05-16-2026, 06:52 PM
[center]![[Image: a2b56c8628daf3aa689e9b6afbf0229e.jpg]](https://i127.fastpic.org/big/2026/0516/9e/a2b56c8628daf3aa689e9b6afbf0229e.jpg)
Android 16 Bsp Porting On Adlink Lec-Imx8mp Ipi Board
Published 5/2026
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Language: English | Duration: 1h 52m | Size: 1.44 GB [/center]
Android 16 Board Supported Package porting - NXP iMX8MP EVK base source to Custom ADLINK LEC-IMX8MP Hardware
What you'll learn
Android 16 Board Support Package
Android 16 Porting into new hardware
Universal Bootloader U-Boot porting
Linux Kernel Porting
Requirements
Linux Fundamentals
Description
Android porting involves adapting the Android Open Source Project (AOSP) to new hardware, primarily through Board Support Package (BSP) development, kernel adaptation, and Hardware Abstraction Layer (HAL) implementation. Key steps include setting up the AOSP build environment, customizing the Linux kernel with necessary drivers, and updating the device tree. This course provides complete step by step process of porting Android 16 BSP for Custom ADLINK LEC-IMX8MP Hardware. The course provides deep dive into the following porting process and step by step walk through of porting Android 16 BSP Components,
• Android 16 BSP Environment Setup: Initialize and sync AOSP source code using repo, then build using source build/envsetup shell script and lunch
• Device Support: Custom Device Support
• Kernel & Driver Adaptation: Port the Linux kernel to the target hardware, ensuring integration of Android-specific components
• Device Tree Development: Build the devicetree to load drivers at boot, ensuring compatibility with the target hardware.
• U-Boot loader Porting: Porting the eMMC, DDR initialization with respect to hardware
• Android Debugging through USB OTG & over network: Enabling the debugging features of Android 16 Enabled hardware in run time.
• HAL Implementation: Implement HAL modules to bridge standard Android APIs with device-specific drivers
• Testing and Debugging: Use tools like logcat and dmesg to identify bootloops and hardware initialization failures.
Who this course is for
Embedded Firmware / Linux Developers who wish to have hands on Android BSP Development
![[Image: a2b56c8628daf3aa689e9b6afbf0229e.jpg]](https://i127.fastpic.org/big/2026/0516/9e/a2b56c8628daf3aa689e9b6afbf0229e.jpg)
Android 16 Bsp Porting On Adlink Lec-Imx8mp Ipi Board
Published 5/2026
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Language: English | Duration: 1h 52m | Size: 1.44 GB [/center]
Android 16 Board Supported Package porting - NXP iMX8MP EVK base source to Custom ADLINK LEC-IMX8MP Hardware
What you'll learn
Android 16 Board Support Package
Android 16 Porting into new hardware
Universal Bootloader U-Boot porting
Linux Kernel Porting
Requirements
Linux Fundamentals
Description
Android porting involves adapting the Android Open Source Project (AOSP) to new hardware, primarily through Board Support Package (BSP) development, kernel adaptation, and Hardware Abstraction Layer (HAL) implementation. Key steps include setting up the AOSP build environment, customizing the Linux kernel with necessary drivers, and updating the device tree. This course provides complete step by step process of porting Android 16 BSP for Custom ADLINK LEC-IMX8MP Hardware. The course provides deep dive into the following porting process and step by step walk through of porting Android 16 BSP Components,
• Android 16 BSP Environment Setup: Initialize and sync AOSP source code using repo, then build using source build/envsetup shell script and lunch
• Device Support: Custom Device Support
• Kernel & Driver Adaptation: Port the Linux kernel to the target hardware, ensuring integration of Android-specific components
• Device Tree Development: Build the devicetree to load drivers at boot, ensuring compatibility with the target hardware.
• U-Boot loader Porting: Porting the eMMC, DDR initialization with respect to hardware
• Android Debugging through USB OTG & over network: Enabling the debugging features of Android 16 Enabled hardware in run time.
• HAL Implementation: Implement HAL modules to bridge standard Android APIs with device-specific drivers
• Testing and Debugging: Use tools like logcat and dmesg to identify bootloops and hardware initialization failures.
Who this course is for
Embedded Firmware / Linux Developers who wish to have hands on Android BSP Development
Code:
https://rapidgator.net/file/01eafe0b5db490d83ce31e43840ddb49/Android_16_BSP_Porting_on_ADLINK_LEC-IMX8MP_IPI_Board.part2.rar.html
https://rapidgator.net/file/fa7cb0009d91df48af3e9cfa747e52e8/Android_16_BSP_Porting_on_ADLINK_LEC-IMX8MP_IPI_Board.part1.rar.html
https://nitroflare.com/view/DB629BEA1BBB83D/Android_16_BSP_Porting_on_ADLINK_LEC-IMX8MP_IPI_Board.part2.rar
https://nitroflare.com/view/3C62852A8A06C1E/Android_16_BSP_Porting_on_ADLINK_LEC-IMX8MP_IPI_Board.part1.rar

