soutifu.cc 18 KB
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/*! \file soutifu.cc
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 * \brief inversion for source wavelet correction filter
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 * 
 * ----------------------------------------------------------------------------
 * 
 * $Id$
 * \author Thomas Forbriger
 * \date 06/05/2011
 * 
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 * inversion for source wavelet correction filter
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 * 
 * Copyright (c) 2011 by Thomas Forbriger (BFO Schiltach) 
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 *
 * ----
 * SOUTIFU is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version. 
 * 
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 * 
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
 * ----
 *
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 * 
 * REVISIONS and CHANGES 
 *  - 06/05/2011   V1.0   Thomas Forbriger
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 *  - 08/09/2011   V1.1   support format modifiers
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 *  - 30/09/2011   V1.2   support additional time series pairs
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 * 
 * ============================================================================
 */
#define SOUTIFU_VERSION \
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  "SOUTIFU   V1.2   inversion for source wavelet correction filter"
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#define SOUTIFU_CVSID \
  "$Id$"

#include <iostream>
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#include <fstream>
#include <tfxx/error.h>
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#include <tfxx/commandline.h>
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#include <tsioxx/inputoperators.h>
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#include <datrwxx/readany.h>
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#include <datrwxx/writeany.h>
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#include <stfinv/stfinvany.h>

/*----------------------------------------------------------------------*/
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using std::cout;
using std::cerr;
using std::endl;

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/*----------------------------------------------------------------------*/
// debug helper
#define PAROUT( par ) cout << #par << "=" << par << " ";

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/*----------------------------------------------------------------------*/
// function to compare double
// is true if relative residual between a and b is smaller than eps
bool sameineps(const double &a, const double& b, const double& eps=1.e-8)
{
  double reldif=std::abs(a-b);
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  return(reldif<=(std::abs(b*eps)));
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}

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/*----------------------------------------------------------------------*/

struct Options {
  bool verbose, debug, overwrite;
  bool writestf, writeconvolved;
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  bool additionalpairs;
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  std::string stffilename, convolvedfilename, debuglevel;
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  std::string datafileformat, outputfileformat;
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  std::string additionalseries, additionaloutput;
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}; // struct Options

/*----------------------------------------------------------------------*/

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int main(int iargc, char* argv[])
{

  // define usage information
  char usage_text[]=
  {
    SOUTIFU_VERSION "\n"
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    "usage: soutifu [-v] [-o] [-wc f] [-ws f] [--type f] [--Type f]\n"
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    "               [-add f] [-wa f]\n"
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    "               [-DEBUG=level]\n"
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    "               parameters data synthetics" "\n"
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    "   or: soutifu --help|-h" "\n"
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    "   or: soutifu --xhelp | --iohelp" "\n"
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  };

  // define full help text
  char help_text[]=
  {
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    SOUTIFU_CVSID "\n"
    "\n"
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    "Calculate optimized source wavelet correction filter to\n"
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    "minimize misfit between recorded data and synthetic waveforms.\n"
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    "\n"
    "data         name of file containing recorded data\n"
    "synthetics   name of file containing synthetic data\n"
    "parameters   parameterstring to select STF engine\n"
    "             The string consists of an ID selecting one of the\n"
    "             available engines and a set of options an parameters\n"
    "             to be passed to this engine.\n"
    "\n"
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    "--xhelp      print detailed usage instructions for available engines\n"
    "--iohelp     print detailed usage instructions for file input/output\n"
    "\n"
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    "-v           be verbose\n"
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    "-DEBUG=level produce debug output at level \"level\"\n"
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    "-o           overwrite existing output files\n"
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    "--type f     use file format type \"f\" for file input\n"
    "--Type f     use file format type \"f\" for file output\n"
    "             if --Type is not used input and output format will\n"
    "             be the same\n"
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    "-wc f        write convolved synthetics to file \"f\"\n"
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    "-ws f        write source wavelet correction filter \n"
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    "             impulse response to file \"f\"\n"
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    "-add f       read additional time series to be convolved from file \"f\"\n"
    "-wa f        write additional time series after convolved to file \"f\"\n"
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    "\n"
    "Upon input the consistency of recorded and synthetic data are\n"
    "checked. For coordinates only receiver positions relative to\n"
    "source coordinates are checked, not absolute locations.\n"
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  };

