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4a58adf79e
tox / pytest is complaining about lots and lots of invalid escape sequences in our code base. Sprinkle raw strings or backslash escapes across the code base to fix most occurences of: DeprecationWarning: invalid escape sequence There is still one warning that keeps repeating, though: source:264: DeprecationWarning: invalid escape sequence \d Signed-off-by: Christian Heimes <cheimes@redhat.com> Reviewed-By: Florence Blanc-Renaud <frenaud@redhat.com>
862 lines
32 KiB
Python
862 lines
32 KiB
Python
# Authors:
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# John Dennis <jdennis@redhat.com>
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#
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# Copyright (C) 2010 Red Hat
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# see file 'COPYING' for use and warranty information
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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from __future__ import print_function
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# WARNING: Do not import ipa modules, this is also used as a
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# stand-alone script (invoked from po Makefile).
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import optparse # pylint: disable=deprecated-module
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import sys
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import gettext
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import re
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import os
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import traceback
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import polib
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from collections import namedtuple
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import six
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'''
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We test our translations by taking the original untranslated string
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(e.g. msgid) and prepend a prefix character and then append a suffix
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character. The test consists of asserting that the first character in the
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translated string is the prefix, the last character in the translated string
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is the suffix and the everything between the first and last character exactly
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matches the original msgid.
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We use unicode characters not in the ascii character set for the prefix and
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suffix to enhance the test. To make reading the translated string easier the
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prefix is the unicode right pointing arrow and the suffix left pointing arrow,
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thus the translated string looks like the original string enclosed in
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arrows. In ASCII art the string "foo" would render as:
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-->foo<--
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'''
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#-------------------------------------------------------------------------------
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verbose = False
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print_traceback = False
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pedantic = False
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show_strings = True
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# Unicode right pointing arrow
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prefix = u'\u2192' # utf-8 == '\xe2\x86\x92'
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# Unicode left pointing arrow
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suffix = u'\u2190' # utf-8 == '\xe2\x86\x90'
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page_width = 80
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section_seperator = '=' * page_width
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entry_seperator = '-' * page_width
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# Python 3: Enforce ASCII mode so \w matches only ASCII chars. This avoids
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# false positives in Chinese translation.
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ASCII = getattr(re, "ASCII", 0)
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# --------------------------------------------------------------------------
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# For efficiency compile these regexps just once
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_substitution_regexps = [
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re.compile(r'%[srduoxf]'), # e.g. %s
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re.compile(r'%\(\w+\)[srduoxf]', ASCII), # e.g. %(foo)s
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re.compile(r'\$\w+', ASCII), # e.g. $foo
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re.compile(r'\${\w+}', ASCII), # e.g. ${foo}
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re.compile(r'\$\(\w+\)', ASCII) # e.g. $(foo)
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]
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# Python style substitution, e.g. %(foo)s
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# where foo is the key and s is the format char
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# group 1: whitespace between % and (
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# group 2: whitespace between ( and key
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# group 3: whitespace between key and )
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# group 4: whitespace between ) and format char
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# group 5: format char
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_python_substitution_regexp = re.compile(
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r'%(\s*)\((\s*)\w+(\s*)\)(\s*)([srduoxf])?', ASCII
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)
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# Shell style substitution, e.g. $foo $(foo) ${foo}
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# where foo is the variable
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_shell_substitution_regexp = re.compile(
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r'\$(\s*)([({]?)(\s*)\w+(\s*)([)}]?)', ASCII
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)
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# group 1: whitespace between $ and delimiter
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# group 2: begining delimiter
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# group 3: whitespace between beginning delmiter and variable
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# group 4: whitespace between variable and ending delimiter
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# group 5: ending delimiter
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printf_fmt_re = re.compile(
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r"%" # start
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r"(\d+\$)?" # fmt_arg (group 1)
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r"(([#0 +'I]|-(?!\d))*)" # flags (group 2)
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r"(([+-]?([1-9][0-9]*)?)|(\*|\*\d+\$))?" # width (group 4)
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r"(\.((-?\d*)|(\*|)|(\*\d+\$)))?" # precision (group 8)
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r"(h|hh|l|ll|L|j|z|t)?" # length (group 13)
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r"([diouxXeEfFgGaAcspnm%])") # conversion (group 14)
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#-------------------------------------------------------------------------------
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def get_prog_langs(entry):
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'''
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Given an entry in a pot or po file return a set of the
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programming languges it was found in. It needs to be a set
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because the same msgid may appear in more than one file which may
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be in different programming languages.
