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bwe_ps3_code_parser.py
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import os
import re
import sys
import io
import zlib
import base64
os.environ["PYGAME_HIDE_SUPPORT_PROMPT"] = "1"
import pygame
import threading
from contextlib import redirect_stdout
import ctypes
def set_window_title(title):
# Encode the title to ANSI
title_ansi = title.encode('ansi', 'ignore')
ctypes.windll.kernel32.SetConsoleTitleA(title_ansi)
set_window_title('BwE PS3 Code Parser')
# -------------------------------------------------------------------
# Chiptunes!!!!!!!!!!!!!!!!!!!!
# -------------------------------------------------------------------
encoded_songs = [
"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",
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J5UX+NN3EbCH6OwPtGBpud2/v4UcaNTW1Ccf27TU11dUbNz733Pr1a9Y8/bRev2yZTqfVajRZWZmZSiWqlmLffEOfJ1X+4kXkRFrF4skQuBe/G4/85eY3qXmpN1OKs0LpTy+6BQrV1LSRkT/96cKF848wSkoofFegy911qOsRxi5U63WtiR786mDXwb9vdHV5+sy3APm/muurnQ==",
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Y84/8j+46sqA+nH1unjyuNXSQZQkyWWaevUV5g8WKok7drZ8v++CukzN/FLRGt02x2wbCGxZWZhyL7RkIb406f8u5IG4nC78yQ4sHdES3hnf5I+ggqzfs0kwVv9cJd9POmKa407EX+N3TNNMGECdjADex4PR0EPPYhvcIWqJ+DOoL6QrpD+hlM80Iux+EaGaoZ3TMvISzjBwz0xLSy+4N7gmy2oK0wpYYVQjon94cp4i8zO0PsAxM7QqwYr38H7mDKNyyWINMm/8ggvaHdYRrfqO4WRmlnNEZdnHmv2/smALMgSbMyewPMbL1v1EK9Gysa0YHv38gpIcV0DlFK1RG6tk9/E4/JlwAIR0Rmql9LDtcZWa2g9UdBq2gloA+ht9goBE3BfYGgm6BKlI1S3mTekqfEw3SRLb+pj1SNf0KX3XLiXlKnmMguCukh6fn2Kz+Zn8L20x4NRCgv+Hf04x+MAeBBm4/CDQEmlCmw842oezOkAFsgGX1N07V4zanjae+sfMG1azWme2zW3ioMbQruG+Kmt/PZPbyunEbwK/c+ONUHcfsZw7WB1k4V6Z1hRiCBm0BhuDuG5Si07M7Qk2AZUMtwZ2hPSEGfCBAx788Vcft4fXgVtQ5ENgDczqAwfT34TYHago2spj9XAMbDOD9AYMAsLsDHU7MwO+IbLtR749Y/QZRy9SL0/VcQ8AgwgSDuMnPitowC3uAiRlDDCHdLGyQybAxbSwrZvUfBE6/PjZxMGNamQyLv2MgyIQNBnVzTH5mf+Id7nSyu0MN3B5ud9iPU3r9BgP6grphWDDbA0E9wQZe59TLYV3BhiAL08F0YCauPqRLoOH14Rbgb/IfZA0y0P6gfgyxI3Y/CwaVEP9BppVtDOni9cNvfk6GDXUwLMFG1Aa9tDvx7mlXuH3cngATVzelO9DiB8PFHGxDkJllZcHdDb4xoLbFHtjDMaM2lo1lnN7B7w7RQ0krZoMwcDKdNj8bkd0+3BCqDzWy7P5Gni7QYWcwLIHGADt8SZuD+mH1LCjxngEwYZjdCb0f4PQE64JN0B/4dQtyMxwANYXogux2hOkgDg7Q9iDe7w/nQ+AgYJn9rP79gTC5TDsDnjhhgaCL5oB+3MJy2FiWABMGF0xwDw+mElZ3kDDGJD4dLCuC2Pz7gkz+ZhbiRAZwYr4hDKJwMKsIjAOzM+x+vRyLPcDChFPSD6qzBv0G/MxsM24K6A0cRAf8HHb/PtzOGMQcTuJVbIffGh0MB2rF7PC7og3xM7PgBLHgfWzrVXuZb/Mnr7Ne/ydHWsRom3/DkN5frkLfvKrvw324D/fhv1L8atiHjw778NFhHz467MNHh3346LAPHx2elLjvKyB5bQjytNNG/f3f+zvk2/epzYJPVbzsbXhs3fpq6fYtOUWcDfizQl3VBzd/XXli8X0f3ldSjivCDbju+90fLop56siqD6qWfrItFRU0FYo+qW4wflS6nr8Myws/Vr0Ra9yVN2V74YoHX+IfPsqt+6hm+47dOlPe5QyOMus9297PlyXly7SRBfErllpLD0fy8rT3Lnj3BQAUWG2DCrOKdJs/+POUgyqdojRSqDv8tq48QdwSXgry8c1fPMjPW3YfKOAde7325gR+Y0ZK0Qb5MeW3wBC5XdO181ipet/x9KPq9GJVhnjb0orvEzmiR/evePJIy+Ox+/9eU/OKsgtc3lIl2VuZahChBzaaVr0qnflY4Z8VpoeEaOQLWrN0Pa4CS5LWb95xCLx3ctkrh4vZZkmsIvKTVwVt1ibJ1rYEnqmmtrSKn78KJGSXgvUVvOVf2ThAvrTRtv8VTtJNWVIxf+EWVZtk1Y5t+I7tikXpbVnxWxZVSl5v2LiqVlH56m/Xgz8nNb616sxhE68MbNCtytMLZXXWjnv2Hd6NflS5O6dee/CnFXodrJ34BAFgIQBZxFMybs0/j0t633CDscnDjTLG7Qq8nv7nRLSudTX9HKS7S68tM/7rZ3H14xd/DtafxdUT45uPY2VlT1zX+ZORa8zsuWNlFlGP61r4XpcsBxO9IMaFbfd/W2mWbt5Tp9l6pE6/YXNhZWzCdhF7r+2VzW//bsMuPG459682TbYsUxi9eUNJEqpVhhuOrpfFNqnZ2qdb7t3Os17OrV/++A7VU+mLtGojJtVVx/FL971ZvTirynq0cG+OerltO69xo7ahmS+swB+Wb90p+FSw4lhsFTALDxXNeUH17lYBV8LVssuTtELMekgsf21jZL0KZCzVvp5SjUnY960RaUE2f3fB+znmlkN7PszCGlpf+4vW+JJ186svvPJcvkixOdcmfl2slDYbjDlsflmLKGNbsUK2xVq+/PeFanDHqpeeSgf38hSmxqSo5+JEJi674dOXeGYVD3A5e6NkS1VN+WpRfZtpHfiQZ8yoABIciypZsTeDhx1rEpu1gqTNBWVxbFGxIFZ0IKZ57bYCbFdUVDnA8WytaG/oZaEwSaGLKhOgNmubdX2VccXjgnWH+XV/qeFUFGqrZ4XrRO+3vfKcWCbIMRsWHV70uFBeXHx2g1FUJTpwFmRoVAVGHq6KMquTgKkSlxUpq1NE2IHMqArptihQUAUiFYKkx/NKM9tjjFnW96VROm4pmlPDixQ8Hne5oBRsLLG2R8j3GXnlNVJOrO51/ixN3KKGanHZWxXiUtvqsvR6kQrXNKzmtpjlL5Wa8zG28bAe62qTLFeVxQERti2xad2x8DKwuDk0tUopXvTsui6NLH1RXbR175ZSk0StB2HWyEpJglKGajOEZtlqo7LyUZU541lsR6kczW7CDcvBtvwEbUsbp3ltwyGQ29rIXh9eo8gS7NZms6OrqvYoywt12/mPvp6vjuSUS2ONj79UaV7+JN8YA/TqLZvjmh9uM3CrAF8Rq0lJ2GXOB1Ztddy9mwU8q7ExJ9VayTGGq7MMByTlGzBFQpVAnvP6esxUyoutz1Hz+M8VyQU6UYWoUQwU9ZEcJSjkvbDuGD+psj6v+GHRU3mNrTmxVZUFchRPONoiTjDKePm6KC0AVk25RGFbrMB49VKVJvu4CStsORGjW7Rfs+EsXla0GUiiwV6OGjxtwqw1Obz68PLsssVa3KjVGVfbOOWKHeVNGz58oCV6a3ZZXH2WUp0jy1dyMGOGCt8Vy8ay9vKW4l9xo9RyTj1PomtbLltcmfp+1L1oUUFl2+rK1L3Y2m1S9ARfFSMKr8Ri+Y1NmCl/yifh7BOJbU35pnopXiFEq2OSqmfxo0EpCqLKcZCnrOfHYbrYMtOjqkiTzijUcarzDxkyONr6pabSLcciTQfiLKhQhq89gIU2bayScLdKsPAK1RxVPrdLllM9iysrLMfVaxVAqeniWnna9W3WisLSpbyq5dZyFFtUruBhGfJcsDuxXVvA+YSfqt4bKdDEWXVRkfhXc45x5WsPpOia86rkOYDNbWSnthzA15tkQFqaZwPCQ118flcrT5gAZF340vcL2mRWTpwxqVKRqRFosjXvZ7bmNGBCULpO24Wr7tNiHJNZC+vcZhbz2ccXF/NjMNW9BhtbWxanFBsvq/OOs7OreLreFHNUjbWtAFSxm+OiW3hGlS1DJpELlBzATjggNkwBSrFaLym3grjW9ONsieqO/ebVh0zWFbtwA842