forked from s452716/Test
Function successor(only east direction), start-end position
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@ -1,4 +1,4 @@
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<?xml version="1.0" encoding="UTF-8"?>
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="4">
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<project version="4">
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<component name="ProjectRootManager" version="2" project-jdk-name="Python 3.7 (venv)" project-jdk-type="Python SDK" />
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<component name="ProjectRootManager" version="2" project-jdk-name="Python 3.8" project-jdk-type="Python SDK" />
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</project>
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</project>
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@ -1,3 +1,6 @@
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#from bin.Main.main import player
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class Node:
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class Node:
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def __init__(self):
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def __init__(self):
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self.state = State()
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self.state = State()
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@ -9,3 +12,45 @@ class State:
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def __init__(self):
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def __init__(self):
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self.coord = []
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self.coord = []
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self.direction = ""
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self.direction = ""
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def successor(state):
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if state.direction == "east":
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node_state_left = Node()
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node_state_right = Node()
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node_state_forward = Node()
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#state_left = state.coord
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node_state_left.state = State()
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node_state_left.state.coord = state.coord
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node_state_left.state.direction = "north"
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node_state_left.parent = state
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node_state_left.action = "Left"
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#state_right = state.coord
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node_state_right.state = State()
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node_state_right.state.coord = state.coord
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node_state_right.state.direction = "south"
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node_state_right.parent = state
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node_state_right.action = "Right"
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#state_forward = state.coord
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#state_forward[0] = 53
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node_state_forward.state = State()
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node_state_forward.state.coord = [state.coord[0] + 53, state.coord[1]]
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node_state_forward.state.direction = state.direction
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node_state_forward.parent = state
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node_state_forward.action = "Up"
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return [node_state_left, node_state_right, node_state_forward]
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#elif state.direction == "west":
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#elif state.direction == "north":
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#elif state.direction == "south":
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def hello():
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print("Hello Node!")
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@ -2,10 +2,10 @@ import os
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import random
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import random
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from tkinter import *
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from tkinter import *
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from bin.classess.Field import Field
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from bin.Classess.Field import Field
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from bin.classess.Mine import Mine
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from bin.Classess.Mine import Mine
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from bin.classess.Player import Player
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from bin.Classess.Player import Player
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from bin.classess.Node import Node
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import bin.Classess.Node as nd
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WINDOW_X = 533 + 1200
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WINDOW_X = 533 + 1200
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WINDOW_Y = 950
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WINDOW_Y = 950
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@ -56,22 +56,6 @@ def DrawingLargeImage():
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field.PuttingLargeImage(large_img_name)
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field.PuttingLargeImage(large_img_name)
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# Drawing rectangle
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# def Rectangle(bool, direction):
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# if bool:
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# field.rectangle = field.small_field_canvas.create_rectangle(player.current_x, player.current_y, player.current_x + player.step - 2,
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# player.current_y + player.step - 2, width=3, outline='blue2')
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# else:
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# if direction == "East" and field.small_field_canvas.coords(field.rectangle)[0] + player.step < FRAME_WIDTH:
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# field.small_field_canvas.move(field.rectangle, player.step, 0)
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# elif direction == "West" and field.small_field_canvas.coords(field.rectangle)[0] > player.x_start:
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# field.small_field_canvas.move(field.rectangle, -player.step, 0)
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# elif direction == "North" and field.small_field_canvas.coords(field.rectangle)[1] > player.y_start:
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# field.small_field_canvas.move(field.rectangle, 0, -player.step)
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# elif direction == "South" and field.small_field_canvas.coords(field.rectangle)[1] + player.step < FRAME_HEIGHT:
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# field.small_field_canvas.move(field.rectangle, 0, player.step)
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def Next_direction(side):
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def Next_direction(side):
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# Define next direction
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# Define next direction
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current_direction = player.direction
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current_direction = player.direction
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@ -181,15 +165,33 @@ def MouseClickEvent(event):
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for i in range(0, len(field.canvas_small_images)):
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for i in range(0, len(field.canvas_small_images)):
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print(field.small_field_canvas.coords(field.canvas_small_images[i]))
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print(field.small_field_canvas.coords(field.canvas_small_images[i]))
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print("Lewy przycisk myszy zostal nacisniety!")
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print("Lewy przycisk myszy zostal nacisniety!")
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node = Node()
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node = nd.Node()
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print(node.state.coord, node.state.direction, node.action, node.parent)
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print(node.state.coord, node.state.direction, node.action, node.parent)
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node.state.coord = field.small_field_canvas.coords(field.canvas_small_images[5])
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node.state = nd.State()
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node.state.direction = "N"
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node.state.coord = field.small_field_canvas.coords(player.image_canvas_id)
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node.action = "l"
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node.state.direction = "east"
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node.parent = 1
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#node.state.coord = field.small_field_canvas.coords(field.canvas_small_images[5])
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print(node.state.coord, node.state.direction, node.parent, node.action)
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start_position = field.small_field_canvas.coords(player.image_canvas_id)
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end_position = []
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print("Pierwsza pozycja: {} {}".format(start_position[0], start_position[1]))
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#print(node.state.coord, node.state.direction, node.parent, node.action)
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print("Pozycje myszy: {} {}".format(event.x, event.y))
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print("Pozycje myszy: {} {}".format(event.x, event.y))
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for i in range(0, len(field.canvas_small_images)):
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img_coords = field.small_field_canvas.coords(field.canvas_small_images[i])
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if (img_coords[0] <= event.x and event.x <= img_coords[0] + IMAGE_SIZE) and (img_coords[1] <= event.y and event.y <= img_coords[1] + IMAGE_SIZE):
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end_position = img_coords
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if len(end_position) == 2:
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print("Koncowa pozycja: {} {}".format(end_position[0], end_position[1]))
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# Successor - only east
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list_node_state = nd.successor(node.state)
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for i in range(0, len(list_node_state)):
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print('Node{} = State: {} {}, Parent: {} {}, Action: {}'.format(i + 1, list_node_state[i].state.coord, list_node_state[i].state.direction, list_node_state[i].parent.coord, list_node_state[i].parent.direction, list_node_state[i].action))
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def PutMines(mines_array):
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def PutMines(mines_array):
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counter = 0
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counter = 0
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