public static final class ConvergenceInformation.Builder extends com.google.protobuf.GeneratedMessage.Builder<ConvergenceInformation.Builder> implements ConvergenceInformationOrBuilder
Information measuring how close a candidate is to establishing feasibility and optimality; see also TerminationCriteria.Protobuf type
operations_research.pdlp.ConvergenceInformation| Modifier and Type | Method and Description |
|---|---|
ConvergenceInformation |
build() |
ConvergenceInformation |
buildPartial() |
ConvergenceInformation.Builder |
clear() |
ConvergenceInformation.Builder |
clearCandidateType()
Type of the candidate point described by this ConvergenceInformation.
|
ConvergenceInformation.Builder |
clearCorrectedDualObjective()
If possible (e.g., when all primal variables have lower and upper bounds),
a correct dual bound.
|
ConvergenceInformation.Builder |
clearDualObjective()
The dual objective.
|
ConvergenceInformation.Builder |
clearL2DualResidual()
The l_2 norm of the violations of dual constraints.
|
ConvergenceInformation.Builder |
clearL2DualVariable()
The l_2 norm of the dual variables.
|
ConvergenceInformation.Builder |
clearL2PrimalResidual()
The l_2 norm of the violations of primal constraints.
|
ConvergenceInformation.Builder |
clearL2PrimalVariable()
The l_2 norm of the primal variables.
|
ConvergenceInformation.Builder |
clearLInfComponentwiseDualResidual()
The maximum relative violation of any dual constraint, with an absolute
offset, i.e., the l_∞ norm of [violation / (eps_ratio + |objective|)] where
eps_ratio = eps_optimal_dual_residual_absolute
/ eps_optimal_dual_residual_relative
|
ConvergenceInformation.Builder |
clearLInfComponentwisePrimalResidual()
The maximum relative violation of any primal constraint, with an absolute
offset, i.e., the l_∞ norm of [violation / (eps_ratio + |bound|)] where
eps_ratio = eps_optimal_primal_residual_absolute
/ eps_optimal_primal_residual_relative
and bound is the violated bound.
|
ConvergenceInformation.Builder |
clearLInfDualResidual()
The maximum violation of any dual constraint, i.e., the l_∞ norm of the
violations.
|
ConvergenceInformation.Builder |
clearLInfDualVariable()
The maximum absolute value of the dual variables, i.e., the l_∞ norm.
|
ConvergenceInformation.Builder |
clearLInfPrimalResidual()
The maximum violation of any primal constraint, i.e., the l_∞ norm of the
violations.
|
ConvergenceInformation.Builder |
clearLInfPrimalVariable()
The maximum absolute value of the primal variables, i.e., the l_∞ norm.
|
ConvergenceInformation.Builder |
clearPrimalObjective()
The primal objective.
|
PointType |
getCandidateType()
Type of the candidate point described by this ConvergenceInformation.
|
double |
getCorrectedDualObjective()
If possible (e.g., when all primal variables have lower and upper bounds),
a correct dual bound.
|
ConvergenceInformation |
getDefaultInstanceForType() |
static com.google.protobuf.Descriptors.Descriptor |
getDescriptor() |
com.google.protobuf.Descriptors.Descriptor |
getDescriptorForType() |
double |
getDualObjective()
The dual objective.
|
double |
getL2DualResidual()
The l_2 norm of the violations of dual constraints.
|
double |
getL2DualVariable()
The l_2 norm of the dual variables.
|
double |
getL2PrimalResidual()
The l_2 norm of the violations of primal constraints.
|
double |
getL2PrimalVariable()
The l_2 norm of the primal variables.
