code sanitizations
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@ -6,6 +6,13 @@
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HAS_DISPLAY u8x8(OLED_RST, OLED_SCL, OLED_SDA);
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HAS_DISPLAY u8x8(OLED_RST, OLED_SCL, OLED_SDA);
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// helper string for converting LoRa spread factor values
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#if defined(CFG_eu868)
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const char lora_datarate[] = {"1211100908077BFSNA"};
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#elif defined(CFG_us915)
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const char lora_datarate[] = {"100908078CNA121110090807"};
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#endif
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// helper function, prints a hex key on display
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// helper function, prints a hex key on display
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void DisplayKey(const uint8_t *key, uint8_t len, bool lsb) {
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void DisplayKey(const uint8_t *key, uint8_t len, bool lsb) {
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const uint8_t *p;
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const uint8_t *p;
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@ -17,17 +17,10 @@ extern char display_line6[], display_line7[];
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extern int countermode, screensaver, adrmode, lorasf, txpower, rlim;
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extern int countermode, screensaver, adrmode, lorasf, txpower, rlim;
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extern uint8_t channel, DisplayState;
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extern uint8_t channel, DisplayState;
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extern uint16_t macs_total, macs_wifi, macs_ble; // MAC counters
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extern uint16_t macs_total, macs_wifi, macs_ble; // MAC counters
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extern uint64_t uptimecounter;
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extern std::set<uint16_t> macs;
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extern std::set<uint16_t> macs;
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extern hw_timer_t *channelSwitch, *sendCycle;
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extern hw_timer_t *channelSwitch, *sendCycle;
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extern portMUX_TYPE timerMux;
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extern portMUX_TYPE timerMux;
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#if defined(CFG_eu868)
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const char lora_datarate[] = {"1211100908077BFSNA"};
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#elif defined(CFG_us915)
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const char lora_datarate[] = {"100908078CNA121110090807"};
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#endif
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#ifdef HAS_GPS
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#ifdef HAS_GPS
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extern gpsStatus_t gps_status; // struct for storing gps data
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extern gpsStatus_t gps_status; // struct for storing gps data
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extern TinyGPSPlus gps; // Make TinyGPS++ instance globally availabe
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extern TinyGPSPlus gps; // Make TinyGPS++ instance globally availabe
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@ -4,6 +4,7 @@
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// ESP32 Functions
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// ESP32 Functions
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#include <esp_wifi.h>
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#include <esp_wifi.h>
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// Hash function for scrambling MAC addresses
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#include "hash.h"
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#include "hash.h"
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#define MAC_SNIFF_WIFI 0
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#define MAC_SNIFF_WIFI 0
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@ -32,7 +32,6 @@ char display_line6[16], display_line7[16]; // display buffers
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uint8_t DisplayState = 0, channel = 0; // globals for state machine
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uint8_t DisplayState = 0, channel = 0; // globals for state machine
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uint16_t macs_total = 0, macs_wifi = 0,
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uint16_t macs_total = 0, macs_wifi = 0,
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macs_ble = 0; // MAC counters globals for display
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macs_ble = 0; // MAC counters globals for display
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uint64_t uptimecounter = 0; // timer global for uptime counter
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hw_timer_t *channelSwitch = NULL, *displaytimer = NULL,
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hw_timer_t *channelSwitch = NULL, *displaytimer = NULL,
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*sendCycle = NULL; // configure hardware timer for cyclic tasks
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*sendCycle = NULL; // configure hardware timer for cyclic tasks
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@ -438,8 +437,6 @@ void loop() {
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// state machine for uptime, display, LED, button, lowmemory, senddata
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// state machine for uptime, display, LED, button, lowmemory, senddata
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uptimecounter = uptime() / 1000; // counts uptime in seconds (64bit)
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#if (HAS_LED != NOT_A_PIN) || defined(HAS_RGB_LED)
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#if (HAS_LED != NOT_A_PIN) || defined(HAS_RGB_LED)
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led_loop();
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led_loop();
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#endif
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#endif
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@ -74,3 +74,4 @@ extern TinyGPSPlus gps; // Make TinyGPS++ instance globally availabe
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void reset_counters(void);
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void reset_counters(void);
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void blink_LED(uint16_t set_color, uint16_t set_blinkduration);
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void blink_LED(uint16_t set_color, uint16_t set_blinkduration);
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void led_loop(void);
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void led_loop(void);
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uint64_t uptime();
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@ -284,7 +284,7 @@ void get_status(uint8_t val) {
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uint16_t voltage = 0;
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uint16_t voltage = 0;
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#endif
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#endif
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payload.reset();
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payload.reset();
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payload.addStatus(voltage, uptimecounter, temperatureRead());
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payload.addStatus(voltage, uptime() / 1000, temperatureRead());
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senddata(STATUSPORT);
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senddata(STATUSPORT);
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};
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};
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