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9 Commits
Author SHA1 Message Date
KKlochko dab131a32e Remove the option for FrequencyAnalyzer.
continuous-integration/drone/push Build is passing
2023-10-20 22:04:05 +03:00
KKlochko f465d1112e Remove the test for FrequencyAnalyzer. 2023-10-20 22:03:10 +03:00
KKlochko 5919ba8864 Refactor to move actions to separated files. 2023-10-20 22:01:20 +03:00
KKlochko a56704226b Add the IsNonsense interface for FrequencyAnalyzer.
continuous-integration/drone/push Build is failing
2023-10-14 21:32:56 +03:00
Kryls1fer b53559030f Update the frequency analyzer. 2023-10-14 21:18:50 +03:00
KKlochko ef87a719a3 Add validations to check if a cipher or an analyzer is available.
continuous-integration/drone/push Build is passing
2023-10-14 17:28:21 +03:00
KKlochko 2f0254f677 Add the available ciphers and analyzer for the help. 2023-10-14 17:26:20 +03:00
KKlochko 6339774bd1 Add the analyzer options and their actions. 2023-10-14 17:22:03 +03:00
KKlochko a44fc24bee Refactor to move options to a separated file. 2023-10-14 17:11:36 +03:00
8 changed files with 186 additions and 71 deletions
@@ -1,8 +1,10 @@
(ns cipher-analytical-machine.analyzers.caesar
(:require [cipher-analytical-machine.ciphers.caesar :as caesar]
[clojure.string :as cs]
[cipher-analytical-machine.analyzers.language :as language]
[cipher-analytical-machine.analyzers.analyzers :as ca])
(:import [cipher_analytical_machine.ciphers.caesar Decrypted]
[cipher_analytical_machine.analyzers.caesar IsNonsense]
[cipher_analytical_machine.analyzers.caesar FrequencyAnalyzer])
(:gen-class))
@@ -50,10 +52,13 @@
(defn frequency-analizer-get-plaintext
"Return the plaintext from a ciphertext using simple analizer. The function is case-insensitive."
[ciphertext symbols letter-frequencies-string]
[ciphertext symbols letter-frequencies-string language-code]
(let [decrypt (reify Decrypted
(decrypt [this message key symbols]
(caesar/decrypt-message message key symbols)))]
(-> (new FrequencyAnalyzer ciphertext symbols letter-frequencies-string decrypt)
(caesar/decrypt-message message key symbols)))
is-nonsense (reify IsNonsense
(isNonsense [this message]
(language/is-nonsense? message language-code)))]
(-> (new FrequencyAnalyzer ciphertext symbols letter-frequencies-string decrypt is-nonsense)
.crack)))
@@ -0,0 +1,26 @@
(ns cipher-analytical-machine.cli.actions.cracking
(:require
[cipher-analytical-machine.analyzers.caesar :as caesar-analyzers]
[cipher-analytical-machine.symbols.frequencies :as symbol-frequencies])
(:gen-class))
(defn cracking-caesar
[options arguments]
(let [analyzer (:analyzer options)
message (:message options)
symbols (:symbols options)
frequencies symbol-frequencies/english-letter-frequencies]
(cond
(= analyzer "Chi^2")
(caesar-analyzers/get-plaintext message symbols frequencies)
:else
(caesar-analyzers/get-plaintext message symbols frequencies))))
(defn cracking-actions
[options arguments action-type]
(let [cipher (:cipher options)]
(cond
(= cipher "Caesar")
(cracking-caesar options arguments))))
@@ -0,0 +1,24 @@
(ns cipher-analytical-machine.cli.actions.cryptography
(:require
[cipher-analytical-machine.ciphers.caesar :as caesar])
(:gen-class))
(defn caesar-actions
[options arguments action-type]
(let [message (:message options)
key (Integer/parseInt (:key options))
symbols (:symbols options)]
(cond
(= action-type :encrypt)
(caesar/encrypt-message message key symbols)
(= action-type :decrypt)
(caesar/decrypt-message message key symbols))))
(defn cryptography-actions
[options arguments action-type]
(let [cipher (:cipher options)]
(cond
(= cipher "Caesar")
(caesar-actions options arguments action-type))))
+22 -50
View File
@@ -1,36 +1,14 @@
(ns cipher-analytical-machine.cli.cli
(:require
[cipher-analytical-machine.cli.file :as file]
[cipher-analytical-machine.ciphers.caesar :as caesar]
[cipher-analytical-machine.analyzers.caesar :as caesar-analyzers]
[cipher-analytical-machine.symbols.factories :as sf]
[cipher-analytical-machine.symbols.frequencies :as symbol-frequencies]
[cipher-analytical-machine.cli.options :as options]
[clojure.string :as cs]
[cipher-analytical-machine.cli.actions.cryptography :as cryptography]
[cipher-analytical-machine.cli.actions.cracking :as cracking]
[clojure.tools.cli :refer [parse-opts]])
(:gen-class))
(def cipher-options
#{"Caesar"})
(def language-options
#{"en", "uk"})
(def cli-options
[["-m" "--message MESSAGE" "The message will be encrypted or decrypted."]
