mirror of
https://github.com/zerotier/ZeroTierOne.git
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253 lines
7.6 KiB
C++
253 lines
7.6 KiB
C++
/*
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* Copyright (c)2013-2020 ZeroTier, Inc.
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*
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* Use of this software is governed by the Business Source License included
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* in the LICENSE.TXT file in the project's root directory.
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*
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* Change Date: 2024-01-01
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*
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* On the date above, in accordance with the Business Source License, use
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* of this software will be governed by version 2.0 of the Apache License.
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*/
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/****/
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#ifndef ZT_IDENTITY_HPP
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#define ZT_IDENTITY_HPP
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#include "Constants.hpp"
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#include "Utils.hpp"
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#include "Address.hpp"
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#include "C25519.hpp"
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#include "SHA512.hpp"
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#include "ECC384.hpp"
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#include "TriviallyCopyable.hpp"
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#include "Fingerprint.hpp"
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#include "Containers.hpp"
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#define ZT_IDENTITY_STRING_BUFFER_LENGTH 1024
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#define ZT_IDENTITY_C25519_PUBLIC_KEY_SIZE ZT_C25519_COMBINED_PUBLIC_KEY_SIZE
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#define ZT_IDENTITY_C25519_PRIVATE_KEY_SIZE ZT_C25519_COMBINED_PRIVATE_KEY_SIZE
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#define ZT_IDENTITY_P384_COMPOUND_PUBLIC_KEY_SIZE (1 + ZT_C25519_COMBINED_PUBLIC_KEY_SIZE + ZT_ECC384_PUBLIC_KEY_SIZE)
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#define ZT_IDENTITY_P384_COMPOUND_PRIVATE_KEY_SIZE (ZT_C25519_COMBINED_PRIVATE_KEY_SIZE + ZT_ECC384_PRIVATE_KEY_SIZE)
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#define ZT_IDENTITY_MARSHAL_SIZE_MAX (ZT_ADDRESS_LENGTH + 4 + ZT_IDENTITY_P384_COMPOUND_PUBLIC_KEY_SIZE + ZT_IDENTITY_P384_COMPOUND_PRIVATE_KEY_SIZE)
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namespace ZeroTier {
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/**
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* A ZeroTier identity
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*
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* Identities currently come in two types: type 0 identities based on just Curve25519
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* and Ed25519 and type 1 identities that include both a 25519 key pair and a NIST P-384
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* key pair. Type 1 identities use P-384 for signatures but use both key pairs at once
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* (hashing both keys together) for key agreement with other type 1 identities, and can
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* agree with type 0 identities using only Curve25519.
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*
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* Type 1 identities are better in many ways but type 0 will remain the default until
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* 1.x nodes are pretty much dead in the wild.
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*/
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class Identity : public TriviallyCopyable
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{
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public:
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/**
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* Identity type -- numeric values of these enums are protocol constants
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*/
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enum Type
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{
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C25519 = ZT_IDENTITY_TYPE_C25519, // Type 0 -- Curve25519 and Ed25519 (1.x and 2.x, default)
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P384 = ZT_IDENTITY_TYPE_P384 // Type 1 -- NIST P-384 with linked Curve25519/Ed25519 secondaries (2.x+)
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};
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/**
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* A nil/empty identity instance
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*/
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static const Identity NIL;
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ZT_INLINE Identity() noexcept
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{
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Utils::memoryLock(this, sizeof(Identity));
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memoryZero(this);
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}
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/**
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* Construct identity from string
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*
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* If the identity is not basically valid (no deep checking is done) the result will
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* be a null identity.
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*
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* @param str Identity in canonical string format
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*/
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explicit ZT_INLINE Identity(const char *str)
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{
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Utils::memoryLock(this, sizeof(Identity));
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fromString(str);
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}
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ZT_INLINE ~Identity()
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{
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Utils::memoryUnlock(this, sizeof(Identity));
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Utils::burn(reinterpret_cast<void *>(&this->m_priv), sizeof(this->m_priv));
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}
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/**
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* Set identity to NIL value (all zero)
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*/
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ZT_INLINE void zero() noexcept
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{ memoryZero(this); }
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/**
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* @return Identity type (undefined if identity is null or invalid)
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*/
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ZT_INLINE Type type() const noexcept
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{ return m_type; }
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/**
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* Generate a new identity (address, key pair)
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*
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* This is a time consuming operation taking up to 5-10 seconds on some slower systems.
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*
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* @param t Type of identity to generate
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* @return False if there was an error such as type being an invalid value
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*/
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bool generate(Type t);
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/**
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* Check the validity of this identity's address
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*
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* For type 0 identities this is slightly time consuming. For type 1 identities it's
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* instantaneous. It should be done when a new identity is accepted for the very first
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* time.
