>"
},
{
"type": "text",
"style": "width:100%;float:left;",
"title": "<div style='margin-top:10px;margin-bottom:10px;'><font color='black'><p style='border: 1px solid #DCDCDC; border-radius: 3px; background-color: #F5F5F5; padding: 10px;'>{{SetMQTTWarn2}}</p></font></div>"
},
{
"type": "link",
"style": "width:100%;float:left;",
"title": "Перезагрузить устройство",
"action": "javascript:if(confirm(renameBlock(jsonResponse,'Перезагрузить?'))){send_request(this,'/restart?device=ok');}",
"class": "btn btn-block btn-danger"
}
]
}

51
data/set.push.json Normal file
View File

@@ -0,0 +1,51 @@
{
"configs": [
"/config.setup.json",
"/lang/lang.ru.json"
],
"class": "col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class": "alert-default"
},
{
"type": "link",
"title": "{{ButMainPage}}",
"action": "/",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
},
{
"type": "h4",
"style": "width:60%;float:left;",
"title": "Device id:"
},
{
"type": "input",
"title": "",
"name": "push-arg",
"style": "width:40%;float:right",
"state": "{{pushingboxid}}"
},
{
"type": "button",
"title": "{{ButSave}}",
"action": "set?pushingboxid=[[push-arg]]",
"class": "btn btn-block btn-default",
"style": "width:100%;display:inline"
},
{
"type": "hr"
},
{
"type": "link",
"title": "Перезагрузить устройство",
"action": "javascript:if(confirm(renameBlock(jsonResponse,'Перезагрузить?'))){send_request(this,'/restart?device=ok');}",
"class": "btn btn-block btn-danger"
}
]
}

96
data/set.udp.json Normal file
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@@ -0,0 +1,96 @@
{
"configs": [
"/config.setup.json",
"/lang/lang.ru.json"
],
"title": "Главная",
"class": "col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class": "alert-default"
},
{
"type": "link",
"title": "{{ButMainPage}}",
"action": "/",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
},
{
"type": "h3",
"title": "{{SetUDPList}}"
},
{
"type": "hr"
},
{
"type": "csv",
"title": [
"html",
"html",
"html"
],
"state": "dev.csv",
"style": "width:100%;",
"class": "nan"
},
{
"type": "hr"
},
{
"type": "link",
"title": "{{SetUDPUpdateList}}",
"action": "/set?updatelist",
"class": "btn btn-block btn-default"
},
{
"type": "link",
"title": "{{SetUDPUpdatePage}}",
"action": "/set?updatepage",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
},
{
"type": "text",
"title": "<div style='margin-top:10px;margin-bottom:10px;'><font color='black'><p style='border: 1px solid #DCDCDC; border-radius: 3px; background-color: #F5F5F5; padding: 10px;'>{{SetUDPWarn1}}</p></font></div>",
"style": "width:100%;float:left;"
},
{
"type": "h3",
"title": "{{SetUDPNameOfDev}}"
},
{
"type": "input",
"title": "{{SetUDPNameOfDev}}",
"name": "devname-arg",
"state": "{{name}}",
"pattern": "[A-Za-z0-9]{6,12}"
},
{
"type": "button",
"title": "{{ButSave}}",
"action": "/set?devname=[[devname-arg]]",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
},
{
"type": "checkbox",
"name": "udponoff",
"title": "{{SetUDPDateExchange}}",
"action": "/set?udponoff=[[udponoff]]",
"state": "{{udponoff}}"
},
{
"type": "text",
"title": "<div style='margin-top:10px;margin-bottom:10px;'><font color='black'><p style='border: 1px solid #DCDCDC; border-radius: 3px; background-color: #F5F5F5; padding: 10px;'>{{SetUDPWarn2}}</p></font></div>"
}
]
}

View File

@@ -1,7 +1,8 @@
{
"configs": [
"/config.live.json",
"/config.setup.json"
"/config.setup.json",
"/lang/lang.ru.json"
],
"title": "Главная",
"class": "col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
@@ -9,7 +10,13 @@
{
"type": "h5",
"title": "{{name}}",
"class": "alert-warning"
"class": "alert-default"
},
{
"type": "link",
"title": "{{ButMainPage}}",
"action": "/",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
@@ -25,17 +32,8 @@
{
"type": "link",
"title": "Сканировать",
"action": "/init?arg=5",
"class": "btn btn-block btn-success"
},
{
"type": "hr"
},
{
"type": "link",
"title": "Главная",
"action": "/",
"class": "btn btn-block btn-danger"
"action": "/set?itoc",
"class": "btn btn-block btn-default"
}
]
}

