#ifndef REMOTE_HEADER_HPP #define REMOTE_HEADER_HPP #include namespace Remote { class Header { public: static const std::size_t size = 8; Header() : _size(0) {} void setSize(std::size_t size) { _size = size; } std::size_t getSize(void) const {return _size;} bool from_istream(std::istream &is) { std::array buffer; bool res = is.read(reinterpret_cast(buffer.data()), buffer.size()); if (res && is.gcount() == buffer.size()) return from_buffer(buffer); else return false; } bool from_buffer(const std::array& buffer) { if (decode32(&buffer[0]) != _magic) { std::cerr << "Header: bad magic ('" << std::hex << std::setfill('0') << std::setw(8) << decode32(&buffer[0]) << "' instead of '" << std::hex << std::setfill('0') << std::setw(8) << _magic << "')" << std::endl; return false; } else { _size = decode32(&buffer[4]); if (_size > _maxSize) std::cerr << "Header: msg too big (" << _size << ")!" << std::endl; return _size <= _maxSize; } } /* void to_ostream(std::ostream& os) { }*/ void to_buffer(std::array& buffer) const { encode32(_magic, &buffer[0]); encode32(_size, &buffer[4]); } private: static uint32_t decode32(const unsigned char* data) { return (static_cast(data[0]) << 24) + (static_cast(data[1]) << 16) + (static_cast(data[2]) << 8) + (static_cast(data[3])); } static void encode32(uint32_t value, unsigned char* data) { data[0] = (value >> 24) & 0xFF; data[1] = (value >> 16) & 0xFF; data[2] = (value >> 8) & 0xFF; data[3] = (value) & 0xFF; } static const uint32_t _magic = 0xdeadbeef; static const uint32_t _maxSize = 65536*32; uint32_t _size; }; } // namespace Remote #endif