b42168c125
Despite the original description of these options, they are not always image names, or even files. Some image types use these options to convey configuration directly. Re-document these options as configuration options. Additionally, add a new section documenting the format of the configuration for each image type which uses it. In general, if configuration is used directly (without a separate file) I have added documentation for it. If the configuration points to a separate file, I have referenced that file's documentation. Where there is no such documentation, I have added it. Signed-off-by: Sean Anderson <seanga2@gmail.com> Reviewed-by: Simon Glass <sjg@chromium.org>
780 lines
18 KiB
Groff
780 lines
18 KiB
Groff
.\" SPDX-License-Identifier: GPL-2.0
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.\" Copyright (C) 2022 Sean Anderson <seanga2@gmail.com>
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.\" Copyright (C) 2013-20 Simon Glass <sjg@chromium.org>
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.\" Copyright (C) 2010 Nobuhiro Iwamatsu <iwamatsu@nigauri.org>
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.\" Copyright (C) 2010 Wolfgang Denk <wd@denx.de>
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.TH MKIMAGE 1 2022-06-11 U-Boot
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.
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.SH NAME
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mkimage \- generate images for U-Boot
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.SH SYNOPSIS
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.SY mkimage
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.OP \-T type
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.BI \-l\~ image-file-name
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.YS
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.
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.SY mkimage
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.RI [ option\~ .\|.\|.\&]
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.OP \-T type
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.I image-file-name
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.YS
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.
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.SY mkimage
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.RI [ option\~ .\|.\|.\&]
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.BI \-f\~ image-tree-source-file\c
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.RB | auto
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.I image-file-name
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.YS
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.
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.SY mkimage
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.RI [ option\~ .\|.\|.\&]
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.BI \-F\~ image-file-name
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.YS
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.
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.SH DESCRIPTION
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The
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.B mkimage
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command is used to create images for use with the U-Boot boot loader. These
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images can contain the Linux kernel, device tree blob, root file system image,
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firmware images etc., either separate or combined.
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.P
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.B mkimage
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supports many image formats. Some of these formats may be used by embedded boot
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firmware to load U-Boot. Others may be used by U-Boot to load Linux (or some
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other kernel):
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.P
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The legacy image format concatenates the individual parts (for example, kernel
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image, device tree blob and ramdisk image) and adds a 64 byte header containing
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information about the target architecture, operating system, image type,
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compression method, entry points, time stamp, checksums, etc.
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.P
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The new
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.I FIT
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(Flattened Image Tree) format allows for more flexibility in handling images of
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various types and also enhances integrity protection of images with stronger
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checksums. It also supports verified boot.
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.
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.SH OPTIONS
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.
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.SS General options
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.
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.TP
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.B \-h
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.TQ
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.B \-\-help
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Print a help message and exit.
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.
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.TP
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.B \-l
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.TQ
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.B \-\-list
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.B mkimage
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lists the information contained in the header of an existing U-Boot image.
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.
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.TP
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.B \-s
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.TQ
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.B \-\-no\-copy
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Don't copy in the image data. Depending on the image type, this may create
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just the header, everything but the image data, or nothing at all.
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.
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.TP
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.BI \-T " image-type"
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.TQ
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.BI \-\-type " image-type"
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Parse image file as
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.IR image-type .
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Pass
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.B list
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as
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.I image-type
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to see the list of supported image types. If this option is absent, then it
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defaults to
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.B kernel
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(legacy image). If this option is absent when
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.B \-l
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is passed, then
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.B mkimage
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will attempt to automatically detect the image type. Not all image types support
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automatic detection, so it may be necessary to pass
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.B \-T
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explicitly.
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.IP
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When creating a FIT image with
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.BR \-f ,
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the image type is always set to
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.BR flat_dt .
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In this case,
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.B \-T
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specifies the image node's \(oqtype\(cq property. If
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.B \-T
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is absent, then the \(oqtype\(cq property will default to
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.BR kernel .
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.
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.TP
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.B \-q
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.TQ
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.B \-\-quiet
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Quiet. Don't print the image header.
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.
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.TP
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.B \-v
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.TQ
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.B \-\-verbose
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Verbose. Print file names as they are added to the image.
