lokinet/llarp/service/Info.hpp

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#ifndef LLARP_SERVICE_INFO_HPP
#define LLARP_SERVICE_INFO_HPP
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#include <crypto/types.hpp>
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#include <service/types.hpp>
#include <util/bencode.hpp>
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#include <absl/types/optional.h>
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namespace llarp
{
struct Crypto;
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namespace service
{
struct ServiceInfo final : public llarp::IBEncodeMessage
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{
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private:
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llarp::PubKey enckey;
llarp::PubKey signkey;
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public:
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VanityNonce vanity;
using OptNonce = absl::optional< VanityNonce >;
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ServiceInfo() = default;
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ServiceInfo(ServiceInfo&& other)
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{
enckey = std::move(other.enckey);
signkey = std::move(other.signkey);
version = std::move(other.version);
vanity = std::move(other.vanity);
m_CachedAddr = std::move(other.m_CachedAddr);
}
ServiceInfo(const ServiceInfo& other)
: IBEncodeMessage(other.version)
, enckey(other.enckey)
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, signkey(other.signkey)
, vanity(other.vanity)
, m_CachedAddr(other.m_CachedAddr)
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{
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version = other.version;
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}
void
RandomizeVanity()
{
vanity.Randomize();
}
bool
Verify(llarp::Crypto* crypto, const llarp_buffer_t& payload,
const Signature& sig) const;
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const PubKey&
EncryptionPublicKey() const
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{
return enckey;
}
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bool
Update(const byte_t* enc, const byte_t* sign,
const OptNonce& nonce = OptNonce())
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{
enckey = enc;
signkey = sign;
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if(nonce)
{
vanity = nonce.value();
}
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return UpdateAddr();
}
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bool
operator==(const ServiceInfo& other) const
{
return enckey == other.enckey && signkey == other.signkey
&& version == other.version && vanity == other.vanity;
}
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bool
operator!=(const ServiceInfo& other) const
{
return !(*this == other);
}
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ServiceInfo&
operator=(const ServiceInfo& other)
{
enckey = other.enckey;
signkey = other.signkey;
version = other.version;
vanity = other.vanity;
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version = other.version;
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UpdateAddr();
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return *this;
};
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bool
operator<(const ServiceInfo& other) const
{
return Addr() < other.Addr();
}
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friend std::ostream&
operator<<(std::ostream& out, const ServiceInfo& i)
{
return out << "[e=" << i.enckey << " s=" << i.signkey
<< " v=" << i.version << " x=" << i.vanity << "]";
}
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/// .loki address
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std::string
Name() const;
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bool
UpdateAddr();
const Address&
Addr() const
{
return m_CachedAddr;
}
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/// calculate our address
bool CalculateAddress(std::array< byte_t, 32 >& data) const;
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bool
BDecode(llarp_buffer_t* buf) override
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{
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if(IBEncodeMessage::BDecode(buf))
return CalculateAddress(m_CachedAddr.as_array());
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return false;
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}
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bool
BEncode(llarp_buffer_t* buf) const override;
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bool
DecodeKey(const llarp_buffer_t& key, llarp_buffer_t* buf) override;
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private:
Address m_CachedAddr;
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};
} // namespace service
} // namespace llarp
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#endif