shell bypass 403

UnknownSec Shell

: /sbin/ [ dr-xr-xr-x ]

name : nfsdclddb
#!/usr/libexec/platform-python
"""Tool for manipulating the nfsdcld sqlite database
"""

__copyright__ = """
Copyright (C) 2019 Scott Mayhew <smayhew@redhat.com>

This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.

This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
GNU General Public License for more details.

You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
MA  02110-1301, USA.
"""

import argparse
import os
import sqlite3
import sys


class CldDb():
    def __init__(self, path):
        self.con = sqlite3.connect(path)
        self.con.row_factory = sqlite3.Row
        for row in self.con.execute('select value from parameters '
                                    'where key = "version"'):
            self.version = int(row['value'])
        for row in self.con.execute('select * from grace'):
            self.current = int(row['current'])
            self.recovery = int(row['recovery'])

    def __del__(self):
        self.con.close()

    def __str__(self):
        return ('Schema version: {self.version} '
                'current epoch: {self.current} '
                'recovery epoch: {self.recovery}'.format(self=self))

    def _print_clients(self, epoch):
        if epoch:
            for row in self.con.execute('select * from "rec-{:016x}"'
                                        .format(epoch)):
                if self.version >= 4:
                    if row['princhash'] is not None:
                        princhash = row['princhash'].hex()
                    else:
                        princhash = "(null)"
                    print('id = {}, princhash = {}'
                          .format(row['id'].decode(), princhash))
                else:
                    print('id = {}'.format(row['id'].decode()))

    def print_current_clients(self):
        print('Clients in current epoch:')
        self._print_clients(self.current)

    def print_recovery_clients(self):
        if self.recovery:
            print('Clients in recovery epoch:')
            self._print_clients(self.recovery)

    def check_bad_table_names(self):
        bad_names = []
        for row in self.con.execute('select name from sqlite_master '
                                    'where type = "table" '
                                    'and name like "%rec-%" '
                                    'and length(name) < 20'):
            bad_names.append(row['name'])
        return bad_names

    def fix_bad_table_names(self):
        try:
            self.con.execute('begin exclusive transaction')
            bad_names = self.check_bad_table_names()
            for bad_name in bad_names:
                epoch = int(bad_name.split('-')[1], base=16)
                if epoch == self.current or epoch == self.recovery:
                    if epoch == self.current:
                        which = 'current'
                    else:
                        which = 'recovery'
                    print('found invalid table name {} for {} epoch'
                          .format(bad_name, which))
                    self.con.execute('alter table "{}" '
                                     'rename to "rec-{:016x}"'
                                     .format(bad_name, epoch))
                    print('renamed to rec-{:016x}'.format(epoch))
                else:
                    print('found invalid table name {} for unknown epoch {}'
                          .format(bad_name, epoch))
                    self.con.execute('drop table "{}"'.format(bad_name))
                    print('dropped table {}'.format(bad_name))
        except sqlite3.Error:
            self.con.rollback()
        else:
            self.con.commit()

    def has_princ_data(self):
        if self.version < 4:
            return False
        for row in self.con.execute('select count(*) '
                                    'from "rec-{:016x}" '
                                    'where princhash not null'
                                    .format(self.current)):
            count = row[0]
        if self.recovery:
            for row in self.con.execute('select count(*) '
                                        'from "rec-{:016x}" '
                                        'where princhash not null'
                                        .format(self.current)):
                count = count + row[0]
        if count:
            return True
        return False

    def _downgrade_table_v4_to_v3(self, epoch):
        if not self.con.in_transaction:
            raise sqlite3.Error
        try:
            self.con.execute('create table "new_rec-{:016x}" '
                             '(id blob primary key)'.format(epoch))
            self.con.execute('insert into "new_rec-{:016x}" '
                             'select id from "rec-{:016x}"'
                             .format(epoch, epoch))
            self.con.execute('drop table "rec-{:016x}"'.format(epoch))
            self.con.execute('alter table "new_rec-{:016x}" '
                             'rename to "rec-{:016x}"'
                             .format(epoch, epoch))
        except sqlite3.Error:
            raise

    def downgrade_schema_v4_to_v3(self):
        try:
            self.con.execute('begin exclusive transaction')
            for row in self.con.execute('select value from parameters '
                                        'where key = "version"'):
                version = int(row['value'])
            if version != self.version:
                raise sqlite3.Error
            for row in self.con.execute('select * from grace'):
                current = int(row['current'])
                recovery = int(row['recovery'])
            if current != self.current:
                raise sqlite3.Error
            if recovery != self.recovery:
                raise sqlite3.Error
            self._downgrade_table_v4_to_v3(current)
            if recovery:
                self._downgrade_table_v4_to_v3(recovery)
            self.con.execute('update parameters '
                             'set value = "3" '
                             'where key = "version"')
            self.version = 3
        except sqlite3.Error:
            self.con.rollback()
            print('Downgrade failed')
        else:
            self.con.commit()
            print('Downgrade successful')


