зеркало из https://github.com/mozilla/gecko-dev.git
294 строки
11 KiB
Python
294 строки
11 KiB
Python
# This Source Code Form is subject to the terms of the Mozilla Public
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# License, v. 2.0. If a copy of the MPL was not distributed with this
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# file, You can obtain one at http://mozilla.org/MPL/2.0/.
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from pyparsing import (CharsNotIn, Group, Forward, Literal, Suppress, Word,
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QuotedString, ZeroOrMore, alphas, alphanums)
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from string import Template
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import re
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# Grammar for CMake
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comment = Literal('#') + ZeroOrMore(CharsNotIn('\n'))
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quoted_argument = QuotedString('\"', '\\', multiline=True)
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unquoted_argument = CharsNotIn('\n ()#\"\\')
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argument = quoted_argument | unquoted_argument | Suppress(comment)
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arguments = Forward()
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arguments << (argument | (Literal('(') + ZeroOrMore(arguments) + Literal(')')))
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identifier = Word(alphas, alphanums+'_')
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command = Group(identifier + Literal('(') + ZeroOrMore(arguments) + Literal(')'))
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file_elements = command | Suppress(comment)
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cmake = ZeroOrMore(file_elements)
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def extract_arguments(parsed):
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"""Extract the command arguments skipping the parentheses"""
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return parsed[2:len(parsed) - 1]
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def match_block(command, parsed, start):
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"""Find the end of block starting with the command"""
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depth = 0
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end = start + 1
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endcommand = 'end' + command
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while parsed[end][0] != endcommand or depth > 0:
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if parsed[end][0] == command:
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depth += 1
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elif parsed[end][0] == endcommand:
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depth -= 1
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end = end + 1
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if end == len(parsed):
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print('error: eof when trying to match block statement: %s'
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% parsed[start])
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return end
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def parse_if(parsed, start):
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"""Parse if/elseif/else/endif into a list of conditions and commands"""
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depth = 0
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conditions = []
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condition = [extract_arguments(parsed[start])]
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start = start + 1
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end = start
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while parsed[end][0] != 'endif' or depth > 0:
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command = parsed[end][0]
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if command == 'if':
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depth += 1
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elif command == 'else' and depth == 0:
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condition.append(parsed[start:end])
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conditions.append(condition)
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start = end + 1
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condition = [['TRUE']]
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elif command == 'elseif' and depth == 0:
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condition.append(parsed[start:end])
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conditions.append(condition)
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condition = [extract_arguments(parsed[end])]
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start = end + 1
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elif command == 'endif':
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depth -= 1
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end = end + 1
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if end == len(parsed):
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print('error: eof when trying to match if statement: %s'
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% parsed[start])
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condition.append(parsed[start:end])
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conditions.append(condition)
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return end, conditions
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def substs(variables, values):
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"""Substitute variables into values"""
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new_values = []
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for value in values:
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t = Template(value)
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new_value = t.safe_substitute(variables)
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# Safe substitute leaves unrecognized variables in place.
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# We replace them with the empty string.
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new_values.append(re.sub('\$\{\w+\}', '', new_value))
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return new_values
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def evaluate(variables, cache_variables, parsed):
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"""Evaluate a list of parsed commands, returning sources to build"""
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i = 0
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sources = []
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while i < len(parsed):
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command = parsed[i][0]
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arguments = substs(variables, extract_arguments(parsed[i]))
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if command == 'foreach':
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end = match_block(command, parsed, i)
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for argument in arguments[1:]:
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# ; is also a valid divider, why have one when you can have two?
