bugfix rcommand.cpp
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@ -8,7 +8,7 @@
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#include <esp32-hal-log.h>
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#include <esp32-hal-log.h>
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// attn: increment version after modifications to configData_t truct!
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// attn: increment version after modifications to configData_t truct!
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#define PROGVERSION "1.4.0" // use max 10 chars here!
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#define PROGVERSION "1.4.1" // use max 10 chars here!
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#define PROGNAME "PAXCNT"
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#define PROGNAME "PAXCNT"
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// std::set for unified array functions
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// std::set for unified array functions
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28
src/main.cpp
28
src/main.cpp
@ -27,7 +27,6 @@ licenses. Refer to LICENSE.txt file in repository for more details.
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#include "globals.h"
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#include "globals.h"
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#include "main.h"
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#include "main.h"
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configData_t cfg; // struct holds current device configuration
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configData_t cfg; // struct holds current device configuration
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char display_line6[16], display_line7[16]; // display buffers
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char display_line6[16], display_line7[16]; // display buffers
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uint8_t channel = 0; // channel rotation counter
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uint8_t channel = 0; // channel rotation counter
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@ -60,7 +59,7 @@ static const char TAG[] = "main";
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void setup() {
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void setup() {
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char features[64] = "";
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char features[100] = "";
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// disable brownout detection
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// disable brownout detection
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#ifdef DISABLE_BROWNOUT
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#ifdef DISABLE_BROWNOUT
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@ -108,8 +107,12 @@ void setup() {
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// read settings from NVRAM
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// read settings from NVRAM
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loadConfig(); // includes initialize if necessary
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loadConfig(); // includes initialize if necessary
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#ifdef VENDORFILTER
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strcat_P(features, " OUIFLT");
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#endif
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// initialize LoRa
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// initialize LoRa
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#if HAS_LORA
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#ifdef HAS_LORA
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strcat_P(features, " LORA");
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strcat_P(features, " LORA");
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#endif
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#endif
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@ -205,13 +208,13 @@ void setup() {
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// show payload encoder
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// show payload encoder
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#if PAYLOAD_ENCODER == 1
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#if PAYLOAD_ENCODER == 1
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strcat_P(features, " PAYLOAD_PLAIN");
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strcat_P(features, " PLAIN");
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#elif PAYLOAD_ENCODER == 2
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#elif PAYLOAD_ENCODER == 2
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strcat_P(features, " PAYLOAD_PACKED");
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strcat_P(features, " PACKED");
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#elif PAYLOAD_ENCODER == 3
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#elif PAYLOAD_ENCODER == 3
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strcat_P(features, " PAYLOAD_LPP_DYN");
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strcat_P(features, " LPPDYN");
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#elif PAYLOAD_ENCODER == 4
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#elif PAYLOAD_ENCODER == 4
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strcat_P(features, " PAYLOAD_LPP_PKD");
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strcat_P(features, " LPPPKD");
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#endif
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#endif
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// show compiled features
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// show compiled features
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@ -264,12 +267,12 @@ void setup() {
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ESP_LOGI(TAG, "Starting Wifi task on core 0");
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ESP_LOGI(TAG, "Starting Wifi task on core 0");
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wifi_sniffer_init();
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wifi_sniffer_init();
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// initialize salt value using esp_random() called by random() in
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// initialize salt value using esp_random() called by random() in
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// arduino-esp32 core note: do this *after* wifi has started, since function
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// arduino-esp32 core. Note: do this *after* wifi has started, since function
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// gets it's seed from RF noise
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// gets it's seed from RF noise
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reset_salt(); // get new 16bit for salting hashes
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reset_salt(); // get new 16bit for salting hashes
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xTaskCreatePinnedToCore(wifi_channel_loop, "wifiloop", 2048, (void *)1, 1,
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xTaskCreatePinnedToCore(wifi_channel_loop, "wifiloop", 2048, (void *)1, 1,
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NULL, 0);
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NULL, 0);
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} // setup
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} // setup()
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/* end Arduino SETUP
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/* end Arduino SETUP
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* ------------------------------------------------------------ */
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* ------------------------------------------------------------ */
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@ -294,13 +297,14 @@ void loop() {
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updateDisplay();
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updateDisplay();
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#endif
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#endif
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// check housekeeping cycle and to homework if expired
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// check housekeeping cycle and if expired do homework
