CircleAlgo first Part
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@@ -48,6 +48,7 @@ var move_check3 = 0
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var move_check5 = 0
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var Move_Check6 = 0
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var Move_Check7 = 0
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var Move_Check4 = 0
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var Move_Check9 = 0
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var Cicling = false
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var CircleIntsMax = 0
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@@ -178,11 +179,6 @@ func Circling():
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if Been_There_Array.size() > 3:
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if move_check5 != move:
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if Intersections.find(Current_Position) != Intersections.size()-1 and Intersections.find(Current_Position) != -1 and Been_There_Array[-2] == false and Been_There_Array[-3] == false:
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# var holder = []
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# for n in (move - BackTrack_Array[-1]):
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# holder.push_back(LogDump[n])
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#holder.push_front(Prev_dir_Opp)
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#print(holder)
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print("Circling")
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Cicling = true
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#ndividual_Steps.push_front(holder)
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@@ -194,9 +190,10 @@ func Circling():
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for n in CircleIntsMax:
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Individual_Steps.pop_front()
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GoBack(Individual_Steps[0])
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if CircleInts != 0:
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print("Go back to circle part :(")
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#FirstCirclePart()
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FirstCirclePart()
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move_check5 = move
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func HowManyIntsInCircle():
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@@ -210,30 +207,12 @@ func HowManyIntsInCircle():
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print(CircleInts)
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func FirstCirclePart():
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var count = CircleInts
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if count == 0 and Current_Position == Intersections_from_root[0]:
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Cicling = false
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Intersection_Tree()
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Ordered_Commands_Backward.clear()
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print("Ignoreeeeeee")
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for takeout in CircleInts + 1:
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Individual_Steps.pop_front()
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Tree_Array.pop_back()
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print("Goin back")
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print(Individual_Steps)
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GoBack(Individual_Steps[0])
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CircleCompleted = true
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#** Returning if it needs more work or not
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return false
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elif count != 0 and Current_Position == Intersections_from_root[0]:
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GoBack(Individual_Steps[0])
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Individual_Steps.pop_front()
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print("Number Of Ints: ", CircleInts)
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print(Individual_Steps)
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#** Returning if it needs more work or not
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return true
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var holder = []
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for n in (move - BackTrack_Array[-1] + 1):
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#holder.push_back(LogDump[n])
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holder.push_front(Prev_dir_Opp)
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print(holder)
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GoBack(holder)
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func CircleRootsAndInts():
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if Cicling == true:
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@@ -242,12 +221,11 @@ func CircleRootsAndInts():
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Intersections_from_root.push_back(Current_Position)
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var Duplicate = Intersections_from_root.duplicate(true)
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Intersections_from_root = Duplicate
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print(Intersections_from_root)
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func DeadEndCircles():
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if Cicling == true:
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if Detail_Dict.Type == "Dead End":
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if AutoBacktrack == true:
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CircleIntSubtractor()
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return true
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else:
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return false
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@@ -256,21 +234,20 @@ func SolvinCircleDeadEnds():
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if CircleManualDistance() != null:
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for n in CircleManualDistance():
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GoBack(LogDump[n])
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#print(Individual_Steps[0])
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CircleInts -= 1
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GoBack(Individual_Steps[0])
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print(CircleInts)
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func CircleComplete():
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if CircleCompleted == true:
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if Detail_Dict.Type != "Plain Path" and Detail_Dict.Been_There == false:
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Individual_Steps.push_front(GiveOrder())
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print("Circle Complete")
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print(Individual_Steps)
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print(Tree_Array)
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CircleCompleted = false
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else:
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pass
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func CircleManualDistance():
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if DeadEndCircles() == true and Intersections_from_root.size() >= 2:
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var Starting_Pos = Intersections_from_root[-2]
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var Ending_Pos = Intersections_from_root[-1]
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var x = abs(Starting_Pos[0] - Ending_Pos[0])
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var y = abs(Starting_Pos[1] - Ending_Pos[1])
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return x+y
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func CircleIntSubtractor():
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CircleInts -= 1
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print(CircleInts)
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func Intersection_Tree():
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if Cicling == false:
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@@ -304,14 +281,6 @@ func CheckForTreeDeadEnds():
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else:
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pass
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func CircleManualDistance():
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if DeadEndCircles() == true and Intersections_from_root.size() >= 2:
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var Starting_Pos = Intersections_from_root[-2]
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var Ending_Pos = Intersections_from_root[-1]
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var x = abs(Starting_Pos[0] - Ending_Pos[0])
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var y = abs(Starting_Pos[1] - Ending_Pos[1])
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return x+y
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func GiveOrder():
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Ordered_Commands_Backward.erase("")
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