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Meta-somlabs is a layer providing the VisionSOM-6ULL module and VisionCB-6ULL-STD carrier board hardware support for Yocto-based NXP Linux system.
Meta-somlabs is a layer providing the VisionSOM-6ULL module and VisionCB-6ULL-STD carrier board hardware support for Yocto-based NXP Linux system.
== Host system prerequisites ==
This tutorial was prepared for the Ubuntu 18.04.5 LTS host operating system. The following packages need to be installed before the building process:
<pre>
sudo apt-get install repo gawk wget git diffstat unzip texinfo gcc-multilib build-essential chrpath socat libsdl1.2-dev xterm sed cvs subversion coreutils texi2html docbook-utils python-pysqlite2 help2man make gcc g++ desktop-file-utils libgl1-mesa-dev libglu1-mesa-dev mercurial autoconf automake groff curl lzop asciidoc u-boot-tools
</pre>
The source code will be obtained using git, so it needs to be configured by setting the user name and email with correctly set values:
<pre>
git config --global user.email "you@example.com"
git config --global user.name "Your Name"
</pre>


== System image ==
== System image ==

Revision as of 21:21, 27 September 2020

VisionSOM imx-meta-somlabs layer for NXP Yocto


This tutorial explains how to build the Yocto zeus system for the VisionSOM modules. The Yocto system uses the following kernel and u-boot repositories:

Introduction

Meta-somlabs is a layer providing the VisionSOM-6ULL module and VisionCB-6ULL-STD carrier board hardware support for Yocto-based NXP Linux system.

Host system prerequisites

This tutorial was prepared for the Ubuntu 18.04.5 LTS host operating system. The following packages need to be installed before the building process:

sudo apt-get install repo gawk wget git diffstat unzip texinfo gcc-multilib build-essential chrpath socat libsdl1.2-dev xterm sed cvs subversion coreutils texi2html docbook-utils python-pysqlite2 help2man make gcc g++ desktop-file-utils libgl1-mesa-dev libglu1-mesa-dev mercurial autoconf automake groff curl lzop asciidoc u-boot-tools

The source code will be obtained using git, so it needs to be configured by setting the user name and email with correctly set values:

git config --global user.email "you@example.com"
git config --global user.name "Your Name"

System image

This layer should be used in order to build the fsl-image-validation-imx image. It includes the SoMLabs demo application using the GTK and GStreamer libraries.

Building the system image

The general description of the building process is described in the iMX Yocto Project User's Guide document:

https://www.nxp.com/docs/en/user-guide/IMXLXYOCTOUG.pdf

The summary of required steps including the meta-somlabs layer is shown below:

mkdir imx-yocto-bsp
cd imx-yocto-bsp
repo init -u https://source.codeaurora.org/external/imx/imx-manifest -b imx-linux-zeus -m imx-5.4.3-2.0.0.xml
repo sync
cd sources
git clone -b zeus https://github.com/SoMLabs/imx-meta-somlabs.git meta-somlabs

The following lines need to be added to the imx-yocto-bsp/imx-setup-release.sh file in order to add the meta-somlabs layer to build and enable the commercial license in build:

echo "BBLAYERS += \"\${BSPDIR}/sources/meta-somlabs\"" >> $BUILD_DIR/conf/bblayers.conf
echo "LICENSE_FLAGS_WHITELIST = \"commercial\"" >> $BUILD_DIR/conf/local.conf

System building may be configured for one of the available machine configurations:

  • visioncb-6ull-std-emmc-btwifi - VisionCB-6ULL-STD board with eMMC and wireless modem VisionSOM-6ULL version
  • visioncb-6ull-std-emmc - VisionCB-6ULL-STD board with eMMC VisionSOM-6ULL version
  • visioncb-6ull-std-sd-btwifi - VisionCB-6ULL-STD board with SD-card and wireless modem VisionSOM-6ULL version
  • visioncb-6ull-std-sd - VisionCB-6ULL-STD board with SD-card VisionSOM-6ULL version
  • visionsom-8mm-cb-std - VisionCB-8M-STD board with SD-card and wireless modem VisionSOM-8MM version

System building may be started by the following commands:

DISTRO=fsl-imx-wayland MACHINE=<SELECTED_MACHINE> source imx-setup-release.sh -b <BUILD_DIRECTORY>
bitbake fsl-image-validation-imx

The system image is located in the fsl-image-validation-imx-<SELECTED_MACHINE>.sdcard.bz2 file in the tmp/deploy/images/<SELECTED_MACHINE> directory. It should be extracted and installed on a SD-card:

bunzip2 -dkf fsl-image-validation-imx-<SELECTED_MACHINE>.sdcard.bz2 
sudo dd if=fsl-image-validation-imx-<SELECTED_MACHINE>.sdcard of=/dev/sdX bs=1M

The instruction for the eMMC memory image installation may be found on the following wiki pages: