first commit
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1e7950b671
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Subproject commit 1a0e347eb0534a2b1a1970110cdba4d3126db764
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This directory is intended for project specific (private) libraries.
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PlatformIO will compile them to static libraries and link into executable file.
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The source code of each library should be placed in a an own separate directory
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("lib/your_library_name/[here are source files]").
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For example, see a structure of the following two libraries `Foo` and `Bar`:
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|--lib
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| |
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| |--Bar
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| | |--docs
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| | |--examples
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| | |--src
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| | |- Bar.c
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| | |- Bar.h
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| | |- library.json (optional, custom build options, etc) https://docs.platformio.org/page/librarymanager/config.html
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| |
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| |--Foo
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| | |- Foo.c
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| | |- Foo.h
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| |
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| |- README --> THIS FILE
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|- platformio.ini
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|--src
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|- main.c
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and a contents of `src/main.c`:
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```
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#include <Foo.h>
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#include <Bar.h>
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int main (void)
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{
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...
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}
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```
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PlatformIO Library Dependency Finder will find automatically dependent
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libraries scanning project source files.
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More information about PlatformIO Library Dependency Finder
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- https://docs.platformio.org/page/librarymanager/ldf.html
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@ -0,0 +1,20 @@
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; PlatformIO Project Configuration File
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;
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; Build options: build flags, source filter
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; Upload options: custom upload port, speed and extra flags
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; Library options: dependencies, extra library storages
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; Advanced options: extra scripting
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;
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; Please visit documentation for the other options and examples
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; https://docs.platformio.org/page/projectconf.html
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[env:seeed_xiao_esp32c3]
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platform = espressif32
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board = seeed_xiao_esp32c3
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framework = arduino
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monitor_speed = 115200
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monitor_port = /dev/ttyACM0
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upload_port = /dev/ttyACM0
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lib_deps =
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paulstoffregen/OneWire@^2.3.7
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milesburton/DallasTemperature@^3.11.0
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#include <Arduino.h>
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#define uS_TO_S_FACTOR 1000000 /* Conversion factor for micro seconds to seconds */
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#define TIME_TO_SLEEP 5 /* Time ESP32 will go to sleep (in seconds) */
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void print_wakeup_reason() {
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esp_sleep_wakeup_cause_t wakeup_reason;
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wakeup_reason = esp_sleep_get_wakeup_cause();
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switch(wakeup_reason)
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{
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case ESP_SLEEP_WAKEUP_EXT0 : Serial.println("Wakeup caused by external signal using RTC_IO"); break;
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case ESP_SLEEP_WAKEUP_EXT1 : Serial.println("Wakeup caused by external signal using RTC_CNTL"); break;
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case ESP_SLEEP_WAKEUP_TIMER : Serial.println("Wakeup caused by timer"); break;
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case ESP_SLEEP_WAKEUP_TOUCHPAD : Serial.println("Wakeup caused by touchpad"); break;
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case ESP_SLEEP_WAKEUP_ULP : Serial.println("Wakeup caused by ULP program"); break;
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case ESP_SLEEP_WAKEUP_GPIO : Serial.println("Wakeup caused by GPIO0"); break;
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default : Serial.printf("Wakeup was not caused by deep sleep: %d\n",wakeup_reason); break;
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}
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}
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void deepsleep_fix_check() {
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esp_sleep_wakeup_cause_t wakeup_reason;
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wakeup_reason = esp_sleep_get_wakeup_cause();
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switch(wakeup_reason)
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{
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case ESP_SLEEP_WAKEUP_GPIO :
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esp_cpu_reset(0);
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esp_cpu_reset(1);
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break;
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default : Serial.printf("Wakeup was not caused by deep sleep: %d\n",wakeup_reason); break;
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}
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}
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#include <OneWire.h>
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#include <DallasTemperature.h>
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OneWire oneWire(D0);
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DallasTemperature sensors(&oneWire);
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uint8_t sensorCount = 0;
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DeviceAddress devices[20];
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int32_t rawTemperatures[20];
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#include <BLEDevice.h>
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#include <BLEServer.h>
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#include <BLEUtils.h>
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#include <BLE2902.h>
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#include <BLECast.h>
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BLECast bleCast("cat");
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void tempSetup() {
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sensors.begin();
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sensors.setResolution(12);
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}
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void tempLoop() {
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uint8_t scanOffset = 0;
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do {
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byte i;
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if (!oneWire.search(devices[scanOffset])) {
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oneWire.reset_search();
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delay(250);
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break;
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}
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Serial.print("ScanOffset="); Serial.print(scanOffset);
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Serial.print(" ROM =");
