mirror of https://github.com/meshcore-dev/MeshCore
8 changed files with 586 additions and 0 deletions
@ -0,0 +1,61 @@ |
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{ |
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"build": { |
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"arduino": { |
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"ldscript": "nrf52840_s140_v6.ld" |
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}, |
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"core": "nRF5", |
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"cpu": "cortex-m4", |
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"extra_flags": "-DARDUINO_NRF52840_FEATHER -DNRF52840_XXAA", |
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"f_cpu": "64000000L", |
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"hwids": [ |
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["0x239A","0x8029"], |
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["0x239A","0x0029"], |
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["0x239A","0x002A"], |
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["0x239A","0x802A"] |
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], |
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"usb_product": "HT-n5262", |
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"mcu": "nrf52840", |
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"variant": "heltec_mesh_solar", |
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"bsp": { |
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"name": "adafruit" |
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}, |
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"softdevice": { |
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"sd_flags": "-DS140", |
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"sd_name": "s140", |
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"sd_version": "6.1.1", |
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"sd_fwid": "0x00B6" |
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}, |
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"bootloader": { |
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"settings_addr": "0xFF000" |
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} |
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}, |
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"connectivity": [ |
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"bluetooth" |
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], |
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"debug": { |
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"jlink_device": "nRF52840_xxAA", |
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"svd_path": "nrf52840.svd", |
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"openocd_target": "nrf52.cfg" |
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}, |
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"frameworks": [ |
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"arduino" |
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], |
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"name": "Heltec Mesh Solar Board", |
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"upload": { |
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"maximum_ram_size": 248832, |
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"maximum_size": 815104, |
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"speed": 115200, |
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"protocol": "nrfutil", |
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"protocols": [ |
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"jlink", |
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"nrfjprog", |
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"nrfutil", |
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"stlink" |
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], |
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"use_1200bps_touch": true, |
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"require_upload_port": true, |
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"wait_for_upload_port": true |
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}, |
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"url": "https://heltec.org/", |
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"vendor": "Heltec" |
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} |
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@ -0,0 +1,77 @@ |
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#include <Arduino.h> |
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#include "MeshSolarBoard.h" |
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|
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#include <bluefruit.h> |
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#include <Wire.h> |
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static BLEDfu bledfu; |
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|
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static void connect_callback(uint16_t conn_handle) |
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{ |
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(void)conn_handle; |
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MESH_DEBUG_PRINTLN("BLE client connected"); |
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} |
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|
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static void disconnect_callback(uint16_t conn_handle, uint8_t reason) |
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{ |
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(void)conn_handle; |
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(void)reason; |
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MESH_DEBUG_PRINTLN("BLE client disconnected"); |
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} |
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void MeshSolarBoard::begin() { |
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// for future use, sub-classes SHOULD call this from their begin()
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startup_reason = BD_STARTUP_NORMAL; |
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meshSolarStart(); |
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#if defined(PIN_BOARD_SDA) && defined(PIN_BOARD_SCL) |
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Wire.setPins(PIN_BOARD_SDA, PIN_BOARD_SCL); |
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#endif |
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Wire.begin(); |
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} |
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bool MeshSolarBoard::startOTAUpdate(const char* id, char reply[]) { |
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// Config the peripheral connection with maximum bandwidth
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// more SRAM required by SoftDevice
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// Note: All config***() function must be called before begin()
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Bluefruit.configPrphBandwidth(BANDWIDTH_MAX); |
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Bluefruit.configPrphConn(92, BLE_GAP_EVENT_LENGTH_MIN, 16, 16); |
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|
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Bluefruit.begin(1, 0); |
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// Set max power. Accepted values are: -40, -30, -20, -16, -12, -8, -4, 0, 4
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Bluefruit.setTxPower(4); |
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// Set the BLE device name
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Bluefruit.setName("MESH_SOLAR_OTA"); |
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Bluefruit.Periph.setConnectCallback(connect_callback); |
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Bluefruit.Periph.setDisconnectCallback(disconnect_callback); |
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// To be consistent OTA DFU should be added first if it exists
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bledfu.begin(); |
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// Set up and start advertising
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// Advertising packet
