Trace number 354295

Some explanations

A solver is run under the control of another program named runsolver. runsolver is in charge of imposing the CPU time limit and the memory limit to the solver. It also monitors some information about the process. The trace of the execution of a solver is divided into four (or five) parts:
  1. SOLVER DATA
    This is the output of the solver (stdout and stderr).
    Note that some very long lines in this section may be truncated by your web browser ! In such a case, you may want to use the "Download as text" link to get the trace as a text file.

    When the --timestamp option is passed to the runsolver program, each line output by the solver is prepended with a timestamp which indicates at what time the line was output by the solver. Times are relative to the start of the program, given in seconds, and are wall clock time (not CPU time).

    As some 'v lines' may be very long (sometimes several megabytes), the 'v line' output by your solver may be split on several lines to help limit the size of the trace recorded in the database. In any case, the exact output of your solver is preserved in a trace file.
  2. VERIFIER DATA
    The output of the solver is piped to a verifier program which will search a value line "v " and, if found, will check that the given interpretation satisfies all constraints.
  3. CONVERSION SCRIPT DATA (Optionnal)
    When a conversion script is used, this section shows the messages that were output by the conversion script.
  4. WATCHER DATA
    This is the informations gathered by the runsolver program. It first prints the different limits. There's a first limit on CPU time set to X seconds (see the parameters in the trace). After this time has ellapsed, runsolver sends a SIGTERM and 2 seconds later a SIGKILL to the solver. For safety, there's also another limit set to X+30 seconds which will send a SIGXPU to the solver. The last limit is on the virtual memory used by the process (see the parameters in the trace).
    Every ten seconds, the runsolver process fetches the content of /proc/loadavg, /proc/pid/stat and /proc/pid/statm (see man proc) and prints it as raw data. This is only recorded in case we need to investigate the behaviour of a solver. The memory used by the solver (vsize) is also given every ten seconds.
    When the solver exits, runsolver prints some informations such as status and time. CPU usage is the ratio CPU Time/Real Time.
  5. LAUNCHER DATA
    These informations are related to the script which will launch the solver. The most important informations are the command line given to the solver, the md5sum of the different files and the dump of the /proc/cpuinfo and /proc/meminfo which provides some useful information on the computer.

Solver answer on this benchmark

Solver NameAnswerObjective functionCPU timeWall clock time
bsolo 3.0.16? (MO) 13.7219 13.7307

General information on the benchmark

Namenormalized-PB06/OPT-BIGINT/mps-v2-20-10/
MIPLIB/miplib/normalized-mps-v2-20-10-gen.opb
MD5SUMdfc42b4b35cdbc52ce627bfbd0fd8e3d
Bench CategoryOPT-BIGINT (optimisation, big integers)
Best result obtained on this benchmarkSAT
Best value of the objective obtained on this benchmark68194326759492
Best CPU time to get the best result obtained on this benchmark1800.9
Has Objective FunctionYES
SatisfiableYES
(Un)Satisfiability was provedYES
Best value of the objective function 68194326759492
Optimality of the best value was proved NO
Number of variables19038
Total number of constraints930
Number of constraints which are clauses0
Number of constraints which are cardinality constraints (but not clauses)0
Number of constraints which are nor clauses,nor cardinality constraints930
Minimum length of a constraint5
Maximum length of a constraint264
Number of terms in the objective function 13134
Biggest coefficient in the objective function 3456331981783040
Number of bits for the biggest coefficient in the objective function 52
Sum of the numbers in the objective function 2106245048465744992
Number of bits of the sum of numbers in the objective function 61
Biggest number in a constraint 3456331981783040
Number of bits of the biggest number in a constraint 52
Biggest sum of numbers in a constraint 2106245048465744992
Number of bits of the biggest sum of numbers61
Number of products (including duplicates)0
Sum of products size (including duplicates)0
Number of different products0
Sum of products size0

Solver Data (download as text)

