A tiny Open POWER ISA softcore written in VHDL 2008
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Benjamin Herrenschmidt 1206dfe18c Use a 3 way WB arbiter and cleanup fpga toplevel
The 3rd master is currently unused, it will host the WB debug module.

Signed-off-by: Benjamin Herrenschmidt <benh@kernel.crashing.org>
5 years ago
fpga SOC memory wishbone should clear ACK regardless of STB 5 years ago
hello_world Rebuild hello world assuming a 50MHz clock 5 years ago
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README.md Add pretty gif demo of MicroPython on Microwatt to README.md 5 years ago
common.vhdl Add a simple direct mapped icache 5 years ago
core.vhdl Add a simple direct mapped icache 5 years ago
core_tb.vhdl Add a simple direct mapped icache 5 years ago
cr_file.vhdl Reformat CR file 5 years ago
crhelpers.vhdl Reformat crhelpers, and remove some stale code 5 years ago
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fetch1.vhdl Add a default value for RESET_ADDRESS 5 years ago
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icache.vhdl Add a simple direct mapped icache 5 years ago
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soc.vhdl Use a 3 way WB arbiter and cleanup fpga toplevel 5 years ago
wishbone_arbiter.vhdl Use a 3 way WB arbiter and cleanup fpga toplevel 5 years ago
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writeback.vhdl Remove cycle in writeback 5 years ago

README.md

Microwatt

A tiny Open POWER ISA softcore written in VHDL 2008. It aims to be simple and easy to understand.

Simulation using ghdl

MicroPython running on Microwatt

  • Build micropython. If you aren't building on a ppc64le box you will need a cross compiler. If it isn't available on your distro grab the powerpc64le-power8 toolchain from https://toolchains.bootlin.com
git clone https://github.com/mikey/micropython
cd micropython
git checkout powerpc
cd ports/powerpc
make -j$(nproc)
cd ../../../
  • Microwatt uses ghdl for simulation. Either install this from your distro or build it. Next build microwatt:
git clone https://github.com/antonblanchard/microwatt
cd microwatt
make
  • Link in the micropython image:
ln -s ../micropython/ports/powerpc/build/firmware.bin simple_ram_behavioural.bin
  • Now run microwatt, sending debug output to /dev/null:
./core_tb > /dev/null

Synthesis on Xilinx FPGAs using Vivado

  • Install Vivado (I'm using the free 2019.1 webpack edition).

  • Setup Vivado paths:

source /opt/Xilinx/Vivado/2019.1/settings64.sh
  • Install FuseSoC:
pip3 install --user -U fusesoc
  • Create a working directory and point FuseSoC at microwatt:
mkdir microwatt-fusesoc
cd microwatt-fusesoc
fusesoc library add microwatt /path/to/microwatt/
  • Build using FuseSoC. For hello world (Replace nexys_video with your FPGA board):
fusesoc run --target=nexys_video microwatt --memory_size=8192 --ram_init_file=/path/to/microwatt/fpga/hello_world.hex
  • To build micropython (currently requires 1MB of BRAM eg an Artix-7 A200):
fusesoc run --target=nexys_video microwatt

Testing

  • A simple test suite containing random execution test cases and a couple of micropython test cases can be run with:
make -j$(nproc) check

Issues

This is functional, but very simple. We still have quite a lot to do:

  • Need to implement a simple non pipelined divide
  • There are a few instructions still to be implemented
  • Need to add caches and bypassing (in progress)
  • Need to add supervisor state (in progress)