// Decoder for device payload encoder "PACKED" // copy&paste to TTN Console -> Applications -> PayloadFormat -> Decoder // Original from https://github.com/cyberman54/ESP32-Paxcounter function Decoder(bytes, port) { var decoded = {}; if (bytes.length === 0) { return {}; } if (port === 1) { switch (bytes[0]) { case 26: // SysInfo return decode(bytes, [header, uint24, uint24, int8, vcc, pct_8, uint8, uint8, uint8, uint8, uint24, uint16], ['header', 'uptime', 'freeheap', 'rssi', 'vcc', 'load', 'ip1', 'ip2', 'ip3', 'ip4', 'web', 'freestack']); case 82: // GPS if (bytes.length === 18) { return decode(bytes, [header, latLng, latLng, altitude, uint16_1e2, hdop, uint8, uint8], ['header', 'latitude', 'longitude', 'altitude', 'speed', 'hdop', 'max_snr', 'sat_tracked']); } else if (bytes.length === 21) { return decode(bytes, [header, latLng, latLng, altitude, uint16_1e2, hdop, uint8, uint8, uint24_1e2], ['header', 'latitude', 'longitude', 'altitude', 'speed', 'hdop', 'max_snr', 'sat_tracked', 'distance_total_km']); } else { return decode(bytes, [header, latLng, latLng, altitude, uint16_1e2, hdop, uint8, uint8, uint24_1e2, uint24_1e1], ['header', 'latitude', 'longitude', 'altitude', 'speed', 'hdop', 'max_snr', 'sat_tracked', 'distance_total_km', 'distance_ref']); } case 85: // AcuDC243 // FIXME TD-er: Same code as in P108, Make new type for this with 4 selectable variables return decode(bytes, [header, uint8, int32_1e4, uint8, int32_1e4, uint8, int32_1e4, uint8, int32_1e4], ['header', 'unit1', 'val_1', 'unit2', 'val_2', 'unit3', 'val_3', 'unit4', 'val_4']); case 102: // PZEM004T v30 data = decode(bytes, [header, int16_1e1, int32_1e3, int32_1e1, int32_1e1, uint16_1e2, uint8_1e1], ['header', 'voltage', 'current', 'power', 'energy', 'powerfactor', 'frequency']); data.frequency += 40; return data; case 108: // DDS238-x ZN // FIXME TD-er: Same code as in P085, Make new type for this with 4 selectable variables return decode_plugin(input.fPort, input.bytes, [header, uint8, int32_1e4, uint8, int32_1e4, uint8, int32_1e4, uint8, int32_1e4], ['header', 'unit1', 'val_1', 'unit2', 'val_2', 'unit3', 'val_3', 'unit4', 'val_4']); } if (bytes.length === 9) { return decode(bytes, [header, int32_1e4], ['header', 'val_1']); } // Dual value if (bytes.length === 13) { return decode(bytes, [header, int32_1e4, int32_1e4], ['header', 'val_1', 'val_2']); } // Triple value if (bytes.length === 17) { return decode(bytes, [header, int32_1e4, int32_1e4, int32_1e4], ['header', 'val_1', 'val_2', 'val_3']); } // Quad value if (bytes.length === 21) { return decode(bytes, [header, int32_1e4, int32_1e4, int32_1e4, int32_1e4], ['header', 'val_1', 'val_2', 'val_3', 'val_4']); } } } // ----- contents of /src/decoder.js -------------------------------------------- // https://github.com/thesolarnomad/lora-serialization/blob/master/src/decoder.js var bytesToInt = function (bytes) { var i = 0; for (var x = 0; x < bytes.length; x++) { i |= (bytes[x] << (x * 8)); } return i; }; var version = function (bytes) { if (bytes.length !== version.BYTES) { throw new Error('version must have exactly 10 bytes'); } return String.fromCharCode.apply(null, bytes).split('\u0000')[0]; }; version.BYTES = 10; var uint8 = function (bytes) { if (bytes.length !== uint8.BYTES) { throw new Error('uint8 must have exactly 1 byte'); } return bytesToInt(bytes); }; uint8.BYTES = 1; var uint16 = function (bytes) { if (bytes.length !