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dfcf84aea5
Update comments in the top of the test code generator script with the name of the parent project.
1150 lines
42 KiB
Python
Executable File
1150 lines
42 KiB
Python
Executable File
#!/usr/bin/env python3
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# Test suites code generator.
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#
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# Copyright (C) 2018, Arm Limited, All Rights Reserved
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# SPDX-License-Identifier: Apache-2.0
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#
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# Licensed under the Apache License, Version 2.0 (the "License"); you may
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# not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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# WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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#
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# This file is part of Mbed TLS (https://tls.mbed.org)
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"""
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This script is a key part of Mbed TLS test suites framework. For
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understanding the script it is important to understand the
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framework. This doc string contains a summary of the framework
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and explains the function of this script.
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Mbed Crypto test suites:
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========================
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Scope:
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------
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The test suites focus on unit testing the crypto primitives. Tests can be added
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to test any Mbed Crypto module.
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Test case definition:
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---------------------
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Tests are defined in a test_suite_<module>[.<optional sub module>].data
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file. A test definition contains:
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test name
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optional build macro dependencies
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test function
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test parameters
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Test dependencies are build macros that can be specified to indicate
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the build config in which the test is valid. For example if a test
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depends on a feature that is only enabled by defining a macro. Then
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that macro should be specified as a dependency of the test.
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Test function is the function that implements the test steps. This
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function is specified for different tests that perform same steps
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with different parameters.
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Test parameters are specified in string form separated by ':'.
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Parameters can be of type string, binary data specified as hex
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string and integer constants specified as integer, macro or
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as an expression. Following is an example test definition:
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AES 128 GCM Encrypt and decrypt 8 bytes
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depends_on:MBEDTLS_AES_C:MBEDTLS_GCM_C
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enc_dec_buf:MBEDTLS_CIPHER_AES_128_GCM:"AES-128-GCM":128:8:-1
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Test functions:
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---------------
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Test functions are coded in C in test_suite_<module>.function files.
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Functions file is itself not compilable and contains special
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format patterns to specify test suite dependencies, start and end
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of functions and function dependencies. Check any existing functions
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file for example.
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Execution:
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----------
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Tests are executed in 3 steps:
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- Generating test_suite_<module>[.<optional sub module>].c file
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for each corresponding .data file.
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- Building each source file into executables.
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- Running each executable and printing report.
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Generating C test source requires more than just the test functions.
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Following extras are required:
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- Process main()
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- Reading .data file and dispatching test cases.
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- Platform specific test case execution
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- Dependency checking
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- Integer expression evaluation
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- Test function dispatch
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Build dependencies and integer expressions (in the test parameters)
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are specified as strings in the .data file. Their run time value is
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not known at the generation stage. Hence, they need to be translated
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into run time evaluations. This script generates the run time checks
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for dependencies and integer expressions.
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Similarly, function names have to be translated into function calls.
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This script also generates code for function dispatch.
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The extra code mentioned here is either generated by this script
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or it comes from the input files: helpers file, platform file and
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the template file.
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Helper file:
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------------
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Helpers file contains common helper/utility functions and data.
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Platform file:
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--------------
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Platform file contains platform specific setup code and test case
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dispatch code. For example, host_test.function reads test data
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file from host's file system and dispatches tests.
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In case of on-target target_test.function tests are not dispatched
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on target. Target code is kept minimum and only test functions are
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dispatched. Test case dispatch is done on the host using tools like
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Greentea.
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Template file:
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---------
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Template file for example main_test.function is a template C file in
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which generated code and code from input files is substituted to
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generate a compilable C file. It also contains skeleton functions for
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dependency checks, expression evaluation and function dispatch. These
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functions are populated with checks and return codes by this script.
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Template file contains "replacement" fields that are formatted
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strings processed by Python string.Template.substitute() method.
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This script:
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============
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Core function of this script is to fill the template file with
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code that is generated or read from helpers and platform files.
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This script replaces following fields in the template and generates
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the test source file:
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$test_common_helpers <-- All common code from helpers.function
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is substituted here.
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$functions_code <-- Test functions are substituted here
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from the input test_suit_xyz.function
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file. C preprocessor checks are generated
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for the build dependencies specified
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in the input file. This script also
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generates wrappers for the test
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functions with code to expand the
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string parameters read from the data
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file.
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$expression_code <-- This script enumerates the
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expressions in the .data file and
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generates code to handle enumerated
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expression Ids and return the values.
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$dep_check_code <-- This script enumerates all
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build dependencies and generate
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code to handle enumerated build
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dependency Id and return status: if
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the dependency is defined or not.
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$dispatch_code <-- This script enumerates the functions
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specified in the input test data file
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and generates the initializer for the
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function table in the template
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file.
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$platform_code <-- Platform specific setup and test
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dispatch code.
