commit
0befd7e5d5
@ -12,10 +12,10 @@
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#define NO_OF_SAMPLES 64 // we do some multisampling to get better values
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#ifndef BAT_MAX_VOLTAGE
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#define BAT_MAX_VOLTAGE 4300 // millivolts
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#define BAT_MAX_VOLTAGE 4200 // millivolts
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#endif
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#ifndef BAT_MIN_VOLTAGE
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#define BAT_MIN_VOLTAGE 3200 // millivolts
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#define BAT_MIN_VOLTAGE 2800 // millivolts
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#endif
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uint16_t read_voltage(void);
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@ -45,7 +45,7 @@ description = Paxcounter is a device for metering passenger flows in realtime. I
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[common]
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; for release_version use max. 10 chars total, use any decimal format like "a.b.c"
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release_version = 1.9.984
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release_version = 1.9.99
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; DEBUG LEVEL: For production run set to 0, otherwise device will leak RAM while running!
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; 0=None, 1=Error, 2=Warn, 3=Info, 4=Debug, 5=Verbose
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debug_level = 3
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@ -57,12 +57,12 @@ platform_espressif32 = espressif32@1.12.0
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monitor_speed = 115200
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upload_speed = 115200
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lib_deps_lora =
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MCCI LoRaWAN LMIC library@>=3.1.0 ; MCCI LMIC by Terrill Moore
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MCCI LoRaWAN LMIC library@3.1.0 ; MCCI LMIC by Terrill Moore
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lib_deps_display =
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ss_oled@4.1.2 ; simple and small OLED lib by Larry Bank
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BitBang_I2C@2.0.2
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QRCode@>=0.0.1
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TFT_eSPI@>=2.2.0
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ss_oled@4.1.2 ; fast and small OLED lib by Larry Bank
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BitBang_I2C@2.0.3
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QRCode@0.0.1
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TFT_eSPI@2.2.0
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lib_deps_matrix_display =
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Ultrathin_LED_Matrix@>=1.0.0
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lib_deps_rgbled =
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@ -110,7 +110,7 @@ framework = arduino
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board = esp32dev
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board_build.partitions = min_spiffs.csv
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upload_speed = ${common.upload_speed}
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;upload_port = COM5
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;upload_port = COM8
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platform = ${common.platform_espressif32}
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lib_deps = ${common.lib_deps_all}
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build_flags = ${common.build_flags_all}
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@ -69,7 +69,7 @@
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#define USE_OTA 1 // set to 0 to disable OTA update
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#define WIFI_MAX_TRY 5 // maximum number of wifi connect attempts for OTA update [default = 20]
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#define OTA_MAX_TRY 5 // maximum number of attempts for OTA download and write to flash [default = 3]
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#define OTA_MIN_BATT 3600 // minimum battery level for OTA [millivolt]
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#define OTA_MIN_BATT 50 // minimum battery level for OTA [percent]
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#define RESPONSE_TIMEOUT_MS 60000 // firmware binary server connection timeout [milliseconds]
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// settings for syncing time of node with a time source (network / gps / rtc / timeserver)
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@ -224,18 +224,20 @@ uint8_t read_battlevel() {
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const uint16_t batt_voltage_range = BAT_MAX_VOLTAGE - BAT_MIN_VOLTAGE;
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const uint8_t batt_level_range = MCMD_DEVS_BATT_MAX - MCMD_DEVS_BATT_MIN + 1;
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const int batt_voltage = read_voltage() - BAT_MIN_VOLTAGE;
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const uint8_t batt_percent = (batt_voltage > 0)
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? (float)batt_voltage / (float)batt_voltage_range * 100.0
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: MCMD_DEVS_BATT_NOINFO;
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const uint8_t batt_percent =
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(batt_voltage > 0)
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? (float)batt_voltage / (float)batt_voltage_range * 100.0
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: MCMD_DEVS_BATT_NOINFO;
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uint8_t lmic_batt_level;
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ESP_LOGD(TAG, "batt_voltage = %d mV / batt_level = %u%%", batt_voltage,
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batt_percent);
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ESP_LOGD(TAG, "batt_voltage = %dmV / batt_level = %u%%",
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batt_voltage + BAT_MIN_VOLTAGE, batt_percent);
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if (batt_percent != MCMD_DEVS_BATT_NOINFO)
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#ifdef HAS_PMU
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lmic_batt_level = pmu.isVBUSPlug() ? MCMD_DEVS_EXT_POWER
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: (float)batt_percent / (float)batt_level_range * 100.0;
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: (float)batt_percent /
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(float)batt_level_range * 100.0;
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#else
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lmic_batt_level = (float)batt_percent / (float)batt_level_range * 100.0;
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#endif // HAS_PMU
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