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https://github.com/AsahiLinux/u-boot
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test: Convert the vboot test to test/py
Now that we have a suitable test framework we should move all tests into it. The vboot test is a suitable candidate. Rewrite it in Python and move the data files into an appropriate directory. Signed-off-by: Simon Glass <sjg@chromium.org>
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10 changed files with 185 additions and 155 deletions
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@ -58,7 +58,6 @@ There are several ad-hoc tests which run outside the pytest environment:
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test/image - FIT and lagacy image tests (shell script and Python)
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test/stdint - A test that stdint.h can be used in U-Boot (shell script)
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trace - Test for the tracing feature (shell script)
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vboot - Test for verified boot (shell script)
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The above should be converted to run as part of the pytest suite.
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185
test/py/tests/test_vboot.py
Normal file
185
test/py/tests/test_vboot.py
Normal file
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@ -0,0 +1,185 @@
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# Copyright (c) 2013, Google Inc.
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#
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# SPDX-License-Identifier: GPL-2.0+
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#
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# U-Boot Verified Boot Test
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"""
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This tests verified boot in the following ways:
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For image verification:
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- Create FIT (unsigned) with mkimage
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- Check that verification shows that no keys are verified
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- Sign image
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- Check that verification shows that a key is now verified
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For configuration verification:
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- Corrupt signature and check for failure
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- Create FIT (with unsigned configuration) with mkimage
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- Check that image veriication works
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- Sign the FIT and mark the key as 'required' for verification
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- Check that image verification works
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- Corrupt the signature
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- Check that image verification no-longer works
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Tests run with both SHA1 and SHA256 hashing.
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"""
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import pytest
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import sys
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import u_boot_utils as util
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@pytest.mark.buildconfigspec('fit_signature')
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def test_vboot(u_boot_console):
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"""Test verified boot signing with mkimage and verification with 'bootm'.
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This works using sandbox only as it needs to update the device tree used
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by U-Boot to hold public keys from the signing process.
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The SHA1 and SHA256 tests are combined into a single test since the
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key-generation process is quite slow and we want to avoid doing it twice.
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"""
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def dtc(dts):
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"""Run the device-tree compiler to compile a .dts file
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The output file will be the same as the input file but with a .dtb
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extension.
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Args:
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dts: Device tree file to compile.
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"""
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dtb = dts.replace('.dts', '.dtb')
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util.cmd(cons, 'dtc %s %s%s -O dtb '
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'-o %s%s' % (dtc_args, datadir, dts, tmpdir, dtb))
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def run_bootm(test_type, expect_string):
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"""Run a 'bootm' command U-Boot.
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This always starts a fresh U-Boot instance since the device tree may
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contain a new public key.
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Args:
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test_type: A string identifying the test type
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expect_string: A string which is expected in the output
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"""
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cons.cleanup_spawn()
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cons.ensure_spawned()
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cons.log.action('%s: Test Verified Boot Run: %s' % (algo, test_type))
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output = cons.run_command_list(
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['sb load hostfs - 100 %stest.fit' % tmpdir,
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'fdt addr 100',
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'bootm 100'])
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assert(expect_string in output)
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def make_fit(its):
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"""Make a new FIT from the .its source file
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This runs 'mkimage -f' to create a new FIT.
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Args:
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its: Filename containing .its source
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"""
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util.run_and_log(cons, [mkimage, '-D', dtc_args, '-f',
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'%s%s' % (datadir, its), fit])
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def sign_fit():
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"""Sign the FIT
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Signs the FIT and writes the signature into it. It also writes the
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public key into the dtb.
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"""
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cons.log.action('%s: Sign images' % algo)
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util.run_and_log(cons, [mkimage, '-F', '-k', tmpdir, '-K', dtb,
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'-r', fit])
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def test_with_algo(sha):
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"""Test verified boot with the given hash algorithm
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This is the main part of the test code. The same procedure is followed
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for both hashing algorithms.