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"""
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import io
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import os
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import re
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import sys
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import string
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import argparse
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BEGIN_HEADER_REGEX = r'/\*\s*BEGIN_HEADER\s*\*/'
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END_HEADER_REGEX = r'/\*\s*END_HEADER\s*\*/'
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BEGIN_SUITE_HELPERS_REGEX = r'/\*\s*BEGIN_SUITE_HELPERS\s*\*/'
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END_SUITE_HELPERS_REGEX = r'/\*\s*END_SUITE_HELPERS\s*\*/'
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BEGIN_DEP_REGEX = r'BEGIN_DEPENDENCIES'
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END_DEP_REGEX = r'END_DEPENDENCIES'
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BEGIN_CASE_REGEX = r'/\*\s*BEGIN_CASE\s*(?P<depends_on>.*?)\s*\*/'
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END_CASE_REGEX = r'/\*\s*END_CASE\s*\*/'
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DEPENDENCY_REGEX = r'depends_on:(?P<dependencies>.*)'
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C_IDENTIFIER_REGEX = r'!?[a-z_][a-z0-9_]*'
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CONDITION_OPERATOR_REGEX = r'[!=]=|[<>]=?'
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# forbid 0ddd which might be accidentally octal or accidentally decimal
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CONDITION_VALUE_REGEX = r'[-+]?(0x[0-9a-f]+|0|[1-9][0-9]*)'
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CONDITION_REGEX = r'({})(?:\s*({})\s*({}))?$'.format(C_IDENTIFIER_REGEX,
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CONDITION_OPERATOR_REGEX,
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CONDITION_VALUE_REGEX)
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TEST_FUNCTION_VALIDATION_REGEX = r'\s*void\s+(?P<func_name>\w+)\s*\('
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INT_CHECK_REGEX = r'int\s+.*'
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CHAR_CHECK_REGEX = r'char\s*\*\s*.*'
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DATA_T_CHECK_REGEX = r'data_t\s*\*\s*.*'
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FUNCTION_ARG_LIST_END_REGEX = r'.*\)'
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EXIT_LABEL_REGEX = r'^exit:'
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class GeneratorInputError(Exception):
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"""
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Exception to indicate error in the input files to this script.
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This includes missing patterns, test function names and other
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parsing errors.
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"""
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pass
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class FileWrapper(io.FileIO, object):
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"""
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This class extends built-in io.FileIO class with attribute line_no,
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that indicates line number for the line that is read.
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"""
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def __init__(self, file_name):
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"""
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Instantiate the base class and initialize the line number to 0.
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:param file_name: File path to open.
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"""
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super(FileWrapper, self).__init__(file_name, 'r')
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self._line_no = 0
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def next(self):
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"""
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Python 2 iterator method. This method overrides base class's
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next method and extends the next method to count the line
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numbers as each line is read.
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It works for both Python 2 and Python 3 by checking iterator
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method name in the base iterator object.
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:return: Line read from file.
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"""
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parent = super(FileWrapper, self)
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if hasattr(parent, '__next__'):
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line = parent.__next__() # Python 3
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else:
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line = parent.next() # Python 2 # pylint: disable=no-member
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if line is not None:
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self._line_no += 1
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# Convert byte array to string with correct encoding and
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# strip any whitespaces added in the decoding process.
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return line.decode(sys.getdefaultencoding()).rstrip() + '\n'
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return None
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# Python 3 iterator method
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__next__ = next
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def get_line_no(self):
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"""
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Gives current line number.
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"""
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return self._line_no
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line_no = property(get_line_no)
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def split_dep(dep):
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"""
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Split NOT character '!' from dependency. Used by gen_dependencies()
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:param dep: Dependency list
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:return: string tuple. Ex: ('!', MACRO) for !MACRO and ('', MACRO) for
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MACRO.
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"""
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return ('!', dep[1:]) if dep[0] == '!' else ('', dep)
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def gen_dependencies(dependencies):
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"""
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Test suite data and functions specifies compile time dependencies.
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This function generates C preprocessor code from the input
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dependency list. Caller uses the generated preprocessor code to
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wrap dependent code.
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A dependency in the input list can have a leading '!' character
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to negate a condition. '!' is separated from the dependency using
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function split_dep() and proper preprocessor check is generated
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accordingly.
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:param dependencies: List of dependencies.
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:return: if defined and endif code with macro annotations for
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readability.
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"""
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dep_start = ''.join(['#if %sdefined(%s)\n' % (x, y) for x, y in
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map(split_dep, dependencies)])
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dep_end = ''.join(['#endif /* %s */\n' %
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x for x in reversed(dependencies)])
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return dep_start, dep_end
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def gen_dependencies_one_line(dependencies):
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"""
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Similar to gen_dependencies() but generates dependency checks in one line.
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Useful for generating code with #else block.
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:param dependencies: List of dependencies.
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:return: Preprocessor check code
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"""
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defines = '#if ' if dependencies else ''
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defines += ' && '.join(['%sdefined(%s)' % (x, y) for x, y in map(
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split_dep, dependencies)])
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return defines
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def gen_function_wrapper(name, local_vars, args_dispatch):
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"""
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Creates test function wrapper code. A wrapper has the code to
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unpack parameters from parameters[] array.
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:param name: Test function name
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:param local_vars: Local variables declaration code
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:param args_dispatch: List of dispatch arguments.
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Ex: ['(char *)params[0]', '*((int *)params[1])']
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:return: Test function wrapper.
