mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-08 14:14:32 +00:00
bddd985734
The Linux ramdisk should always be decompressed by the kernel itself, not by U-Boot. Therefore, the 'compression' node in the FIT image should always be set to "none" for ramdisk images, since the only point of using that node is if you want U-Boot to do the decompression itself. Yet some systems populate the node to the compression algorithm used by the kernel instead. This used to be ignored, but now that we support decompression of all image types it becomes a problem. Since ramdisks should never be decompressed by U-Boot anyway, this patch adds a special exception for them to avoid these issues. Still, setting the 'compression' node like that is wrong in the first place, so we still want to print out a warning so that third-party distributions doing this can notice and fix it. Signed-off-by: Julius Werner <jwerner@chromium.org> Reviewed-by: Heiko Schocher <hs@denx.de> Tested-by: Heiko Schocher <hs@denx.de> Reviewed-by: Simon Goldschmidt <simon.k.r.goldschmidt@gmail.com>
459 lines
16 KiB
Python
Executable file
459 lines
16 KiB
Python
Executable file
# SPDX-License-Identifier: GPL-2.0+
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# Copyright (c) 2013, Google Inc.
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#
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# Sanity check of the FIT handling in U-Boot
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from __future__ import print_function
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import os
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import pytest
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import struct
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import u_boot_utils as util
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# Define a base ITS which we can adjust using % and a dictionary
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base_its = '''
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/dts-v1/;
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/ {
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description = "Chrome OS kernel image with one or more FDT blobs";
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#address-cells = <1>;
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images {
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kernel@1 {
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data = /incbin/("%(kernel)s");
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type = "kernel";
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arch = "sandbox";
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os = "linux";
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compression = "%(compression)s";
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load = <0x40000>;
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entry = <0x8>;
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};
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kernel@2 {
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data = /incbin/("%(loadables1)s");
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type = "kernel";
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arch = "sandbox";
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os = "linux";
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compression = "none";
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%(loadables1_load)s
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entry = <0x0>;
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};
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fdt@1 {
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description = "snow";
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data = /incbin/("%(fdt)s");
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type = "flat_dt";
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arch = "sandbox";
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%(fdt_load)s
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compression = "%(compression)s";
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signature@1 {
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algo = "sha1,rsa2048";
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key-name-hint = "dev";
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};
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};
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ramdisk@1 {
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description = "snow";
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data = /incbin/("%(ramdisk)s");
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type = "ramdisk";
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arch = "sandbox";
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os = "linux";
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%(ramdisk_load)s
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compression = "%(compression)s";
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};
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ramdisk@2 {
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description = "snow";
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data = /incbin/("%(loadables2)s");
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type = "ramdisk";
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arch = "sandbox";
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os = "linux";
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%(loadables2_load)s
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compression = "none";
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};
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};
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configurations {
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default = "conf@1";
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conf@1 {
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kernel = "kernel@1";
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fdt = "fdt@1";
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%(ramdisk_config)s
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%(loadables_config)s
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};
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};
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};
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'''
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# Define a base FDT - currently we don't use anything in this
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base_fdt = '''
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/dts-v1/;
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/ {
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model = "Sandbox Verified Boot Test";
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compatible = "sandbox";
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reset@0 {
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compatible = "sandbox,reset";
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};
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};
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'''
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# This is the U-Boot script that is run for each test. First load the FIT,
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# then run the 'bootm' command, then save out memory from the places where
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# we expect 'bootm' to write things. Then quit.