SmPLeVJFU0Sk3FjA2SsVGhVs0BRl5es0Qg0qUchBjqItTlkgVxjXNzaHSbYtxTgVYa3rG1oXb9uwNzbh7InFNpXJEtaWfygRk8GVFiY6lHtCGxHN37XBWBeJcWRRVs7R9DlaWUqToFkMRC2tidroKn5XUqMxqjmGE65QcvRhwrL8+qjqvJqoGlFNnq41vcaozTSazBmylLKcpty9WRyetTG6SmJU5FRk1cEF3hheJYzVRbXVY9kVWKaxXru6yqwsVCtj+RWhTUv52qOzWoE46oBYegATW49mKrPbwit5vOpMQ3VBjTKdfzwGU+ZoG0VKQ5Y8SsaRKDVYyoHIoISjgssp1TlqnSJWIbbiMKsJQKdli2y7HjWosWat0JZeZ9Phs7gYj727wFQG+GG81sWNmixQmqnG4WSJBRXc9LZ6IcjYmx7e1oVZE+pFVdlHOVJVc84xm0ilD+JpcRN8T4CKcFNOnVnU1ZpZLjRLuA1K82IttABiUq3H5lSZBVpzIbqbz2brg6Z0zeFgACuPEut4mvqc8qVf4Uop1hSkl6jCsZq4ah6HJ6qL5cuMIBPTynPUR9PBcX5i2dp6ebqRpxMqI3kNUbrj+TJJPVt4PN+KHbOECeWxKl6rNlysipJJleZ07fFMjrFqqYIdWRcpj5PjmdZDMSK1tT3boJTnq5vFspyu47kySRMepBFHl1uzQWNr/vt8kSzfYFNrwtoyurS96TqsXlpvyNZimMl4WczTqpOwck7sUWumtRlYJTUCUWO4+rL0rEUA6jm4WGtILTey+VopD9c1sqNls8xmoTKzsZmd1dgm5LFPgFy4+0Tquox6f65OKBdGqpVxGpvAYLWgIrbC91WVvF6BZ6Y8mAoRvGdHICOJwYv+B+Kuf2ji+hcpvv5P+yVgMdleQY/tp5/e/U/BCbK9hh7bST99/Wv0/wff5WYh",
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",
]
current_song_index = 0
def decode_mod_data(encoded_data):
"""Decode from base64 and then decompress the data."""
compressed_data = base64.b64decode(encoded_data)
mod_data = zlib.decompress(compressed_data)
return mod_data
def play_mod_data(mod_data):
"""Initialize pygame mixer and play the MOD data in memory."""
with open(os.devnull, 'w') as f, redirect_stdout(f):
pygame.mixer.init()
# Use BytesIO to play the data in memory
mod_file = io.BytesIO(mod_data)
pygame.mixer.music.load(mod_file)
pygame.mixer.music.set_volume(0.2)
pygame.mixer.music.play(-1) # Loop the music indefinitely
# Keep the script running until the music finishes or is stopped
while pygame.mixer.music.get_busy():
pygame.time.Clock().tick(10)
def play_next_song():
"""Stop current song and start playing the next one in the list."""
global current_song_index
pygame.mixer.music.stop()
song_data = encoded_songs[current_song_index]
mod_data = decode_mod_data(song_data.strip())
music_thread = threading.Thread(target=play_mod_data, args=(mod_data,))
music_thread.daemon = True
music_thread.start()
current_song_index = (current_song_index + 1) % len(encoded_songs)
# -------------------------------------------------------------------
# UI
# -------------------------------------------------------------------
def print_banner() -> str:
"""Generate a fancy multi‐color banner."""