185
data/set.wifi.json Normal file
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@@ -0,0 +1,185 @@
{
"configs": [
"/config.setup.json",
"/lang/lang.ru.json"
],
"title": "Конфигурация",
"class": "col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class": "alert-default"
},
{
"type": "link",
"title": "{{ButMainPage}}",
"action": "/",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
},
{
"type": "h3",
"title": "{{SetWiFiNameOfDev}}"
},
{
"type": "input",
"title": "{{SetWiFiNameOfDev}}",
"name": "devname-arg",
"state": "{{name}}",
"pattern": "[A-Za-z0-9]{6,12}"
},
{
"type": "button",
"title": "{{ButSave}}",
"action": "set?devname=[[devname-arg]]",
"class": "btn btn-block btn-default"
},
{
"type": "text",
"title": "<div style='margin-top:10px;margin-bottom:10px;'><font color='black'><p style='border: 1px solid #DCDCDC; border-radius: 3px; background-color: #F5F5F5; padding: 10px;'>{{SetWiFiWarn1}}</p></font></div>"
},
{
"type": "hr"
},
{
"type": "h3",
"title": "{{SetWiFiRouterConnect}}"
},
{
"type": "input",
"title": "",
"name": "routerssid-arg",
"state": "{{routerssid}}"
},
{
"type": "password",
"title": "",
"name": "routerpass-arg",
"state": "{{routerpass}}"
},
{
"type": "button",
"title": "{{ButSave}}",
"class": "btn btn-block btn-default",
"action": "set?routerssid=[[routerssid-arg]]&routerpass=[[routerpass-arg]]"
},
{
"type": "text",
"title": "<div style='margin-top:10px;margin-bottom:10px;'><font color='black'><p style='border: 1px solid #DCDCDC; border-radius: 3px; background-color: #F5F5F5; padding: 10px;'>{{SetWiFiWarn2}}</p></font></div>"
},
{
"type": "hr"
},
{
"type": "checkbox",
"name": "blink",
"title": "Включить светодиод статуса подключения",
"action": "/set?blink=[[blink]]",
"state": "{{blink}}"
},
{
"type": "text",
"title": "<div style='margin-top:10px;margin-bottom:10px;'><font color='black'><p style='border: 1px solid #DCDCDC; border-radius: 3px; background-color: #F5F5F5; padding: 10px;'>{{SetWiFiWarn5}}</p></font></div>"
},
{
"type": "hr"
},
{
"type": "h3",
"title": "{{SetWiFiAccessPoint}}"
},
{
"type": "input",
"title": "",
"name": "apssid-arg",
"state": "{{apssid}}",
"pattern": ".{1,20}"
},
{
"type": "password",
"title": "",
"name": "appass-arg",
"state": "{{appass}}",
"pattern": ".{8,20}"
},
{
"type": "button",
"title": "{{ButSave}}",
"action": "set?apssid=[[apssid-arg]]&appass=[[appass-arg]]",
"class": "btn btn-block btn-default"
},
{
"type": "text",
"title": "<div style='margin-top:10px;margin-bottom:10px;'><font color='black'><p style='border: 1px solid #DCDCDC; border-radius: 3px; background-color: #F5F5F5; padding: 10px;'>{{SetWiFiWarn3}}</p></font></div>"
},
{
"type": "hr"
},
{
"type": "h3",
"title": "{{SetWiFiWeb}}"
},
{
"type": "input",
"title": "Логин",
"name": "weblogin-arg",
"state": "{{weblogin}}",
"pattern": ".{1,20}"
},
{
"type": "password",
"title": "Пароль",
"name": "webpass-arg",
"state": "{{webpass}}",
"pattern": ".{1,20}"
},
{
"type": "button",
"title": "{{ButSave}}",
"action": "set?weblogin=[[weblogin-arg]]&webpass=[[webpass-arg]]",
"class": "btn btn-block btn-default"
},
{
"type": "hr"
},
{
"type": "h3",
"title": "{{SetWiFiTimeZone}}"
},
{
"type": "input",
"title": "",
"name": "timezone-arg",
"state": "{{timezone}}",
"pattern": ".{1,20}"
},
{
"type": "input",
"title": "",
"name": "ntp-arg",
"state": "{{ntp}}"
},
{
"type": "button",
"title": "{{ButSave}}",
"action": "set?timezone=[[timezone-arg]]&ntp=[[ntp-arg]]",
"class": "btn btn-block btn-default"
},
{
"type": "text",
"title": "<div style='margin-top:10px;margin-bottom:10px;'><font color='black'><p style='border: 1px solid #DCDCDC; border-radius: 3px; background-color: #F5F5F5; padding: 10px;'>{{SetWiFiWarn4}}</p></font></div>"
},
{
"type": "hr"
},
{
"type": "link",
"title": "Перезагрузить устройство",
"action": "javascript:if(confirm(renameBlock(jsonResponse,'Перезагрузить?'))){send_request(this,'/set?device=ok');}",
"class": "btn btn-block btn-danger"
}
]
}

