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+2
-1
@@ -7,7 +7,8 @@
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[org.clojure/tools.cli "1.0.219"]
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[org.apache.tika/tika-core "1.28.5"]
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[org.apache.tika/tika-langdetect "1.28.5"]
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[cheshire "5.12.0"]]
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[cheshire "5.12.0"]
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[org.clojure/math.combinatorics "0.2.0"]]
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:main ^:skip-aot cipher-analytical-machine.core
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:java-source-paths ["src/main/java"]
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:target-path "target/%s"
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@@ -11,6 +11,16 @@
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(inc (get acc val 0))))
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{} text))
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(defn reverse-count-characters
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"Convert a map of pairs to a map where the characters grouped by the count and a count is the key."
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[count-map]
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(reduce
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(fn [acc [symbol count]]
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(->> (conj (get acc count []) symbol)
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(into [])
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(assoc acc count)))
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{} count-map))
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(defn chi-squared-letter-statistic
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"To calculate the frequency distribution of a letter."
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[letter-count letter-frequence length-text]
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@@ -0,0 +1,38 @@
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(ns cipher-analytical-machine.analyzers.simple-substitution
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(:require [clojure.string :as cs]
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[clojure.math.combinatorics :as comb]
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[cipher-analytical-machine.ciphers.simple-substitution :as ss]
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[cipher-analytical-machine.analyzers.analyzers :as analyzers]
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[cipher-analytical-machine.analyzers.caesar :as caesar])
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(:gen-class))
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(defn get-possible-key-vector
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"Convert a possible key map to a vector of possible keys. For example, if you have a map: {\\a [\\a \\b \\c] \\b [\\b \\c] \\c [\\a \\c]}, then the vector is [[\\a \\b \\c] [\\b \\c] [\\a \\c]]."
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[possible-key-map symbols]
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(reduce
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(fn [acc el]
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(conj acc (get possible-key-map el)))
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[] symbols))
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(defn get-possible-key-vector-from-reversed-count-map
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"Convert a reversed count map to a vector. Example, from {2 [\\a \\b] 1 [\\d] 3 [\\e]} to [[\\e] [\\a \\b] [\\d]])."
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[reversed-count-map]
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(->> reversed-count-map
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(into [])
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(sort-by #(- (first %)))
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(map second)
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(into [])))
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(defn get-all-permutation-for-block
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"Return a vector for all possible blocks that can be made from a vector of symbols."
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[symbols]
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(->> (comb/permutations symbols)
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(map cs/join)
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(into [])))
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(defn get-possible-keys
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"Return possible keys for a possible key vector. For example, if you have a map: {\\a [\\a \\b \\c] \\b [\\b \\c] \\c [\\a \\c]}, then the vector is [[\\a \\b \\c] [\\b \\c] [\\a \\c]] and keys (\"aba\" \"abc\" ...)."
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[possible-key-vector]
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(->> (apply comb/cartesian-product possible-key-vector)
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(map cs/join)))
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@@ -9,7 +9,8 @@
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(let [analyzer (:analyzer options)
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message (:message options)
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symbols (:symbols options)
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frequencies symbol-frequencies/english-letter-frequencies]
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frequencies (-> (get options :language "en")
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(symbol-frequencies/default-frequency-factory))]
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(cond
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(= analyzer "Chi^2")
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(caesar-analyzers/get-plaintext message symbols frequencies)
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@@ -1,7 +1,9 @@
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(ns cipher-analytical-machine.cli.actions.cryptography
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(:require
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[clojure.string :as cs]
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[cipher-analytical-machine.ciphers.caesar :as caesar]
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[cipher-analytical-machine.ciphers.simple-substitution :as ss]
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[cipher-analytical-machine.ciphers.gamma :as gamma]
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[cipher-analytical-machine.parsers.parsers :as ps]
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[cipher-analytical-machine.parsers.simple-substitution :as pss])
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(:gen-class))
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@@ -38,6 +40,20 @@
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substitution-table (get data "table")]
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(ss/decrypt-message-with-caesar message key substitution-table symbols)))))
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(defn gamma-actions
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[options arguments action-type]
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(let [message (:message options)
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key (->> (cs/split (:key options) #",")
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(map #(Integer/parseInt %))
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(into []))
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symbols (:symbols options)]
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(cond
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(= action-type :encrypt)
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(gamma/encrypt-message key symbols message)
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(= action-type :decrypt)
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(gamma/decrypt-message key symbols message))))
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(defn cryptography-actions
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[options arguments action-type]
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(let [cipher (:cipher options)]
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@@ -46,5 +62,8 @@
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(caesar-actions options arguments action-type)
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(= cipher "Simple substitution and Caesar")