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.
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.TP
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.B \-V
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.TQ
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.B \-\-version
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Print version information and exit.
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.
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.SS General image-creation options
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.
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.TP
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.BI \-A " architecture"
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.TQ
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.BI \-\-architecture " architecture"
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Set the architecture. Pass
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.B \-h
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as the architecture to see the list of supported architectures. If
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.B \-A
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is absent, it defaults to
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.BR ppc .
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.
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.TP
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.BI \-O " os"
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.TQ
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.BI \-\-os " os"
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Set the operating system. The U-Boot
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.I bootm
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command changes boot method based on the OS type.
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Pass
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.B \-h
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as the
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.I os
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to see the list of supported OSs. If
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.B \-O
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is absent, it defaults to
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.BR linux .
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.
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.TP
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.BI \-C " compression-type"
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.TQ
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.BI \-\-compression " compression-type"
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Set the compression type. The image data should have already been compressed
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using this compression type.
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.B mkimage
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will not automatically compress image data.
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Pass
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.B \-h
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as the
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.I compression-type
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to see the list of supported compression types. If
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.B \-C
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is absent, it defaults to
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.BR gzip .
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.
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.TP
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.BI \-a " load-address"
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.TQ
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.BI \-\-load\-address " load-address"
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Set the absolute address to load the image data to.
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.I load-address
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will be interpreted as a hexadecimal number.
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.
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.TP
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.BI \-e " entry-point"
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.TQ
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.BI \-\-entry\-point " entry-point"
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Set the absolute address of the image entry point. The U-Boot
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.I bootm
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command will jump to this address after loading the image.
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.I entry-point
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will be interpreted as a hexadecimal number.
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.
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.TP
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.BI \-n " primary-configuration"
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.TQ
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.BI \-\-config " primary-configuration"
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Images may require additional configuration not specified with other options,
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often in a image-type-specific format. The image types which support this
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option and the format of their configuration are listed in
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.BR CONFIGURATION .
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.
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.TP
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.BI \-R " secondary-configuration"
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.TQ
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.BI \-\-secondary\-config " secondary-configuration"
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Some image types support a second set of configuration data. The image types
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which support secondary configuration and the formap of their configuration are
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listed in
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.BR CONFIGURATION .
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.
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.TP
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.BI \-d " image-data-file"
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.TQ
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.BI \-\-image " image-data-file"
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Use image data from
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.IR image-data-file .
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If the
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.I image-type
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is
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.BR multi ,
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then multiple images may be specified, separated by colons:
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.RS
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.IP
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.IR image-data-file [\fB:\fP image-data-file .\|.\|.]
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.RE
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.
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.TP
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.B \-x
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.TQ
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.B \-\-xip
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Set the
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.I XIP
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(execute in place) flag. The U-Boot
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.I bootm
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command will not load the image data, and instead will assume it is already
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accessible at the load address (such as via memory-mapped flash).
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.
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.SS Options for creating FIT images
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.
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.TP
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.BI \-b " device-tree-file"
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.TQ
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.BI \-\-device\-tree " device-tree-file"
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Appends the device tree binary file (.dtb) to the FIT.
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.
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.TP
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.BI \-c " comment"
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.TQ
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.BI \-\-comment " comment"
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Specifies a comment to be added when signing. This is typically a message which
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describes how the image was signed or some other useful information.
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.
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.TP
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.BI \-D " dtc-options"
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.TQ
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.BI \-\-dtcopts " dtc-options"
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Provide additional options to the device tree compiler when creating the image.
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See
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.BR dtc (1)
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for documentation of possible options. If
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.B \-D
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is absent, it defaults to
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.BR "\-I dts \-O dtb \-p 500" .
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.
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.TP
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.BI \-E
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.TQ
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.BI \-\-external
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After processing, move the image data outside the FIT and store a data offset
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in the FIT. Images will be placed one after the other immediately after the FIT,
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with each one aligned to a 4-byte boundary. The existing \(oqdata\(cq property
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in each image will be replaced with \(oqdata-offset\(cq and \(oqdata-size\(cq
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properties. A \(oqdata-offset\(cq of 0 indicates that it starts in the first
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(4-byte-aligned) byte after the FIT.