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Args:
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sha: Either 'sha1' or 'sha256', to select the algorithm to use
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"""
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global algo
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algo = sha
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# Compile our device tree files for kernel and U-Boot
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dtc('sandbox-kernel.dts')
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dtc('sandbox-u-boot.dts')
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# Build the FIT, but don't sign anything yet
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cons.log.action('%s: Test FIT with signed images' % algo)
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make_fit('sign-images-%s.its' % algo)
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run_bootm('unsigned images', 'dev-')
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# Sign images with our dev keys
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sign_fit()
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run_bootm('signed images', 'dev+')
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# Create a fresh .dtb without the public keys
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dtc('sandbox-u-boot.dts')
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cons.log.action('%s: Test FIT with signed configuration' % algo)
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make_fit('sign-configs-%s.its' % algo)
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run_bootm('unsigned config', '%s+ OK' % algo)
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# Sign images with our dev keys
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sign_fit()
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run_bootm('signed config', 'dev+')
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cons.log.action('%s: Check signed config on the host' % algo)
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util.run_and_log(cons, [fit_check_sign, '-f', fit, '-k', tmpdir,
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'-k', dtb])
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# Increment the first byte of the signature, which should cause failure
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sig = util.cmd(cons, 'fdtget -t bx %s %s value' % (fit, sig_node))
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byte_list = sig.split()
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byte = int(byte_list[0], 16)
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byte_list = ['%x' % (byte + 1)] + byte_list[1:]
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sig = ' '.join(byte_list)
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util.cmd(cons, 'fdtput -t bx %s %s value %s' % (fit, sig_node, sig))
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run_bootm('Signed config with bad hash', 'Bad Data Hash')
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cons.log.action('%s: Check bad config on the host' % algo)
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util.run_and_log_expect_exception(cons, [fit_check_sign, '-f', fit,
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'-k', dtb], 1, 'Failed to verify required signature')
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cons = u_boot_console
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tmpdir = cons.config.result_dir + '/'
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tmp = tmpdir + 'vboot.tmp'
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datadir = 'test/py/tests/vboot/'
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fit = '%stest.fit' % tmpdir
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mkimage = cons.config.build_dir + '/tools/mkimage'
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fit_check_sign = cons.config.build_dir + '/tools/fit_check_sign'
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dtc_args = '-I dts -O dtb -i %s' % tmpdir
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dtb = '%ssandbox-u-boot.dtb' % tmpdir
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sig_node = '/configurations/conf@1/signature@1'
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# Create an RSA key pair
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public_exponent = 65537
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util.cmd(cons, 'openssl genpkey -algorithm RSA -out %sdev.key '
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'-pkeyopt rsa_keygen_bits:2048 '
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'-pkeyopt rsa_keygen_pubexp:%d '
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'2>/dev/null' % (tmpdir, public_exponent))
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# Create a certificate containing the public key
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util.cmd(cons, 'openssl req -batch -new -x509 -key %sdev.key -out '
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'%sdev.crt' % (tmpdir, tmpdir))
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# Create a number kernel image with zeroes
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with open('%stest-kernel.bin' % tmpdir, 'w') as fd:
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fd.write(5000 * chr(0))
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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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cons.config.dtb = dtb
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test_with_algo('sha1')
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test_with_algo('sha256')
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finally:
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cons.config.dtb = old_dtb
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3
test/vboot/.gitignore
vendored
3
test/vboot/.gitignore
vendored
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@ -1,3 +0,0 @@
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/*.dtb
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/test.fit
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/dev-keys
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@ -1,151 +0,0 @@
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#!/bin/bash
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#
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# Copyright (c) 2013, Google Inc.
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#
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# Simple Verified Boot Test Script
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#
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# SPDX-License-Identifier: GPL-2.0+
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set -e
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# Run U-Boot and report the result
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# Args:
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# $1: Test message
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run_uboot() {
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echo -n "Test Verified Boot Run: $1: "
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${uboot} -d sandbox-u-boot.dtb >${tmp} -c '
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sb load hostfs - 100 test.fit;
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fdt addr 100;
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bootm 100;
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reset'
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if ! grep -q "$2" ${tmp}; then
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echo
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echo "Verified boot key check failed, output follows:"
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cat ${tmp}
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false
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else
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echo "OK"
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fi
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}
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echo "Simple Verified Boot Test"
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echo "========================="
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echo
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echo "Please see doc/uImage.FIT/verified-boot.txt for more information"
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echo
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err=0
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tmp=/tmp/vboot_test.$$
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dir=$(dirname $0)
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if [ -z ${O} ]; then
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O=.
