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1
Chess/README.md
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1
Chess/README.md
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@ -0,0 +1 @@
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14
README.md
14
README.md
@ -1,3 +1,13 @@
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Python Game
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# Python Game
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Here are the different games I've made so far in python.
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- Snake [Current Project]
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- Snake
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<p>
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<img src="Snake/img/Snake.png" width="500" title="hover text">
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</p>
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- Chess [WIP]
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- Sudoku [SOON]
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- Pandemic [SOON]
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@ -1,4 +1,6 @@
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Snake in Python using pygame
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# Snake in Python using pygame
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## Install
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```
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BIN
Snake/img/Snake.png
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BIN
Snake/img/Snake.png
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After Width: | Height: | Size: 12 KiB |
@ -18,14 +18,15 @@ def main():
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Running = True
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Direction = 'right'
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Direction_prev = 'right'
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Move_loop = 30
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Move_loop = 10
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Score = 0
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Difficulty = 10
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Difficulty = 1
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Fruit = False
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# Spawn snake head
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L_snake = snake.List((5, 5), None)
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# Spawn first apple
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level.spawn_apple(Matrix, HEIGH, WIDTH)
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while Running:
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@ -48,7 +49,7 @@ def main():
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Direction = Direction_prev
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try:
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L_snake, Matrix, Fruit = snake.Snake_move(Matrix, L_snake, Direction, HEIGH, WIDTH)
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L_snake, Matrix, Fruit, Score = snake.Snake_move(Matrix, L_snake, Direction, Score, HEIGH, WIDTH)
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except ValueError as Error:
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if Error.args[0] == 1:
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print("You take a wall !")
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@ -60,7 +61,9 @@ def main():
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level.spawn_apple(Matrix, HEIGH, WIDTH)
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Direction_prev = Direction
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Move_loop = 30 - Difficulty*2
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if(Score > 1000):
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Difficulty = int(Score/1000) + 1
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Move_loop = 11 - Difficulty
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Move_loop -= 1
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@ -29,7 +29,7 @@ class List:
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return i
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def Snake_move(M, L, dir, heigh, width):
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def Snake_move(M, L, dir, score, heigh, width):
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Fruit = False
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List_save = L
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Save_Value = L.val
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@ -71,7 +71,8 @@ def Snake_move(M, L, dir, heigh, width):
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# If snake eat fruit -> spawn new segment at the end of the snake
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if Fruit:
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List_save = List.List_add(List_save, Save_Value)
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score += 50
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else:
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M[Save_Value[0]][Save_Value[1]] = 0
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return List_save, M, Fruit
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return List_save, M, Fruit, score
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