667cbb6690
resetstats dumpstats dumpresetstats m5checkpoint Lots of cleanup of serialization and stats dumping/resetting to work with these new instructions arch/alpha/isa_desc: Implement more m5 pseduo opcodes: resetstats dumpstats dumpresetstats m5checkpoint All of these functions take two optional parameters, the first is a delay, and the second is a period. The delay tells the simulator to wait the specified number of nanoseconds before triggering the event, the period tells the simulator to repeat the event with a specified frequency base/statistics.cc: base/statistics.hh: regReset RegResetCallback dev/disk_image.cc: serializeFilename -> CheckpointFile() sim/debug.cc: Move this debugging statement to sim_stats.cc sim/eventq.cc: Don't AutoDelete an event if it is scheduled since the process() function could potentially schedule the event again. sim/main.cc: DumpStatsEvent is now Statistics::SetupEvent(Dump, curTick) sim/serialize.cc: Change the serialize event so that it's possible to cause the event to repeat. Also make the priority such that the event happens just before the simulator would exit if both events were scheduled for the same cycle. get rid of the serializeFilename variable and provide a CheckpointFile() function. This function takes a basename that is set in the configuration, and appends the current cycle to the name so that multiple checkpoints can be dumped from the same simulation. Also, don't exit the simulation when a checkpoint file is dumped. sim/serialize.hh: serializeFilename -> CheckpointFile() SetupCheckpoint function to tell the simulator to prepare to checkpoint at a certain time with a certain period sim/sim_events.cc: DumpStatsEvent stuff gets move to sim_stats.(cc|hh) The context stuff gets moved into the already existing stats context in stat_context.cc sim/sim_events.hh: DumpStatsEvent stuff gets move to sim_stats.(cc|hh) sim/universe.cc: Provide some simple functions for converting times into ticks. These use floating point math to get as close as possible to the real values. Multipliers are set up ahead of time --HG-- extra : convert_revision : d06ef26a9237529a1e5060cb1ac2dcc04d4ec252
496 lines
12 KiB
C++
496 lines
12 KiB
C++
/*
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* Copyright (c) 2003 The Regents of The University of Michigan
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* All rights reserved.
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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 <sys/time.h>
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#include <fstream>
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#include <list>
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#include <string>
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#include <vector>
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#include "base/misc.hh"
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#include "base/str.hh"
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#include "sim/eventq.hh"
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#include "sim/param.hh"
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#include "sim/serialize.hh"
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#include "base/inifile.hh"
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#include "sim/sim_events.hh"
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#include "sim/sim_object.hh"
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#include "base/trace.hh"
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#include "sim/config_node.hh"
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using namespace std;
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Serializer *Serializeable::serializer = NULL;
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Serializeable::Serializeable()
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: serialized(false)
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{ }
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Serializeable::~Serializeable()
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{ }
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void
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Serializeable::mark()
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{
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if (!serialized)
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serializer->add_object(this);
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serialized = true;
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}
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void
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Serializeable::nameOut(ostream &os)
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{
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os << "\n[" << name() << "]\n";
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}
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void
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Serializeable::nameOut(ostream &os, const string &_name)
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{
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os << "\n[" << _name << "]\n";
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}
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template <class T>
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void
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paramOut(ostream &os, const std::string &name, const T& param)
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{
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os << name << "=";
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showParam(os, param);
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os << "\n";
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}
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template <class T>
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void
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paramIn(Checkpoint *cp, const std::string §ion,
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const std::string &name, T& param)
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{
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std::string str;
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if (!cp->find(section, name, str) || !parseParam(str, param)) {
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fatal("Can't unserialize '%s:%s'\n", section, name);
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}
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}
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template <class T>
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void
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arrayParamOut(ostream &os, const std::string &name,
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const T *param, int size)
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{
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os << name << "=";
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if (size > 0)
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showParam(os, param[0]);
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for (int i = 1; i < size; ++i) {
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os << " ";
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showParam(os, param[i]);
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}
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os << "\n";
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}
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template <class T>
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void
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arrayParamIn(Checkpoint *cp, const std::string §ion,
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const std::string &name, T *param, int size)
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{
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std::string str;
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if (!cp->find(section, name, str)) {
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fatal("Can't unserialize '%s:%s'\n", section, name);
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}
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// code below stolen from VectorParam<T>::parse().
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// it would be nice to unify these somehow...
