<trid="row_0_0_0_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1approx8_1_1_approx8_net.html"target="_self">Approx8Net</a></td><tdclass="desc">Contains constants and arrays related to the nuclear network </td></tr>
<trid="row_0_0_1_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1approx8_1_1_approx8_network.html"target="_self">Approx8Network</a></td><tdclass="desc">Class for the Approx8 nuclear reaction network </td></tr>
<trid="row_0_0_2_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1approx8_1_1_jacobian.html"target="_self">Jacobian</a></td><tdclass="desc">Functor to calculate the <aclass="el"href="structgridfire_1_1approx8_1_1_jacobian.html"title="Functor to calculate the Jacobian matrix for implicit solvers.">Jacobian</a> matrix for implicit solvers </td></tr>
<trid="row_0_0_3_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1approx8_1_1_o_d_e.html"target="_self">ODE</a></td><tdclass="desc">Functor to calculate the derivatives for the <aclass="el"href="structgridfire_1_1approx8_1_1_o_d_e.html"title="Functor to calculate the derivatives for the ODE solver.">ODE</a> solver </td></tr>
<trid="row_0_3_0_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1io_1_1_m_e_s_a_network_file_parser.html"target="_self">MESANetworkFileParser</a></td><tdclass="desc">A parser for MESA-format network files </td></tr>
<trid="row_0_3_1_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1io_1_1_network_file_parser.html"target="_self">NetworkFileParser</a></td><tdclass="desc">An abstract base class for network file parsers </td></tr>
<trid="row_0_3_2_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1io_1_1_simple_reaction_list_file_parser.html"target="_self">SimpleReactionListFileParser</a></td><tdclass="desc">A parser for simple text files containing a list of reactions </td></tr>
<trid="row_0_4_0_0_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1partition_1_1record_1_1_rauscher_thielemann_partition_data_record.html"target="_self">RauscherThielemannPartitionDataRecord</a></td><tdclass="desc">Packed binary record of Rauscher-Thielemann partition function data for an isotope </td></tr>
<trid="row_0_4_1_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1partition_1_1_composite_partition_function.html"target="_self">CompositePartitionFunction</a></td><tdclass="desc">Combines multiple <aclass="el"href="classgridfire_1_1partition_1_1_partition_function.html"title="Abstract interface for evaluating nuclear partition functions.">PartitionFunction</a> instances into a single composite strategy </td></tr>
<trid="row_0_4_2_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1partition_1_1_ground_state_partition_function.html"target="_self">GroundStatePartitionFunction</a></td><tdclass="desc">Partition function implementation for nuclear ground states </td></tr>
<trid="row_0_4_3_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1partition_1_1_partition_function.html"target="_self">PartitionFunction</a></td><tdclass="desc">Abstract interface for evaluating nuclear partition functions </td></tr>
<trid="row_0_4_4_"class="even"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanid="arr_0_4_4_"class="arrow"onclick="dynsection.toggleFolder('0_4_4_')">►</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1partition_1_1_rauscher_thielemann_partition_function.html"target="_self">RauscherThielemannPartitionFunction</a></td><tdclass="desc">Partition function using Rauscher-Thielemann tabulated normalized G-values </td></tr>
<trid="row_0_5_0_0_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1rates_1_1weak_1_1_bounds_error_info.html"target="_self">BoundsErrorInfo</a></td><tdclass="desc">Detailed bounds information for a BOUNDS_ERROR </td></tr>
<trid="row_0_5_0_1_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1rates_1_1weak_1_1_interpolation_error.html"target="_self">InterpolationError</a></td><tdclass="desc">Interpolation error with optional per-axis bounds details </td></tr>
<trid="row_0_5_0_2_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1rates_1_1weak_1_1_isotope_grid.html"target="_self">IsotopeGrid</a></td><tdclass="desc">Regular 3D grid and payloads for a single isotope (A,Z) </td></tr>
<trid="row_0_5_0_3_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1rates_1_1weak_1_1_rate_data_row.html"target="_self">RateDataRow</a></td><tdclass="desc">One row of the unified weak-rate data table for a specific isotope and state </td></tr>
<trid="row_0_5_0_4_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1rates_1_1weak_1_1_weak_rate_derivatives.html"target="_self">WeakRateDerivatives</a></td><tdclass="desc">Partial derivatives of the log10() fields w.r.t. (T9, log10(rho*Ye), mu_e) </td></tr>
<trid="row_0_5_0_5_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1rates_1_1weak_1_1_weak_rate_interpolator.html"target="_self">WeakRateInterpolator</a></td><tdclass="desc">3D table interpolator for tabulated weak reaction data by isotope </td></tr>
<trid="row_0_5_0_6_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1rates_1_1weak_1_1_weak_rate_payload.html"target="_self">WeakRatePayload</a></td><tdclass="desc">Interpolated weak-rate payload at a single state </td></tr>
