Current File : //lib64/python2.7/multiprocessing/reduction.py
#
# Module to allow connection and socket objects to be transferred
# between processes
#
# multiprocessing/reduction.py
#
# Copyright (c) 2006-2008, R Oudkerk
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions
# are met:
#
# 1. Redistributions of source code must retain the above copyright
#    notice, this list of conditions and the following disclaimer.
# 2. Redistributions in binary form must reproduce the above copyright
#    notice, this list of conditions and the following disclaimer in the
#    documentation and/or other materials provided with the distribution.
# 3. Neither the name of author nor the names of any contributors may be
#    used to endorse or promote products derived from this software
#    without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS "AS IS" AND
# ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
# FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
# DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
# OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
# HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
# LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
# OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
# SUCH DAMAGE.
#

__all__ = []

import os
import sys
import socket
import threading

import _multiprocessing
from multiprocessing import current_process
from multiprocessing.forking import Popen, duplicate, close, ForkingPickler
from multiprocessing.util import register_after_fork, debug, sub_debug
from multiprocessing.connection import Client, Listener


#
#
#

if not(sys.platform == 'win32' or hasattr(_multiprocessing, 'recvfd')):
    raise ImportError('pickling of connections not supported')

#
# Platform specific definitions
#

if sys.platform == 'win32':
    import _subprocess
    from _multiprocessing import win32

    def send_handle(conn, handle, destination_pid):
        process_handle = win32.OpenProcess(
            win32.PROCESS_ALL_ACCESS, False, destination_pid
            )
        try:
            new_handle = duplicate(handle, process_handle)
            conn.send(new_handle)
        finally:
            close(process_handle)

    def recv_handle(conn):
        return conn.recv()

else:
    def send_handle(conn, handle, destination_pid):
        _multiprocessing.sendfd(conn.fileno(), handle)

    def recv_handle(conn):
        return _multiprocessing.recvfd(conn.fileno())

#
# Support for a per-process server thread which caches pickled handles
#

_cache = set()

def _reset(obj):
    global _lock, _listener, _cache
    for h in _cache:
        close(h)
    _cache.clear()
    _lock = threading.Lock()
    _listener = None

_reset(None)
register_after_fork(_reset, _reset)

def _get_listener():
    global _listener

    if _listener is None:
        _lock.acquire()
        try:
            if _listener is None:
                debug('starting listener and thread for sending handles')
                _listener = Listener(authkey=current_process().authkey)
                t = threading.Thread(target=_serve)
                t.daemon = True
                t.start()
        finally:
            _lock.release()

    return _listener

def _serve():
    from .util import is_exiting, sub_warning

    while 1:
        try:
            conn = _listener.accept()
            handle_wanted, destination_pid = conn.recv()
            _cache.remove(handle_wanted)
            send_handle(conn, handle_wanted, destination_pid)
            close(handle_wanted)
            conn.close()
        except:
            if not is_exiting():
                import traceback
                sub_warning(
                    'thread for sharing handles raised exception :\n' +
                    '-'*79 + '\n' + traceback.format_exc() + '-'*79
                    )

#
# Functions to be used for pickling/unpickling objects with handles
#

def reduce_handle(handle):
    if Popen.thread_is_spawning():
        return (None, Popen.duplicate_for_child(handle), True)
    dup_handle = duplicate(handle)
    _cache.add(dup_handle)
    sub_debug('reducing handle %d', handle)
    return (_get_listener().address, dup_handle, False)

def rebuild_handle(pickled_data):
    address, handle, inherited = pickled_data
    if inherited:
        return handle
    sub_debug('rebuilding handle %d', handle)
    conn = Client(address, authkey=current_process().authkey)
    conn.send((handle, os.getpid()))
    new_handle = recv_handle(conn)
    conn.close()
    return new_handle

#
# Register `_multiprocessing.Connection` with `ForkingPickler`
#

def reduce_connection(conn):
    rh = reduce_handle(conn.fileno())
    return rebuild_connection, (rh, conn.readable, conn.writable)

def rebuild_connection(reduced_handle, readable, writable):
    handle = rebuild_handle(reduced_handle)
    return _multiprocessing.Connection(
        handle, readable=readable, writable=writable
        )

ForkingPickler.register(_multiprocessing.Connection, reduce_connection)

#
# Register `socket.socket` with `ForkingPickler`
#

def fromfd(fd, family, type_, proto=0):
    s = socket.fromfd(fd, family, type_, proto)
    if s.__class__ is not socket.socket:
        s = socket.socket(_sock=s)
    return s

def reduce_socket(s):
    reduced_handle = reduce_handle(s.fileno())
    return rebuild_socket, (reduced_handle, s.family, s.type, s.proto)

def rebuild_socket(reduced_handle, family, type_, proto):
    fd = rebuild_handle(reduced_handle)
    _sock = fromfd(fd, family, type_, proto)
    close(fd)
    return _sock

