Added submodule contents into tree
This commit is contained in:
720
externals/mbedtls/tests/scripts/analyze_outcomes.py
vendored
Executable file
720
externals/mbedtls/tests/scripts/analyze_outcomes.py
vendored
Executable file
@@ -0,0 +1,720 @@
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#!/usr/bin/env python3
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"""Analyze the test outcomes from a full CI run.
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This script can also run on outcomes from a partial run, but the results are
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less likely to be useful.
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"""
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import argparse
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import sys
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import traceback
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import re
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import subprocess
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import os
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import typing
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import check_test_cases
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# `ComponentOutcomes` is a named tuple which is defined as:
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# ComponentOutcomes(
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# successes = {
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# "<suite_case>",
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# ...
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# },
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# failures = {
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# "<suite_case>",
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# ...
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# }
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# )
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# suite_case = "<suite>;<case>"
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ComponentOutcomes = typing.NamedTuple('ComponentOutcomes',
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[('successes', typing.Set[str]),
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('failures', typing.Set[str])])
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# `Outcomes` is a representation of the outcomes file,
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# which defined as:
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# Outcomes = {
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# "<component>": ComponentOutcomes,
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# ...
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# }
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Outcomes = typing.Dict[str, ComponentOutcomes]
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class Results:
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"""Process analysis results."""
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def __init__(self):
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self.error_count = 0
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self.warning_count = 0
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def new_section(self, fmt, *args, **kwargs):
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self._print_line('\n*** ' + fmt + ' ***\n', *args, **kwargs)
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def info(self, fmt, *args, **kwargs):
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self._print_line('Info: ' + fmt, *args, **kwargs)
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def error(self, fmt, *args, **kwargs):
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self.error_count += 1
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self._print_line('Error: ' + fmt, *args, **kwargs)
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def warning(self, fmt, *args, **kwargs):
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self.warning_count += 1
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self._print_line('Warning: ' + fmt, *args, **kwargs)
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@staticmethod
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def _print_line(fmt, *args, **kwargs):
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sys.stderr.write((fmt + '\n').format(*args, **kwargs))
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def execute_reference_driver_tests(results: Results, ref_component: str, driver_component: str, \
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outcome_file: str) -> None:
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"""Run the tests specified in ref_component and driver_component. Results
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are stored in the output_file and they will be used for the following
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coverage analysis"""
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results.new_section("Test {} and {}", ref_component, driver_component)
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shell_command = "tests/scripts/all.sh --outcome-file " + outcome_file + \
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" " + ref_component + " " + driver_component
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results.info("Running: {}", shell_command)
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ret_val = subprocess.run(shell_command.split(), check=False).returncode
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if ret_val != 0:
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results.error("failed to run reference/driver components")
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def analyze_coverage(results: Results, outcomes: Outcomes,
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allow_list: typing.List[str], full_coverage: bool) -> None:
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"""Check that all available test cases are executed at least once."""
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available = check_test_cases.collect_available_test_cases()
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for suite_case in available:
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hit = any(suite_case in comp_outcomes.successes or
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suite_case in comp_outcomes.failures
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for comp_outcomes in outcomes.values())
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if not hit and suite_case not in allow_list:
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if full_coverage:
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results.error('Test case not executed: {}', suite_case)
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else:
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results.warning('Test case not executed: {}', suite_case)
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elif hit and suite_case in allow_list:
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# Test Case should be removed from the allow list.
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if full_coverage:
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results.error('Allow listed test case was executed: {}', suite_case)
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else:
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results.warning('Allow listed test case was executed: {}', suite_case)
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def name_matches_pattern(name: str, str_or_re) -> bool:
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"""Check if name matches a pattern, that may be a string or regex.
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- If the pattern is a string, name must be equal to match.
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- If the pattern is a regex, name must fully match.
