#!/usr/bin/env python3 from RuneRunner import RuneRunner from RuneText import Rune, RuneText import lib as LIB ######################################### # RuneSolver : Generic parent class handles interrupts and text highlight ######################################### class RuneSolver(RuneRunner): def __init__(self): super().__init__() self.reset() def reset(self): self.INTERRUPT = 'áš ' self.INTERRUPT_POS = [] # '1' for first occurrence of INTERRUPT def highlight_interrupt(self): return self.highlight_rune(self.INTERRUPT, self.INTERRUPT_POS) def run(self, data=None): if data: self.input.load(data=data) self.interrupt_counter = 0 self.start(self.cipher_callback) def cipher_callback(self, encrypted_data, index): obj = encrypted_data[index] is_interrupt = obj.rune == self.INTERRUPT if is_interrupt: self.interrupt_counter += 1 skip = is_interrupt and self.interrupt_counter in self.INTERRUPT_POS mark_this = self.mark_char_at(index) if not skip: obj = self.cipher(obj, (index, encrypted_data)) mark_next = self.mark_char_at(index) return obj, mark_this, mark_next def cipher(self, rune, context): raise NotImplementedError # must subclass def mark_char_at(self, position): return False def __str__(self): txt = f'DATA: {len(self.input.data) if self.input.data else 0} bytes' if self.input.loaded_file: txt += f' (file: {self.input.loaded_file})' else: txt += f' (manual input)' return txt + f'\ninterrupt jumps: {self.INTERRUPT_POS}' ######################################### # SequenceSolver : Decrypt runes with sequential function ######################################### class SequenceSolver(RuneSolver): def __init__(self): super().__init__() self.seq_index = 0 self.reset() def reset(self): super().reset() self.FN = None def run(self, data=None): self.seq_index = 0 assert(self.FN) super().run(data=data) def cipher(self, rune, context): x = self.FN(self.seq_index, rune) self.seq_index += 1 return x def __str__(self): return super().__str__() + f'\nf(x): {self.FN}' ######################################### # RunningKeySolver : Decrypt runes with key; handles shift, rotation, etc. ######################################### class RunningKeySolver(RuneSolver): def __init__(self): super().__init__() self.reset() def reset(self): super().reset() self.KEY_DATA = [] # the key material self.KEY_INVERT = False # ABCD -> ZYXW self.KEY_SHIFT = 0 # ABCD -> DABC self.KEY_ROTATE = 0 # ABCD -> ZABC self.KEY_OFFSET = 0 # ABCD -> __ABCD self.KEY_POST_PAD = 0 # ABCD -> ABCD__ def run(self, data=None): self.k_current_pos = 0 self.k_len = len(self.KEY_DATA) self.k_full_len = self.KEY_OFFSET + self.k_len + self.KEY_POST_PAD super().run(data=data) def mark_char_at(self, position): return self.active_key_pos() != -1 def active_key_pos(self): i = self.k_current_pos - self.KEY_OFFSET if i >= 0 and i < self.k_len: if self.KEY_DATA[i] != 29: # placeholder for unknown return i return -1 def cipher(self, rune, context): r_idx = rune.index if self.KEY_INVERT: r_idx = 28 - r_idx pos = self.active_key_pos() if pos != -1: i = (pos + self.KEY_SHIFT) % self.k_len r_idx = (self.decrypt(r_idx, i) - self.KEY_ROTATE) % 29 # rotate_key if self.k_full_len > 0: # e.g., for key invert without a key self.k_current_pos = (self.k_current_pos + 1) % self.k_full_len return Rune(i=r_idx) def decrypt(self, rune_index, key_index): raise NotImplementedError # must subclass def key__str__(self): return self.KEY_DATA # you should override this def key__str__basic_runes(self): return RuneText(self.KEY_DATA).description(indexWhitespace=True) def __str__(self): txt = super().__str__() txt += f'\nkey: {self.key__str__()}' txt += f'\nkey invert: {self.KEY_INVERT}' txt += f'\nkey offset: {self.KEY_OFFSET} runes' txt += f'\nkey post pad: {self.KEY_POST_PAD} runes' txt += f'\nkey shift: {self.KEY_SHIFT} indices' txt += f'\nkey rotate: {self.KEY_ROTATE} indices' return txt ######################################### # VigenereSolver : Decrypt runes with an array of indices ######################################### class VigenereSolver(RunningKeySolver): def decrypt(self, rune_index, key_index): return rune_index - self.KEY_DATA[key_index] def key__str__(self): return self.key__str__basic_runes() ######################################### # AffineSolver : Decrypt runes with an array of (s, t) affine keys ######################################### class AffineSolver(RunningKeySolver): def decrypt(self, rune_index, key_index): return LIB.affine_decrypt(rune_index, self.KEY_DATA[key_index]) ######################################### # AutokeySolver : Decrypts runes by using previously decrypted ones as input ######################################### class AutokeySolver(RunningKeySolver): def run(self, data=None): self.running_key = self.KEY_DATA[:] super().run(data=data) def decrypt(self, rune_index, key_index): rune_index = (rune_index - self.running_key.pop(0)) % 29 self.running_key.append(rune_index) return rune_index def key__str__(self): return self.key__str__basic_runes()