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"""
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# Then create the wrapper
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wrapper = '''
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void {name}_wrapper( void ** params )
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{{
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{unused_params}{locals}
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{name}( {args} );
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}}
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'''.format(name=name,
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unused_params='' if args_dispatch else ' (void)params;\n',
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args=', '.join(args_dispatch),
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locals=local_vars)
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return wrapper
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def gen_dispatch(name, dependencies):
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"""
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Test suite code template main_test.function defines a C function
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array to contain test case functions. This function generates an
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initializer entry for a function in that array. The entry is
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composed of a compile time check for the test function
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dependencies. At compile time the test function is assigned when
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dependencies are met, else NULL is assigned.
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:param name: Test function name
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:param dependencies: List of dependencies
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:return: Dispatch code.
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"""
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if dependencies:
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preprocessor_check = gen_dependencies_one_line(dependencies)
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dispatch_code = '''
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{preprocessor_check}
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{name}_wrapper,
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#else
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NULL,
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#endif
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'''.format(preprocessor_check=preprocessor_check, name=name)
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else:
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dispatch_code = '''
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{name}_wrapper,
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'''.format(name=name)
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return dispatch_code
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def parse_until_pattern(funcs_f, end_regex):
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"""
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Matches pattern end_regex to the lines read from the file object.
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Returns the lines read until end pattern is matched.
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:param funcs_f: file object for .function file
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:param end_regex: Pattern to stop parsing
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:return: Lines read before the end pattern
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"""
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headers = '#line %d "%s"\n' % (funcs_f.line_no + 1, funcs_f.name)
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for line in funcs_f:
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if re.search(end_regex, line):
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break
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headers += line
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else:
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raise GeneratorInputError("file: %s - end pattern [%s] not found!" %
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(funcs_f.name, end_regex))
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return headers
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def validate_dependency(dependency):
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"""
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Validates a C macro and raises GeneratorInputError on invalid input.
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:param dependency: Input macro dependency
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:return: input dependency stripped of leading & trailing white spaces.
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"""
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dependency = dependency.strip()
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if not re.match(CONDITION_REGEX, dependency, re.I):
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raise GeneratorInputError('Invalid dependency %s' % dependency)
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return dependency
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def parse_dependencies(inp_str):
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"""
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Parses dependencies out of inp_str, validates them and returns a
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list of macros.
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:param inp_str: Input string with macros delimited by ':'.
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:return: list of dependencies
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"""
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dependencies = [dep for dep in map(validate_dependency,
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inp_str.split(':'))]
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return dependencies
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def parse_suite_dependencies(funcs_f):
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"""
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Parses test suite dependencies specified at the top of a
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.function file, that starts with pattern BEGIN_DEPENDENCIES
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and end with END_DEPENDENCIES. Dependencies are specified
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after pattern 'depends_on:' and are delimited by ':'.
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:param funcs_f: file object for .function file
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:return: List of test suite dependencies.
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"""
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dependencies = []
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for line in funcs_f:
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match = re.search(DEPENDENCY_REGEX, line.strip())
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if match:
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try:
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dependencies = parse_dependencies(match.group('dependencies'))
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except GeneratorInputError as error:
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raise GeneratorInputError(
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str(error) + " - %s:%d" % (funcs_f.name, funcs_f.line_no))
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if re.search(END_DEP_REGEX, line):
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break
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else:
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raise GeneratorInputError("file: %s - end dependency pattern [%s]"
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" not found!" % (funcs_f.name,
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END_DEP_REGEX))
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return dependencies
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def parse_function_dependencies(line):
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"""
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Parses function dependencies, that are in the same line as
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comment BEGIN_CASE. Dependencies are specified after pattern
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'depends_on:' and are delimited by ':'.
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:param line: Line from .function file that has dependencies.
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:return: List of dependencies.
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"""
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dependencies = []
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match = re.search(BEGIN_CASE_REGEX, line)
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dep_str = match.group('depends_on')
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if dep_str:
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match = re.search(DEPENDENCY_REGEX, dep_str)
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if match:
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dependencies += parse_dependencies(match.group('dependencies'))
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return dependencies
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def parse_function_arguments(line):
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"""
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Parses test function signature for validation and generates
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a dispatch wrapper function that translates input test vectors
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read from the data file into test function arguments.
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:param line: Line from .function file that has a function
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signature.
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:return: argument list, local variables for
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wrapper function and argument dispatch code.
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"""
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args = []
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local_vars = ''
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args_dispatch = []
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arg_idx = 0
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# Remove characters before arguments
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line = line[line.find('(') + 1:]
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# Process arguments, ex: <type> arg1, <type> arg2 )
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# This script assumes that the argument list is terminated by ')'
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# i.e. the test functions will not have a function pointer
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# argument.
