This option specifies the first line written to gamsnext. The default is an empty string and the first line is not written. This option instructs GAMS to save a point format GDX file that contains the information on the current solution point. This option specifies the name of a work file that was written with the option save that will be used to restart the GAMS program. For more information including examples, see chapter The Save and Restart Feature. This option triggers an objective function reformulation.
Note that the default value is zero and the range is [ , ]. This is done via a separate thread that runs periodically to construct the GAMS process tree and compute the memory usage for each process in it. There is some overhead with this so it is suggested to use this option only when needed and with a procTreeMemTicks value not smaller than the default. This option is mostly used in combination with submissions to the NEOS server. Setting this option to 1 allows to submit NEOS jobs with a restart file even if the NEOS version is somewhat older than the local GAMS version. This option gives the name of a privacy license file that contains file encryption codes.
The double dash parameters supersede these parameters. Signals the solver to make use of a partial or near-integer-feasible solution stored in current variable values to get a quick integer-feasible point. The exact form of implementation depends on the solver and may be partly controlled by solver settings or options. Note that GAMS will search for any referenced sysinclude file in the directory mydir.
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Note that in cases where both options workfactor and workSpace are specified, the value for workSpace will take precedence. This option permits users to enter a text for up to 5 user-defined options.
Note that values 3 and 6 are relevant for grid computing. Observe that there are compile-time constants that are associated with this option. When the model instance is saved to the scratch directory , the solution produced by the solve is also written to the scratch directory and read in by GAMS when the execution resumes.
By default GAMS accepts floating-point numbers with arbitrarily many digits and converts them to correctly-rounded double-precision values. This option selects a backward compatible (i.e. pre-GAMS 31) scheme for reading floating-point numbers . Note that as usual, a specification of a solver through an option statement in the GAMS source takes precedence over a specification on the command line. This option statement has the effect that models of the types CNS, DNLP, NLP, QCP, RMIQCP or RMINLP will be solved with Conopt and models of the types LP, RMIP or MIP will be solved with CBC. This option specifies what solver linking conventions are used when GAMS executes a solve statement.
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Therefore the reported solution could be the best, but it is guaranteed only to be within the tolerance of the true optimal solution. Some GAMS solvers implement algorithms (e.g. branch-and-bound) that generate a bound on the objective function value for the best possible solution. Users may access this bound by using the model attribute objEst. In case the solver does not set the attribute, its value is na. This model attribute returns the model instance serial number.
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In the context of the put writing facility, it may be used to set the page width of a put file. Observe that the value of 1 for optFile means that the option file with the name solverName.opt will be used. Here solverName is the name of the respective solver. For example, if the solver CONOPT is used, the name of the respective option file is conopt.opt. However, setting this option may cause the true integer optimum to be missed. This will be the case if at the time the solution algorithm stops, the value of the true integer optimum is within the tolerance specified by optCR of the best current solution.