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@ -0,0 +1,176 @@
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let rec print_mat m =
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for i = 0 to (Array.length m)-1 do
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print_char ' ';
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for j = 0 to (Array.length m.(i))-1 do
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if m.(i).(j) <> -1 then
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print_int m.(i).(j)
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else
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print_char '_';
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print_char ' ';
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print_char '|';
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print_char ' ';
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done;
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print_char '\n';
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for j = 0 to (Array.length m.(i))-1 do
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print_char '-';
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print_char '-';
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print_char '-';
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print_char '+';
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done;
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print_char '\n';
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done ;;
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let pi = 3.14159265358979343 ;;
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let abs x =
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if x >= 0 then x else -x ;;
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let absf x =
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if x >= 0. then x else -1. *. x ;;
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let draw_line_bresenham mat x1 y1 x2 y2 neutral lnc cutoff =
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let slope = ref 0. in
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if x2 <> x1 || y2 <> y1 then
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slope := (float_of_int (y2 - y1) /. float_of_int (x2 - x1))
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else
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();
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if absf (!slope) < 1. then
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if x1 < x2 then
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for k = x1 to x2 do
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let cur_y = ref ((!slope) *. float_of_int (k - x1) +. float_of_int y1) in
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if !slope = 0. then cur_y := float_of_int y2 else ();
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if mat.(k).(int_of_float (!cur_y)) = neutral || mat.(k).(int_of_float (!cur_y)) = (-2) then
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if x2 - k > cutoff then mat.(k).(int_of_float (!cur_y)) <- (-2) else mat.(k).(int_of_float (!cur_y)) <- (-3)
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else
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()
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done
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else
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for k = x1 downto x2 do
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let cur_y = ref ((!slope) *. float_of_int (k - x1) +. float_of_int y1) in
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if !slope = 0. then cur_y := float_of_int y2 else ();
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if mat.(k).(int_of_float (!cur_y)) = neutral then
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if k - x2 > cutoff then mat.(k).(int_of_float (!cur_y)) <- (-2) else mat.(k).(int_of_float (!cur_y)) <- (-3)
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else
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()
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done
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else
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if y1 < y2 then
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for l = y1 to y2 do
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let cur_x = ref (float_of_int x2) in
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if (!slope) <> 1.0 /. 0.0 && (!slope) <> (-. 1.) /. 0. then
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cur_x := ((float_of_int l) +. ((!slope) *. (float_of_int x1) -. (float_of_int y1))) /. (!slope)
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else
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();
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if mat.(int_of_float (!cur_x)).(l) = neutral || mat.(int_of_float (!cur_x)).(l) = (-2) then
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if y2 - l > cutoff then mat.(int_of_float (!cur_x)).(l) <- (-2) else mat.(int_of_float (!cur_x)).(l) <- (-3)
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else
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()
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done
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else
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for l = y1 downto y2 do
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let cur_x = ref (float_of_int x2) in
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if (!slope) <> 1.0 /. 0.0 && (!slope) <> (-. 1.) /. 0. then
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cur_x := ((float_of_int l) +. ((!slope) *. (float_of_int x1) -. (float_of_int y1))) /. (!slope)
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else
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();
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if mat.(int_of_float (!cur_x)).(l) = neutral || mat.(int_of_float (!cur_x)).(l) = (-2) then
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if l - y2 > cutoff then mat.(int_of_float (!cur_x)).(l) <- (-2) else mat.(int_of_float (!cur_x)).(l) <- (-3)
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else
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()
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done;;
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let display mat neutral lnc lnf =
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for i = 0 to (Array.length mat -1) do
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for j = 0 to (Array.length mat.(i) -1) do
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if mat.(i).(j) = (-5) then
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Printf.printf "#"
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else if mat.(i).(j) <> neutral && mat.(i).(j) <> lnc && mat.(i).(j) <> lnf then
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Printf.printf "%d" mat.(i).(j)
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else if mat.(i).(j) = lnc then
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Printf.printf "."
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else if mat.(i).(j) = lnf then
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Printf.printf "X"
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else
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Printf.printf " "
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done;
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print_char '\n'
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done;;
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let extend mat i j =
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let ni = Array.length mat in
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let nj = Array.length mat.(0) in
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let s = (-5) in
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if i+1 >= 0 && i+1 < ni then begin
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mat.(i+1).(j) <- s;
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if j+1 >= 0 && j+1 < nj then
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mat.(i+1).(j+1) <- s
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else
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();
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if j-1 >= 0 && j-1 < nj then
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mat.(i+1).(j-1) <- s
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else
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()
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end
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else
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();
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if i-1 >= 0 && i-1 < ni then begin
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mat.(i-1).(j) <- s;
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if j+1 >= 0 && j+1 < nj then
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mat.(i-1).(j+1) <- s
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else
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();
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if j-1 >= 0 && j-1 < nj then
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mat.(i-1).(j-1) <- s
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else
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()
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end
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else
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();
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if j+1 >= 0 && j+1 < nj then
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mat.(i).(j+1) <- s
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else
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();
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if j-1 >= 0 && j-1 < nj then
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mat.(i).(j-1) <- s
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else
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() ;;
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let extremely_fancy_graph_printing g size =
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let px = Array.make (size) [||] in
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for i = 0 to (size-1) do
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px.(i) <- Array.make (3*size) (-1)
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done;
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let coords = Array.make size (0, 0) in
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(* placing the points on the trig circle *)
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for k = 0 to Array.length g - 1 do
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let theta = 2. *. pi *. (float_of_int k) /. (float_of_int (Array.length g)) in
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let i = int_of_float ((float_of_int size) /. 2.) + int_of_float ((float_of_int size) /. 2.05 *. cos theta) in
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let j = int_of_float ((float_of_int size) /. 2.) + int_of_float ((float_of_int size) /. 2.05 *. sin theta) in
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px.(i).(3*j) <- k;
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extend px i (3*j);
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coords.(k) <- (i, 3*j);
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done;
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(*
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for i = 0 to Array.length g - 2 do
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draw_line_bresenham px (fst coords.(i)) (snd coords.(i)) (fst coords.(i+1)) (snd coords.(i+1)) (-1)
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done;
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*)
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for i = 0 to Array.length g -1 do
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for j = 0 to Array.length g.(i) -1 do
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(*Printf.printf "[%d %d]\n" i g.(i).(j);*)
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draw_line_bresenham px (fst coords.(i)) (snd coords.(i)) (fst coords.(g.(i).(j))) (snd coords.(g.(i).(j))) (-1) (-3) 6
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done
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done;
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display px (-1) (-2) (-3) ;;
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let gr = [|[|3|]; [|4|]; [|0; 3; 4|]; [|0; 2|]; [|1; 2|]; [|0; 4|]|] ;;
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(*print_mat gr ;;*)
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extremely_fancy_graph_printing gr 40 ;
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