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Note: One might think you could use the c-format etc. flags to
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attached to entry to make this determination, but you can't. Those
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flags refer to the style of the string not the programming
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language it came from. Also the flags are often omitted and/or are
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inaccurate.
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For now we just look at the file extension. If we knew the path to
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the file we could use other heuristics such as looking for the
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shbang interpreter string.
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The set of possible language types witch might be returned are:
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* c
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* python
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'''
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result = set()
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for location in entry.occurrences:
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filename = location[0]
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ext = os.path.splitext(filename)[1]
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if ext in ('.c', '.h', '.cxx', '.cpp', '.hxx'):
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result.add('c')
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elif ext in ('.py'):
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result.add('python')
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return result
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def parse_printf_fmt(s):
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'''
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Parse a printf style format string and return a list of format
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conversions found in the string.
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Each conversion specification is introduced by the character %, and
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ends with a conversion specifier. In between there may be (in this
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order) zero or more flags, an optional minimum field width, an
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optional precision and an optional length modifier. See "man 3
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printf" for details.
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Each item in the returned list is a dict whose keys are the
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sub-parts of a conversion specification. The key and values are:
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fmt
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The entire format conversion specification
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fmt_arg
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The positional index of the matching argument in the argument
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list, e.g. %1$ indicates the first argument in the argument
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will be read for this conversion, excludes the leading % but
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includes the trailing $, 1$ is the fmt_arg in %1$.
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flags
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The flag characaters, e.g. 0 is the flag in %08d
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width
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The width field, e.g. 20 is the width in %20s
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precision
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The precisioin field, e.g. .2 is the precision in %8.2f
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length
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The length modifier field, e.g. l is the length modifier in %ld
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conversion
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The conversion specifier character, e.g. d is the conversion
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specification character in %ld
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If the part is not found in the format it's value will be None.
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'''
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result = []
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# get list of all matches, but skip escaped %
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matches = [x for x in printf_fmt_re.finditer(s) if x.group(0) != "%%"]
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# build dict of each sub-part of the format, append to result
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for match in matches:
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parts = {}
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parts['fmt'] = match.group(0)
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parts['fmt_arg'] = match.group(1)
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parts['flags'] = match.group(2) or None
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parts['width'] = match.group(4) or None
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parts['precision'] = match.group(8)
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parts['length'] = match.group(13)
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parts['conversion'] = match.group(14)
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result.append(parts)
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return result
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def validate_substitutions_match(s1, s2, s1_name='string1', s2_name='string2'):
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'''
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Validate both s1 and s2 have the same number of substitution strings.
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A substitution string would be something that looked like this:
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* %(foo)s
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* $foo
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* ${foo}
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* $(foo)
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The substitutions may appear in any order in s1 and s2, however their
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format must match exactly and the exact same number of each must exist
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in both s1 and s2.
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A list of error diagnostics is returned explaining how s1 and s2 failed
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the validation check. If the returned error list is empty then the
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validation succeeded.
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:param s1: First string to validate
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:param s2: First string to validate
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:param s1_name: In diagnostic messages the name for s1
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:param s2_name: In diagnostic messages the name for s2
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:return: List of diagnostic error messages, if empty then success
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'''
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errors = []
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def get_subs(s):
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'''
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Return a dict whoses keys are each unique substitution and whose
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value is the count of how many times that substitution appeared.
