reduced mac and ble counter to 16bit
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527f47d558
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cf2a620e8a
@ -27,6 +27,6 @@ void BLECount() {
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u8x8.clearLine(3);
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u8x8.setCursor(0,3);
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blenum=foundDevices.getCount();
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u8x8.printf("BLE#: %4i",blenum);
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u8x8.printf("BLE#: %5i",blenum);
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}
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#endif
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@ -32,9 +32,10 @@ extern configData_t cfg;
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extern uint8_t mydata[];
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extern uint64_t uptimecounter;
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extern osjob_t sendjob;
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extern int macnum, blenum, countermode, screensaver, adrmode, lorasf, txpower, rlim, salt;
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extern uint16_t macnum, blenum;
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extern int countermode, screensaver, adrmode, lorasf, txpower, rlim, salt;
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extern bool joinstate;
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extern std::set<uint32_t> macs;
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extern std::set<uint16_t> macs;
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#ifdef HAS_DISPLAY
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extern HAS_DISPLAY u8x8;
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@ -79,10 +79,10 @@ void printKeys(void) {
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#endif // VERBOSE
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void do_send(osjob_t* j){
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mydata[0] = (macnum & 0x0000ff00) >> 8;
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mydata[1] = macnum & 0x000000ff;
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mydata[2] = (blenum & 0x0000ff00) >> 8;
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mydata[3] = blenum & 0x000000ff;
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mydata[0] = (macnum & 0xff00) >> 8;
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mydata[1] = macnum & 0x00ff;
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mydata[2] = (blenum & 0xff00) >> 8;
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mydata[3] = blenum & 0x00ff;
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// Check if there is not a current TX/RX job running
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if (LMIC.opmode & OP_TXRXPEND) {
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@ -42,11 +42,12 @@ configData_t cfg; // struct holds current device configuration
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osjob_t sendjob, initjob; // LMIC
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// Initialize global variables
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int macnum = 0, blenum = 0, salt;
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uint16_t macnum = 0, blenum = 0;
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int salt;
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uint64_t uptimecounter = 0;
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bool joinstate = false;
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std::set<uint32_t> macs; // associative container holds filtered MAC adresses
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std::set<uint16_t> macs; // associative container holds filtered MAC adresses
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// this variable will be changed in the ISR, and read in main loop
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static volatile bool ButtonTriggered = false;
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@ -211,7 +212,7 @@ void wifi_sniffer_loop(void * pvParameters) {
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// Prepare and execute LoRaWAN data upload
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u8x8.setCursor(0,4);
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u8x8.printf("MAC#: %4i", macnum);
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u8x8.printf("MAC#: %i", macnum);
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do_send(&sendjob); // send payload
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vTaskDelay(500/portTICK_PERIOD_MS);
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yield();
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@ -388,7 +389,7 @@ void setup() {
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init_display(PROGNAME, PROGVERSION);
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u8x8.setPowerSave(!cfg.screenon); // set display off if disabled
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u8x8.setCursor(0,5);
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u8x8.printf(!cfg.rssilimit ? "RLIM: off" : "RLIM: %4i", cfg.rssilimit);
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u8x8.printf(!cfg.rssilimit ? "RLIM: off" : "RLIM: %4i", cfg.rssilimit);
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u8x8.drawString(0,6,"Join Wait ");
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// output LoRaWAN keys to console
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@ -1,5 +1,5 @@
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// program version
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#define PROGVERSION "1.2.61" // use max 10 chars here!
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#define PROGVERSION "1.2.62" // use max 10 chars here!
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#define PROGNAME "PAXCNT"
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// Verbose enables serial output
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@ -59,11 +59,12 @@ void wifi_sniffer_packet_handler(void* buff, wifi_promiscuous_pkt_type_t type) {
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const wifi_promiscuous_pkt_t *ppkt = (wifi_promiscuous_pkt_t *)buff;
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const wifi_ieee80211_packet_t *ipkt = (wifi_ieee80211_packet_t *)ppkt->payload;
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const wifi_ieee80211_mac_hdr_t *hdr = &ipkt->hdr;
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char counter [11]; // uint32_t -> 4 byte -> 10 decimals + '0' terminator -> 11 chars
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char counter [6]; // uint16_t -> 2 byte -> 5 decimals + '0' terminator -> 6 chars
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char macbuf [21]; // uint64_t -> 8 byte -> 20 decimals + '0' terminator -> 21 chars
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uint32_t hashedmac, vendor2int;
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uint64_t addr2int;
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std::pair<std::set<uint32_t>::iterator, bool> newmac;
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uint32_t vendor2int;
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uint16_t hashedmac;
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std::pair<std::set<uint16_t>::iterator, bool> newmac;
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if (( cfg.rssilimit == 0 ) || (ppkt->rx_ctrl.rssi > cfg.rssilimit )) { // rssi is negative value
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addr2int = ( (uint64_t)hdr->addr2[0] ) | ( (uint64_t)hdr->addr2[1] << 8 ) | ( (uint64_t)hdr->addr2[2] << 16 ) | \
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@ -78,16 +79,16 @@ void wifi_sniffer_packet_handler(void* buff, wifi_promiscuous_pkt_type_t type) {
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//if (!(addr2int & WIFI_MAC_FILTER_MASK)) { // filter local and group MACs
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// salt and hash MAC, and if new unique one, store hash in container and increment counter on display
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addr2int <<= 8;
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addr2int <<= 8; // left shift out msb of vendor oui
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addr2int += salt; // append salt value to MAC before hashing it
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itoa(addr2int, macbuf, 10); // convert 64 bit MAC to base 10 decimal string
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hashedmac = rokkit(macbuf, 10); // hash MAC for privacy, use 10 chars to fit in uint32_t container
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hashedmac = rokkit(macbuf, 5); // hash MAC for privacy, use 5 chars to fit in uint16_t container
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newmac = macs.insert(hashedmac); // store hashed MAC if new unique
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if (newmac.second) { // first time seen MAC
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macnum++; // increment MAC counter
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itoa(macnum, counter, 10); // base 10 decimal counter value
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u8x8.draw2x2String(0, 0, counter);
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ESP_LOGI(TAG, "RSSI %04d -> Hash %010u -> #%04i", ppkt->rx_ctrl.rssi, hashedmac, macnum);
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ESP_LOGI(TAG, "RSSI %04d -> Hash %05u -> #%05i", ppkt->rx_ctrl.rssi, hashedmac, macnum);
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}
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else // already seen MAC
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ESP_LOGI(TAG, "RSSI %04d -> already seen", ppkt->rx_ctrl.rssi);
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