cmCryptoHash: New ByteHash methods that return a byte vector
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@ -65,43 +65,57 @@ std::string cmCryptoHash::ByteHashToString(
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return res;
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return res;
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}
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}
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std::string cmCryptoHash::HashString(const std::string& input)
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std::vector<unsigned char> cmCryptoHash::ByteHashString(
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const std::string& input)
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{
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{
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this->Initialize();
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this->Initialize();
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this->Append(reinterpret_cast<unsigned char const*>(input.c_str()),
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this->Append(reinterpret_cast<unsigned char const*>(input.c_str()),
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static_cast<int>(input.size()));
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static_cast<int>(input.size()));
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return ByteHashToString(this->Finalize());
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return this->Finalize();
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}
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std::vector<unsigned char> cmCryptoHash::ByteHashFile(const std::string& file)
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{
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cmsys::ifstream fin(file.c_str(), std::ios::in | std::ios::binary);
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if (fin) {
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this->Initialize();
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{
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// Should be efficient enough on most system:
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cm_sha2_uint64_t buffer[512];
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char* buffer_c = reinterpret_cast<char*>(buffer);
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unsigned char const* buffer_uc =
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reinterpret_cast<unsigned char const*>(buffer);
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// This copy loop is very sensitive on certain platforms with
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// slightly broken stream libraries (like HPUX). Normally, it is
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// incorrect to not check the error condition on the fin.read()
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// before using the data, but the fin.gcount() will be zero if an
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// error occurred. Therefore, the loop should be safe everywhere.
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while (fin) {
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fin.read(buffer_c, sizeof(buffer));
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if (int gcount = static_cast<int>(fin.gcount())) {
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this->Append(buffer_uc, gcount);
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}
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}
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}
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if (fin.eof()) {
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// Success
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return this->Finalize();
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}
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// Finalize anyway
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this->Finalize();
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}
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// Return without success
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return std::vector<unsigned char>();
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}
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std::string cmCryptoHash::HashString(const std::string& input)
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{
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return ByteHashToString(this->ByteHashString(input));
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}
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}
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std::string cmCryptoHash::HashFile(const std::string& file)
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std::string cmCryptoHash::HashFile(const std::string& file)
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{
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{
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cmsys::ifstream fin(file.c_str(), std::ios::in | std::ios::binary);
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return ByteHashToString(this->ByteHashFile(file));
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if (!fin) {
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return "";
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}
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this->Initialize();
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// Should be efficient enough on most system:
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cm_sha2_uint64_t buffer[512];
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char* buffer_c = reinterpret_cast<char*>(buffer);
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unsigned char const* buffer_uc =
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reinterpret_cast<unsigned char const*>(buffer);
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// This copy loop is very sensitive on certain platforms with
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// slightly broken stream libraries (like HPUX). Normally, it is
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// incorrect to not check the error condition on the fin.read()
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// before using the data, but the fin.gcount() will be zero if an
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// error occurred. Therefore, the loop should be safe everywhere.
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while (fin) {
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fin.read(buffer_c, sizeof(buffer));
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if (int gcount = static_cast<int>(fin.gcount())) {
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this->Append(buffer_uc, gcount);
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}
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}
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if (fin.eof()) {
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return ByteHashToString(this->Finalize());
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}
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return "";
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}
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}
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cmCryptoHashMD5::cmCryptoHashMD5()
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cmCryptoHashMD5::cmCryptoHashMD5()
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@ -23,22 +23,37 @@ class cmCryptoHash
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{
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{
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public:
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public:
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virtual ~cmCryptoHash() {}
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virtual ~cmCryptoHash() {}
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/// @brief Returns a new hash generator of the requested type
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/// @brief Returns a new hash generator of the requested type
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/// @arg algo Hash type name. Supported hash types are
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/// @arg algo Hash type name. Supported hash types are
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/// MD5, SHA1, SHA224, SHA256, SHA384, SHA512
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/// MD5, SHA1, SHA224, SHA256, SHA384, SHA512
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/// @return A valid auto pointer if algo is supported or
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/// @return A valid auto pointer if algo is supported or
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/// an invalid/NULL pointer otherwise
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/// an invalid/NULL pointer otherwise
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static CM_AUTO_PTR<cmCryptoHash> New(const char* algo);
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static CM_AUTO_PTR<cmCryptoHash> New(const char* algo);
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/// @brief Converts a hex character to its binary value (4 bits)
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/// @brief Converts a hex character to its binary value (4 bits)
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/// @arg input Hex character [0-9a-fA-F].
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/// @arg input Hex character [0-9a-fA-F].
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/// @arg output Binary value of the input character (4 bits)
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/// @arg output Binary value of the input character (4 bits)
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/// @return True if input was a valid hex character
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/// @return True if input was a valid hex character
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static bool IntFromHexDigit(char input, char& output);
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static bool IntFromHexDigit(char input, char& output);
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/// @brief Converts a byte hash to a sequence of hex character pairs
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/// @brief Converts a byte hash to a sequence of hex character pairs
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static std::string ByteHashToString(const std::vector<unsigned char>& hash);
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static std::string ByteHashToString(const std::vector<unsigned char>& hash);
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/// @brief Calculates a binary hash from string input data
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/// @return Binary hash vector
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std::vector<unsigned char> ByteHashString(const std::string& input);
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/// @brief Calculates a binary hash from file content
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/// @see ByteHashString()
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/// @return Non empty binary hash vector if the file was read successfully.
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/// An empty vector otherwise.
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std::vector<unsigned char> ByteHashFile(const std::string& file);
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/// @brief Calculates a hash string from string input data
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/// @brief Calculates a hash string from string input data
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/// @return Sequence of hex characters pairs for each byte of the binary hash
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/// @return Sequence of hex characters pairs for each byte of the binary hash
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std::string HashString(const std::string& input);
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std::string HashString(const std::string& input);
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/// @brief Calculates a hash string from file content
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/// @brief Calculates a hash string from file content
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/// @see HashString()
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/// @see HashString()
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/// @return Non empty hash string if the file was read successfully.
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/// @return Non empty hash string if the file was read successfully.
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