|
double |
getLInfComponentwiseDualResidual()
The maximum relative violation of any dual constraint, with an absolute
offset, i.e., the l_∞ norm of [violation / (eps_ratio + |objective|)] where
eps_ratio = eps_optimal_dual_residual_absolute
/ eps_optimal_dual_residual_relative
|
double |
getLInfComponentwisePrimalResidual()
The maximum relative violation of any primal constraint, with an absolute
offset, i.e., the l_∞ norm of [violation / (eps_ratio + |bound|)] where
eps_ratio = eps_optimal_primal_residual_absolute
/ eps_optimal_primal_residual_relative
and bound is the violated bound.
|
double |
getLInfDualResidual()
The maximum violation of any dual constraint, i.e., the l_∞ norm of the
violations.
|
double |
getLInfDualVariable()
The maximum absolute value of the dual variables, i.e., the l_∞ norm.
|
double |
getLInfPrimalResidual()
The maximum violation of any primal constraint, i.e., the l_∞ norm of the
violations.
|
double |
getLInfPrimalVariable()
The maximum absolute value of the primal variables, i.e., the l_∞ norm.
|
double |
getPrimalObjective()
The primal objective.
|
boolean |
hasCandidateType()
Type of the candidate point described by this ConvergenceInformation.
|
boolean |
hasCorrectedDualObjective()
If possible (e.g., when all primal variables have lower and upper bounds),
a correct dual bound.
|
boolean |
hasDualObjective()
The dual objective.
|
boolean |
hasL2DualResidual()
The l_2 norm of the violations of dual constraints.
|
boolean |
hasL2DualVariable()
The l_2 norm of the dual variables.
|
boolean |
hasL2PrimalResidual()
The l_2 norm of the violations of primal constraints.
|
boolean |
hasL2PrimalVariable()
The l_2 norm of the primal variables.
|
boolean |
hasLInfComponentwiseDualResidual()
The maximum relative violation of any dual constraint, with an absolute
offset, i.e., the l_∞ norm of [violation / (eps_ratio + |objective|)] where
eps_ratio = eps_optimal_dual_residual_absolute
/ eps_optimal_dual_residual_relative
|
boolean |
hasLInfComponentwisePrimalResidual()
The maximum relative violation of any primal constraint, with an absolute
offset, i.e., the l_∞ norm of [violation / (eps_ratio + |bound|)] where
eps_ratio = eps_optimal_primal_residual_absolute
/ eps_optimal_primal_residual_relative
and bound is the violated bound.
|
boolean |
hasLInfDualResidual()
The maximum violation of any dual constraint, i.e., the l_∞ norm of the
violations.
|
boolean |
hasLInfDualVariable()
The maximum absolute value of the dual variables, i.e., the l_∞ norm.
|
boolean |
hasLInfPrimalResidual()
The maximum violation of any primal constraint, i.e., the l_∞ norm of the
violations.
|
boolean |
hasLInfPrimalVariable()
The maximum absolute value of the primal variables, i.e., the l_∞ norm.
|
boolean |
hasPrimalObjective()
The primal objective.
|
protected com.google.protobuf.GeneratedMessage.FieldAccessorTable |
internalGetFieldAccessorTable() |
boolean |
isInitialized() |
ConvergenceInformation.Builder |
mergeFrom(com.google.protobuf.CodedInputStream input,
com.google.protobuf.ExtensionRegistryLite extensionRegistry) |
ConvergenceInformation.Builder |
mergeFrom(ConvergenceInformation other) |
ConvergenceInformation.Builder |
mergeFrom(com.google.protobuf.Message other) |
ConvergenceInformation.Builder |
setCandidateType(PointType value)
Type of the candidate point described by this ConvergenceInformation.
|
ConvergenceInformation.Builder |
setCorrectedDualObjective(double value)
If possible (e.g., when all primal variables have lower and upper bounds),
a correct dual bound.
|
ConvergenceInformation.Builder |
setDualObjective(double value)
The dual objective.
|
ConvergenceInformation.Builder |
setL2DualResidual(double value)
The l_2 norm of the violations of dual constraints.
|
ConvergenceInformation.Builder |
setL2DualVariable(double value)
The l_2 norm of the dual variables.
