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  • Committer: Teddy Hogeborn
  • Date: 2019-03-02 19:59:16 UTC
  • Revision ID: teddy@recompile.se-20190302195916-mya36qr865qqujnz
mandos-ctl: White space changes only

* mandos-ctl: Fix some white space, wrapping, and indentation.

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#!/usr/bin/python
2
 
# -*- mode: python; coding: utf-8 -*-
3
 
 
2
# -*- mode: python; coding: utf-8; after-save-hook: (lambda () (let ((command (if (and (boundp 'tramp-file-name-structure) (string-match (car tramp-file-name-structure) (buffer-file-name))) (tramp-file-name-localname (tramp-dissect-file-name (buffer-file-name))) (buffer-file-name)))) (if (= (shell-command (format "%s --check" (shell-quote-argument command)) "*Test*") 0) (let ((w (get-buffer-window "*Test*"))) (if w (delete-window w)) (kill-buffer "*Test*")) (display-buffer "*Test*")))); -*-
 
3
#
4
4
# Mandos Monitor - Control and monitor the Mandos server
5
 
6
 
# Copyright © 2008-2014 Teddy Hogeborn
7
 
# Copyright © 2008-2014 Björn Påhlsson
8
 
9
 
# This program is free software: you can redistribute it and/or modify
10
 
# it under the terms of the GNU General Public License as published by
 
5
#
 
6
# Copyright © 2008-2019 Teddy Hogeborn
 
7
# Copyright © 2008-2019 Björn Påhlsson
 
8
#
 
9
# This file is part of Mandos.
 
10
#
 
11
# Mandos is free software: you can redistribute it and/or modify it
 
12
# under the terms of the GNU General Public License as published by
11
13
# the Free Software Foundation, either version 3 of the License, or
12
14
# (at your option) any later version.
13
15
#
14
 
#     This program is distributed in the hope that it will be useful,
15
 
#     but WITHOUT ANY WARRANTY; without even the implied warranty of
 
16
#     Mandos is distributed in the hope that it will be useful, but
 
17
#     WITHOUT ANY WARRANTY; without even the implied warranty of
16
18
#     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17
19
#     GNU General Public License for more details.
18
 
 
20
#
19
21
# You should have received a copy of the GNU General Public License
20
 
# along with this program.  If not, see
21
 
# <http://www.gnu.org/licenses/>.
22
 
 
22
# along with Mandos.  If not, see <http://www.gnu.org/licenses/>.
 
23
#
23
24
# Contact the authors at <mandos@recompile.se>.
24
 
 
25
#
25
26
 
26
27
from __future__ import (division, absolute_import, print_function,
27
28
                        unicode_literals)
38
39
import re
39
40
import os
40
41
import collections
41
 
import doctest
 
42
import json
 
43
import unittest
 
44
import logging
42
45
 
43
46
import dbus
44
47
 
45
 
if sys.version_info[0] == 2:
 
48
# Show warnings by default
 
49
if not sys.warnoptions:
 
50
    import warnings
 
51
    warnings.simplefilter("default")
 
52
 
 
53
log = logging.getLogger(sys.argv[0])
 
54
logging.basicConfig(level="INFO", # Show info level messages
 
55
                    format="%(message)s") # Show basic log messages
 
56
 
 
57
logging.captureWarnings(True)   # Show warnings via the logging system
 
58
 
 
59
if sys.version_info.major == 2:
46
60
    str = unicode
47
61
 
48
62
locale.setlocale(locale.LC_ALL, "")
49
63
 
50
 
tablewords = {
51
 
    "Name": "Name",
52
 
    "Enabled": "Enabled",
53
 
    "Timeout": "Timeout",
54
 
    "LastCheckedOK": "Last Successful Check",
55
 
    "LastApprovalRequest": "Last Approval Request",
56
 
    "Created": "Created",
57
 
    "Interval": "Interval",
58
 
    "Host": "Host",
59
 
    "Fingerprint": "Fingerprint",
60
 
    "CheckerRunning": "Check Is Running",
61
 
    "LastEnabled": "Last Enabled",
62
 
    "ApprovalPending": "Approval Is Pending",
63
 
    "ApprovedByDefault": "Approved By Default",
64
 
    "ApprovalDelay": "Approval Delay",
65
 
    "ApprovalDuration": "Approval Duration",
66
 
    "Checker": "Checker",
67
 
    "ExtendedTimeout" : "Extended Timeout"
68
 
    }
69
64
defaultkeywords = ("Name", "Enabled", "Timeout", "LastCheckedOK")
70
65
domain = "se.recompile"
71
66
busname = domain + ".Mandos"
72
67
server_path = "/"
73
68
server_interface = domain + ".Mandos"
74
69
client_interface = domain + ".Mandos.Client"
75
 