== uint16.BYTES) { throw new Error('uint16 must have exactly 2 bytes'); } return bytesToInt(bytes); }; uint16.BYTES = 2; var uint24 = function (bytes) { if (bytes.length !== uint24.BYTES) { throw new Error('uint24 must have exactly 3 bytes'); } return bytesToInt(bytes); }; uint24.BYTES = 3; var uint32 = function (bytes) { if (bytes.length !== uint32.BYTES) { throw new Error('uint32 must have exactly 4 bytes'); } return bytesToInt(bytes); }; uint32.BYTES = 4; var uint64 = function (bytes) { if (bytes.length !== uint64.BYTES) { throw new Error('uint64 must have exactly 8 bytes'); } return bytesToInt(bytes); }; uint64.BYTES = 8; var int8 = function (bytes) { if (bytes.length !== int8.BYTES) { throw new Error('int8 must have exactly 1 byte'); } var value = +(bytesToInt(bytes)); if (value > 127) { value -= 256; } return value; }; int8.BYTES = 1; var int16 = function (bytes) { if (bytes.length !== int16.BYTES) { throw new Error('int16 must have exactly 2 bytes'); } var value = +(bytesToInt(bytes)); if (value > 32767) { value -= 65536; } return value; }; int16.BYTES = 2; var int24 = function (bytes) { if (bytes.length !== int24.BYTES) { throw new Error('int24 must have exactly 3 bytes'); } var value = +(bytesToInt(bytes)); if (value > 8388608) { value -= 16777216; } return value; }; int24.BYTES = 3; var int32 = function (bytes) { if (bytes.length !== int32.BYTES) { throw new Error('int32 must have exactly 4 bytes'); } var value = +(bytesToInt(bytes)); if (value > 2147483647) { value -= 4294967296; } return value; }; int32.BYTES = 4; // Basic types with a factor in them. var uint8_1e3 = function (bytes) { return +(uint8(bytes) / 1e3).toFixed(3); }; uint8_1e3.BYTES = uint8.BYTES; var uint8_1e2 = function (bytes) { return +(uint8(bytes) / 1e2).toFixed(2); }; uint8_1e2.BYTES = uint8.BYTES; var uint8_1e1 = function (bytes) { return +(uint8(bytes) / 1e1).toFixed(1); }; uint8_1e1.BYTES = uint8.BYTES; var uint16_1e5 = function (bytes) { return +(uint16(bytes) / 1e5).toFixed(5); }; uint16_1e5.BYTES = uint16.BYTES; var uint16_1e4 = function (bytes) { return +(uint16(bytes) / 1e4).toFixed(4); }; uint16_1e4.BYTES = uint16.BYTES; var uint16_1e3 = function (bytes) { return +(uint16(bytes) / 1e3).toFixed(3); }; uint16_1e3.BYTES = uint16.BYTES; var uint16_1e2 = function (bytes) { return +(uint16(bytes) / 1e2).toFixed(2); }; uint16_1e2.BYTES = uint16.BYTES; var uint16_1e1 = function (bytes) { return +(uint16(bytes) / 1e1).toFixed(1); }; uint16_1e1.BYTES = uint16.BYTES; var uint24_1e6 = function (bytes) { return +(uint24(bytes) / 1e6).toFixed(6); }; uint24_1e6.BYTES = uint24.BYTES; var uint24_1e5 = function (bytes) { return +(uint24(bytes) / 1e5).toFixed(5); }; uint24_1e5.BYTES = uint24.BYTES; var uint24_1e4 = function (bytes) { return +(uint24(bytes) / 1e4).toFixed(4); }; uint24_1e4.BYTES = uint24.BYTES; var uint24_1e3 = function (bytes) { return +(uint24(bytes) / 1e3).toFixed(3); }; uint24_1e3.BYTES = uint24.BYTES; var uint24_1e2 = function (bytes) { return +(uint24(bytes) / 1e2).toFixed(2); }; uint24_1e2.BYTES = uint24.BYTES; var uint24_1e1 = function (bytes) { return +(uint24(bytes) / 1e1).toFixed(1); }; uint24_1e1.BYTES = uint24.BYTES; var uint32_1e6 = function (bytes) { return +(uint32(bytes) / 1e6).toFixed(6); }; uint32_1e6.BYTES = uint32.BYTES; var uint32_1e5 = function (bytes) { return +(uint32(bytes) / 1e5).toFixed(5); }; uint32_1e5.BYTES = uint32.BYTES; var uint32_1e4 = function (bytes) { return +(uint32(bytes) / 1e4).toFixed(4); }; uint32_1e4.BYTES = uint32.BYTES; var uint32_1e3 = function (bytes) { return +(uint32(bytes) / 1e3).toFixed(3); }; uint32_1e3.BYTES = uint32.BYTES; var uint32_1e2 = function (bytes) { return +(uint32(bytes) / 1e2).toFixed(2); }; uint32_1e2.BYTES = uint32.BYTES; var uint32_1e1 = function (bytes) { return +(uint32(bytes) / 1e1).toFixed(1); }; uint32_1e1.BYTES = uint32.BYTES; var int8_1e3 = function (bytes) { return +(int8(bytes) / 1e3).toFixed(3); }; int8_1e3.BYTES = int8.BYTES; var int8_1e2 = function (bytes) { return +(int8(bytes) / 1e2).toFixed(2); }; int8_1e2.BYTES = int8.BYTES; var int8_1e1 = function (bytes) { return +(int8(bytes) / 1e1).toFixed(1); }; int8_1e1.BYTES = int8.BYTES; var int16_1e5 = function (bytes) { return +(int16(bytes) / 1e5).toFixed(5); }; int16_1e5.BYTES = int16.BYTES; var int16_1e4 = function (bytes) { return +(int16(bytes) / 1e4).toFixed(4); }; int16_1e4.BYTES = int16.BYTES; var int16_1e3 = function (bytes) { return +(int16(bytes) / 1e3).toFixed(3); }; int16_1e3.BYTES = int16.BYTES; var int16_1e2 = function (bytes) { return +(int16(bytes) / 1e2).toFixed(2); }; int16_1e2.BYTES = int16.BYTES; var int16_1e1 = function (bytes) { return +(int16(bytes) / 1e1).toFixed(1); }; int16_1e1.BYTES = int16.BYTES; var int24_1e6 = function (bytes) { return +(int24(bytes) / 1e6).toFixed(6); }; int24_1e6.BYTES = int24.BYTES; var int24_1e5 = function (bytes) { return +(int24(bytes) / 1e5).toFixed(5); }; int24_1e5.BYTES = int24.BYTES; var int24_1e4 = function (bytes) { return +(int24(bytes) / 1e4).toFixed(4); }; int24_1e4.BYTES = int24.BYTES; var int24_1e3 = function (bytes) { return +(int24(bytes) / 1e3).toFixed(3); }; int24_1e3.BYTES = int24.BYTES; var int24_1e2 = function (bytes) { return +(int24(bytes) / 1e2).toFixed(2); }; int24_1e2.BYTES = int24.BYTES; var int24_1e1 = function (bytes) { return +(int24(bytes) / 1e1).toFixed(1); }; int24_1e1.BYTES = int24.BYTES; var int32_1e6 = function (bytes) { return +(int32(bytes) / 1e6).toFixed(6); }; int32_1e6.BYTES = int32.BYTES; var int32_1e5 = function (bytes) { return +(int32(bytes) / 1e5).toFixed(5); }; int32_1e5.BYTES = int32.BYTES; var int32_1e4 = function (bytes) { return +(int32(bytes) / 1e4).toFixed(4); }; int32_1e4.BYTES = int32.BYTES; var int32_1e3 = function (bytes) { return +(int32(bytes) / 1e3).toFixed(3); }; int32_1e3.BYTES = int32.BYTES; var int32_1e2 = function (bytes) { return +(int32(bytes) / 1e2).toFixed(2); }; int32_1e2.BYTES = int32.BYTES; var int32_1e1 = function (bytes) { return +(int32(bytes) / 1e1).toFixed(1); }; int32_1e1.BYTES = int32.BYTES; var pluginid = function (bytes) { return +(uint8(bytes)); }; pluginid.BYTES = uint8.BYTES; var latLng = function (bytes) { // 2^23 / 180 = 46603... return +(int24(bytes) / 46600); }; latLng.BYTES = int24.BYTES; var hdop = function (bytes) { return +(uint8(bytes) / 10).toFixed(2); }; hdop.BYTES = uint8.BYTES; var altitude = function (bytes) { // Option to increase altitude resolution (also on encoder side) return +(int16(bytes) / 4 - 1000).toFixed(1); }; altitude.BYTES = int16.BYTES; // -1 .. 