mirror of
https://github.com/matrix-construct/construct
synced 2024-11-04 21:08:57 +01:00
217 lines
7.5 KiB
C++
217 lines
7.5 KiB
C++
// Matrix Construct
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//
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// Copyright (C) Matrix Construct Developers, Authors & Contributors
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// Copyright (C) 2016-2018 Jason Volk <jason@zemos.net>
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//
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// Permission to use, copy, modify, and/or distribute this software for any
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// purpose with or without fee is hereby granted, provided that the above
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// copyright notice and this permission notice is present in all copies. The
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// full license for this software is available in the LICENSE file.
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#pragma once
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#define HAVE_IRCD_OPENSSL_H
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// Forward declarations for OpenSSL because it is not included here. Note
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// that these are declared in the extern namespace outside of ircd:: but
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// match those in the OpenSSL headers and should not be too much trouble.
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struct ssl_st;
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struct ssl_ctx_st;
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struct ssl_cipher_st;
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struct rsa_st;
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struct x509_st;
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struct x509_store_ctx_st;
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struct bignum_st;
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struct bignum_ctx;
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struct bio_st;
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struct evp_pkey_st;
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struct ec_group_st;
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struct ec_point_st;
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struct ec_key_st;
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struct dh_st;
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/// OpenSSL library interface. Provides things we need to expose from OpenSSL
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/// to the rest of the project.
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namespace ircd::openssl
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{
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IRCD_EXCEPTION(ircd::error, error)
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IRCD_EXCEPTION(error, buffer_error)
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struct init;
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struct bignum;
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// typedef analogues
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using SSL = ::ssl_st;
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using SSL_CTX = ::ssl_ctx_st;
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using SSL_CIPHER = ::ssl_cipher_st;
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using RSA = ::rsa_st;
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using X509 = ::x509_st;
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using X509_STORE_CTX = ::x509_store_ctx_st;
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using BIGNUM = ::bignum_st;
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using BN_CTX = ::bignum_ctx;
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using EVP_PKEY = ::evp_pkey_st;
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using BIO = ::bio_st;
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using EC_GROUP = ::ec_group_st;
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using EC_POINT = ::ec_point_st;
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using EC_KEY = ::ec_key_st;
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using DH = ::dh_st;
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// Observers
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string_view error_string(const mutable_buffer &buf, const ulong &);
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ulong peek_error();
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// Using these will clobber other libraries (like boost); so don't
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ulong get_error();
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void clear_error();
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// Envelope suite
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EVP_PKEY &read_pem_pub(EVP_PKEY &out, const string_view &pem);
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EVP_PKEY &read_pem_priv(EVP_PKEY &out, const string_view &pem);
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string_view write_pem_pub(const mutable_buffer &out, const EVP_PKEY &);
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string_view write_pem_priv(const mutable_buffer &out, const EVP_PKEY &);
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void set(EVP_PKEY &out, RSA &in);
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void set(EVP_PKEY &out, EC_KEY &in);
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// RSA suite
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void check(const RSA &);
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bool check(const RSA &, std::nothrow_t);
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size_t size(const RSA &); // RSA_size() / mod size in bytes
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string_view print(const mutable_buffer &buf, const RSA &, const off_t &offset = 0);
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RSA &genrsa(RSA &out, const uint &bits = 2048, const uint &e = 0x10001);
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void genrsa(const string_view &skfile, const string_view &pkfile, const json::object &opts = {});
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// EC suite
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extern const EC_GROUP *secp256k1;
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void check(const EC_KEY &);
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bool check(const EC_KEY &, const std::nothrow_t);
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string_view print(const mutable_buffer &buf, const EC_KEY &, const off_t &offset = 0);
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void genec(const string_view &skfile, const string_view &pkfile, const EC_GROUP *const & = secp256k1);
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// DH suite
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extern const size_t DH_DEFAULT_GEN;
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extern const size_t DH_DEFAULT_BITS;
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extern const string_view rfc3526_dh_params_pem;
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DH &gendh(DH &, const uint &bits = DH_DEFAULT_BITS, const uint &gen = DH_DEFAULT_GEN);
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string_view gendh(const mutable_buffer &, const uint &bits = DH_DEFAULT_BITS, const uint &gen = DH_DEFAULT_GEN);
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void gendh(const string_view &dhfile, const uint &bits = DH_DEFAULT_BITS, const uint &gen = DH_DEFAULT_GEN);
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// X.509 suite
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const_buffer i2d(const mutable_buffer &out, const X509 &);
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const_buffer cert2d(const mutable_buffer &out, const string_view &pem);
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X509 &read_pem(X509 &out, const string_view &pem);
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string_view write_pem(const mutable_buffer &out, const X509 &);
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string_view print(const mutable_buffer &buf, const X509 &, ulong flags = -1);
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string_view printX509(const mutable_buffer &buf, const string_view &pem, ulong flags = -1);
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string_view genX509(const mutable_buffer &out, EVP_PKEY &, const json::object &opts);