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'''
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subs = {}
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for regexp in _substitution_regexps:
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for match in regexp.finditer(s):
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matched = match.group(0)
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subs[matched] = subs.get(matched, 0) + 1
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return subs
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# Get the substitutions and their occurance counts
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subs1 = get_subs(s1)
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subs2 = get_subs(s2)
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# Form a set for each strings substitutions and
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# do set subtraction and interesection
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set1 = set(subs1.keys())
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set2 = set(subs2.keys())
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missing1 = set2 - set1
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missing2 = set1 - set2
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common = set1 & set2
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# Test for substitutions which are absent in either string
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if missing1:
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errors.append("The following substitutions are absent in %s: %s" %
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(s1_name, ' '.join(missing1)))
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if missing2:
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errors.append("The following substitutions are absent in %s: %s" %
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(s2_name, ' '.join(missing2)))
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if pedantic:
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# For the substitutions which are shared assure they occur an equal number of times
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for sub in common:
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if subs1[sub] != subs2[sub]:
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errors.append("unequal occurances of '%s', %s has %d occurances, %s has %d occurances" %
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(sub, s1_name, subs1[sub], s2_name, subs2[sub]))
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if errors:
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if show_strings:
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errors.append('>>> %s <<<' % s1_name)
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errors.append(s1.rstrip())
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errors.append('>>> %s <<<' % s2_name)
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errors.append(s2.rstrip())
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return errors
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def validate_substitution_syntax(s, s_name='string'):
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'''
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If s has one or more substitution variables then validate they
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are syntactically correct.
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A substitution string would be something that looked like this:
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* %(foo)s
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* $foo
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* ${foo}
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* $(foo)
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A list of error diagnostics is returned explaining how s1 and s2 failed
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the validation check. If the returned error list is empty then the
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validation succeeded.
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:param s: String to validate
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:param s_name: In diagnostic messages the name for s
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:return: List of diagnostic error messages, if empty then success
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'''
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errors = []
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# Look for Python style substitutions, e.g. %(foo)s
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for match in _python_substitution_regexp.finditer(s):
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if match.group(1):
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errors.append("%s has whitespace between %% and key in '%s'" %
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(s_name, match.group(0)))
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if match.group(2) or match.group(3):
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errors.append("%s has whitespace next to key in '%s'" %
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(s_name, match.group(0)))
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if match.group(4):
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errors.append("%s has whitespace between key and format character in '%s'" %
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(s_name, match.group(0)))
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if not match.group(5):
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errors.append("%s has no format character in '%s'" %
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(s_name, match.group(0)))
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# Look for shell style substitutions, e.g. $foo $(foo) ${foo}
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for match in _shell_substitution_regexp.finditer(s):
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if match.group(1):
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errors.append("%s has whitespace between $ and variable in '%s'" %
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(s_name, match.group(0)))
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if match.group(3) or (match.group(4) and match.group(5)):
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errors.append("%s has whitespace next to variable in '%s'" %
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(s_name, match.group(0)))
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beg_delimiter = match.group(2)
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end_delimiter = match.group(5)
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matched_delimiters = {'': '', '(': ')', '{': '}'}
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if beg_delimiter is not None or end_delimiter is not None:
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if matched_delimiters[beg_delimiter] != end_delimiter:
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errors.append("%s variable delimiters do not match in '%s', begin delimiter='%s' end delimiter='%s'" %
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(s_name, match.group(0), beg_delimiter, end_delimiter))
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if errors:
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if show_strings:
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errors.append('>>> %s <<<' % s_name)
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errors.append(s.rstrip())
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return errors
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def validate_positional_substitutions(s, prog_langs, s_name='string'):
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'''
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We do not permit multiple positional substitutions in translation
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strings (e.g. '%s') because they do not allow translators to reorder the
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wording. Instead keyword substitutions should be used when there are
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more than one.
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'''
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errors = []
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fmts = parse_printf_fmt(s)
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n_fmts = len(fmts)
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errors = []
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if n_fmts > 1:
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for fmt_parts in fmts:
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fmt = fmt_parts['fmt']
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fmt_arg = fmt_parts['fmt_arg']
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width = fmt_parts['width']
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if width == '*':
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errors.append("Error: * width arg in format '%s should be indexed" % fmt)
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if fmt_arg is None:
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if 'c' in prog_langs:
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errors.append("%s format '%s' is positional, should use indexed argument" %
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(s_name, fmt))
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else:
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errors.append("%s format '%s' is positional, should use keyword substitution" %
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(s_name, fmt))
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if errors:
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if show_strings:
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errors.append('>>> %s <<<' % s_name)
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errors.append(s.rstrip())
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return errors
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def validate_file(file_path, validation_mode, reference_pot=None):
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'''
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Given a pot or po file scan all it's entries looking for problems
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with variable substitutions. See the following functions for
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details on how the validation is performed.
