| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051 | /* * This file is part of the StarPU Handbook. * Copyright (C) 2009--2011  Universit@'e de Bordeaux * Copyright (C) 2010, 2011, 2012, 2013  CNRS * Copyright (C) 2011, 2012 INRIA * See the file version.doxy for copying conditions. *//*! \defgroup API_Theoretical_Lower_Bound_on_Execution_Time Theoretical Lower Bound on Execution Time\brief Compute theoretical upper computation efficiency boundcorresponding to some actual execution.\fn void starpu_bound_start(int deps, int prio)\ingroup API_Theoretical_Lower_Bound_on_Execution_TimeStart recording tasks (resets stats). \p deps tells whetherdependencies should be recorded too (this is quite expensive)\fn void starpu_bound_stop(void)\ingroup API_Theoretical_Lower_Bound_on_Execution_TimeStop recording tasks\fn void starpu_bound_print_dot(FILE *output)\ingroup API_Theoretical_Lower_Bound_on_Execution_TimePrint the DAG that was recorded\fn void starpu_bound_compute(double *res, double *integer_res, int integer)\ingroup API_Theoretical_Lower_Bound_on_Execution_TimeGet theoretical upper bound (in ms) (needs glpk supportdetected by configure script). It returns 0 if some performance modelsare not calibrated.\fn void starpu_bound_print_lp(FILE *output)\ingroup API_Theoretical_Lower_Bound_on_Execution_TimeEmit the Linear Programming system on \p output for the recordedtasks, in the lp format\fn void starpu_bound_print_mps(FILE *output)\ingroup API_Theoretical_Lower_Bound_on_Execution_TimeEmit the Linear Programming system on \p output for the recordedtasks, in the mps format\fn void starpu_bound_print(FILE *output, int integer)\ingroup API_Theoretical_Lower_Bound_on_Execution_TimeEmit statistics of actual execution vs theoretical upper bound.\p integer permits to choose between integer solving (which takes along time but is correct), and relaxed solving (which provides anapproximate solution).*/
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