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| | ABSL_FLAG (int64_t, min_cost_flow_alpha, 5, "Divide factor for epsilon at each refine step.") |
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| | ABSL_FLAG (bool, min_cost_flow_check_feasibility, true, "Check that the graph has enough capacity to send all supplies " "and serve all demands. Also check that the sum of supplies " "is equal to the sum of demands.") |
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| | ABSL_FLAG (bool, min_cost_flow_check_balance, true, "Check that the sum of supplies is equal to the sum of demands.") |
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| | ABSL_FLAG (bool, min_cost_flow_check_costs, true, "Check that the magnitude of the costs will not exceed the " "precision of the machine when scaled (multiplied) by the number " "of nodes") |
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| | ABSL_FLAG (bool, min_cost_flow_check_result, true, "Check that the result is valid.") |
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◆ ABSL_FLAG() [1/5]
| ABSL_FLAG |
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bool |
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min_cost_flow_check_balance |
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true |
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"Check that the sum of supplies is equal to the sum of demands." |
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) |
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◆ ABSL_FLAG() [2/5]
| ABSL_FLAG |
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bool |
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min_cost_flow_check_costs |
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true |
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"Check that the magnitude of the costs will not exceed the " "precision of the machine when scaled (multiplied) by the number " "of nodes" |
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) |
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◆ ABSL_FLAG() [3/5]
| ABSL_FLAG |
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bool |
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min_cost_flow_check_feasibility |
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true |
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"Check that the graph has enough capacity to send all supplies " "and serve all demands. Also check that the sum of supplies " "is equal to the sum of demands." |
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) |
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◆ ABSL_FLAG() [4/5]
| ABSL_FLAG |
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bool |
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min_cost_flow_check_result |
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true |
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"Check that the result is valid." |
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) |
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◆ ABSL_FLAG() [5/5]
| ABSL_FLAG |
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int64_t |
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min_cost_flow_alpha |
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5 |
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"Divide factor for epsilon at each refine step." |
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) |
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