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* validate_substitutions_match()
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* validate_substitution_syntax()
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* validate_positional_substitutions()
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Returns the number of entries with errors.
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For po files, ``reference_pot`` gives a pot file to merge with (to recover
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comments and file locations)
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'''
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def emit_messages():
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if n_warnings:
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warning_lines.insert(0, section_seperator)
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warning_lines.insert(1, "%d validation warnings in %s" % (n_warnings, file_path))
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print('\n'.join(warning_lines))
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if n_errors:
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error_lines.insert(0, section_seperator)
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error_lines.insert(1, "%d validation errors in %s" % (n_errors, file_path))
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print('\n'.join(error_lines))
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Result = namedtuple('ValidateFileResult', ['n_entries', 'n_msgids', 'n_msgstrs', 'n_warnings', 'n_errors'])
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warning_lines = []
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error_lines = []
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n_entries = 0
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n_msgids = 0
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n_msgstrs = 0
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n_entries = 0
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n_warnings = 0
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n_errors = 0
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n_plural_forms = 0
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if not os.path.isfile(file_path):
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error_lines.append(entry_seperator)
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error_lines.append('file does not exist "%s"' % (file_path))
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n_errors += 1
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emit_messages()
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return Result(n_entries=n_entries, n_msgids=n_msgids, n_msgstrs=n_msgstrs, n_warnings=n_warnings, n_errors=n_errors)
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try:
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po = polib.pofile(file_path)
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except Exception as e:
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error_lines.append(entry_seperator)
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error_lines.append('Unable to parse file "%s": %s' % (file_path, e))
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n_errors += 1
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emit_messages()
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return Result(n_entries=n_entries, n_msgids=n_msgids, n_msgstrs=n_msgstrs, n_warnings=n_warnings, n_errors=n_errors)
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if validation_mode == 'po' and reference_pot:
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# Merge the .pot file for comments and file locations
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po.merge(reference_pot)
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if validation_mode == 'po':
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plural_forms = po.metadata.get('Plural-Forms')
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if not plural_forms:
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error_lines.append(entry_seperator)