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base_script = '''
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host load hostfs 0 %(fit_addr)x %(fit)s
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fdt addr %(fit_addr)x
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bootm start %(fit_addr)x
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bootm loados
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host save hostfs 0 %(kernel_addr)x %(kernel_out)s %(kernel_size)x
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host save hostfs 0 %(fdt_addr)x %(fdt_out)s %(fdt_size)x
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host save hostfs 0 %(ramdisk_addr)x %(ramdisk_out)s %(ramdisk_size)x
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host save hostfs 0 %(loadables1_addr)x %(loadables1_out)s %(loadables1_size)x
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host save hostfs 0 %(loadables2_addr)x %(loadables2_out)s %(loadables2_size)x
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'''
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@pytest.mark.boardspec('sandbox')
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@pytest.mark.buildconfigspec('fit_signature')
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@pytest.mark.requiredtool('dtc')
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def test_fit(u_boot_console):
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def make_fname(leaf):
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"""Make a temporary filename
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Args:
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leaf: Leaf name of file to create (within temporary directory)
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Return:
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Temporary filename
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"""
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return os.path.join(cons.config.build_dir, leaf)
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def filesize(fname):
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"""Get the size of a file
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Args:
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fname: Filename to check
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Return:
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Size of file in bytes
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"""
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return os.stat(fname).st_size
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def read_file(fname):
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"""Read the contents of a file
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Args:
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fname: Filename to read
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Returns:
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Contents of file as a string
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"""
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with open(fname, 'rb') as fd:
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return fd.read()
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def make_dtb():
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"""Make a sample .dts file and compile it to a .dtb
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Returns:
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Filename of .dtb file created
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"""
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src = make_fname('u-boot.dts')
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dtb = make_fname('u-boot.dtb')
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with open(src, 'w') as fd:
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print(base_fdt, file=fd)
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util.run_and_log(cons, ['dtc', src, '-O', 'dtb', '-o', dtb])
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return dtb
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def make_its(params):
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"""Make a sample .its file with parameters embedded
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Args:
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params: Dictionary containing parameters to embed in the %() strings
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Returns:
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Filename of .its file created
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"""
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its = make_fname('test.its')
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with open(its, 'w') as fd:
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print(base_its % params, file=fd)
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return its
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def make_fit(mkimage, params):
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"""Make a sample .fit file ready for loading
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This creates a .its script with the selected parameters and uses mkimage to
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turn this into a .fit image.
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Args:
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mkimage: Filename of 'mkimage' utility
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params: Dictionary containing parameters to embed in the %() strings
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Return:
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Filename of .fit file created
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"""
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fit = make_fname('test.fit')
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its = make_its(params)
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util.run_and_log(cons, [mkimage, '-f', its, fit])
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with open(make_fname('u-boot.dts'), 'w') as fd:
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print(base_fdt, file=fd)
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return fit
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def make_kernel(filename, text):
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"""Make a sample kernel with test data
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Args:
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filename: the name of the file you want to create
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Returns:
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Full path and filename of the kernel it created
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"""
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fname = make_fname(filename)
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data = ''
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for i in range(100):
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data += 'this %s %d is unlikely to boot\n' % (text, i)
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with open(fname, 'w') as fd:
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print(data, file=fd)
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return fname
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def make_ramdisk(filename, text):
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"""Make a sample ramdisk with test data
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Returns:
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Filename of ramdisk created
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"""
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fname = make_fname(filename)
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data = ''
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for i in range(100):
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data += '%s %d was seldom used in the middle ages\n' % (text, i)
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with open(fname, 'w') as fd:
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print(data, file=fd)
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return fname
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def make_compressed(filename):
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util.run_and_log(cons, ['gzip', '-f', '-k', filename])
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return filename + '.gz'
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def find_matching(text, match):
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"""Find a match in a line of text, and return the unmatched line portion
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This is used to extract a part of a line from some text. The match string
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is used to locate the line - we use the first line that contains that
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match text.
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Once we find a match, we discard the match string itself from the line,
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and return what remains.
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TODO: If this function becomes more generally useful, we could change it
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to use regex and return groups.
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Args:
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text: Text to check (list of strings, one for each command issued)
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match: String to search for
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Return:
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String containing unmatched portion of line
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Exceptions:
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ValueError: If match is not found
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>>> find_matching(['first line:10', 'second_line:20'], 'first line:')
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'10'
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>>> find_matching(['first line:10', 'second_line:20'], 'second line')
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Traceback (most recent call last):
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...