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"""
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# The CI's python is too old for re.Pattern
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#if isinstance(str_or_re, re.Pattern):
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if not isinstance(str_or_re, str):
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return str_or_re.fullmatch(name) is not None
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else:
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return str_or_re == name
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def analyze_driver_vs_reference(results: Results, outcomes: Outcomes,
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component_ref: str, component_driver: str,
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ignored_suites: typing.List[str], ignored_tests=None) -> None:
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"""Check that all tests passing in the reference component are also
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passing in the corresponding driver component.
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Skip:
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- full test suites provided in ignored_suites list
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- only some specific test inside a test suite, for which the corresponding
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output string is provided
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"""
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ref_outcomes = outcomes.get("component_" + component_ref)
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driver_outcomes = outcomes.get("component_" + component_driver)
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if ref_outcomes is None or driver_outcomes is None:
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results.error("required components are missing: bad outcome file?")
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return
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if not ref_outcomes.successes:
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results.error("no passing test in reference component: bad outcome file?")
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return
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for suite_case in ref_outcomes.successes:
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# suite_case is like "test_suite_foo.bar;Description of test case"
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(full_test_suite, test_string) = suite_case.split(';')
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test_suite = full_test_suite.split('.')[0] # retrieve main part of test suite name
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# Immediately skip fully-ignored test suites
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if test_suite in ignored_suites or full_test_suite in ignored_suites:
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continue
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# For ignored test cases inside test suites, just remember and:
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# don't issue an error if they're skipped with drivers,
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# but issue an error if they're not (means we have a bad entry).
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ignored = False
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if full_test_suite in ignored_tests:
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for str_or_re in ignored_tests[full_test_suite]:
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if name_matches_pattern(test_string, str_or_re):
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ignored = True
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if not ignored and not suite_case in driver_outcomes.successes:
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results.error("PASS -> SKIP/FAIL: {}", suite_case)
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if ignored and suite_case in driver_outcomes.successes:
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results.error("uselessly ignored: {}", suite_case)
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def analyze_outcomes(results: Results, outcomes: Outcomes, args) -> None:
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"""Run all analyses on the given outcome collection."""
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analyze_coverage(results, outcomes, args['allow_list'],
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args['full_coverage'])
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def read_outcome_file(outcome_file: str) -> Outcomes:
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"""Parse an outcome file and return an outcome collection.
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"""
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outcomes = {}
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with open(outcome_file, 'r', encoding='utf-8') as input_file:
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for line in input_file:
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(_platform, component, suite, case, result, _cause) = line.split(';')
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# Note that `component` is not unique. If a test case passes on Linux
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# and fails on FreeBSD, it'll end up in both the successes set and
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# the failures set.
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suite_case = ';'.join([suite, case])
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if component not in outcomes:
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outcomes[component] = ComponentOutcomes(set(), set())
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if result == 'PASS':
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outcomes[component].successes.add(suite_case)
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elif result == 'FAIL':
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outcomes[component].failures.add(suite_case)
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return outcomes
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def do_analyze_coverage(results: Results, outcomes: Outcomes, args) -> None:
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"""Perform coverage analysis."""
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results.new_section("Analyze coverage")
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analyze_outcomes(results, outcomes, args)
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def do_analyze_driver_vs_reference(results: Results, outcomes: Outcomes, args) -> None:
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"""Perform driver vs reference analyze."""