0.00/0.00	c bsolo beta version 3.0.16 - 04/04/2007 : 1458 GMT
0.00/0.00	c Developed by Vasco Manquinho IST/UTL - INESC-ID
0.00/0.00	c type "bsolo -h" for help
0.00/0.00	c Time Limit set via environment variable PBTIMEOUT to 1800
0.00/0.00	c Time Limit set to 1800
0.00/0.00	c Memory Limit set to 1800 MB
0.00/0.00	c Instance file /tmp/evaluation/354295-1176704445/instance-354295-1176704445.opb
0.00/0.00	c File size is 803512 bytes.
0.01/0.03	c Coefficients are big enough for not using lower bounding.
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0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.09	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.01/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.10	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.11	c Coefficients are big enough for not using lower bounding.
0.09/0.12	c Highest Coefficient sum: 2.10625e+18
0.09/0.12	c Parsing was ok!!
0.09/0.12	c Total parsing time: 0.119 s
0.09/0.13	c Var: 19038 Constr: 1080 0/0/1080 Lit: 58116 Watch. Lit: 19566
0.09/0.13	c Obj. Vars: 13134 (68.9883 % of total variables)
2.09/2.10	c Pre-processing Time: 2.104 s
12.40/12.41	c    Confl   Vars     Ctrs     Lits  LPC   W.Lits     Max Learnt Conf/s Time
12.40/12.41	c        0   9033      874    53716   61    41577  107432      0      0 2.10
12.40/12.41	c      100   9033      974    57888   59    41837  118176    100     47 2.12
12.40/12.41	c      251   9033     1125    61986   55    42108  129994    251    117 2.13
12.40/12.41	c      476   9033     1350    68080   50    42558  142994    476    221 2.15
12.40/12.41	c      815   9033     1689    75245   44    43229  157294    815    371 2.19
12.40/12.41	c     1323   9033     2197    86099   39    44204  173024   1323    591 2.23
12.40/12.41	c     2086   9033     2960   104066   35    45731  190327   2086    893 2.33
12.40/12.41	c     3232   9033     4106   132026   32    48001  209360   3232   1325 2.44
12.40/12.41	c Caught signal: 15
12.40/12.41	c  Rst    Confl    NCB      Dec     Ctrs     Lits Learnt Conf/s Time
12.40/12.41	c    7     4376    358    11241     5250   155303   4376    352 12.40
12.40/12.41	s UNKNOWN
12.40/12.41	c Total time: 12.404 s

Verifier Data (download as text)

ERROR: no interpretation found !

Watcher Data (download as text)

runsolver version 3.2.2 (c) roussel@cril.univ-artois.fr

command line: runsolver --timestamp -w ROOT/results/node6/watcher-354295-1176704445 -o ROOT/results/node6/solver-354295-1176704445 -C 1800 -W 3600 -M 1800 --output-limit 1,15 bsolo3.0.16 -t1800 -m1800 /tmp/evaluation/354295-1176704445/instance-354295-1176704445.opb 

Enforcing CPUTime limit (soft limit, will send SIGTERM then SIGKILL): 1800 seconds
Enforcing CPUTime limit (hard limit, will send SIGXCPU): 1830 seconds
Enforcing wall clock limit (soft limit, will send SIGTERM then SIGKILL): 3600 seconds
Enforcing VSIZE limit (soft limit, will send SIGTERM then SIGKILL): 1843200 KiB
Enforcing VSIZE limit (hard limit, stack expansion will fail with SIGSEGV, brk() and mmap() will return ENOMEM): 1894400 KiB
Solver output will be limited to a maximum of 15728640 bytes. The first 1048576 bytes and the last 14680064 bytes will be preserved
Current StackSize limit: 10240 KiB


[startup+0 s]
/proc/loadavg: 0.78 0.95 0.98 3/77 11519
/proc/meminfo: memFree=1794472/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=12524 CPUtime=0
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 369 0 0 0 0 0 0 0 18 0 1 0 146482124 12824576 337 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 2623099 0 0 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 3131 337 282 324 0 2003 0

[startup+0.014445 s]
/proc/loadavg: 0.78 0.95 0.98 3/77 11519
/proc/meminfo: memFree=1794472/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=12812 CPUtime=0.01
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 456 0 0 0 1 0 0 0 18 0 1 0 146482124 13119488 424 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 2623099 0 0 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 3203 424 303 324 0 2075 0
Current children cumulated CPU time (s) 0.01
Current children cumulated vsize (KiB) 12812

[startup+0.101455 s]
/proc/loadavg: 0.78 0.95 0.98 3/77 11519
/proc/meminfo: memFree=1794472/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=6748 CPUtime=0.09
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 1043 0 0 0 9 0 0 0 18 0 1 0 146482124 6909952 1011 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 4294960144 0 0 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 1687 1011 446 324 0 559 0
Current children cumulated CPU time (s) 0.09
Current children cumulated vsize (KiB) 6748

[startup+0.301479 s]
/proc/loadavg: 0.78 0.95 0.98 3/77 11519
/proc/meminfo: memFree=1794472/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=8784 CPUtime=0.29
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 1736 0 0 0 28 1 0 0 19 0 1 0 146482124 8994816 1507 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 4294960144 0 0 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 2196 1507 306 324 0 1265 0
Current children cumulated CPU time (s) 0.29
Current children cumulated vsize (KiB) 8784