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Bluefruit.Advertising.addFlags(BLE_GAP_ADV_FLAGS_LE_ONLY_GENERAL_DISC_MODE); |
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Bluefruit.Advertising.addTxPower(); |
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Bluefruit.Advertising.addName(); |
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|
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/* Start Advertising
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- Enable auto advertising if disconnected |
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- Interval: fast mode = 20 ms, slow mode = 152.5 ms |
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- Timeout for fast mode is 30 seconds |
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- Start(timeout) with timeout = 0 will advertise forever (until connected) |
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For recommended advertising interval |
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https://developer.apple.com/library/content/qa/qa1931/_index.html
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*/ |
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Bluefruit.Advertising.restartOnDisconnect(true); |
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Bluefruit.Advertising.setInterval(32, 244); // in unit of 0.625 ms
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Bluefruit.Advertising.setFastTimeout(30); // number of seconds in fast mode
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Bluefruit.Advertising.start(0); // 0 = Don't stop advertising after n seconds
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strcpy(reply, "OK - started"); |
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return true; |
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} |
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@ -0,0 +1,44 @@ |
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#pragma once |
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#include <MeshCore.h> |
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#include <Arduino.h> |
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#ifdef HELTEC_MESH_SOLAR |
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#include "meshSolarApp.h" |
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#endif |
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|
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// LoRa radio module pins for Heltec T114
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#define P_LORA_DIO_1 20 |
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#define P_LORA_NSS 24 |
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#define P_LORA_RESET 25 |
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#define P_LORA_BUSY 17 |
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#define P_LORA_SCLK 19 |
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#define P_LORA_MISO 23 |
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#define P_LORA_MOSI 22 |
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|
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#define SX126X_DIO2_AS_RF_SWITCH true |
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#define SX126X_DIO3_TCXO_VOLTAGE 1.8 |
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class MeshSolarBoard : public mesh::MainBoard { |
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protected: |
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uint8_t startup_reason; |
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public: |
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void begin(); |
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uint8_t getStartupReason() const override { return startup_reason; } |
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uint16_t getBattMilliVolts() override { |
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return meshSolarGetBattVoltage(); |
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} |
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const char* getManufacturerName() const override { |
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return "Heltec Mesh Solar"; |
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} |
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void reboot() override { |
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NVIC_SystemReset(); |
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} |
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bool startOTAUpdate(const char* id, char reply[]) override; |
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}; |
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@ -0,0 +1,92 @@ |
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[Heltec_mesh_solar] |
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extends = nrf52_base |
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board = heltec_mesh_solar |
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platform_packages = framework-arduinoadafruitnrf52 |
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board_build.ldscript = boards/nrf52840_s140_v6.ld |
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build_flags = ${nrf52_base.build_flags} |
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-I src/helpers/nrf52 |
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-I lib/nrf52/s140_nrf52_6.1.1_API/include |
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-I lib/nrf52/s140_nrf52_6.1.1_API/include/nrf52 |
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-I variants/heltec_mesh_solar |
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-D HELTEC_MESH_SOLAR |
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-D RADIO_CLASS=CustomSX1262 |
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-D WRAPPER_CLASS=CustomSX1262Wrapper |
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-D LORA_TX_POWER=22 |
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-D SX126X_CURRENT_LIMIT=140 |
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-D SX126X_RX_BOOSTED_GAIN=1 |
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build_src_filter = ${nrf52_base.build_src_filter} |
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+<helpers/*.cpp> |
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+<helpers/nrf52/MeshSolarBoard.cpp> |
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+<../variants/heltec_mesh_solar> |
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lib_deps = |
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${nrf52_base.lib_deps} |
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rweather/Crypto @ ^0.4.0 |
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stevemarple/MicroNMEA @ ^2.0.6 |
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adafruit/Adafruit NeoPixel@^1.10.0 |
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https://github.com/NMIoT/meshsolar/archive/dfc5330dad443982e6cdd37a61d33fc7252f468b.zip |
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debug_tool = jlink |
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upload_protocol = nrfutil |
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|
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[env:Heltec_mesh_solar_repeater] |
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extends = Heltec_mesh_solar |
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build_src_filter = ${Heltec_mesh_solar.build_src_filter} |
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+<../examples/simple_repeater> |
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build_flags = |
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${Heltec_mesh_solar.build_flags} |
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-D ADVERT_NAME='"Heltec_Mesh_Solar Repeater"' |
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-D ADVERT_LAT=0.0 |
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-D ADVERT_LON=0.0 |
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-D ADMIN_PASSWORD='"password"' |
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-D MAX_NEIGHBOURS=8 |
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; -D MESH_PACKET_LOGGING=1 |
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; -D MESH_DEBUG=1 |
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|
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[env:Heltec_mesh_solar_room_server] |
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extends = Heltec_mesh_solar |
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build_src_filter = ${Heltec_mesh_solar.build_src_filter} |