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results.new_section("Analyze driver {} vs reference {}",
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args['component_driver'], args['component_ref'])
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ignored_suites = ['test_suite_' + x for x in args['ignored_suites']]
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analyze_driver_vs_reference(results, outcomes,
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args['component_ref'], args['component_driver'],
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ignored_suites, args['ignored_tests'])
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# List of tasks with a function that can handle this task and additional arguments if required
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KNOWN_TASKS = {
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'analyze_coverage': {
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'test_function': do_analyze_coverage,
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'args': {
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'allow_list': [
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# Algorithm not supported yet
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'test_suite_psa_crypto_metadata;Asymmetric signature: pure EdDSA',
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# Algorithm not supported yet
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'test_suite_psa_crypto_metadata;Cipher: XTS',
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],
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'full_coverage': False,
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}
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},
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# There are 2 options to use analyze_driver_vs_reference_xxx locally:
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# 1. Run tests and then analysis:
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# - tests/scripts/all.sh --outcome-file "$PWD/out.csv" <component_ref> <component_driver>
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# - tests/scripts/analyze_outcomes.py out.csv analyze_driver_vs_reference_xxx
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# 2. Let this script run both automatically:
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# - tests/scripts/analyze_outcomes.py out.csv analyze_driver_vs_reference_xxx
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'analyze_driver_vs_reference_hash': {
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'test_function': do_analyze_driver_vs_reference,
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'args': {
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'component_ref': 'test_psa_crypto_config_reference_hash_use_psa',
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'component_driver': 'test_psa_crypto_config_accel_hash_use_psa',
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'ignored_suites': [
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'shax', 'mdx', # the software implementations that are being excluded
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'md.psa', # purposefully depends on whether drivers are present
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'psa_crypto_low_hash.generated', # testing the builtins
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],
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'ignored_tests': {
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'test_suite_platform': [
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# Incompatible with sanitizers (e.g. ASan). If the driver
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# component uses a sanitizer but the reference component
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# doesn't, we have a PASS vs SKIP mismatch.
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'Check mbedtls_calloc overallocation',
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],
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}
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}
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},
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'analyze_driver_vs_reference_hmac': {
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'test_function': do_analyze_driver_vs_reference,
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'args': {
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'component_ref': 'test_psa_crypto_config_reference_hmac',
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'component_driver': 'test_psa_crypto_config_accel_hmac',
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'ignored_suites': [
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# These suites require legacy hash support, which is disabled
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# in the accelerated component.
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'shax', 'mdx',
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# This suite tests builtins directly, but these are missing
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# in the accelerated case.
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'psa_crypto_low_hash.generated',
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],
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'ignored_tests': {
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'test_suite_md': [
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# Builtin HMAC is not supported in the accelerate component.
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re.compile('.*HMAC.*'),
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# Following tests make use of functions which are not available
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# when MD_C is disabled, as it happens in the accelerated
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# test component.
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re.compile('generic .* Hash file .*'),
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'MD list',
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],
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'test_suite_md.psa': [
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# "legacy only" tests require hash algorithms to be NOT
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# accelerated, but this of course false for the accelerated
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# test component.
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re.compile('PSA dispatch .* legacy only'),
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],
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'test_suite_platform': [
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# Incompatible with sanitizers (e.g. ASan). If the driver
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# component uses a sanitizer but the reference component
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# doesn't, we have a PASS vs SKIP mismatch.
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'Check mbedtls_calloc overallocation',
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],
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}
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}
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},
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'analyze_driver_vs_reference_cipher_aead_cmac': {
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'test_function': do_analyze_driver_vs_reference,
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'args': {
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'component_ref': 'test_psa_crypto_config_reference_cipher_aead_cmac',
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'component_driver': 'test_psa_crypto_config_accel_cipher_aead_cmac',
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# Modules replaced by drivers.
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'ignored_suites': [
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# low-level (block/stream) cipher modules
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'aes', 'aria', 'camellia', 'des', 'chacha20',
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# AEAD modes and CMAC
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'ccm', 'chachapoly', 'cmac', 'gcm',
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# The Cipher abstraction layer
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'cipher',
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],
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'ignored_tests': {
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# PEM decryption is not supported so far.
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# The rest of PEM (write, unencrypted read) works though.
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'test_suite_pem': [
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re.compile(r'PEM read .*(AES|DES|\bencrypt).*'),
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],
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'test_suite_platform': [
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# Incompatible with sanitizers (e.g. ASan). If the driver
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# component uses a sanitizer but the reference component
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# doesn't, we have a PASS vs SKIP mismatch.
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'Check mbedtls_calloc overallocation',
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],
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# Following tests depend on AES_C/DES_C but are not about
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# them really, just need to know some error code is there.