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checkHousekeeping();
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checkHousekeeping();
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// check send cycle and send payload if cycle is expired
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// check send cycle and send payload if cycle is expired
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sendPayload();
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sendPayload();
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vTaskDelay(1 / portTICK_PERIOD_MS); // reset watchdog
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// reset watchdog
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vTaskDelay(1 / portTICK_PERIOD_MS);
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} // end of infinite main loop
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} // loop()
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}
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}
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/* end Arduino main loop
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/* end Arduino main loop
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@ -63,9 +63,8 @@ void set_reset(uint8_t val[]) {
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case 0: // restart device
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case 0: // restart device
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ESP_LOGI(TAG, "Remote command: restart device");
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ESP_LOGI(TAG, "Remote command: restart device");
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sprintf(display_line6, "Reset pending");
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sprintf(display_line6, "Reset pending");
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vTaskDelay(
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vTaskDelay(10000 / portTICK_PERIOD_MS); // wait for LMIC to confirm LoRa
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10000 /
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// downlink to server
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portTICK_PERIOD_MS); // wait for LMIC to confirm LoRa downlink to server
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esp_restart();
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esp_restart();
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break;
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break;
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case 1: // reset MAC counter
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case 1: // reset MAC counter
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@ -79,6 +78,8 @@ void set_reset(uint8_t val[]) {
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sprintf(display_line6, "Factory reset");
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sprintf(display_line6, "Factory reset");
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eraseConfig();
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eraseConfig();
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break;
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break;
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default:
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ESP_LOGW(TAG, "Remote command: reset called with invalid parameter(s)");
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}
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}
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};
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};
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@ -92,7 +93,7 @@ void set_sendcycle(uint8_t val[]) {
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// update send cycle interrupt
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// update send cycle interrupt
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timerAlarmWrite(sendCycle, cfg.sendcycle * 2 * 10000, true);
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timerAlarmWrite(sendCycle, cfg.sendcycle * 2 * 10000, true);
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// reload interrupt after each trigger of channel switch cycle
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// reload interrupt after each trigger of channel switch cycle
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ESP_LOGI(TAG, "Remote command: set payload send cycle to %d seconds",
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ESP_LOGI(TAG, "Remote command: set send cycle to %d seconds",
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cfg.sendcycle * 2);
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cfg.sendcycle * 2);
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};
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};
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@ -129,10 +130,14 @@ void set_countmode(uint8_t val[]) {
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cfg.countermode = 1;
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cfg.countermode = 1;
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ESP_LOGI(TAG, "Remote command: set counter mode to cumulative");
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ESP_LOGI(TAG, "Remote command: set counter mode to cumulative");
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break;
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break;
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default: // cyclic confirmed
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case 2: // cyclic confirmed
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cfg.countermode = 2;
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cfg.countermode = 2;
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ESP_LOGI(TAG, "Remote command: set counter mode to cyclic confirmed");
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ESP_LOGI(TAG, "Remote command: set counter mode to cyclic confirmed");
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break;
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break;
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default: // invalid parameter
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ESP_LOGW(
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TAG,
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"Remote command: set counter mode called with invalid parameter(s)");
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}
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}
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};
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};
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@ -170,18 +175,15 @@ void set_gps(uint8_t val[]) {
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default:
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default:
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cfg.gpsmode = 0;
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cfg.gpsmode = 0;
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break;
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break;
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}
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};
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};
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}
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void set_beacon(uint8_t val[]) {
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void set_beacon(uint8_t val[]) {
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if (sizeof(*val) / sizeof(val[0]) == 7) {
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uint8_t id = val[0]; // use first parameter as beacon storage id
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uint8_t id = val[0]; // use first parameter as beacon storage id
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memmove(val, val + 1, 6); // strip off storage id
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memmove(val, val + 1, 6); // strip off storage id
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beacons[id] = macConvert(val); // store beacon MAC in array
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beacons[id] = macConvert(val); // store beacon MAC in array
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ESP_LOGI(TAG, "Remote command: set beacon ID#%d", id);
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ESP_LOGI(TAG, "Remote command: set beacon ID#%d", id);
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printKey("MAC", val, 6, false); // show beacon MAC
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printKey("MAC", val, 6, false); // show beacon MAC
