forked from sinara-hw/assembly
Add setup for building the firmware instructions
Signed-off-by: Egor Savkin <es@m-labs.hk>
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- [Moninj](./sw_sup/moninj.md)
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- [Moninj](./sw_sup/moninj.md)
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- [Clocking](sw_sup/clocking.md)
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- [Clocking](sw_sup/clocking.md)
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- [device_db.py](sw_sup/device_db.md)
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- [device_db.py](sw_sup/device_db.md)
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- [Setup your PC for building ARTIQ firmware](sw_sup/setup_build_pc.md)
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# Setup your PC for building ARTIQ firmware
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This page should guide you through building the firmware on your own PC.
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Unfortunately, the building process is not possible on Windows natively (nor MSYS2),
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but you can use [WSL](https://learn.microsoft.com/en-us/windows/wsl/install).
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## Prerequisites
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You should have a Linux with `nix` and `git` installed. For this purpose you may want to consider NixOS, though it is hard way for everything else.
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You should have at least 70+ GB of free space (better 100+ GB) on your `/opt` or `/` - most of this space will be taken
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by Vivado.
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## Installation
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1. Install Vivado 2022.2 from [Vivado archive](https://www.xilinx.com/support/download/index.html/content/xilinx/en/downloadNav/vivado-design-tools/archive.html) into `/opt`.
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2. Check that `ls -al /opt/Xilinx/Vivado/2022.2/settings64.sh` exists and has read and execute permissions for all:
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```shell
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$ ls -al /opt/Xilinx/Vivado/2022.2/settings64.sh
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-rwxr-xr-x 1 nobody nogroup 245 Dec 17 2022 /opt/Xilinx/Vivado/2022.2/settings64.sh
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```
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3. Add following into the `~/.local/share/nix/trusted-settings.json`, by `mkdir -p ~/.local/share/nix/ && nano ~/.local/share/nix/trusted-settings.json`
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or with your favorite way (don't forget to save - Ctrl+O in `nano`):
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```json
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{
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"extra-sandbox-paths":{
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"/opt":true
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},
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"extra-substituters":{
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"https://nixbld.m-labs.hk":true
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},
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"extra-trusted-public-keys":{
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"nixbld.m-labs.hk-1:5aSRVA5b320xbNvu30tqxVPXpld73bhtOeH6uAjRyHc=":true
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}
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}
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```
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4. Enable flakes in Nix by e.g. adding `experimental-features = nix-command flakes` to nix.conf (for example `~/.config/nix/nix.conf`).
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From here, you should be able to enter ARTIQ development shell directly from URL, or by cloning the repository.
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The later will allow you to edit the source code in case of need.
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For example for Kasli 2.0:
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```shell
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git clone https://github.com/m-labs/artiq.git
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cd artiq
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nix develop #boards
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```
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For Kasli-SoC:
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```shell
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git clone https://git.m-labs.hk/M-Labs/artiq-zynq.git
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cd artiq-zynq
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nix develop
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```
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For building instructions for your JSON, please refer to the [build and test instructions](../build_test_firmware.md).
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The reference uses commands like `nix develop github:m-labs/artiq\?ref=release-8#boards` and `nix develop git+https://git.m-labs.hk/m-labs/artiq-zynq\?ref=release-8`.
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You may safely skip such commands if you entered the development shell (`nix develop`) from cloned git repository.
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If you want to update the source files, you may use `git pull origin master --rebase`.
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Please refer to git documentation `https://www.git-scm.com/docs` if you are unfamiliar with `git`.
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You may also use GUI git tools, like the one integrated into JetBrains IDEs, VS Code, Sublime Merge or others.
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