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			397 lines
		
	
	
	
		
			13 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			397 lines
		
	
	
	
		
			13 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /*
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|  * SRT - Secure Reliable Transport
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|  * Copyright (c) 2018 Haivision Systems Inc.
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|  *
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|  * This Source Code Form is subject to the terms of the Mozilla Public
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|  * License, v. 2.0. If a copy of the MPL was not distributed with this
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|  * file, You can obtain one at http://mozilla.org/MPL/2.0/.
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|  *
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|  */
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| 
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| /*****************************************************************************
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| Copyright (c) 2001 - 2011, The Board of Trustees of the University of Illinois.
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| All rights reserved.
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| 
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| Redistribution and use in source and binary forms, with or without
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| modification, are permitted provided that the following conditions are
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| met:
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| 
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| * Redistributions of source code must retain the above
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|   copyright notice, this list of conditions and the
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|   following disclaimer.
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| 
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| * Redistributions in binary form must reproduce the
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|   above copyright notice, this list of conditions
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|   and the following disclaimer in the documentation
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|   and/or other materials provided with the distribution.
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| 
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| * Neither the name of the University of Illinois
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|   nor the names of its contributors may be used to
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|   endorse or promote products derived from this
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|   software without specific prior written permission.
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| 
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| THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS
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| IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
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| THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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| PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
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| CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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| EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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| PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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| PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
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| LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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| NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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| SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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| *****************************************************************************/
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| 
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| /*****************************************************************************
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| written by
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|    Yunhong Gu, last updated 01/02/2011
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| modified by
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|    Haivision Systems Inc.
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| *****************************************************************************/
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| 
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| #ifndef INC_SRT_PACKET_H
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| #define INC_SRT_PACKET_H
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| 
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| #include "udt.h"
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| #include "common.h"
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| #include "utilities.h"
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| #include "netinet_any.h"
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| #include "packetfilter_api.h"
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| 
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| namespace srt
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| {
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| 
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| //////////////////////////////////////////////////////////////////////////////
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| // The purpose of the IOVector class is to proide a platform-independet interface
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| // to the WSABUF on Windows and iovec on Linux, that can be easilly converted
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| // to the native structure for use in WSARecvFrom() and recvmsg(...) functions
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| class IOVector
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| #ifdef _WIN32
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|     : public WSABUF
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| #else
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|     : public iovec
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| #endif
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| {
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| public:
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|     inline void set(void* buffer, size_t length)
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|     {
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| #ifdef _WIN32
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|         len = (ULONG)length;
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|         buf = (CHAR*)buffer;
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| #else
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|         iov_base = (void*)buffer;
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|         iov_len  = length;
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| #endif
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|     }
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| 
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|     inline char*& dataRef()
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|     {
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| #ifdef _WIN32
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|         return buf;
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| #else
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|         return (char*&)iov_base;
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| #endif
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|     }
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| 
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|     inline char* data()
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|     {
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| #ifdef _WIN32
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|         return buf;
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| #else
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|         return (char*)iov_base;
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| #endif
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|     }
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| 
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|     inline size_t size() const
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|     {
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| #ifdef _WIN32
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|         return (size_t)len;
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| #else
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|         return iov_len;
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| #endif
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|     }
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| 
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|     inline void setLength(size_t length)
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|     {
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| #ifdef _WIN32
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|         len = (ULONG)length;
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| #else
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|         iov_len = length;
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| #endif
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|     }
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| };
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| 
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| /// To define packets in order in the buffer. This is public due to being used in buffer.
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| enum PacketBoundary
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| {
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|     PB_SUBSEQUENT = 0, // 00: a packet in the middle of a message, neither the first, not the last.