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.
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.TP
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.BI \-B " alignment"
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.TQ
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.BI \-\-alignment " alignment"
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The alignment, in hexadecimal, that external data will be aligned to. This
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option only has an effect when \-E is specified.
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.
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.TP
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.BI \-p " external-position"
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.TQ
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.BI \-\-position " external-position"
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Place external data at a static external position. Instead of writing a
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\(oqdata-offset\(cq property defining the offset from the end of the FIT,
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.B \-p
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will use \(oqdata-position\(cq as the absolute position from the base of the
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FIT. See
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.B \-E
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for details on using external data.
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.
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.TP
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\fB\-f \fIimage-tree-source-file\fR | \fBauto
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.TQ
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\fB\-\-fit \fIimage-tree-source-file\fR | \fBauto
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Image tree source file that describes the structure and contents of the
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FIT image.
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.IP
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In some simple cases, the image tree source can be generated automatically. To
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use this feature, pass
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.BR "\-f auto" .
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The
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.BR \-d ,
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.BR \-A ,
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.BR \-O ,
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.BR \-T ,
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.BR \-C ,
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.BR \-a ,
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and
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.B \-e
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options may be used to specify the image to include in the FIT and its
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attributes. No
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.I image-tree-source-file
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is required.
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.
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.TP
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.B \-F
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.TQ
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.B \-\-update
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Indicates that an existing FIT image should be modified. No dtc compilation will
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be performed and
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.B \-f
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should not be passed. This can be used to sign images with additional keys
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after initial image creation.
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.
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.TP
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.BI \-i " ramdisk-file"
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.TQ
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.BI \-\-initramfs " ramdisk-file"
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Append a ramdisk or initramfs file to the image.
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.
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.TP
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.BI \-k " key-directory"
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.TQ
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.BI \-\-key\-dir " key-directory"
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Specifies the directory containing keys to use for signing. This directory
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should contain a private key file
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.IR name .key
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for use with signing, and a certificate
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.IR name .crt
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(containing the public key) for use with verification. The public key is only
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necessary when embedding it into another device tree using
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.BR \-K .
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.I name
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defaults to the value of the signature node's \(oqkey-name-hint\(cq property,
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but may be overridden using
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.BR \-g .
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.
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.TP
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.BI \-G " key-file"
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.TQ
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.BI \-\-key\-file " key-file"
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Specifies the private key file to use when signing. This option may be used
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instead of \-k.
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.
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.TP
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.BI \-K " key-destination"
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.TQ
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.BI \-\-key\-dest " key-destination"
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Specifies a compiled device tree binary file (typically .dtb) to write
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public key information into. When a private key is used to sign an image,
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the corresponding public key is written into this file for for run-time
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verification. Typically the file here is the device tree binary used by
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CONFIG_OF_CONTROL in U-Boot.
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.
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.TP
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.BI \-g " key-name-hint"
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.TQ
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.BI \-\-key\-name\-hint " key-name-hint"
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Overrides the signature node's \(oqkey-name-hint\(cq property. This is
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especially useful when signing an image with
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.BR "\-f auto" .
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This is the
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.I name
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part of the key. The directory part is set by
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.BR \-k .
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This option also indicates that the images included in the FIT should be signed.
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If this option is specified, then
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.B \-o
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must be specified as well.
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.
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.TP
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.BI \-o " crypto" , checksum
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.TQ
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.BI \-\-algo " crypto" , checksum
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Specifies the algorithm to be used for signing a FIT image. The default is
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taken from the signature node's \(oqalgo\(cq property.
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The valid values for
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.I crypto
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are:
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.RS
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.IP
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.TS
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lb.
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rsa2048
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rsa3072
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rsa4096
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ecdsa256
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.TE
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.RE
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.IP
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The valid values for
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.I checksum
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are
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.RS
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.IP
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.TS
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lb.
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sha1
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sha256
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sha384
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sha512
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.TE
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.RE
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.
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.TP
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.B \-r
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.TQ
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.B \-\-key\-required
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Specifies that keys used to sign the FIT are required. This means that they
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must be verified for the image to boot. Without this option, the verification
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will be optional (useful for testing but not for release).
