Files
+18 6b67702ad7 Merge FPGA repository back into UHD repository
The FPGA codebase was removed from the UHD repository in 2014 to reduce
the size of the repository. However, over the last half-decade, the
split between the repositories has proven more burdensome than it has
been helpful. By merging the FPGA code back, it will be possible to
create atomic commits that touch both FPGA and UHD codebases. Continuous
integration testing is also simplified by merging the repositories,
because it was previously difficult to automatically derive the correct
UHD branch when testing a feature branch on the FPGA repository.

This commit also updates the license files and paths therein.

We are therefore merging the repositories again. Future development for
FPGA code will happen in the same repository as the UHD host code and
MPM code.

== Original Codebase and Rebasing ==

The original FPGA repository will be hosted for the foreseeable future
at its original local location: https://github.com/EttusResearch/fpga/

It can be used for bisecting, reference, and a more detailed history.

The final commit from said repository to be merged here is
05003794e2da61cabf64dd278c45685a7abad7ec. This commit is tagged as
v4.0.0.0-pre-uhd-merge.

If you have changes in the FPGA repository that you want to rebase onto
the UHD repository, simply run the following commands:

- Create a directory to store patches (this should be an empty
  directory):

    mkdir ~/patches

- Now make sure that your FPGA codebase is based on the same state as
  the code that was merged:

    cd src/fpga # Or wherever your FPGA code is stored
    git rebase v4.0.0.0-pre-uhd-merge

  Note: The rebase command may look slightly different depending on what
  exactly you're trying to rebase.

- Create a patch set for your changes versus v4.0.0.0-pre-uhd-merge:

    git format-patch v4.0.0.0-pre-uhd-merge -o ~/patches

  Note: Make sure that only patches are stored in your output directory.
  It should otherwise be empty. Make sure that you picked the correct
  range of commits, and only commits you wanted to rebase were exported
  as patch files.

- Go to the UHD repository and apply the patches:

    cd src/uhd # Or wherever your UHD repository is stored
    git am --directory fpga ~/patches/*
    rm -rf ~/patches # This is for cleanup

== Contributors ==

The following people have contributed mainly to these files (this list
is not complete):

Co-authored-by: Alex Williams <alex.williams@ni.com>
Co-authored-by: Andrej Rode <andrej.rode@ettus.com>
Co-authored-by: Ashish Chaudhari <ashish@ettus.com>
Co-authored-by: Ben Hilburn <ben.hilburn@ettus.com>
Co-authored-by: Ciro Nishiguchi <ciro.nishiguchi@ni.com>
Co-authored-by: Daniel Jepson <daniel.jepson@ni.com>
Co-authored-by: Derek Kozel <derek.kozel@ettus.com>
Co-authored-by: EJ Kreinar <ej@he360.com>
Co-authored-by: Humberto Jimenez <humberto.jimenez@ni.com>
Co-authored-by: Ian Buckley <ian.buckley@gmail.com>
Co-authored-by: Jörg Hofrichter <joerg.hofrichter@ni.com>
Co-authored-by: Jon Kiser <jon.kiser@ni.com>
Co-authored-by: Josh Blum <josh@joshknows.com>
Co-authored-by: Jonathon Pendlum <jonathan.pendlum@ettus.com>
Co-authored-by: Martin Braun <martin.braun@ettus.com>
Co-authored-by: Matt Ettus <matt@ettus.com>
Co-authored-by: Michael West <michael.west@ettus.com>
Co-authored-by: Moritz Fischer <moritz.fischer@ettus.com>
Co-authored-by: Nick Foster <nick@ettus.com>
Co-authored-by: Nicolas Cuervo <nicolas.cuervo@ettus.com>
Co-authored-by: Paul Butler <paul.butler@ni.com>
Co-authored-by: Paul David <paul.david@ettus.com>
Co-authored-by: Ryan Marlow <ryan.marlow@ettus.com>
Co-authored-by: Sugandha Gupta <sugandha.gupta@ettus.com>
Co-authored-by: Sylvain Munaut <tnt@246tNt.com>
Co-authored-by: Trung Tran <trung.tran@ettus.com>
Co-authored-by: Vidush Vishwanath <vidush.vishwanath@ettus.com>
Co-authored-by: Wade Fife <wade.fife@ettus.com>


Original-commit: bafa9d95453387814ef25e6b6256ba8db2df612f
2020-01-28 09:35:36 -08:00
..

========================
10GE MAC Core
========================


------------------------
1. Directory Structure
------------------------

The directory structure for this project is shown below.

.
|-- doc                 - Documentation files
|
|-- rtl
|   |-- include         - Verilog defines and utils
|   `-- verilog         - Verilog source files for xge_mac
|
|-- sim
|   |-- systemc         - SystemC simulation directory
|   `-- verilog         - Verilog simulation directory
|
`-- tbench
    |-- systemc         - SystemC test-bench source files
    `-- verilog         - Verilog test-bench source files



------------------------
2. Simulation
------------------------

There are two simulation environments that can be used to validate the code.
The verilog simulation is very basic and meant for those who want to look
at how the MAC operates without going through the effort of setting up SystemC.
The SystemC environment is more sophisticated and covers all features of the MAC.



------------------------
2.1 Verilog Simulation
------------------------

To run the verilog simulation, compile all project files under rtl/verilog along with
top level testbench file:

  - tbench/verilog/tb_xge_mac.v

There is a Modelsim "do" file called "sim.do" under sim/verilog for those using Modelsim.
Once all the files are compiled, start simulation using entity "tb".


The verilog simulation reads packets from "packet_tx.txt" and writes them to the MAC
transmit fifo using the packet transmit interface (pkt_tx_data). As frames become
available in the transmit fifo, the MAC calulates the CRC and sends them out on xgmii_tx.
The xgmii_tx interface is looped-back to xgmii_rx in the testbench. The frames are thus
processed by the MAC receive engine and stored in the receive fifo. The testbench reads
frames from the receive interface (pkt_rx_data) and prints out the results.



------------------------
2.2 SystemC Simulation
------------------------

In order to use the SystemC environment it is required to first install SystemC from
www.systemc.org. Free membership may be required to download the core SystemC files.

The testbench was developed and tested with Verilator, a free HDL simulator that
compiles verilog into C++ or SystemC code. You can download Verilator from
www.veripool.org. You also need to install SystemPerl and Verilog-Perl for waveform
traces.


Once all the required tools are installed:

  - Move to directory sim/systemc

  - Type "./compile.sh"

  - Type "./run.sh"


If the simulation is running correctly you should see messages from the scoreboard
as packets are transmited and received on the various interfaces.

Simulation output:

    -----------------------
    Packet size 
    -----------------------
    SCOREBOARD XGMII INTERFACE TX (60)
    SCOREBOARD XGMII INTERFACE TX (60)
    SCOREBOARD PACKET INTERFACE TX (50)
    SCOREBOARD XGMII INTERFACE TX (60)
    SCOREBOARD PACKET INTERFACE TX (51)
    SCOREBOARD XGMII INTERFACE TX (60)
    SCOREBOARD PACKET INTERFACE RX (TX SIZE=60  RX SIZE=60)
    ...