  // define commandline options
  using namespace tfxx::cmdline;
  static Declare options[]= 
  {
    // 0: print help
    {"help",arg_no,"-"},
    // 1: verbose mode
    {"v",arg_no,"-"},
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    // 2: overwrite mode
    {"o",arg_no,"-"},
    // 3: file format
    {"type",arg_yes,"sff"},
    // 4: name of convolved synthetics
    {"wc",arg_yes,"-"},
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    // 5: name of source correction filter wavelet file
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    {"ws",arg_yes,"-"},
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    // 6: present full details regarding engines
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    {"xhelp",arg_no,"-"},
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    // 7: present full details
    {"DEBUG",arg_yes,"0"},
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    // 8: file format
    {"Type",arg_yes,"-"},
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    // 9: additional time series to be convolved
    {"add",arg_yes,"-"},
    // 10: output file for additional convolved time series
    {"wa",arg_yes,"-"},
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    // 11: provide full details regarding file i/o
    {"iohelp",arg_no,"-"},
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    {NULL}
  };

  // no arguments? print usage...
  if (iargc<2) 
  {
    cerr << usage_text << endl;
    exit(0);
  }

  // collect options from commandline
  Commandline cmdline(iargc, argv, options);

  // help requested? print full help text...
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  if (cmdline.optset(0) || cmdline.optset(6) || cmdline.optset(11))
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  {
    cerr << usage_text << endl;
    cerr << help_text << endl;
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    datrw::supported_data_types(cerr);
    if (cmdline.optset(11)) { datrw::online_help(cerr); }
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    cerr << endl;
    stfinv::STFEngine::help(cerr);
    cerr << endl;
    if (cmdline.optset(6)) { stfinv::help(cerr); }
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    exit(0);
  }

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  /*----------------------------------------------------------------------*/
  // read options and parameters
  Options opt;
  opt.verbose=cmdline.optset(1);
  opt.overwrite=cmdline.optset(2);
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  opt.datafileformat=cmdline.string_arg(3);
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  opt.writeconvolved=cmdline.optset(4);
  opt.convolvedfilename=cmdline.string_arg(4);
  opt.writestf=cmdline.optset(5);
  opt.stffilename=cmdline.string_arg(5);
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  opt.debug=cmdline.optset(7);
  opt.debuglevel=cmdline.string_arg(7);
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  opt.outputfileformat=opt.datafileformat;
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  if (cmdline.optset(8)) { opt.outputfileformat=cmdline.string_arg(8); }
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  opt.additionalpairs=cmdline.optset(9);
  opt.additionalseries=cmdline.string_arg(9);
  if (cmdline.optset(10))
  {
    TFXX_assert(opt.additionalpairs,
                "ERROR: provide input for additional series");
    opt.additionaloutput=cmdline.string_arg(10);
  }
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  TFXX_assert(cmdline.extra(), "missing parameter string");
  std::string parameters=cmdline.next();
  TFXX_assert(cmdline.extra(), "missing recorded data file name");
  std::string datafilename=cmdline.next();
  TFXX_assert(cmdline.extra(), "missing synthetics data file name");
  std::string syntheticsfilename=cmdline.next();

  /*----------------------------------------------------------------------*/
  // go
  // --
 
  // read input data
  // ---------------
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  typedef aff::Series<float> Tseries;
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  typedef ts::sff::File<Tseries> Tfile;
  Tfile recordeddata;
  Tfile syntheticdata;
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  // input for additional series
  Tfile seriesdata;
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  std::ios_base::openmode iopenmode
    =datrw::ianystream::openmode(opt.datafileformat);
  if (opt.verbose) { cout << "open input file " << datafilename << endl; }
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  {
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    std::ifstream ifs(datafilename.c_str(), iopenmode);
    datrw::ianystream is(ifs, opt.datafileformat);
    recordeddata.read(is.idatstream(), opt.verbose);
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  }

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  if (opt.verbose) { cout << "open input file " << syntheticsfilename << endl; }
  {
    std::ifstream ifs(syntheticsfilename.c_str(), iopenmode);
    datrw::ianystream is(ifs, opt.datafileformat);
    syntheticdata.read(is.idatstream(), opt.verbose);
  }
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  if (opt.additionalpairs)
  {
    if (opt.verbose) 
    { cout << "open input file " << opt.additionalseries << endl; }
    {
      std::ifstream ifs(opt.additionalseries.c_str(), iopenmode);
      datrw::ianystream is(ifs, opt.datafileformat);
      seriesdata.read(is.idatstream(), opt.verbose);
    }
  }

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  // check input data consistency and prepare output files
  // -----------------------------------------------------
  if (opt.verbose) 
  { 
    cout << "check input data consistency,\n"
      << "prepare output data containers, and\n"
      << "prepare waveform data workspace" << endl; 
  }

  // number of traces per file
  TFXX_assert(recordeddata.size() == syntheticdata.size(),
              "ERROR: inconsitent number of traces");
  const unsigned int ntraces=recordeddata.size();

  // output data
  Tfile convolvedsynthetics;
  Tfile stffile;

  // waveform data workspace
  stfinv::Tvectoroftriples vectoroftriples;
  stfinv::Waveform stfwaveform;

  convolvedsynthetics.fileheader=syntheticdata.fileheader;

