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mnemonics: support for arbitrary (if multiple of 4 bytes) length data
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@ -236,11 +236,13 @@ namespace crypto
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/*!
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* \brief Converts seed words to bytes (secret key).
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* \param words String containing the words separated by spaces.
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* \param dst To put the secret key restored from the words.
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* \param dst To put the secret data restored from the words.
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* \param len The number of bytes to expect, 0 if unknown
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* \param duplicate If true and len is not zero, we accept half the data, and duplicate it
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* \param language_name Language of the seed as found gets written here.
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* \return false if not a multiple of 3 words, or if word is not in the words list
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*/
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bool words_to_bytes(std::string words, crypto::secret_key& dst,
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bool words_to_bytes(std::string words, std::string& dst, size_t len, bool duplicate,
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std::string &language_name)
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{
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std::vector<std::string> seed;
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@ -248,15 +250,23 @@ namespace crypto
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boost::algorithm::trim(words);
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boost::split(seed, words, boost::is_any_of(" "), boost::token_compress_on);
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// error on non-compliant word list
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if (seed.size() != seed_length/2 && seed.size() != seed_length &&
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seed.size() != seed_length + 1)
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{
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if (len % 4)
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return false;
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}
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// If it is seed with a checksum.
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bool has_checksum = seed.size() == (seed_length + 1);
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bool has_checksum = true;
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if (len)
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{
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// error on non-compliant word list
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const size_t expected = len * 8 * 3 / 32;
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if (seed.size() != expected/2 && seed.size() != expected &&
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seed.size() != expected + 1)
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{
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return false;
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}
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// If it is seed with a checksum.
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has_checksum = seed.size() == (expected + 1);
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}
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std::vector<uint32_t> matched_indices;
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Language::Base *language;
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@ -290,20 +300,43 @@ namespace crypto
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if (!(val % word_list_length == w1)) return false;
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memcpy(dst.data + i * 4, &val, 4); // copy 4 bytes to position
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dst.append((const char*)&val, 4); // copy 4 bytes to position
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}
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std::string wlist_copy = words;
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if (seed.size() == seed_length/2)
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if (len > 0 && duplicate)
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{
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memcpy(dst.data+16, dst.data, 16); // if electrum 12-word seed, duplicate
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wlist_copy += ' ';
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wlist_copy += words;
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const size_t expected = len * 3 / 32;
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std::string wlist_copy = words;
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if (seed.size() == expected/2)
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{
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dst.append(dst); // if electrum 12-word seed, duplicate
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wlist_copy += ' ';
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wlist_copy += words;
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}
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}
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return true;
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}
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/*!
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* \brief Converts seed words to bytes (secret key).
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* \param words String containing the words separated by spaces.
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* \param dst To put the secret key restored from the words.
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* \param language_name Language of the seed as found gets written here.
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* \return false if not a multiple of 3 words, or if word is not in the words list
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*/
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bool words_to_bytes(std::string words, crypto::secret_key& dst,
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std::string &language_name)
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{
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std::string s;
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if (!words_to_bytes(words, s, sizeof(dst), true, language_name))
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return false;
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if (s.size() != sizeof(dst))
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return false;
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dst = *(const crypto::secret_key*)s.data();
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return true;
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}
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/*!
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* \brief Converts bytes (secret key) to seed words.
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* \param src Secret key
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@ -311,11 +344,11 @@ namespace crypto
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* \param language_name Seed language name
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* \return true if successful false if not. Unsuccessful if wrong key size.
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*/
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bool bytes_to_words(const crypto::secret_key& src, std::string& words,
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bool bytes_to_words(const char *src, size_t len, std::string& words,
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const std::string &language_name)
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{
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if (sizeof(src.data) % 4 != 0 || sizeof(src.data) == 0) return false;
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if (len % 4 != 0 || len == 0) return false;
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Language::Base *language;
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if (language_name == "English")
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@ -376,13 +409,13 @@ namespace crypto
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uint32_t word_list_length = word_list.size();
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// 8 bytes -> 3 words. 8 digits base 16 -> 3 digits base 1626
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for (unsigned int i=0; i < sizeof(src.data)/4; i++, words += ' ')
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for (unsigned int i=0; i < len/4; i++, words += ' ')
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{
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uint32_t w1, w2, w3;
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uint32_t val;
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memcpy(&val, (src.data) + (i * 4), 4);
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memcpy(&val, src + (i * 4), 4);
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w1 = val % word_list_length;
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w2 = ((val / word_list_length) + w1) % word_list_length;
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@ -404,6 +437,12 @@ namespace crypto
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return true;
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}
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bool bytes_to_words(const crypto::secret_key& src, std::string& words,
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const std::string &language_name)
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{
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return bytes_to_words(src.data, sizeof(src), words, language_name);
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}
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/*!
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* \brief Gets a list of seed languages that are supported.
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* \param languages The vector is set to the list of languages.
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@ -61,6 +61,17 @@ namespace crypto
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const int seed_length = 24;
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const std::string old_language_name = "EnglishOld";
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/*!
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* \brief Converts seed words to bytes (secret key).
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* \param words String containing the words separated by spaces.
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* \param dst To put the secret data restored from the words.
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* \param len The number of bytes to expect, 0 if unknown
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* \param duplicate If true and len is not zero, we accept half the data, and duplicate it
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* \param language_name Language of the seed as found gets written here.
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* \return false if not a multiple of 3 words, or if word is not in the words list
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*/
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bool words_to_bytes(std::string words, std::string& dst, size_t len, bool duplicate,
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std::string &language_name);
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/*!
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* \brief Converts seed words to bytes (secret key).
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* \param words String containing the words separated by spaces.
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@ -71,6 +82,17 @@ namespace crypto
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bool words_to_bytes(std::string words, crypto::secret_key& dst,
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std::string &language_name);
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/*!
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* \brief Converts bytes to seed words.
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* \param src Secret data
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* \param len Secret data length in bytes (positive multiples of 4 only)
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* \param words Space delimited concatenated words get written here.
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* \param language_name Seed language name
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* \return true if successful false if not. Unsuccessful if wrong key size.
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*/
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bool bytes_to_words(const char *src, size_t len, std::string& words,
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const std::string &language_name);
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/*!
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* \brief Converts bytes (secret key) to seed words.
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* \param src Secret key
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