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ConverterFunctions.py
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ConverterFunctions.py
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def ToDecimal(user_input, user_input_type, Mode):
if (Mode == "Byte"):
if (user_input_type == "ASCII"): #ASCII Input does not have spaces even in byte mode - Requires special handling
hexa = user_input.encode("utf-8").hex() #Encode ASCII to bytes, then use the .hex() method which only takes bytes
result = ""
for x in range(0, int(len(hexa)/2), 1):
current_decimal_byte = int(hexa[x*2:(x*2)+2], 16)
result += str(current_decimal_byte) + " "
return result
else:
list_input = user_input.split()
result = ""
for x in range(0, len(list_input), 1):
if (user_input_type == "Hex"):
result += str(int(list_input[x], 16)) + " "
elif (user_input_type == "Octal"):
result += str(int(list_input[x], 8)) + " "
elif (user_input_type == "Binary"):
result += str(int(list_input[x], 2)) + " "
return result
elif (Mode == "Normal"):
if (user_input_type == "ASCII"):
hexa = user_input.encode("utf-8").hex() #Encode ASCII to bytes, then use the .hex() method which only takes bytes
return int(hexa, 16) #Raw value of string
elif (user_input_type == "Hex"):
return int(user_input, 16)
elif (user_input_type == "Octal"):
return int(user_input, 8)
elif (user_input_type == "Binary"):
return int(user_input, 2)
def ToHex(user_input, user_input_type, Mode):
if (Mode == "Byte"):
if (user_input_type == "ASCII"):
hexa = user_input.encode("utf-8").hex() #Encode ASCII to bytes, then use the .hex() method which only takes bytes
result = ""
for x in range(0, int(len(hexa)/2), 1):
result += str(hexa[x*2:(x*2)+2]) + " "
return result
else:
list_input = user_input.split()
result = ""
for x in range(0, len(list_input), 1):
if (user_input_type == "Octal"):
result += str(hex(int(list_input[x], 8))[2:]) + " "#Convert to decimal, then to octal
elif (user_input_type == "Decimal"):
result += str(hex(int(list_input[x]))[2:]) + " "
elif (user_input_type == "Binary"):
result += str(hex(int(list_input[x], 2))[2:]) + " "
return result
elif (Mode == "Normal"):
if (user_input_type == "ASCII"):
return user_input.encode("utf-8").hex()
elif (user_input_type == "Octal"):
return hex(int(user_input, 8))[2:] #Convert to decimal, then to octal
elif (user_input_type == "Decimal"):
return hex(int(user_input))[2:]
elif (user_input_type == "Binary"):
return hex(int(user_input, 2))[2:]
def ToOctal(user_input, user_input_type, Mode):
if (Mode == "Byte"):
if (user_input_type == "ASCII"):
hexa = user_input.encode("utf-8").hex() #Encode ASCII to bytes, then use the .hex() method which only takes bytes
result = ""
for x in range(0, int(len(hexa)/2), 1):
current_octal_byte = oct(int(hexa[x*2:(x*2)+2], 16))[2:]
result += str(current_octal_byte) + " "
return result
else:
list_input = user_input.split()
result = ""
for x in range(0, len(list_input), 1):
if (user_input_type == "Hex"):
result += str(oct(int(list_input[x], 16))[2:]) + " "#Convert to decimal, then to octal
elif (user_input_type == "Decimal"):
result += str(oct(int(list_input[x]))[2:]) + " "
elif (user_input_type == "Binary"):
result += str(oct(int(list_input[x], 2))[2:]) + " "
return result
elif (Mode == "Normal"):
if (user_input_type == "ASCII"):
return oct(int(user_input.encode("utf-8").hex(), 16))[2:]
elif (user_input_type == "Octal"):
return oct(int(user_input, 8))[2:] #Convert to decimal, then to octal
elif (user_input_type == "Decimal"):
return oct(int(user_input))[2:]
elif (user_input_type == "Binary"):
return oct(int(user_input, 2))[2:]
def ToASCII(user_input, user_input_type, Mode):
if (Mode == "Byte"):
if (user_input_type == "Hex"):
hexa_string = user_input.replace(" ", "") #Remove any spaces in hexa string
return bytes.fromhex(hexa_string).decode('utf-8')
elif (user_input_type == "Octal"):
strings = user_input.split(" ")
result = ""
for x in range(0, len(strings), 1): #Convert to decimal, then ASCII
decimal = int(strings[x], 8)
result += chr(decimal)
return result
elif (user_input_type == "Decimal"):
strings = user_input.split(" ")
result = ""
for x in range(0, len(strings), 1):
result += chr(int(strings[x]))
return result
elif (user_input_type == "Binary"):
strings = user_input.split(" ")
result = ""
for x in range(0, len(strings), 1):
decimal = int(strings[x], 2)
result += chr(decimal)
return result
elif (Mode == "Normal"):
if (user_input_type == "Hex"):
return bytes.fromhex(user_input).decode('utf-8')
def ToBinary(user_input, user_input_type, Mode):
if (Mode == "Byte"):
if (user_input_type == "ASCII"):
hexa = user_input.encode("utf-8").hex() #Encode ASCII to bytes, then use the .hex() method which only takes bytes
result = ""
for x in range(0, int(len(hexa)/2), 1):
current_decimal_byte = bin(int(hexa[x*2:(x*2)+2], 16))[2:]
result += str(current_decimal_byte) + " "
return result
else:
list_input = user_input.split()
result = ""
for x in range(0, len(list_input), 1):
if (user_input_type == "Hex"):
result += str(bin(int(list_input[x], 16))[2:]) + " "#Convert to decimal, then to octal
elif (user_input_type == "Decimal"):
result += str(bin(int(list_input[x]))[2:]) + " "
elif (user_input_type == "Octal"):
result += str(bin(int(list_input[x], 8))[2:]) + " "
return result
elif (Mode == "Normal"):
if (user_input_type == "ASCII"):
return bin(int(user_input.encode("utf-8").hex(), 16))[2:]
elif (user_input_type == "Hex"):
return bin(int(user_input, 16))[2:] #Convert to decimal, then to binary
elif (user_input_type == "Decimal"):
return bin(int(user_input))[2:]
elif (user_input_type == "Octal"):
return bin(int(user_input, 8))[2:]