297 lines
18 KiB
Plaintext
297 lines
18 KiB
Plaintext
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Reading the command file, zdrive.inp.phg.fixed04
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Input values:
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Zoltan version 3.601
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zdrive version 1.0
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Total number of Processors = 4
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Performing load balance using hypergraph.
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Parameters:
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lb_approach partition
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hypergraph_package phg
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phg_output_level 1
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phg_coarsening_limit 1
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num_global_parts 7
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phg_coarsepartition_method linear
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remap 0
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Initially distribute input objects in linear fashion (first n/p to process 0, etc).
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Distribute pins so each process gets full rows.
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##########################################################
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ZOLTAN Load balancing method = 11 (HYPERGRAPH)
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Starting iteration 1
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BEFORE load balancing
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DRIVER EVAL: load: max 7.000000 min 6.000000 sum 25.000000
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DRIVER EVAL: objs: max 7 min 6 sum 25
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DRIVER EVAL: cuts: max 12 min 6 sum 36
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Zoltan_LB_Eval_Balance Part count: 7 requested, 4 actual , 4 non-empty
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Zoltan_LB_Eval_Balance Statistics with respect to 4 parts:
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Zoltan_LB_Eval_Balance Min Max Sum Imbalance
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Zoltan_LB_Eval_Balance Number of objects : 6 7 25 1.960
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Zoltan_LB_Eval_Graph Part count: 7 requested, 4 actual, 4 non-empty
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Zoltan_LB_Eval_Graph Statistics with respect to 4 parts:
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Zoltan_LB_Eval_Graph Min Max Sum Imbalance
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Zoltan_LB_Eval_Graph Number of objects : 6 7 25 1.96
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Zoltan_LB_Eval_Graph Statistics with respect to 4 parts:
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Zoltan_LB_Eval_Graph Min Max Average Sum
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Zoltan_LB_Eval_Graph Num boundary objects : 5 6 5.5 22
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Zoltan_LB_Eval_Graph Number of cut edges : 6 12 9 36
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Zoltan_LB_Eval_Graph Num Nbor Parts : 1 2 1.5 6
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Zoltan_LB_Eval_HG Part count: 7 requested, 4 actual, 4 non-empty
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Zoltan_LB_Eval_HG Statistics with respect to 4 parts:
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Zoltan_LB_Eval_HG Min Max Sum Imbalance
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Zoltan_LB_Eval_HG Number of objects : 6 7 25 1.960
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Zoltan_LB_Eval_HG Object weight : 6 7 25 1.960
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Zoltan_LB_Eval_HG CUTN (Sum_edges( (#parts(edge)>1)*ewgt )): 22.000
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Zoltan_LB_Eval_HG CUTL (Sum_edges( (#parts(edge)-1)*ewgt )): 30.000
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Zoltan_LB_Eval_HG CUTL-MAX (Max_parts( comm. volume ): 10.000
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Build configuration:
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ZOLTAN_ID_TYPE: unsigned long (8 bytes)
