#ifndef CRYPTOPP_MQUEUE_H #define CRYPTOPP_MQUEUE_H #include "queue.h" #include "filters.h" #include namespace CryptoPP { //! Message Queue class MessageQueue : public AutoSignaling { public: MessageQueue(unsigned int nodeSize=256); void IsolatedInitialize(const NameValuePairs ¶meters) {m_queue.IsolatedInitialize(parameters); m_lengths.assign(1, 0U); m_messageCounts.assign(1, 0U);} unsigned int Put2(const byte *begin, unsigned int length, int messageEnd, bool blocking) { m_queue.Put(begin, length); m_lengths.back() += length; if (messageEnd) { m_lengths.push_back(0); m_messageCounts.back()++; } return 0; } bool IsolatedFlush(bool hardFlush, bool blocking) {return false;} bool IsolatedMessageSeriesEnd(bool blocking) {m_messageCounts.push_back(0); return false;} unsigned long MaxRetrievable() const {return m_lengths.front();} bool AnyRetrievable() const {return m_lengths.front() > 0;} unsigned int TransferTo2(BufferedTransformation &target, unsigned long &transferBytes, const std::string &channel=NULL_CHANNEL, bool blocking=true); unsigned int CopyRangeTo2(BufferedTransformation &target, unsigned long &begin, unsigned long end=ULONG_MAX, const std::string &channel=NULL_CHANNEL, bool blocking=true) const; unsigned long TotalBytesRetrievable() const {return m_queue.MaxRetrievable();} unsigned int NumberOfMessages() const {return m_lengths.size()-1;} bool GetNextMessage(); unsigned int NumberOfMessagesInThisSeries() const {return m_messageCounts[0];} unsigned int NumberOfMessageSeries() const {return m_messageCounts.size()-1;} unsigned int CopyMessagesTo(BufferedTransformation &target, unsigned int count=UINT_MAX, const std::string &channel=NULL_CHANNEL) const; const byte * Spy(unsigned int &contiguousSize) const; void swap(MessageQueue &rhs); private: ByteQueue m_queue; std::deque m_lengths, m_messageCounts; }; } NAMESPACE_BEGIN(std) template<> inline void swap(CryptoPP::MessageQueue &a, CryptoPP::MessageQueue &b) { a.swap(b); } } #endif