xhads/source/core.adb

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Ada
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with core;
use core;
package body core is
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procedure configure is
begin
engine_configure;
--
hexagon_grid_sprite := load_sprite ("./sprite/ui/hexagon_grid_tile.png", 1, 1);
hexagon_fill_sprite := load_sprite ("./sprite/ui/hexagon_fill_tile.png", 1, 1);
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end configure;
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procedure synchronize is
begin
global_time := global_time + 1;
--
global_time := global_time mod (gameplay_framerate * animation_framerate);
gameplay_time := global_time mod (gameplay_framerate);
animation_time := global_time / (gameplay_framerate / animation_framerate);
--
engine_synchronize;
end synchronize;
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procedure draw_state_box (x, y : in integer) is
begin
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write ("Cursor X :" & integer'image (cursor_x), x, y + 0, 16#CCCCCC#);
write ("Cursor Y :" & integer'image (cursor_y), x, y + 32, 16#CCCCCC#);
write ("Cursor Mode :" & integer'image (cursor_mode), x, y + 64, 16#CCCCCC#);
write ("Signal Code :" & signal_code'image (signal_code'val (signal_mode)), x, y + 96, 16#CCCCCC#);
write ("Camera X :" & integer'image (camera.x), x, y + 128, 16#CCCCCC#);
write ("Camera Y :" & integer'image (camera.y), x, y + 160, 16#CCCCCC#);
write ("Global Time :" & integer'image (global_time), x, y + 192, 16#CCCCCC#);
write ("Gameplay Time :" & integer'image (gameplay_time), x, y + 224, 16#CCCCCC#);
write ("Animation Time :" & integer'image (animation_time), x, y + 256, 16#CCCCCC#);
write ("Framerate :" & integer'image (framerate), x, y + 288, 16#CCCCCC#);
end draw_state_box;
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function flip_coin return integer is
begin
return (random_integer (0, 1));
end flip_coin;
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function roll_dice return integer is
begin
return (random_integer (1, 6));
end roll_dice;
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function by_chance (chance : in integer) return integer is
begin
return (random_integer (0, 100) mod chance);
end by_chance;
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function sigmoid (value : in boolean) return integer is
begin
return (if value then -1 else 1);
end sigmoid;
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function c_string (ada_string : string) return string is
begin
return (ada_string & character'val (0));
end c_string;
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function clip (value, minimum, maximum : in integer) return integer is
begin
if value < minimum then return minimum; end if;
if value > maximum then return maximum; end if;
return value;
end clip;
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function load_sprite (file_path : in string; frames, states : in integer) return sprite is
this : sprite;
begin
this.index := import_sprite (c_string (file_path));
this.width := sprite_width (this.index) / states;
this.height := sprite_height (this.index) / frames;
this.frames := frames;
this.states := states;
--
return this;
end load_sprite;
------------------------------------------------------------------------------------------
procedure crop (data : in sprite; x, y, u, v, width, height : in integer) is
begin
render_sprite (data.index, x, y, u, v, width, height);
end crop;
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procedure draw (data : in sprite; x, y : in integer) is
begin
render_sprite (data.index, x, y, 0, 0, data.width, data.height);
end draw;
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procedure move (data : in sprite; x, y, frame, state : in integer) is
begin
render_sprite (data.index, x, y, state * data.width, (animation_time mod frame) * data.height, data.width, data.height);
end move;
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procedure line (origin, offset : in vector_2) is
begin
render_vector (origin.x, origin.y, origin.x + offset.x, origin.y + offset.y);
end line;
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procedure write (text : in string; x, y : in integer; colour : in integer := 16#CCCCCC#) is
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begin
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render_string (c_string (text), x, y, colour, false);
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end write;
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procedure debug (text : in string) is
begin
put_line ("> " & text);
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end debug;
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procedure hexagonal_grid (x, y, width, height : in integer; fill : in boolean) is
crop_width : constant integer := width mod hexagon_grid_sprite.width;
crop_height : constant integer := height mod hexagon_grid_sprite.height;
use_sprite : constant sprite := (if fill then hexagon_fill_sprite else hexagon_grid_sprite);
begin
for move_y in 0 .. height / hexagon_grid_sprite.height - 1
loop
for move_x in 0 .. width / hexagon_grid_sprite.width - 1
loop
draw (use_sprite, x + move_x * hexagon_grid_sprite.width, y + move_y * hexagon_grid_sprite.height);
end loop;
--
crop (use_sprite, x + width - crop_width, y + move_y * hexagon_grid_sprite.height, 0, 0, crop_width, hexagon_grid_sprite.height);
end loop;
--
for move_x in 0 .. width / hexagon_grid_sprite.width - 1
loop
crop (use_sprite, x + move_x * hexagon_grid_sprite.width, y + height - crop_height, 0, 0, hexagon_grid_sprite.width, crop_height);
end loop;
--
crop (use_sprite, x + width - crop_width, y + height - crop_height, 0, 0, crop_width, crop_height);
end hexagonal_grid;
------------------------------------------------------------------------------------------
function lowercase (text : in string) return string is
result : string (1 .. text'length);
begin
for index in text'range
loop
if text (index) in 'A' .. 'Z' then
result (index) := character'val (character'pos (text (index)) + 32);
else
result (index) := text (index);
end if;
end loop;
--
return result;
end lowercase;
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function uppercase (text : in string) return string is
result : string (1 .. text'length);
begin
for index in text'range
loop
if text (index) in 'a' .. 'z' then
result (index) := character'val (character'pos (text (index)) - 32);
else
result (index) := text (index);
end if;
end loop;
--
return result;
end uppercase;
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procedure draw_central_grid (x, y, width, height : in integer) is
begin
render_vector (width / 2 + x, y, width / 2 + x, height + y);
render_vector ( x, height / 2 + y, width + x, height / 2 + y);
end draw_central_grid;
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procedure draw_squared_grid (x, y, width, height : in integer) is
offset_x : constant integer := x + base / 2 + (width mod base) / 2;
offset_y : constant integer := y + base / 2 + (height mod base) / 2;
crop_height : constant integer := ((height + base) / 2) mod base;
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crop_offset : constant integer := y - ((y + height) mod base) / 2;
begin
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for vertical in 0 .. width / base - 1
loop
line ((offset_x + vertical * base, y), (0, crop_height));
end loop;
--
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for horizontal in 0 .. height / base - 1
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loop
line ((x, offset_y + horizontal * base), (width, 0));
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--
for vertical in 0 .. width / base - 1
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loop
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line ((offset_x + vertical * base - base / 2, crop_offset + 2 * base * (horizontal / 2) + base), (0, base));
line ((offset_x + vertical * base, crop_offset + 2 * base * (horizontal / 2)), (0, base));
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end loop;
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end loop;
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--
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for vertical in 0 .. width / base - 1
loop
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line ((offset_x + vertical * base, crop_offset + 2 * base * ((height / base) / 2)), (0, crop_height));
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end loop;
end draw_squared_grid;
------------------------------------------------------------------------------------------
procedure draw_hexagon_grid (x, y, width, height : in integer) is
begin
render_vector (width / 2 + x, y, width / 2 + x, height + y);
render_vector ( x, height / 2 + y, width + x, height / 2 + y);
end draw_hexagon_grid;
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------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------
end core;