def nfsdcld_active():
    rc = os.system('ps -C nfsdcld >/dev/null 2>/dev/null')
    if rc == 0:
        return True
    return False


def fix_table_names_command(db, args):
    if nfsdcld_active():
        print('Warning: nfsdcld is running!')
        ans = input('Continue? ')
        if ans.lower() not in ['y', 'yes']:
            print('Operation canceled.')
            return
    bad_names = db.check_bad_table_names()
    if not bad_names:
        print('No invalid table names found.')
        return
    db.fix_bad_table_names()


def downgrade_schema_command(db, args):
    if nfsdcld_active():
        print('Warning: nfsdcld is running!')
        ans = input('Continue? ')
        if ans.lower() not in ['y', 'yes']:
            print('Operation canceled')
            return
    if db.version != 4:
        print('Cannot downgrade database from schema version {}.'
              .format(db.version))
        return
    if args.version != 3:
        print('Cannot downgrade to version {}.'.format(args.version))
        return
    bad_names = db.check_bad_table_names()
    if bad_names:
        print('Invalid table names detected.')
        print('Please run "{} fix-table-names" before downgrading the schema.'
              .format(sys.argv[0]))
        return
    if db.has_princ_data():
        print('Warning: database has principal data, which will be erased.')
        ans = input('Continue? ')
        if ans.lower() not in ['y', 'yes']:
            print('Operation canceled')
            return
    db.downgrade_schema_v4_to_v3()


def print_command(db, args):
    print(str(db))
    if not args.summary:
        bad_names = db.check_bad_table_names()
        if bad_names:
            print('Invalid table names detected.')
            print('Please run "{} fix-table-names".'.format(sys.argv[0]))
            return
        db.print_current_clients()
        db.print_recovery_clients()


def main():
    parser = argparse.ArgumentParser()
    parser.add_argument('-p', '--path',
                        default='/var/lib/nfs/nfsdcld/main.sqlite',
                        help='path to the database '
                        '(default: /var/lib/nfs/nfsdcld/main.sqlite)')
    subparsers = parser.add_subparsers(help='sub-command help')
    fix_parser = subparsers.add_parser('fix-table-names',
                                       help='fix invalid table names')
    fix_parser.set_defaults(func=fix_table_names_command)
    downgrade_parser = subparsers.add_parser('downgrade-schema',
                                             help='downgrade database schema')
    downgrade_parser.add_argument('-v', '--version', type=int, choices=[3],
                                  default=3,
                                  help='version to downgrade to')
    downgrade_parser.set_defaults(func=downgrade_schema_command)
    print_parser = subparsers.add_parser('print',
                                         help='print database info')
    print_parser.add_argument('-s', '--summary', default=False,
                              action='store_true',
                              help='print summary only')
    print_parser.set_defaults(func=print_command)
    args = parser.parse_args()
    if not os.path.exists(args.path):
        return parser.print_usage()
    clddb = CldDb(args.path)
    return args.func(clddb, args)


if __name__ == '__main__':
    if len(sys.argv) == 1:
        sys.argv.extend(['print', '--summary'])
    main()

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Digital Photography | Anyleson - Learning Platform
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Digital Photography

Digital Photography

in Design
Created by Waplia
3 Users are following this upcoming course

What you will learn?

How to hold your camera correctly, which helps you to get sharp photos every time.

Which lenses to use for which photos, so that you can best capture a specific subject or scene.

Why and when you should support your camera on tripods and bean bags.

How to take photos in diffused light on overcast days.

Course description

This course is divided into two broad components: first, we cover all the technical aspects, like camera equipment and support, as well as the camera's most important settings. After that we look at the artistic side of photography, which focuses on light, composition, and creativity.


It has been structured in such a way that you won't ever feel overwhelmed by technical jargon, complicated camera functions or obscure principles. The aim is to keep everything as clear and simple as possible, and this was achieved by tackling each important photographic element separately in short and concise lectures that last between 2 and 5 minutes each. The majority of lectures consist of both teacher-style video clips (where I explain a setting, principle or tip) and slides, both of which contain photographic examples and audio (where I interpret each photographic example).

Requirements

You need a Canon or Nikon DSLR camera (the kind that has interchangable lenses) - any model will do.

You don't need any prior photographic experience.

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