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error_lines.append("%s: does not have Plural-Forms header" % file_path)
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n_errors += 1
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match = re.search(r'\bnplurals\s*=\s*(\d+)', plural_forms)
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if match:
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n_plural_forms = int(match.group(1))
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else:
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error_lines.append(entry_seperator)
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error_lines.append("%s: does not specify integer nplurals in Plural-Forms header" % file_path)
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n_errors += 1
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n_entries = len(po)
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for entry in po:
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entry_warnings = []
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entry_errors = []
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have_msgid = entry.msgid.strip() != ''
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have_msgid_plural = entry.msgid_plural.strip() != ''
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have_msgstr = entry.msgstr.strip() != ''
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if have_msgid:
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n_msgids += 1
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if have_msgid_plural:
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n_msgids += 1
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if have_msgstr:
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n_msgstrs += 1
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if validation_mode == 'pot':
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prog_langs = get_prog_langs(entry)
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if have_msgid:
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errors = validate_positional_substitutions(entry.msgid, prog_langs, 'msgid')
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entry_errors.extend(errors)
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if have_msgid_plural:
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errors = validate_positional_substitutions(entry.msgid_plural, prog_langs, 'msgid_plural')
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entry_errors.extend(errors)
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elif validation_mode == 'po':
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if have_msgid:
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if have_msgstr:
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errors = validate_substitutions_match(entry.msgid, entry.msgstr, 'msgid', 'msgstr')
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entry_errors.extend(errors)
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if have_msgid_plural and have_msgstr:
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n_plurals = 0
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for index, msgstr in entry.msgstr_plural.items():
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have_msgstr_plural = msgstr.strip() != ''
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|
if have_msgstr_plural:
|
|
n_plurals += 1
|
|
errors = validate_substitutions_match(entry.msgid_plural, msgstr, 'msgid_plural', 'msgstr_plural[%s]' % index)
|
|
entry_errors.extend(errors)
|
|
else:
|
|
entry_errors.append('msgstr_plural[%s] is empty' % (index))
|
|
if n_plural_forms != n_plurals:
|
|
entry_errors.append('%d plural forms specified, but this entry has %d plurals' % (n_plural_forms, n_plurals))
|
|
|
|
if pedantic:
|
|
if have_msgid:
|
|
errors = validate_substitution_syntax(entry.msgid, 'msgid')
|
|
entry_warnings.extend(errors)
|
|
|
|
if have_msgid_plural:
|
|
errors = validate_substitution_syntax(entry.msgid_plural, 'msgid_plural')
|
|
entry_warnings.extend(errors)
|
|
|
|
errors = validate_substitutions_match(entry.msgid, entry.msgid_plural, 'msgid', 'msgid_plural')