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|     PB_LAST       = 1, // 01: last packet of a message
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|     PB_FIRST      = 2, // 10: first packet of a message
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|     PB_SOLO       = 3, // 11: solo message packet
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| };
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| 
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| // Breakdown of the PM_SEQNO field in the header:
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| //  C| X X ... X, where:
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| typedef Bits<31> SEQNO_CONTROL;
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| //  1|T T T T T T T T T T T T T T T|E E...E
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| typedef Bits<30, 16> SEQNO_MSGTYPE;
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| typedef Bits<15, 0>  SEQNO_EXTTYPE;
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| //  0|S S ... S
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| typedef Bits<30, 0> SEQNO_VALUE;
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| 
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| // This bit cannot be used by SEQNO anyway, so it's additionally used
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| // in LOSSREPORT data specification to define that this value is the
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| // BEGIN value for a SEQNO range (to distinguish it from a SOLO loss SEQNO value).
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| const int32_t LOSSDATA_SEQNO_RANGE_FIRST = SEQNO_CONTROL::mask;
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| 
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| // Just cosmetics for readability.
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| const int32_t LOSSDATA_SEQNO_RANGE_LAST = 0, LOSSDATA_SEQNO_SOLO = 0;
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| 
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| inline int32_t CreateControlSeqNo(UDTMessageType type)
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| {
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|     return SEQNO_CONTROL::mask | SEQNO_MSGTYPE::wrap(uint32_t(type));
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| }
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| 
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| inline int32_t CreateControlExtSeqNo(int exttype)
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| {
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|     return SEQNO_CONTROL::mask | SEQNO_MSGTYPE::wrap(size_t(UMSG_EXT)) | SEQNO_EXTTYPE::wrap(exttype);
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| }
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| 
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| // MSGNO breakdown: B B|O|K K|R|M M M M M M M M M M...M
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| typedef Bits<31, 30> MSGNO_PACKET_BOUNDARY;
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| typedef Bits<29>     MSGNO_PACKET_INORDER;
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| typedef Bits<28, 27> MSGNO_ENCKEYSPEC;
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| #if 1 // can block rexmit flag
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| // New bit breakdown - rexmit flag supported.
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| typedef Bits<26>    MSGNO_REXMIT;
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| typedef Bits<25, 0> MSGNO_SEQ;
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| // Old bit breakdown - no rexmit flag
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| typedef Bits<26, 0> MSGNO_SEQ_OLD;
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| // This symbol is for older SRT version, where the peer does not support the MSGNO_REXMIT flag.
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| // The message should be extracted as PMASK_MSGNO_SEQ, if REXMIT is supported, and PMASK_MSGNO_SEQ_OLD otherwise.
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| 
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| const uint32_t PACKET_SND_NORMAL = 0, PACKET_SND_REXMIT = MSGNO_REXMIT::mask;
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| const int      MSGNO_SEQ_MAX = MSGNO_SEQ::mask;
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| 
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| #else
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| // Old bit breakdown - no rexmit flag
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| typedef Bits<26, 0> MSGNO_SEQ;
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| #endif
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| 
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| typedef RollNumber<MSGNO_SEQ::size - 1, 1> MsgNo;
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| 
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| // constexpr in C++11 !
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| inline int32_t PacketBoundaryBits(PacketBoundary o)
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| {
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|     return MSGNO_PACKET_BOUNDARY::wrap(int32_t(o));
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| }
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| 
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| enum EncryptionKeySpec
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| {
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|     EK_NOENC = 0,
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|     EK_EVEN  = 1,
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|     EK_ODD   = 2
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| };
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| 
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| enum EncryptionStatus
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| {
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|     ENCS_CLEAR  = 0,
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|     ENCS_FAILED = -1,
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|     ENCS_NOTSUP = -2
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| };
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| 
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| const int32_t  PMASK_MSGNO_ENCKEYSPEC = MSGNO_ENCKEYSPEC::mask;
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| inline int32_t EncryptionKeyBits(EncryptionKeySpec f)
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| {
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|     return MSGNO_ENCKEYSPEC::wrap(int32_t(f));
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| }
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| inline EncryptionKeySpec GetEncryptionKeySpec(int32_t msgno)
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| {
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|     return EncryptionKeySpec(MSGNO_ENCKEYSPEC::unwrap(msgno));
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| }
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| 
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| const int32_t PUMASK_SEQNO_PROBE = 0xF;
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| 
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| std::string PacketMessageFlagStr(uint32_t msgno_field);
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| 
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| class CPacket
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| {
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|     friend class CChannel;
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|     friend class CSndQueue;
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|     friend class CRcvQueue;
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| 
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| public:
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|     CPacket();
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|     ~CPacket();
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| 
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|     void allocate(size_t size);
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|     void deallocate();
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| 
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|     /// Get the payload or the control information field length.
