libfilezilla
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hash.hpp
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1#ifndef LIBFILEZILLA_HASH_HEADER
2#define LIBFILEZILLA_HASH_HEADER
3
7
8#include "libfilezilla.hpp"
9
10#include <vector>
11#include <string>
12
13namespace fz {
14
17{
18 md5, // insecure
19 sha1, // insecure
20 sha256,
21 sha384,
22 sha512,
23 sha3_256,
24 sha3_384,
25 sha3_512
26};
27
28enum class hmac_algorithm
29{
30 sha1, // insecure
31 sha256,
32 sha512
33};
34
36size_t FZ_PUBLIC_SYMBOL get_digest_size(hash_algorithm);
37
38class buffer;
39
41class FZ_PUBLIC_SYMBOL hash_accumulator final
42{
43public:
46 hash_accumulator(hmac_algorithm algorithm, std::vector<uint8_t> const& key);
47 hash_accumulator(hmac_algorithm algorithm, std::string_view const& key);
49
50 hash_accumulator(hash_accumulator const&) = delete;
51 hash_accumulator& operator=(hash_accumulator const&) = delete;
52
53 size_t digest_size() const;
54
55 void reinit();
56
57 void update(std::string_view const& data);
58 void update(std::basic_string_view<uint8_t> const& data);
59 void update(std::vector<uint8_t> const& data);
60 void update(uint8_t const* data, size_t size);
61 void update(buffer const& data);
62 void update(uint8_t in) {
63 update(&in, 1);
64 }
65
67 void update_uint32_be(uint32_t v);
68
70 void update_with_length(std::string_view const& data);
71
73 std::vector<uint8_t> digest();
74 void digest(uint8_t* out, size_t s);
75
76 operator std::vector<uint8_t>() {
77 return digest();
78 }
79
80 bool is_digest(std::string_view const& ref);
81 bool is_digest(uint8_t const* ref, size_t s);
82
83 template<typename T>
84 hash_accumulator& operator<<(T && in) {
85 update(std::forward<T>(in));
86 return *this;
87 }
88
90 std::vector<std::uint8_t> export_state();
91 bool import_state(std::vector<std::uint8_t> const& state);
92
93 class impl;
94private:
95 impl* impl_;
96};
97
102std::vector<uint8_t> FZ_PUBLIC_SYMBOL md5(std::string_view const& data);
103std::vector<uint8_t> FZ_PUBLIC_SYMBOL md5(std::vector<uint8_t> const& data);
104
106std::vector<uint8_t> FZ_PUBLIC_SYMBOL sha256(std::string_view const& data);
107std::vector<uint8_t> FZ_PUBLIC_SYMBOL sha256(std::vector<uint8_t> const& data);
108
110std::vector<uint8_t> FZ_PUBLIC_SYMBOL sha512(std::string_view const& data);
111std::vector<uint8_t> FZ_PUBLIC_SYMBOL sha512(std::vector<uint8_t> const& data);
112
117std::vector<uint8_t> FZ_PUBLIC_SYMBOL hmac_sha1(std::string_view const& key, std::string_view const& data);
118std::vector<uint8_t> FZ_PUBLIC_SYMBOL hmac_sha1(std::vector<uint8_t> const& key, std::vector<uint8_t> const& data);
119std::vector<uint8_t> FZ_PUBLIC_SYMBOL hmac_sha1(std::vector<uint8_t> const& key, std::string_view const& data);
120std::vector<uint8_t> FZ_PUBLIC_SYMBOL hmac_sha1(std::string_view const& key, std::vector<uint8_t> const& data);
121
123std::vector<uint8_t> FZ_PUBLIC_SYMBOL hmac_sha256(std::string_view const& key, std::string_view const& data);
124std::vector<uint8_t> FZ_PUBLIC_SYMBOL hmac_sha256(std::vector<uint8_t> const& key, std::vector<uint8_t> const& data);
125std::vector<uint8_t> FZ_PUBLIC_SYMBOL hmac_sha256(std::vector<uint8_t> const& key, std::string_view const& data);
126std::vector<uint8_t> FZ_PUBLIC_SYMBOL hmac_sha256(std::string_view const& key, std::vector<uint8_t> const& data);
127
128std::vector<uint8_t> FZ_PUBLIC_SYMBOL pbkdf2_hmac_sha256(std::basic_string_view<uint8_t> const& password, std::basic_string_view<uint8_t> const& salt, size_t length, unsigned int iterations);
129
130template <typename PasswordContainer, typename SaltContainer,
131 std::enable_if_t<sizeof(typename PasswordContainer::value_type) == sizeof(uint8_t) &&
132 sizeof(typename SaltContainer::value_type) == sizeof(uint8_t)>* = nullptr>
133std::vector<uint8_t> pbkdf2_hmac_sha256(PasswordContainer const& password, SaltContainer const& salt, size_t length, unsigned int iterations)
134{
135 return pbkdf2_hmac_sha256(std::basic_string_view<uint8_t>(reinterpret_cast<uint8_t const*>(password.data()), password.size()),
136 std::basic_string_view<uint8_t>(reinterpret_cast<uint8_t const*>(salt.data()), salt.size()),
137 length, iterations);
138}
139}
140
141#endif
The buffer class is a simple buffer where data can be appended at the end and consumed at the front....
Definition buffer.hpp:27
Accumulator for hashing large amounts of data.
Definition hash.hpp:42
std::vector< std::uint8_t > export_state()
Currently only implemented for SHA1.
std::vector< uint8_t > digest()
Returns the raw digest and reinitializes the accumulator.
hash_accumulator(hash_algorithm algorithm)
Creates an initialized accumulator for the passed algorithm.
void update_with_length(std::string_view const &data)
Also feeds length, as uint32 in network byte order, to the hash.
void update_uint32_be(uint32_t v)
If platform is little-endian, converts to big-endian, aka network byte order, before feeding the hash...
Sets some global macros and further includes string.hpp.
The namespace used by libfilezilla.
Definition apply.hpp:17
hash_algorithm
List of supported hashing algorithms.
Definition hash.hpp:17
std::vector< uint8_t > md5(std::string_view const &data)
Standard MD5.
size_t get_digest_size(hash_algorithm)
Returns digest size in bytes.
std::vector< uint8_t > hmac_sha1(std::string_view const &key, std::string_view const &data)
Standard HMAC using SHA1.
std::vector< uint8_t > sha512(std::string_view const &data)
Standard SHA512.
std::vector< uint8_t > sha256(std::string_view const &data)
Standard SHA256.
std::vector< uint8_t > hmac_sha256(std::string_view const &key, std::string_view const &data)
Standard HMAC using SHA256.