View File

@@ -1,162 +0,0 @@
{
"configs": [
"/config.setup.json"
],
"title": "Конфигурация",
"class": "col-sm-offset-1 col-sm-10 col-md-offset-2 col-md-8 col-lg-offset-3 col-lg-6",
"content": [
{
"type": "h5",
"title": "{{name}}",
"class": "alert-warning"
},
{
"type": "link",
"title": "Главная",
"action": "/",
"class": "btn btn-block btn-danger"
},
{
"type": "hr"
},
{
"type": "h2",
"title": "Имя устройства"
},
{
"type": "input",
"title": "Имя устройства",
"name": "dev_name",
"state": "{{name}}",
"pattern": "[A-Za-z0-9]{6,12}"
},
{
"type": "button",
"title": "Сохранить",
"action": "name?arg=[[dev_name]]",
"class": "btn btn-block btn-success"
},
{
"type": "hr"
},
{
"type": "h2",
"title": "Подключение к Wi-Fi роутеру"
},
{
"type": "input",
"title": "Сеть",
"name": "ssid",
"state": "{{ssid}}"
},
{
"type": "password",
"title": "Введите пароль",
"name": "ssidPass",
"state": "{{password}}"
},
{
"type": "button",
"title": "Сохранить",
"class": "btn btn-block btn-success",
"action": "ssid?ssid=[[ssid]]&password=[[ssidPass]]"
},
{
"type": "hr"
},
{
"type": "h2",
"title": "Точка доступа"
},
{
"type": "input",
"title": "Имя WI-FI сети",
"name": "ssidap",
"state": "{{ssidAP}}",
"pattern": ".{1,20}"
},
{
"type": "password",
"title": "Пароль",
"name": "ssidApPass",
"state": "{{passwordAP}}",
"pattern": ".{8,20}"
},
{
"type": "button",
"title": "Сохранить",
"action": "ssidap?ssidAP=[[ssidap]]&passwordAP=[[ssidApPass]]",
"class": "btn btn-block btn-success"
},
{
"type": "hr"
},
{
"type": "h2",
"title": "Логин и пароль web interface"
},
{
"type": "input",
"title": "Логин",
"name": "web-login",
"state": "{{web_login}}",
"pattern": ".{1,20}"
},
{
"type": "password",
"title": "Пароль",
"name": "web-pass",
"state": "{{web_pass}}",
"pattern": ".{1,20}"
},
{
"type": "button",
"title": "Сохранить",
"action": "web?web_login=[[web-login]]&web_pass=[[web-pass]]",
"class": "btn btn-block btn-success"
},
{
"type": "hr"
},
{
"type": "h2",
"title": "Временная зона"
},
{
"type": "input",
"title": "Временная зона",
"name": "1",
"state": "{{timezone}}",
"pattern": ".{1,20}"
},
{
"type": "input",
"title": "Название ntp сервера",
"name": "2",
"state": "{{ntp}}"
},
{
"type": "button",
"title": "Сохранить",
"action": "time?timezone=[[1]]&ntp=[[2]]",
"class": "btn btn-block btn-success"
},
{
"type": "hr"
},
{
"type": "text",
"class": "alert alert-warning",
"title": "После изменения поля <b>'NTP сервер'</b> необходимо перезагрузить устройство"
},
{
"type": "hr"
},
{
"type": "link",
"title": "Перезагрузить устройство",
"action": "javascript:if(confirm(renameBlock(jsonResponse,'Перезагрузить?'))){send_request(this,'/restart?device=ok');}",
"class": "btn btn-block btn-warning"
}
]
}

View File

@@ -14,10 +14,10 @@ void setup() {
All_init();
Serial.println("[V] All_init");
//--------------------------------------------------------------
WIFI_init();
Serial.println("[V] WIFI_init");
ROUTER_Connecting();
Serial.println("[V] ROUTER_Connecting");
//--------------------------------------------------------------
statistics_init();
uptime_init();
Serial.println("[V] statistics_init");
//--------------------------------------------------------------
initUpgrade();
@@ -26,17 +26,12 @@ void setup() {
Web_server_init();
Serial.println("[V] Web_server_init");
//--------------------------------------------------------------
MQTT_init();
Serial.println("[V] MQTT_init");
web_init();
Serial.println("[V] web_init");
//--------------------------------------------------------------
Time_Init();
Serial.println("[V] Time_Init");
//--------------------------------------------------------------
#ifdef push_enable
Push_init();
Serial.println("[V] Push_init");
#endif
//--------------------------------------------------------------
#ifdef UDP_enable
UDP_init();
Serial.println("[V] UDP_init");