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} else
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ESP_LOGW(TAG, "Remote command: set beacon called with invalid parameters");
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};
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};
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void set_monitor(uint8_t val[]) {
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void set_monitor(uint8_t val[]) {
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@ -319,46 +321,43 @@ void get_gps(uint8_t val[]) {
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};
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};
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// assign previously defined functions to set of numeric remote commands
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// assign previously defined functions to set of numeric remote commands
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// format: opcode, function, flag (1 = do make settings persistent / 0 = don't)
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// format: opcode, function, #bytes params,
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// flag (1 = do make settings persistent / 0 = don't)
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//
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//
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cmd_t table[] = {{0x01, set_rssi, true}, {0x02, set_countmode, true},
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cmd_t table[] = {
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{0x03, set_gps, true}, {0x04, set_display, true},
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{0x01, set_rssi, 1, true}, {0x02, set_countmode, 1, true},
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{0x05, set_lorasf, true}, {0x06, set_lorapower, true},
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{0x03, set_gps, 1, true}, {0x04, set_display, 1, true},
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{0x07, set_loraadr, true}, {0x08, set_screensaver, true},
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{0x05, set_lorasf, 1, true}, {0x06, set_lorapower, 1, true},
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{0x09, set_reset, false}, {0x0a, set_sendcycle, true},
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{0x07, set_loraadr, 1, true}, {0x08, set_screensaver, 1, true},
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{0x0b, set_wifichancycle, true}, {0x0c, set_blescantime, true},
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{0x09, set_reset, 1, false}, {0x0a, set_sendcycle, 1, true},
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{0x0d, set_vendorfilter, false}, {0x0e, set_blescan, true},
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{0x0b, set_wifichancycle, 1, true}, {0x0c, set_blescantime, 1, true},
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{0x0f, set_wifiant, true}, {0x10, set_rgblum, true},
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{0x0d, set_vendorfilter, 1, false}, {0x0e, set_blescan, 1, true},
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{0x11, set_monitor, true}, {0x12, set_beacon, false},
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{0x0f, set_wifiant, 1, true}, {0x10, set_rgblum, 1, true},
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{0x80, get_config, false}, {0x81, get_status, false},
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{0x11, set_monitor, 1, true}, {0x12, set_beacon, 7, false},
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{0x84, get_gps, false}};
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{0x80, get_config, 0, false}, {0x81, get_status, 0, false},
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{0x84, get_gps, 0, false}};
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// check and execute remote command
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// check and execute remote command
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void rcommand(uint8_t cmd[], uint8_t cmdlength) {
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void rcommand(uint8_t cmd[], uint8_t cmdlength) {
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if (cmdlength == 0)
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if (cmdlength == 0)
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return;
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return;
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else
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cmdlength--; // minus 1 byte for opcode
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int i =
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int i =
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sizeof(table) / sizeof(table[0]); // number of commands in command table
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sizeof(table) / sizeof(table[0]); // number of commands in command table
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bool store_flag = false;
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while (i--) {
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while (i--) {
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if (cmd[0] == table[i].opcode) { // lookup command in opcode table
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if ((cmd[0] == table[i].opcode) &&
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if (cmdlength) {
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(table[i].params == cmdlength)) { // lookup command in opcode table
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memmove(cmd, cmd + 1,
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memmove(cmd, cmd + 1,
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cmdlength - 1); // cutout opcode from parameter array
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cmdlength); // strip opcode
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table[i].func(cmd); // execute assigned function with given parameters
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table[i].func(cmd); // execute assigned function with given parameters
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} else
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if (table[i].store) // ceck if function needs to store configuration
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table[i].func(0); // execute assigned function with dummy as parameter
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saveConfig();
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if (table[i].store) // ceck if function needs to store configuration after
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break; // exit while loop, command was found
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// execution
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} // lookup command
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store_flag =
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} // while
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true; // set save flag if function needs to store configuration
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break; // exit check loop, since command was found
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}
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}
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if (store_flag)
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saveConfig(); // if save flag is set: store new configuration in NVS to make
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// it persistent
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} // rcommand()
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} // rcommand()
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@ -10,6 +10,7 @@
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typedef struct {
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typedef struct {
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const uint8_t opcode;
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const uint8_t opcode;
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void (*func)(uint8_t []);
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void (*func)(uint8_t []);
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uint8_t params;
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const bool store;
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const bool store;
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} cmd_t;
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} cmd_t;
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