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+<../examples/simple_room_server> |
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build_flags = |
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${Heltec_mesh_solar.build_flags} |
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-D ADVERT_NAME='"Heltec_Mesh_Solar Room"' |
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-D ADVERT_LAT=0.0 |
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-D ADVERT_LON=0.0 |
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-D ADMIN_PASSWORD='"password"' |
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-D ROOM_PASSWORD='"hello"' |
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; -D MESH_PACKET_LOGGING=1 |
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; -D MESH_DEBUG=1 |
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[env:Heltec_mesh_solar_companion_radio_ble] |
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extends = Heltec_mesh_solar |
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build_flags = |
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${Heltec_mesh_solar.build_flags} |
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-D MAX_CONTACTS=100 |
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-D MAX_GROUP_CHANNELS=8 |
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-D BLE_PIN_CODE=123456 |
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; -D BLE_DEBUG_LOGGING=1 |
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-D OFFLINE_QUEUE_SIZE=256 |
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; -D MESH_PACKET_LOGGING=1 |
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; -D MESH_DEBUG=1 |
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build_src_filter = ${Heltec_mesh_solar.build_src_filter} |
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+<helpers/nrf52/SerialBLEInterface.cpp> |
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+<../examples/companion_radio> |
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lib_deps = |
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${Heltec_mesh_solar.lib_deps} |
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densaugeo/base64 @ ~1.4.0 |
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[env:Heltec_mesh_solar_companion_radio_usb] |
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extends = Heltec_mesh_solar |
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build_flags = |
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${Heltec_mesh_solar.build_flags} |
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-D MAX_CONTACTS=100 |
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-D MAX_GROUP_CHANNELS=8 |
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; -D BLE_PIN_CODE=123456 |
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; -D BLE_DEBUG_LOGGING=1 |
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; -D MESH_PACKET_LOGGING=1 |
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; -D MESH_DEBUG=1 |
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build_src_filter = ${Heltec_mesh_solar.build_src_filter} |
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+<helpers/nrf52/*.cpp> |
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+<../examples/companion_radio> |
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lib_deps = |
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${Heltec_mesh_solar.lib_deps} |
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densaugeo/base64 @ ~1.4.0 |
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@ -0,0 +1,123 @@ |
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#include <Arduino.h> |
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#include "target.h" |
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#include <helpers/ArduinoHelpers.h> |
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#include <helpers/sensors/MicroNMEALocationProvider.h> |
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MeshSolarBoard board; |
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RADIO_CLASS radio = new Module(P_LORA_NSS, P_LORA_DIO_1, P_LORA_RESET, P_LORA_BUSY, SPI); |
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WRAPPER_CLASS radio_driver(radio, board); |
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VolatileRTCClock fallback_clock; |
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AutoDiscoverRTCClock rtc_clock(fallback_clock); |
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MicroNMEALocationProvider nmea = MicroNMEALocationProvider(Serial1); |
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SolarSensorManager sensors = SolarSensorManager(nmea); |
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#ifdef DISPLAY_CLASS |
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DISPLAY_CLASS display; |
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#endif |
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bool radio_init() { |
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rtc_clock.begin(Wire); |
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return radio.std_init(&SPI); |
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} |
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uint32_t radio_get_rng_seed() { |
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return radio.random(0x7FFFFFFF); |
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} |
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void radio_set_params(float freq, float bw, uint8_t sf, uint8_t cr) { |
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radio.setFrequency(freq); |
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radio.setSpreadingFactor(sf); |
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radio.setBandwidth(bw); |
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radio.setCodingRate(cr); |
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} |
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void radio_set_tx_power(uint8_t dbm) { |
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radio.setOutputPower(dbm); |
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} |
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mesh::LocalIdentity radio_new_identity() { |
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RadioNoiseListener rng(radio); |
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return mesh::LocalIdentity(&rng); // create new random identity
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} |
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void SolarSensorManager::start_gps() { |
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if (!gps_active) { |
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gps_active = true; |
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_location->begin(); |
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} |
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} |
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void SolarSensorManager::stop_gps() { |
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if (gps_active) { |
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gps_active = false; |
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_location->stop(); |
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} |
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} |
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bool SolarSensorManager::begin() { |
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Serial1.begin(9600); |
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// We'll consider GPS detected if we see any data on Serial1
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gps_detected = (Serial1.available() > 0); |
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if (gps_detected) { |
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MESH_DEBUG_PRINTLN("GPS detected"); |
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} else { |
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MESH_DEBUG_PRINTLN("No GPS detected"); |
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} |
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return true; |
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} |
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bool SolarSensorManager::querySensors(uint8_t requester_permissions, CayenneLPP& telemetry) { |
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if (requester_permissions & TELEM_PERM_LOCATION) { // does requester have permission?