version = "1.6.7"
76
 
 
77
 
def timedelta_to_milliseconds(td):
78
 
    """Convert a datetime.timedelta object to milliseconds"""
79
 
    return ((td.days * 24 * 60 * 60 * 1000)
80
 
            + (td.seconds * 1000)
81
 
            + (td.microseconds // 1000))
 
70
version = "1.8.3"
 
71
 
 
72
 
 
73
try:
 
74
    dbus.OBJECT_MANAGER_IFACE
 
75
except AttributeError:
 
76
    dbus.OBJECT_MANAGER_IFACE = "org.freedesktop.DBus.ObjectManager"
 
77
 
82
78
 
83
79
def milliseconds_to_string(ms):
84
80
    td = datetime.timedelta(0, 0, 0, ms)
85
81
    return ("{days}{hours:02}:{minutes:02}:{seconds:02}"
86
 
            .format(days = "{0}T".format(td.days) if td.days else "",
87
 
                    hours = td.seconds // 3600,
88
 
                    minutes = (td.seconds % 3600) // 60,
89
 
                    seconds = td.seconds % 60,
90
 
                    ))
 
82
            .format(days="{}T".format(td.days) if td.days else "",
 
83
                    hours=td.seconds // 3600,
 
84
                    minutes=(td.seconds % 3600) // 60,
 
85
                    seconds=td.seconds % 60))
91
86
 
92
87
 
93
88
def rfc3339_duration_to_delta(duration):
94
89
    """Parse an RFC 3339 "duration" and return a datetime.timedelta
95
 
    
 
90
 
96
91
    >>> rfc3339_duration_to_delta("P7D")
97
92
    datetime.timedelta(7)
98
93
    >>> rfc3339_duration_to_delta("PT60S")
99
94
    datetime.timedelta(0, 60)
100
95
    >>> rfc3339_duration_to_delta("PT60M")
101
96
    datetime.timedelta(0, 3600)
 
97
    >>> rfc3339_duration_to_delta("P60M")
 
98
    datetime.timedelta(1680)
102
99
    >>> rfc3339_duration_to_delta("PT24H")
103
100
    datetime.timedelta(1)
104
101
    >>> rfc3339_duration_to_delta("P1W")
107
104
    datetime.timedelta(0, 330)
108
105
    >>> rfc3339_duration_to_delta("P1DT3M20S")
109
106
    datetime.timedelta(1, 200)
 
107
    >>> # Can not be empty:
 
108
    >>> rfc3339_duration_to_delta("")
 
109
    Traceback (most recent call last):
 
110
    ...
 
111
    ValueError: Invalid RFC 3339 duration: u''
 
112
    >>> # Must start with "P":
 
113
    >>> rfc3339_duration_to_delta("1D")
 
114
    Traceback (most recent call last):
 
115
    ...
 
116
    ValueError: Invalid RFC 3339 duration: u'1D'
 
117
    >>> # Must use correct order
 
118
    >>> rfc3339_duration_to_delta("PT1S2M")
 
119
    Traceback (most recent call last):
 
120
    ...
 
121
    ValueError: Invalid RFC 3339 duration: u'PT1S2M'
 
122
    >>> # Time needs time marker
 
123
    >>> rfc3339_duration_to_delta("P1H2S")
 
124
    Traceback (most recent call last):
 
125
    ...
 
126
    ValueError: Invalid RFC 3339 duration: u'P1H2S'
 
127
    >>> # Weeks can not be combined with anything else
 
128
    >>> rfc3339_duration_to_delta("P1D2W")
 
129
    Traceback (most recent call last):
 
130
    ...
 
