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I have figured out the maximum data before fragmentation between 2 endpoints using udp is 1472(other endpoints may vary). this states that mtu is 1500bytes and header overhead per packet is 28bytes.is it safe to assume that if i send 0 bytes data(payload), the actual data being transferred is 28bytes? im doing some bencchmark, so its crucial for me to know what happens in the channel. thanks.

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4 Answers 4

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  • The MTU is the maximum size of an IP packet that can be transmitted without fragmentation.

    IPv4 mandates a path MTU of at least 576 bytes, IPv6 of at least 1280 bytes.

    Ethernet has an MTU of 1500 bytes.

  • An IP packet is composed of two parts: the packet header and the payload.

    The size of an IPv4 header is at least 20 bytes, the size of an IPv6 header at least 40 bytes.

    The payload of an IP packet is typically a TCP segment or a UDP datagram.

  • A UDP datagram consists of a UDP header and the transported data.

    The size of a UDP header is 8 bytes.

This means an IP packet with an empty UDP datagram as payload takes at least 28 (IPv4) or 48 (IPv6) bytes, but may take more bytes.

Also note that in the case of Ethernet, the IP packet will additionally be wrapped in a MAC packet (14 byte header + 4 byte CRC) which will be embedded in an Ethernet frame (8 byte preamble sequence). This adds 26 bytes of data to the IP packet, but doesn't count against the MTU.

So you cannot assume that a UDP datagram will cause a specific number of bytes to be transmitted.

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im a bit confuse. are you saying that even with 1500bytes for mtu, the actual packet data can be more than 1500bytes(+26)? how can perform accurate measurement if i dont know how much data is actually sent? is there anyway for me to know how much data is actaully transferred? –  publicENEMY Nov 18 '10 at 20:11

Typical IP headers are 20 bytes, if no options have been selected. UDP headers are 8 bytes. Over Ethernet, frame size is 14 bytes (header) + 4 bytes (trailer). Depending on how you capture these packets, you may or may not have to account for frame size.

Without Ethernet (IP + UDP) = 20 + 8 = 28 bytes
With Ethernet = 18 + 28 = 46 bytes

The UdpClient class in C# will return the packet from layer 5 onwards, so you won't have to account for the above.

The 1500 bytes MTU is enforced at the IP layer. That means that the packet size below the IP layer is insignificant when fragmenting.

That translates to:
Ethernet frame bytes (fixed) = 18
IP header (min) = 20
UDP header (fixed) = 8
Max. allowed payload for no fragmentation = 1472
Total number of bytes that go on the wire = (Sum above) 1518 bytes
(You can count the number of bytes leaving with a tool like Wireshark)

If (IP header + UDP header + Payload > 1500) then the packet is fragmented.

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so you mean without ehternet the header would be 28bytes which results to 1472 maximum payload and with ethernet the header is 46 bytes which results to 1454 maximum payload. the method i use to get the maximum payload is to set dontfragment flag of udpclient to true and sending data stating with 1500 payload size. c# will fire an exception if the data will be fragmented and i reduce the payload size until no exception is fired. is this ok? –  publicENEMY Nov 18 '10 at 20:10
The max. you can send out is 1472, irrespective of what is done below the IP layer. Updated answer. –  AK. Nov 18 '10 at 20:39
is there a way to determine if the user between endpoints is using ethernet in c# or whether Ethernet frame bytes (fixed) is used? is it safe to assume that all people connected to the internet are using ethernet(people, not organization that uses fibre channel etc)? looking at wiki definition of ethernet, it is described as lan devices. –  publicENEMY Nov 18 '10 at 20:59
is it safe to say that if i send packets with 1472 bytes of payload, the total data flow through the ethernet channel is 1518? thanks. –  publicENEMY Nov 19 '10 at 7:49
is it safe to say that if i send packets with 0 bytes of payload, the total data flow through the ethernet is 46 bytes? –  publicENEMY Nov 19 '10 at 7:55

IP overhead is 20bytes and UDP is 8 btes, so yes, 28 bytes.


Don't forget about Ethernet overhead if you're doing internal testing

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i did look at udp wiki, but to be honest, i dont really know what to look for. i dont understand much either. by the way, how can i measure this ethernet overhead? –  publicENEMY Nov 18 '10 at 20:05

Here http://sd.wareonearth.com/~phil/net/overhead/ I found a good answer.

And wiki also:




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