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for arg in line[:line.find(')')].split(','):
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arg = arg.strip()
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if arg == '':
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continue
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if re.search(INT_CHECK_REGEX, arg.strip()):
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args.append('int')
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args_dispatch.append('*( (int *) params[%d] )' % arg_idx)
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elif re.search(CHAR_CHECK_REGEX, arg.strip()):
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args.append('char*')
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args_dispatch.append('(char *) params[%d]' % arg_idx)
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elif re.search(DATA_T_CHECK_REGEX, arg.strip()):
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args.append('hex')
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# create a structure
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pointer_initializer = '(uint8_t *) params[%d]' % arg_idx
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len_initializer = '*( (uint32_t *) params[%d] )' % (arg_idx+1)
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local_vars += """ data_t data%d = {%s, %s};
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""" % (arg_idx, pointer_initializer, len_initializer)
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args_dispatch.append('&data%d' % arg_idx)
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arg_idx += 1
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else:
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raise ValueError("Test function arguments can only be 'int', "
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"'char *' or 'data_t'\n%s" % line)
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arg_idx += 1
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return args, local_vars, args_dispatch
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def generate_function_code(name, code, local_vars, args_dispatch,
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dependencies):
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"""
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Generate function code with preprocessor checks and parameter dispatch
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wrapper.
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:param name: Function name
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:param code: Function code
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:param local_vars: Local variables for function wrapper
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:param args_dispatch: Argument dispatch code
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:param dependencies: Preprocessor dependencies list
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:return: Final function code
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"""
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# Add exit label if not present
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if code.find('exit:') == -1:
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split_code = code.rsplit('}', 1)
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if len(split_code) == 2:
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code = """exit:
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;
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}""".join(split_code)
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|
|
|
code += gen_function_wrapper(name, local_vars, args_dispatch)
|
|
preprocessor_check_start, preprocessor_check_end = \
|
|
gen_dependencies(dependencies)
|
|
return preprocessor_check_start + code + preprocessor_check_end
|
|
|
|
|
|
def parse_function_code(funcs_f, dependencies, suite_dependencies):
|
|
"""
|
|
Parses out a function from function file object and generates
|
|
function and dispatch code.
|
|
|
|
:param funcs_f: file object of the functions file.
|
|
:param dependencies: List of dependencies
|
|
:param suite_dependencies: List of test suite dependencies
|
|
:return: Function name, arguments, function code and dispatch code.
|
|
"""
|
|
line_directive = '#line %d "%s"\n' % (funcs_f.line_no + 1, funcs_f.name)
|
|
code = ''
|
|
has_exit_label = False
|
|
for line in funcs_f:
|
|
# Check function signature. Function signature may be split
|
|
# across multiple lines. Here we try to find the start of
|
|
# arguments list, then remove '\n's and apply the regex to
|
|
# detect function start.
|
|
up_to_arg_list_start = code + line[:line.find('(') + 1]
|
|
match = re.match(TEST_FUNCTION_VALIDATION_REGEX,
|
|
up_to_arg_list_start.replace('\n', ' '), re.I)
|
|
if match:
|
|
# check if we have full signature i.e. split in more lines
|
|
name = match.group('func_name')
|
|
if not re.match(FUNCTION_ARG_LIST_END_REGEX, line):
|
|
for lin in funcs_f:
|
|
line += lin
|
|
if re.search(FUNCTION_ARG_LIST_END_REGEX, line):
|
|
break
|
|
args, local_vars, args_dispatch = parse_function_arguments(
|
|
line)
|
|
code += line
|
|
break
|
|
code += line
|
|
else:
|
|
raise GeneratorInputError("file: %s - Test functions not found!" %
|
|
funcs_f.name)
|
|
|
|
# Prefix test function name with 'test_'
|
|
code = code.replace(name, 'test_' + name, 1)
|
|
name = 'test_' + name
|
|
|
|
for line in funcs_f:
|
|
if re.search(END_CASE_REGEX, line):
|
|
break
|
|
if not has_exit_label:
|
|
has_exit_label = \
|
|
re.search(EXIT_LABEL_REGEX, line.strip()) is not None
|
|
code += line
|
|
else:
|
|
raise GeneratorInputError("file: %s - end case pattern [%s] not "
|
|
"found!" % (funcs_f.name, END_CASE_REGEX))
|
|
|
|
code = line_directive + code
|
|
code = generate_function_code(name, code, local_vars, args_dispatch,
|
|
dependencies)
|
|
dispatch_code = gen_dispatch(name, suite_dependencies + dependencies)
|
|
return (name, args, code, dispatch_code)
|
|
|
|
|
|
def parse_functions(funcs_f):
|
|
"""
|
|
Parses a test_suite_xxx.function file and returns information
|
|
for generating a C source file for the test suite.
|
|
|
|
:param funcs_f: file object of the functions file.
|
|
:return: List of test suite dependencies, test function dispatch
|
|
code, function code and a dict with function identifiers
|
|
and arguments info.