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.
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.TP
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.BI \-N " engine"
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.TQ
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.BI \-\-engine " engine"
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The openssl engine to use when signing and verifying the image. For a complete
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list of available engines, refer to
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.BR engine (1).
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.
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.TP
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.B \-t
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.TQ
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.B \-\-touch
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Update the timestamp in the FIT.
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.IP
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Normally the FIT timestamp is created the first time mkimage runs,
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when converting the source .its to the binary .fit file. This corresponds to
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using
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.BR -f .
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But if the original input to mkimage is a binary file (already compiled), then
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the timestamp is assumed to have been set previously.
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.
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.SH CONFIGURATION
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This section documents the formats of the primary and secondary configuration
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options for each image type which supports them.
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.
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.SS aisimage
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The primary configuration is a file containing a series of
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.I AIS
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(Application Image Script) commands, one per line. Each command has the form
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.RS
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.P
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.IR "command argument " .\|.\|.
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.RE
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.P
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See
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.UR https://\:www\:.ti\:.com/\:lit/\:pdf/\:spraag0
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TI application report SPRAAG0E
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.UE
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for details.
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.
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.SS atmelimage
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The primary configuration is a comma-separated list of NAND Flash parameters of
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the form
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.RS
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.P
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\fIparameter\fB=\fIvalue\fR[\fB,\fIparameter\fB=\fIvalue\fR.\|.\|.\&]
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.RE
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.P
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Valid
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.IR parameter s
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are
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.RS
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.P
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.TS
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lb.
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usePmecc
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nbSectorPerPage
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spareSize
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eccBitReq
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sectorSize
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eccOffset
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.TE
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.RE
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.P
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and valid
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.IR value s
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are decimal numbers. See section 11.4.4.1 of the SAMA5D3 Series Data Sheet for
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valid values for each parameter.
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.
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.SS imximage
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The primary configuration is a file containing configuration commands, as
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documented in doc/\:imx/\:mkimage/\:imximage.txt of the U-Boot source.
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.
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.SS imx8image and imx8mimage
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|
The primary configuration is a file containing configuration commands, as
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documented in doc/\:imx/\:mkimage/\:imx8image.txt of the U-Boot source.
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.
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.SS kwbimage
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|
The primary configuration is a file containing configuration commands, as
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documented in doc/\:imx/\:mkimage/\:kwbimage.txt of the U-Boot source.
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.
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.SS mtk_image
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The primary configuration is a semicolon-separated list of header options of the
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form
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.RS
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.P
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\fIkey\fB=\fIvalue\fR[\fB;\fIkey\fB=\fIvalue\fR.\|.\|.\&]
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.RE
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.P
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where the valid keys are:
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.RS
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.P
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.TS
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lb lbx
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lb l.
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Key Description
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_
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lk T{
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If \fB1\fP, then an \fILK\fP (legacy) image header is used. Otherwise, a
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\fIBootROM\fP image header is used.
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T}
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lkname T{
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The name of the LK image header. The maximum length is 32 ASCII characters. If
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not specified, the default value is \fBU-Boot\fP.
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T}
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media The boot device. See below for valid values.
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nandinfo The desired NAND device type. See below for valid values.
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arm64 If \fB1\fP, then this denotes an AArch64 image.
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hdroffset Increase the reported size of the BRLYT header by this amount.
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.TE
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.RE
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.P
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Valid values for
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.B media
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are:
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.RS
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.P
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.TS
|
|
lb lb
|
|
lb l.
|
|
Value Description
|
|
_
|
|
nand Parallel NAND flash
|
|
snand Serial NAND flash
|
|
nor Serial NOR flash
|
|
emmc \fIeMMC\fP (Embedded Multi-Media Card)
|
|
sdmmc \fISD\fP (Secure Digital) card
|
|
.TE
|
|
.RE
|
|
.P
|
|
Valid values for
|
|
.B nandinfo
|
|
are:
|
|
.RS
|
|
.P
|
|
.TS
|
|
lb lb lb lb lb
|
|
lb l l l l.