|
ConvergenceInformation.Builder |
setL2PrimalResidual(double value)
The l_2 norm of the violations of primal constraints.
|
ConvergenceInformation.Builder |
setL2PrimalVariable(double value)
The l_2 norm of the primal variables.
|
ConvergenceInformation.Builder |
setLInfComponentwiseDualResidual(double value)
The maximum relative violation of any dual constraint, with an absolute
offset, i.e., the l_∞ norm of [violation / (eps_ratio + |objective|)] where
eps_ratio = eps_optimal_dual_residual_absolute
/ eps_optimal_dual_residual_relative
|
ConvergenceInformation.Builder |
setLInfComponentwisePrimalResidual(double value)
The maximum relative violation of any primal constraint, with an absolute
offset, i.e., the l_∞ norm of [violation / (eps_ratio + |bound|)] where
eps_ratio = eps_optimal_primal_residual_absolute
/ eps_optimal_primal_residual_relative
and bound is the violated bound.
|
ConvergenceInformation.Builder |
setLInfDualResidual(double value)
The maximum violation of any dual constraint, i.e., the l_∞ norm of the
violations.
|
ConvergenceInformation.Builder |
setLInfDualVariable(double value)
The maximum absolute value of the dual variables, i.e., the l_∞ norm.
|
ConvergenceInformation.Builder |
setLInfPrimalResidual(double value)
The maximum violation of any primal constraint, i.e., the l_∞ norm of the
violations.
|
ConvergenceInformation.Builder |
setLInfPrimalVariable(double value)
The maximum absolute value of the primal variables, i.e., the l_∞ norm.
|
ConvergenceInformation.Builder |
setPrimalObjective(double value)
The primal objective.
|
addRepeatedField, clearField, clearOneof, clone, getAllFields, getField, getFieldBuilder, getOneofFieldDescriptor, getParentForChildren, getRepeatedField, getRepeatedFieldBuilder, getRepeatedFieldCount, getUnknownFields, getUnknownFieldSetBuilder, hasField, hasOneof, internalGetMapField, internalGetMapFieldReflection, internalGetMutableMapField, internalGetMutableMapFieldReflection, isClean, markClean, mergeUnknownFields, mergeUnknownLengthDelimitedField, mergeUnknownVarintField, newBuilderForField, onBuilt, onChanged, parseUnknownField, setField, setRepeatedField, setUnknownFields, setUnknownFieldSetBuilder, setUnknownFieldsProto3findInitializationErrors, getInitializationErrorString, internalMergeFrom, mergeFrom, mergeFrom, mergeFrom, mergeFrom, mergeFrom, mergeFrom, mergeFrom, mergeFrom, mergeFrom, newUninitializedMessageException, toStringaddAll, addAll, mergeDelimitedFrom, mergeDelimitedFrom, newUninitializedMessageExceptionequals, finalize, getClass, hashCode, notify, notifyAll, wait, wait, waitpublic static final com.google.protobuf.Descriptors.Descriptor getDescriptor()
protected com.google.protobuf.GeneratedMessage.FieldAccessorTable internalGetFieldAccessorTable()
internalGetFieldAccessorTable in class com.google.protobuf.GeneratedMessage.Builder<ConvergenceInformation.Builder>public ConvergenceInformation.Builder clear()
clear in interface com.google.protobuf.Message.Builderclear in interface com.google.protobuf.MessageLite.Builderclear in class com.google.protobuf.GeneratedMessage.Builder<ConvergenceInformation.Builder>public com.google.protobuf.Descriptors.Descriptor getDescriptorForType()
getDescriptorForType in interface com.google.protobuf.Message.BuildergetDescriptorForType in interface com.google.protobuf.MessageOrBuildergetDescriptorForType in class com.google.protobuf.GeneratedMessage.Builder<ConvergenceInformation.Builder>public ConvergenceInformation getDefaultInstanceForType()
getDefaultInstanceForType in interface com.google.protobuf.MessageLiteOrBuildergetDefaultInstanceForType in interface com.google.protobuf.MessageOrBuilderpublic ConvergenceInformation build()
build in interface com.google.protobuf.Message.Builderbuild in interface com.google.protobuf.MessageLite.Builderpublic ConvergenceInformation buildPartial()