5.12V var vcc = function (bytes) { return +(uint8(bytes) / 41.83 - 1.0).toFixed(2); }; vcc.BYTES = uint8.BYTES; // 0 .. 100% var pct_8 = function (bytes) { return +(uint8(bytes) / 2.56).toFixed(2); }; pct_8.BYTES = uint8.BYTES; var bitmap1 = function (byte) { if (byte.length !== bitmap1.BYTES) { throw new Error('Bitmap must have exactly 1 byte'); } var i = bytesToInt(byte); var bm = ('00000000' + Number(i).toString(2)).substr(-8).split('').map(Number).map(Boolean); return ['adr', 'screensaver', 'screen', 'countermode', 'blescan', 'antenna', 'filter', 'alarm'] .reduce(function (obj, pos, index) { obj[pos] = +bm[index]; return obj; }, {}); }; bitmap1.BYTES = 1; var bitmap2 = function (byte) { if (byte.length !== bitmap2.BYTES) { throw new Error('Bitmap must have exactly 1 byte'); } var i = bytesToInt(byte); var bm = ('00000000' + Number(i).toString(2)).substr(-8).split('').map(Number).map(Boolean); return ['gps', 'alarm', 'bme', 'counter', 'sensor1', 'sensor2', 'sensor3', 'battery'] .reduce(function (obj, pos, index) { obj[pos] = +bm[index]; return obj; }, {}); }; bitmap2.BYTES = 1; var header = function (byte) { if (byte.length !== header.BYTES) { throw new Error('header must have exactly 5 bytes'); } var values = [ 0, 0, 0, 0 ]; values[0] = bytesToInt(byte.slice(0,1)); values[1] = bytesToInt(byte.slice(1,3)); values[2] = bytesToInt(byte.slice(3,4)); values[3] = bytesToInt(byte.slice(4,5)); return ['plugin_id', 'IDX', 'samplesetcount', 'valuecount'] .reduce(function (obj, pos, index) { obj[pos] = +values[index]; return obj; }, {}); }; header.BYTES = 5; var decode = function (bytes, mask, names) { var maskLength = mask.reduce(function (prev, cur) { return prev + cur.BYTES; }, 0); if (bytes.length < maskLength) { throw new Error('Mask length is ' + maskLength + ' whereas input is ' + bytes.length); } names = names || []; var offset = 0; return mask .map(function (decodeFn) { var current = bytes.slice(offset, offset += decodeFn.BYTES); return decodeFn(current); }) .reduce(function (prev, cur, idx) { prev[names[idx] || idx] = cur; return prev; }, {}); }; if (typeof module === 'object' && typeof module.exports !== 'undefined') { module.exports = { uint8: uint8, uint16: uint16, uint24: uint24, uint32: uint32, int8: int8, int16: int16, int24: int24, int32: int32, uint8_1e3: uint8_1e3, uint8_1e2: uint8_1e2, uint8_1e1: uint8_1e1, uint16_1e5: uint16_1e5, uint16_1e4: uint16_1e4, uint16_1e3: uint16_1e3, uint16_1e2: uint16_1e2, uint16_1e1: uint16_1e1, uint24_1e6: uint24_1e6, uint24_1e5: uint24_1e5, uint24_1e4: uint24_1e4, uint24_1e3: uint24_1e3, uint24_1e2: uint24_1e2, uint24_1e1: uint24_1e1, uint32_1e6: uint32_1e6, uint32_1e5: uint32_1e5, uint32_1e4: uint32_1e4, uint32_1e3: uint32_1e3, uint32_1e2: uint32_1e2, uint32_1e1: uint32_1e1, int8_1e3: int8_1e3, int8_1e2: int8_1e2, int8_1e1: int8_1e1, int16_1e5: int16_1e5, int16_1e4: int16_1e4, int16_1e3: int16_1e3, int16_1e2: int16_1e2, int16_1e1: int16_1e1, int24_1e6: int24_1e6, int24_1e5: int24_1e5, int24_1e4: int24_1e4, int24_1e3: int24_1e3, int24_1e2: int24_1e2, int24_1e1: int24_1e1, int32_1e6: int32_1e6, int32_1e5: int32_1e5, int32_1e4: int32_1e4, int32_1e3: int32_1e3, int32_1e2: int32_1e2, int32_1e1: int32_1e1, pluginid: pluginid, latLng: latLng, hdop: hdop, altitude: altitude, vcc: vcc, pct_8: pct_8, bitmap1: bitmap1, bitmap2: bitmap2, header: header, version: version, decode: decode }; }