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fi
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O=$(readlink -f ${O})
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dtc="-I dts -O dtb -p 2000"
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uboot="${O}/u-boot"
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mkimage="${O}/tools/mkimage"
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fit_check_sign="${O}/tools/fit_check_sign"
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keys="${dir}/dev-keys"
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echo ${mkimage} -D "${dtc}"
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echo "Build keys"
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mkdir -p ${keys}
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PUBLIC_EXPONENT=${1}
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if [ -z "${PUBLIC_EXPONENT}" ]; then
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PUBLIC_EXPONENT=65537
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fi
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# Create an RSA key pair
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openssl genpkey -algorithm RSA -out ${keys}/dev.key \
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-pkeyopt rsa_keygen_bits:2048 \
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-pkeyopt rsa_keygen_pubexp:${PUBLIC_EXPONENT} 2>/dev/null
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# Create a certificate containing the public key
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openssl req -batch -new -x509 -key ${keys}/dev.key -out ${keys}/dev.crt
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pushd ${dir} >/dev/null
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function do_test {
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echo do $sha test
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# Compile our device tree files for kernel and U-Boot
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dtc -p 0x1000 sandbox-kernel.dts -O dtb -o sandbox-kernel.dtb
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dtc -p 0x1000 sandbox-u-boot.dts -O dtb -o sandbox-u-boot.dtb
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# Create a number kernel image with zeroes
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head -c 5000 /dev/zero >test-kernel.bin
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# Build the FIT, but don't sign anything yet
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echo Build FIT with signed images
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${mkimage} -D "${dtc}" -f sign-images-$sha.its test.fit >${tmp}
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run_uboot "unsigned signatures:" "dev-"
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# Sign images with our dev keys
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echo Sign images
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${mkimage} -D "${dtc}" -F -k dev-keys -K sandbox-u-boot.dtb \
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-r test.fit >${tmp}
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run_uboot "signed images" "dev+"
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# Create a fresh .dtb without the public keys
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dtc -p 0x1000 sandbox-u-boot.dts -O dtb -o sandbox-u-boot.dtb
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echo Build FIT with signed configuration
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${mkimage} -D "${dtc}" -f sign-configs-$sha.its test.fit >${tmp}
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run_uboot "unsigned config" $sha"+ OK"
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# Sign images with our dev keys
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echo Sign images
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${mkimage} -D "${dtc}" -F -k dev-keys -K sandbox-u-boot.dtb \
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-r test.fit >${tmp}
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run_uboot "signed config" "dev+"
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echo check signed config on the host
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if ! ${fit_check_sign} -f test.fit -k sandbox-u-boot.dtb >${tmp}; then
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echo
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echo "Verified boot key check on host failed, output follows:"
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cat ${tmp}
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false
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else
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if ! grep -q "dev+" ${tmp}; then
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echo
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echo "Verified boot key check failed, output follows:"
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cat ${tmp}
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false
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else
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echo "OK"
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fi
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fi
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run_uboot "signed config" "dev+"
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# Increment the first byte of the signature, which should cause failure
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sig=$(fdtget -t bx test.fit /configurations/conf@1/signature@1 value)
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newbyte=$(printf %x $((0x${sig:0:2} + 1)))
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sig="${newbyte} ${sig:2}"
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fdtput -t bx test.fit /configurations/conf@1/signature@1 value ${sig}
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run_uboot "signed config with bad hash" "Bad Data Hash"
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}
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sha=sha1
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do_test
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sha=sha256
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do_test
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popd >/dev/null
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echo
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if ${ok}; then
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echo "Test passed"
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else
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echo "Test failed"
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fi
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