Files
rippled/include/xrpl/protocol/STBase.h
Bart 1d42c4f6de refactor: Remove unnecessary copyright notices already covered by LICENSE.md (#5929)
Per XLS-0095, we are taking steps to rename ripple(d) to xrpl(d).

This change specifically removes all copyright notices referencing Ripple, XRPLF, and certain affiliated contributors upon mutual agreement, so the notice in the LICENSE.md file applies throughout. Copyright notices referencing external contributions remain as-is. Duplicate verbiage is also removed.
2025-11-04 08:33:42 +00:00

225 lines
5.2 KiB
C++

#ifndef XRPL_PROTOCOL_STBASE_H_INCLUDED
#define XRPL_PROTOCOL_STBASE_H_INCLUDED
#include <xrpl/basics/contract.h>
#include <xrpl/protocol/SField.h>
#include <xrpl/protocol/Serializer.h>
#include <ostream>
#include <string>
#include <type_traits>
#include <typeinfo>
#include <utility>
namespace ripple {
/// Note, should be treated as flags that can be | and &
struct JsonOptions
{
using underlying_t = unsigned int;
underlying_t value;
enum values : underlying_t {
// clang-format off
none = 0b0000'0000,
include_date = 0b0000'0001,
disable_API_prior_V2 = 0b0000'0010,
// IMPORTANT `_all` must be union of all of the above; see also operator~
_all = 0b0000'0011
// clang-format on
};
constexpr JsonOptions(underlying_t v) noexcept : value(v)
{
}
[[nodiscard]] constexpr explicit
operator underlying_t() const noexcept
{
return value;
}
[[nodiscard]] constexpr explicit
operator bool() const noexcept
{
return value != 0u;
}
[[nodiscard]] constexpr auto friend
operator==(JsonOptions lh, JsonOptions rh) noexcept -> bool = default;
[[nodiscard]] constexpr auto friend
operator!=(JsonOptions lh, JsonOptions rh) noexcept -> bool = default;
/// Returns JsonOptions union of lh and rh
[[nodiscard]] constexpr JsonOptions friend
operator|(JsonOptions lh, JsonOptions rh) noexcept
{
return {lh.value | rh.value};
}
/// Returns JsonOptions intersection of lh and rh
[[nodiscard]] constexpr JsonOptions friend
operator&(JsonOptions lh, JsonOptions rh) noexcept
{
return {lh.value & rh.value};
}
/// Returns JsonOptions binary negation, can be used with & (above) for set
/// difference e.g. `(options & ~JsonOptions::include_date)`
[[nodiscard]] constexpr JsonOptions friend
operator~(JsonOptions v) noexcept
{
return {~v.value & static_cast<underlying_t>(_all)};
}
};
template <typename T>
requires requires(T const& t) {
{ t.getJson(JsonOptions::none) } -> std::convertible_to<Json::Value>;
}
Json::Value
to_json(T const& t)
{
return t.getJson(JsonOptions::none);
}
namespace detail {
class STVar;
}
// VFALCO TODO fix this restriction on copy assignment.
//
// CAUTION: Do not create a vector (or similar container) of any object derived
// from STBase. Use Boost ptr_* containers. The copy assignment operator
// of STBase has semantics that will cause contained types to change
// their names when an object is deleted because copy assignment is used to
// "slide down" the remaining types and this will not copy the field
// name. Changing the copy assignment operator to copy the field name breaks the
// use of copy assignment just to copy values, which is used in the transaction
// engine code.
//------------------------------------------------------------------------------
/** A type which can be exported to a well known binary format.
A STBase:
- Always a field
- Can always go inside an eligible enclosing STBase
(such as STArray)
- Has a field name
Like JSON, a SerializedObject is a basket which has rules
on what it can hold.
@note "ST" stands for "Serialized Type."
*/
class STBase
{
SField const* fName;
public:
virtual ~STBase() = default;
STBase();
STBase(STBase const&) = default;
STBase&
operator=(STBase const& t);
explicit STBase(SField const& n);
bool
operator==(STBase const& t) const;
bool
operator!=(STBase const& t) const;
template <class D>
D&
downcast();
template <class D>
D const&
downcast() const;
virtual SerializedTypeID
getSType() const;
virtual std::string
getFullText() const;
virtual std::string
getText() const;
virtual Json::Value getJson(JsonOptions = JsonOptions::none) const;
virtual void
add(Serializer& s) const;
virtual bool
isEquivalent(STBase const& t) const;
virtual bool
isDefault() const;
/** A STBase is a field.
This sets the name.
*/
void
setFName(SField const& n);
SField const&
getFName() const;
void
addFieldID(Serializer& s) const;
protected:
template <class T>
static STBase*
emplace(std::size_t n, void* buf, T&& val);
private:
virtual STBase*
copy(std::size_t n, void* buf) const;
virtual STBase*
move(std::size_t n, void* buf);
friend class detail::STVar;
};
//------------------------------------------------------------------------------
std::ostream&
operator<<(std::ostream& out, STBase const& t);
template <class D>
D&
STBase::downcast()
{
D* ptr = dynamic_cast<D*>(this);
if (ptr == nullptr)
Throw<std::bad_cast>();
return *ptr;
}
template <class D>
D const&
STBase::downcast() const
{
D const* ptr = dynamic_cast<D const*>(this);
if (ptr == nullptr)
Throw<std::bad_cast>();
return *ptr;
}
template <class T>
STBase*
STBase::emplace(std::size_t n, void* buf, T&& val)
{
using U = std::decay_t<T>;
if (sizeof(U) > n)
return new U(std::forward<T>(val));
return new (buf) U(std::forward<T>(val));
}
} // namespace ripple
#endif