|
|
entry_warnings.extend(errors)
|
|
|
|
for index, msgstr in entry.msgstr_plural.items():
|
|
have_msgstr_plural = msgstr.strip() != ''
|
|
if have_msgstr_plural:
|
|
errors = validate_substitution_syntax(msgstr, 'msgstr_plural[%s]' % index)
|
|
entry_warnings.extend(errors)
|
|
|
|
if have_msgstr:
|
|
errors = validate_substitution_syntax(entry.msgstr, 'msgstr')
|
|
entry_warnings.extend(errors)
|
|
|
|
if entry_warnings:
|
|
warning_lines.append(entry_seperator)
|
|
warning_lines.append('locations: %s' % (', '.join(["%s:%d" % (x[0], int(x[1])) for x in entry.occurrences])))
|
|
warning_lines.extend(entry_warnings)
|
|
n_warnings += 1
|
|
|
|
if entry_errors:
|
|
error_lines.append(entry_seperator)
|
|
error_lines.append('locations: %s' % (', '.join(["%s:%d" % (x[0], int(x[1])) for x in entry.occurrences])))
|
|
error_lines.extend(entry_errors)
|
|
n_errors += 1
|
|
|
|
emit_messages()
|
|
return Result(n_entries=n_entries, n_msgids=n_msgids, n_msgstrs=n_msgstrs, n_warnings=n_warnings, n_errors=n_errors)
|
|
|
|
|
|
#----------------------------------------------------------------------
|
|
def create_po(pot_file, po_file, mo_file):
|
|
|
|
if not os.path.isfile(pot_file):
|
|
print('file does not exist "%s"' % (pot_file), file=sys.stderr)
|
|
return 1
|
|
try:
|
|
po = polib.pofile(pot_file)
|
|
except Exception as e:
|
|
print('Unable to parse file "%s": %s' % (pot_file, e), file=sys.stderr)
|
|
return 1
|
|
|
|
# Update the metadata in the po file header
|
|
# It's case insensitive so search the keys in a case insensitive manner
|
|
#
|
|
# We need to update the Plural-Forms otherwise gettext.py will raise the
|
|
# following error:
|
|
#
|
|
# raise ValueError, 'plural forms expression could be dangerous'
|
|
#
|
|
# It is demanding the rhs of plural= only contains the identifer 'n'
|
|
|
|
for k in po.metadata:
|
|
if k.lower() == 'plural-forms':
|
|
po.metadata[k] = 'nplurals=2; plural=(n != 1)'
|
|
# the auto-generated PO file should have charset set to UTF-8
|
|
# because we are using UTF-8 prefix and suffix below
|
|
elif k.lower() == 'content-type':
|
|
po.metadata[k] = 'Content-Type: text/plain; charset=UTF-8'
|
|
|
|
|
|
# Iterate over all msgid's and form a msgstr by prepending
|
|
# the prefix and appending the suffix
|
|
for entry in po:
|
|
if entry.msgid_plural:
|
|
entry.msgstr_plural = {0: prefix + entry.msgid + suffix,
|
|
1: prefix + entry.msgid_plural + suffix}
|
|
else:
|
|
entry.msgstr = prefix + entry.msgid + suffix
|
|
|
|
# Write out the po and mo files
|
|
po.save(po_file)
|
|
print("Wrote: %s" % (po_file))
|
|
|
|
po.save_as_mofile(mo_file)
|
|
print("Wrote: %s" % (mo_file))
|
|
|
|
return 0
|
|
|
|
#----------------------------------------------------------------------
|
|
|
|
def validate_unicode_edit(msgid, msgstr):
|
|
# Verify the first character is the test prefix
|
|
if msgstr[0] != prefix:
|
|
raise ValueError('First char in translated string "%s" not equal to prefix "%s"' %
|
|
(msgstr.encode('utf-8'), prefix.encode('utf-8')))
|
|
|
|
# Verify the last character is the test suffix
|
|
if msgstr[-1] != suffix:
|
|
raise ValueError('Last char in translated string "%s" not equal to suffix "%s"' %
|
|
(msgstr.encode('utf-8'), suffix.encode('utf-8')))
|
|
|
|
# Verify everything between the first and last character is the
|
|
# original untranslated string
|
|
if msgstr[1:-1] != msgid:
|
|
raise ValueError('Translated string "%s" minus the first & last character is not equal to msgid "%s"' %
|
|
(msgstr.encode('utf-8'), msgid))
|
|
|
|
if verbose:
|
|
msg = 'Success: message string "%s" maps to translated string "%s"' % (msgid, msgstr)
|
|
print(msg.encode('utf-8'))
|
|
|
|
|
|
def test_translations(po_file, lang, domain, locale_dir):
|
|
# The test installs the test message catalog under the xh_ZA
|
|
# (e.g. Zambia Xhosa) language by default. It would be nice to
|
|
# use a dummy language not associated with any real language,
|
|
# but the setlocale function demands the locale be a valid
|
|
# known locale, Zambia Xhosa is a reasonable choice :)
|
|
locale_envs = ('LANGUAGE', 'LC_ALL', 'LC_MESSAGES', 'LANG')
|
|
|
|
os.environ.update(
|