107
main.ino
View File

@@ -89,10 +89,89 @@ uint16_t hexStringToUint16(String hex) {
return tmp;
}
}
String u16toStr(uint16_t u16Input)
{
char tmp[16];
sprintf(tmp, "0x%.4X", u16Input);
return tmp;
}
String u8toStr(uint8_t u8Input)
{
char tmp[8];
sprintf(tmp, "0x%.2X", u8Input);
return tmp;
}
String u64toStr(uint64_t input)
{
String result = "";//
uint8_t base = 16; //hex 10 dec
do {
char c = input % base; input /= base;
if (c < 10) {
c += '0';
} else {
c += 'A' - 10;
}
result = c + result;
} while (input);
switch (result.length()) {
case 1: {
result = "000000000000000" + result;
} break;
case 2: {
result = "00000000000000" + result;
} break;
case 3: {
result = "0000000000000" + result;
} break;
case 4: {
result = "000000000000" + result;
} break;
case 5: {
result = "00000000000" + result;
} break;
case 6: {
result = "0000000000" + result;
} break;
case 7: {
result = "000000000" + result;
} break;
case 8: {
result = "00000000" + result;
} break;
case 9: {
result = "0000000" + result;
} break;
case 10: {
result = "000000" + result;
} break;
case 11: {
result = "00000" + result;
} break;
case 12: {
result = "0000" + result;
} break;
case 13: {
result = "000" + result;
} break;
case 14: {
result = "00" + result;
} break;
case 15: {
result = "0" + result;
} break;
}
return result;
}
//==============================================================================================================
//=============================================CONFIG===========================================================
void saveConfig () {
writeFile("config.json", configSetup);
writeFile("config.json", configSetupJson);
}
//==============================================================================================================
//=============================================STRING===========================================================
@@ -207,7 +286,7 @@ String safeDataToFile(String data, String Folder) {
fileName = Folder + "/" + fileName + ".txt";
// addFile(fileName, GetTime() + "/" + data);
Serial.println(fileName);
jsonWriteStr(configJson, "test", fileName);
jsonWriteStr(configLiveJson, "test", fileName);
}
// ------------- Чтение файла в строку -------------------------------------------------------------------------------
String readFile(String fileName, size_t len ) {
@@ -271,7 +350,7 @@ String readFileString(String fileName, String found) {
//=======================================УПРАВЛЕНИЕ ВИДЖЕТАМИ MQTT=========================================================
void sendCONFIG(String topik, String widgetConfig, String key, String date) {
yield();
topik = jsonReadStr(configSetup, "mqttPrefix") + "/" + chipID + "/" + topik + "/status";
topik = jsonReadStr(configSetupJson, "mqttPrefix") + "/" + chipID + "/" + topik + "/status";
String outer = "{\"widgetConfig\":";
String inner = "{\"";
inner = inner + key;
@@ -289,17 +368,19 @@ void sendCONFIG(String topik, String widgetConfig, String key, String date) {
void led_blink(String satus) {
#ifdef ESP8266
#ifdef blink_pin
pinMode(blink_pin, OUTPUT);
if (satus == "off") {
noTone(blink_pin);
digitalWrite(blink_pin, HIGH);
if (jsonReadStr(configSetupJson, "blink") == "1") {
pinMode(blink_pin, OUTPUT);
if (satus == "off") {
noTone(blink_pin);
digitalWrite(blink_pin, HIGH);
}
if (satus == "on") {
noTone(blink_pin);
digitalWrite(blink_pin, LOW);
}
if (satus == "slow") tone(blink_pin, 1);
if (satus == "fast") tone(blink_pin, 20);
}
if (satus == "on") {
noTone(blink_pin);
digitalWrite(blink_pin, LOW);
}
if (satus == "slow") tone(blink_pin, 1);
if (satus == "fast") tone(blink_pin, 20);
#endif
#endif
}