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ZOLTAN_GNO_TYPE: ssize_t, (8 bytes)
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MPI_Datatype for ZOLTAN_ID_TYPE: MPI_UNSIGNED_LONG
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MPI_Datatype for ZOLTAN_GNO_TYPE: MPI_LONG
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Third party library: ParMetis version 3.1
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Third party library: PTScotch Third party library: Scotch
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ZOLTAN Parameter IMBALANCE_TOL[0] = 1.100000
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ZOLTAN Parameter AUTO_MIGRATE = FALSE
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ZOLTAN Parameter MIGRATE_ONLY_PROC_CHANGES = 1
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ZOLTAN Parameter OBJ_WEIGHT_DIM = 0
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ZOLTAN Parameter EDGE_WEIGHT_DIM = 0
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ZOLTAN Parameter DEBUG_LEVEL = 1
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ZOLTAN Parameter DEBUG_PROCESSOR = 0
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ZOLTAN Parameter DETERMINISTIC = TRUE
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ZOLTAN Parameter TIMER = 1 (wall)
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ZOLTAN Parameter NUM_GID_ENTRIES = 1
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ZOLTAN Parameter NUM_LID_ENTRIES = 1
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ZOLTAN Parameter RETURN_LISTS = IMPORT AND EXPORT
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ZOLTAN Parameter NUM_GLOBAL_PARTS = 7
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ZOLTAN Parameter NUM_LOCAL_PARTS = -1
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ZOLTAN Parameter REMAP = 0
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ZOLTAN Parameter SEED = 1220988223 (1220988223)
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ZOLTAN Parameter LB_APPROACH = PARTITION
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ZOLTAN Parameter HYPERGRAPH_PACKAGE = PHG
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ZOLTAN Parameter PHG_MULTILEVEL = 1
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ZOLTAN Parameter PHG_CUT_OBJECTIVE = connectivity
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ZOLTAN Parameter PHG_OUTPUT_LEVEL = 1
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ZOLTAN Parameter FINAL_OUTPUT = 0
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ZOLTAN Parameter CHECK_GRAPH = 0
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ZOLTAN Parameter CHECK_HYPERGRAPH = 0
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ZOLTAN Parameter PHG_NPROC_VERTEX = -1
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ZOLTAN Parameter PHG_NPROC_EDGE = -1
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ZOLTAN Parameter PHG_COARSENING_LIMIT = 1
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ZOLTAN Parameter PHG_COARSENING_NCANDIDATE = 100
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ZOLTAN Parameter PHG_COARSENING_METHOD = agg
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ZOLTAN Parameter PHG_COARSENING_METHOD_FAST = l-ipm
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ZOLTAN Parameter PHG_VERTEX_VISIT_ORDER = 0
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ZOLTAN Parameter PHG_EDGE_SCALING = 0
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ZOLTAN Parameter PHG_VERTEX_SCALING = 0
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ZOLTAN Parameter PHG_COARSEPARTITION_METHOD = LINEAR
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ZOLTAN Parameter PHG_REFINEMENT_METHOD = fm2
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ZOLTAN Parameter PHG_DIRECT_KWAY = 0
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ZOLTAN Parameter PHG_REFINEMENT_LOOP_LIMIT = 10
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ZOLTAN Parameter PHG_REFINEMENT_MAX_NEG_MOVE = 250
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ZOLTAN Parameter PHG_REFINEMENT_QUALITY = 1.000000
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ZOLTAN Parameter PHG_USE_TIMERS = 0
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ZOLTAN Parameter USE_TIMERS = 0