|
{locale_env: lang for locale_env in locale_envs}
|
|
)
|
|
|
|
# Create a gettext translation object specifying our domain as
|
|
# 'ipa' and the locale_dir as 'test_locale' (i.e. where to
|
|
# look for the message catalog). Then use that translation
|
|
# object to obtain the translation functions.
|
|
|
|
t = gettext.translation(domain, locale_dir)
|
|
|
|
if six.PY2:
|
|
# pylint: disable=no-member
|
|
get_msgstr = t.ugettext
|
|
get_msgstr_plural = t.ungettext
|
|
# pylint: enable=no-member
|
|
else:
|
|
get_msgstr = t.gettext
|
|
get_msgstr_plural = t.ngettext
|
|
|
|
return po_file_iterate(po_file, get_msgstr, get_msgstr_plural)
|
|
|
|
def po_file_iterate(po_file, get_msgstr, get_msgstr_plural):
|
|
try:
|
|
# Iterate over the msgid's
|
|
if not os.path.isfile(po_file):
|
|
print('file does not exist "%s"' % (po_file), file=sys.stderr)
|
|
return 1
|
|
try:
|
|
po = polib.pofile(po_file)
|
|
except Exception as e:
|
|
print('Unable to parse file "%s": %s' % (po_file, e), file=sys.stderr)
|
|
return 1
|
|
|
|
n_entries = 0
|
|
n_translations = 0
|
|
n_valid = 0
|
|
n_fail = 0
|
|
for entry in po:
|
|
if entry.msgid_plural:
|
|
msgid = entry.msgid
|
|
msgid_plural = entry.msgid_plural
|
|
msgstr = get_msgstr_plural(msgid, msgid_plural, 1)
|
|
msgstr_plural = get_msgstr_plural(msgid, msgid_plural, 2)
|
|
|
|
try:
|
|
n_translations += 1
|
|
validate_unicode_edit(msgid, msgstr)
|
|
n_valid += 1
|
|
except Exception as e:
|
|
n_fail += 1
|
|
if print_traceback:
|
|
traceback.print_exc()
|
|
print("ERROR: %s" % e, file=sys.stderr)
|
|
|
|
try:
|
|
n_translations += 1
|
|
validate_unicode_edit(msgid_plural, msgstr_plural)
|
|
n_valid += 1
|
|
except Exception as e:
|
|
n_fail += 1
|
|
if print_traceback:
|
|
traceback.print_exc()
|
|
print("ERROR: %s" % e, file=sys.stderr)
|
|
|
|
|
|
else:
|
|
msgid = entry.msgid
|
|
msgstr = get_msgstr(msgid)
|
|
|
|
try:
|
|
n_translations += 1
|
|
validate_unicode_edit(msgid, msgstr)
|
|
n_valid += 1
|
|
except Exception as e:
|
|
n_fail += 1
|
|
if print_traceback:
|
|
traceback.print_exc()
|
|
print("ERROR: %s" % e, file=sys.stderr)
|
|
|
|
n_entries += 1
|
|
|
|
except Exception as e:
|
|
if print_traceback:
|
|
traceback.print_exc()
|
|
print("ERROR: %s" % e, file=sys.stderr)
|
|
return 1
|
|
|
|
if not n_entries:
|
|
print("ERROR: no translations found in %s" % (po_file), file=sys.stderr)
|
|
return 1
|
|
|
|
if n_fail:
|
|
print("ERROR: %d failures out of %d translations" % (n_fail, n_entries), file=sys.stderr)
|
|
return 1
|
|
|
|
print("%d translations in %d messages successfully tested" % (n_translations, n_entries))
|
|
return 0
|
|
|
|
#----------------------------------------------------------------------
|
|
|
|
usage ='''
|
|
|
|
%prog --test-gettext
|
|
%prog --create-test
|
|
%prog --validate-pot [pot_file1, ...]
|
|
%prog --validate-po po_file1 [po_file2, ...]
|
|
'''
|
|
|
|
def main():
|
|
global verbose, print_traceback, pedantic, show_strings
|
|
|
|
parser = optparse.OptionParser(usage=usage)
|
|
|
|
mode_group = optparse.OptionGroup(parser, 'Operational Mode',
|
|
'You must select one these modes to run in')
|
|
|
|
mode_group.add_option('-g', '--test-gettext', action='store_const', const='test_gettext', dest='mode',
|
|
help='create the test translation file(s) and exercise them')
|
|
mode_group.add_option('-c', '--create-test', action='store_const', const='create_test', dest='mode',
|
|
help='create the test translation file(s)')
|
|
mode_group.add_option('-P', '--validate-pot', action='store_const', const='validate_pot', dest='mode',
|
|
help='validate pot file(s)')
|
|
mode_group.add_option('-p', '--validate-po', action='store_const', const='validate_po', dest='mode',
|
|
help='validate po file(s)')
|
|
|
|
parser.add_option_group(mode_group)
|
|
parser.set_defaults(mode='')
|
|
|
|
parser.add_option('-s', '--show-strings', action='store_true', dest='show_strings', default=False,
|
|
help='show the offending string when an error is detected')
|
|
parser.add_option('--pedantic', action='store_true', dest='pedantic', default=False,
|
|
help='be aggressive when validating')
|
|
parser.add_option('-v', '--verbose', action='store_true', dest='verbose', default=False,