|
|
"""
|
|
suite_helpers = ''
|
|
suite_dependencies = []
|
|
suite_functions = ''
|
|
func_info = {}
|
|
function_idx = 0
|
|
dispatch_code = ''
|
|
for line in funcs_f:
|
|
if re.search(BEGIN_HEADER_REGEX, line):
|
|
suite_helpers += parse_until_pattern(funcs_f, END_HEADER_REGEX)
|
|
elif re.search(BEGIN_SUITE_HELPERS_REGEX, line):
|
|
suite_helpers += parse_until_pattern(funcs_f,
|
|
END_SUITE_HELPERS_REGEX)
|
|
elif re.search(BEGIN_DEP_REGEX, line):
|
|
suite_dependencies += parse_suite_dependencies(funcs_f)
|
|
elif re.search(BEGIN_CASE_REGEX, line):
|
|
try:
|
|
dependencies = parse_function_dependencies(line)
|
|
except GeneratorInputError as error:
|
|
raise GeneratorInputError(
|
|
"%s:%d: %s" % (funcs_f.name, funcs_f.line_no,
|
|
str(error)))
|
|
func_name, args, func_code, func_dispatch =\
|
|
parse_function_code(funcs_f, dependencies, suite_dependencies)
|
|
suite_functions += func_code
|
|
# Generate dispatch code and enumeration info
|
|
if func_name in func_info:
|
|
raise GeneratorInputError(
|
|
"file: %s - function %s re-declared at line %d" %
|
|
(funcs_f.name, func_name, funcs_f.line_no))
|
|
func_info[func_name] = (function_idx, args)
|
|
dispatch_code += '/* Function Id: %d */\n' % function_idx
|
|
dispatch_code += func_dispatch
|
|
function_idx += 1
|
|
|
|
func_code = (suite_helpers +
|
|
suite_functions).join(gen_dependencies(suite_dependencies))
|
|
return suite_dependencies, dispatch_code, func_code, func_info
|
|
|
|
|
|
def escaped_split(inp_str, split_char):
|
|
"""
|
|
Split inp_str on character split_char but ignore if escaped.
|
|
Since, return value is used to write back to the intermediate
|
|
data file, any escape characters in the input are retained in the
|
|
output.
|
|
|
|
:param inp_str: String to split
|
|
:param split_char: Split character
|
|
:return: List of splits
|
|
"""
|
|
if len(split_char) > 1:
|
|
raise ValueError('Expected split character. Found string!')
|
|
out = re.sub(r'(\\.)|' + split_char,
|
|
lambda m: m.group(1) or '\n', inp_str,
|
|
len(inp_str)).split('\n')
|
|
out = [x for x in out if x]
|
|
return out
|
|
|
|
|
|
def parse_test_data(data_f):
|
|
"""
|
|
Parses .data file for each test case name, test function name,
|
|
test dependencies and test arguments. This information is
|
|
correlated with the test functions file for generating an
|
|
intermediate data file replacing the strings for test function
|
|
names, dependencies and integer constant expressions with
|
|
identifiers. Mainly for optimising space for on-target
|
|
execution.
|
|
|
|
:param data_f: file object of the data file.
|
|
:return: Generator that yields test name, function name,
|
|
dependency list and function argument list.
|
|
"""
|
|
__state_read_name = 0
|
|
__state_read_args = 1
|
|
state = __state_read_name
|
|
dependencies = []
|
|
name = ''
|
|
for line in data_f:
|
|
line = line.strip()
|
|
# Skip comments
|
|
if line.startswith('#'):
|
|
continue
|
|
|
|
# Blank line indicates end of test
|
|
if not line:
|
|
if state == __state_read_args:
|
|
raise GeneratorInputError("[%s:%d] Newline before arguments. "
|
|
"Test function and arguments "
|
|
"missing for %s" %
|
|
(data_f.name, data_f.line_no, name))
|
|
continue
|
|
|
|
if state == __state_read_name:
|
|
# Read test name
|
|
name = line
|
|
state = __state_read_args
|
|
elif state == __state_read_args:
|
|
# Check dependencies
|
|
match = re.search(DEPENDENCY_REGEX, line)
|
|
if match:
|
|
try:
|
|
dependencies = parse_dependencies(
|
|
match.group('dependencies'))
|
|
except GeneratorInputError as error:
|
|
raise GeneratorInputError(
|
|
str(error) + " - %s:%d" %
|
|
(data_f.name, data_f.line_no))
|
|
else:
|
|
# Read test vectors
|
|
parts = escaped_split(line, ':')
|
|
test_function = parts[0]
|
|
args = parts[1:]
|
|
yield name, test_function, dependencies, args
|
|
dependencies = []
|
|
state = __state_read_name
|
|
if state == __state_read_args:
|
|
raise GeneratorInputError("[%s:%d] Newline before arguments. "
|
|
"Test function and arguments missing for "
|
|
"%s" % (data_f.name, data_f.line_no, name))
|
|
|
|
|
|
def gen_dep_check(dep_id, dep):
|
|
"""
|
|
Generate code for checking dependency with the associated
|
|
identifier.
|
|
|
|
:param dep_id: Dependency identifier
|
|
:param dep: Dependency macro
|
|
:return: Dependency check code
|
|
"""
|
|
if dep_id < 0:
|
|
raise GeneratorInputError("Dependency Id should be a positive "
|
|
"integer.")
|
|
_not, dep = ('!', dep[1:]) if dep[0] == '!' else ('', dep)
|
|
if not dep:
|
|
raise GeneratorInputError("Dependency should not be an empty string.")
|
|
|
|
dependency = re.match(CONDITION_REGEX, dep, re.I)
|
|
if not dependency:
|
|
raise GeneratorInputError('Invalid dependency %s' % dep)
|
|
|
|
_defined = '' if dependency.group(2) else 'defined'
|
|
_cond = dependency.group(2) if dependency.group(2) else ''
|
|
_value = dependency.group(3) if dependency.group(3) else ''
|
|
|
|
dep_check = '''
|
|
case {id}:
|
|
{{
|
|
#if {_not}{_defined}({macro}{_cond}{_value})
|
|
ret = DEPENDENCY_SUPPORTED;
|
|
#else
|
|
ret = DEPENDENCY_NOT_SUPPORTED;
|
|
#endif
|
|
}}
|
|
break;'''.format(_not=_not, _defined=_defined,
|
|
macro=dependency.group(1), id=dep_id,
|
|
_cond=_cond, _value=_value)
|
|
return dep_check
|
|
|
|
|
|
def gen_expression_check(exp_id, exp):
|
|
"""
|
|
Generates code for evaluating an integer expression using
|
|
associated expression Id.
|
|
|
|
:param exp_id: Expression Identifier
|
|
:param exp: Expression/Macro
|
|
:return: Expression check code
|
|
"""
|
|
if exp_id < 0:
|
|
raise GeneratorInputError("Expression Id should be a positive "
|
|
"integer.")
|
|
if not exp:
|
|
raise GeneratorInputError("Expression should not be an empty string.")
|
|
exp_code = '''
|
|
case {exp_id}:
|
|
{{
|
|
*out_value = {expression};
|
|
}}
|
|
break;'''.format(exp_id=exp_id, expression=exp)
|
|
return exp_code
|
|
|
|
|
|
def write_dependencies(out_data_f, test_dependencies, unique_dependencies):
|
|
"""
|
|
Write dependencies to intermediate test data file, replacing
|
|
the string form with identifiers. Also, generates dependency
|
|
check code.
|
|
|
|
:param out_data_f: Output intermediate data file
|
|
:param test_dependencies: Dependencies
|
|
:param unique_dependencies: Mutable list to track unique dependencies
|
|
that are global to this re-entrant function.
|
|
:return: returns dependency check code.
|
|
"""
|
|
dep_check_code = ''
|
|
if test_dependencies:
|
|
out_data_f.write('depends_on')
|
|
for dep in test_dependencies:
|
|
if dep not in unique_dependencies:
|
|
unique_dependencies.append(dep)
|
|
dep_id = unique_dependencies.index(dep)
|
|
dep_check_code += gen_dep_check(dep_id, dep)
|
|
else:
|
|
dep_id = unique_dependencies.index(dep)
|
|
out_data_f.write(':' + str(dep_id))
|
|
out_data_f.write('\n')
|
|
return dep_check_code
|
|
|
|
|
|
def write_parameters(out_data_f, test_args, func_args, unique_expressions):
|
|
"""
|
|
Writes test parameters to the intermediate data file, replacing
|
|
the string form with identifiers. Also, generates expression
|
|
check code.
|
|
|
|
:param out_data_f: Output intermediate data file
|
|
:param test_args: Test parameters
|
|
:param func_args: Function arguments
|
|
:param unique_expressions: Mutable list to track unique
|
|
expressions that are global to this re-entrant function.
|
|
:return: Returns expression check code.
|
|
"""
|
|
expression_code = ''
|
|
for i, _ in enumerate(test_args):
|
|
typ = func_args[i]
|
|
val = test_args[i]
|
|
|
|
# check if val is a non literal int val (i.e. an expression)
|
|
if typ == 'int' and not re.match(r'(\d+|0x[0-9a-f]+)$',
|
|
val, re.I):
|
|
typ = 'exp'
|
|
if val not in unique_expressions:
|
|
unique_expressions.append(val)
|
|
# exp_id can be derived from len(). But for
|
|
# readability and consistency with case of existing
|
|
# let's use index().
|
|
exp_id = unique_expressions.index(val)
|
|
expression_code += gen_expression_check(exp_id, val)
|
|
val = exp_id
|
|
else:
|
|
val = unique_expressions.index(val)
|
|
out_data_f.write(':' + typ + ':' + str(val))
|
|
out_data_f.write('\n')
|
|
return expression_code
|
|
|
|
|
|
def gen_suite_dep_checks(suite_dependencies, dep_check_code, expression_code):
|
|
"""
|
|
Generates preprocessor checks for test suite dependencies.
|
|
|
|
:param suite_dependencies: Test suite dependencies read from the
|
|
.function file.
|
|
:param dep_check_code: Dependency check code
|
|
:param expression_code: Expression check code
|
|
:return: Dependency and expression code guarded by test suite
|
|
dependencies.
