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Merge pull request #5237 from akva2/timestepping_use_fmt
AdaptiveTimeStepping: use {fmt} to format messages
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commit
bb85fc9939
@ -34,6 +34,8 @@
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#include <opm/simulators/timestepping/TimeStepControl.hpp>
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#include <opm/simulators/timestepping/TimeStepControl.hpp>
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#include <opm/simulators/timestepping/TimeStepControlInterface.hpp>
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#include <opm/simulators/timestepping/TimeStepControlInterface.hpp>
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#include <fmt/format.h>
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#include <algorithm>
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#include <algorithm>
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#include <cassert>
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#include <cassert>
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#include <cmath>
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#include <cmath>
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@ -436,17 +438,20 @@ std::set<std::string> consistentlyFailingWells(const std::vector<StepReport>& sr
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report += substepReport;
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report += substepReport;
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bool continue_on_uncoverged_solution = ignoreConvergenceFailure_ && !substepReport.converged && dt <= minTimeStep_;
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bool continue_on_uncoverged_solution = ignoreConvergenceFailure_ &&
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!substepReport.converged &&
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dt <= minTimeStep_;
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if (continue_on_uncoverged_solution) {
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if (continue_on_uncoverged_solution && solverVerbose_) {
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const auto msg = std::string("Solver failed to converge but timestep ")
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const auto msg = fmt::format(
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+ std::to_string(dt) + " is smaller or equal to "
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"Solver failed to converge but timestep "
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+ std::to_string(minTimeStep_) + "\n which is the minimum threshold given"
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"{} is smaller or equal to {}\n"
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+ "by option --solver-min-time-step= \n";
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"which is the minimum threshold given "
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if (solverVerbose_) {
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"by option --solver-min-time-step\n",
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dt, minTimeStep_
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);
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OpmLog::problem(msg);
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OpmLog::problem(msg);
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}
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}
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}
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if (substepReport.converged || continue_on_uncoverged_solution) {
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if (substepReport.converged || continue_on_uncoverged_solution) {
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@ -515,8 +520,10 @@ std::set<std::string> consistentlyFailingWells(const std::vector<StepReport>& sr
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// If we have restarted (i.e. cut the timestep) too
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// If we have restarted (i.e. cut the timestep) too
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// many times, we have failed and throw an exception.
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// many times, we have failed and throw an exception.
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if (restarts >= solverRestartMax_) {
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if (restarts >= solverRestartMax_) {
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const auto msg = std::string("Solver failed to converge after cutting timestep ")
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const auto msg = fmt::format(
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+ std::to_string(restarts) + " times.";
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"Solver failed to converge after cutting timestep {} times.",
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restarts
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);
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if (solverVerbose_) {
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if (solverVerbose_) {
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OpmLog::error(msg);
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OpmLog::error(msg);
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}
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}
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@ -531,9 +538,11 @@ std::set<std::string> consistentlyFailingWells(const std::vector<StepReport>& sr
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// If we have restarted (i.e. cut the timestep) too
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// If we have restarted (i.e. cut the timestep) too
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// much, we have failed and throw an exception.
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// much, we have failed and throw an exception.
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if (newTimeStep < minTimeStep_) {
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if (newTimeStep < minTimeStep_) {
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const auto msg = std::string("Solver failed to converge after cutting timestep to ")
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const auto msg = fmt::format(
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+ std::to_string(minTimeStep_) + "\n which is the minimum threshold given"
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"Solver failed to converge after cutting timestep to {}\n"
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+ "by option --solver-min-time-step= \n";
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"which is the minimum threshold given by option --solver-min-time-step\n",
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minTimeStep_
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);
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if (solverVerbose_) {
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if (solverVerbose_) {
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OpmLog::error(msg);
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OpmLog::error(msg);
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}
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}
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@ -545,9 +554,11 @@ std::set<std::string> consistentlyFailingWells(const std::vector<StepReport>& sr
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auto chopTimestep = [&]() {
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auto chopTimestep = [&]() {
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substepTimer.provideTimeStepEstimate(newTimeStep);
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substepTimer.provideTimeStepEstimate(newTimeStep);
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if (solverVerbose_) {
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if (solverVerbose_) {
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std::string msg;
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const auto msg = fmt::format(
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msg = causeOfFailure + "\nTimestep chopped to "
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"{}\nTimestep chopped to {} days\n",
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+ std::to_string(unit::convert::to(substepTimer.currentStepLength(), unit::day)) + " days\n";
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causeOfFailure,
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std::to_string(unit::convert::to(substepTimer.currentStepLength(), unit::day))
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);
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OpmLog::problem(msg);
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OpmLog::problem(msg);
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}
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}
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++restarts;
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++restarts;
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