|
|
help='be informative')
|
|
parser.add_option('--traceback', action='store_true', dest='print_traceback', default=False,
|
|
help='print the traceback when an exception occurs')
|
|
|
|
param_group = optparse.OptionGroup(parser, 'Run Time Parameters',
|
|
'These may be used to modify the run time defaults')
|
|
|
|
param_group.add_option('--test-lang', action='store', dest='test_lang', default='test',
|
|
help="test po file uses this as it's basename (default=test)")
|
|
param_group.add_option('--lang', action='store', dest='lang', default='xh_ZA',
|
|
help='lang used for locale, MUST be a valid lang (default=xh_ZA)')
|
|
param_group.add_option('--domain', action='store', dest='domain', default='ipa',
|
|
help='translation domain used during test (default=ipa)')
|
|
param_group.add_option('--locale-dir', action='store', dest='locale_dir', default='test_locale',
|
|
help='locale directory used during test (default=test_locale)')
|
|
param_group.add_option('--pot-file', action='store', dest='pot_file', default='ipa.pot',
|
|
help='default pot file, used when validating pot file or generating test po and mo files (default=ipa.pot)')
|
|
|
|
parser.add_option_group(param_group)
|
|
|
|
options, args = parser.parse_args()
|
|
|
|
verbose = options.verbose
|
|
print_traceback = options.print_traceback
|
|
pedantic = options.pedantic
|
|
show_strings = options.show_strings
|
|
|
|
if not options.mode:
|
|
print('ERROR: no mode specified', file=sys.stderr)
|
|
return 1
|
|
|
|
if options.mode in ('validate_pot', 'validate_po'):
|
|
if options.mode == 'validate_pot':
|
|
files = args
|
|
if not files:
|
|
files = [options.pot_file]
|
|
validation_mode = 'pot'
|
|
reference_pot = None
|
|
elif options.mode == 'validate_po':
|
|
files = args
|
|
if not files:
|
|
print('ERROR: no po files specified', file=sys.stderr)
|
|
return 1
|
|
validation_mode = 'po'
|
|
reference_pot = polib.pofile(options.pot_file)
|
|
else:
|
|
print('ERROR: unknown validation mode "%s"' % (options.mode), file=sys.stderr)
|
|
return 1
|
|
|
|
total_entries = 0
|
|
total_msgids = 0
|
|
total_msgstrs = 0
|
|
total_warnings = 0
|
|
total_errors = 0
|
|
|
|
for f in files:
|
|
result = validate_file(f, validation_mode, reference_pot)
|
|
total_entries += result.n_entries
|
|
total_msgids += result.n_msgids
|
|
total_msgstrs += result.n_msgstrs
|
|
total_warnings += result.n_warnings
|
|
total_errors += result.n_errors
|
|
print("%s: %d entries, %d msgid, %d msgstr, %d warnings %d errors" % \
|
|
(f, result.n_entries, result.n_msgids, result.n_msgstrs, result.n_warnings, result.n_errors))
|
|
if total_errors:
|
|
print(section_seperator)
|
|
print("%d errors in %d files" % (total_errors, len(files)))
|
|
return 1
|
|
else:
|
|
return 0
|
|
|
|
elif options.mode in ('create_test', 'test_gettext'):
|
|
po_file = '%s.po' % options.test_lang
|
|
pot_file = options.pot_file
|
|
|
|
msg_dir = os.path.join(options.locale_dir, options.lang, 'LC_MESSAGES')
|
|
if not os.path.exists(msg_dir):
|
|
os.makedirs(msg_dir)
|
|
|
|
mo_basename = '%s.mo' % options.domain
|
|
mo_file = os.path.join(msg_dir, mo_basename)
|
|
|
|
result = create_po(pot_file, po_file, mo_file)
|
|
if result:
|
|
return result
|
|
|
|
if options.mode == 'create_test':
|
|
return result
|
|
|
|
# The test installs the test message catalog under the xh_ZA
|
|
# (e.g. Zambia Xhosa) language by default. It would be nice to
|
|
# use a dummy language not associated with any real language,
|
|
# but the setlocale function demands the locale be a valid
|
|
# known locale, Zambia Xhosa is a reasonable choice :)
|
|
|
|
lang = options.lang
|
|
|
|
# Create a gettext translation object specifying our domain as
|
|
# 'ipa' and the locale_dir as 'test_locale' (i.e. where to
|
|
# look for the message catalog). Then use that translation
|
|
# object to obtain the translation functions.
|
|
|
|
domain = options.domain
|
|
locale_dir = options.locale_dir
|
|
|
|
return test_translations(po_file, lang, domain, locale_dir)
|
|
|
|
else:
|
|
print('ERROR: unknown mode "%s"' % (options.mode), file=sys.stderr)
|
|
return 1
|
|
|
|
if __name__ == "__main__":
|
|
sys.exit(main())
|