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'test_suite_error': [
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'Low and high error',
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'Single low error'
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],
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# Similar to test_suite_error above.
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'test_suite_version': [
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'Check for MBEDTLS_AES_C when already present',
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],
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# The en/decryption part of PKCS#12 is not supported so far.
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# The rest of PKCS#12 (key derivation) works though.
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'test_suite_pkcs12': [
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re.compile(r'PBE Encrypt, .*'),
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re.compile(r'PBE Decrypt, .*'),
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],
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# The en/decryption part of PKCS#5 is not supported so far.
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# The rest of PKCS#5 (PBKDF2) works though.
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'test_suite_pkcs5': [
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re.compile(r'PBES2 Encrypt, .*'),
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re.compile(r'PBES2 Decrypt .*'),
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],
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# Encrypted keys are not supported so far.
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# pylint: disable=line-too-long
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'test_suite_pkparse': [
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'Key ASN1 (Encrypted key PKCS12, trailing garbage data)',
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'Key ASN1 (Encrypted key PKCS5, trailing garbage data)',
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re.compile(r'Parse (RSA|EC) Key .*\(.* ([Ee]ncrypted|password).*\)'),
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],
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}
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}
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},
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'analyze_driver_vs_reference_ecp_light_only': {
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'test_function': do_analyze_driver_vs_reference,
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'args': {
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'component_ref': 'test_psa_crypto_config_reference_ecc_ecp_light_only',
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'component_driver': 'test_psa_crypto_config_accel_ecc_ecp_light_only',
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'ignored_suites': [
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# Modules replaced by drivers
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'ecdsa', 'ecdh', 'ecjpake',
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],
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'ignored_tests': {
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'test_suite_platform': [
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# Incompatible with sanitizers (e.g. ASan). If the driver
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# component uses a sanitizer but the reference component
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# doesn't, we have a PASS vs SKIP mismatch.
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'Check mbedtls_calloc overallocation',
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],
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# This test wants a legacy function that takes f_rng, p_rng
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# arguments, and uses legacy ECDSA for that. The test is
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# really about the wrapper around the PSA RNG, not ECDSA.
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'test_suite_random': [
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'PSA classic wrapper: ECDSA signature (SECP256R1)',
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],
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# In the accelerated test ECP_C is not set (only ECP_LIGHT is)
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# so we must ignore disparities in the tests for which ECP_C
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# is required.
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'test_suite_ecp': [
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re.compile(r'ECP check public-private .*'),
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re.compile(r'ECP calculate public: .*'),
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re.compile(r'ECP gen keypair .*'),
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re.compile(r'ECP point muladd .*'),
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re.compile(r'ECP point multiplication .*'),
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re.compile(r'ECP test vectors .*'),
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],
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'test_suite_ssl': [
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# This deprecated function is only present when ECP_C is On.
|
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'Test configuration of groups for DHE through mbedtls_ssl_conf_curves()',
|
||||
],
|
||||
}
|
||||
}
|
||||
},
|
||||
'analyze_driver_vs_reference_no_ecp_at_all': {
|
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'test_function': do_analyze_driver_vs_reference,
|
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'args': {
|
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'component_ref': 'test_psa_crypto_config_reference_ecc_no_ecp_at_all',
|
||||
'component_driver': 'test_psa_crypto_config_accel_ecc_no_ecp_at_all',
|
||||
'ignored_suites': [
|
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# Modules replaced by drivers
|
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'ecp', 'ecdsa', 'ecdh', 'ecjpake',