|
|
"""
|
|
if suite_dependencies:
|
|
preprocessor_check = gen_dependencies_one_line(suite_dependencies)
|
|
dep_check_code = '''
|
|
{preprocessor_check}
|
|
{code}
|
|
#endif
|
|
'''.format(preprocessor_check=preprocessor_check, code=dep_check_code)
|
|
expression_code = '''
|
|
{preprocessor_check}
|
|
{code}
|
|
#endif
|
|
'''.format(preprocessor_check=preprocessor_check, code=expression_code)
|
|
return dep_check_code, expression_code
|
|
|
|
|
|
def gen_from_test_data(data_f, out_data_f, func_info, suite_dependencies):
|
|
"""
|
|
This function reads test case name, dependencies and test vectors
|
|
from the .data file. This information is correlated with the test
|
|
functions file for generating an intermediate data file replacing
|
|
the strings for test function names, dependencies and integer
|
|
constant expressions with identifiers. Mainly for optimising
|
|
space for on-target execution.
|
|
It also generates test case dependency check code and expression
|
|
evaluation code.
|
|
|
|
:param data_f: Data file object
|
|
:param out_data_f: Output intermediate data file
|
|
:param func_info: Dict keyed by function and with function id
|
|
and arguments info
|
|
:param suite_dependencies: Test suite dependencies
|
|
:return: Returns dependency and expression check code
|
|
"""
|
|
unique_dependencies = []
|
|
unique_expressions = []
|
|
dep_check_code = ''
|
|
expression_code = ''
|
|
for test_name, function_name, test_dependencies, test_args in \
|
|
parse_test_data(data_f):
|
|
out_data_f.write(test_name + '\n')
|
|
|
|
# Write dependencies
|
|
dep_check_code += write_dependencies(out_data_f, test_dependencies,
|
|
unique_dependencies)
|
|
|
|
# Write test function name
|
|
test_function_name = 'test_' + function_name
|
|
if test_function_name not in func_info:
|
|
raise GeneratorInputError("Function %s not found!" %
|
|
test_function_name)
|
|
func_id, func_args = func_info[test_function_name]
|
|
out_data_f.write(str(func_id))
|
|
|
|
# Write parameters
|
|
if len(test_args) != len(func_args):
|
|
raise GeneratorInputError("Invalid number of arguments in test "
|
|
"%s. See function %s signature." %
|
|
(test_name, function_name))
|
|
expression_code += write_parameters(out_data_f, test_args, func_args,
|
|
unique_expressions)
|
|
|
|
# Write a newline as test case separator
|
|
out_data_f.write('\n')
|
|
|
|
dep_check_code, expression_code = gen_suite_dep_checks(
|
|
suite_dependencies, dep_check_code, expression_code)
|
|
return dep_check_code, expression_code
|
|
|
|
|
|
def add_input_info(funcs_file, data_file, template_file,
|
|
c_file, snippets):
|
|
"""
|
|
Add generator input info in snippets.
|
|
|
|
:param funcs_file: Functions file object
|
|
:param data_file: Data file object
|
|
:param template_file: Template file object
|
|
:param c_file: Output C file object
|
|
:param snippets: Dictionary to contain code pieces to be
|
|
substituted in the template.
|
|
:return:
|
|
"""
|
|
snippets['test_file'] = c_file
|
|
snippets['test_main_file'] = template_file
|
|
snippets['test_case_file'] = funcs_file
|
|
snippets['test_case_data_file'] = data_file
|
|
|
|
|
|
def read_code_from_input_files(platform_file, helpers_file,
|
|
out_data_file, snippets):
|
|
"""
|
|
Read code from input files and create substitutions for replacement
|
|
strings in the template file.
|
|
|
|
:param platform_file: Platform file object
|
|
:param helpers_file: Helper functions file object
|
|
:param out_data_file: Output intermediate data file object
|
|
:param snippets: Dictionary to contain code pieces to be
|
|
substituted in the template.
|
|
:return:
|
|
"""
|
|
# Read helpers
|
|
with open(helpers_file, 'r') as help_f, open(platform_file, 'r') as \
|
|
platform_f:
|
|
snippets['test_common_helper_file'] = helpers_file
|
|
snippets['test_common_helpers'] = help_f.read()
|
|
snippets['test_platform_file'] = platform_file
|
|
snippets['platform_code'] = platform_f.read().replace(
|
|
'DATA_FILE', out_data_file.replace('\\', '\\\\')) # escape '\'
|
|
|
|
|
|
def write_test_source_file(template_file, c_file, snippets):
|
|
"""
|
|
Write output source file with generated source code.
|
|
|
|
:param template_file: Template file name
|
|
:param c_file: Output source file
|
|
:param snippets: Generated and code snippets
|
|
:return:
|
|
"""
|
|
with open(template_file, 'r') as template_f, open(c_file, 'w') as c_f:
|
|
for line_no, line in enumerate(template_f.readlines(), 1):
|
|
# Update line number. +1 as #line directive sets next line number
|
|
snippets['line_no'] = line_no + 1
|
|
code = string.Template(line).substitute(**snippets)
|
|
c_f.write(code)
|
|
|
|
|
|
def parse_function_file(funcs_file, snippets):
|
|
"""
|
|
Parse function file and generate function dispatch code.
|
|
|
|
:param funcs_file: Functions file name
|
|
:param snippets: Dictionary to contain code pieces to be
|
|
substituted in the template.