# Attempt to resize terminal (may not work on all terminals)
sys.stdout.write("\x1b[8;{rows};{cols}t".format(rows=32, cols=130))
banner = r"""
__________ ___________
\______ \___ _ _\_ _____/
| | _/\ \/ \/ /| __)_
| | \ \ // \
|______ / \_/\_//_______ /
Offline \/ PS3 Code Parser \/ v1.0.0
"""
# Colors for each banner line, from dark purple to light blue
colors = [
(85, 0, 145), # Dark purple
(99, 43, 153),
(122, 87, 176),
(146, 130, 199),
(169, 173, 222),
(173, 216, 230),
(173, 216, 230) # Light blue
]
os.system("") # Enable ANSI escape codes on some Windows terminals
faded_banner = ""
color_index = 0
for line in banner.splitlines():
r, g, b = colors[color_index]
faded_banner += f"\033[38;2;{r};{g};{b}m{line}\033[0m\n"
color_index = (color_index + 1) % len(colors)
return faded_banner
def fade(text: str) -> str:
"""Applies a green fade effect to each character in 'text'."""
os.system("")
faded = ""
green = 194
for ch in text:
faded += f"\033[38;2;0;{green};199m{ch}\033[0m"
# Decrement green but clamp at 0
green = max(green - 6, 0)
return faded
def gradient_text(text: str, colors: list) -> str:
"""Applies a simple multi‐color cycling gradient across 'text'."""
os.system("")
gradient = ""
color_index = 0
for char in text:
if char != " ":
r, g, b = colors[color_index]
gradient += f"\033[38;2;{r};{g};{b}m{char}\033[0m"
color_index = (color_index + 1) % len(colors)
else:
gradient += char
return gradient
def print_menu():
"""Prints the interactive menu with gradient colors."""
colors = [
(169, 173, 222), # Intermediate colour
(173, 216, 230),
(173, 216, 230)
]
menu_items = [
"M. Turn Off Music",
"N. Play Next Song",
"Q. Quit",
"\nEnter 8‐Character Error Code: "
]
for item in menu_items[:-1]:
print(gradient_text(item, colors))
print(gradient_text(menu_items[-1], colors), end='')
# -------------------------------------------------------------------
# Parse! Or READ -- I don't know.... Parse is more formal?
# -------------------------------------------------------------------
def parse_error_code(code: str):
"""
Reserved Area, Step Number, Error Category, Error Information
"""
code = code.upper().replace(" ", "")
if len(code) != 8 or code[0] != 'A':
return {
"Reserved Area": "N/A",
"Step Number": "N/A",
"Error Category": "N/A",
"Error Information": "Invalid code (Must be 8 chars, start with A)"
}
# Extract parts
reserved_area = code[1]
step_number = code[2:4]
error_category_digit = code[4]
error_information = code[4:] # Last 4 chars
# Reserved Area
if reserved_area == 'F':
reserved_desc = "Frequent Error Due To Main Body Breakdown"
elif reserved_area in "0123456789ABCDEF":
reserved_desc = "Reserved"
else:
return {
"Reserved Area": "Unknown",
"Step Number": "N/A",
"Error Category": "N/A",
"Error Information": "Invalid Reserved Area"
}
# Step Number
if step_number in ["80", "90", "A0"]:
static_states = {
"80": "Power On",
"90": "Power Off",
"A0": "Immediately After Syscon Reset"
}
step_desc = f"Static state ({static_states[step_number]})"
elif "00" <= step_number <= "7F":
step_desc = f"Step Number {step_number} Of Power-On Sequence"
else:
return {
"Reserved Area": reserved_desc,
"Step Number": "Invalid",
"Error Category": "N/A",
"Error Information": "Invalid step number"
}
# Error Category
categories = {
"1": "System Error",
"2": "Fatal Error",
"3": "Fatal Booting Error",
"4": "Data Error"
}
category_desc = categories.get(error_category_digit, "Unknown error category")
# Lookup error in dictionary
error_descriptions = {