131
    ValueError: Invalid RFC 3339 duration: u'P1D2W'
 
132
    >>> rfc3339_duration_to_delta("P2W2H")
 
133
    Traceback (most recent call last):
 
134
    ...
 
135
    ValueError: Invalid RFC 3339 duration: u'P2W2H'
110
136
    """
111
 
    
 
137
 
112
138
    # Parsing an RFC 3339 duration with regular expressions is not
113
139
    # possible - there would have to be multiple places for the same
114
140
    # values, like seconds.  The current code, while more esoteric, is
115
141
    # cleaner without depending on a parsing library.  If Python had a
116
142
    # built-in library for parsing we would use it, but we'd like to
117
143
    # avoid excessive use of external libraries.
118
 
    
 
144
 
119
145
    # New type for defining tokens, syntax, and semantics all-in-one
120
 
    Token = collections.namedtuple("Token",
121
 
                                   ("regexp", # To match token; if
122
 
                                              # "value" is not None,
123
 
                                              # must have a "group"
124
 
                                              # containing digits
125
 
                                    "value",  # datetime.timedelta or
126
 
                                              # None
127
 
                                    "followers")) # Tokens valid after
128
 
                                                  # this token
 
146
    Token = collections.namedtuple("Token", (
 
147
        "regexp",  # To match token; if "value" is not None, must have
 
148
                   # a "group" containing digits
 
149
        "value",   # datetime.timedelta or None
 
150
        "followers"))           # Tokens valid after this token
129
151
    # RFC 3339 "duration" tokens, syntax, and semantics; taken from
130
152
    # the "duration" ABNF definition in RFC 3339, Appendix A.
131
153
    token_end = Token(re.compile(r"$"), None, frozenset())
132
154
    token_second = Token(re.compile(r"(\d+)S"),
133
155
                         datetime.timedelta(seconds=1),
134
 
                         frozenset((token_end,)))
 
156
                         frozenset((token_end, )))
135
157
    token_minute = Token(re.compile(r"(\d+)M"),
136
158
                         datetime.timedelta(minutes=1),
137
159
                         frozenset((token_second, token_end)))
153
175
                       frozenset((token_month, token_end)))
154
176
    token_week = Token(re.compile(r"(\d+)W"),
155
177
                       datetime.timedelta(weeks=1),
156
 
                       frozenset((token_end,)))
 
178
                       frozenset((token_end, )))
157
179
    token_duration = Token(re.compile(r"P"), None,
158
180
                           frozenset((token_year, token_month,
159
181
                                      token_day, token_time,
160
182
                                      token_week)))
161
 
    # Define starting values
162
 
    value = datetime.timedelta() # Value so far
 
183
    # Define starting values:
 
184
    # Value so far
 
185
    value = datetime.timedelta()
163
186
    found_token = None
164
 
    followers = frozenset((token_duration,)) # Following valid tokens
165
 
    s = duration                # String left to parse
 
187
    # Following valid tokens
 
188
    followers = frozenset((token_duration, ))
 
189
    # String left to parse
 
190
    s = duration
166
191
    # Loop until end token is found
167
192
    while found_token is not token_end:
168
193
        # Search for any currently valid tokens
184
209
                break
185
210
        else:
186
211
            # No currently valid tokens were found
187
 
            raise ValueError("Invalid RFC 3339 duration")
 
212
            raise ValueError("Invalid RFC 3339 duration: {!r}"
 
213
                             .format(duration))
188
214
    # End token found
189
215
    return value
190
216
 
191
217
 
192
218
def string_to_delta(interval):
193
 
    """Parse a string and return a datetime.timedelta
194
 
    
195
 
    >>> string_to_delta("7d")
196
 
    datetime.timedelta(7)
197
 
    >>> string_to_delta("60s")
198
 
    datetime.timedelta(0, 60)
199
 
    >>> string_to_delta("60m")
200
 
    datetime.timedelta(0, 3600)
201
 
    >>> string_to_delta("24h")
202
 
    datetime.timedelta(1)
203
 
    >>> string_to_delta("1w")
204
 
    datetime.timedelta(7)
205
 
    >>> string_to_delta("5m 30s")
206
 
    datetime.timedelta(0, 330)
207
 
    """
208
 
    
 
219
    """Parse a string and return a datetime.timedelta"""
 