|
||||
],
|
||||
'ignored_tests': {
|
||||
'test_suite_platform': [
|
||||
# Incompatible with sanitizers (e.g. ASan). If the driver
|
||||
# component uses a sanitizer but the reference component
|
||||
# doesn't, we have a PASS vs SKIP mismatch.
|
||||
'Check mbedtls_calloc overallocation',
|
||||
],
|
||||
# See ecp_light_only
|
||||
'test_suite_random': [
|
||||
'PSA classic wrapper: ECDSA signature (SECP256R1)',
|
||||
],
|
||||
'test_suite_pkparse': [
|
||||
# When PK_PARSE_C and ECP_C are defined then PK_PARSE_EC_COMPRESSED
|
||||
# is automatically enabled in build_info.h (backward compatibility)
|
||||
# even if it is disabled in config_psa_crypto_no_ecp_at_all(). As a
|
||||
# consequence compressed points are supported in the reference
|
||||
# component but not in the accelerated one, so they should be skipped
|
||||
# while checking driver's coverage.
|
||||
re.compile(r'Parse EC Key .*compressed\)'),
|
||||
re.compile(r'Parse Public EC Key .*compressed\)'),
|
||||
],
|
||||
# See ecp_light_only
|
||||
'test_suite_ssl': [
|
||||
'Test configuration of groups for DHE through mbedtls_ssl_conf_curves()',
|
||||
],
|
||||
}
|
||||
}
|
||||
},
|
||||
'analyze_driver_vs_reference_ecc_no_bignum': {
|
||||
'test_function': do_analyze_driver_vs_reference,
|
||||
'args': {
|
||||
'component_ref': 'test_psa_crypto_config_reference_ecc_no_bignum',
|
||||
'component_driver': 'test_psa_crypto_config_accel_ecc_no_bignum',
|
||||
'ignored_suites': [
|
||||
# Modules replaced by drivers
|
||||
'ecp', 'ecdsa', 'ecdh', 'ecjpake',
|
||||
'bignum_core', 'bignum_random', 'bignum_mod', 'bignum_mod_raw',
|
||||
'bignum.generated', 'bignum.misc',
|
||||
],
|
||||
'ignored_tests': {
|
||||
'test_suite_platform': [
|
||||
# Incompatible with sanitizers (e.g. ASan). If the driver
|
||||
# component uses a sanitizer but the reference component
|
||||
# doesn't, we have a PASS vs SKIP mismatch.
|
||||
'Check mbedtls_calloc overallocation',
|
||||
],
|
||||
# See ecp_light_only
|
||||
'test_suite_random': [
|
||||
'PSA classic wrapper: ECDSA signature (SECP256R1)',
|
||||
],
|
||||
# See no_ecp_at_all
|
||||
'test_suite_pkparse': [
|
||||
re.compile(r'Parse EC Key .*compressed\)'),
|
||||
re.compile(r'Parse Public EC Key .*compressed\)'),
|
||||
],
|
||||
'test_suite_asn1parse': [
|
||||
'INTEGER too large for mpi',
|
||||
],
|
||||
'test_suite_asn1write': [
|
||||
re.compile(r'ASN.1 Write mpi.*'),
|
||||
],
|
||||
'test_suite_debug': [
|
||||
re.compile(r'Debug print mbedtls_mpi.*'),
|
||||
],
|
||||
# See ecp_light_only
|
||||
'test_suite_ssl': [
|
||||
'Test configuration of groups for DHE through mbedtls_ssl_conf_curves()',
|
||||
],
|
||||
}
|
||||
}
|
||||
},
|
||||
'analyze_driver_vs_reference_ecc_ffdh_no_bignum': {
|
||||
'test_function': do_analyze_driver_vs_reference,
|
||||
'args': {
|
||||