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argument = argument.replace(';', ' ')
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for value in argument.split():
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variables[arguments[0]] = value
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cont_eval, new_sources = evaluate(variables, cache_variables,
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parsed[i+1:end])
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sources.extend(new_sources)
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if not cont_eval:
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return cont_eval, sources
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elif command == 'function':
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# for now we just execute functions inline at point of declaration
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# as this is sufficient to build libaom
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pass
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elif command == 'if':
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i, conditions = parse_if(parsed, i)
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for condition in conditions:
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if evaluate_boolean(variables, condition[0]):
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cont_eval, new_sources = evaluate(variables,
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cache_variables,
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condition[1])
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sources.extend(new_sources)
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if not cont_eval:
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return cont_eval, sources
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break
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elif command == 'include':
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if arguments:
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try:
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print('including: %s' % arguments[0])
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sources.extend(parse(variables, cache_variables, arguments[0]))
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except IOError:
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print('warning: could not include: %s' % arguments[0])
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elif command == 'list':
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try:
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action = arguments[0]
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variable = arguments[1]
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values = arguments[2:]
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if action == 'APPEND':
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if variable not in variables:
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variables[variable] = ' '.join(values)
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else:
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variables[variable] += ' ' + ' '.join(values)
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except (IndexError, KeyError):
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pass
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elif command == 'option':
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variable = arguments[0]
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value = arguments[2]
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# Allow options to be override without changing CMake files
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if variable not in variables:
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variables[variable] = value
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elif command == 'return':
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return False, sources
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elif command == 'set':
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variable = arguments[0]
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values = arguments[1:]
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# CACHE variables are not set if already present
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try:
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cache = values.index('CACHE')
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values = values[0:cache]
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if variable not in variables:
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variables[variable] = ' '.join(values)
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cache_variables.append(variable)
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except ValueError:
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variables[variable] = ' '.join(values)
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# we need to emulate the behavior of these function calls
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# because we don't support interpreting them directly
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# see bug 1492292
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elif command in ['set_aom_config_var', 'set_aom_detect_var']:
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variable = arguments[0]
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value = arguments[1]
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if variable not in variables:
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variables[variable] = value
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cache_variables.append(variable)
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elif command == 'set_aom_option_var':
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# option vars cannot go into cache_variables
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variable = arguments[0]
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value = arguments[2]
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if variable not in variables:
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variables[variable] = value
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elif command == 'add_asm_library':
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try:
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sources.extend(variables[arguments[1]].split(' '))
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except (IndexError, KeyError):
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pass
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elif command == 'add_intrinsics_object_library':
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try:
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sources.extend(variables[arguments[3]].split(' '))
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except (IndexError, KeyError):
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pass
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elif command == 'add_library':
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for source in arguments[1:]:
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sources.extend(source.split(' '))
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elif command == 'target_sources':
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for source in arguments[1:]:
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sources.extend(source.split(' '))
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elif command == 'MOZDEBUG':
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print('>>>> MOZDEBUG: %s' % ' '.join(arguments))
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i += 1
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return True, sources
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def evaluate_boolean(variables, arguments):
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"""Evaluate a boolean expression"""
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if not arguments:
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return False
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argument = arguments[0]
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if argument == 'NOT':
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return not evaluate_boolean(variables, arguments[1:])
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if argument == '(':
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i = 0
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depth = 1
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while depth > 0 and i < len(arguments):
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i += 1
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if arguments[i] == '(':
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depth += 1
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if arguments[i] == ')':
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depth -= 1
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return evaluate_boolean(variables, arguments[1:i])
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def evaluate_constant(argument):
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try:
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as_int = int(argument)
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if as_int != 0:
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return True
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else:
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return False
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except ValueError:
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upper = argument.upper()
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if upper in ['ON', 'YES', 'TRUE', 'Y']:
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return True
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elif upper in ['OFF', 'NO', 'FALSE', 'N', 'IGNORE', '', 'NOTFOUND']:
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return False
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elif upper.endswith('-NOTFOUND'):
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return False
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return None
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def lookup_variable(argument):
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# If statements can have old-style variables which are not demarcated
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# like ${VARIABLE}. Attempt to look up the variable both ways.
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try:
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if re.search('\$\{\w+\}', argument):
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try:
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t = Template(argument)
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value = t.substitute(variables)
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try:
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# Attempt an old-style variable lookup with the
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# substituted value.
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return variables[value]
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except KeyError:
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return value
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except ValueError:
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# TODO: CMake supports nesting, e.g. ${${foo}}
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return None
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else:
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return variables[argument]
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except KeyError:
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return None
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lhs = lookup_variable(argument)
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if lhs is None:
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# variable resolution failed, treat as string
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lhs = argument
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if len(arguments) > 1:
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op = arguments[1]
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if op == 'AND':
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return evaluate_constant(lhs) and evaluate_boolean(variables, arguments[2:])
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elif op == 'MATCHES':
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rhs = lookup_variable(arguments[2])
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if not rhs:
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rhs = arguments[2]
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return not re.match(rhs, lhs) is None
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elif op == 'OR':
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return evaluate_constant(lhs) or evaluate_boolean(variables, arguments[2:])
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elif op == 'STREQUAL':
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rhs = lookup_variable(arguments[2])
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if not rhs:
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rhs = arguments[2]
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return lhs == rhs
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else:
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lhs = evaluate_constant(lhs)
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if lhs is None:
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lhs = lookup_variable(argument)
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return lhs
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def parse(variables, cache_variables, filename):
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parsed = cmake.parseFile(filename)
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cont_eval, sources = evaluate(variables, cache_variables, parsed)
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return sources
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