<trid="row_0_5_0_7_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanid="arr_0_5_0_7_"class="arrow"onclick="dynsection.toggleFolder('0_5_0_7_')">►</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1rates_1_1weak_1_1_weak_reaction.html"target="_self">WeakReaction</a></td><tdclass="desc">Concrete <aclass="el"href="classgridfire_1_1_reaction.html"title="Represents a single nuclear reaction from a specific data source.">Reaction</a> representing a single weak process (beta±, e−/e+ capture) </td></tr>
<trid="row_0_5_0_7_0_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:80px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1rates_1_1weak_1_1_weak_reaction_1_1_atomic_weak_rate.html"target="_self">AtomicWeakRate</a></td><tdclass="desc">CppAD atomic that wraps weak-rate interpolation for AD evaluation </td></tr>
<trid="row_0_5_0_8_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1rates_1_1weak_1_1_weak_reaction_entry.html"target="_self">WeakReactionEntry</a></td><tdclass="desc">A single weak-reaction data point (type, state, and log values) </td></tr>
<trid="row_0_5_0_9_"class="odd"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1rates_1_1weak_1_1_weak_reaction_map.html"target="_self">WeakReactionMap</a></td><tdclass="desc">Index of available weak reactions keyed by species </td></tr>
<trid="row_0_7_0_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1reaction_1_1_logical_reaclib_reaction.html"target="_self">LogicalReaclibReaction</a></td><tdclass="desc">Represents a "logical" reaction that aggregates rates from multiple sources </td></tr>
<trid="row_0_7_1_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1reaction_1_1_rate_coefficient_set.html"target="_self">RateCoefficientSet</a></td><tdclass="desc">Holds the seven coefficients for the REACLIB rate equation </td></tr>
<trid="row_0_7_3_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1reaction_1_1_reaction.html"target="_self">Reaction</a></td><tdclass="desc">Represents a single nuclear reaction from a specific data source </td></tr>
<trid="row_0_8_0_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1screening_1_1_bare_screening_model.html"target="_self">BareScreeningModel</a></td><tdclass="desc">A screening model that applies no screening effect </td></tr>
<trid="row_0_8_2_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1screening_1_1_screening_model.html"target="_self">ScreeningModel</a></td><tdclass="desc">An abstract base class for plasma screening models </td></tr>
<trid="row_0_8_3_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1screening_1_1_weak_screening_model.html"target="_self">WeakScreeningModel</a></td><tdclass="desc">Implements the weak screening model based on the Debye-Hückel approximation </td></tr>
<trid="row_0_9_0_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanid="arr_0_9_0_"class="arrow"onclick="dynsection.toggleFolder('0_9_0_')">►</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1solver_1_1_c_v_o_d_e_solver_strategy.html"target="_self">CVODESolverStrategy</a></td><tdclass="desc">Stiff ODE integrator backed by SUNDIALS CVODE (BDF) for network + energy </td></tr>
<trid="row_0_9_0_0_"class="even"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1solver_1_1_c_v_o_d_e_solver_strategy_1_1_c_v_o_d_e_user_data.html"target="_self">CVODEUserData</a></td><tdclass="desc">A helper struct to pass C++ context to C-style CVODE callbacks </td></tr>
<trid="row_0_9_0_1_"class="even"style="display:none;"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1solver_1_1_c_v_o_d_e_solver_strategy_1_1_timestep_context.html"target="_self">TimestepContext</a></td><tdclass="desc">Immutable view of the current integration state passed to callbacks </td></tr>
<trid="row_0_9_1_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1solver_1_1_network_solver_strategy.html"target="_self">NetworkSolverStrategy</a></td><tdclass="desc">Abstract base class for network solver strategies </td></tr>
<trid="row_0_9_2_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1solver_1_1_solver_context_base.html"target="_self">SolverContextBase</a></td><tdclass="desc">Base class for solver callback contexts </td></tr>
<trid="row_0_10_0_0_0_"class="even"style="display:none;"><tdclass="entry"><spanstyle="width:80px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1trigger_1_1solver_1_1_c_v_o_d_e_1_1_off_diagonal_trigger.html"target="_self">OffDiagonalTrigger</a></td><tdclass="desc">Triggers when any off-diagonal Jacobian entry magnitude exceeds a threshold </td></tr>
<trid="row_0_10_0_0_1_"class="even"style="display:none;"><tdclass="entry"><spanstyle="width:80px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1trigger_1_1solver_1_1_c_v_o_d_e_1_1_simulation_time_trigger.html"target="_self">SimulationTimeTrigger</a></td><tdclass="desc">Triggers when the current simulation time advances by at least a fixed interval </td></tr>
<trid="row_0_10_0_0_2_"class="even"style="display:none;"><tdclass="entry"><spanstyle="width:80px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1trigger_1_1solver_1_1_c_v_o_d_e_1_1_timestep_collapse_trigger.html"target="_self">TimestepCollapseTrigger</a></td><tdclass="desc">Triggers when the timestep deviates from its recent average beyond a threshold </td></tr>
<trid="row_0_10_1_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1trigger_1_1_and_trigger.html"target="_self">AndTrigger</a></td><tdclass="desc">Logical conjunction of two triggers with short-circuit evaluation </td></tr>
