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https://github.com/AsahiLinux/u-boot
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a753190a0c
To avoid duplicating code, create a new fit_util module which provides various utility functions for FIT. Move this code out from the existing test_fit.py and refactor it with addition parameters. Fix up pylint warnings in the conversion. This involves no functional change. Signed-off-by: Simon Glass <sjg@chromium.org>
402 lines
15 KiB
Python
Executable file
402 lines
15 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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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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import fit_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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#address-cells = <1>;
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#size-cells = <0>;
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model = "Sandbox Verified Boot Test";
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compatible = "sandbox";
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binman {
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};
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reset@0 {
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compatible = "sandbox,reset";
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reg = <0>;
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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_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 = fit_util.make_dtb(cons, base_fdt, 'u-boot')
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kernel = fit_util.make_kernel(cons, 'test-kernel.bin', 'kernel')
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ramdisk = make_ramdisk('test-ramdisk.bin', 'ramdisk')
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loadables1 = fit_util.make_kernel(cons, '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 = fit_util.make_fit(cons, mkimage, base_its, 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 = fit_util.make_fit(cons, mkimage, base_its, 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 = fit_util.make_fit(cons, mkimage, base_its, 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 = fit_util.make_fit(cons, mkimage, base_its, 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 = fit_util.make_fit(cons, mkimage, base_its, 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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