'component_ref': 'test_psa_crypto_config_reference_ecc_ffdh_no_bignum',
|
||||
'component_driver': 'test_psa_crypto_config_accel_ecc_ffdh_no_bignum',
|
||||
'ignored_suites': [
|
||||
# Modules replaced by drivers
|
||||
'ecp', 'ecdsa', 'ecdh', 'ecjpake', 'dhm',
|
||||
'bignum_core', 'bignum_random', 'bignum_mod', 'bignum_mod_raw',
|
||||
'bignum.generated', 'bignum.misc',
|
||||
],
|
||||
'ignored_tests': {
|
||||
'test_suite_platform': [
|
||||
# Incompatible with sanitizers (e.g. ASan). If the driver
|
||||
# component uses a sanitizer but the reference component
|
||||
# doesn't, we have a PASS vs SKIP mismatch.
|
||||
'Check mbedtls_calloc overallocation',
|
||||
],
|
||||
# See ecp_light_only
|
||||
'test_suite_random': [
|
||||
'PSA classic wrapper: ECDSA signature (SECP256R1)',
|
||||
],
|
||||
# See no_ecp_at_all
|
||||
'test_suite_pkparse': [
|
||||
re.compile(r'Parse EC Key .*compressed\)'),
|
||||
re.compile(r'Parse Public EC Key .*compressed\)'),
|
||||
],
|
||||
'test_suite_asn1parse': [
|
||||
'INTEGER too large for mpi',
|
||||
],
|
||||
'test_suite_asn1write': [
|
||||
re.compile(r'ASN.1 Write mpi.*'),
|
||||
],
|
||||
'test_suite_debug': [
|
||||
re.compile(r'Debug print mbedtls_mpi.*'),
|
||||
],
|
||||
# See ecp_light_only
|
||||
'test_suite_ssl': [
|
||||
'Test configuration of groups for DHE through mbedtls_ssl_conf_curves()',
|
||||
],
|
||||
}
|
||||
}
|
||||
},
|
||||
'analyze_driver_vs_reference_ffdh_alg': {
|
||||
'test_function': do_analyze_driver_vs_reference,
|
||||
'args': {
|
||||
'component_ref': 'test_psa_crypto_config_reference_ffdh',
|
||||
'component_driver': 'test_psa_crypto_config_accel_ffdh',
|
||||
'ignored_suites': ['dhm'],
|
||||
'ignored_tests': {
|
||||
'test_suite_platform': [
|
||||
# Incompatible with sanitizers (e.g. ASan). If the driver
|
||||
# component uses a sanitizer but the reference component
|
||||
# doesn't, we have a PASS vs SKIP mismatch.
|
||||
'Check mbedtls_calloc overallocation',
|
||||
],
|
||||
}
|
||||
}
|
||||
},
|
||||
'analyze_driver_vs_reference_tfm_config': {
|
||||
'test_function': do_analyze_driver_vs_reference,
|
||||
'args': {
|
||||
'component_ref': 'test_tfm_config',
|
||||
'component_driver': 'test_tfm_config_p256m_driver_accel_ec',
|
||||
'ignored_suites': [
|
||||
# Modules replaced by drivers
|
||||
'asn1parse', 'asn1write',
|
||||
'ecp', 'ecdsa', 'ecdh', 'ecjpake',
|
||||
'bignum_core', 'bignum_random', 'bignum_mod', 'bignum_mod_raw',
|
||||
'bignum.generated', 'bignum.misc',
|
||||
],
|
||||
'ignored_tests': {
|
||||
'test_suite_platform': [
|
||||
# Incompatible with sanitizers (e.g. ASan). If the driver
|
||||
# component uses a sanitizer but the reference component
|
||||
# doesn't, we have a PASS vs SKIP mismatch.
|
||||
'Check mbedtls_calloc overallocation',
|
||||
],
|
||||
# See ecp_light_only
|
||||
'test_suite_random': [
|
||||