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vector<string> tokens;
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tokenize(tokens, str, ' ');
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// Need this if we were doing a vector
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// value.resize(tokens.size());
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if (tokens.size() != size) {
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fatal("Array size mismatch on %s:%s'\n", section, name);
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}
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for (int i = 0; i < tokens.size(); i++) {
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// need to parse into local variable to handle vector<bool>,
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// for which operator[] returns a special reference class
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// that's not the same as 'bool&', (since it's a packed
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// vector)
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T scalar_value;
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if (!parseParam(tokens[i], scalar_value)) {
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string err("could not parse \"");
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err += str;
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err += "\"";
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fatal(err);
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}
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// assign parsed value to vector
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param[i] = scalar_value;
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}
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}
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void
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objParamIn(Checkpoint *cp, const std::string §ion,
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const std::string &name, Serializeable * ¶m)
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{
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if (!cp->findObj(section, name, param)) {
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fatal("Can't unserialize '%s:%s'\n", section, name);
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}
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}
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#define INSTANTIATE_PARAM_TEMPLATES(type) \
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template void \
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paramOut(ostream &os, const std::string &name, type const ¶m); \
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template void \
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paramIn(Checkpoint *cp, const std::string §ion, \
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const std::string &name, type & param); \
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template void \
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arrayParamOut(ostream &os, const std::string &name, \
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type const *param, int size); \
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template void \
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arrayParamIn(Checkpoint *cp, const std::string §ion, \
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const std::string &name, type *param, int size);
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INSTANTIATE_PARAM_TEMPLATES(int8_t)
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INSTANTIATE_PARAM_TEMPLATES(uint8_t)
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INSTANTIATE_PARAM_TEMPLATES(int16_t)
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INSTANTIATE_PARAM_TEMPLATES(uint16_t)
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INSTANTIATE_PARAM_TEMPLATES(int32_t)
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INSTANTIATE_PARAM_TEMPLATES(uint32_t)
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INSTANTIATE_PARAM_TEMPLATES(int64_t)
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INSTANTIATE_PARAM_TEMPLATES(uint64_t)
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INSTANTIATE_PARAM_TEMPLATES(bool)
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INSTANTIATE_PARAM_TEMPLATES(string)
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#if 0
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// unneeded?
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void
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Serializeable::childOut(const string &name, Serializeable *child)
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{
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child->mark();
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if (child->name() == "")
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panic("child is unnamed");
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out() << name << "=" << child->name() << "\n";
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}
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#endif
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Serializer::Serializer()
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{ }
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Serializer::~Serializer()
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{ }
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ostream &
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Serializer::out() const
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{
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if (!output)
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panic("must set output before serializing");
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return *output;
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}
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void
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Serializer::add_object(Serializeable *obj)
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{
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objects.push_back(obj);
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}
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void
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Serializer::add_objects()
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{
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mainEventQueue.mark();
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SimObject::SimObjectList::iterator i = SimObject::simObjectList.begin();
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SimObject::SimObjectList::iterator end = SimObject::simObjectList.end();
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while (i != end) {
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(*i)->mark();
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++i;
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}
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}
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void
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Serializer::serialize()
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{
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if (Serializeable::serializer != NULL)
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panic("in process of serializing!");
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Serializeable::serializer = this;
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file = CheckpointFile();
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string cpt_file = file + ".cpt";
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output = new ofstream(cpt_file.c_str());
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time_t t = time(NULL);
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*output << "// checkpoint generated: " << ctime(&t);
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serlist_t list;
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add_objects();
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while (!objects.empty()) {
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Serializeable *obj = objects.front();
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DPRINTF(Serialize, "Serializing %s\n", obj->name());
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obj->nameOut(out());
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obj->serialize(out());
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objects.pop_front();
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list.push_back(obj);
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}
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while (!list.empty()) {
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list.front()->serialized = false;
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list.pop_front();
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}
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Serializeable::serializer = NULL;
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delete output;
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output = NULL;
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file = "";
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}
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class SerializeEvent : public Event
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{
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protected:
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string file;
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Tick repeat;
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public:
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SerializeEvent(Tick _when, Tick _repeat);
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virtual void process();
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virtual void serialize(std::ostream &os)
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{
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panic("Cannot serialize the SerializeEvent");
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}
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};
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SerializeEvent::SerializeEvent(Tick _when, Tick _repeat)
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: Event(&mainEventQueue, 990), repeat(_repeat)
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{
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setFlags(AutoDelete);
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schedule(_when);
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}
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void
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SerializeEvent::process()
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{
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Serializer serial;
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serial.serialize();