buildPartial in interface com.google.protobuf.Message.BuilderbuildPartial in interface com.google.protobuf.MessageLite.Builderpublic ConvergenceInformation.Builder mergeFrom(com.google.protobuf.Message other)
mergeFrom in interface com.google.protobuf.Message.BuildermergeFrom in class com.google.protobuf.AbstractMessage.Builder<ConvergenceInformation.Builder>public ConvergenceInformation.Builder mergeFrom(ConvergenceInformation other)
public final boolean isInitialized()
isInitialized in interface com.google.protobuf.MessageLiteOrBuilderisInitialized in class com.google.protobuf.GeneratedMessage.Builder<ConvergenceInformation.Builder>public ConvergenceInformation.Builder mergeFrom(com.google.protobuf.CodedInputStream input, com.google.protobuf.ExtensionRegistryLite extensionRegistry) throws java.io.IOException
mergeFrom in interface com.google.protobuf.Message.BuildermergeFrom in interface com.google.protobuf.MessageLite.BuildermergeFrom in class com.google.protobuf.AbstractMessage.Builder<ConvergenceInformation.Builder>java.io.IOExceptionpublic boolean hasCandidateType()
Type of the candidate point described by this ConvergenceInformation.
optional .operations_research.pdlp.PointType candidate_type = 1;hasCandidateType in interface ConvergenceInformationOrBuilderpublic PointType getCandidateType()
Type of the candidate point described by this ConvergenceInformation.
optional .operations_research.pdlp.PointType candidate_type = 1;getCandidateType in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setCandidateType(PointType value)
Type of the candidate point described by this ConvergenceInformation.
optional .operations_research.pdlp.PointType candidate_type = 1;value - The candidateType to set.public ConvergenceInformation.Builder clearCandidateType()
Type of the candidate point described by this ConvergenceInformation.
optional .operations_research.pdlp.PointType candidate_type = 1;public boolean hasPrimalObjective()
The primal objective. The primal need not be feasible.
optional double primal_objective = 2;hasPrimalObjective in interface ConvergenceInformationOrBuilderpublic double getPrimalObjective()
The primal objective. The primal need not be feasible.
optional double primal_objective = 2;getPrimalObjective in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setPrimalObjective(double value)
The primal objective. The primal need not be feasible.
optional double primal_objective = 2;value - The primalObjective to set.public ConvergenceInformation.Builder clearPrimalObjective()
The primal objective. The primal need not be feasible.
optional double primal_objective = 2;public boolean hasDualObjective()
The dual objective. The dual need not be feasible. The dual objective includes the contributions from reduced costs. NOTE: The definition of dual_objective changed in OR-tools version 9.8. See https://developers.google.com/optimization/lp/pdlp_math#reduced_costs_dual_residuals_and_the_corrected_dual_objective for details.
optional double dual_objective = 3;hasDualObjective in interface ConvergenceInformationOrBuilderpublic double getDualObjective()
The dual objective. The dual need not be feasible. The dual objective includes the contributions from reduced costs. NOTE: The definition of dual_objective changed in OR-tools version 9.8. See https://developers.google.com/optimization/lp/pdlp_math#reduced_costs_dual_residuals_and_the_corrected_dual_objective for details.
optional double dual_objective = 3;getDualObjective in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setDualObjective(double value)
The dual objective. The dual need not be feasible. The dual objective includes the contributions from reduced costs. NOTE: The definition of dual_objective changed in OR-tools version 9.8. See https://developers.google.com/optimization/lp/pdlp_math#reduced_costs_dual_residuals_and_the_corrected_dual_objective for details.
