mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-17 02:08:38 +00:00
4c60512ad9
It add documentation on licencing & provides links to the amlogic-boot-fip pre-built files collections. Signed-off-by: Neil Armstrong <narmstrong@baylibre.com>
98 lines
3.2 KiB
ReStructuredText
98 lines
3.2 KiB
ReStructuredText
.. SPDX-License-Identifier: GPL-2.0+
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U-Boot for WeTek Core2
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======================
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WeTek Core2 is an Android STB based on the Q200 reference design with
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the following specifications:
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- Amlogic S912 ARM Cortex-A53 octo-core SoC @ 1.5GHz
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- ARM Mali T820 GPU
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- 3GB DDR4 SDRAM
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- 10/100 Realtek RTL8152 Ethernet (internal USB)
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- HDMI 2.0 4K/60Hz display
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- 2x USB 2.0 Host, 1x USB 2.0 OTG (internal)
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- 32GB eMMC
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- microSD
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- SDIO Wifi Module, Bluetooth
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- Two channel IR receiver
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U-Boot compilation
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------------------
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.. code-block:: bash
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$ export CROSS_COMPILE=aarch64-none-elf-
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$ make wetek-core2_defconfig
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$ make
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Image creation
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--------------
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For simplified usage, pleaser refer to :doc:`pre-generated-fip` with codename `wetek-core2`
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Amlogic does not provide sources for the firmware or the tools needed
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to create the bootloader image, and WeTek has not publicly shared the
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precompiled FIP binaries. However the public Khadas VIM2 sources also
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work with the Core2 box so we can use the Khadas git tree:
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.. code-block:: bash
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$ wget https://releases.linaro.org/archive/13.11/components/toolchain/binaries/gcc-linaro-aarch64-none-elf-4.8-2013.11_linux.tar.xz
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$ wget https://releases.linaro.org/archive/13.11/components/toolchain/binaries/gcc-linaro-arm-none-eabi-4.8-2013.11_linux.tar.xz
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$ tar xvfJ gcc-linaro-aarch64-none-elf-4.8-2013.11_linux.tar.xz
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$ tar xvfJ gcc-linaro-arm-none-eabi-4.8-2013.11_linux.tar.xz
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$ export PATH=$PWD/gcc-linaro-aarch64-none-elf-4.8-2013.11_linux/bin:$PWD/gcc-linaro-arm-none-eabi-4.8-2013.11_linux/bin:$PATH
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$ git clone https://github.com/khadas/u-boot -b khadas-vim-v2015.01 vim-u-boot
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$ cd vim-u-boot
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$ make kvim2_defconfig
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$ make
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$ export FIPDIR=$PWD/fip
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Go back to mainline U-Boot source tree then:
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.. code-block:: bash
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$ mkdir fip
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$ cp $FIPDIR/gxl/bl2.bin fip/
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$ cp $FIPDIR/gxl/acs.bin fip/
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$ cp $FIPDIR/gxl/bl21.bin fip/
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$ cp $FIPDIR/gxl/bl30.bin fip/
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$ cp $FIPDIR/gxl/bl301.bin fip/
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$ cp $FIPDIR/gxl/bl31.img fip/
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$ cp u-boot.bin fip/bl33.bin
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$ $FIPDIR/blx_fix.sh \
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fip/bl30.bin \
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fip/zero_tmp \
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fip/bl30_zero.bin \
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fip/bl301.bin \
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fip/bl301_zero.bin \
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fip/bl30_new.bin \
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bl30
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$ python $FIPDIR/acs_tool.pyc fip/bl2.bin fip/bl2_acs.bin fip/acs.bin 0
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$ $FIPDIR/blx_fix.sh \
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fip/bl2_acs.bin \
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fip/zero_tmp \
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fip/bl2_zero.bin \
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fip/bl21.bin \
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fip/bl21_zero.bin \
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fip/bl2_new.bin \
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bl2
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$ $FIPDIR/gxl/aml_encrypt_gxl --bl3enc --input fip/bl30_new.bin
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$ $FIPDIR/gxl/aml_encrypt_gxl --bl3enc --input fip/bl31.img
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$ $FIPDIR/gxl/aml_encrypt_gxl --bl3enc --input fip/bl33.bin
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$ $FIPDIR/gxl/aml_encrypt_gxl --bl2sig --input fip/bl2_new.bin --output fip/bl2.n.bin.sig
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$ $FIPDIR/gxl/aml_encrypt_gxl --bootmk \
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--output fip/u-boot.bin \
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--bl2 fip/bl2.n.bin.sig \
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--bl30 fip/bl30_new.bin.enc \
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--bl31 fip/bl31.img.enc \
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--bl33 fip/bl33.bin.enc
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then write the image to SD with:
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.. code-block:: bash
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$ DEV=/dev/your_sd_device
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$ dd if=fip/u-boot.bin.sd.bin of=$DEV conv=fsync,notrunc bs=512 skip=1 seek=1
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$ dd if=fip/u-boot.bin.sd.bin of=$DEV conv=fsync,notrunc bs=1 count=444
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