|
|
Value NAND type Page size OOB size Total size
|
|
_
|
|
2k+64 Serial 2KiB 64B
|
|
2k+120 Serial 2KiB 120B
|
|
2k+128 Serial 2KiB 128B
|
|
4k+256 Serial 4KiB 256B
|
|
1g:2k+64 Parallel 2KiB 64B 1Gbit
|
|
2g:2k+64 Parallel 2KiB 64B 2Gbit
|
|
4g:2k+64 Parallel 2KiB 64B 4Gbit
|
|
2g:2k+128 Parallel 2KiB 128B 2Gbit
|
|
4g:2k+128 Parallel 2KiB 128B 4Gbit
|
|
.TE
|
|
.RE
|
|
.
|
|
.SS mxsimage
|
|
The primary configuration is a file containing configuration commands, as
|
|
documented in doc/\:imx/\:mkimage/\:mxsimage.txt of the U-Boot source.
|
|
.
|
|
.SS omapimage
|
|
The primary configuration is the optional value
|
|
.BR byteswap .
|
|
If present, each 32-bit word of the image will have its bytes swapped
|
|
(converting from little-endian to big-endian, or vice versa).
|
|
.
|
|
.SS pblimage
|
|
The primary configuration is a file containing the
|
|
.I PBI
|
|
(Pre-Boot Image) header. Each line of the configuration has the format
|
|
.RS
|
|
.P
|
|
.IR value "[ " value .\|.\|.\&]
|
|
.RE
|
|
.P
|
|
Where
|
|
.I value
|
|
is a 32-bit hexadecimal integer. Each
|
|
.I value
|
|
will, after being converted to raw bytes, be literally prepended to the PBI.
|
|
.P
|
|
The secondary configuration is a file with the same format as the primary
|
|
configuration file. It will be inserted into the image after the primary
|
|
configuration data and before the image data.
|
|
.P
|
|
It is traditional to use the primary configuration file for the
|
|
.I RCW
|
|
(Reset Configuration Word), and the secondary configuration file for any
|
|
additional PBI commands. However, it is also possible to convert an existing PBI
|
|
to the above format and \(lqchain\(rq additional data onto the end of the
|
|
image. This may be especially useful for creating secure boot images.
|
|
.
|
|
.SS rkimage
|
|
The primary configuration is the name of the processor to generate the image
|
|
for. Valid values are:
|
|
.RS
|
|
.P
|
|
.TS
|
|
lb.
|
|
px30
|
|
rk3036
|
|
rk3066
|
|
rk3128
|
|
rk3188
|
|
rk322x
|
|
rk3288
|
|
rk3308
|
|
rk3328
|
|
rk3368
|
|
rk3399
|
|
rv1108
|
|
rk3568
|
|
.TE
|
|
.RE
|
|
.
|
|
.SS sunxi_egon
|
|
The primary configuration is the name to use for the device tree.
|
|
.
|
|
.SS ublimage
|
|
The primary configuration is a file containing configuration commands, as
|
|
documented in doc/\:README.ublimage of the U-Boot source.
|
|
.
|
|
.SS zynqimage and zynqmpimage
|
|
For
|
|
.BR zynqmpimage ,
|
|
the primary configuration is a file containing the
|
|
.I PMUFW
|
|
(Power Management Unit Firmware).
|
|
.B zynqimage
|
|
does not use the primary configuration.
|
|
.P
|
|
For both image types, the secondary configuration is a file containinig
|
|
initialization parameters, one per line. Each parameter has the form
|
|
.RS
|
|
.P
|
|
.I address data
|
|
.RE
|
|
.P
|
|
where
|
|
.I address
|
|
and
|
|
.I data
|
|
are hexadecimal integers. The boot ROM will write each
|
|
.I data
|
|
to
|
|
.I address
|
|
when loading the image. At most 256 parameters may be specified in this
|
|
manner.
|
|
.
|
|
.SH BUGS
|
|
Please report bugs to the
|
|
.UR https://\:source\:.denx\:.de/\:u-boot/\:u-boot/\:issues
|
|
U-Boot bug tracker
|
|
.UE .