'PSA classic wrapper: ECDSA signature (SECP256R1)',
|
||||
],
|
||||
}
|
||||
}
|
||||
},
|
||||
'analyze_driver_vs_reference_rsa': {
|
||||
'test_function': do_analyze_driver_vs_reference,
|
||||
'args': {
|
||||
'component_ref': 'test_psa_crypto_config_reference_rsa_crypto',
|
||||
'component_driver': 'test_psa_crypto_config_accel_rsa_crypto',
|
||||
'ignored_suites': [
|
||||
# Modules replaced by drivers.
|
||||
'rsa', 'pkcs1_v15', 'pkcs1_v21',
|
||||
# We temporarily don't care about PK stuff.
|
||||
'pk', 'pkwrite', 'pkparse'
|
||||
],
|
||||
'ignored_tests': {
|
||||
'test_suite_platform': [
|
||||
# Incompatible with sanitizers (e.g. ASan). If the driver
|
||||
# component uses a sanitizer but the reference component
|
||||
# doesn't, we have a PASS vs SKIP mismatch.
|
||||
'Check mbedtls_calloc overallocation',
|
||||
],
|
||||
# Following tests depend on RSA_C but are not about
|
||||
# them really, just need to know some error code is there.
|
||||
'test_suite_error': [
|
||||
'Low and high error',
|
||||
'Single high error'
|
||||
],
|
||||
# Constant time operations only used for PKCS1_V15
|
||||
'test_suite_constant_time': [
|
||||
re.compile(r'mbedtls_ct_zeroize_if .*'),
|
||||
re.compile(r'mbedtls_ct_memmove_left .*')
|
||||
],
|
||||
'test_suite_psa_crypto': [
|
||||
# We don't support generate_key_ext entry points
|
||||
# in drivers yet.
|
||||
re.compile(r'PSA generate key ext: RSA, e=.*'),
|
||||
],
|
||||
}
|
||||
}
|
||||
},
|
||||
'analyze_block_cipher_dispatch': {
|
||||
'test_function': do_analyze_driver_vs_reference,
|
||||
'args': {
|
||||
'component_ref': 'test_full_block_cipher_legacy_dispatch',
|
||||
'component_driver': 'test_full_block_cipher_psa_dispatch',
|
||||
'ignored_suites': [
|
||||
# Skipped in the accelerated component
|
||||
'aes', 'aria', 'camellia',
|
||||
# These require AES_C, ARIA_C or CAMELLIA_C to be enabled in
|
||||
# order for the cipher module (actually cipher_wrapper) to work
|
||||
# properly. However these symbols are disabled in the accelerated
|
||||
# component so we ignore them.
|
||||
'cipher.ccm', 'cipher.gcm', 'cipher.aes', 'cipher.aria',
|
||||
'cipher.camellia',
|
||||
],
|
||||
'ignored_tests': {
|
||||
'test_suite_cmac': [
|
||||
# Following tests require AES_C/ARIA_C/CAMELLIA_C to be enabled,
|
||||
# but these are not available in the accelerated component.
|
||||
'CMAC null arguments',
|
||||
re.compile('CMAC.* (AES|ARIA|Camellia).*'),
|
||||
],
|
||||
'test_suite_cipher.padding': [
|
||||
# Following tests require AES_C/CAMELLIA_C to be enabled,
|
||||
# but these are not available in the accelerated component.
|
||||
re.compile('Set( non-existent)? padding with (AES|CAMELLIA).*'),
|
||||
],
|
||||
'test_suite_pkcs5': [
|
||||
# The AES part of PKCS#5 PBES2 is not yet supported.
|
||||
# The rest of PKCS#5 (PBKDF2) works, though.
|
||||
re.compile(r'PBES2 .* AES-.*')