optional double dual_objective = 3;value - The dualObjective to set.public ConvergenceInformation.Builder clearDualObjective()
The dual objective. The dual need not be feasible. The dual objective includes the contributions from reduced costs. NOTE: The definition of dual_objective changed in OR-tools version 9.8. See https://developers.google.com/optimization/lp/pdlp_math#reduced_costs_dual_residuals_and_the_corrected_dual_objective for details.
optional double dual_objective = 3;public boolean hasCorrectedDualObjective()
If possible (e.g., when all primal variables have lower and upper bounds), a correct dual bound. The value is negative infinity if no corrected dual bound is available.
optional double corrected_dual_objective = 4;hasCorrectedDualObjective in interface ConvergenceInformationOrBuilderpublic double getCorrectedDualObjective()
If possible (e.g., when all primal variables have lower and upper bounds), a correct dual bound. The value is negative infinity if no corrected dual bound is available.
optional double corrected_dual_objective = 4;getCorrectedDualObjective in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setCorrectedDualObjective(double value)
If possible (e.g., when all primal variables have lower and upper bounds), a correct dual bound. The value is negative infinity if no corrected dual bound is available.
optional double corrected_dual_objective = 4;value - The correctedDualObjective to set.public ConvergenceInformation.Builder clearCorrectedDualObjective()
If possible (e.g., when all primal variables have lower and upper bounds), a correct dual bound. The value is negative infinity if no corrected dual bound is available.
optional double corrected_dual_objective = 4;public boolean hasLInfPrimalResidual()
The maximum violation of any primal constraint, i.e., the l_∞ norm of the violations.
optional double l_inf_primal_residual = 5;hasLInfPrimalResidual in interface ConvergenceInformationOrBuilderpublic double getLInfPrimalResidual()
The maximum violation of any primal constraint, i.e., the l_∞ norm of the violations.
optional double l_inf_primal_residual = 5;getLInfPrimalResidual in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setLInfPrimalResidual(double value)
The maximum violation of any primal constraint, i.e., the l_∞ norm of the violations.
optional double l_inf_primal_residual = 5;value - The lInfPrimalResidual to set.public ConvergenceInformation.Builder clearLInfPrimalResidual()
The maximum violation of any primal constraint, i.e., the l_∞ norm of the violations.
optional double l_inf_primal_residual = 5;public boolean hasL2PrimalResidual()
The l_2 norm of the violations of primal constraints.
optional double l2_primal_residual = 6;hasL2PrimalResidual in interface ConvergenceInformationOrBuilderpublic double getL2PrimalResidual()
The l_2 norm of the violations of primal constraints.
optional double l2_primal_residual = 6;getL2PrimalResidual in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setL2PrimalResidual(double value)
The l_2 norm of the violations of primal constraints.
optional double l2_primal_residual = 6;value - The l2PrimalResidual to set.public ConvergenceInformation.Builder clearL2PrimalResidual()
The l_2 norm of the violations of primal constraints.
optional double l2_primal_residual = 6;public boolean hasLInfComponentwisePrimalResidual()
The maximum relative violation of any primal constraint, with an absolute offset, i.e., the l_∞ norm of [violation / (eps_ratio + |bound|)] where eps_ratio = eps_optimal_primal_residual_absolute / eps_optimal_primal_residual_relative and bound is the violated bound.
optional double l_inf_componentwise_primal_residual = 24;hasLInfComponentwisePrimalResidual in interface ConvergenceInformationOrBuilderpublic double getLInfComponentwisePrimalResidual()
The maximum relative violation of any primal constraint, with an absolute offset, i.e., the l_∞ norm of [violation / (eps_ratio + |bound|)] where eps_ratio = eps_optimal_primal_residual_absolute / eps_optimal_primal_residual_relative and bound is the violated bound.