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*
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* @return True if validation check passes
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*/
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bool locallyValidate() const noexcept;
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/**
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* @return True if this identity contains a private key
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*/
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ZT_INLINE bool hasPrivate() const noexcept
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{ return m_hasPrivate; }
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/**
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* @return This identity's address
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*/
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ZT_INLINE Address address() const noexcept
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{ return Address(m_fp.address); }
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/**
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* @return Full fingerprint of this identity (address plus SHA384 of keys)
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*/
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ZT_INLINE const Fingerprint &fingerprint() const noexcept
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{ return m_fp; }
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/**
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* Compute a hash of this identity's public and private keys.
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*
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* If there is no private key or the identity is NIL the buffer is filled with zero.
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*
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* @param h Buffer to store SHA384 hash
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*/
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void hashWithPrivate(uint8_t h[ZT_FINGERPRINT_HASH_SIZE]) const;
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/**
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* Sign a message with this identity (private key required)
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*
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* The signature buffer should be large enough for the largest
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* signature, which is currently 96 bytes.
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*
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* @param data Data to sign
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* @param len Length of data
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* @param sig Buffer to receive signature
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* @param siglen Length of buffer
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* @return Number of bytes actually written to sig or 0 on error
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*/
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unsigned int sign(const void *data, unsigned int len, void *sig, unsigned int siglen) const;
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/**
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* Verify a message signature against this identity
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*
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* @param data Data to check
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* @param len Length of data
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* @param signature Signature bytes
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* @param siglen Length of signature in bytes
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* @return True if signature validates and data integrity checks
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*/
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bool verify(const void *data, unsigned int len, const void *sig, unsigned int siglen) const;
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/**
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* Shortcut method to perform key agreement with another identity
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*
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* This identity must have a private key. (Check hasPrivate())
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*
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* @param id Identity to agree with
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* @param key Result parameter to fill with key bytes
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* @return Was agreement successful?
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*/
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bool agree(const Identity &id, uint8_t key[ZT_SYMMETRIC_KEY_SIZE]) const;
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/**
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* Serialize to a more human-friendly string
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*
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* @param includePrivate If true, include private key (if it exists)
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* @param buf Buffer to store string
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* @return ASCII string representation of identity (pointer to buf)
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*/
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char *toString(bool includePrivate, char buf[ZT_IDENTITY_STRING_BUFFER_LENGTH]) const;
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ZT_INLINE String toString(const bool includePrivate = false) const
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{
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char buf[ZT_IDENTITY_STRING_BUFFER_LENGTH];
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toString(includePrivate, buf);
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return String(buf);
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}
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/**
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* Deserialize a human-friendly string
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*
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* Note: validation is for the format only. The locallyValidate() method
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* must be used to check signature and address/key correspondence.
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*
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* @param str String to deserialize
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* @return True if deserialization appears successful
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*/
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bool fromString(const char *str);
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/**
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* @return True if this identity contains something
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*/
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explicit ZT_INLINE operator bool() const noexcept
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{ return (m_fp); }
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ZT_INLINE unsigned long hashCode() const noexcept
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{ return m_fp.hashCode(); }
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ZT_INLINE bool operator==(const Identity &id) const noexcept
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{ return (m_fp == id.m_fp); }
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ZT_INLINE bool operator!=(const Identity &id) const noexcept
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{ return !(*this == id); }
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ZT_INLINE bool operator<(const Identity &id) const noexcept
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{ return (m_fp < id.m_fp); }
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ZT_INLINE bool operator>(const Identity &id) const noexcept
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{ return (id < *this); }
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ZT_INLINE bool operator<=(const Identity &id) const noexcept
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{ return !(id < *this); }
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ZT_INLINE bool operator>=(const Identity &id) const noexcept
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{ return !(*this < id); }
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static constexpr int marshalSizeMax() noexcept
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{ return ZT_IDENTITY_MARSHAL_SIZE_MAX; }
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int marshal(uint8_t data[ZT_IDENTITY_MARSHAL_SIZE_MAX], bool includePrivate = false) const noexcept;
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int unmarshal(const uint8_t *data, int len) noexcept;
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private:
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void m_computeHash();
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Fingerprint m_fp;
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uint8_t m_priv[ZT_IDENTITY_P384_COMPOUND_PRIVATE_KEY_SIZE];
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uint8_t m_pub[ZT_IDENTITY_P384_COMPOUND_PUBLIC_KEY_SIZE];
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Type m_type; // _type determines which fields in _priv and _pub are used
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bool m_hasPrivate;
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};
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} // namespace ZeroTier
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#endif
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