|
|
.SH EXAMPLES
|
|
.\" Reduce the width of the tab stops to something reasonable
|
|
.ta T 1i
|
|
List image information:
|
|
.RS
|
|
.P
|
|
.EX
|
|
\fBmkimage \-l uImage
|
|
.EE
|
|
.RE
|
|
.P
|
|
Create legacy image with compressed PowerPC Linux kernel:
|
|
.RS
|
|
.P
|
|
.EX
|
|
\fBmkimage \-A powerpc \-O linux \-T kernel \-C gzip \\
|
|
\-a 0 \-e 0 \-n Linux \-d vmlinux.gz uImage
|
|
.EE
|
|
.RE
|
|
.P
|
|
Create FIT image with compressed PowerPC Linux kernel:
|
|
.RS
|
|
.P
|
|
.EX
|
|
\fBmkimage \-f kernel.its kernel.itb
|
|
.EE
|
|
.RE
|
|
.P
|
|
Create FIT image with compressed kernel and sign it with keys in the
|
|
/public/signing\-keys directory. Add corresponding public keys into u\-boot.dtb,
|
|
skipping those for which keys cannot be found. Also add a comment.
|
|
.RS
|
|
.P
|
|
.EX
|
|
\fBmkimage \-f kernel.its \-k /public/signing\-keys \-K u\-boot.dtb \\
|
|
\-c \(dqKernel 3.8 image for production devices\(dq kernel.itb
|
|
.EE
|
|
.RE
|
|
.P
|
|
Add public keys to u\-boot.dtb without needing a FIT to sign. This will also
|
|
create a FIT containing an images node with no data named unused.itb.
|
|
.RS
|
|
.P
|
|
.EX
|
|
\fBmkimage \-f auto \-d /dev/null \-k /public/signing\-keys \-g dev \\
|
|
\-o sha256,rsa2048 \-K u\-boot.dtb unused.itb
|
|
.EE
|
|
.RE
|
|
.P
|
|
Update an existing FIT image, signing it with additional keys.
|
|
Add corresponding public keys into u\-boot.dtb. This will resign all images
|
|
with keys that are available in the new directory. Images that request signing
|
|
with unavailable keys are skipped.
|
|
.RS
|
|
.P
|
|
.EX
|
|
\fBmkimage \-F \-k /secret/signing\-keys \-K u\-boot.dtb \\
|
|
\-c \(dqKernel 3.8 image for production devices\(dq kernel.itb
|
|
.EE
|
|
.RE
|
|
.P
|
|
Create a FIT image containing a kernel, using automatic mode. No .its file
|
|
is required.
|
|
.RS
|
|
.P
|
|
.EX
|
|
\fBmkimage \-f auto \-A arm \-O linux \-T kernel \-C none \-a 43e00000 \-e 0 \\
|
|
\-c \(dqKernel 4.4 image for production devices\(dq \-d vmlinuz kernel.itb
|
|
.EE
|
|
.RE
|
|
.P
|
|
Create a FIT image containing a kernel and some device tree files, using
|
|
automatic mode. No .its file is required.
|
|
.RS
|
|
.P
|
|
.EX
|
|
\fBmkimage \-f auto \-A arm \-O linux \-T kernel \-C none \-a 43e00000 \-e 0 \\
|
|
\-c \(dqKernel 4.4 image for production devices\(dq \-d vmlinuz \\
|
|
\-b /path/to/rk3288\-firefly.dtb \-b /path/to/rk3288\-jerry.dtb kernel.itb
|
|
.EE
|
|
.RE
|
|
.P
|
|
Create a FIT image containing a signed kernel, using automatic mode. No .its
|
|
file is required.
|
|
.RS
|
|
.P
|
|
.EX
|
|
\fBmkimage \-f auto \-A arm \-O linux \-T kernel \-C none \-a 43e00000 \-e 0 \\
|
|
\-d vmlinuz \-k /secret/signing\-keys \-g dev \-o sha256,rsa2048 kernel.itb
|
|
.EE
|
|
.RE
|
|
.
|
|
.SH SEE ALSO
|
|
.BR dtc (1),
|
|
.BR dumpimage (1),
|
|
.BR openssl (1),
|
|
the\~
|
|
.UR https://\:u-boot\:.readthedocs\:.io/\:en/\:latest/\:index.html
|
|
U-Boot documentation
|
|
.UE
|