[startup+0.701525 s]
/proc/loadavg: 0.78 0.95 0.98 3/77 11519
/proc/meminfo: memFree=1794472/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=8784 CPUtime=0.69
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 1738 0 0 0 68 1 0 0 23 0 1 0 146482124 8994816 1509 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 134551557 0 0 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 2196 1509 306 324 0 1265 0
Current children cumulated CPU time (s) 0.69
Current children cumulated vsize (KiB) 8784

[startup+1.50162 s]
/proc/loadavg: 0.78 0.95 0.98 2/78 11520
/proc/meminfo: memFree=1789664/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=8784 CPUtime=1.49
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 1738 0 0 0 148 1 0 0 25 0 1 0 146482124 8994816 1509 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 134551378 0 0 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 2196 1509 306 324 0 1265 0
Current children cumulated CPU time (s) 1.49
Current children cumulated vsize (KiB) 8784

[startup+3.10281 s]
/proc/loadavg: 0.78 0.95 0.98 2/78 11520
/proc/meminfo: memFree=1789088/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=107236 CPUtime=3.09
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 26674 0 0 0 296 13 0 0 25 0 1 0 146482124 109809664 25991 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 2623099 0 0 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 26809 25992 312 324 0 25878 0
Current children cumulated CPU time (s) 3.09
Current children cumulated vsize (KiB) 107236

[startup+6.30118 s]
/proc/loadavg: 0.80 0.95 0.98 2/78 11520
/proc/meminfo: memFree=1270112/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=697656 CPUtime=6.29
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 174677 0 0 0 556 73 0 0 25 0 1 0 146482124 714399744 172496 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 2623099 0 0 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 174414 172497 312 324 0 173483 0
Current children cumulated CPU time (s) 6.29
Current children cumulated vsize (KiB) 697656



Maximum VSize exceeded: sending SIGTERM then SIGKILL

[startup+12.4019 s]
/proc/loadavg: 0.81 0.95 0.98 3/78 11520
/proc/meminfo: memFree=13416/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=1846836 CPUtime=12.4
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 455757 0 0 0 1052 188 0 0 25 0 1 0 146482124 1891160064 451868 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 2653779 0 0 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 461709 451874 312 324 0 460778 0
Current children cumulated CPU time (s) 12.4
Current children cumulated vsize (KiB) 1846836

Sending SIGTERM to process tree (bottom up)
Sleeping 2 seconds

[startup+12.7019 s]
/proc/loadavg: 0.81 0.95 0.98 3/78 11520
/proc/meminfo: memFree=13416/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=1846676 CPUtime=12.69
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 455802 0 0 0 1081 188 0 0 25 0 1 0 146482124 1890996224 451873 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 2618882 0 16384 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 461669 451873 312 324 0 460738 0
Current children cumulated CPU time (s) 12.69
Current children cumulated vsize (KiB) 1846676

Solver just ended. Dumping a history of the last processes samples

[startup+13.402 s]
/proc/loadavg: 0.81 0.95 0.98 2/79 11521
/proc/meminfo: memFree=16288/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=1846676 CPUtime=13.39
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 455802 0 0 0 1151 188 0 0 25 0 1 0 146482124 1890996224 451873 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 2618882 0 16384 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 461669 451873 312 324 0 460738 0
Current children cumulated CPU time (s) 13.39
Current children cumulated vsize (KiB) 1846676

[startup+13.601 s]
/proc/loadavg: 0.81 0.95 0.98 2/79 11521
/proc/meminfo: memFree=16288/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=1846676 CPUtime=13.59
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 455802 0 0 0 1156 203 0 0 25 0 1 0 146482124 1890996224 252193 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 4294960144 0 16384 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 461669 252193 43883 324 0 460738 0
Current children cumulated CPU time (s) 13.59
Current children cumulated vsize (KiB) 1846676

[startup+13.701 s]
/proc/loadavg: 0.81 0.95 0.98 2/79 11521
/proc/meminfo: memFree=16288/2055924 swapFree=4158252/4192956
[pid=11519] ppid=11517 vsize=1846676 CPUtime=13.69
/proc/11519/stat : 11519 (bsolo3.0.16) R 11517 11519 11459 0 -1 4194304 455802 0 0 0 1156 213 0 0 25 0 1 0 146482124 1890996224 77089 18446744073709551615 134512640 135841103 4294956672 18446744073709551615 4294960144 0 16384 4096 16384 0 0 0 17 1 0 0
/proc/11519/statm: 461669 77089 38768 324 0 460738 0
Current children cumulated CPU time (s) 13.69
Current children cumulated vsize (KiB) 1846676

