{target.data.line.rank}
					{target.boat.getPhotosHtml()}
					{target.boat.name}
					{target.boat.getSailorsHtml('/')}
					
				
							Start
							{µ.toDate(target.data.boatClass.run.date,"FR:dddd dd mmmm ' at ' HH:MM 'FR'")}
						
						
							Total distance
							{µ.toNumber(target.data.line.dtf," ¤1¤.")}
							nm
						
					
							Position
							{µ.toDate(target.boat.track.currentLocation.timecode*1000,"FR:HH:MM")}
							FR
						
						
							Heading
							{target.boat.track.currentLocation.heading}
							°
						
						
							Speed
							{µ.toNumber(target.boat.track.currentLocation.getSpeed()," ¤1¤.")}
							kts
						
						
					
							{µ.toDate(target.boat.track.currentLocation.timecode*1000,"FR:HH:MM 'FR'")} • {target.boat.track.currentLocation.heading}° • {µ.toNumber(target.boat.track.currentLocation.getSpeed()," ¤1¤.")} kts
						
					
							Position
							{µ.toDate(target.data.line.date,"FR:HH:MM")}
							FR
						
						
							Dist. to finish
							{µ.toNumber(target.data.line.dtf," ¤1¤.")}
							nm
						
						
							Dist. to leader
							+{µ.toNumber(target.data.line.dtl," ¤1¤.")}
							nm
							{µ.toNumber(Math.abs(target.data.line.dtlProgress)," ¤1¤.")}
							nm
						
					
							Heading
							{target.data.line.heading}
							°
						
						
							Speed | VMC
							{µ.toNumber(target.data.line.speed," ¤1¤.")}
							kts
							{µ.toNumber(target.data.line.vmg," ¤1¤.")}
							kts
						
					
						{µ.TRANSLATIONS['OVER_1_LABEL']}
						{µ.toNumber(target.data.line.dist1/tracker.over1gap*60," ¤1¤.")}
						 nds
						{µ.toNumber(target.data.line.dist1," ¤1¤.")}
						 nm
					
					
						{µ.TRANSLATIONS['OVER_2_LABEL']}
						{µ.toNumber(target.data.line.dist2/tracker.over2gap*60," ¤1¤.")}
						 nds
						{µ.toNumber(target.data.line.dist2," ¤1¤.")}
						 nm
					
				
							Position
							{µ.toDate(target.data.line.date,"FR:HH:MM'FR'")}
							{target.data.line.heading}°
							{µ.toNumber(target.data.line.speed," ¤1¤.")} kts
						
						
							Distances
							{µ.toNumber(target.data.line.dtf," ¤1¤.")} nm 
							+{µ.toNumber(target.data.line.dtl," ¤1¤.")} nm
							{µ.toNumber(Math.abs(target.data.line.dtlProgress)," ¤1¤.")} nm
						
					Finish{µ.toDate(target.boat.arrival.date,"FR:dd/mm/yyyy ' à ' HH:MM:ss 'FR'")}
					
							Racetime{µ.toRacetime(target.boat.arrival.racetime, "[0]d [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
						
						
							Penalty{µ.toRacetime(Math.abs(target.boat.arrival.penalty), "[0]d [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
						
						
							Bonus{µ.toRacetime(Math.abs(target.boat.arrival.penalty), "[0]d [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
						
						
							Official time{µ.toRacetime(target.boat.arrival.jury, "[0]d [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
						
						
							Gap to first{µ.toRacetime(target.boat.arrival.gapToFirst, "[0]d [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
						
						
							Gap to previous{µ.toRacetime(target.boat.arrival.gapToPrevious, "[0]d [1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
						
					
							Over orthodromy
							{µ.toNumber(target.boat.arrival.orthoDistance, " ¤1¤.")}
							nm
							{µ.toNumber(target.boat.arrival.orthoSpeed, " ¤1¤.")}
							kts
						
						
							Overground
							{µ.toNumber(target.boat.arrival.overgroundDistance, " ¤1¤.")}
							nm
							{µ.toNumber(target.boat.arrival.overgroundSpeed, " ¤1¤.")}
							kts
						
					Finish{µ.toDate(target.boat.arrival.date,"FR:dd/mm/yyyy ' at ' HH:MM:ss 'FR'")}
						Racetime/span>{µ.toRacetime(target.boat.arrival.racetime, "[0]d[1]h [2]min [3]s¤[0]h [1]min [2]s¤[0]min [1]s¤[0]s¤¤N/A")}
					
						Click on the boat to locate it
on the splittime
«{target.data.line.name}»
				on the splittime
«{target.data.line.name}»
Pit Stop
Stealth mode
Not localised
Suspend racing
Not yet started
Did not start the race
Did not cross the start line
Did not finish the race
Disqualified
CNS
Retired