# --- 1000-series (System Errors) ---
"1001": "CELL Power/Improper Shutdown (Filtering or NEC/TOKINs)",
"1002": "RSX Power/Overheating (NEC/TOKINs on RSX_VDDC)",
"1004": "AC/DC Power Loss (PSU or Forced Shutdown)",
"1005": "CELL/RSX Power Rail Error (Caps on Some Super Slim Boards)",
"1103": "System Thermal Alert (Older Mullion Syscon or CPU Sensor)",
"1200": "CELL Overheating (Bad TIM or Airflow)",
"1201": "RSX Overheating (Similar Cause as 1200)",
"1203": "CELL VR Overheating (Sensor Issue)",
"1204": "South Bridge Overheating (Thermal Sensor)",
"1205": "EE/GS Overheating (PS2 Hardware Models Only)",
"1301": "CELL PLL Unlock (CPU Damage or Bad Reball)",
"14FF": "Check Stop (Hardware Stuck or Fault, BGA Failure)",
"1601": "CELL Livelock Detection (Console Freeze or Hang)",
"1701": "CELL BE Attention (CPU Fault During Operation)",
"1802": "RSX Initialization Error",
"1900": "RTC Voltage Error",
"1901": "RTC Oscillator Error",
"1902": "RTC Access Error",
"1B01": "CELL Initialization Error (Thermal Sense Line)",
"1B02": "RSX Initialization Error (Thermal Sense Line)",
# --- 2000-series (Fatal Errors) ---
"2001": "CELL Fatal Error (IC1001)",
"2002": "RSX Fatal Error (IC2001)",
"2003": "South Bridge Fatal Error (IC3001)",
"2010": "Clock Generator Error (IC5001)",
"2011": "Clock Generator Error (IC5003)",
"2012": "Clock Generator Error (IC5002)",
"2013": "Clock Generator Error (IC5004)",
"2014": "Clock Error (Bad RSX NEC/TOKINs)",
"2020": "HDMI Error (IC2502)",
"2021": "HDMI or MultiAV Error",
"2022": "DVE Error (IC2406)",
"2024": "AV Error (GPU or Encoder Related)",
"2030": "CELL Thermal Sensor Error (IC1101)",
"2031": "RSX Thermal Sensor Error (IC2101)",
"2033": "South Bridge Thermal Sensor Error (IC3101)",
"2040": "Short on 12V Line (F6300, etc.)",
"2044": "Super Slim Short Circuit (BT/Wi-Fi or 5V Line)",
"2101": "CELL Fatal Error (IC1001)",
"2102": "RSX Fatal Error (IC2001)",
"2103": "South Bridge Fatal Error (IC3001)",
"2110": "Clock Generator Error (IC5001) (Check 5V or F6001)",
"2111": "Clock Generator Error (IC5003)",
"2112": "Clock Generator Error (IC5002)",
"2113": "Clock Generator Error (IC5004)",
"2114": "Possible Clock or GPU Error (Tokin?)",
"2120": "HDMI I/O Error (IC2502) (Check VRM Fuse or GPU BGA)",
"2122": "DVE Error (IC2406, MultiAV)",
"2124": "AV/HDMI Error (Delayed YLOD or GLOD)",
"2130": "CELL Thermal Sensor Error (IC1101)",
"2131": "RSX Thermal Sensor Error (IC2101)",
"2133": "South Bridge Thermal Sensor Error (IC3101)",
"2203": "South Bridge Fatal Error (IC3001)",
"2310": "Fatal Error (Clock or Voltage or SB Initialization)",
# --- 3000-series (Fatal Boot Errors) ---
"3000": "Power Fail (Unspecified)",
"3001": "12V Power Fail (Bad PSU or Short)",
"3002": "Power Fail (Unspecified)",
"3003": "CELL Core Power Fail (VDDC, NEC/TOKIN, VRM)",
"3004": "RSX Core Power Fail (VDDC, NEC/TOKIN, VRM)",
"3005": "RSX Short or Fuse Blow (F7601) on Some Slim Boards",
"3010": "CELL Error (Power Good/Clock/Init) (Possible CPU Damage)",
"3011": "CELL Error (SPI or Power)",
"3012": "CELL Error",
"3013": "CELL SPI Communication Fail (1.2V or Fuse F6302)",
"3020": "CELL Error (Voltage or Step Check) (Possible PSU/Short)",
"3030": "CELL Error (BGA or CPU Defect Suspected)",
"3031": "CELL Reference Clock Error (BGA or Trace Damage)",
"3032": "CELL Reference Clock Error (BGA or Open Line)",
"3033": "CELL Error (RSX VID or CPU Voltage Config)",
"3034": "Bit Training Fail (CELL/RSX/SB Communication, BGA)",
"3035": "CELL-RSX Byte-Training Fail (GPU BGA or Bump Defect)",
"3036": "CELL-RSX Fatal Error (GPU or CPU BGA)",