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|     /// @return the payload or the control information field length.
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|     size_t getLength() const;
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| 
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|     /// Set the payload or the control information field length.
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|     /// @param len [in] the payload or the control information field length.
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|     void setLength(size_t len);
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| 
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|     /// Set the payload or the control information field length.
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|     /// @param len [in] the payload or the control information field length.
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|     /// @param cap [in] capacity (if known).
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|     void setLength(size_t len, size_t cap);
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| 
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|     /// Pack a Control packet.
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|     /// @param pkttype [in] packet type filed.
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|     /// @param lparam [in] pointer to the first data structure, explained by the packet type.
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|     /// @param rparam [in] pointer to the second data structure, explained by the packet type.
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|     /// @param size [in] size of rparam, in number of bytes;
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|     void pack(UDTMessageType pkttype, const int32_t* lparam = NULL, void* rparam = NULL, size_t size = 0);
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| 
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|     /// Read the packet vector.
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|     /// @return Pointer to the packet vector.
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|     IOVector* getPacketVector();
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| 
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|     uint32_t* getHeader() { return m_nHeader; }
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| 
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|     /// Read the packet type.
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|     /// @return packet type filed (000 ~ 111).
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|     UDTMessageType getType() const;
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| 
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|     bool isControl(UDTMessageType type) const { return isControl() && type == getType(); }
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| 
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|     bool isControl() const { return 0 != SEQNO_CONTROL::unwrap(m_nHeader[SRT_PH_SEQNO]); }
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| 
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|     void setControl(UDTMessageType type) { m_nHeader[SRT_PH_SEQNO] = SEQNO_CONTROL::mask | SEQNO_MSGTYPE::wrap(type); }
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| 
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|     /// Read the extended packet type.
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|     /// @return extended packet type filed (0x000 ~ 0xFFF).
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|     int getExtendedType() const;
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| 
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|     /// Read the ACK-2 seq. no.
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|     /// @return packet header field (bit 16~31).
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|     int32_t getAckSeqNo() const;
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| 
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|     uint16_t getControlFlags() const;
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| 
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|     // Note: this will return a "singular" value, if the packet
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|     // contains the control message
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|     int32_t getSeqNo() const { return m_nHeader[SRT_PH_SEQNO]; }
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| 
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|     /// Read the message boundary flag bit.
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|     /// @return packet header field [1] (bit 0~1).
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|     PacketBoundary getMsgBoundary() const;
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| 
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|     /// Read the message inorder delivery flag bit.
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|     /// @return packet header field [1] (bit 2).
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|     bool getMsgOrderFlag() const;
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| 
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|     /// Read the rexmit flag (true if the packet was sent due to retransmission).
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|     /// If the peer does not support retransmission flag, the current agent cannot use it as well
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|     /// (because the peer will understand this bit as a part of MSGNO field).
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|     bool getRexmitFlag() const;
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| 
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|     void setRexmitFlag(bool bRexmit);
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| 
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|     /// Read the message sequence number.
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|     /// @return packet header field [1]
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|     int32_t getMsgSeq(bool has_rexmit = true) const;
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| 
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|     /// Read the message crypto key bits.
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|     /// @return packet header field [1] (bit 3~4).
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|     EncryptionKeySpec getMsgCryptoFlags() const;
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| 
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|     void setMsgCryptoFlags(EncryptionKeySpec spec);
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| 
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|     /// Read the message time stamp.
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|     /// @return packet header field [2] (bit 0~31, bit 0-26 if SRT_DEBUG_TSBPD_WRAP).
