EncodixOnline - Decoder: 3GPP TS 44.060 V14.0.0 (2017-03) [download spec]

The online version of the Encodix multistandard 5G/LTE/3GPP/WiMax/cdma2000 encode/decode C code generator (see the list of available decoders).

Decoder: Mobile Station (MS) - Base Station System (BSS) interface - Radio Link Control / Medium Access Control (RLC/MAC) protocol

Message set
Binary data
I am not a robot

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Click on the fields below to see the related bits evidenced on the right:

ERRORS:

Error: please, click on the I am not a robot checkbox.

No binary data

Instructions

This decoder decodes messages specified in the 3GPP TS 44.060 V14.0.0 (2017-03) [download spec], Mobile Station (MS) - Base Station System (BSS) interface - Radio Link Control / Medium Access Control (RLC/MAC) protocol specification.

The messages are divided among the following message sets. The right message set must be selected before submitting the binary data to be decoded.

Downlink

These messages are sent from the network to the mobile station. They begin with a 6-bit message id followed by the message content.

This link decodes a sample Packet Downlink Assignment (TS 44.060, 11.2.7).

Uplink

These messages are sent from the mobile station to the network. They begin with a 6-bit message id followed by the message content.

This link decodes a sample Packet Control Ack (TS 44.060, 11.2.2).

Downlink EC-PACCH

These messages are sent from the network to the mobile station on EC-PACCH. They begin with a 5-bit message id followed by the message content.

Uplink EC-PACCH

These messages are sent from the mobile station to the network on EC-PACCH. They begin with a 5-bit message id followed by the message content.

This link decodes a sample EC Packet Control Acknowledgement (TS 44.060, 11.2.50).

Binary input field

The binary input field supports the following format:

0/1Numbers 0 and 1 are inserted as bits. So 1100 is encoded as four bits 1, 1, 0 and 0.
dNwhere N is a decimal value in range 0..255; it is encoded as an 8 bit value. For example, d240 will be encoded as 11110000.
xNwhere N is an hex value in range 0..FF; it is encoded as an 8 bit value. For example, xF0 will be encoded as 11110000.
d{K}N / x{K}NSame as dN/xN but encoded in K bits. For example, d{3}2 will be encoded as 010.
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