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(simple-substitution-with-caesar-actions options arguments action-type))))
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(simple-substitution-with-caesar-actions options arguments action-type)
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(= cipher "Gamma")
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(gamma-actions options arguments action-type))))
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@@ -1,5 +1,7 @@
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(ns cipher-analytical-machine.cli.cli
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(:require
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[cipher-analytical-machine.parsers.parsers :as ps]
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[cipher-analytical-machine.parsers.gamma :as gamma-ps]
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[cipher-analytical-machine.cli.file :as file]
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[cipher-analytical-machine.symbols.factories :as sf]
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[cipher-analytical-machine.cli.options :as options]
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@@ -77,6 +79,15 @@
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(or (contains? options :encrypt)
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(contains? options :decrypt)))
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(cond
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(and (= (:cipher options) "Caesar")
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(false? (ps/int-string? (:key options))))
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{:exit-message (error-msg ["Please, use the key format: [+-](integer)!!! Example: 10, +9, -7."])}
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(and (= (:cipher options) "Gamma")
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(false? (gamma-ps/key? (:key options))))
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{:exit-message (error-msg ["Please, use the key format: [+-](integer),[+-](integer),[+-](integer) !!! Example: 10,+9,-7."])}
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(contains? options :encrypt)
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{:options options :arguments arguments :action-type :encrypt}
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@@ -22,7 +22,7 @@
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(option-values-as-list option values)))
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(def cipher-options
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#{"Caesar" "Simple substitution and Caesar"})
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#{"Caesar" "Simple substitution and Caesar" "Gamma"})
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(def default-cipher "Caesar")
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@@ -0,0 +1,9 @@
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(ns cipher-analytical-machine.parsers.gamma
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(:gen-class))
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(defn key?
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"Return true if the string is an key of three integers."
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[str]
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(if (re-matches #"[+-]?\b\d+\b,[+-]?\b\d+\b,[+-]?\b\d+\b" str)
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true false))
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@@ -2,12 +2,18 @@
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(:require [cheshire.core :as cc])
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(:gen-class))
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(defn unsigned-int?
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(defn unsigned-int-string?
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"Return true if the string is an unsigned integer."
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[str]
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(if (re-matches #"\d+" str)
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true false))
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(defn int-string?
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"Return true if the string is an signed integer."
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[str]
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(if (re-matches #"[+-]?\b\d+\b" str)
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true false))
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(defn parse-unsigned-int
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"Return an integer if the argument is an integer."
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[str-or-int]
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@@ -15,7 +21,7 @@
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(int? str-or-int)
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str-or-int
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(unsigned-int? str-or-int)
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(unsigned-int-string? str-or-int)
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(Integer/parseInt str-or-int)
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:else
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@@ -15,14 +15,14 @@
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(defn decode-key
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"Returns the first character if the string is a char. Return the number if the string is a number."
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[str]
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(if (ps/unsigned-int? str)
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(if (ps/unsigned-int-string? str)
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(Integer/parseInt str)
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(first str)))
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(defn decode-pair
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"Decode a numbers as a string and a char as a string"
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[acc [key value]]
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(if (ps/unsigned-int? key)
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(if (ps/unsigned-int-string? key)
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(assoc acc (decode-key key) (decode-key value))
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(assoc acc (decode-key key) value)))
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@@ -38,7 +38,7 @@
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(defn generate-table-or-decode-json
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"It generate the table and return map with the key and the table if the argument is a key. Else it decode the json."
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[key-or-json symbols]
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(if (ps/unsigned-int? key-or-json)
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(if (ps/unsigned-int-string? key-or-json)
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(-> {"key" key-or-json}
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(assoc "table" (ss/generate-substitution-table symbols)))
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(decode-key-and-substitution-table-from-json key-or-json)))
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@@ -77,3 +77,16 @@
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\ 0.138
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})
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(defn default-frequency-factory
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"Returns a default map of letter frequencies for a language"
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[language-code]
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(cond
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(= language-code "en")
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english-letter-frequencies
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(= language-code "uk")
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ukrainian-letter-frequencies
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:else
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english-letter-frequencies))
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@@ -8,6 +8,13 @@
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(is (= {\a 2 \b 1}
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(count-characters "aba")))))
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(deftest reverse-count-characters-test
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(testing "The symbols must be grouped as a vector and the count must be a key."
