Change-Id: I6c6219732029d5a9db1d317c130086cf2d16a272 Reviewed-on: https://gem5-review.googlesource.com/c/public/gem5/+/25410 Reviewed-by: Bobby R. Bruce <bbruce@ucdavis.edu> Reviewed-by: Daniel Carvalho <odanrc@yahoo.com.br> Maintainer: Bobby R. Bruce <bbruce@ucdavis.edu> Tested-by: kokoro <noreply+kokoro@google.com>
240 lines
5.3 KiB
C++
240 lines
5.3 KiB
C++
/*
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* Copyright 2018 Google, Inc.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met: redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer;
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* redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution;
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* neither the name of the copyright holders nor the names of its
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* contributors may be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "systemc/core/channel.hh"
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#include "systemc/core/scheduler.hh"
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#include "systemc/ext/channel/messages.hh"
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#include "systemc/ext/core/sc_main.hh"
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#include "systemc/ext/core/sc_prim.hh"
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namespace sc_gem5
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{
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uint64_t getChangeStamp() { return scheduler.changeStamp(); }
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} // namespace sc_gem5
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namespace sc_core
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{
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sc_prim_channel::sc_prim_channel() : _gem5_channel(nullptr)
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{
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if (sc_is_running()) {
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SC_REPORT_ERROR(SC_ID_INSERT_PRIM_CHANNEL_, "simulation running");
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}
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if (::sc_gem5::scheduler.elaborationDone()) {
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SC_REPORT_ERROR(SC_ID_INSERT_PRIM_CHANNEL_, "elaboration done");
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}
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_gem5_channel = new sc_gem5::Channel(this);
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}
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sc_prim_channel::sc_prim_channel(const char *_name) :
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sc_object(_name), _gem5_channel(nullptr)
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{
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if (sc_is_running()) {
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SC_REPORT_ERROR(SC_ID_INSERT_PRIM_CHANNEL_, "simulation running");
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}
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if (::sc_gem5::scheduler.elaborationDone()) {
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SC_REPORT_ERROR(SC_ID_INSERT_PRIM_CHANNEL_, "elaboration done");
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}
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_gem5_channel = new sc_gem5::Channel(this);
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}
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sc_prim_channel::~sc_prim_channel() { delete _gem5_channel; }
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void
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sc_prim_channel::request_update()
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{
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_gem5_channel->requestUpdate();
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}
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void
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sc_prim_channel::async_request_update()
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{
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_gem5_channel->asyncRequestUpdate();
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}
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void
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sc_prim_channel::next_trigger()
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{
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::sc_core::next_trigger();
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}
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void
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sc_prim_channel::next_trigger(const sc_event &e)
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{
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::sc_core::next_trigger(e);
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}
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void
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sc_prim_channel::next_trigger(const sc_event_or_list &eol)
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{
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::sc_core::next_trigger(eol);
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}
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void
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sc_prim_channel::next_trigger(const sc_event_and_list &eal)
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{
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::sc_core::next_trigger(eal);
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}
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void
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sc_prim_channel::next_trigger(const sc_time &t)
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{
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::sc_core::next_trigger(t);
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}
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void
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sc_prim_channel::next_trigger(double d, sc_time_unit u)
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{
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::sc_core::next_trigger(d, u);
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}
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void
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sc_prim_channel::next_trigger(const sc_time &t, const sc_event &e)
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{
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::sc_core::next_trigger(t, e);
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}
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void
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sc_prim_channel::next_trigger(double d, sc_time_unit u, const sc_event &e)
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{
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::sc_core::next_trigger(d, u, e);
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}
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void
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sc_prim_channel::next_trigger(const sc_time &t, const sc_event_or_list &eol)
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{
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::sc_core::next_trigger(t, eol);
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}
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void
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sc_prim_channel::next_trigger(
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double d, sc_time_unit u, const sc_event_or_list &eol)
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{
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::sc_core::next_trigger(d, u, eol);
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}
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void
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sc_prim_channel::next_trigger(const sc_time &t, const sc_event_and_list &eal)
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{
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::sc_core::next_trigger(t, eal);
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}
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void
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sc_prim_channel::next_trigger(
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double d, sc_time_unit u, const sc_event_and_list &eal)
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{
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::sc_core::next_trigger(d, u, eal);
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}
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bool
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sc_prim_channel::timed_out()
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{
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return ::sc_core::timed_out();
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}
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void
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sc_prim_channel::wait()
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{
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::sc_core::wait();
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}
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void
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sc_prim_channel::wait(int i)
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{
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::sc_core::wait(i);
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}
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void
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sc_prim_channel::wait(const sc_event &e)
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{
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::sc_core::wait(e);
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}
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void
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sc_prim_channel::wait(const sc_event_or_list &eol)
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{
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::sc_core::wait(eol);
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}
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void
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sc_prim_channel::wait(const sc_event_and_list &eal)
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{
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::sc_core::wait(eal);
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}
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void
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sc_prim_channel::wait(const sc_time &t)
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{
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::sc_core::wait(t);
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}
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void
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sc_prim_channel::wait(double d, sc_time_unit u)
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{
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::sc_core::wait(d, u);
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}
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void
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sc_prim_channel::wait(const sc_time &t, const sc_event &e)
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{
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::sc_core::wait(t, e);
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}
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void
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sc_prim_channel::wait(double d, sc_time_unit u, const sc_event &e)
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{
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::sc_core::wait(d, u, e);
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}
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void
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sc_prim_channel::wait(const sc_time &t, const sc_event_or_list &eol)
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{
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::sc_core::wait(t, eol);
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}
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void
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sc_prim_channel::wait(double d, sc_time_unit u, const sc_event_or_list &eol)
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{
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::sc_core::wait(d, u, eol);
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}
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void
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sc_prim_channel::wait(const sc_time &t, const sc_event_and_list &eal)
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{
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::sc_core::wait(t, eal);
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}
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void
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sc_prim_channel::wait(double d, sc_time_unit u, const sc_event_and_list &eal)
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{
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::sc_core::wait(d, u, eal);
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}
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} // namespace sc_core
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