220
 
209
221
    try:
210
222
        return rfc3339_duration_to_delta(interval)
211
 
    except ValueError:
212
 
        pass
213
 
    
 
223
    except ValueError as e:
 
224
        log.warning("%s - Parsing as pre-1.6.1 interval instead",
 
225
                    ' '.join(e.args))
 
226
    return parse_pre_1_6_1_interval(interval)
 
227
 
 
228
 
 
229
def parse_pre_1_6_1_interval(interval):
 
230
    """Parse an interval string as documented by Mandos before 1.6.1,
 
231
    and return a datetime.timedelta
 
232
 
 
233
    >>> parse_pre_1_6_1_interval('7d')
 
234
    datetime.timedelta(7)
 
235
    >>> parse_pre_1_6_1_interval('60s')
 
236
    datetime.timedelta(0, 60)
 
237
    >>> parse_pre_1_6_1_interval('60m')
 
238
    datetime.timedelta(0, 3600)
 
239
    >>> parse_pre_1_6_1_interval('24h')
 
240
    datetime.timedelta(1)
 
241
    >>> parse_pre_1_6_1_interval('1w')
 
242
    datetime.timedelta(7)
 
243
    >>> parse_pre_1_6_1_interval('5m 30s')
 
244
    datetime.timedelta(0, 330)
 
245
    >>> parse_pre_1_6_1_interval('')
 
246
    datetime.timedelta(0)
 
247
    >>> # Ignore unknown characters, allow any order and repetitions
 
248
    >>> parse_pre_1_6_1_interval('2dxy7zz11y3m5m')
 
249
    datetime.timedelta(2, 480, 18000)
 
250
 
 
251
    """
 
252
 
214
253
    value = datetime.timedelta(0)
215
254
    regexp = re.compile(r"(\d+)([dsmhw]?)")
216
 
    
 
255
 
217
256
    for num, suffix in regexp.findall(interval):
218
257
        if suffix == "d":
219
258
            value += datetime.timedelta(int(num))
229
268
            value += datetime.timedelta(0, 0, 0, int(num))
230
269
    return value
231
270
 
232
 
def print_clients(clients, keywords):
 
271
 
 
272
class TableOfClients(object):
 
273
    tablewords = {
 
274
        "Name": "Name",
 
275
        "Enabled": "Enabled",
 
276
        "Timeout": "Timeout",
 
277
        "LastCheckedOK": "Last Successful Check",
 
278
        "LastApprovalRequest": "Last Approval Request",
 
279
        "Created": "Created",
 
280
        "Interval": "Interval",
 
281
        "Host": "Host",
 
282
        "Fingerprint": "Fingerprint",
 
283
        "KeyID": "Key ID",
 
284
        "CheckerRunning": "Check Is Running",
 
285
        "LastEnabled": "Last Enabled",
 
286
        "ApprovalPending": "Approval Is Pending",
 
287
        "ApprovedByDefault": "Approved By Default",
 
288
        "ApprovalDelay": "Approval Delay",
 
289
        "ApprovalDuration": "Approval Duration",
 
290
        "Checker": "Checker",
 
291
        "ExtendedTimeout": "Extended Timeout",
 
292
        "Expires": "Expires",
 
293
        "LastCheckerStatus": "Last Checker Status",
 
294
    }
 
295
 
 
296
    def __init__(self, clients, keywords, tablewords=None):
 
297
        self.clients = clients
 
298
        self.keywords = keywords
 
299
        if tablewords is not None:
 
300
            self.tablewords = tablewords
 
301
 
 
302
    def __str__(self):
 
303
        return "\n".join(self.rows())
 
304
 
 
305
    if sys.version_info.major == 2:
 
306
        __unicode__ = __str__
 
307
        def __str__(self):
 
308
            return str(self).encode(locale.getpreferredencoding())
 
309
 
 
310
    def rows(self):
 
311
        format_string = self.row_formatting_string()
 
312
        rows = [self.header_line(format_string)]
 
313
        rows.extend(self.client_line(client, format_string)
 
314
                    for client in self.clients)
 
315
        return rows
 
316
 
 
317
    def row_formatting_string(self):
 
318
        "Format string used to format table rows"
 
