0ca199f89a
As far as possible remove usage of warning/error/log in the kernel, otherwise the kernel context might try to take a lock hold by a core thread, which results in a syscall to block. Fix #3277
261 lines
5.6 KiB
C++
261 lines
5.6 KiB
C++
/*
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* \brief Backend for end points of synchronous interprocess communication
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* \author Martin Stein
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* \author Stefan Kalkowski
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* \date 2012-11-30
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*/
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/*
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* Copyright (C) 2012-2019 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 Affero General Public License version 3.
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*/
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/* Genode includes */
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#include <util/string.h>
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/* base-internal includes */
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#include <base/internal/native_utcb.h>
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/* core includes */
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#include <platform_pd.h>
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#include <kernel/ipc_node.h>
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#include <kernel/pd.h>
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#include <kernel/kernel.h>
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#include <kernel/thread.h>
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using namespace Kernel;
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static inline void free_obj_id_ref(Pd &pd, void *ptr)
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{
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pd.platform_pd().capability_slab().free(ptr, sizeof(Object_identity_reference));
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}
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void Ipc_node::copy_msg(Ipc_node &sender)
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{
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using namespace Genode;
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using Reference = Object_identity_reference;
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/* copy payload and set destination capability id */
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*_utcb = *sender._utcb;
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_utcb->destination(sender._capid);
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/* translate capabilities */
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for (unsigned i = 0; i < _rcv_caps; i++) {
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capid_t id = sender._utcb->cap_get(i);
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/* if there is no capability to send, just free the pre-allocation */
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if (i >= sender._utcb->cap_cnt()) {
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free_obj_id_ref(pd(), _obj_id_ref_ptr[i]);
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continue;
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}
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/* lookup the capability id within the caller's cap space */
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Reference *oir = (id == cap_id_invalid())
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? nullptr : sender.pd().cap_tree().find(id);
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/* if the caller's capability is invalid, free the pre-allocation */
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if (!oir) {
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_utcb->cap_add(cap_id_invalid());
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free_obj_id_ref(pd(), _obj_id_ref_ptr[i]);
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continue;
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}
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/* lookup the capability id within the callee's cap space */
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Reference *dst_oir = oir->find(pd());
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/* if it is not found, and the target is not core, create a reference */
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if (!dst_oir && (&pd() != &core_pd())) {
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dst_oir = oir->factory(_obj_id_ref_ptr[i], pd());
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if (!dst_oir)
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free_obj_id_ref(pd(), _obj_id_ref_ptr[i]);
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} else /* otherwise free the pre-allocation */
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free_obj_id_ref(pd(), _obj_id_ref_ptr[i]);
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if (dst_oir) dst_oir->add_to_utcb();
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/* add the translated capability id to the target buffer */
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_utcb->cap_add(dst_oir ? dst_oir->capid() : cap_id_invalid());
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}
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}
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void Ipc_node::_receive_request(Ipc_node &caller)
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{
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copy_msg(caller);
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_caller = &caller;
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_state = INACTIVE;
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}
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void Ipc_node::_receive_reply(Ipc_node &callee)
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{
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copy_msg(callee);
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_state = INACTIVE;
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_send_request_succeeded();
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}
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void Ipc_node::_announce_request(Ipc_node &node)
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{
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/* directly receive request if we've awaited it */
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if (_state == AWAIT_REQUEST) {
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_receive_request(node);
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_await_request_succeeded();
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return;
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}
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/* cannot receive yet, so queue request */
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_request_queue.enqueue(node);
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}
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void Ipc_node::_cancel_request_queue()
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{
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_request_queue.dequeue_all([] (Ipc_node &node) {
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node._outbuf_request_cancelled(); });
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}
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void Ipc_node::_cancel_outbuf_request()
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{
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if (_callee) {
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_callee->_announced_request_cancelled(*this);
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_callee = nullptr;
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}
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}
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void Ipc_node::_cancel_inbuf_request()
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{
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if (_caller) {
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_caller->_outbuf_request_cancelled();
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_caller = nullptr;
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}
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}
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void Ipc_node::_announced_request_cancelled(Ipc_node &node)
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{
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if (_caller == &node) _caller = nullptr;
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else _request_queue.remove(node);
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}
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void Ipc_node::_outbuf_request_cancelled()
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{
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if (_callee == nullptr) return;
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_callee = nullptr;
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_state = INACTIVE;
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_send_request_failed();
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}
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bool Ipc_node::_helps_outbuf_dst() { return (_state == AWAIT_REPLY) && _help; }
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void Ipc_node::_init(Genode::Native_utcb &utcb, Ipc_node &starter)
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{
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_utcb = &utcb;
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_rcv_caps = starter._utcb->cap_cnt();
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Genode::Allocator &slab = pd().platform_pd().capability_slab();
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for (unsigned i = 0; i < _rcv_caps; i++)
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_obj_id_ref_ptr[i] = slab.alloc(sizeof(Object_identity_reference));
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copy_msg(starter);
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}
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void Ipc_node::send_request(Ipc_node &callee, capid_t capid, bool help,
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unsigned rcv_caps)
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{
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if (_state != INACTIVE) {
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Genode::raw("IPC send request: bad state");
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return;
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}
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Genode::Allocator &slab = pd().platform_pd().capability_slab();
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for (unsigned i = 0; i < rcv_caps; i++)
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_obj_id_ref_ptr[i] = slab.alloc(sizeof(Object_identity_reference));
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_state = AWAIT_REPLY;
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_callee = &callee;
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_capid = capid;
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_help = false;
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_rcv_caps = rcv_caps;
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/* announce request */
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_callee->_announce_request(*this);
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_help = help;
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}
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Ipc_node * Ipc_node::helping_sink() {
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return _helps_outbuf_dst() ? _callee->helping_sink() : this; }
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bool Ipc_node::await_request(unsigned rcv_caps)
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{
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if (_state != INACTIVE) {
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Genode::raw("IPC await request: bad state");
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return true;
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}
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Genode::Allocator &slab = pd().platform_pd().capability_slab();
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for (unsigned i = 0; i < rcv_caps; i++)
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_obj_id_ref_ptr[i] = slab.alloc(sizeof(Object_identity_reference));
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_rcv_caps = rcv_caps;
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/* if no request announced then wait */
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bool announced = false;
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_state = AWAIT_REQUEST;
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/* if anybody already announced a request receive it */
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_request_queue.dequeue([&] (Ipc_node &ipc) {
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_receive_request(ipc);
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announced = true;
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});
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return announced;
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}
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void Ipc_node::send_reply()
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{
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/* reply to the last request if we have to */
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if (_state == INACTIVE && _caller) {
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_caller->_receive_reply(*this);
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_caller = nullptr;
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}
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}
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void Ipc_node::cancel_waiting()
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{
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switch (_state) {
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case AWAIT_REPLY:
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_cancel_outbuf_request();
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_state = INACTIVE;
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_send_request_failed();
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break;
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case AWAIT_REQUEST:
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_state = INACTIVE;
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_await_request_failed();
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break;
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return;
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default: return;
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}
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}
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Ipc_node::~Ipc_node()
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{
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_cancel_request_queue();
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_cancel_inbuf_request();
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_cancel_outbuf_request();
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}
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