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The < is a special character to represent the left angle bracket\nvar CurveParameter = \"ArcLength\"; //set as 'ArcLength' or 'Chord' or 'Angle' for central angle. Case sensitive!\nvar ErrorString = \"COGO ERROR\"; //set to display invalid COGO combinations\nvar RadiusAbbr = 'R='; //radius abbreviation\nvar Radius2Abbr = 'R2='; //radius2 abbreviation for spiral curves\nvar ArclengthAbrr = 'L='; //arclength abbreviation\nvar ChordAbbr = 'C='; //chord abbreviation\nvar AngleAbbr = 'A='; //central Angle abbreviation\nvar DistUnitRounding = 2; //number of decimal places for distance units: distance, radius, arclength & chord\nvar NumberFormat = \"#,###.00\" //number format. In this example: thousands separator with padding of 2 zeros \nvar directionColor = \"blue='255'\"; //direction color: red, green, blue, cyan, magenta, yellow, black. You can also use RGB or CYMK combinations.\nvar distanceColor = \"black='255'\"; //distance color: red, green, blue, cyan, magenta, yellow, black. You can also use RGB or CYMK combinations.\nvar radiusColor = \"blue='255'\"; //radius color: red, green, blue, cyan, magenta, yellow, black. You can also use RGB or CYMK combinations.\nvar curveParamColor = \"black='255'\"; //curve parameter color: red, green, blue, cyan, magenta, yellow, black. You can also use RGB or CYMK combinations.\nvar partialCOGOColor = \"magenta='255'\"; //partial COGO color: red, green, blue, cyan, magenta, yellow, black. You can also use RGB or CYMK combinations.\nvar invalidCOGOColor = \"red='255'\"; //invalid COGO color: red, green, blue, cyan, magenta, yellow, black. You can also use RGB or CYMK combinations.\nvar fontNameSize = \"\"; //font type and size\n\n// VARIABLES\nvar cogo_direction = $feature.Direction;\nvar cogo_distance = $feature.Distance;\nvar cogo_radius = $feature.Radius;\nvar cogo_arclength = $feature.Arclength;\nvar cogo_radius2 = $feature.Radius2\nvar cogotype = $feature.COGOType\nvar labelPosition = $feature.labelPosition\nvar binaryDictionary; //binary dictionary to check COGO combinations\nvar checksum = 0; //initialize checksum\nvar validValuesArray; //array of valid values for COGO combinations\nvar partialValuesArray; //array of partial values for COGO\nvar directionStr = \"\"; //direction string using for label\nvar distanceStr = \"\"; //distance string using for label\nvar radiusStr = \"\"; //radius string using for label\nvar radius2Str = \"\"; //radius2 string using for labeling spiral curves\nvar curveStr = \"\"; //curve parameter string using for label\nvar prefixPostfix = ['', ''] //Used for prefix and postfix of COGO Type\nvar angleRad; //curve angle in radians\nvar COGOValidity; //COGO combinations validity. can be valid, partial or invalid.\n\nif (IsEmpty(cogo_direction) && IsEmpty(cogo_distance) && IsEmpty(cogo_radius) && IsEmpty(cogo_radius2) && IsEmpty(cogo_arclength)){\n return \"\"\n}\n\nfunction NorthAzimuth2Quadbearing(azimuth){\n var qb = ConvertDirection( azimuth, {directionType:'North', angleType: 'Degrees'}, {directionType:'Quadrant', angleType: 'DMS', outputType: 'value'})\n var quadbearing = qb[0] + qb[1] + \"°\" + Text(qb[2],\"00\") + \"'\" + Text(qb[3],\"00\") + \"\\\"\" + qb[4]\n return quadbearing;\n}\n\nfunction DMS_North(cogo_direction){\n var DMS = ConvertDirection( cogo_direction, {directionType:'North', angleType: 'Degrees'}, {directionType:'North', angleType: 'DMS', outputType: 'value'})\n return DMS[0]+\"°\"+text(DMS[1],\"00\")+\"'\"+text(DMS[2],\"00\")+\"\\\"\";\n}\n\nfunction DMS_South(cogo_direction){\n var DMS = ConvertDirection(cogo_direction, {directionType:'North', angleType: 'Degrees'}, {directionType:'South', angleType: 'DMS', outputType: 'value'})\n return DMS[0]+\"°\"+text(DMS[1],\"00\")+\"'\"+text(DMS[2],\"00\")+\"\\\"\";\n}\n\nfunction IsValidCOGO(cogo_direction, cogo_distance, cogo_radius, cogo_arclength, cogo_radius2) {\n binaryDictionary= Dictionary('dir', 1, 'dist',2, 'rad',4, 'arc',8, 'rad2',16)\n if (!IsEmpty(cogo_direction)) {checksum+=binaryDictionary.dir}\n if (!IsEmpty(cogo_distance)) {checksum+=binaryDictionary.dist}\n if (!IsEmpty(cogo_radius)) {checksum+=binaryDictionary.rad}\n if (!IsEmpty(cogo_arclength)) {checksum+=binaryDictionary.arc}\n if (!IsEmpty(cogo_radius2)) {checksum+=binaryDictionary.rad2}\n \n validValuesArray=[0,3,8,13,29]; //array of valid combinations: '0' for nothing, ... '13' for direction & radius & arclength ...