"3037": "CELL-RSX Fatal Error (GPU or CPU BGA)",
"3038": "CELL-SB Fatal Error (BGA or Bump)",
"3039": "CELL-SB Fatal Error (BGA or Bump)",
"3040": "Flash Controller Error (IC3801)",
"3041": "SB or Flash Init Error (Step #52–60)",
# --- 4000-series (Data Errors) ---
"4001": "CELL Data Error (IC1001)",
"4002": "RSX Data Error (IC2001)",
"4003": "South Bridge Data Error (IC3001)",
"4011": "CELL Data Error (IC1001)",
"4101": "CELL Data Error (IC1001)",
"4102": "RSX Data Error (IC2001)",
"4103": "South Bridge Data Error (IC3001)",
"4111": "CELL Data Error (IC1001)",
"4201": "CELL Data Error (IC1001)",
"4202": "RSX Data Error (IC2001)",
"4203": "South Bridge Data Error (IC3001)",
"4211": "CELL Data Error (IC1001)",
"4212": "RSX Data Error (IC2001)",
"4221": "CELL Data Error (IC1001)",
"4222": "RSX Data Error (IC2001)",
"4231": "CELL Data Error (IC1001)",
"4261": "CELL Data Error (IC1001)",
"4301": "CELL Data Error (IC1001)",
"4302": "RSX Data Error (IC2001)",
"4303": "South Bridge Data Error (IC3001)",
"4311": "CELL Data Error (IC1001)",
"4312": "RSX Data Error (IC2001)",
"4321": "CELL Data Error (IC1001)",
"4322": "RSX Data Error (IC2001)",
"4332": "RSX Data Error (IC2001)",
"4341": "CELL Data Error (IC1001)",
"4401": "CELL or RSX Data Error (IC1001 or IC2001)",
"4402": "CELL or RSX Data Error (IC1001 or IC2001)",
"4403": "CELL or SB Data Error (IC1001 or IC3001)",
"4411": "CELL or RSX Data Error (IC1001 or IC2001)",
"4412": "CELL or RSX Data Error (IC1001 or IC2001)",
"4421": "CELL or RSX Data Error (IC1001 or IC2001)",
"4422": "CELL or RSX Data Error (IC1001 or IC2001)",
"4432": "CELL or RSX Data Error (IC1001 or IC2001)",
"4441": "CELL or SB Data Error (IC1001 or IC3001)",
# --- Misc / Special ---
"5FFF": "CELL or RSX Error (Bricked NOR on Slim/Super Slim)"
}
error_info_desc = error_descriptions.get(error_information, "Unknown error information")
return {
#"Reserved Area": reserved_desc, #Not really required, why bother!
"Step Number": step_desc,
"Error Category": category_desc,
"Error Information": error_info_desc
}
# -------------------------------------------------------------------
# OK HAVE FUN ENJOY!
# -------------------------------------------------------------------
def main():
import pygame
pygame.mixer.init()
# Now the mixer is ready:
play_next_song()
while True:
# 2) Clear screen (Windows or Linux/macOS)
os.system("cls" if os.name == "nt" else "clear")
print(print_banner())
print_menu()
# 3) Get user input
user_input = input().strip().upper()
if user_input == 'M':
pygame.mixer.music.stop()
continue
elif user_input == 'N':
play_next_song()
continue
elif user_input == 'Q':
print("Exiting Program.")
pygame.mixer.quit()
sys.exit(0)
else:
# 4) Validate user input is an 8-hex code like A0801004
pattern = r"^[A-F0-9]{8}$"
if re.fullmatch(pattern, user_input):
parsed_result = parse_error_code(user_input)
# Color gradient for output lines
colors = [
(179, 183, 242),
(183, 226, 240),
(183, 226, 240)
]
# Print each "key: value" with color
print()
for key, value in parsed_result.items():
colored_key = gradient_text(f"{key}:", colors)
#colored_value = gradient_text(f"{value}", colors) #Looks better without this...
print(f"{colored_key} {value}")
else:
# Invalid code format
colors = [
(250, 150, 155), # Medium red
(240, 100, 100) # Darker red
]
print(gradient_text("\nInvalid Input! Please Enter M, N, Q, or an 8-digit Hex Code (e.g., A0801001).", colors))
input("\nPress Enter to Continue...") # Pause
# Run the program bruh
if __name__ == "__main__":
main()