wokring verison on pc
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5
from PIL import ImageGrab.py
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from PIL import ImageGrab.py
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# Just before this line:
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# if screenshot.getpixel((x_area - 896, y_area - 139))[:3] == red_x_color:
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print(f"Calculated coordinates: ({x_area - 896}, {y_area - 139})")
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print(f"Screenshot dimensions: ({screenshot.width}, {screenshot.height})")
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File diff suppressed because it is too large
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231
traderv2.py
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traderv2.py
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import requests
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import subprocess
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import time
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from PIL import Image, ImageGrab
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import logging
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print("")
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# Setup logging
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logging.basicConfig(filename='minecraft_automation_log.txt', level=logging.INFO, format='%(asctime)s: %(message)s')
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left_side_trade_window_area = (2314, 992, 2616, 1465) # Defined area for trader's side
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screenshot = ImageGrab.grab(left_side_trade_window_area)
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xp_potion_color = (238, 231, 153) # XP potion color
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red_x_color = (186, 55, 15) # Red 'X' color
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red_x_areas = [(2505, 1424), (2898, 1122)] # Coordinates where the red 'X' can appear
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def log_and_print(message):
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print(message)
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logging.info(message)
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def post_to_discord(message):
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webhook_url = 'https://discord.com/api/webhooks/1191486208895877150/-pxqBZs6RSUOBFFhPH8SwelQoaU5MEU9XX28fmp90EqNM0G98qkkZxsXfRxu7nN2Ze1X'
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data = {"content": message}
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response = requests.post(webhook_url, json=data)
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log_and_print(f"Posted to Discord: {message}")
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def right_click(x, y):
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move_mouse(x, y)
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log_and_print("Performing right click.")
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subprocess.run(['xdotool', 'click', '3']) # Right-click
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def drag_slider(start_x, start_y, end_x, end_y):
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log_and_print("Dragging slider.")
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move_mouse(start_x, start_y)
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subprocess.run(['xdotool', 'mousedown', '1']) # Left mouse button down
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move_mouse(end_x, end_y)
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subprocess.run(['xdotool', 'mouseup', '1']) # Left mouse button up
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def click(x, y):
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move_mouse(x, y)
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log_and_print("Performing left click.")
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subprocess.run(['xdotool', 'click', '1']) # Left-click
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def shift_click(x, y):
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subprocess.run(['xdotool', 'keyup', 'Super_L', 'Super_R'])
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log_and_print("Performing shift click.")
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move_mouse(x, y)
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time.sleep(0.5) # Added delay before pressing shift
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subprocess.run(['xdotool', 'keydown', 'shift'])
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time.sleep(0.5) # Added delay to ensure shift is held down
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subprocess.run(['xdotool', 'click', '1']) # Left-click
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time.sleep(0.5) # Added delay before releasing shift
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subprocess.run(['xdotool', 'keyup', 'shift'])
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def move_mouse(x, y):
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subprocess.run(['xdotool', 'mousemove', str(x), str(y)])
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def shift_double_click(x, y):
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move_mouse(x, y)
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subprocess.run(['xdotool', 'keydown', 'shift'])
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subprocess.run(['xdotool', 'click', '--repeat', '2', '--delay', '100', '1'])
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subprocess.run(['xdotool', 'keyup', 'shift'])
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def find_and_interact_with_chest(chest_x, chest_y, action_function):
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"""General function for interacting with a chest and performing an action."""
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click(chest_x, chest_y) # Adjust these coordinates to the chest's position
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time.sleep(2) # Wait for the chest to open
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action_function() # Perform the defined action (fill or dump)
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subprocess.run(['xdotool', 'key', 'Escape']) # Close chest
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time.sleep(1)
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def fill_up_emeralds():
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"""Function to be passed to find_and_interact_with_chest for filling up on emeralds."""
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log_and_print("Filling up on emeralds...")
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# Implement your logic here for filling up on emeralds
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# For example, shift_double_click on the emerald stack position
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shift_double_click(2506, 978, 2561, 978) # Adjust coordinates to your setup
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first_run = True # Flag to check if it's the first run
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def focus_minecraft_window():
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global first_run
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log_and_print("Focusing Minecraft window...")
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subprocess.run(['xdotool', 'search', '--name', 'Minecraft*3.20.2 - Multiplayer (3rd-party-Server)', 'windowactivate', '--sync'])
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time.sleep(2)
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if first_run:
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log_and_print("Pressing Esc (first run only)...")
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subprocess.run(['xdotool', 'key', 'Escape'])
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time.sleep(2)
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first_run = False # Set the flag to False after the first run
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def check_trade_window():
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log_and_print("Checking for trade window...")
