/* * Copyright (C) 1998 by Southwest Research Institute (SwRI) * * All rights reserved under U.S. Copyright Law and International Conventions. * * The development of this Software was supported by contracts NAG5-3148, * NAG5-6855, NAS8-36840, NAG5-2323, and NAG5-7043 issued on behalf of * the United States Government by its National Aeronautics and Space * Administration. Southwest Research Institute grants to the Government, * and others acting on its behalf, a paid-up nonexclusive, irrevocable, * worldwide license to reproduce, prepare derivative works, and perform * publicly and display publicly, by or on behalf of the Government. * Other than those rights granted to the United States Government, no part * of this Software may be reproduced in any form or by any means, electronic * or mechanical, including photocopying, without permission in writing from * Southwest Research Institute. 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Proscribed countries are set forth in the U.S. Export * Administration Regulations. Countries subject to U.S embargo are: Cuba, * Iran, Iraq, Libya, North Korea, Syria, and the Sudan. This list is subject * to change without further notice from SwRI, and you must comply with the * list as it exists in fact. You certify that you are not on the U.S. * Department of Commerce's Denied Persons List or affiliated lists or on the * U.S. Department of Treasury's Specially Designated Nationals List. You agree * to comply strictly with all U.S. export laws and assume sole responsibilities * for obtaining licenses to export or reexport as may be required. * * General * * These Terms represent the entire understanding relating to the use of the * Software and prevail over any prior or contemporaneous, conflicting or * additional, communications. SwRI can revise these Terms at any time * without notice by updating this posting. * * Trademarks * * The SwRI logo is a trademark of SwRI in the United States and other countries. * */ #ident "@(#) $Id: free_ex_str_noreset.c 22018 2012-12-05 18:59:24Z carrie $ SwRI" #include #include #include "gen_defs.h" #include "libbase_idfs.h" #include "libVIDF.h" /* for header format comparison */ /******************************************************************************* * * * IR_FREE_EX_STRUCTURE_NO_RESET SUBROUTINE * * * * DESCRIPTION * * This routine is called to free all allocated memory associated with the * * experiment_info structure specified by the given parameter. There is no * * resetting of memory pointers to NULL. * * * * INPUT VARIABLES * * struct experiment_info a pointer to the structure that holds specific * * *ex experiment information * * * * USAGE * * ir_free_ex_structure_no_reset (ex) * * * * NECESSARY SUBPROGRAMS * * free () frees previously allocated memory * * close() closes the file associated with the file * * descriptor specified * * ir_free_sensor_tables () frees the array of sensor_tables structures * * ir_free_mode_tables () frees the array of mode_tables structures * * ir_free_ancillary_data() frees memory allocated for all ancillary data * * sources utilized by parent source * * * * EXTERNAL VARIABLES * * None * * * * INTERNAL VARIABLES * * struct fill_sensor pointer to the fill_sensor structure being * * *fptr processed * * struct fill_sensor pointer to the structure being processed for * * *minfo the mode in question * * struct in_fill *mptr pointer to the data level combination being * * processed * * struct fill_discontinuous pointer to the fill_discontinuous structure * * *disc_ptr being processed * * struct start_spin_info *sptr a pointer to the structure which holds all * * spin information for the sensor being processed * * register SDDAS_SHORT i,j looping variables * * * * SUBSYSTEM * * Display Level * * * ******************************************************************************/ void ir_free_ex_structure_no_reset (struct experiment_info *ex) { struct fill_sensor *fptr, *minfo; struct in_fill *mptr; struct fill_discontinuous *disc_ptr; struct start_spin_info *sptr; register SDDAS_SHORT i, j; /***************************************************************/ /* Free the memory that holds the non-array table definition */ /* information for each table defined for the data source. */ /***************************************************************/ if (ex->bmem.base_inst_tbl_info != NO_MEMORY) free (ex->bmem.base_inst_tbl_info); /***************************************************************/ /* Free word length information and cal. set information. */ /***************************************************************/ if (ex->cal_target != NO_MEMORY) free ((void *) ex->cal_target); if (ex->cal_wlen != NO_MEMORY) free ((void *) ex->cal_wlen); if (ex->cal_scope != NO_MEMORY) free ((void *) ex->cal_scope); if (ex->cal_d_type != NO_MEMORY) free ((void *) ex->cal_d_type); if (ex->sen_tdw_len != NO_MEMORY) free ((void *) ex->sen_tdw_len); if (ex->d_type != NO_MEMORY) free ((void *) ex->d_type); /****************************************************************/ /* Free sensor status flags. */ /****************************************************************/ if (ex->sen_status != NO_MEMORY) free ((void *) ex->sen_status); /***************************************************************/ /* Free the memory for the header information. */ /***************************************************************/ if (ex->bmem.base_hdr != NO_MEMORY) { if (ex->header_format == ORIGINAL_HEADER && ex->info_ptr->base_idfs_info != NO_MEMORY) free (ex->info_ptr->base_idfs_info); else if (ex->header_format == TENSOR_SINGLE_HEADER && ex->info_ptr->base_tensor_info != NO_MEMORY) free (ex->info_ptr->base_tensor_info); free (ex->bmem.base_hdr); } /***************************************************************/ /* Free the memory for the data information. */ /***************************************************************/ if (ex->bmem.base_data != NO_MEMORY) free (ex->bmem.base_data); /***************************************************************/ /* Free the memory for the fill_data information. */ /***************************************************************/ if (ex->bmem.base_fill_arrays != NO_MEMORY) { if (ex->fill_arrays->base != NO_MEMORY) free (ex->fill_arrays->base); if (ex->fill_arrays->base_data != NO_MEMORY) free (ex->fill_arrays->base_data); /************************************************************/ /* Free any discontinuous data inforation. */ /************************************************************/ if (ex->fill_arrays->base_fill_disc != NO_MEMORY) { disc_ptr = ex->fill_arrays->fill_disc; if (disc_ptr->base_data != NO_MEMORY) free (disc_ptr->base_data); free (ex->fill_arrays->base_fill_disc); } free (ex->bmem.base_fill_arrays); } /***************************************************************/ /* Free the memory for the fill_mode information. */ /***************************************************************/ if (ex->bmem.base_mode_arrays != NO_MEMORY) { if (ex->mode_arrays->base != NO_MEMORY) free (ex->mode_arrays->base); if (ex->mode_arrays->base_data != NO_MEMORY) free (ex->mode_arrays->base_data); free (ex->bmem.base_mode_arrays); } /***************************************************************/ /* Free the memory that holds the pointers to the header and */ /* data elements. */ /***************************************************************/ if (ex->bmem.base_info_ptr != NO_MEMORY) free (ex->bmem.base_info_ptr); /***************************************************************/ /* Free memory that holds the CAL_USE information and the no. */ /* of calibration elements in each calibration set. */ /***************************************************************/ if (ex->bmem.base_cal != NO_MEMORY) free (ex->bmem.base_cal); /***************************************************************/ /* Free memory allocated for sensor time offset values. */ /***************************************************************/ if (ex->bmem.base_time_off != NO_MEMORY) free (ex->bmem.base_time_off); /***************************************************************/ /* Free memory allocated for time per sample (step) values. */ /***************************************************************/ if (ex->swp_times.base_time != NO_MEMORY) free (ex->swp_times.base_time); /***************************************************************/ /* Free memory allocated for start of spin time offset values.*/ /***************************************************************/ if (ex->bmem.base_start_spin_off != NO_MEMORY) free (ex->bmem.base_start_spin_off); /***************************************************************/ /* Free memory allocated for unique version numbers for spin. */ /***************************************************************/ if (ex->bmem.base_start_spin_info != NO_MEMORY) { /**********************************************************************/ /* Free the memory allocated for the pointers to the allocated data */ /* structures, BUT DO NOT FREE THE ACTUAL STRUCTURES. */ /**********************************************************************/ sptr = ex->start_sptr; for (i = 0; i < ex->num_sensor; ++i, ++sptr) { if (sptr->data_ptr != NO_MEMORY) free (sptr->data_ptr); if (sptr->time_per_step.base_time != NO_MEMORY) free (sptr->time_per_step.base_time); } free (ex->bmem.base_start_spin_info); } /***************************************************************/ /* Free memory allocated for constant id and values. */ /***************************************************************/ if (ex->bmem.base_constant != NO_MEMORY) free (ex->bmem.base_constant); /****************************************************************/ /* Free flags and indexes for sensor information. */ /****************************************************************/ if (ex->sensors_needed != NO_MEMORY) free ((void *) ex->sensors_needed); /***************************************************************/ /* Free the array of sensor_tables structures. */ /***************************************************************/ ir_free_sensor_tables (ex); /***************************************************************/ /* Free the array of mode_tables structures. */ /***************************************************************/ ir_free_mode_tables (ex); /***************************************************************/ /* Free information created by fill_sensor_info(). */ /***************************************************************/ if (ex->bmem.base_fill_sen != NO_MEMORY) { for (i = 0; i < ex->num_fill_sensor; ++i) { fptr = ex->fill_sen_ptr + i; /****************************************************************/ /* Free all unique table application flags / data type / cal. */ /* set combinations. */ /****************************************************************/ for (j = 0; j < fptr->num_units; ++j) { mptr = fptr->min_max_app + j; if (mptr->tbl_info != NO_MEMORY) free (mptr->tbl_info); } if (fptr->base_mem != NO_MEMORY) free (fptr->base_mem); } free (ex->bmem.base_fill_sen); ex->num_fill_sensor = 0; } /***************************************************************/ /* Free information created by fill_mode_info(). */ /***************************************************************/ if (ex->bmem.base_mode_info != NO_MEMORY) { for (i = 0; i < ex->num_mode_info; ++i) { minfo = ex->mode_info_ptr + i; /****************************************************************/ /* Free all unique table application flags / data type / cal. */ /* set combinations. */ /****************************************************************/ for (j = 0; j < minfo->num_units; ++j) { mptr = minfo->min_max_app + j; if (mptr->tbl_info != NO_MEMORY) free (mptr->tbl_info); } if (minfo->base_mem != NO_MEMORY) free (minfo->base_mem); } free (ex->bmem.base_mode_info); ex->num_mode_info = 0; } if (ex->bmem.base_timing != NO_MEMORY) free (ex->bmem.base_timing); /****************************************************************/ /* Free the ancillary information associated with the parent */ /* source, if applicable. */ /****************************************************************/ ir_free_ancillary_data (ex); /***************************************************************/ /* Free the information concerning the collapsing over data */ /* dimensions. */ /***************************************************************/ if (ex->bmem.base_collapse != NO_MEMORY) { if (ex->collapse_ptr->base_data != NO_MEMORY) free (ex->collapse_ptr->base_data); if (ex->collapse_ptr->base_theta != NO_MEMORY) free (ex->collapse_ptr->base_theta); if (ex->collapse_ptr->base_sen != NO_MEMORY) free (ex->collapse_ptr->base_sen); if (ex->collapse_ptr->base_4d != NO_MEMORY) free (ex->collapse_ptr->base_4d); if (ex->collapse_ptr->base_double != NO_MEMORY) free (ex->collapse_ptr->base_double); free (ex->bmem.base_collapse); } /***************************************************************/ /* Free the information concerning the binning of the data. */ /***************************************************************/ if (ex->bmem.base_bin != NO_MEMORY) { if (ex->bin_ptr->base_index != NO_MEMORY) free (ex->bin_ptr->base_index); if (ex->bin_ptr->base_bands != NO_MEMORY) free (ex->bin_ptr->base_bands); if (ex->bin_ptr->base_center != NO_MEMORY) free (ex->bin_ptr->base_center); if (ex->bin_ptr->tbl_info != NO_MEMORY) free (ex->bin_ptr->tbl_info); if (ex->bin_ptr->base_vcenter != NO_MEMORY) free (ex->bin_ptr->base_vcenter); if (ex->bin_ptr->base_vband != NO_MEMORY) free (ex->bin_ptr->base_vband); if (ex->bin_ptr->base_vupper_band != NO_MEMORY) free (ex->bin_ptr->base_vupper_band); free (ex->bmem.base_bin); } /***************************************************************/ /* Close the opened data, header and vidf files. */ /***************************************************************/ if (ex->fdh != -1) { close (ex->fdh); ex->fdh = -1; } if (ex->fdd != -1) { close (ex->fdd); ex->fdd = -1; } }