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ca971bbfd8
This patch changes the top-level directory layout as a preparatory step for improving the tools for managing 3rd-party source codes. The rationale is described in the issue referenced below. Issue #1082
243 lines
6.8 KiB
C++
243 lines
6.8 KiB
C++
/*
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* \brief Proxy-ARP session and root component
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* \author Stefan Kalkowski
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* \date 2010-08-18
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*/
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/*
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* Copyright (C) 2010-2013 Genode Labs GmbH
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*
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* This file is part of the Genode OS framework, which is distributed
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* under the terms of the GNU General Public License version 2.
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*/
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#ifndef _COMPONENT_H_
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#define _COMPONENT_H_
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/* Genode */
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#include <base/lock.h>
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#include <root/component.h>
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#include <util/arg_string.h>
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#include <nic/packet_allocator.h>
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#include <nic_session/rpc_object.h>
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#include <nic_session/connection.h>
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#include <net/ipv4.h>
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#include <base/allocator_guard.h>
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#include <os/session_policy.h>
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#include "address_node.h"
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#include "mac.h"
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#include "packet_handler.h"
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namespace Net {
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/**
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* Helper class.
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*
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*/
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class Guarded_range_allocator
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{
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private:
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Genode::Allocator_guard _guarded_alloc;
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::Nic::Packet_allocator _range_alloc;
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public:
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Guarded_range_allocator(Genode::Allocator *backing_store,
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Genode::size_t amount)
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: _guarded_alloc(backing_store, amount),
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_range_alloc(&_guarded_alloc) {}
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Genode::Allocator_guard *guarded_allocator() {
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return &_guarded_alloc; }
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Genode::Range_allocator *range_allocator() {
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return static_cast<Genode::Range_allocator *>(&_range_alloc); }
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};
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class Communication_buffer : Genode::Ram_dataspace_capability
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{
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public:
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Communication_buffer(Genode::size_t size)
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: Genode::Ram_dataspace_capability(Genode::env()->ram_session()->alloc(size))
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{ }
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~Communication_buffer() { Genode::env()->ram_session()->free(*this); }
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Genode::Dataspace_capability dataspace() { return *this; }
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};
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class Tx_rx_communication_buffers
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{
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private:
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Communication_buffer _tx_buf, _rx_buf;
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public:
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Tx_rx_communication_buffers(Genode::size_t tx_size,
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Genode::size_t rx_size)
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: _tx_buf(tx_size), _rx_buf(rx_size) { }
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Genode::Dataspace_capability tx_ds() { return _tx_buf.dataspace(); }
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Genode::Dataspace_capability rx_ds() { return _rx_buf.dataspace(); }
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};
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/**
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* Nic-session component class
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*
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* We must inherit here from Guarded_range_allocator, although aggregation
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* would be more convinient, because the range-allocator needs to be initialized
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* before base-class Session_rpc_object.
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*/
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class Session_component : public Guarded_range_allocator,
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private Tx_rx_communication_buffers,
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public ::Nic::Session_rpc_object,
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public Packet_handler
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{
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private:
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Mac_address_node _mac_node;
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Ipv4_address_node *_ipv4_node;
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void _free_ipv4_node();
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public:
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/**
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* Constructor
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*
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* \param allocator backing store for guarded allocator
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* \param amount amount of memory managed by guarded allocator
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* \param tx_buf_size buffer size for tx channel
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* \param rx_buf_size buffer size for rx channel
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* \param vmac virtual mac address
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* \param ep entry point used for packet stream
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*/
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Session_component(Genode::Allocator *allocator,
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Genode::size_t amount,
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Genode::size_t tx_buf_size,
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Genode::size_t rx_buf_size,
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Ethernet_frame::Mac_address vmac,
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Genode::Rpc_entrypoint &ep,
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char *ip_addr = 0);
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~Session_component();
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::Nic::Mac_address mac_address()
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{
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::Nic::Mac_address m;
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Mac_address_node::Address mac = _mac_node.addr();
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Genode::memcpy(&m, mac.addr, sizeof(m.addr));
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return m;
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}
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void set_ipv4_address(Ipv4_packet::Ipv4_address ip_addr);
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/******************************
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** Packet_handler interface **
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******************************/
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Packet_stream_sink< ::Nic::Session::Policy> * sink() {
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return _tx.sink(); }
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Packet_stream_source< ::Nic::Session::Policy> * source() {
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return _rx.source(); }
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bool handle_arp(Ethernet_frame *eth, Genode::size_t size);
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bool handle_ip(Ethernet_frame *eth, Genode::size_t size);
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void finalize_packet(Ethernet_frame *eth, Genode::size_t size);
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};
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/*
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* Root component, handling new session requests.
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*/
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class Root : public Genode::Root_component<Session_component>
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{
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private:
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enum { verbose = 1 };
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Mac_allocator _mac_alloc;
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Genode::Rpc_entrypoint &_ep;
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protected:
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enum { MAX_IP_ADDR_LENGTH = 16, };
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char ip_addr[MAX_IP_ADDR_LENGTH];
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Session_component *_create_session(const char *args)
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{
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using namespace Genode;
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memset(ip_addr, 0, MAX_IP_ADDR_LENGTH);
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try {
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Session_label label(args);
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Session_policy policy(label);
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policy.attribute("ip_addr").value(ip_addr, sizeof(ip_addr));
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if (verbose) PLOG("policy: %s ip_addr = %s", label.string(), ip_addr);
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} catch (Xml_node::Nonexistent_attribute) {
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if (verbose) PLOG("Missing \"ip_addr\" attribute in policy definition");
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} catch (Session_policy::No_policy_defined) {
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if (verbose) PLOG("Invalid session request, no matching policy");;
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}
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size_t ram_quota =
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Arg_string::find_arg(args, "ram_quota" ).ulong_value(0);
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size_t tx_buf_size =
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Arg_string::find_arg(args, "tx_buf_size").ulong_value(0);
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size_t rx_buf_size =
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Arg_string::find_arg(args, "rx_buf_size").ulong_value(0);
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/* delete ram quota by the memory needed for the session */
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size_t session_size = max((size_t)4096, sizeof(Session_component));
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if (ram_quota < session_size)
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throw Root::Quota_exceeded();
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/*
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* Check if donated ram quota suffices for both
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* communication buffers. Also check both sizes separately
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* to handle a possible overflow of the sum of both sizes.
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*/
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if (tx_buf_size > ram_quota - session_size
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|| rx_buf_size > ram_quota - session_size
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|| tx_buf_size + rx_buf_size > ram_quota - session_size) {
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PERR("insufficient 'ram_quota', got %zd, need %zd",
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ram_quota, tx_buf_size + rx_buf_size + session_size);
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throw Root::Quota_exceeded();
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}
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try {
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return new (md_alloc()) Session_component(env()->heap(),
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ram_quota - session_size,
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tx_buf_size,
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rx_buf_size,
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_mac_alloc.alloc(),
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_ep,
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ip_addr);
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} catch(Mac_allocator::Alloc_failed) {
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PWRN("Mac address allocation failed!");
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return (Session_component*) 0;
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}
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}
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public:
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Root(Genode::Rpc_entrypoint *session_ep,
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Genode::Allocator *md_alloc)
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: Genode::Root_component<Session_component>(session_ep, md_alloc),
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_ep(*session_ep) { }
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};
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} /* namespace Net */
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#endif /* _COMPONENT_H_ */
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