Files
rippled/src/ripple/protocol/STTx.h
Nik Bougalis e91f18946e Improve STTx construction:
* Remove the ability to construct an empty transaction by type, only
  to then have to add fields to it. Instead, offer a constructor that
  accepts a transaction type and a lambda that can insert fields into
  the STTx during construction.
* Remove now obsolete boost::optional transaction ID.
2015-12-18 16:39:29 -08:00

165 lines
4.4 KiB
C++

//------------------------------------------------------------------------------
/*
This file is part of rippled: https://github.com/ripple/rippled
Copyright (c) 2012, 2013 Ripple Labs Inc.
Permission to use, copy, modify, and/or distribute this software for any
purpose with or without fee is hereby granted, provided that the above
copyright notice and this permission notice appear in all copies.
THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
ANY SPECIAL , DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
*/
//==============================================================================
#ifndef RIPPLE_PROTOCOL_STTX_H_INCLUDED
#define RIPPLE_PROTOCOL_STTX_H_INCLUDED
#include <ripple/protocol/STObject.h>
#include <ripple/protocol/TxFormats.h>
#include <boost/container/flat_set.hpp>
#include <boost/logic/tribool.hpp>
#include <functional>
namespace ripple {
// VFALCO TODO replace these macros with language constants
#define TXN_SQL_NEW 'N'
#define TXN_SQL_CONFLICT 'C'
#define TXN_SQL_HELD 'H'
#define TXN_SQL_VALIDATED 'V'
#define TXN_SQL_INCLUDED 'I'
#define TXN_SQL_UNKNOWN 'U'
class STTx final
: public STObject
, public CountedObject <STTx>
{
public:
static char const* getCountedObjectName () { return "STTx"; }
static std::size_t const minMultiSigners = 1;
static std::size_t const maxMultiSigners = 8;
public:
STTx () = delete;
STTx& operator= (STTx const& other) = delete;
STTx (STTx const& other) = default;
explicit STTx (SerialIter& sit);
explicit STTx (SerialIter&& sit) : STTx(sit) {}
explicit STTx (STObject&& object);
/** Constructs a transaction.
The returned transaction will have the specified type and
any fields that the callback function adds to the object
that's passed in.
*/
STTx (
TxType type,
std::function<void(STObject&)> assembler);
STBase*
copy (std::size_t n, void* buf) const override
{
return emplace(n, buf, *this);
}
STBase*
move (std::size_t n, void* buf) override
{
return emplace(n, buf, std::move(*this));
}
// STObject functions.
SerializedTypeID getSType () const override
{
return STI_TRANSACTION;
}
std::string getFullText () const override;
// Outer transaction functions / signature functions.
Blob getSignature () const;
uint256 getSigningHash () const;
TxType getTxnType () const
{
return tx_type_;
}
Blob getSigningPubKey () const
{
return getFieldVL (sfSigningPubKey);
}
std::uint32_t getSequence () const
{
return getFieldU32 (sfSequence);
}
void setSequence (std::uint32_t seq)
{
return setFieldU32 (sfSequence, seq);
}
boost::container::flat_set<AccountID>
getMentionedAccounts() const;
uint256 getTransactionID () const
{
return tid_;
}
Json::Value getJson (int options) const override;
Json::Value getJson (int options, bool binary) const;
void sign (RippleAddress const& private_key);
bool checkSign(bool allowMultiSign) const;
// SQL Functions with metadata.
static
std::string const&
getMetaSQLInsertReplaceHeader ();
std::string getMetaSQL (
std::uint32_t inLedger, std::string const& escapedMetaData) const;
std::string getMetaSQL (
Serializer rawTxn,
std::uint32_t inLedger,
char status,
std::string const& escapedMetaData) const;
private:
bool checkSingleSign () const;
bool checkMultiSign () const;
uint256 tid_;
TxType tx_type_;
};
bool passesLocalChecks (STObject const& st, std::string&);
/** Sterilize a transaction.
The transaction is serialized and then deserialized,
ensuring that all equivalent transactions are in canonical
form. This also ensures that program metadata such as
the transaction's digest, are all computed.
*/
std::shared_ptr<STTx const>
sterilize (STTx const& stx);
} // ripple
#endif