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|     uint32_t getMsgTimeStamp() const;
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| 
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|     sockaddr_any udpDestAddr() const { return m_DestAddr; }
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| 
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| #ifdef SRT_DEBUG_TSBPD_WRAP                           // Receiver
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|     static const uint32_t MAX_TIMESTAMP = 0x07FFFFFF; // 27 bit fast wraparound for tests (~2m15s)
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| #else
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|     static const uint32_t MAX_TIMESTAMP = 0xFFFFFFFF; // Full 32 bit (01h11m35s)
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| #endif
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| 
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| protected:
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|     static const uint32_t TIMESTAMP_MASK = MAX_TIMESTAMP; // this value to be also used as a mask
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| public:
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|     /// Clone this packet.
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|     /// @return Pointer to the new packet.
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|     CPacket* clone() const;
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| 
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|     enum PacketVectorFields
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|     {
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|         PV_HEADER = 0,
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|         PV_DATA   = 1,
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| 
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|         PV_SIZE = 2
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|     };
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| 
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| public:
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|     void toNL();
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|     void toHL();
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| 
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| protected:
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|     // DynamicStruct is the same as array of given type and size, just it
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|     // enforces that you index it using a symbol from symbolic enum type, not by a bare integer.
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|     typedef DynamicStruct<uint32_t, SRT_PH_E_SIZE, SrtPktHeaderFields> HEADER_TYPE;
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|     HEADER_TYPE                                                        m_nHeader; //< The 128-bit header field
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| 
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|     IOVector m_PacketVector[PV_SIZE]; //< The two-dimensional vector of an SRT packet [header, data]
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| 
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|     int32_t m_extra_pad;
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|     bool    m_data_owned;
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|     sockaddr_any m_DestAddr;
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|     size_t  m_zCapacity;
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| 
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| protected:
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|     CPacket& operator=(const CPacket&);
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|     CPacket(const CPacket&);
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| 
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| public:
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|     int32_t& m_iSeqNo;     // alias: sequence number
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|     int32_t& m_iMsgNo;     // alias: message number
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|     int32_t& m_iTimeStamp; // alias: timestamp
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|     int32_t& m_iID;        // alias: destination SRT socket ID
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|     char*&   m_pcData;     // alias: payload (data packet) / control information fields (control packet)
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| 
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|     // Experimental: sometimes these references don't work!
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|     char* getData();
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|     char* release();
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| 
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|     static const size_t HDR_SIZE = sizeof(HEADER_TYPE); // packet header size = SRT_PH_E_SIZE * sizeof(uint32_t)
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| 
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|     // Can also be calculated as: sizeof(struct ether_header) + sizeof(struct ip) + sizeof(struct udphdr).
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|     static const size_t UDP_HDR_SIZE = 28; // 20 bytes IPv4 + 8 bytes of UDP { u16 sport, dport, len, csum }.
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| 
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|     static const size_t SRT_DATA_HDR_SIZE = UDP_HDR_SIZE + HDR_SIZE;
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| 
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|     // Maximum transmission unit size. 1500 in case of Ethernet II (RFC 1191).
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|     static const size_t ETH_MAX_MTU_SIZE = 1500;
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| 
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|     // Maximum payload size of an SRT packet.
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|     static const size_t SRT_MAX_PAYLOAD_SIZE = ETH_MAX_MTU_SIZE - SRT_DATA_HDR_SIZE;
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| 
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|     // Packet interface
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|     char*       data() { return m_pcData; }
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|     const char* data() const { return m_pcData; }
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|     size_t      size() const { return getLength(); }
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|     size_t      capacity() const { return m_zCapacity; }
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|     void        setCapacity(size_t cap) { m_zCapacity = cap; }
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|     uint32_t    header(SrtPktHeaderFields field) const { return m_nHeader[field]; }
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| 
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| #if ENABLE_LOGGING
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|     std::string MessageFlagStr() { return PacketMessageFlagStr(m_nHeader[SRT_PH_MSGNO]); }
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|     std::string Info();
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| #else
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|     std::string           MessageFlagStr() { return std::string(); }
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|     std::string           Info() { return std::string(); }
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| #endif
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| };
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| 
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| } // namespace srt
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| 
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| #endif
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