# # Seaglider conf file # # All non-required command line options specified for glider data # processing can also be specified in a configuration file. Required # options may be overridden with the config file. # # The name of the config file is specified with the --config option. The # scripts that are invoked in the usual login/logout processing all # contain --config ~sgXXX/sgXXX.conf. # # Generated with python Base.py --generate_sample_conf # [base] # # basestation log file, records all levels of notifications #base_log = # # log/display debug messages #debug = 0 # # print status messages to stdout #verbose = 0 # # don't print status messages to stdout #quiet = 0 # # Basestation etc dirctory (master config) #basestation_etc = # # Add netcdf files to mission sqlite db #add_sqlite = 1 # # glider mission directory #mission_dir = # # etc dirctory for a collection of Seagliders #group_etc = # # Delete any successfully uploaded input files #delete_upload_files = 0 # # compass cal file or search to use most recent version of tcm2mat.cal #magcalfile = # # compass cal file or search to use most recent version of scicon.tcm #auxmagcalfile = # # force instrument (glider) id #instrument_id = 0 # # processing priority level (niceness) #nice = 0 # # gzip netcdf files #gzip_netcdf = 0 # # Profiles time to process #profile = 0 # # Processes Version 65 glider format #ver_65 = 0 # # Width of bins #bin_width = 1.0 # # Which half of the profile to use - 1 down, 2 up, 3 both, 4 combine down and up #which_half = 3 # # Launch conversion as a daemon process #daemon = 0 # # Ignore the lock file, if present #ignore_lock = 0 # # Uses the GSW toolbox for all oceanographic calculations. False uses the seawater toolkit #use_gsw = 1 # # Creates per-dive tarballs of processed files - 0 don't create, -1 create, > create fragments of specified size #divetarballs = 0 # # Performs no remote operations (no .urls, .pagers, .mailer, etc.) #local = 0 # # Clean up (delete) intermediate files from working (mission) directory after processing. #clean = 0 # # Optional email address to be inserted into the reply to field email messages #reply_addr = # # Optional domain name to use for email messages #domain_name = # # Optional location to prefix file locations in comp email messages #web_file_location = # # Forces conversion of all dives #force = 0 # # Forces reprocessing of a specific dive number #reprocess = False # # Create the common profile data products #make_dive_profiles = 1 # # Create mission profile output file #make_mission_profile = 0 # # Create mission timeseries output file #make_mission_timeseries = 0 # # Skip running flight model system (FMS) - honor all sg_calib_constants.m variables #skip_flight_model = 0 # # Ignore values derived from FlightModel - honor all sg_calib_constants.m variables. Setting this option implies --skip_flight_model #ignore_flight_model = 0 # # Run flight model using potential density (instead of in-situ) and ignore compressibilty and thermal effects #fm_isopycnal = 0 # # Back up flight directory prior to run #backup_flight = 0 # # Allow FlightModel to reprocess dives when it calculates new parameters #fm_reprocess_dives = 1 # # Skip generation of the KML output #skip_kml = 0 # # Name of netCDF file to process (only honored when --mission_dir is not specified) #netcdf_filename = # # For Mission Energy projection, what is the battery reserve #mission_energy_reserve_percent = 0.15 # # For Mission Energy projection, how many dives back to fit #mission_energy_dives_back = 10 # # For diagnostic change detectors (int P, volmax), ..., how many dives back to fit #mission_trends_dives_back = 10 # # Compress the simple netcdf file #simplencf_compress_output = 0 # [gliderdac] # # GliderDAC base configuration JSON file - common for all Seagliders #gliderdac_base_config = # # GliderDAC project configuration JSON file - common for single study area #gliderdac_project_config = # # GliderDAC deployoment configuration JSON file - specific to the current glider deoployment #gliderdac_deployment_config = # # Directory to place output files in #gliderdac_directory = # # Generated files for delayed submission #delayed_submission = # # Width of bins for GliderDAC file (0.0 indicates timeseries) #gliderdac_bin_width = 0.0 # # Reduce the output to only non-nan observations (not useful with non-CT data) #gliderdac_reduce_output = 1 # [makekml] # # Number of points to skip from gliders through the water track #skip_points = 10 # # KML color string for color track #color = 00ffff # # What targets to plot #targets = all # # Plot the gliders course as a surface track #surface_track = 1 # # Plot the gliders course as a subsurface track #subsurface_track = 0 # # Plot the gliders drift track #drift_track = 1 # # Use the targets file instead of searching for the latest backup targets file #proposed_targets = 0 # # Plot radius circle around targets #target_radius = 1 # # Create KMZ output #compress_output = 1 # # Plot data from per-dive netcdf files #plot_dives = 1 # # Produces a slightly simplified version of the dive track #simplified = 0 # # Use the glider's TGT_LAT/TGT_LON/TGT_RADIUS #use_glider_target = 0 # # Merge in glider SSH kmz #merge_ssh = 1 # [network] # # Compressed logfile decompressor path #network_log_decompressor = # [plotting] # # Plot raw tmicl and pmar data,if available #plot_raw = 0 # # Save SVG versions of plots (matplotlib output only) #save_svg = 0 # # Save PNG versions of plots (plotly output only) #save_png = 0 # # Save JPEG versions of plots (plotly output only) #save_jpg = 0 # # Save versions of plots (plotly output only) #save_webp = 1 # # Save stand alone html files (plotly output only) #compress_div = 1 # # Save stand alone html files (plotly output only) #full_html = 0 # # Plot the freezing point in TS diagrams #plot_freeze_pt = 0 # # Use glider pressure for legato debug plots #plot_legato_use_glider_pressure = 0 # # Override default plot directory location #plot_directory = # # Maximum value for pmar logavg plots y-range #pmar_logavg_max = 100.0 # # Minimum value for pmar logavg plots y-range #pmar_logavg_min = 0.0001 # # Rotate the pitch/roll/heading for the adc2p compass output plot #flip_ad2cp = 1 # # Which dive plots to produce #dive_plots = plot_diveplot,plot_COG,plot_CTW,plot_optode,plot_wetlabs,plot_ocr504i,plot_CTD,plot_TS,plot_TMICL,plot_PMAR,plot_compare_aux,plot_compare_auxb,plot_compare_cp,plot_compare_ad2cp,plot_legato_pressure,plot_legato_data,plot_ctd_corrections,plot_vert_vel,plot_pitch_roll,plot_mag,plot_sbe43, # # Which mission plots to produce #mission_plots = mission_energy,mission_volume,mission_motors,mission_int_sensors,mission_depthangle,mission_map,mission_disk,mission_commlog,mission_profiles,mission_callstats, # # Which type of plots to generate #plot_types = dives,mission, # [simplenetcdf] # # Bin SimpleNetCDF output to this size #simplencf_bin_width = 0.0