View File

@@ -1,8 +1,6 @@
//===============================================ИНИЦИАЛИЗАЦИЯ================================================
void MQTT_init() {
ts.add(WIFI_MQTT_CONNECTION_CHECK, wifi_mqtt_reconnecting, [&](void*) {
up_time();
if (WiFi.status() == WL_CONNECTED) {
Serial.println("[VV] WiFi-ok");
if (client_mqtt.connected()) {
@@ -19,43 +17,8 @@ void MQTT_init() {
StartAPMode();
}
}, nullptr, true);
server.on("/mqttSave", HTTP_GET, [](AsyncWebServerRequest * request) {
if (request->hasArg("mqttServer")) {
jsonWriteStr(configSetup, "mqttServer", request->getParam("mqttServer")->value());
}
if (request->hasArg("mqttPort")) {
int port = (request->getParam("mqttPort")->value()).toInt();
jsonWriteInt(configSetup, "mqttPort", port);
}
if (request->hasArg("mqttPrefix")) {
jsonWriteStr(configSetup, "mqttPrefix", request->getParam("mqttPrefix")->value());
}
if (request->hasArg("mqttUser")) {
jsonWriteStr(configSetup, "mqttUser", request->getParam("mqttUser")->value());
}
if (request->hasArg("mqttPass")) {
jsonWriteStr(configSetup, "mqttPass", request->getParam("mqttPass")->value());
}
saveConfig();
mqtt_connection = true;
request->send(200, "text/text", "ok");
});
server.on("/mqttCheck", HTTP_GET, [](AsyncWebServerRequest * request) {
String tmp = "{}";
jsonWriteStr(tmp, "title", "<button class=\"close\" onclick=\"toggle('my-block')\">×</button>" + stateMQTT());
jsonWriteStr(tmp, "class", "pop-up");
request->send(200, "text/text", tmp);
});
}
void do_mqtt_connection() {
if (mqtt_connection) {
mqtt_connection = false;
@@ -75,21 +38,21 @@ void handleMQTT() {
}
//===============================================ПОДКЛЮЧЕНИЕ========================================================
boolean MQTT_Connecting() {
String mqtt_server = jsonReadStr(configSetup, "mqttServer");
String mqtt_server = jsonReadStr(configSetupJson, "mqttServer");
if ((mqtt_server != "")) {
Serial.println("[E] Lost MQTT connection, start reconnecting");
led_blink("fast");
client_mqtt.setServer(mqtt_server.c_str(), jsonReadInt(configSetup, "mqttPort"));
client_mqtt.setServer(mqtt_server.c_str(), jsonReadInt(configSetupJson, "mqttPort"));
if (WiFi.status() == WL_CONNECTED) {
if (!client_mqtt.connected()) {
Serial.println("[V] Connecting to MQTT server commenced");
if (client_mqtt.connect(chipID.c_str(), jsonReadStr(configSetup, "mqttUser").c_str(), jsonReadStr(configSetup, "mqttPass").c_str())) {
if (client_mqtt.connect(chipID.c_str(), jsonReadStr(configSetupJson, "mqttUser").c_str(), jsonReadStr(configSetupJson, "mqttPass").c_str())) {
Serial.println("[VV] MQTT connected");
led_blink("off");
client_mqtt.setCallback(callback);
client_mqtt.subscribe(jsonReadStr(configSetup, "mqttPrefix").c_str()); // Для приема получения HELLOW и подтверждения связи
client_mqtt.subscribe((jsonReadStr(configSetup, "mqttPrefix") + "/" + chipID + "/+/control").c_str()); // Подписываемся на топики control
client_mqtt.subscribe((jsonReadStr(configSetup, "mqttPrefix") + "/" + chipID + "/order").c_str()); // Подписываемся на топики order
client_mqtt.subscribe(jsonReadStr(configSetupJson, "mqttPrefix").c_str()); // Для приема получения HELLOW и подтверждения связи
client_mqtt.subscribe((jsonReadStr(configSetupJson, "mqttPrefix") + "/" + chipID + "/+/control").c_str()); // Подписываемся на топики control
client_mqtt.subscribe((jsonReadStr(configSetupJson, "mqttPrefix") + "/" + chipID + "/order").c_str()); // Подписываемся на топики order
Serial.println("[V] Callback set, subscribe done");
return true;
} else {
@@ -157,34 +120,34 @@ void outcoming_date() {
//======================================CONFIG==================================================
boolean sendMQTT(String end_of_topik, String data) {
String topik = jsonReadStr(configSetup, "mqttPrefix") + "/" + chipID + "/" + end_of_topik;
String topik = jsonReadStr(configSetupJson, "mqttPrefix") + "/" + chipID + "/" + end_of_topik;
boolean send_status = client_mqtt.beginPublish(topik.c_str(), data.length(), false);