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string_view genX509_rsa(const mutable_buffer &out, const json::object &opts);
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string_view genX509_ec(const mutable_buffer &out, const json::object &opts);
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string_view print_subject(const mutable_buffer &buf, const X509 &, ulong flags = -1);
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string_view print_subject(const mutable_buffer &buf, const string_view &pem, ulong flags = -1);
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string_view subject_common_name(const mutable_buffer &out, const X509 &);
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time_t not_before(const X509 &);
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time_t not_after(const X509 &);
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std::string stringify(const X509 &);
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const X509 &peer_cert(const SSL &);
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X509 &peer_cert(SSL &);
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const X509 &cert(const SSL_CTX &);
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X509 &cert(SSL_CTX &);
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int get_error(const X509_STORE_CTX &);
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const char *cert_error_string(const long &);
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const char *get_error_string(const X509_STORE_CTX &);
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uint get_error_depth(const X509_STORE_CTX &);
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const X509 ¤t_cert(const X509_STORE_CTX &);
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X509 ¤t_cert(X509_STORE_CTX &);
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// Cipher suite
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string_view name(const SSL_CIPHER &);
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const SSL_CIPHER *current_cipher(const SSL &);
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string_view shared_ciphers(const mutable_buffer &buf, const SSL &);
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string_view cipher_list(const SSL &, const int &priority);
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std::string cipher_list(const SSL_CTX &, const int &priority = 0);
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void set_cipher_list(SSL &, const std::string &list);
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void set_cipher_list(SSL_CTX &, const std::string &list);
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void set_ecdh_auto(SSL_CTX &, const bool & = true);
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void set_ecdh_auto(SSL &, const bool & = true);
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void set_tmp_ecdh(SSL_CTX &, EC_KEY &);
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void set_curves(SSL_CTX &, std::string list);
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void set_curves(SSL &, std::string list);
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// SNI suite
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string_view server_name(const SSL &); // provided by client
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void server_name(SSL &, const string_view &); // set by client
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// Header version; library version
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extern const info::versions version_api, version_abi;
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extern const info::versions libressl_version_api;
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}
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/// OpenSSL BIO convenience utils and wraps; also secure file IO closures
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namespace ircd::openssl::bio
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{
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// Presents a memory BIO closure hiding boilerplate
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using closure = std::function<void (BIO *const &)>;
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string_view write(const mutable_buffer &, const closure &);
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void read(const const_buffer &, const closure &);
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// Presents a secure buffer file IO closure for writing to path
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using mb_closure = std::function<string_view (const mutable_buffer &)>;
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void write_file(const string_view &path, const mb_closure &closure, const size_t &bufsz = 64_KiB);
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// Presents a secure buffer file IO closure with data read from path
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using cb_closure = std::function<void (const string_view &)>;
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void read_file(const string_view &path, const cb_closure &closure);
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}
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// OpenSSL BIGNUM convenience utils and wraps.
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namespace ircd::openssl
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{
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size_t size(const BIGNUM *const &); // bytes binary
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mutable_buffer data(const mutable_buffer &out, const BIGNUM *const &); // le
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string_view u2a(const mutable_buffer &out, const BIGNUM *const &);
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}
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/// Light semantic-complete wrapper for BIGNUM.
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class ircd::openssl::bignum
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{
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BIGNUM *a;
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public:
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const BIGNUM *get() const;
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BIGNUM *get();
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BIGNUM *release();
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size_t bits() const;
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size_t bytes() const;
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explicit operator uint128_t() const;
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operator const BIGNUM *() const;
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operator const BIGNUM &() const;
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operator BIGNUM *const &();
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operator BIGNUM **();
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operator BIGNUM &();
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// default constructor does not BN_new()
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bignum()
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:a{nullptr}
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{}
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// acquisitional constructor for OpenSSL API return values
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explicit bignum(BIGNUM *const &a)
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:a{a}
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{}
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explicit bignum(const uint128_t &val);
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bignum(const const_buffer &bin); // le
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explicit bignum(const BIGNUM &a);
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bignum(const bignum &);
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bignum(bignum &&) noexcept;
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bignum &operator=(const bignum &);
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bignum &operator=(bignum &&) noexcept;
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~bignum() noexcept;
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};
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struct ircd::openssl::init
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{
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init();
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~init() noexcept;
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};
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