319
        return " ".join("{{{key}:{width}}}".format(
 
320
            width=max(len(self.tablewords[key]),
 
321
                      *(len(self.string_from_client(client, key))
 
322
                        for client in self.clients)),
 
323
            key=key)
 
324
                        for key in self.keywords)
 
325
 
 
326
    def string_from_client(self, client, key):
 
327
        return self.valuetostring(client[key], key)
 
328
 
 
329
    @staticmethod
233
330
    def valuetostring(value, keyword):
234
 
        if type(value) is dbus.Boolean:
 
331
        if isinstance(value, dbus.Boolean):
235
332
            return "Yes" if value else "No"
236
333
        if keyword in ("Timeout", "Interval", "ApprovalDelay",
237
334
                       "ApprovalDuration", "ExtendedTimeout"):
238
335
            return milliseconds_to_string(value)
239
336
        return str(value)
240
 
    
241
 
    # Create format string to print table rows
242
 
    format_string = " ".join("{{{key}:{width}}}".format(
243
 
            width = max(len(tablewords[key]),
244
 
                        max(len(valuetostring(client[key],
245
 
                                              key))
246
 
                            for client in
247
 
                            clients)),
248
 
            key = key) for key in keywords)
249
 
    # Print header line
250
 
    print(format_string.format(**tablewords))
251
 
    for client in clients:
252
 
        print(format_string.format(**{ key:
253
 
                                           valuetostring(client[key],
254
 
                                                         key)
255
 
                                       for key in keywords }))
 
337
 
 
338
    def header_line(self, format_string):
 
339
        return format_string.format(**self.tablewords)
 
340
 
 
341
    def client_line(self, client, format_string):
 
342
        return format_string.format(
 
343
            **{key: self.string_from_client(client, key)
 
344
               for key in self.keywords})
 
345
 
256
346
 
257
347
def has_actions(options):
258
348
    return any((options.enable,
274
364
                options.approve,
275
365
                options.deny))
276
366
 
 
367
 
277
368
def main():
278
369
    parser = argparse.ArgumentParser()
279
370
    parser.add_argument("--version", action="version",
280
 
                        version = "%(prog)s {0}".format(version),
 
371
                        version="%(prog)s {}".format(version),
281
372
                        help="show version number and exit")
282
373
    parser.add_argument("-a", "--all", action="store_true",
283
374
                        help="Select all clients")
284
375
    parser.add_argument("-v", "--verbose", action="store_true",
285
376
                        help="Print all fields")
 
377
    parser.add_argument("-j", "--dump-json", action="store_true",
 
378
                        help="Dump client data in JSON format")
286
379
    parser.add_argument("-e", "--enable", action="store_true",
287
380
                        help="Enable client")
288
381
    parser.add_argument("-d", "--disable", action="store_true",
327
420
                        help="Run self-test")
328
421
    parser.add_argument("client", nargs="*", help="Client name")
329
422
    options = parser.parse_args()
330
 
    
 
423
 
331
424
    if has_actions(options) and not (options.client or options.all):
332
425
        parser.error("Options require clients names or --all.")
333
426
    if options.verbose and has_actions(options):
334
 
        parser.error("--verbose can only be used alone or with"
335
 
                     " --all.")
 
427
        parser.error("--verbose can only be used alone.")
 
428
    if options.dump_json and (options.verbose
 
429
                              or has_actions(options)):
 
430
        parser.error("--dump-json can only be used alone.")
336
431
    if options.all and not has_actions(options):
337
432
        parser.error("--all requires an action.")
338
433
 
339
 
    if options.check:
340
 
        fail_count, test_count = doctest.testmod()
341
 
        sys.exit(os.EX_OK if fail_count == 0 else 1)
342
 
    
343
434
    try:
344
435
        bus = dbus.SystemBus()
345
436
        mandos_dbus_objc = bus.get_object(busname, server_path)
346
437
    except dbus.exceptions.DBusException:
347
 
        print("Could not connect to Mandos server",
348
 
              file=sys.stderr)
 
438
        log.critical("Could not connect to Mandos server")
349
439
        sys.exit(1)
350
 
    
 
440
 
351
441
    mandos_serv = dbus.Interface(mandos_dbus_objc,
352
 
                                 dbus_interface = server_interface)
353
 
    
354
 
    #block stderr since dbus library prints to stderr
 
442
                                 dbus_interface=server_interface)
 