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(are [count-map expected-map]
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(= expected-map (reverse-count-characters count-map))
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{\a 1 \b 2 \c 1} {1 [\a \c] 2 [\b]}
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{\a 1 \b 2 \c 3} {1 [\a] 2 [\b] 3 [\c]})))
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(deftest chi-squared-letter-statistic-test
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(testing "If the frequence of A is 0.1, the text length is 100 and contains 20 times, then the chi-squared is 10."
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(is (= 10.0
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@@ -0,0 +1,37 @@
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(ns cipher-analytical-machine.analyzers.simple-substitution-test
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(:require
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[clojure.test :refer :all]
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[cipher-analytical-machine.symbols.frequencies :as sf]
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[cipher-analytical-machine.ciphers.simple-substitution :as ss]
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[cipher-analytical-machine.analyzers.simple-substitution :refer :all])
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(:gen-class))
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(deftest get-possible-keys-vector-test
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(testing "The vector must be ordered by symbols"
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(are [possible-keys-map symbols expected-key-vector]
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(= expected-key-vector (get-possible-key-vector possible-keys-map symbols))
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{\a [\a \b] \b [\b \a] \c [\a \c]} "abc" [[\a \b] [\b \a] [\a \c]]
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{\a [\a \b] \c [\b \a] \b [\a \c]} "abc" [[\a \b] [\a \c] [\b \a]])))
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(deftest get-possible-key-vector-from-reversed-count-map-test
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(testing "The block order must be in descending order"
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(are [reversed-count-map expected-key-vector]
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(= expected-key-vector (get-possible-key-vector-from-reversed-count-map reversed-count-map))
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{1 [\a \c] 2 [\b]} [[\b] [\a \c]]
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{2 [\a] 1 [\b] 3 [\c]} [[\c] [\a] [\b]])))
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(deftest get-all-permutation-for-block-test
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(testing "It must return all permutations"
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(are [symbols expected-permutations]
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(= expected-permutations (get-all-permutation-for-block symbols))
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[\a \b] ["ab" "ba"]
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[\a \b \c] ["abc" "acb" "bac" "bca" "cab" "cba"])))
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(deftest get-possible-keys-test
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(testing "The keys must be the all combinations"
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(are [possible-keys-vector expected-keys]
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(= expected-keys (get-possible-keys possible-keys-vector))
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[[\a \b] [\f] [\a \c] [\g]] '("afag" "afcg" "bfag" "bfcg")
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[[\a \b] [\a \c]] '("aa" "ac" "ba" "bc")
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[[\a \b \c] [\a \c] [\b \c]] '("aab" "aac" "acb" "acc" "bab" "bac" "bcb" "bcc" "cab" "cac" "ccb" "ccc"))))
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@@ -0,0 +1,20 @@
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(ns cipher-analytical-machine.parsers.gamma-test
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(:require
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[clojure.test :refer :all]
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[cipher-analytical-machine.parsers.gamma :refer :all]))
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(deftest key?-test
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(testing "The function return true only if the key in the format '%d,%d,%d'."
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(are [str expected]
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(= expected
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(key? str))
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"9" false
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"9,10" false
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"10,9,8" true
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"-10,9,-8" true
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"-10,-9,-8" true
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"asd 10 " false
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" 10 " false
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"-10" false
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"abc" false)))
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@@ -3,16 +3,31 @@
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[clojure.test :refer :all]
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[cipher-analytical-machine.parsers.parsers :refer :all]))
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(deftest unsigned-int?-test
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(deftest unsigned-int-string?-test
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(testing "The function return true only for an unsingned integer as a string."
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(are [str expected]
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(= expected
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(unsigned-int? str))
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(unsigned-int-string? str))
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"9" true
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"9" true
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"10" true
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"asd 10 " false
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" 10 " false
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"-10" false
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"abc" false)))
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(deftest int-string?-test
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(testing "The function return true only for an singned integer as a string."
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(are [str expected]
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(= expected
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(int-string? str))
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"9" true
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"10" true
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"-10" true
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"asd -10 " false
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" -10 " false
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"abc" false)))
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|
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(deftest parse-unsigned-int-test
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(testing "The function parse the integer if the string is an integer."
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(are [str-or-int expected]
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|
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@@ -9,3 +9,13 @@
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(is (= "etaoinsrhldcumfpgwybvkxjqz"
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(map-to-string symbol-map))))))
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(deftest default-frequency-factory-test
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(testing "Factory supports languages: English (en), Ukrainian (uk). If language code is unidentified, then it must have the 'en'."
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(are [language-code expected-map-size]
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(->> (default-frequency-factory language-code)
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count
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(= expected-map-size))
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"en" 26
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"uk" 34
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"Maybe a code" 26)))
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|
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|
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Reference in New Issue
Block a user