["-M" "--message-file MESSAGE-FILE" "The file contains the message that will be encrypted or decrypted."]
["-k" "--key KEY" "The key will be used to encrypt or decrypt."]
["-c" "--cipher CIPHER" "The cipher will be used to encrypt or decrypt a message."
:default "Caesar"]
["-e" "--encrypt" "Encrypt the message."]
["-d" "--decrypt" "Decrypt the message."]
["-s" "--symbols" "The string will be used as a set of symbols for a cipher."
:default (sf/default-symbol-factory "en")]
["-l" "--language CODE" "The string will be used to set a default symbols for a cipher."
:validate [#(contains? language-options %) "Must be a code from the list: en, uk!!!"]]
["-C" "--cracking" "Cracking the encrypted message."]
["-O" "--output-file OUTPUT-FILE" "Save the program output to a file."]
["-h" "--help"]])
(defn usage [options-summary]
(->> ["This is cipher-analytical-machine. It can help you to learn how ciphers works."
""
@@ -38,6 +16,12 @@
""
"Options:"
options-summary
""
"Available values"
""
(options/get-available-cipher-options-as-string)
""
(options/get-available-analyzers-options-as-string)
""]
(cs/join \newline)))
@@ -55,7 +39,7 @@
should exit (with an error message, and optional ok status), or a map
indicating the action the program should take and the options provided."
[args]
(let [{:keys [options arguments errors summary]} (parse-opts args cli-options)]
(let [{:keys [options arguments errors summary]} (parse-opts args options/cli-options)]
(cond
(:help options)
{:exit-message (usage summary) :ok? true}
@@ -77,6 +61,16 @@
(file/is-file-exists? (:output-file options)))
{:exit-message (error-msg ["Please, choose another file!!! Overwriting was prevented!!!"])}
(false? (contains? options/cipher-options (:cipher options)))
{:exit-message (error-msg ["Please, choose an available cipher!!!\n"
(options/get-available-cipher-options-as-string)])}
(and (map-has-keys? options [:cipher, :cracking, :analyzer])
(false? (contains?
(get options/analyzers-options (:cipher options)) (:analyzer options))))
{:exit-message (error-msg ["Please, choose an available analyzer!!!\n"
(options/get-available-analyzers-options-as-string)])}
(and (map-has-keys? options [:cipher, :key])
(or (contains? options :message)
(contains? options :message-file))
@@ -153,38 +147,16 @@
(save-output output options))
(println output))
(defn cracking-actions
[options arguments action-type]
(let [message (:message options)
symbols (:symbols options)
frequencies symbol-frequencies/english-letter-frequencies]
(cond
(= action-type :cracking)
(caesar-analyzers/get-plaintext message symbols frequencies)
)))
(defn crypt-actions
[options arguments action-type]
(let [message (:message options)
key (Integer/parseInt (:key options))
symbols (:symbols options)]
(cond
(= action-type :encrypt)
(caesar/encrypt-message message key symbols)
(= action-type :decrypt)
(caesar/decrypt-message message key symbols))))
(defn actions
[options arguments action-type]
(let [options (load-all-options options)]
(->
(cond
(contains? #{:encrypt :decrypt} action-type)
(crypt-actions options arguments action-type)
(cryptography/cryptography-actions options arguments action-type)
(= action-type :cracking)
(cracking-actions options arguments action-type))
(cracking/cracking-actions options arguments action-type))
(show-and-save-output options))))
@@ -0,0 +1,64 @@
(ns cipher-analytical-machine.cli.options
(:require
[cipher-analytical-machine.symbols.factories :as sf]
[clojure.string :as cs])
(:gen-class))
(defn option-values-as-row
"Return the formatted string of values for an option."
[option values]
(str option ": " (cs/join ", " values)))
(defn option-values-as-list
"Return the formatted string of values for an option as a multiline list."
[option values]
(str option ": \n - " (cs/join "\n - " values)))
(defn map-of-option-value-as-list
"Return the formatted string of values for an option as a multiline list.
The values are a map of pairs (suboption and its options)."