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ZOLTAN Parameter PHG_EDGE_SIZE_THRESHOLD = 0.250000
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ZOLTAN Parameter PHG_MATCH_EDGE_SIZE_THRESHOLD = 500
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ZOLTAN Parameter PHG_BAL_TOL_ADJUSTMENT = 0.700000
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ZOLTAN Parameter PHG_EDGE_WEIGHT_OPERATION = max
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ZOLTAN Parameter PARKWAY_SERPART = patoh
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ZOLTAN Parameter ADD_OBJ_WEIGHT = none
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ZOLTAN Parameter PHG_RANDOMIZE_INPUT = 0
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ZOLTAN Parameter PHG_PROCESSOR_REDUCTION_LIMIT = 0.000000
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ZOLTAN Parameter PHG_REPART_MULTIPLIER = 100.000000
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ZOLTAN Parameter HYBRID_REDUCTION_FACTOR = 0.100000
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ZOLTAN Parameter HYBRID_REDUCTION_LEVELS = 2147483647
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ZOLTAN Parameter PATOH_ALLOC_POOL0 = 0
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ZOLTAN Parameter PATOH_ALLOC_POOL1 = 0
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 0 |V|= 12 |E|= 12 #pins= 27 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 0 |V|= 12 |E|= 13 #pins= 23 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 0 |V|= 13 |E|= 12 #pins= 24 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 0 |V|= 13 |E|= 13 #pins= 31 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 1 |V|= 4 |E|= 10 #pins= 12 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 1 |V|= 4 |E|= 10 #pins= 13 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 1 |V|= 5 |E|= 10 #pins= 17 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 1 |V|= 5 |E|= 10 #pins= 16 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 2 |V|= 3 |E|= 2 #pins= 4 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 2 |V|= 3 |E|= 2 #pins= 2 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 2 |V|= 3 |E|= 10 #pins= 16 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 2 |V|= 3 |E|= 10 #pins= 10 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 3 |V|= 3 |E|= 6 #pins= 8 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 3 |V|= 3 |E|= 6 #pins= 9 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 3 |V|= 3 |E|= 6 #pins= 10 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 3 |V|= 3 |E|= 6 #pins= 5 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 3 |V|= 3 |E|= 6 #pins= 9 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 3 |V|= 3 |E|= 6 #pins= 8 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 3 |V|= 3 |E|= 6 #pins= 5 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 3 |V|= 3 |E|= 6 #pins= 10 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 2 |V|= 3 |E|= 2 #pins= 4 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 2 |V|= 3 |E|= 2 #pins= 2 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 2 |V|= 3 |E|= 10 #pins= 10 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 2 |V|= 3 |E|= 10 #pins= 16 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 1 |V|= 4 |E|= 10 #pins= 12 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 1 |V|= 5 |E|= 10 #pins= 16 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 1 |V|= 4 |E|= 10 #pins= 13 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 1 |V|= 5 |E|= 10 #pins= 17 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 0 |V|= 12 |E|= 12 #pins= 27 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 0 |V|= 13 |E|= 12 #pins= 24 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 0 |V|= 12 |E|= 13 #pins= 23 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 0 |V|= 13 |E|= 13 #pins= 31 1/agg/LINEAR/fm2 p=2 bal=1.75 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->Rdivide(0, 6): 0.0
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->Rdivide(0, 6): 0.0
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->Rdivide(0, 6): 0.0
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->Rdivide(0, 6): 0.0
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->Left: H(12, 12, 27) OldI: 1.10 NewI: 0.63
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->Left: H(13, 13, 31) OldI: 1.10 NewI: 0.63
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->Left: H(12, 13, 23) OldI: 1.10 NewI: 0.63