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for (i = 0; i < 8; i++) Serial.print(devices[scanOffset][i], HEX);
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Serial.println();
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scanOffset++;
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} while (true);
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delay(250);
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Serial.print("Requesting temperatures...");
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sensors.requestTemperatures();
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Serial.println("DONE");
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//
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for (uint8_t addressIndex = 0; addressIndex < scanOffset; addressIndex++) {
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sensors.setResolution(devices[addressIndex], 12);
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Serial.print("ScanOffset="); Serial.print(addressIndex);
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Serial.print("=");
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for (uint8_t i = 0; i < 8; i++) Serial.print(devices[addressIndex][i], HEX);
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Serial.print("=");
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int32_t temp = sensors.getTemp(devices[addressIndex]);
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Serial.print(temp);
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Serial.print("=");
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Serial.println(sensors.rawToCelsius(temp));
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rawTemperatures[addressIndex] = temp;
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}
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sensorCount = scanOffset;
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}
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uint16_t batteryMillivolts = 0;
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uint8_t batteryLevel = 0;
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void battSetup(){
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pinMode(A1, INPUT);
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}
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void battLoop() {
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uint32_t Vbatt = 0;
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for (int i = 0; i < 16; i++) Vbatt = Vbatt + analogReadMilliVolts(A1); // denoise ADC
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Serial.println(Vbatt / 16, 3);
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float Vbattf = 1.455 * Vbatt / 16; /// 1000.0;
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Serial.println(Vbattf, 3);
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batteryMillivolts = (uint16_t)Vbattf;
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delay(1000);
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}
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void setup() {
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Serial.begin(115200);
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delay(1000);
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deepsleep_fix_check();
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esp_sleep_enable_timer_wakeup(TIME_TO_SLEEP * uS_TO_S_FACTOR);
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tempSetup();
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battSetup();
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bleCast.begin();
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}
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struct AdvDataTemps {
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uint16_t vBatt;
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uint16_t addr1;
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int16_t temp1;
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uint16_t addr2;
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int16_t temp2;
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uint16_t addr3;
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int16_t temp3;
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uint16_t addr4;
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int16_t temp4;
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uint16_t addr5;
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int16_t temp5;
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} advdat;
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uint16_t getSensorAddrShort(uint8_t index) {
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uint16_t res = 0x0000;
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res = devices[index][6] << 8;
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res = res | devices[index][7];
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return res;
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}
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uint8_t sensorOffset = 0;
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uint8_t loopCounter = 0;
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void loop() {
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if (loopCounter++ >= 3){
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Serial.println("going to sleep now");
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delay(1000);
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bleCast.end();
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oneWire.reset();
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esp_deep_sleep_start();
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return;
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}
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tempLoop();
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battLoop();
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advdat.vBatt = batteryMillivolts;
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advdat.addr1 = getSensorAddrShort(sensorOffset);
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advdat.temp1 = (int16_t)rawTemperatures[sensorOffset];
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sensorOffset++;
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if (sensorOffset >= sensorCount) sensorOffset = 0;
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advdat.addr2 = getSensorAddrShort(sensorOffset);
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advdat.temp2 = (int16_t)rawTemperatures[sensorOffset];
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sensorOffset++;
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if (sensorOffset >= sensorCount) sensorOffset = 0;
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advdat.addr3 = getSensorAddrShort(sensorOffset);
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advdat.temp3 = (int16_t)rawTemperatures[sensorOffset];
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sensorOffset++;
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if (sensorOffset >= sensorCount) sensorOffset = 0;
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advdat.addr4 = getSensorAddrShort(sensorOffset);
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advdat.temp4 = (int16_t)rawTemperatures[sensorOffset];
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sensorOffset++;
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if (sensorOffset >= sensorCount) sensorOffset = 0;
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advdat.addr5 = getSensorAddrShort(sensorOffset);
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advdat.temp5 = (int16_t)rawTemperatures[sensorOffset];
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sensorOffset++;
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if (sensorOffset >= sensorCount) sensorOffset = 0;
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Serial.print("ManufData=");
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for (uint8_t i = 0; i < sizeof(advdat); i++) Serial.print(((char*)&advdat)[i], HEX);
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Serial.println();
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bleCast.setManufacturerData((char*)&advdat, sizeof(advdat));
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delay (1000);
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}
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@ -0,0 +1,11 @@
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This directory is intended for PlatformIO Test Runner and project tests.
|
||||||
|
|
||||||
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Unit Testing is a software testing method by which individual units of
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source code, sets of one or more MCU program modules together with associated
|
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control data, usage procedures, and operating procedures, are tested to
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determine whether they are fit for use. Unit testing finds problems early
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in the development cycle.
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|
||||||
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More information about PlatformIO Unit Testing:
|
||||||
|
- https://docs.platformio.org/en/latest/advanced/unit-testing/index.html
|
Loading…
Reference in New Issue