443
    mandos_serv_object_manager = dbus.Interface(
 
444
        mandos_dbus_objc, dbus_interface=dbus.OBJECT_MANAGER_IFACE)
 
445
 
 
446
    # block stderr since dbus library prints to stderr
355
447
    null = os.open(os.path.devnull, os.O_RDWR)
356
448
    stderrcopy = os.dup(sys.stderr.fileno())
357
449
    os.dup2(null, sys.stderr.fileno())
358
450
    os.close(null)
359
451
    try:
360
452
        try:
361
 
            mandos_clients = mandos_serv.GetAllClientsWithProperties()
 
453
            mandos_clients = {path: ifs_and_props[client_interface]
 
454
                              for path, ifs_and_props in
 
455
                              mandos_serv_object_manager
 
456
                              .GetManagedObjects().items()
 
457
                              if client_interface in ifs_and_props}
362
458
        finally:
363
 
            #restore stderr
 
459
            # restore stderr
364
460
            os.dup2(stderrcopy, sys.stderr.fileno())
365
461
            os.close(stderrcopy)
366
 
    except dbus.exceptions.DBusException:
367
 
        print("Access denied: Accessing mandos server through dbus.",
368
 
              file=sys.stderr)
 
462
    except dbus.exceptions.DBusException as e:
 
463
        log.critical("Failed to access Mandos server through D-Bus:"
 
464
                     "\n%s", e)
369
465
        sys.exit(1)
370
 
    
 
466
 
371
467
    # Compile dict of (clients: properties) to process
372
 
    clients={}
373
 
    
 
468
    clients = {}
 
469
 
374
470
    if options.all or not options.client:
375
 
        clients = { bus.get_object(busname, path): properties
376
 
                    for path, properties in mandos_clients.items() }
 
471
        clients = {bus.get_object(busname, path): properties
 
472
                   for path, properties in mandos_clients.items()}
377
473
    else:
378
474
        for name in options.client:
379
475
            for path, client in mandos_clients.items():
382
478
                    clients[client_objc] = client
383
479
                    break
384
480
            else:
385
 
                print("Client not found on server: {0!r}"
386
 
                      .format(name), file=sys.stderr)
 
481
                log.critical("Client not found on server: %r", name)
387
482
                sys.exit(1)
388
 
    
 
483
 
389
484
    if not has_actions(options) and clients:
390
 
        if options.verbose:
391
 
            keywords = ("Name", "Enabled", "Timeout",
392
 
                        "LastCheckedOK", "Created", "Interval",
393
 
                        "Host", "Fingerprint", "CheckerRunning",
 
485
        if options.verbose or options.dump_json:
 
486
            keywords = ("Name", "Enabled", "Timeout", "LastCheckedOK",
 
487
                        "Created", "Interval", "Host", "KeyID",
 
488
                        "Fingerprint", "CheckerRunning",
394
489
                        "LastEnabled", "ApprovalPending",
395
 
                        "ApprovedByDefault",
396
 
                        "LastApprovalRequest", "ApprovalDelay",
397
 
                        "ApprovalDuration", "Checker",
398
 
                        "ExtendedTimeout")
 
490
                        "ApprovedByDefault", "LastApprovalRequest",
 
491
                        "ApprovalDelay", "ApprovalDuration",
 
492
                        "Checker", "ExtendedTimeout", "Expires",
 
493
                        "LastCheckerStatus")
399
494
        else:
400
495
            keywords = defaultkeywords
401
 
        
402
 
        print_clients(clients.values(), keywords)
 
496
 
 
497
        if options.dump_json:
 
498
            json.dump({client["Name"]: {key:
 
499
                                        bool(client[key])
 
500
                                        if isinstance(client[key],
 
501
                                                      dbus.Boolean)
 
502
                                        else client[key]
 
503
                                        for key in keywords}
 
504
                       for client in clients.values()},
 
505
                      fp=sys.stdout, indent=4,
 
506
                      separators=(',', ': '))
 
507
            print()
 
508
        else:
 
509
            print(TableOfClients(clients.values(), keywords))
403
510
    else:
404
511
        # Process each client in the list by all selected options
405
512
        for client in clients:
 