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trade_window_area = (2317, 994, 3126, 1472) # Defined area
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screenshot = ImageGrab.grab(trade_window_area)
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target_color = (178, 67, 32) # Target color for trade window
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for x in range(screenshot.width):
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for y in range(screenshot.height):
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if screenshot.getpixel((x, y))[:3] == target_color:
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log_and_print("Trade window detected.")
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return True
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log_and_print("Trade window not detected. Adjusting position.")
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adjustment_combinations = [('a', 0.1), ('d', 0.1), ('a', 0.2), ('d', 0.2)]
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for _ in range(5):
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for key, duration in adjustment_combinations:
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subprocess.run(['xdotool', 'keydown', key])
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time.sleep(duration)
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subprocess.run(['xdotool', 'keyup', key])
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time.sleep(0.1)
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subprocess.run(['xdotool', 'click', '3'])
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time.sleep(3)
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screenshot = ImageGrab.grab(trade_window_area)
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for x in range(screenshot.width):
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for y in range(screenshot.height):
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if screenshot.getpixel((x, y))[:3] == target_color:
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log_and_print("Trade window detected after adjustment.")
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return True
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log_and_print("Trade window not found after adjustments.")
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post_to_discord("Trade window not found.")
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return False
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successful_trades = 0
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# main function doing the trades and looking for red x as blocked trades
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def trade_actions():
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global successful_trades
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trader_blocked = False # Initialize as False
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found_x, found_y = None, None # Initialize coordinates for XP potion
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right_click(1168, 306)
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time.sleep(1)
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if not check_trade_window():
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log_and_print("Trade window not detected after adjustments. Stopping script.")
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return False
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drag_slider(2599, 1071, 2598, 1419)
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time.sleep(3)
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log_and_print("Checking for red X")
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trade_window_area = (2317, 994, 3126, 1472) # Defined area
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screenshot = ImageGrab.grab(trade_window_area)
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# Search for red 'X'
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for x in range(screenshot.width):
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for y in range(screenshot.height):
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if screenshot.getpixel((x, y))[:3] == red_x_color:
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log_and_print("Red X found. Trader is blocked.")
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trader_blocked = True
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break # Break the inner loop if red 'X' found
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if trader_blocked:
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break # Break the outer loop if red 'X' found
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# If trader is not blocked, look for XP potion
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if not trader_blocked:
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log_and_print("Looking for XP potion")
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for x in range(screenshot.width):
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for y in range(screenshot.height):
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if screenshot.getpixel((x, y))[:3] == xp_potion_color:
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found_x, found_y = x, y
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log_and_print(f"XP potion found at ({found_x}, {found_y}). Initiating purchase.")
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# Adjust found_x and found_y based on the relative position within the whole screen
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global_x = found_x + 2317 # Add the left offset of the screenshot area
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global_y = found_y + 994 # Add the top offset of the screenshot area
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click(global_x, global_y)
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shift_click(2990, 1119)
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break
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if found_x is not None:
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break
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else:
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log_and_print("XP potion not found. Using fallback coordinates.")
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click(2552, 1433)
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shift_click(2990, 1119)
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click(2551, 1365)
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shift_click(2552, 1433)
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# Exiting trade window and moving to next trade
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log_and_print("Exiting trade window.")
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subprocess.run(['xdotool', 'key', 'Escape'])
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time.sleep(1)
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if trader_blocked:
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log_and_print("Trader was blocked. Moving to the next trader.")
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else:
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log_and_print("Trade successful. Moving to the next trader.")
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successful_trades += 1 # Increment only if trade was successful
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# Prepare for the next trade
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subprocess.run(['xdotool', 'keydown', 'a'])
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time.sleep(0.45)
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subprocess.run(['xdotool', 'keyup', 'a'])
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time.sleep(1)
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return not trader_blocked # Return True if trade was successful, False otherwise
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def hold_key_for_duration(key, duration):
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log_and_print(f"Waiting 5 seconds before holding '{key}' key for {duration} seconds.")
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time.sleep(5) # Delay for 5 seconds
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log_and_print(f"Holding '{key}' key.")
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subprocess.run(['xdotool', 'keydown', key])
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time.sleep(duration)
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subprocess.run(['xdotool', 'keyup', key])
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log_and_print(f"Released '{key}' key.")
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# Function to perform a cycle of trading actions
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def perform_trading_cycle():
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global successful_trades
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successful_trades = 0
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focus_minecraft_window()
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for _ in range(50): # Number of trades to perform
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if not trade_actions():
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break # Stop the script if trade window is not detected
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trade_summary = f"Trading session completed. Trades performed: {successful_trades}"
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post_to_discord(trade_summary)
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# Main loop to run trading cycles and reset position
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def main_loop():
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while True:
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perform_trading_cycle()
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hold_key_for_duration('d', 25) # Adjust the key and duration as needed
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time.sleep(5) # Delay before next cycle starts
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# Run the main loop
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main_loop()
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