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ValueError: Test aborted
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>>> find_matching('first line:10\', 'second_line:20'], 'second_line:')
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'20'
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>>> find_matching('first line:10\', 'second_line:20\nthird_line:30'],
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'third_line:')
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'30'
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"""
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__tracebackhide__ = True
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for line in '\n'.join(text).splitlines():
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pos = line.find(match)
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if pos != -1:
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return line[:pos] + line[pos + len(match):]
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pytest.fail("Expected '%s' but not found in output")
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def check_equal(expected_fname, actual_fname, failure_msg):
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"""Check that a file matches its expected contents
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This is always used on out-buffers whose size is decided by the test
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script anyway, which in some cases may be larger than what we're
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actually looking for. So it's safe to truncate it to the size of the
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expected data.
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Args:
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expected_fname: Filename containing expected contents
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actual_fname: Filename containing actual contents
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failure_msg: Message to print on failure
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"""
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expected_data = read_file(expected_fname)
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actual_data = read_file(actual_fname)
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if len(expected_data) < len(actual_data):
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actual_data = actual_data[:len(expected_data)]
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assert expected_data == actual_data, failure_msg
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def check_not_equal(expected_fname, actual_fname, failure_msg):
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"""Check that a file does not match its expected contents
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Args:
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expected_fname: Filename containing expected contents
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actual_fname: Filename containing actual contents
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failure_msg: Message to print on failure
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"""
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expected_data = read_file(expected_fname)
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actual_data = read_file(actual_fname)
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assert expected_data != actual_data, failure_msg
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def run_fit_test(mkimage):
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"""Basic sanity check of FIT loading in U-Boot
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TODO: Almost everything:
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- hash algorithms - invalid hash/contents should be detected
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- signature algorithms - invalid sig/contents should be detected
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- compression
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- checking that errors are detected like:
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- image overwriting
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- missing images
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- invalid configurations
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- incorrect os/arch/type fields
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- empty data
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- images too large/small
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- invalid FDT (e.g. putting a random binary in instead)
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- default configuration selection
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- bootm command line parameters should have desired effect
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- run code coverage to make sure we are testing all the code
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"""
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# Set up invariant files
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control_dtb = make_dtb()
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kernel = make_kernel('test-kernel.bin', 'kernel')
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ramdisk = make_ramdisk('test-ramdisk.bin', 'ramdisk')
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loadables1 = make_kernel('test-loadables1.bin', 'lenrek')
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loadables2 = make_ramdisk('test-loadables2.bin', 'ksidmar')
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kernel_out = make_fname('kernel-out.bin')
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fdt = make_fname('u-boot.dtb')
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fdt_out = make_fname('fdt-out.dtb')
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ramdisk_out = make_fname('ramdisk-out.bin')
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loadables1_out = make_fname('loadables1-out.bin')
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loadables2_out = make_fname('loadables2-out.bin')
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# Set up basic parameters with default values
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params = {
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'fit_addr' : 0x1000,
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'kernel' : kernel,
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'kernel_out' : kernel_out,
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'kernel_addr' : 0x40000,
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'kernel_size' : filesize(kernel),
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'fdt' : fdt,
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'fdt_out' : fdt_out,
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'fdt_addr' : 0x80000,
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'fdt_size' : filesize(control_dtb),
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'fdt_load' : '',
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'ramdisk' : ramdisk,
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'ramdisk_out' : ramdisk_out,
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'ramdisk_addr' : 0xc0000,
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'ramdisk_size' : filesize(ramdisk),
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'ramdisk_load' : '',
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'ramdisk_config' : '',
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'loadables1' : loadables1,
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'loadables1_out' : loadables1_out,
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'loadables1_addr' : 0x100000,
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'loadables1_size' : filesize(loadables1),
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'loadables1_load' : '',
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'loadables2' : loadables2,