513
 
406
514
            def set_client_prop(prop, value):
407
515
                """Set a Client D-Bus property"""
408
516
                client.Set(client_interface, prop, value,
409
517
                           dbus_interface=dbus.PROPERTIES_IFACE)
 
518
 
410
519
            def set_client_prop_ms(prop, value):
411
520
                """Set a Client D-Bus property, converted
412
521
                from a string to milliseconds."""
413
522
                set_client_prop(prop,
414
 
                                timedelta_to_milliseconds
415
 
                                (string_to_delta(value)))
 
523
                                string_to_delta(value).total_seconds()
 
524
                                * 1000)
 
525
 
416
526
            if options.remove:
417
527
                mandos_serv.RemoveClient(client.__dbus_object_path__)
418
528
            if options.enable:
426
536
            if options.stop_checker:
427
537
                set_client_prop("CheckerRunning", dbus.Boolean(False))
428
538
            if options.is_enabled:
429
 
                sys.exit(0 if client.Get(client_interface,
430
 
                                         "Enabled",
431
 
                                         dbus_interface=
432
 
                                         dbus.PROPERTIES_IFACE)
433
 
                         else 1)
 
539
                if client.Get(client_interface, "Enabled",
 
540
                              dbus_interface=dbus.PROPERTIES_IFACE):
 
541
                    sys.exit(0)
 
542
                else:
 
543
                    sys.exit(1)
434
544
            if options.checker is not None:
435
545
                set_client_prop("Checker", options.checker)
436
546
            if options.host is not None:
462
572
                client.Approve(dbus.Boolean(False),
463
573
                               dbus_interface=client_interface)
464
574
 
 
575
 
 
576
class Test_milliseconds_to_string(unittest.TestCase):
 
577
    def test_all(self):
 
578
        self.assertEqual(milliseconds_to_string(93785000),
 
579
                         "1T02:03:05")
 
580
    def test_no_days(self):
 
581
        self.assertEqual(milliseconds_to_string(7385000), "02:03:05")
 
582
    def test_all_zero(self):
 
583
        self.assertEqual(milliseconds_to_string(0), "00:00:00")
 
584
    def test_no_fractional_seconds(self):
 
585
        self.assertEqual(milliseconds_to_string(400), "00:00:00")
 
586
        self.assertEqual(milliseconds_to_string(900), "00:00:00")
 
587
        self.assertEqual(milliseconds_to_string(1900), "00:00:01")
 
588
 
 
589
class Test_string_to_delta(unittest.TestCase):
 
590
    def test_handles_basic_rfc3339(self):
 
591
        self.assertEqual(string_to_delta("PT2H"),
 
592
                         datetime.timedelta(0, 7200))
 
593
    def test_falls_back_to_pre_1_6_1_with_warning(self):
 
594
        # assertLogs only exists in Python 3.4
 
595
        if hasattr(self, "assertLogs"):
 
596
            with self.assertLogs(log, logging.WARNING):
 
597
                value = string_to_delta("2h")
 
598
        else:
 
599
            value = string_to_delta("2h")
 
600
        self.assertEqual(value, datetime.timedelta(0, 7200))
 
601
 
 
602
class Test_TableOfClients(unittest.TestCase):
 
603
    def setUp(self):
 
604
        self.tablewords = {
 
605
            "Attr1": "X",
 
606
            "AttrTwo": "Yy",
 
607
            "AttrThree": "Zzz",
 
608
            "Bool": "A D-BUS Boolean",
 
609
            "NonDbusBoolean": "A Non-D-BUS Boolean",
 
610
            "Integer": "An Integer",
 
611
            "Timeout": "Timedelta 1",
 
612
            "Interval": "Timedelta 2",
 
613
            "ApprovalDelay": "Timedelta 3",
 
614
            "ApprovalDuration": "Timedelta 4",
 
615
            "ExtendedTimeout": "Timedelta 5",
 
616
            "String": "A String",
 
617
        }
 
618
        self.keywords = ["Attr1", "AttrTwo"]
 