[option values]
(let [values (map #(apply option-values-as-row %) values)]
(option-values-as-list option values)))
(def cipher-options
#{"Caesar"})
(def default-cipher "Caesar")
(defn get-available-cipher-options-as-string
"Return the formatted string of analyzers options."
[]
(option-values-as-row "Ciphers" cipher-options))
(def analyzers-options
{"Caesar" #{"Chi^2"}})
(defn get-available-analyzers-options-as-string
"Return the formatted string of analyzers options."
[]
(map-of-option-value-as-list "Analyzers" analyzers-options))
(def language-options
#{"en", "uk"})
(def default-symbols
(sf/default-symbol-factory "en"))
(def cli-options
[["-m" "--message MESSAGE" "The message will be encrypted or decrypted."]
["-M" "--message-file MESSAGE-FILE" "The file contains the message that will be encrypted or decrypted."]
["-k" "--key KEY" "The key will be used to encrypt or decrypt."]
["-c" "--cipher CIPHER" "The cipher will be used to encrypt or decrypt a message."
:default default-cipher]
["-e" "--encrypt" "Encrypt the message."]
["-d" "--decrypt" "Decrypt the message."]
["-s" "--symbols SYMBOLS" "The string will be used as a set of symbols for a cipher."
:default default-symbols]
["-l" "--language CODE" "The string will be used to set a default symbols for a cipher."
:validate [#(contains? language-options %) "Must be a code from the list: en, uk!!!"]]
["-C" "--cracking" "Cracking the encrypted message."]
["-a" "--analyzer ANALYZER" "The way of cracking."]
["-O" "--output-file OUTPUT-FILE" "Save the program output to a file."]
["-h" "--help"]])
@@ -1,25 +1,53 @@
package cipher_analytical_machine.analyzers.caesar;
import cipher_analytical_machine.analyzers.caesar.IsNonsense;
import cipher_analytical_machine.ciphers.caesar.Decrypted;
import java.util.HashMap;
import java.util.Map;
import java.util.Map.Entry;
public class FrequencyAnalyzer {
private String ciphertext;
private int key;
private String symbols;
private String symbol_frequences;
private Decrypted decryptor;
private IsNonsense isNonsense;
public FrequencyAnalyzer(String ciphertext, String symbols, String symbol_frequences, Decrypted decryptor) {
this.ciphertext = ciphertext;
this.key = 1;
this.symbols = symbols;
this.symbol_frequences = symbol_frequences;
this.decryptor = decryptor;
public FrequencyAnalyzer(String ciphertext, String symbols, String symbol_frequences, Decrypted decryptor, IsNonsense isNonsense) {
this.ciphertext = ciphertext;
this.symbol_frequences = symbol_frequences;
this.symbols = symbols;
this.decryptor = decryptor;
this.isNonsense = isNonsense;
}
public String crack() {
return decryptor.decrypt(ciphertext, key, symbols);
// Знаходимо кількість літер
Map<Character, Integer> encryptedLetterCounts = new HashMap<>();
for (char c : ciphertext.toLowerCase().toCharArray()) {
encryptedLetterCounts.put(c, encryptedLetterCounts.getOrDefault(c, 0) + 1);
}
// Знаходимо букву, яка зустрічається найчастіше
char mostFrequentEncryptedLetter = ' ';
int mostFrequentEncryptedLetterCount = 0;
for (Entry<Character, Integer> entry : encryptedLetterCounts.entrySet()) {
if (entry.getValue() > mostFrequentEncryptedLetterCount) {
mostFrequentEncryptedLetter = entry.getKey();
mostFrequentEncryptedLetterCount = entry.getValue();
}
}
// Обчислимо зміщення
int size = symbols.length();
int indexOfMostFrequentEncryptedLetter = symbols.indexOf(mostFrequentEncryptedLetter);
int indexOfMostFrequentLetter = symbols.indexOf(symbol_frequences.charAt(0));
int shift = (indexOfMostFrequentEncryptedLetter - indexOfMostFrequentLetter) % size;
return decryptor.decrypt(ciphertext, shift, symbols);
}
}
@@ -0,0 +1,6 @@
package cipher_analytical_machine.analyzers.caesar;
public interface IsNonsense {
boolean isNonsense(String message);
}
@@ -74,13 +74,3 @@
(is (= (cs/lower-case plaintext)
(get-plaintext ciphertext symbols frequencies))))))
(deftest frequency-analizer-get-plaintext-test
(let [plaintext "abc"
ciphertext "bca"
key 1
symbols "abc"
frequencies "etaoinsrhldcumfpgwybvkxjqz"]
(testing "The ciphertext is 'bca' and key is 1."
(is (= plaintext
(frequency-analizer-get-plaintext ciphertext symbols frequencies))))))