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telemetry.addGPS(TELEM_CHANNEL_SELF, node_lat, node_lon, node_altitude); |
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} |
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return true; |
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} |
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void SolarSensorManager::loop() { |
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static long next_gps_update = 0; |
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_location->loop(); |
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if (millis() > next_gps_update) { |
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if (_location->isValid()) { |
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node_lat = ((double)_location->getLatitude())/1000000.; |
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node_lon = ((double)_location->getLongitude())/1000000.; |
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node_altitude = ((double)_location->getAltitude()) / 1000.0; |
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MESH_DEBUG_PRINTLN("lat %f lon %f", node_lat, node_lon); |
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} |
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next_gps_update = millis() + 1000; |
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} |
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} |
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int SolarSensorManager::getNumSettings() const { |
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return gps_detected ? 1 : 0; // only show GPS setting if GPS is detected
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} |
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const char* SolarSensorManager::getSettingName(int i) const { |
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return (gps_detected && i == 0) ? "gps" : NULL; |
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} |
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const char* SolarSensorManager::getSettingValue(int i) const { |
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if (gps_detected && i == 0) { |
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return gps_active ? "1" : "0"; |
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} |
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return NULL; |
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} |
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bool SolarSensorManager::setSettingValue(const char* name, const char* value) { |
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if (gps_detected && strcmp(name, "gps") == 0) { |
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if (strcmp(value, "0") == 0) { |
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stop_gps(); |
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} else { |
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start_gps(); |
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} |
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return true; |
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} |
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return false; // not supported
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} |
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@ -0,0 +1,46 @@ |
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#pragma once |
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#define RADIOLIB_STATIC_ONLY 1 |
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#include <RadioLib.h> |
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#include <helpers/radiolib/RadioLibWrappers.h> |
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#include <helpers/nrf52/MeshSolarBoard.h> |
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#include <helpers/radiolib/CustomSX1262Wrapper.h> |
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#include <helpers/AutoDiscoverRTCClock.h> |
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#include <helpers/SensorManager.h> |
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#include <helpers/sensors/LocationProvider.h> |
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#ifdef DISPLAY_CLASS |
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#include <helpers/ui/ST7789Display.h> |
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#endif |
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class SolarSensorManager : public SensorManager { |
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bool gps_active = false; |
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bool gps_detected = false; |
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LocationProvider* _location; |
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void start_gps(); |
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void stop_gps(); |
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public: |
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SolarSensorManager(LocationProvider &location): _location(&location) { } |
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bool begin() override; |
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bool querySensors(uint8_t requester_permissions, CayenneLPP& telemetry) override; |
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void loop() override; |
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int getNumSettings() const override; |
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const char* getSettingName(int i) const override; |
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const char* getSettingValue(int i) const override; |
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bool setSettingValue(const char* name, const char* value) override; |
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}; |
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extern MeshSolarBoard board; |
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extern WRAPPER_CLASS radio_driver; |
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extern AutoDiscoverRTCClock rtc_clock; |
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extern SolarSensorManager sensors; |
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#ifdef DISPLAY_CLASS |
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extern DISPLAY_CLASS display; |
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#endif |
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bool radio_init(); |
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uint32_t radio_get_rng_seed(); |
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void radio_set_params(float freq, float bw, uint8_t sf, uint8_t cr); |
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void radio_set_tx_power(uint8_t dbm); |
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mesh::LocalIdentity radio_new_identity(); |
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@ -0,0 +1,16 @@ |
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#include "variant.h" |
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#include "wiring_constants.h" |
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#include "wiring_digital.h" |
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const uint32_t g_ADigitalPinMap[] = { |
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0xff, 0xff, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, |
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14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, |