619
        self.clients = [
 
620
            {
 
621
                "Attr1": "x1",
 
622
                "AttrTwo": "y1",
 
623
                "AttrThree": "z1",
 
624
                "Bool": dbus.Boolean(False),
 
625
                "NonDbusBoolean": False,
 
626
                "Integer": 0,
 
627
                "Timeout": 0,
 
628
                "Interval": 1000,
 
629
                "ApprovalDelay": 2000,
 
630
                "ApprovalDuration": 3000,
 
631
                "ExtendedTimeout": 4000,
 
632
                "String": "",
 
633
            },
 
634
            {
 
635
                "Attr1": "x2",
 
636
                "AttrTwo": "y2",
 
637
                "AttrThree": "z2",
 
638
                "Bool": dbus.Boolean(True),
 
639
                "NonDbusBoolean": True,
 
640
                "Integer": 1,
 
641
                "Timeout": 93785000,
 
642
                "Interval": 93786000,
 
643
                "ApprovalDelay": 93787000,
 
644
                "ApprovalDuration": 93788000,
 
645
                "ExtendedTimeout": 93789000,
 
646
                "String": "A huge string which will not fit," * 10,
 
647
            },
 
648
        ]
 
649
    def test_short_header(self):
 
650
        text = str(TableOfClients(self.clients, self.keywords,
 
651
                                  self.tablewords))
 
652
        expected_text = """
 
653
X  Yy
 
654
x1 y1
 
655
x2 y2
 
656
"""[1:-1]
 
657
        self.assertEqual(text, expected_text)
 
658
    def test_booleans(self):
 
659
        keywords = ["Bool", "NonDbusBoolean"]
 
660
        text = str(TableOfClients(self.clients, keywords,
 
661
                                  self.tablewords))
 
662
        expected_text = """
 
663
A D-BUS Boolean A Non-D-BUS Boolean
 
664
No              False              
 
665
Yes             True               
 
666
"""[1:-1]
 
667
        self.assertEqual(text, expected_text)
 
668
    def test_milliseconds_detection(self):
 
669
        keywords = ["Integer", "Timeout", "Interval", "ApprovalDelay",
 
670
                    "ApprovalDuration", "ExtendedTimeout"]
 
671
        text = str(TableOfClients(self.clients, keywords,
 
672
                                  self.tablewords))
 
673
        expected_text = """
 
674
An Integer Timedelta 1 Timedelta 2 Timedelta 3 Timedelta 4 Timedelta 5
 
675
0          00:00:00    00:00:01    00:00:02    00:00:03    00:00:04   
 
676
1          1T02:03:05  1T02:03:06  1T02:03:07  1T02:03:08  1T02:03:09 
 
677
"""[1:-1]
 
678
        self.assertEqual(text, expected_text)
 
679
    def test_empty_and_long_string_values(self):
 
680
        keywords = ["String"]
 
681
        text = str(TableOfClients(self.clients, keywords,
 
682
                                  self.tablewords))
 
683
        expected_text = """
 
684
A String                                                                                                                                                                                                                                                                                                                                  
 
685
                                                                                                                                                                                                                                                                                                                                          
 
686
A huge string which will not fit,A huge string which will not fit,A huge string which will not fit,A huge string which will not fit,A huge string which will not fit,A huge string which will not fit,A huge string which will not fit,A huge string which will not fit,A huge string which will not fit,A huge string which will not fit,
 
687
"""[1:-1]
 
688
        self.assertEqual(text, expected_text)
 
689
 
 
690
 
 
691
 
 
692
def should_only_run_tests():
 
693
    parser = argparse.ArgumentParser(add_help=False)
 
694
    parser.add_argument("--check", action='store_true')
 
695
    args, unknown_args = parser.parse_known_args()
 
696
    run_tests = args.check
 
697
    if run_tests:
 
698
        # Remove --check argument from sys.argv
 
699
        sys.argv[1:] = unknown_args
 
700
    return run_tests
 
701
 
 
702
# Add all tests from doctest strings
 
703
def load_tests(loader, tests, none):
 
704
    import doctest
 
705
    tests.addTests(doctest.DocTestSuite())
 
706
    return tests
 
707
 
465
708
if __name__ == "__main__":
466
 
    main()
 
709
    if should_only_run_tests():
 
710
        # Call using ./tdd-python-script --check [--verbose]
 
711
        unittest.main()
 
712
    else:
 
713
        main()