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if (repeat)
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schedule(curTick + repeat);
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}
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string __CheckpointFileBase;
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string
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CheckpointFile()
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{
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if (__CheckpointFileBase.empty())
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return __CheckpointFileBase;
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return csprintf("%s.%d", __CheckpointFileBase, curTick);
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}
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void
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SetupCheckpoint(Tick when, Tick period)
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{
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new SerializeEvent(when, period);
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}
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class SerializeParamContext : public ParamContext
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{
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private:
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SerializeEvent *event;
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public:
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SerializeParamContext(const string §ion);
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~SerializeParamContext();
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void checkParams();
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};
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SerializeParamContext serialParams("serialize");
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Param<string> serialize_file(&serialParams,
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"file",
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"file to write to", "m5");
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Param<Counter> serialize_cycle(&serialParams,
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"cycle",
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"cycle to serialize",
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0);
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Param<Counter> serialize_period(&serialParams,
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"period",
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"period to repeat serializations",
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0);
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SerializeParamContext::SerializeParamContext(const string §ion)
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: ParamContext(section), event(NULL)
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{ }
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SerializeParamContext::~SerializeParamContext()
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{
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}
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void
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SerializeParamContext::checkParams()
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{
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__CheckpointFileBase = serialize_file;
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if (serialize_cycle > 0)
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SetupCheckpoint(serialize_cycle, serialize_period);
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}
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void
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debug_serialize()
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{
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Serializer serial;
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serial.serialize();
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}
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void
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debug_serialize(Tick when)
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{
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new SerializeEvent(when, 0);
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}
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////////////////////////////////////////////////////////////////////////
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//
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// SerializeableClass member definitions
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//
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////////////////////////////////////////////////////////////////////////
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// Map of class names to SerializeableBuilder creation functions.
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// Need to make this a pointer so we can force initialization on the
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// first reference; otherwise, some SerializeableClass constructors
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// may be invoked before the classMap constructor.
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map<string,SerializeableClass::CreateFunc> *SerializeableClass::classMap = 0;
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// SerializeableClass constructor: add mapping to classMap
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SerializeableClass::SerializeableClass(const string &className,
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CreateFunc createFunc)
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{
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if (classMap == NULL)
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classMap = new map<string,SerializeableClass::CreateFunc>();
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if ((*classMap)[className])
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{
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cerr << "Error: simulation object class " << className << " redefined"
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<< endl;
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fatal("");
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}
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// add className --> createFunc to class map
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(*classMap)[className] = createFunc;
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}
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//
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//
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Serializeable *
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SerializeableClass::createObject(Checkpoint *cp,
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const std::string §ion)
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{
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string className;
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if (!cp->find(section, "type", className)) {
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fatal("Serializeable::create: no 'type' entry in section '%s'.\n",
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section);
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}
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CreateFunc createFunc = (*classMap)[className];
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if (createFunc == NULL) {
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fatal("Serializeable::create: no create function for class '%s'.\n",
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className);
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}
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Serializeable *object = createFunc(cp, section);
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assert(object != NULL);
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return object;
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}
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Serializeable *
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Serializeable::create(Checkpoint *cp, const std::string §ion)
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{
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Serializeable *object = SerializeableClass::createObject(cp, section);
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object->unserialize(cp, section);
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return object;
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}
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Checkpoint::Checkpoint(const std::string &filename, const std::string &path,
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const ConfigNode *_configNode)
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: db(new IniFile), basePath(path), configNode(_configNode)
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{
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if (!db->load(filename)) {
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fatal("Can't load checkpoint file '%s'\n", filename);
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}
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mainEventQueue.unserialize(this, "MainEventQueue");
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}
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bool
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Checkpoint::find(const std::string §ion, const std::string &entry,
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std::string &value)
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{
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return db->find(section, entry, value);
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}
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bool
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Checkpoint::findObj(const std::string §ion, const std::string &entry,
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Serializeable *&value)
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{
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string path;
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if (!db->find(section, entry, path))
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return false;
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if ((value = configNode->resolveSimObject(path)) != NULL)
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return true;
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if ((value = objMap[path]) != NULL)
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return true;
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return false;
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}
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