#pragma once #include #include class GModel; class GModelIndex { friend class GModel; public: GModelIndex() {} bool is_valid() const { return m_row != -1 && m_column != -1; } int row() const { return m_row; } int column() const { return m_column; } void* internal_data() const { return m_internal_data; } GModelIndex parent() const; bool operator==(const GModelIndex& other) const { return m_model == other.m_model && m_row == other.m_row && m_column == other.m_column && m_internal_data == other.m_internal_data; } bool operator!=(const GModelIndex& other) const { return !(*this == other); } private: GModelIndex(const GModel& model, int row, int column, void* internal_data) : m_model(&model) , m_row(row) , m_column(column) , m_internal_data(internal_data) { } const GModel* m_model { nullptr }; int m_row { -1 }; int m_column { -1 }; void* m_internal_data { nullptr }; }; inline const LogStream& operator<<(const LogStream& stream, const GModelIndex& value) { if (value.internal_data()) return stream << String::format("GModelIndex(%d,%d,%p)", value.row(), value.column(), value.internal_data()); return stream << String::format("GModelIndex(%d,%d)", value.row(), value.column()); } namespace AK { template<> struct Traits : public GenericTraits { static unsigned hash(const GModelIndex& index) { return pair_int_hash(index.row(), index.column()); } }; }