<trid="row_0_10_2_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1trigger_1_1_every_nth_trigger.html"target="_self">EveryNthTrigger</a></td><tdclass="desc">Pass-through trigger that fires every Nth time its child trigger is true </td></tr>
<trid="row_0_10_4_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1trigger_1_1_not_trigger.html"target="_self">NotTrigger</a></td><tdclass="desc">Logical negation of a trigger </td></tr>
<trid="row_0_10_5_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1trigger_1_1_or_trigger.html"target="_self">OrTrigger</a></td><tdclass="desc">Logical disjunction of two triggers with short-circuit evaluation </td></tr>
<trid="row_0_10_6_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1trigger_1_1_trigger.html"target="_self">Trigger</a></td><tdclass="desc">Generic trigger interface for signaling events/conditions during integration </td></tr>
<trid="row_0_12_"class="even"><tdclass="entry"><spanstyle="width:16px;display:inline-block;"> </span><spanid="arr_0_12_"class="arrow"onclick="dynsection.toggleFolder('0_12_')">▼</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_adaptive_engine_view.html"target="_self">AdaptiveEngineView</a></td><tdclass="desc">An engine view that dynamically adapts the reaction network based on runtime conditions </td></tr>
<trid="row_0_12_0_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_adaptive_engine_view_1_1_reaction_flow.html"target="_self">ReactionFlow</a></td><tdclass="desc">A struct to hold a reaction and its flow rate </td></tr>
<trid="row_0_14_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_dynamic_engine.html"target="_self">DynamicEngine</a></td><tdclass="desc">Abstract class for engines supporting Jacobian and stoichiometry operations </td></tr>
<trid="row_0_16_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_engine.html"target="_self">Engine</a></td><tdclass="desc">Abstract base class for a reaction network engine </td></tr>
<trid="row_0_17_"class="even"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_engine_view.html"target="_self">EngineView</a></td><tdclass="desc">Abstract base class for a "view" of a reaction network engine </td></tr>
<trid="row_0_19_"class="even"><tdclass="entry"><spanstyle="width:16px;display:inline-block;"> </span><spanid="arr_0_19_"class="arrow"onclick="dynsection.toggleFolder('0_19_')">▼</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_graph_engine.html"target="_self">GraphEngine</a></td><tdclass="desc">A reaction network engine that uses a graph-based representation </td></tr>
<trid="row_0_20_"class="even"><tdclass="entry"><spanstyle="width:16px;display:inline-block;"> </span><spanid="arr_0_20_"class="arrow"onclick="dynsection.toggleFolder('0_20_')">▼</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_multiscale_partitioning_engine_view.html"target="_self">MultiscalePartitioningEngineView</a></td><tdclass="desc">An engine view that partitions the reaction network into multiple groups based on timescales </td></tr>
<trid="row_0_20_0_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_multiscale_partitioning_engine_view_1_1_cache_stats.html"target="_self">CacheStats</a></td><tdclass="desc">Struct for tracking cache statistics </td></tr>
<trid="row_0_20_1_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_multiscale_partitioning_engine_view_1_1_eigen_functor.html"target="_self">EigenFunctor</a></td><tdclass="desc">Functor for solving QSE abundances using Eigen's nonlinear optimization </td></tr>
<trid="row_0_20_2_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_multiscale_partitioning_engine_view_1_1_q_s_e_group.html"target="_self">QSEGroup</a></td><tdclass="desc">Struct representing a QSE group </td></tr>
<trid="row_0_24_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_network_priming_engine_view.html"target="_self">NetworkPrimingEngineView</a></td><tdclass="desc">Provides a view of a <aclass="el"href="classgridfire_1_1_dynamic_engine.html"title="Abstract class for engines supporting Jacobian and stoichiometry operations.">DynamicEngine</a> filtered to reactions involving a specified priming species </td></tr>
<trid="row_0_25_"class="even"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_priming_report.html"target="_self">PrimingReport</a></td><tdclass="desc">Captures the result of a network priming operation </td></tr>
<trid="row_0_26_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_q_s_e_cache_config.html"target="_self">QSECacheConfig</a></td><tdclass="desc">Configuration struct for the QSE cache </td></tr>
<trid="row_0_27_"class="even"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_q_s_e_cache_key.html"target="_self">QSECacheKey</a></td><tdclass="desc">Key struct for the QSE abundance cache </td></tr>
<trid="row_0_28_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_reaction.html"target="_self">Reaction</a></td><tdclass="desc">Represents a single nuclear reaction from a specific data source </td></tr>
<trid="row_0_30_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_step_derivatives.html"target="_self">StepDerivatives</a></td><tdclass="desc">Structure holding derivatives and energy generation for a network step </td></tr>
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