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->Left: H(13, 12, 24) OldI: 1.10 NewI: 0.63
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 0 |V|= 13 |E|= 12 #pins= 24 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 0 |V|= 12 |E|= 13 #pins= 23 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 0 |V|= 12 |E|= 12 #pins= 27 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 0 |V|= 13 |E|= 13 #pins= 31 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 1 |V|= 3 |E|= 4 #pins= 4 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 1 |V|= 4 |E|= 4 #pins= 9 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 1 |V|= 3 |E|= 10 #pins= 8 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 1 |V|= 4 |E|= 10 #pins= 18 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 2 |V|= 4 |E|= 8 #pins= 17 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 2 |V|= 2 |E|= 8 #pins= 5 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 2 |V|= 2 |E|= 5 #pins= 2 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 2 |V|= 4 |E|= 5 #pins= 9 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 2 |V|= 2 |E|= 8 #pins= 5 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 2 |V|= 4 |E|= 8 #pins= 17 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 2 |V|= 2 |E|= 5 #pins= 2 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 2 |V|= 4 |E|= 5 #pins= 9 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 1 |V|= 3 |E|= 4 #pins= 4 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 1 |V|= 4 |E|= 4 #pins= 9 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 1 |V|= 4 |E|= 10 #pins= 18 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 1 |V|= 3 |E|= 10 #pins= 8 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 0 |V|= 12 |E|= 12 #pins= 27 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 0 |V|= 13 |E|= 12 #pins= 24 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 0 |V|= 12 |E|= 13 #pins= 23 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 0 |V|= 13 |E|= 13 #pins= 31 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->Rdivide(0, 3): 0.0
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->Rdivide(0, 3): 0.0
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->Rdivide(0, 3): 0.0
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->Rdivide(0, 3): 0.0
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->Left: H(12, 12, 27) OldI: 0.63 NewI: 0.31
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->Left: H(13, 12, 24) OldI: 0.63 NewI: 0.31
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->Left: H(12, 13, 23) OldI: 0.63 NewI: 0.31
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->Left: H(13, 13, 31) OldI: 0.63 NewI: 0.31
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 0 |V|= 13 |E|= 12 #pins= 24 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 0 |V|= 12 |E|= 13 #pins= 23 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 0 |V|= 12 |E|= 12 #pins= 27 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 0 |V|= 13 |E|= 13 #pins= 31 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 1 |V|= 4 |E|= 7 #pins= 12 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 1 |V|= 4 |E|= 11 #pins= 13 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 1 |V|= 4 |E|= 11 #pins= 16 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 1 |V|= 4 |E|= 7 #pins= 9 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 2 |V|= 4 |E|= 5 #pins= 8 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 2 |V|= 2 |E|= 5 #pins= 6 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 2 |V|= 4 |E|= 8 #pins= 14 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 2 |V|= 2 |E|= 8 #pins= 7 1/agg/LINEAR/fm2 p=2...
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->START 3 |V|= 2 |E|= 5 #pins= 6 1/agg/LINEAR/fm2 p=2...
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->START 3 |V|= 4 |E|= 8 #pins= 14 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->START 3 |V|= 4 |E|= 5 #pins= 8 1/agg/LINEAR/fm2 p=2...
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->START 3 |V|= 2 |E|= 8 #pins= 7 1/agg/LINEAR/fm2 p=2...