optional double l_inf_componentwise_primal_residual = 24;getLInfComponentwisePrimalResidual in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setLInfComponentwisePrimalResidual(double value)
The maximum relative violation of any primal constraint, with an absolute offset, i.e., the l_∞ norm of [violation / (eps_ratio + |bound|)] where eps_ratio = eps_optimal_primal_residual_absolute / eps_optimal_primal_residual_relative and bound is the violated bound.
optional double l_inf_componentwise_primal_residual = 24;value - The lInfComponentwisePrimalResidual to set.public ConvergenceInformation.Builder clearLInfComponentwisePrimalResidual()
The maximum relative violation of any primal constraint, with an absolute offset, i.e., the l_∞ norm of [violation / (eps_ratio + |bound|)] where eps_ratio = eps_optimal_primal_residual_absolute / eps_optimal_primal_residual_relative and bound is the violated bound.
optional double l_inf_componentwise_primal_residual = 24;public boolean hasLInfDualResidual()
The maximum violation of any dual constraint, i.e., the l_∞ norm of the violations.
optional double l_inf_dual_residual = 7;hasLInfDualResidual in interface ConvergenceInformationOrBuilderpublic double getLInfDualResidual()
The maximum violation of any dual constraint, i.e., the l_∞ norm of the violations.
optional double l_inf_dual_residual = 7;getLInfDualResidual in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setLInfDualResidual(double value)
The maximum violation of any dual constraint, i.e., the l_∞ norm of the violations.
optional double l_inf_dual_residual = 7;value - The lInfDualResidual to set.public ConvergenceInformation.Builder clearLInfDualResidual()
The maximum violation of any dual constraint, i.e., the l_∞ norm of the violations.
optional double l_inf_dual_residual = 7;public boolean hasL2DualResidual()
The l_2 norm of the violations of dual constraints.
optional double l2_dual_residual = 8;hasL2DualResidual in interface ConvergenceInformationOrBuilderpublic double getL2DualResidual()
The l_2 norm of the violations of dual constraints.
optional double l2_dual_residual = 8;getL2DualResidual in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setL2DualResidual(double value)
The l_2 norm of the violations of dual constraints.
optional double l2_dual_residual = 8;value - The l2DualResidual to set.public ConvergenceInformation.Builder clearL2DualResidual()
The l_2 norm of the violations of dual constraints.
optional double l2_dual_residual = 8;public boolean hasLInfComponentwiseDualResidual()
The maximum relative violation of any dual constraint, with an absolute offset, i.e., the l_∞ norm of [violation / (eps_ratio + |objective|)] where eps_ratio = eps_optimal_dual_residual_absolute / eps_optimal_dual_residual_relative
optional double l_inf_componentwise_dual_residual = 25;hasLInfComponentwiseDualResidual in interface ConvergenceInformationOrBuilderpublic double getLInfComponentwiseDualResidual()
The maximum relative violation of any dual constraint, with an absolute offset, i.e., the l_∞ norm of [violation / (eps_ratio + |objective|)] where eps_ratio = eps_optimal_dual_residual_absolute / eps_optimal_dual_residual_relative
optional double l_inf_componentwise_dual_residual = 25;getLInfComponentwiseDualResidual in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setLInfComponentwiseDualResidual(double value)
The maximum relative violation of any dual constraint, with an absolute offset, i.e., the l_∞ norm of [violation / (eps_ratio + |objective|)] where eps_ratio = eps_optimal_dual_residual_absolute / eps_optimal_dual_residual_relative
optional double l_inf_componentwise_dual_residual = 25;value - The lInfComponentwiseDualResidual to set.public ConvergenceInformation.Builder clearLInfComponentwiseDualResidual()
The maximum relative violation of any dual constraint, with an absolute offset, i.e., the l_∞ norm of [violation / (eps_ratio + |objective|)] where eps_ratio = eps_optimal_dual_residual_absolute / eps_optimal_dual_residual_relative
optional double l_inf_componentwise_dual_residual = 25;public boolean hasLInfPrimalVariable()
The maximum absolute value of the primal variables, i.e., the l_∞ norm. This is useful to detect when the primal iterates are diverging. Divergence of the primal variables could be an algorithmic issue, or indicate that the dual is infeasible.