|
|
:return:
|
|
"""
|
|
with FileWrapper(funcs_file) as funcs_f:
|
|
suite_dependencies, dispatch_code, func_code, func_info = \
|
|
parse_functions(funcs_f)
|
|
snippets['functions_code'] = func_code
|
|
snippets['dispatch_code'] = dispatch_code
|
|
return suite_dependencies, func_info
|
|
|
|
|
|
def generate_intermediate_data_file(data_file, out_data_file,
|
|
suite_dependencies, func_info, snippets):
|
|
"""
|
|
Generates intermediate data file from input data file and
|
|
information read from functions file.
|
|
|
|
:param data_file: Data file name
|
|
:param out_data_file: Output/Intermediate data file
|
|
:param suite_dependencies: List of suite dependencies.
|
|
:param func_info: Function info parsed from functions file.
|
|
:param snippets: Dictionary to contain code pieces to be
|
|
substituted in the template.
|
|
:return:
|
|
"""
|
|
with FileWrapper(data_file) as data_f, \
|
|
open(out_data_file, 'w') as out_data_f:
|
|
dep_check_code, expression_code = gen_from_test_data(
|
|
data_f, out_data_f, func_info, suite_dependencies)
|
|
snippets['dep_check_code'] = dep_check_code
|
|
snippets['expression_code'] = expression_code
|
|
|
|
|
|
def generate_code(**input_info):
|
|
"""
|
|
Generates C source code from test suite file, data file, common
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helpers file and platform file.
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input_info expands to following parameters:
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funcs_file: Functions file object
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data_file: Data file object
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template_file: Template file object
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platform_file: Platform file object
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helpers_file: Helper functions file object
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suites_dir: Test suites dir
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c_file: Output C file object
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out_data_file: Output intermediate data file object
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:return:
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"""
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funcs_file = input_info['funcs_file']
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data_file = input_info['data_file']
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template_file = input_info['template_file']
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platform_file = input_info['platform_file']
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helpers_file = input_info['helpers_file']
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suites_dir = input_info['suites_dir']
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c_file = input_info['c_file']
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out_data_file = input_info['out_data_file']
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for name, path in [('Functions file', funcs_file),
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('Data file', data_file),
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('Template file', template_file),
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('Platform file', platform_file),
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('Helpers code file', helpers_file),
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('Suites dir', suites_dir)]:
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if not os.path.exists(path):
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raise IOError("ERROR: %s [%s] not found!" % (name, path))
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snippets = {'generator_script': os.path.basename(__file__)}
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read_code_from_input_files(platform_file, helpers_file,
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out_data_file, snippets)
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add_input_info(funcs_file, data_file, template_file,
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c_file, snippets)
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suite_dependencies, func_info = parse_function_file(funcs_file, snippets)
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generate_intermediate_data_file(data_file, out_data_file,
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suite_dependencies, func_info, snippets)
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write_test_source_file(template_file, c_file, snippets)
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def main():
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"""
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Command line parser.
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:return:
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"""
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parser = argparse.ArgumentParser(
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description='Dynamically generate test suite code.')
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parser.add_argument("-f", "--functions-file",
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dest="funcs_file",
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help="Functions file",
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metavar="FUNCTIONS_FILE",
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required=True)
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parser.add_argument("-d", "--data-file",
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dest="data_file",
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help="Data file",
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metavar="DATA_FILE",
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required=True)
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parser.add_argument("-t", "--template-file",
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dest="template_file",
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help="Template file",
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metavar="TEMPLATE_FILE",
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required=True)
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parser.add_argument("-s", "--suites-dir",
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dest="suites_dir",
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help="Suites dir",
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metavar="SUITES_DIR",
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required=True)
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parser.add_argument("--helpers-file",
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dest="helpers_file",
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help="Helpers file",
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metavar="HELPERS_FILE",
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required=True)
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parser.add_argument("-p", "--platform-file",
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dest="platform_file",
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help="Platform code file",
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metavar="PLATFORM_FILE",
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required=True)
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parser.add_argument("-o", "--out-dir",
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dest="out_dir",
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help="Dir where generated code and scripts are copied",
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metavar="OUT_DIR",
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required=True)
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args = parser.parse_args()
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data_file_name = os.path.basename(args.data_file)
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data_name = os.path.splitext(data_file_name)[0]
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out_c_file = os.path.join(args.out_dir, data_name + '.c')
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out_data_file = os.path.join(args.out_dir, data_name + '.datax')
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out_c_file_dir = os.path.dirname(out_c_file)
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out_data_file_dir = os.path.dirname(out_data_file)
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for directory in [out_c_file_dir, out_data_file_dir]:
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if not os.path.exists(directory):
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os.makedirs(directory)
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generate_code(funcs_file=args.funcs_file, data_file=args.data_file,
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template_file=args.template_file,
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platform_file=args.platform_file,
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helpers_file=args.helpers_file, suites_dir=args.suites_dir,
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c_file=out_c_file, out_data_file=out_data_file)
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if __name__ == "__main__":
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try:
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main()
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except GeneratorInputError as err:
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sys.exit("%s: input error: %s" %
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(os.path.basename(sys.argv[0]), str(err)))
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