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'loadables2_out' : loadables2_out,
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'loadables2_addr' : 0x140000,
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'loadables2_size' : filesize(loadables2),
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'loadables2_load' : '',
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'loadables_config' : '',
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'compression' : 'none',
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}
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# Make a basic FIT and a script to load it
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fit = make_fit(mkimage, params)
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params['fit'] = fit
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cmd = base_script % params
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# First check that we can load a kernel
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# We could perhaps reduce duplication with some loss of readability
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cons.config.dtb = control_dtb
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cons.restart_uboot()
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with cons.log.section('Kernel load'):
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output = cons.run_command_list(cmd.splitlines())
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check_equal(kernel, kernel_out, 'Kernel not loaded')
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check_not_equal(control_dtb, fdt_out,
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'FDT loaded but should be ignored')
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check_not_equal(ramdisk, ramdisk_out,
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'Ramdisk loaded but should not be')
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# Find out the offset in the FIT where U-Boot has found the FDT
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line = find_matching(output, 'Booting using the fdt blob at ')
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fit_offset = int(line, 16) - params['fit_addr']
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fdt_magic = struct.pack('>L', 0xd00dfeed)
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data = read_file(fit)
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# Now find where it actually is in the FIT (skip the first word)
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real_fit_offset = data.find(fdt_magic, 4)
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assert fit_offset == real_fit_offset, (
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'U-Boot loaded FDT from offset %#x, FDT is actually at %#x' %
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(fit_offset, real_fit_offset))
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# Now a kernel and an FDT
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with cons.log.section('Kernel + FDT load'):
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params['fdt_load'] = 'load = <%#x>;' % params['fdt_addr']
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fit = make_fit(mkimage, params)
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cons.restart_uboot()
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output = cons.run_command_list(cmd.splitlines())
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check_equal(kernel, kernel_out, 'Kernel not loaded')
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check_equal(control_dtb, fdt_out, 'FDT not loaded')
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check_not_equal(ramdisk, ramdisk_out,
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'Ramdisk loaded but should not be')
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# Try a ramdisk
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with cons.log.section('Kernel + FDT + Ramdisk load'):
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params['ramdisk_config'] = 'ramdisk = "ramdisk@1";'
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params['ramdisk_load'] = 'load = <%#x>;' % params['ramdisk_addr']
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fit = make_fit(mkimage, params)
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cons.restart_uboot()
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output = cons.run_command_list(cmd.splitlines())
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check_equal(ramdisk, ramdisk_out, 'Ramdisk not loaded')
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# Configuration with some Loadables
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with cons.log.section('Kernel + FDT + Ramdisk load + Loadables'):
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params['loadables_config'] = 'loadables = "kernel@2", "ramdisk@2";'
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params['loadables1_load'] = ('load = <%#x>;' %
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params['loadables1_addr'])
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params['loadables2_load'] = ('load = <%#x>;' %
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params['loadables2_addr'])
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fit = make_fit(mkimage, params)
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cons.restart_uboot()
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output = cons.run_command_list(cmd.splitlines())
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check_equal(loadables1, loadables1_out,
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'Loadables1 (kernel) not loaded')
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check_equal(loadables2, loadables2_out,
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'Loadables2 (ramdisk) not loaded')
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# Kernel, FDT and Ramdisk all compressed
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with cons.log.section('(Kernel + FDT + Ramdisk) compressed'):
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params['compression'] = 'gzip'
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params['kernel'] = make_compressed(kernel)
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params['fdt'] = make_compressed(fdt)
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params['ramdisk'] = make_compressed(ramdisk)
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fit = make_fit(mkimage, params)
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cons.restart_uboot()
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output = cons.run_command_list(cmd.splitlines())
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check_equal(kernel, kernel_out, 'Kernel not loaded')
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check_equal(control_dtb, fdt_out, 'FDT not loaded')
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check_not_equal(ramdisk, ramdisk_out, 'Ramdisk got decompressed?')
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check_equal(ramdisk + '.gz', ramdisk_out, 'Ramdist not loaded')
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cons = u_boot_console
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try:
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# We need to use our own device tree file. Remember to restore it
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# afterwards.
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old_dtb = cons.config.dtb
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mkimage = cons.config.build_dir + '/tools/mkimage'
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run_fit_test(mkimage)
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finally:
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# Go back to the original U-Boot with the correct dtb.
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cons.config.dtb = old_dtb
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cons.restart_uboot()
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