optional double l_inf_primal_variable = 14;hasLInfPrimalVariable in interface ConvergenceInformationOrBuilderpublic double getLInfPrimalVariable()
The maximum absolute value of the primal variables, i.e., the l_∞ norm. This is useful to detect when the primal iterates are diverging. Divergence of the primal variables could be an algorithmic issue, or indicate that the dual is infeasible.
optional double l_inf_primal_variable = 14;getLInfPrimalVariable in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setLInfPrimalVariable(double value)
The maximum absolute value of the primal variables, i.e., the l_∞ norm. This is useful to detect when the primal iterates are diverging. Divergence of the primal variables could be an algorithmic issue, or indicate that the dual is infeasible.
optional double l_inf_primal_variable = 14;value - The lInfPrimalVariable to set.public ConvergenceInformation.Builder clearLInfPrimalVariable()
The maximum absolute value of the primal variables, i.e., the l_∞ norm. This is useful to detect when the primal iterates are diverging. Divergence of the primal variables could be an algorithmic issue, or indicate that the dual is infeasible.
optional double l_inf_primal_variable = 14;public boolean hasL2PrimalVariable()
The l_2 norm of the primal variables.
optional double l2_primal_variable = 15;hasL2PrimalVariable in interface ConvergenceInformationOrBuilderpublic double getL2PrimalVariable()
The l_2 norm of the primal variables.
optional double l2_primal_variable = 15;getL2PrimalVariable in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setL2PrimalVariable(double value)
The l_2 norm of the primal variables.
optional double l2_primal_variable = 15;value - The l2PrimalVariable to set.public ConvergenceInformation.Builder clearL2PrimalVariable()
The l_2 norm of the primal variables.
optional double l2_primal_variable = 15;public boolean hasLInfDualVariable()
The maximum absolute value of the dual variables, i.e., the l_∞ norm. This is useful to detect when the dual iterates are diverging. Divergence of the dual variables could be an algorithmic issue, or indicate the primal is infeasible.
optional double l_inf_dual_variable = 16;hasLInfDualVariable in interface ConvergenceInformationOrBuilderpublic double getLInfDualVariable()
The maximum absolute value of the dual variables, i.e., the l_∞ norm. This is useful to detect when the dual iterates are diverging. Divergence of the dual variables could be an algorithmic issue, or indicate the primal is infeasible.
optional double l_inf_dual_variable = 16;getLInfDualVariable in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setLInfDualVariable(double value)
The maximum absolute value of the dual variables, i.e., the l_∞ norm. This is useful to detect when the dual iterates are diverging. Divergence of the dual variables could be an algorithmic issue, or indicate the primal is infeasible.
optional double l_inf_dual_variable = 16;value - The lInfDualVariable to set.public ConvergenceInformation.Builder clearLInfDualVariable()
The maximum absolute value of the dual variables, i.e., the l_∞ norm. This is useful to detect when the dual iterates are diverging. Divergence of the dual variables could be an algorithmic issue, or indicate the primal is infeasible.
optional double l_inf_dual_variable = 16;public boolean hasL2DualVariable()
The l_2 norm of the dual variables.
optional double l2_dual_variable = 17;hasL2DualVariable in interface ConvergenceInformationOrBuilderpublic double getL2DualVariable()
The l_2 norm of the dual variables.
optional double l2_dual_variable = 17;getL2DualVariable in interface ConvergenceInformationOrBuilderpublic ConvergenceInformation.Builder setL2DualVariable(double value)
The l_2 norm of the dual variables.
optional double l2_dual_variable = 17;value - The l2DualVariable to set.public ConvergenceInformation.Builder clearL2DualVariable()
The l_2 norm of the dual variables.
optional double l2_dual_variable = 17;Copyright © 2024. All rights reserved.