Child status: 15
Real time (s): 13.7307
CPU time (s): 13.7219
CPU user time (s): 11.5642
CPU system time (s): 2.15767
CPU usage (%): 99.9361
Max. virtual memory (cumulated for all children) (KiB): 1846836

getrusage(RUSAGE_CHILDREN,...) data:
user time used= 11.5642
system time used= 2.15767
maximum resident set size= 0
integral shared memory size= 0
integral unshared data size= 0
integral unshared stack size= 0
page reclaims= 455803
page faults= 0
swaps= 0
block input operations= 0
block output operations= 0
messages sent= 0
messages received= 0
signals received= 0
voluntary context switches= 13
involuntary context switches= 278

runsolver used 0.024996 second user time and 0.055991 second system time

The end

Launcher Data (download as text)

Begin job on node6 on Mon Apr 16 06:20:45 UTC 2007

IDJOB= 354295
IDBENCH= 2475
IDSOLVER= 163
FILE ID= node6/354295-1176704445

PBS_JOBID= 4559439

Free space on /tmp= 66530 MiB

SOLVER NAME= bsolo 3.0.16
BENCH NAME= HOME/pub/bench/PB06//final/normalized-PB06/OPT-BIGINT/mps-v2-20-10/MIPLIB/miplib/normalized-mps-v2-20-10-gen.opb
COMMAND LINE= bsolo3.0.16 -t1800 -m1800 /tmp/evaluation/354295-1176704445/instance-354295-1176704445.opb            
RUNSOLVER COMMAND LINE= runsolver  --timestamp  -w ROOT/results/node6/watcher-354295-1176704445 -o ROOT/results/node6/solver-354295-1176704445 -C 1800 -W 3600 -M 1800 --output-limit 1,15  bsolo3.0.16 -t1800 -m1800 /tmp/evaluation/354295-1176704445/instance-354295-1176704445.opb            

META MD5SUM SOLVER= b11bf0769a124f73ad50b0fdfcd50482
MD5SUM BENCH=  dfc42b4b35cdbc52ce627bfbd0fd8e3d

RANDOM SEED= 7296611

TIME LIMIT= 1800 seconds
MEMORY LIMIT= 1800 MiB

Linux node6.alineos.net 2.6.9-22.EL.rootsmp #1 SMP Mon Oct 3 08:59:52 CEST 2005 x86_64 x86_64 x86_64 GNU/Linux

/proc/cpuinfo:
processor	: 0
vendor_id	: GenuineIntel
cpu family	: 15
model		: 4
model name	:                   Intel(R) Xeon(TM) CPU 3.00GHz
stepping	: 3
cpu MHz		: 3000.232
cache size	: 2048 KB
fpu		: yes
fpu_exception	: yes
cpuid level	: 5
wp		: yes
flags		: fpu vme de pse tsc msr pae mce cx8 apic sep mtrr pge mca cmov pat pse36 clflush dts acpi mmx fxsr sse sse2 ss ht tm syscall nx lm pni monitor ds_cpl cid cx16 xtpr
bogomips	: 5914.62
clflush size	: 64
cache_alignment	: 128
address sizes	: 36 bits physical, 48 bits virtual
power management:

processor	: 1
vendor_id	: GenuineIntel
cpu family	: 15
model		: 4
model name	:                   Intel(R) Xeon(TM) CPU 3.00GHz
stepping	: 3
cpu MHz		: 3000.232
cache size	: 2048 KB
fpu		: yes
fpu_exception	: yes
cpuid level	: 5
wp		: yes
flags		: fpu vme de pse tsc msr pae mce cx8 apic sep mtrr pge mca cmov pat pse36 clflush dts acpi mmx fxsr sse sse2 ss ht tm syscall nx lm pni monitor ds_cpl cid cx16 xtpr
bogomips	: 5586.94
clflush size	: 64
cache_alignment	: 128
address sizes	: 36 bits physical, 48 bits virtual
power management:


/proc/meminfo:
MemTotal:      2055924 kB
MemFree:       1795072 kB
Buffers:         45156 kB
Cached:         131240 kB
SwapCached:       2104 kB
Active:          65320 kB
Inactive:       133940 kB
HighTotal:           0 kB
HighFree:            0 kB
LowTotal:      2055924 kB
LowFree:       1795072 kB
SwapTotal:     4192956 kB
SwapFree:      4158252 kB
Dirty:            5320 kB
Writeback:           0 kB
Mapped:          30188 kB
Slab:            47160 kB
Committed_AS:  6813192 kB
PageTables:       1784 kB
VmallocTotal: 536870911 kB
VmallocUsed:    264952 kB
VmallocChunk: 536605679 kB
HugePages_Total:     0
HugePages_Free:      0
Hugepagesize:     2048 kB

Free space on /tmp at the end= 66530 MiB

End job on node6 on Mon Apr 16 06:20:59 UTC 2007