ForkingPickler.register(socket.socket, reduce_socket)

#
# Register `_multiprocessing.PipeConnection` with `ForkingPickler`
#

if sys.platform == 'win32':

    def reduce_pipe_connection(conn):
        rh = reduce_handle(conn.fileno())
        return rebuild_pipe_connection, (rh, conn.readable, conn.writable)

    def rebuild_pipe_connection(reduced_handle, readable, writable):
        handle = rebuild_handle(reduced_handle)
        return _multiprocessing.PipeConnection(
            handle, readable=readable, writable=writable
            )

    ForkingPickler.register(_multiprocessing.PipeConnection, reduce_pipe_connection)
BDM Cricket India: tips, teams, tournaments

Recent Posts

Mostbet: O Web-site Oficial Da Líder Em Apostas Esportivas

Faça O Logon E Jogue Online Content Posso Visitar O Login Mostbet Por Meio Do Aplicativo? Qual É O Código Promocional Mostbet? Resultados” “E Estatísticas Dos Jogos Métodos De Pagamento Mostbet Zero Brasil Como Apostar Em Esportes Com Mostbet? Vale A Pena Apostar Simply No Mostbet?” Quem É O Dono …

Read More »

Meilleur Casino en Ligne 2025 – Top 10 des Casinos Fiables.10897

Meilleur Casino en Ligne 2025 – Top 10 des Casinos Fiables ▶️ JOUER Содержимое Les Critères de Sélection Les Meilleurs Casinos en Ligne 2025 Les casinos en ligne sont devenus très populaires ces dernières années, offrant une expérience de jeu en ligne sécurisée et amusante. Mais avec tant de choix, …

Read More »

Fortune Tiger Jogo de Cassino.258

Fortune Tiger Jogo de Cassino ▶️ JOGAR Содержимое O que é o Jogo de Cassino Fortune Tiger? Características Únicas do Jogo de Cassino Fortune Tiger Características Únicas do Jogo de Cassino Fortune Tiger Características do Jogo Como Funciona o Jogo de Cassino Fortune Tiger Benefícios do Jogo de Cassino Fortune …

Read More »

Casibom – casino giriş ve bahis sitesi.1792

Casibom – casino giriş ve bahis sitesi ▶️ OYNAMAK Содержимое Casibom’un Genel Özellikleri Yeni Kullanıcılar için 158 Giriş Güncel Giriş ve Kayıt İşlemleri Basit ve Kullanıcı dostu Arayüze Sahip Geniş Oyun Kataloğu Güvenilir ve Güvenli Casibom’da Oynanabilecek Oyunlar Casibom’da Güvenlik ve Yasal Durum Casibom’un Yasal Durumu Casibom’da Kayıt ve Para …

Read More »

CASHlib Casinos in Deutschland – Was bieten sie?

CASHlib Casinos gewinnen in Deutschland immer mehr an Bedeutung. Diese Casinos ermöglichen es Spielern, anonym und sicher mit Prepaid-Guthaben zu bezahlen – ganz ohne Bankverbindung oder Kreditkarte. Besonders für Nutzer, die auf Datenschutz und schnelle Transaktionen Wert legen, sind sie eine interessante Alternative.

Was bieten CASHlib Casinos?

  • Schnelle und anonyme Einzahlungen ohne Registrierung bei Drittanbietern
  • Breites Spielangebot von Slots bis zu Live-Dealer-Spielen
  • Regelmäßige Aktionen wie Freispiele und Cashback
  • Attraktive Willkommensboni für neue Spieler
  • EU-lizenzierte Anbieter mit hohen Sicherheitsstandards

Ein großer Vorteil von CASHlib ist, dass keine sensiblen Bankdaten im Casino hinterlegt werden müssen. Die Gutscheine sind online oder in vielen Verkaufsstellen erhältlich und können sofort verwendet werden. Dadurch entfällt auch die Notwendigkeit, persönliche Daten bei Einzahlungen preiszugeben – ein echter Pluspunkt für sicherheitsbewusste Spieler.

Viele spielothekgermany.com/de/spielothek/cashlib-casinos/ bieten zudem mobile Kompatibilität, einfache Menüführung und professionellen Spielerschutz. Wer nach einem unkomplizierten Zahlungsweg mit solider Auswahl an Spielen und Bonusangeboten sucht, wird bei diesen Plattformen fündig. Die Kombination aus Bequemlichkeit, Sicherheit und einem attraktiven Bonusangebot macht CASHlib Casinos zu einer beliebten Wahl für deutsche Nutzer.

slot 7