client_mqtt.print(data);
client_mqtt.endPublish();
return send_status;
}
boolean sendCHART(String topik, String data) {
topik = jsonReadStr(configSetup, "mqttPrefix") + "/" + chipID + "/" + topik + "/" + "status";
topik = jsonReadStr(configSetupJson, "mqttPrefix") + "/" + chipID + "/" + topik + "/" + "status";
boolean send_status = client_mqtt.beginPublish(topik.c_str(), data.length(), false);
client_mqtt.print(data);
client_mqtt.endPublish();
return send_status;
}
boolean sendCHART_test(String topik, String data) {
topik = jsonReadStr(configSetup, "mqttPrefix") + "/" + chipID + "/" + topik + "/" + "status";
topik = jsonReadStr(configSetupJson, "mqttPrefix") + "/" + chipID + "/" + topik + "/" + "status";
boolean send_status = client_mqtt.publish (topik.c_str(), data.c_str(), false);
return send_status;
}
//======================================STATUS==================================================
void sendSTATUS(String topik, String state) {
topik = jsonReadStr(configSetup, "mqttPrefix") + "/" + chipID + "/" + topik + "/" + "status";
topik = jsonReadStr(configSetupJson, "mqttPrefix") + "/" + chipID + "/" + topik + "/" + "status";
String json_ = "{}";
jsonWriteStr(json_, "status", state);
int send_status = client_mqtt.publish (topik.c_str(), json_.c_str(), false);
}
//======================================CONTROL==================================================
void sendCONTROL(String id, String topik, String state) {
String all_line = jsonReadStr(configSetup, "mqttPrefix") + "/" + id + "/" + topik + "/control";
String all_line = jsonReadStr(configSetupJson, "mqttPrefix") + "/" + id + "/" + topik + "/control";
int send_status = client_mqtt.publish (all_line.c_str(), state.c_str(), false);
}
@@ -231,7 +194,7 @@ void sendAllWigets() {
//=====================================================ОТПРАВЛЯЕМ ДАННЫЕ В ВИДЖЕТЫ ПРИ ОБНОВЛЕНИИ СТРАНИЦЫ========================================================
void sendAllData() { //берет строку json и ключи превращает в топики а значения колючей в них посылает
String current_config = configJson; //{"name":"MODULES","lang":"","ip":"192.168.43.60","DS":"34.00","rel1":"1","rel2":"1"}
String current_config = configLiveJson; //{"name":"MODULES","lang":"","ip":"192.168.43.60","DS":"34.00","rel1":"1","rel2":"1"}
getMemoryLoad("[i] after send all date");
current_config.replace("{", "");
current_config.replace("}", ""); //"name":"MODULES","lang":"","ip":"192.168.43.60","DS":"34.00","rel1":"1","rel2":"1"
@@ -284,7 +247,7 @@ String stateMQTT() {
/*void scenario_devices_topiks_subscribe() {
//SCENARIO ANALOG > 5 800324-1458415 rel1 0
if (jsonReadStr(configSetup, "scenario") == "1") {
if (jsonReadStr(configSetupJson, "scen") == "1") {
//String all_text = readFile("firmware.s.txt", 1024) + "\r\n";
String all_text = scenario + "\r\n";
all_text.replace("\r\n", "\n");
@@ -293,7 +256,7 @@ String stateMQTT() {
String line_ = selectToMarker (all_text, "\n");
String id = selectFromMarkerToMarker(line_, " ", 4);
if (id != "not found") {
client_mqtt.subscribe((jsonReadStr(configSetup, "mqttPrefix") + "/" + id + "/+/status").c_str(), 0);
client_mqtt.subscribe((jsonReadStr(configSetupJson, "mqttPrefix") + "/" + id + "/+/status").c_str(), 0);
Serial.println("subscribed to device, id: " + id);
}
all_text = deleteBeforeDelimiter(all_text, "\n");
@@ -303,7 +266,7 @@ String stateMQTT() {
*/
/*void scenario_devices_test_msg_send() {
if (jsonReadStr(configSetup, "scenario") == "1") {
if (jsonReadStr(configSetupJson, "scen") == "1") {
String all_text = scenario + "\r\n";
all_text.replace("\r\n", "\n");
@@ -313,7 +276,7 @@ String stateMQTT() {
String id = selectFromMarkerToMarker(line_, " ", 4);
if (id != "not found") {
//Serial.println();
Serial.println(client_mqtt.publish ((jsonReadStr(configSetup, "mqttPrefix") + "/" + id).c_str(), "CHECK", true));
Serial.println(client_mqtt.publish ((jsonReadStr(configSetupJson, "mqttPrefix") + "/" + id).c_str(), "CHECK", true));
}
all_text = deleteBeforeDelimiter(all_text, "\n");

