OpenFOAM-dev / data /src /OpenFOAM /db /Time /TimeIO.C
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/*---------------------------------------------------------------------------*\
========= |
\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
\\ / O peration | Website: https://openfoam.org
\\ / A nd | Copyright (C) 2011-2024 OpenFOAM Foundation
\\/ M anipulation |
-------------------------------------------------------------------------------
License
This file is part of OpenFOAM.
OpenFOAM is free software: you can redistribute it and/or modify it
under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
OpenFOAM is distributed in the hope that it will be useful, but WITHOUT
ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
for more details.
You should have received a copy of the GNU General Public License
along with OpenFOAM. If not, see <http://www.gnu.org/licenses/>.
\*---------------------------------------------------------------------------*/
#include "Time.H"
#include "timeIOdictionary.H"
#include "OSspecific.H"
// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
void Foam::Time::readDict()
{
word application;
if (controlDict_.readIfPresent("application", application))
{
// Do not override if already set so external application can override
setEnv("FOAM_APPLICATION", application, false);
}
if (!deltaTchanged_)
{
deltaT_ = controlDict_.lookup<scalar>("deltaT", userUnits());
}
if (controlDict_.found("writeControl"))
{
writeControl_ = writeControlNames.read
(
controlDict_.lookup("writeControl")
);
}
const scalar newWriteInterval =
controlDict_.lookupBackwardsCompatible<scalar>
(
{"writeInterval", "writeFrequency"},
writeIntervalUnits()
);
if
(
writeControl_ == writeControl::timeStep
&& label(newWriteInterval) < 1
)
{
FatalIOErrorInFunction(controlDict_)
<< "writeInterval < 1 for writeControl timeStep"
<< exit(FatalIOError);
}
setWriteInterval(newWriteInterval);
if (controlDict_.readIfPresent("purgeWrite", purgeWrite_))
{
if (purgeWrite_ < 0)
{
WarningInFunction
<< "invalid value for purgeWrite " << purgeWrite_
<< ", should be >= 0, setting to 0"
<< endl;
purgeWrite_ = 0;
}
}
if (controlDict_.found("timeFormat"))
{
const word formatName(controlDict_.lookup("timeFormat"));
if (formatName == "general")
{
format_ = format::general;
}
else if (formatName == "fixed")
{
format_ = format::fixed;
}
else if (formatName == "scientific")
{
format_ = format::scientific;
}
else
{
WarningInFunction
<< "unsupported time format " << formatName
<< endl;
}
}
controlDict_.readIfPresent("timePrecision", precision_);
curPrecision_ = precision_;
// stopAt at 'endTime' or a specified value
// if nothing is specified, the endTime is zero
if (controlDict_.found("stopAt"))
{
stopAt_ = stopAtControlNames.read(controlDict_.lookup("stopAt"));
if (stopAt_ == stopAtControl::endTime || controlDict_.found("endTime"))
{
endTime_ = userTimeToTime(controlDict_.lookup<scalar>("endTime"));
}
else
{
endTime_ = great;
}
}
else if (!controlDict_.readIfPresent("endTime", endTime_))
{
endTime_ = 0;
}
dimensionedScalar::name() = timeName(timeToUserTime(value()));
if (controlDict_.found("writeVersion"))
{
writeVersion_ = IOstream::versionNumber
(
controlDict_.lookup("writeVersion")
);
}
if (controlDict_.found("writeFormat"))
{
writeFormat_ = IOstream::formatEnum
(
controlDict_.lookup("writeFormat")
);
}
if (controlDict_.found("writePrecision"))
{
IOstream::defaultPrecision
(
controlDict_.lookup<unsigned int>("writePrecision")
);
Sout.precision(IOstream::defaultPrecision());
Serr.precision(IOstream::defaultPrecision());
Pout.precision(IOstream::defaultPrecision());
Perr.precision(IOstream::defaultPrecision());
FatalError().precision(IOstream::defaultPrecision());
FatalIOError.error::operator()().precision
(
IOstream::defaultPrecision()
);
}
if (controlDict_.found("writeCompression"))
{
writeCompression_ = IOstream::compressionEnum
(
controlDict_.lookup("writeCompression")
);
if
(
writeFormat_ == IOstream::BINARY
&& writeCompression_ == IOstream::COMPRESSED
)
{
IOWarningInFunction(controlDict_)
<< "Selecting compressed binary is inefficient and ineffective"
", resetting to uncompressed binary"
<< endl;
writeCompression_ = IOstream::UNCOMPRESSED;
}
}
controlDict_.readIfPresent("runTimeModifiable", runTimeModifiable_);
userTime_->read(controlDict_);
}
void Foam::Time::readModifiedObjects()
{
if (runTimeModifiable_)
{
// Get state of all monitored objects (=registered objects with a
// valid filePath).
// Note: requires same ordering in objectRegistries on different
// processors!
fileHandler().updateStates
(
(
regIOobject::fileModificationChecking == inotifyMaster
|| regIOobject::fileModificationChecking == timeStampMaster
),
Pstream::parRun()
);
objectRegistry::readModifiedObjects();
}
}
bool Foam::Time::writeTimeDict() const
{
const word tmName(name());
timeIOdictionary timeDict
(
IOobject
(
"time",
tmName,
"uniform",
*this,
IOobject::NO_READ,
IOobject::NO_WRITE,
false
)
);
timeDict.add("beginTime", timeToUserTime(beginTime_));
timeDict.add("value", timeName(timeToUserTime(value()), maxPrecision_));
timeDict.add("name", string(tmName));
timeDict.add("index", timeIndex_);
timeDict.add("deltaT", timeToUserTime(deltaT_));
timeDict.add("deltaT0", timeToUserTime(deltaT0_));
return timeDict.regIOobject::writeObject
(
IOstream::ASCII,
IOstream::currentVersion,
IOstream::UNCOMPRESSED,
true
);
}
bool Foam::Time::writeObject
(
IOstream::streamFormat fmt,
IOstream::versionNumber ver,
IOstream::compressionType cmp,
const bool write
) const
{
if (writeTime())
{
bool writeOK = writeTimeDict();
if (writeOK)
{
writeOK = objectRegistry::writeObject(fmt, ver, cmp, write);
}
if (writeOK)
{
// Does the writeTime trigger purging?
if (writeTime_ && purgeWrite_)
{
if
(
previousWriteTimes_.size() == 0
|| previousWriteTimes_.top() != name()
)
{
previousWriteTimes_.push(name());
}
while (previousWriteTimes_.size() > purgeWrite_)
{
fileHandler().rmDir
(
fileHandler().filePath
(
objectRegistry::path(previousWriteTimes_.pop())
)
);
}
}
}
return writeOK;
}
else
{
return false;
}
}
bool Foam::Time::writeNow()
{
writeTime_ = true;
return write();
}
bool Foam::Time::writeAndEnd()
{
stopAt_ = stopAtControl::writeNow;
endTime_ = value();
return writeNow();
}
void Foam::Time::writeOnce()
{
writeOnce_ = true;
}
// ************************************************************************* //