A tiny Open POWER ISA softcore written in VHDL 2008
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Paul Mackerras a7873b45f7 core: Add a basic performance monitor unit (PMU) implementation
This is the start of an implementation of a PMU according to PowerISA
v3.0B.  Things not implemented yet include most architected events,
the BHRB, event-based branches, thresholding, MMCR0[TBCC] field, etc.

Signed-off-by: Paul Mackerras <paulus@ozlabs.org>
3 years ago
.github/workflows ci: Remove noflatten to reduce size of ECP5 builds 3 years ago
constraints
fpga Add liteeth support to Nexys Video 3 years ago
hello_world
include arty_a7: Add litesdcard interface 4 years ago
lib
litedram litedram: Regenerate from upstream litex 3 years ago
liteeth liteeth: Regenerate from upstream litex 3 years ago
litesdcard arty_a7: Add litesdcard interface 4 years ago
media
micropython
openocd openocd: Fix verify command for v0.10 4 years ago
rust_lib_demo
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tests tests/fpu: Test FPU unavailable interrupt following a load 3 years ago
uart16550
verilator
.gitignore
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Makefile core: Add a basic performance monitor unit (PMU) implementation 3 years ago
README.md Update documentation. (#280) 4 years ago
cache_ram.vhdl
common.vhdl core: Add a basic performance monitor unit (PMU) implementation 3 years ago
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core.vhdl core: Add a basic performance monitor unit (PMU) implementation 3 years ago
core_debug.vhdl Fix some whitespace issues 3 years ago
core_dram_tb.vhdl Reformat testbenches 4 years ago
core_flash_tb.vhdl Reformat testbenches 4 years ago
core_tb.vhdl Reformat testbenches 4 years ago
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countzero_tb.vhdl Replaced VHDL assert and report with VUnit checking and logging 4 years ago
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crhelpers.vhdl
dcache.vhdl dcache: Simplify logic in RELOAD_WAIT_ACK state 4 years ago
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decode1.vhdl MMU: Implement a vestigial partition table 4 years ago
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dmi_dtm_xilinx.vhdl Fix some whitespace issues 3 years ago
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execute1.vhdl core: Add a basic performance monitor unit (PMU) implementation 3 years ago
fetch1.vhdl
foreign_random.vhdl Make core testbenches recognized by VUnit 4 years ago
fpu.vhdl
glibc_random.vhdl
glibc_random_helpers.vhdl
gpio.vhdl
helpers.vhdl
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icache_test.bin
insn_helpers.vhdl
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logical.vhdl
microwatt.core core: Add a basic performance monitor unit (PMU) implementation 3 years ago
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pmu.vhdl core: Add a basic performance monitor unit (PMU) implementation 3 years ago
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random.vhdl Make core testbenches recognized by VUnit 4 years ago
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sim_bram_helpers_c.c
sim_console.vhdl
sim_console_c.c
sim_jtag.vhdl
sim_jtag_socket.vhdl
sim_jtag_socket_c.c
sim_no_flash.vhdl
sim_pp_uart.vhdl
sim_vhpi_c.c
sim_vhpi_c.h
soc.vhdl Merge pull request #277 from paulus/gpio 4 years ago
spi_flash_ctrl.vhdl Reformat spi_flash_ctrl 4 years ago
spi_rxtx.vhdl
sync_fifo.vhdl
syscon.vhdl arty_a7: Add litesdcard interface 4 years ago
utils.vhdl
wishbone_arbiter.vhdl
wishbone_bram_tb.bin
wishbone_bram_tb.vhdl Reformat testbenches 4 years ago
wishbone_bram_wrapper.vhdl
wishbone_debug_master.vhdl Fix some whitespace issues 3 years ago
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xilinx-mult.vhdl

README.md

Microwatt

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

You can try out Microwatt/Micropython without hardware by using the ghdl simulator. If you want to build directly for a hardware target board, see below.

  • 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. You may need to set the CROSS_COMPILE environment variable to the prefix used for your cross compilers. The default is powerpc64le-linux-gnu-.
git clone https://github.com/micropython/micropython.git
cd micropython
cd ports/powerpc
make -j$(nproc)
cd ../../../

A prebuilt micropython image is also available in the micropython/ directory.

  • Microwatt uses ghdl for simulation. Either install this from your distro or build it. Microwatt requires ghdl to be built with the LLVM or gcc backend, which not all distros do (Fedora does, Debian/Ubuntu appears not to). ghdl with the LLVM backend is likely easier to build.

    If building ghdl from scratch is too much for you, the microwatt Makefile supports using Docker or Podman.

  • Next build microwatt:

git clone https://github.com/antonblanchard/microwatt
cd microwatt
make

To build using Docker:

make DOCKER=1

and to build using Podman:

make PODMAN=1
  • Link in the micropython image:
ln -s ../micropython/ports/powerpc/build/firmware.bin main_ram.bin

Or if you were using the pre-built image:

ln -s micropython/firmware.bin main_ram.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

Fedora users can get FuseSoC package via

sudo dnf copr enable sharkcz/danny
sudo dnf install fusesoc
  • If this is your first time using fusesoc, initialize fusesoc. This is needed to be able to pull down fussoc library components referenced by microwatt. Run
fusesoc init
  • 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 such as --target=arty_a7-100): You may wish to ensure you have installed Digilent Board files or appropriate files for your board first.
fusesoc run --target=nexys_video microwatt --memory_size=16384 --ram_init_file=/path/to/microwatt/fpga/hello_world.hex

You should then be able to see output via the serial port of the board (/dev/ttyUSB1, 115200 for example assuming standard clock speeds). There is a know bug where initial output may not be sent - try the reset (not programming button) on your board if you don't see anything.

  • 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:

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