View File

@@ -1,17 +1,4 @@
#ifdef push_enable
void Push_init() {
server.on("/pushingboxDate", HTTP_GET, [](AsyncWebServerRequest * request) {
if (request->hasArg("pushingbox_id")) {
jsonWriteStr(configSetup, "pushingbox_id", request->getParam("pushingbox_id")->value());
}
saveConfig();
request->send(200, "text/text", "ok"); // отправляем ответ о выполнении
});
}
void pushControl() {
String title = sCmd.next();
@@ -22,7 +9,7 @@ void pushControl() {
static String body_old;
const char* logServer = "api.pushingbox.com";
String deviceId = jsonReadStr(configSetup, "pushingbox_id");
String deviceId = jsonReadStr(configSetupJson, "pushingboxid");
Serial.println("- starting client");

29
set.h
View File

@@ -1,20 +1,20 @@
/*******************************************************************
**********************FIRMWARE SETTINGS****************************
******************************************************************/
String firmware_version = "2.3.3";
boolean mb_4_of_memory = true;
String firmware_version = "2.3.4";
boolean mb_4_of_memory = false;
//#define OTA_enable
//#define MDNS_enable
//#define WS_enable
//#define layout_in_ram
#define UDP_enable
/*==========================SENSORS===============================*/
//#define level_enable
//#define analog_enable
//#define dallas_enable
//#define dht_enable //подъедает оперативку сука
//#define bmp_enable
//#define bme_enable
#define level_enable
#define analog_enable
#define dallas_enable
#define dht_enable //подъедает оперативку сука
#define bmp_enable
#define bme_enable
/*=========================LOGGING================================*/
#define logging_enable
/*==========================GEARS=================================*/
@@ -96,9 +96,12 @@ AsyncEventSource events("/events");
#include <time.h>
#include <TickerScheduler.h>
enum {ROUTER_SEARCHING, WIFI_MQTT_CONNECTION_CHECK, SENSORS, STEPPER1, STEPPER2, LOG1, LOG2, LOG3, LOG4, LOG5, TIMER_COUNTDOWN, TIME, TIME_SYNC, STATISTICS, UDP, UDP_DB, TEST };
enum {ROUTER_SEARCHING, WIFI_MQTT_CONNECTION_CHECK, SENSORS, STEPPER1, STEPPER2, LOG1, LOG2, LOG3, LOG4, LOG5, TIMER_COUNTDOWN, TIME, TIME_SYNC, STATISTICS, UPTIME, UDP, UDP_DB, TEST };
TickerScheduler ts(TEST + 1);
#include <UpTime.h>
uptime_interval myUpTime(10);
#include <PubSubClient.h>
WiFiClient espClient;
PubSubClient client_mqtt(espClient);
@@ -123,7 +126,7 @@ OneWire *oneWire;
DallasTemperature sensors;
#endif
#ifdef dht_enable
#ifdef dht_enable
#include <DHTesp.h>
DHTesp dht;
#endif
@@ -153,9 +156,9 @@ Adafruit_Sensor *bme_humidity = bme.getHumiditySensor();
boolean just_load = true;
const char* hostName = "IoT Manager";
//JSON
String configSetup = "{}";
String configJson = "{}";
String optionJson = "{}";
String configSetupJson = "{}"; //все настройки
String configLiveJson = "{}"; //все данные с датчиков (связан с mqtt)
String configOptionJson = "{}"; //для трансфера
//MQTT
String chipID = "";
String prex;

Binary file not shown.