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27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, |
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40, 41, 42, 43, 44, 45, 46, 47 |
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}; |
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void initVariant() |
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{ |
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pinMode(PIN_USER_BTN, INPUT); |
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pinMode(BQ4050_EMERGENCY_SHUTDOWN_PIN, INPUT); |
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} |
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@ -0,0 +1,127 @@ |
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/*
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* variant.h |
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* Copyright (C) 2023 Seeed K.K. |
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* MIT License |
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*/ |
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#pragma once |
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#include "WVariant.h" |
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////////////////////////////////////////////////////////////////////////////////
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// Low frequency clock source
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#define USE_LFXO // 32.768 kHz crystal oscillator
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#define VARIANT_MCK (64000000ul) |
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////////////////////////////////////////////////////////////////////////////////
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// Power
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|
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#define NRF_APM |
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|
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////////////////////////////////////////////////////////////////////////////////
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// Number of pins
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|
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#define PINS_COUNT (48) |
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#define NUM_DIGITAL_PINS (48) |
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#define NUM_ANALOG_INPUTS (1) |
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#define NUM_ANALOG_OUTPUTS (0) |
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////////////////////////////////////////////////////////////////////////////////
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// UART pin definition
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|
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#define PIN_SERIAL1_RX (37) |
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#define PIN_SERIAL1_TX (39) |
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|
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#define PIN_SERIAL2_RX (9) |
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#define PIN_SERIAL2_TX (10) |
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////////////////////////////////////////////////////////////////////////////////
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// I2C pin definition
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#define WIRE_INTERFACES_COUNT (2) |
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|
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#define PIN_WIRE_SDA (6) |
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#define PIN_WIRE_SCL (26) |
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|
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#define PIN_WIRE1_SDA (30) |
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#define PIN_WIRE1_SCL (5) |
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|
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////////////////////////////////////////////////////////////////////////////////
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// SPI pin definition
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|
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#define SPI_INTERFACES_COUNT (2) |
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|
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#define PIN_SPI_MISO (23) |
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#define PIN_SPI_MOSI (22) |
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#define PIN_SPI_SCK (19) |
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#define PIN_SPI_NSS (24) |
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|
|||
////////////////////////////////////////////////////////////////////////////////
|
|||
// Builtin LEDs
|
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|||
#define LED_BUILTIN (12) |
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#define PIN_LED LED_BUILTIN |
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#define LED_RED LED_BUILTIN |
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#define LED_BLUE (-1) // No blue led, prevents Bluefruit flashing the green LED during advertising
|
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#define LED_PIN LED_BUILTIN |
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|
|||
#define LED_STATE_ON LOW |
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|
|||
#define PIN_NEOPIXEL (47) |
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#define NEOPIXEL_NUM (1) |
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|
|||
////////////////////////////////////////////////////////////////////////////////
|
|||
// Builtin buttons
|
|||
|
|||
#define PIN_BUTTON1 (42) |
|||
#define BUTTON_PIN PIN_BUTTON1 |
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|
|||
// #define PIN_BUTTON2 (11)
|
|||
// #define BUTTON_PIN2 PIN_BUTTON2
|
|||
|
|||
#define PIN_USER_BTN BUTTON_PIN |
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|
|||
#define EXTERNAL_FLASH_DEVICES MX25R1635F |
|||
#define EXTERNAL_FLASH_USE_QSPI |
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|
|||
////////////////////////////////////////////////////////////////////////////////
|
|||
// Lora
|
|||
|
|||
#define USE_SX1262 |
|||
#define LORA_CS (24) |
|||
#define SX126X_DIO1 (20) |
|||
#define SX126X_BUSY (17) |
|||
#define SX126X_RESET (25) |
|||
#define SX126X_DIO2_AS_RF_SWITCH |
|||
#define SX126X_DIO3_TCXO_VOLTAGE 1.8 |
|||
|
|||
#define PIN_SPI1_MISO (43) |
|||
#define PIN_SPI1_MOSI (41) |
|||
#define PIN_SPI1_SCK (40) |
|||
|
|||
////////////////////////////////////////////////////////////////////////////////
|
|||
// Buzzer
|
|||
|
|||
// #define PIN_BUZZER (46)
|
|||
|
|||
|
|||
////////////////////////////////////////////////////////////////////////////////
|
|||
// GPS
|
|||
|
|||
#define GPS_RESET (38) |
|||
|
|||
////////////////////////////////////////////////////////////////////////////////
|
|||
// TFT
|
|||
// #define PIN_TFT_SCL (40)
|
|||
// #define PIN_TFT_SDA (41)
|
|||
// #define PIN_TFT_RST (2)
|
|||
// #define PIN_TFT_VDD_CTL (3)
|
|||
// #define PIN_TFT_LEDA_CTL (15)
|
|||
// #define PIN_TFT_CS (11)
|
|||
// #define PIN_TFT_DC (12)
|
|||
|
|||
////////////////////////////////////////////////////////////////////////////////
|
|||
#define BQ4050_SDA_PIN (33) // I2C data line pin
|
|||
#define BQ4050_SCL_PIN (32) // I2C clock line pin
|
|||
#define BQ4050_EMERGENCY_SHUTDOWN_PIN (35) // Emergency shutdown pin
|
|||
Loading…
Reference in new issue