|
||||
],
|
||||
'test_suite_pkparse': [
|
||||
# PEM (called by pkparse) requires AES_C in order to decrypt
|
||||
# the key, but this is not available in the accelerated
|
||||
# component.
|
||||
re.compile('Parse RSA Key.*(password|AES-).*'),
|
||||
],
|
||||
'test_suite_pem': [
|
||||
# Following tests require AES_C, but this is diabled in the
|
||||
# accelerated component.
|
||||
re.compile('PEM read .*AES.*'),
|
||||
'PEM read (unknown encryption algorithm)',
|
||||
],
|
||||
'test_suite_error': [
|
||||
# Following tests depend on AES_C but are not about them
|
||||
# really, just need to know some error code is there.
|
||||
'Single low error',
|
||||
'Low and high error',
|
||||
],
|
||||
'test_suite_version': [
|
||||
# Similar to test_suite_error above.
|
||||
'Check for MBEDTLS_AES_C when already present',
|
||||
],
|
||||
'test_suite_platform': [
|
||||
# Incompatible with sanitizers (e.g. ASan). If the driver
|
||||
# component uses a sanitizer but the reference component
|
||||
# doesn't, we have a PASS vs SKIP mismatch.
|
||||
'Check mbedtls_calloc overallocation',
|
||||
],
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
def main():
|
||||
main_results = Results()
|
||||
|
||||
try:
|
||||
parser = argparse.ArgumentParser(description=__doc__)
|
||||
parser.add_argument('outcomes', metavar='OUTCOMES.CSV',
|
||||
help='Outcome file to analyze')
|
||||
parser.add_argument('specified_tasks', default='all', nargs='?',
|
||||
help='Analysis to be done. By default, run all tasks. '
|
||||
'With one or more TASK, run only those. '
|
||||
'TASK can be the name of a single task or '
|
||||
'comma/space-separated list of tasks. ')
|
||||
parser.add_argument('--list', action='store_true',
|
||||
help='List all available tasks and exit.')
|
||||
parser.add_argument('--require-full-coverage', action='store_true',
|
||||
dest='full_coverage', help="Require all available "
|
||||
"test cases to be executed and issue an error "
|
||||
"otherwise. This flag is ignored if 'task' is "
|
||||
"neither 'all' nor 'analyze_coverage'")
|
||||
options = parser.parse_args()
|
||||
|
||||
if options.list:
|
||||
for task in KNOWN_TASKS:
|
||||
print(task)
|
||||
sys.exit(0)
|
||||
|
||||
if options.specified_tasks == 'all':
|
||||
tasks_list = KNOWN_TASKS.keys()
|
||||
else:
|
||||
tasks_list = re.split(r'[, ]+', options.specified_tasks)
|
||||
for task in tasks_list:
|
||||
if task not in KNOWN_TASKS:
|
||||
sys.stderr.write('invalid task: {}\n'.format(task))
|
||||
sys.exit(2)
|
||||
|
||||
KNOWN_TASKS['analyze_coverage']['args']['full_coverage'] = options.full_coverage
|
||||
|
||||
# If the outcome file exists, parse it once and share the result
|
||||
# among tasks to improve performance.
|
||||
# Otherwise, it will be generated by execute_reference_driver_tests.
|
||||
if not os.path.exists(options.outcomes):
|
||||
if len(tasks_list) > 1:
|
||||
sys.stderr.write("mutiple tasks found, please provide a valid outcomes file.\n")
|
||||
sys.exit(2)
|
||||
|
||||
task_name = tasks_list[0]
|
||||
task = KNOWN_TASKS[task_name]
|
||||
if task['test_function'] != do_analyze_driver_vs_reference: # pylint: disable=comparison-with-callable
|
||||
sys.stderr.write("please provide valid outcomes file for {}.\n".format(task_name))
|
||||
sys.exit(2)
|
||||
|
||||
execute_reference_driver_tests(main_results,
|
||||
task['args']['component_ref'],
|
||||
task['args']['component_driver'],
|
||||
options.outcomes)
|
||||
|
||||
outcomes = read_outcome_file(options.outcomes)
|
||||
|
||||
for task in tasks_list:
|
||||
test_function = KNOWN_TASKS[task]['test_function']
|
||||
test_args = KNOWN_TASKS[task]['args']
|
||||
test_function(main_results, outcomes, test_args)
|
||||
|
||||
main_results.info("Overall results: {} warnings and {} errors",
|
||||
main_results.warning_count, main_results.error_count)
|
||||
|
||||
sys.exit(0 if (main_results.error_count == 0) else 1)
|
||||
|
||||
except Exception: # pylint: disable=broad-except
|
||||
# Print the backtrace and exit explicitly with our chosen status.
|
||||
traceback.print_exc()
|
||||
sys.exit(120)
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
||||
Reference in New Issue
Block a user