66
udp.ino
View File

@@ -1,40 +1,6 @@
#ifdef UDP_enable
void UDP_init() {
server.on("/udp", HTTP_GET, [](AsyncWebServerRequest * request) {
String value;
if (request->hasArg("arg")) {
value = request->getParam("arg")->value();
}
if (value == "0") {
jsonWriteStr(configSetup, "udponoff", value);
request->send(200, "text/text", "ok");
}
if (value == "1") {
jsonWriteStr(configSetup, "udponoff", value);
request->send(200, "text/text", "ok");
}
if (value == "2") {
mqtt_send_settings_to_udp = true;
request->send(200, "text/text", "ok");
}
if (value == "3") {
SPIFFS.remove("/dev.csv");
addFile("dev.csv", "device id;device name;ip address");
request->redirect("/?dev");
}
if (value == "4") {
request->redirect("/?dev");
}
});
server.on("/name", HTTP_GET, [](AsyncWebServerRequest * request) {
if (request->hasArg("arg")) {
jsonWriteStr(configSetup, "name", request->getParam("arg")->value());
jsonWriteStr(configJson, "name", request->getParam("arg")->value());
saveConfig();
}
request->send(200, "text/text", "OK");
});
SPIFFS.remove("/dev.csv");
addFile("dev.csv", "device id;device name;ip address");
@@ -48,10 +14,10 @@ void UDP_init() {
udp_period = random(50000, 60000);
ts.add(UDP, udp_period, [&](void*) {
if (jsonReadStr(configSetup, "udponoff") == "1") {
if (jsonReadStr(configSetupJson, "udponoff") == "1") {
if (WiFi.status() == WL_CONNECTED) {
if (!udp_busy) {
String line_to_send = "iotm;" + chipID + ";" + jsonReadStr(configSetup, "name");
String line_to_send = "iotm;" + chipID + ";" + jsonReadStr(configSetupJson, "name");
#ifdef ESP8266
Udp.beginPacketMulticast(udp_multicastIP, udp_port, WiFi.localIP());
Udp.write(line_to_send.c_str());
@@ -69,7 +35,7 @@ void UDP_init() {
void handleUdp() {
#ifdef ESP8266
if (jsonReadStr(configSetup, "udponoff") == "1") {
if (jsonReadStr(configSetupJson, "udponoff") == "1") {
if (WiFi.status() == WL_CONNECTED) {
int packetSize = Udp.parsePacket();
if (packetSize) {
@@ -100,7 +66,7 @@ void handleUdp_esp32() {
udp.onPacket([](AsyncUDPPacket packet) {
received_udp_line = (char*)packet.data();
received_ip = packet.remoteIP().toString();
if (jsonReadStr(configSetup, "udponoff") == "1") {
if (jsonReadStr(configSetupJson, "udponoff") == "1") {
if (received_udp_line.indexOf("iotm;") >= 0) {
udp_data_parse = true;
@@ -122,11 +88,11 @@ void do_udp_data_parse() {
Serial.print(" ");
Serial.println(received_udp_line);
if (received_udp_line.indexOf("mqttServer") >= 0) {
jsonWriteStr(configSetup, "mqttServer", jsonReadStr(received_udp_line, "mqttServer"));
jsonWriteInt(configSetup, "mqttPort", jsonReadInt(received_udp_line, "mqttPort"));
jsonWriteStr(configSetup, "mqttPrefix", jsonReadStr(received_udp_line, "mqttPrefix"));
jsonWriteStr(configSetup, "mqttUser", jsonReadStr(received_udp_line, "mqttUser"));
jsonWriteStr(configSetup, "mqttPass", jsonReadStr(received_udp_line, "mqttPass"));
jsonWriteStr(configSetupJson, "mqttServer", jsonReadStr(received_udp_line, "mqttServer"));
jsonWriteInt(configSetupJson, "mqttPort", jsonReadInt(received_udp_line, "mqttPort"));
jsonWriteStr(configSetupJson, "mqttPrefix", jsonReadStr(received_udp_line, "mqttPrefix"));
jsonWriteStr(configSetupJson, "mqttUser", jsonReadStr(received_udp_line, "mqttUser"));
jsonWriteStr(configSetupJson, "mqttPass", jsonReadStr(received_udp_line, "mqttPass"));
saveConfig();
Serial.println("[V] new mqtt setting received from udp and saved");
mqtt_connection = true;
@@ -145,15 +111,15 @@ void add_dev_in_list(String fileName, String id, String dev_name, String ip) {
}
void send_mqtt_to_udp() {
if (jsonReadStr(configSetup, "udponoff") == "1") {
if (jsonReadStr(configSetupJson, "udponoff") == "1") {
if (WiFi.status() == WL_CONNECTED) {
udp_busy = true;
String mqtt_data = "{}";
jsonWriteStr(mqtt_data, "mqttServer", jsonReadStr(configSetup, "mqttServer"));
jsonWriteInt(mqtt_data, "mqttPort", jsonReadInt(configSetup, "mqttPort"));
jsonWriteStr(mqtt_data, "mqttPrefix", jsonReadStr(configSetup, "mqttPrefix"));
jsonWriteStr(mqtt_data, "mqttUser", jsonReadStr(configSetup, "mqttUser"));
jsonWriteStr(mqtt_data, "mqttPass", jsonReadStr(configSetup, "mqttPass"));
jsonWriteStr(mqtt_data, "mqttServer", jsonReadStr(configSetupJson, "mqttServer"));
jsonWriteInt(mqtt_data, "mqttPort", jsonReadInt(configSetupJson, "mqttPort"));
jsonWriteStr(mqtt_data, "mqttPrefix", jsonReadStr(configSetupJson, "mqttPrefix"));
jsonWriteStr(mqtt_data, "mqttUser", jsonReadStr(configSetupJson, "mqttUser"));
jsonWriteStr(mqtt_data, "mqttPass", jsonReadStr(configSetupJson, "mqttPass"));
Serial.println(mqtt_data);
#ifdef ESP8266
Udp.beginPacketMulticast(udp_multicastIP, udp_port, WiFi.localIP());