forked from EvergreenCrypto/docker-finance
root: macro: crypto: add random.C
Generates CSPRNG numbers of various types (impl-specific).
This commit is contained in:
141
container/src/root/macro/crypto/random.C
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141
container/src/root/macro/crypto/random.C
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// docker-finance | modern accounting for the power-user
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//
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// Copyright (C) 2024 Aaron Fiore (Founder, Evergreen Crypto LLC)
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <https://www.gnu.org/licenses/>.
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//! \file
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//! \author Aaron Fiore (Founder, Evergreen Crypto LLC)
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//! \note File intended to be loaded into ROOT.cern framework / Cling interpreter
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//! \since docker-finance 1.0.0
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#ifndef CONTAINER_SRC_ROOT_MACRO_CRYPTO_RANDOM_C_
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#define CONTAINER_SRC_ROOT_MACRO_CRYPTO_RANDOM_C_
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#include <iostream>
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#include <map>
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#include <string>
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#include "../common/crypto.hh"
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//! \namespace docker_finance
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//! \since docker-finance 1.0.0
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namespace docker_finance
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{
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//! \namespace docker_finance::macro
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//! \brief ROOT macros
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//! \since docker-finance 1.0.0
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namespace macro
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{
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//! \namespace docker_finance::macro::crypto
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//! \brief ROOT cryptographic-based macros
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//! \since docker-finance 1.0.0
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namespace crypto
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{
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namespace common = ::docker_finance::macro::common;
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namespace libsodium = common::crypto::libsodium;
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namespace cryptopp = common::crypto::cryptopp;
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namespace botan = common::crypto::botan;
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//! \brief CSPRNG macro
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class Random final
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{
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using t_rng = std::map<std::string, size_t>;
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public:
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Random() = default;
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~Random() = default;
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Random(const Random&) = delete;
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Random& operator=(const Random&) = delete;
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Random(Random&&) = default;
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Random& operator=(Random&&) = default;
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protected:
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//! \brief Botan RNG
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//! \return t_rng Random map to print (label, num)
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static t_rng botan_generate()
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{
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t_rng rng;
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rng["int16_t (unsupported)"] = 0;
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rng["int32_t (unsupported)"] = 0;
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rng["uint16_t"] = botan::g_Random->generate<uint16_t>();
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rng["uint32_t"] = botan::g_Random->generate<uint32_t>();
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return rng;
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}
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//! \brief Crypto++ RNG
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//! \return t_rng Random map to print (label, num)
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static t_rng cryptopp_generate()
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{
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t_rng rng;
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rng["int16_t"] = cryptopp::g_Random->generate<int16_t>();
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rng["int32_t"] = cryptopp::g_Random->generate<int32_t>();
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rng["uint16_t"] = cryptopp::g_Random->generate<uint16_t>();
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rng["uint32_t"] = cryptopp::g_Random->generate<uint32_t>();
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return rng;
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}
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//! \brief libsodium RNG
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//! \return t_rng Random map to print (label, num)
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static t_rng libsodium_generate()
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{
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t_rng rng;
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rng["int16_t (unsupported)"] = 0;
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rng["int32_t (unsupported)"] = 0;
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rng["uint16_t"] = libsodium::g_Random->generate<uint16_t>();
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rng["uint32_t"] = libsodium::g_Random->generate<uint32_t>();
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return rng;
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}
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public:
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//! \brief Print t_rng Random map of CSPRNG numbers
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static void generate()
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{
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auto print = [](const std::string& title, const t_rng& rng) {
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std::cout << title << "\n";
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for (const auto& [label, num] : rng)
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{
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std::cout << label << ": " << num << "\n";
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}
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};
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print("\nRNG (Botan):\n", Random::botan_generate());
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print("\nRNG (Crypto++):\n", Random::cryptopp_generate());
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print("\nRNG (libsodium):\n", Random::libsodium_generate());
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std::cout << std::endl;
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}
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//! \brief Wrapper to Random generator
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static void run() { Random::generate(); }
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};
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} // namespace crypto
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} // namespace macro
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} // namespace docker_finance
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#endif // CONTAINER_SRC_ROOT_MACRO_CRYPTO_RANDOM_C_
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// # vim: sw=2 sts=2 si ai et
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