\n partialValuesArray=[1,2,4,5,9,12,16,20,21,24,25,28]; //array of partial combinations: '1' for only direction, '2' for only distance, '4' for only radius...\n\n if (IndexOf(validValuesArray,checksum)>-1) { // a negative value is returned if checksum value is not in the a valid combination array\n return \"valid\";\n }\n if (IndexOf(partialValuesArray,checksum)>-1){\n return \"partial\"; \n }\n return \"invalid\";\n}\n\nfunction COGOTypePrefixPostfix(cogotypeValue){\n if (ShowCOGOType){\n if (cogotypeValue == 1) { //Entered\n return COGOType_Entered\n }\n else if(cogotypeValue == 2) { //From Geometry\n return COGOType_FromGeom\n }\n else if(cogotypeValue == 3) { //Computed\n return COGOType_Computed\n }\n else { //If not set or invalid value\n return ['', '']\n }\n }\n else{\n return(['', ''])\n }\n}\n\nCOGOValidity = IsValidCOGO(cogo_direction, cogo_distance, cogo_radius, cogo_arclength, cogo_radius2);\nif ( COGOValidity == \"invalid\") { //if invalid COGO return error string\n return \"\" + fontNameSize + ErrorString + \"<\/FNT><\/CLR><\/BOL>\"; \n}\n\nelse if (COGOValidity == \"partial\") { //if a partial COGO change colors\n distanceColor = partialCOGOColor;\n directionColor = partialCOGOColor;\n radiusColor = partialCOGOColor;\n curveParamColor = partialCOGOColor;\n}\n\n// Direction string\nif (ShowDirection) {\n if (IsEmpty(cogo_direction)==false) {\n if (DirectionType == 1) { //using quadrant bearing format\n directionStr = NorthAzimuth2Quadbearing(cogo_direction);\n }\n else if (DirectionType == 2) { //using north azimuth format\n directionStr = DMS_North(cogo_direction);\n }\n else if (DirectionType == 3) { //using south azimuth format\n directionStr = DMS_South(cogo_direction);\n }\n }\n}\n\n// Distance string\nif (ShowDistance) {\n if (IsEmpty(cogo_distance)==false) {\n distanceStr = text(round(cogo_distance,DistUnitRounding), NumberFormat);\n }\n}\n\n//Radius String\nif (ShowRadius) {\n if (!IsEmpty(cogo_radius)) { //it can be a curve or a spiral\n if (IsEmpty(cogo_radius2)) { //if radius2 is empty this is a curve\n radiusStr = RadiusAbbr + \" \" + text(round(cogo_radius, DistUnitRounding), NumberFormat);\n }\n else { // it is a spiral\n radiusStr = RadiusAbbr + \" \" + text(round(cogo_radius, DistUnitRounding),NumberFormat);\n radius2Str = Radius2Abbr + \" \" + text(round(cogo_radius2, DistUnitRounding),NumberFormat);\n if (cogo_radius == 0) { //substitute to infinity sign\n radiusStr = RadiusAbbr + \" ∞ \";\n }\n if (cogo_radius2 == 0) { //substitute to infinity sign\n radius2Str = Radius2Abbr + \" ∞ \";\n }\n } \n \n }\n}\n\n// Curve Parameter\nif (ShowCurveParameter) {\n if (!IsEmpty(cogo_arclength)) {\n if (CurveParameter == 'ArcLength') {\n curveStr = text(round(cogo_arclength, DistUnitRounding), NumberFormat); //return Arc length\n }\n angleRad = cogo_arclength/(abs(cogo_radius)) //calculate angle in radians\n if (CurveParameter == 'Angle') {\n curveStr = DMS_North(angleRad * 180 / pi); // convert radian to degrees and show as DMS\n }\n if (CurveParameter == 'Chord') {\n curveStr = text(round((2 * abs(cogo_radius) * Sin(angleRad/2)),DistUnitRounding), NumberFormat); //calculate chord length\n } \n }\n}\n\n//Determine type of curve displayed\nvar CurveTypePrefix = \"\"\nif (!IsEmpty(curveStr)){\n if (CurveParameter == 'ArcLength'){\n CurveTypePrefix = ArclengthAbrr\n }\n else if (CurveParameter == 'Angle'){\n CurveTypePrefix = AngleAbbr\n }\n else if (CurveParameter == 'Chord'){\n CurveTypePrefix = ChordAbbr\n }\n}\n\nvar isStraightLine = IsEmpty(radiusStr) && IsEmpty(radius2Str) && IsEmpty(curveStr)\n\n// Assemble label string\n\n//Get prefix and postfix if either distance or curve is not empty. 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