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->Local Ratio Cut= 0.00 Global Ratio Cut= 0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 3 |V|= 2 |E|= 5 #pins= 6 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 3 |V|= 4 |E|= 5 #pins= 8 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 3 |V|= 2 |E|= 8 #pins= 7 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 3 |V|= 4 |E|= 8 #pins= 14 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 2 |V|= 2 |E|= 5 #pins= 6 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 2 |V|= 4 |E|= 5 #pins= 8 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 2 |V|= 2 |E|= 8 #pins= 7 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
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| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 2 |V|= 4 |E|= 8 #pins= 14 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
|
|
| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 1 |V|= 4 |E|= 7 #pins= 12 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
|
|
| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 1 |V|= 4 |E|= 7 #pins= 9 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
|
|
| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 1 |V|= 4 |E|= 11 #pins= 13 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
|
|
| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 1 |V|= 4 |E|= 11 #pins= 16 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
|
|
| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 0 |V|= 12 |E|= 12 #pins= 27 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
|
|
| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 0 |V|= 13 |E|= 12 #pins= 24 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
|
|
| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 0 |V|= 12 |E|= 13 #pins= 23 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
|
|
| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 0 |V|= 13 |E|= 13 #pins= 31 1/agg/LINEAR/fm2 p=2 bal=2.00 cutl=0.00
|
|
| 1/ 4|: ( 1, 0)/[ 2, 2] ->Rdivide(0, 1): 0.0
|
|
| 2/ 4|: ( 0, 1)/[ 2, 2] ->Rdivide(0, 1): 0.0
|
|
| 0/ 4|: ( 0, 0)/[ 2, 2] ->Rdivide(0, 1): 0.0
|
|
| 3/ 4|: ( 1, 1)/[ 2, 2] ->Rdivide(0, 1): 0.0
|
|
| 0/ 4|: ( 0, 0)/[ 2, 2] ->FINAL 0 |V|= 12 |E|= 12 #pins= 27 agg/LINEAR/fm2 p=7 bal=7.00 cutl=0.00
|
|
| 1/ 4|: ( 1, 0)/[ 2, 2] ->FINAL 0 |V|= 13 |E|= 12 #pins= 24 agg/LINEAR/fm2 p=7 bal=7.00 cutl=0.00
|
|
| 2/ 4|: ( 0, 1)/[ 2, 2] ->FINAL 0 |V|= 12 |E|= 13 #pins= 23 agg/LINEAR/fm2 p=7 bal=7.00 cutl=0.00
|
|
| 3/ 4|: ( 1, 1)/[ 2, 2] ->FINAL 0 |V|= 13 |E|= 13 #pins= 31 agg/LINEAR/fm2 p=7 bal=7.00 cutl=0.00
|
|
Proc 2: Calls to malloc = 2807, Calls to free = 2807
|
|
Proc 1: Calls to malloc = 3160, Calls to free = 3160
|
|
Proc 3: Calls to malloc = 2820, Calls to free = 2820
|
|
Proc 0: Calls to malloc = 3174, Calls to free = 3174
|
|
|
|
DRIVER: Zoltan_LB_Partition time = 0.049572
|
|
DRIVER: new_decomp 1 Min/Max Import: 0 19
|
|
DRIVER: new_decomp 1 Min/Max Export: 0 7
|
|
DRIVER: Total migration time = 0.00183702
|
|
0: All fixed objects are correct.
|
|
|
|
AFTER load balancing
|
|
DRIVER EVAL: load: max 25.000000 min 0.000000 sum 25.000000
|
|
DRIVER EVAL: objs: max 25 min 0 sum 25
|
|
DRIVER EVAL: cuts: max 0 min 0 sum 0
|
|
|
|
Zoltan_LB_Eval_Balance Part count: 7 requested, 2 actual , 1 non-empty
|
|
Zoltan_LB_Eval_Balance Statistics with respect to 2 parts:
|
|
Zoltan_LB_Eval_Balance Min Max Sum Imbalance
|
|
Zoltan_LB_Eval_Balance Number of objects : 0 25 25 7.000
|
|
|
|
|
|
|
|
Zoltan_LB_Eval_Graph Part count: 7 requested, 2 actual, 1 non-empty
|
|
Zoltan_LB_Eval_Graph Statistics with respect to 2 parts:
|
|
Zoltan_LB_Eval_Graph Min Max Sum Imbalance
|
|
Zoltan_LB_Eval_Graph Number of objects : 0 25 25 7
|
|
|
|
Zoltan_LB_Eval_Graph Statistics with respect to 2 parts:
|
|
Zoltan_LB_Eval_Graph Min Max Average Sum
|
|
Zoltan_LB_Eval_Graph Num boundary objects : 0 0 0 0
|
|
Zoltan_LB_Eval_Graph Number of cut edges : 0 0 0 0
|
|
Zoltan_LB_Eval_Graph Num Nbor Parts : 0 0 0 0
|
|
|
|
|
|
|
|
Zoltan_LB_Eval_HG Part count: 7 requested, 2 actual, 1 non-empty
|
|
Zoltan_LB_Eval_HG Statistics with respect to 2 parts:
|
|
Zoltan_LB_Eval_HG Min Max Sum Imbalance
|
|
Zoltan_LB_Eval_HG Number of objects : 0 25 25 7.000
|
|
Zoltan_LB_Eval_HG Object weight : 0 25 25 7.000
|
|
|
|
Zoltan_LB_Eval_HG CUTN (Sum_edges( (#parts(edge)>1)*ewgt )): 0.000
|
|
Zoltan_LB_Eval_HG CUTL (Sum_edges( (#parts(edge)-1)*ewgt )): 0.000
|
|
Zoltan_LB_Eval_HG CUTL-MAX (Max_parts( comm. volume ): 0.000
|
|
|
|
|
|
FILE zdrive.inp.phg.fixed04: Total: 4.957199e-02 seconds in Partitioning
|
|
FILE zdrive.inp.phg.fixed04: Average: 4.957199e-02 seconds per Iteration
|