  // cycle through all traces
  for (unsigned int itrace=0; itrace<ntraces; ++itrace)
  {
    if (opt.verbose)
    {
      cout << "  check trace #" << itrace+1 << endl;
    }
    // create a reference to the time series with trace header for thsi
    // specific trace as read from file
    const Tfile::Ttracevector::Ttimeseries& rdtseries=recordeddata[itrace];
    const Tfile::Ttracevector::Ttimeseries& sdtseries=syntheticdata[itrace];

    // create a time series to be used in the output of convolved synthetics
    // based on the input synthetics; copy trace header
    Tfile::Ttracevector::Ttimeseries cstseries(rdtseries.shape());
    cstseries.Mtraceindex=sdtseries.Mtraceindex;
    cstseries.header=sdtseries.header;

    // place reference in a waveform triple
    stfinv::WaveformTriple tracetriple;
    tracetriple.data=rdtseries;
    tracetriple.synthetics=sdtseries;
    tracetriple.convolvedsynthetics=cstseries;
    tracetriple.header.sampling.dt=rdtseries.header.wid2().dt;
    tracetriple.header.sampling.n=rdtseries.header.wid2().nsamples;

    TFXX_assert((rdtseries.header.wid2().nsamples 
                  == sdtseries.header.wid2().nsamples),
                "ERROR: inconsistent trace size");
    TFXX_assert(sameineps(rdtseries.header.wid2().dt,
                            sdtseries.header.wid2().dt),
                "ERROR: inconsistent sampling interval");

    // read out source coordinates
    tracetriple.header.sx=recordeddata.fileheader.srce().cx;
    tracetriple.header.sy=recordeddata.fileheader.srce().cy;
    tracetriple.header.sz=recordeddata.fileheader.srce().cz;

    // read out receiver coordinates
    tracetriple.header.rx=rdtseries.header.info().cx;
    tracetriple.header.ry=rdtseries.header.info().cy;
    tracetriple.header.rz=rdtseries.header.info().cz;

    // check coordinate consistency
    double ddx=rdtseries.header.info().cx-recordeddata.fileheader.srce().cx;
    double ddy=rdtseries.header.info().cy-recordeddata.fileheader.srce().cy;
    double ddz=rdtseries.header.info().cz-recordeddata.fileheader.srce().cz;
    double sdx=sdtseries.header.info().cx-syntheticdata.fileheader.srce().cx;
    double sdy=sdtseries.header.info().cy-syntheticdata.fileheader.srce().cy;
    double sdz=sdtseries.header.info().cz-syntheticdata.fileheader.srce().cz;
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    if (opt.debug)
    if (!(sameineps(ddx,sdx) && sameineps(ddy,sdy) &&
                 sameineps(ddz,sdz)))
    {
      cout << "NOTICE: ";
      PAROUT(ddx);
      PAROUT(sdx);
      PAROUT(ddy);
      PAROUT(sdy);
      PAROUT(ddz);
      PAROUT(sdz);
      PAROUT(sameineps(ddx,sdx));
      PAROUT(sameineps(ddy,sdy));
      PAROUT(sameineps(ddz,sdz));
      cout << endl;
    }
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    TFXX_assert((sameineps(ddx,sdx) && sameineps(ddy,sdy) &&
                 sameineps(ddz,sdz)),
                "ERROR: inconsistent receiver positions");

    // check time consistency
    TFXX_assert((rdtseries.header.wid2().date 
                == recordeddata.fileheader.srce().date),
                "ERROR: trigger delay not supported");
    TFXX_assert((sdtseries.header.wid2().date 
                == syntheticdata.fileheader.srce().date),
                "ERROR: trigger delay not supported");

    // add this triple to collection
    vectoroftriples.push_back(tracetriple);

    // add this trace to convolved synthetics
    convolvedsynthetics.push_back(cstseries);

    // catch values for stf waveform
    if (itrace==0)
    {
      Tfile::Ttracevector::Ttimeseries stftseries(tracetriple.data.shape()); 

      stfwaveform.sampling.dt=tracetriple.header.sampling.dt;
      stfwaveform.sampling.n=tracetriple.header.sampling.n;
      stfwaveform.series=stftseries;

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      ::sff::WID2 wid2=stftseries.header.wid2();
      wid2.nsamples=stfwaveform.sampling.n;
      wid2.dt=stfwaveform.sampling.dt;
      wid2.date=libtime::now();
      stftseries.header.wid2(wid2);
      ::sff::SRCE srce=stffile.fileheader.srce();
      srce.date=stftseries.header.wid2().date;
      stffile.fileheader.srce(srce);
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      stffile.push_back(stftseries);
    } // if (itrace==0)

  } // for (unsigned int itrace=0; itrace<ntraces; ++itrace)
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  /*----------------------------------------------------------------------*/

  // prepare additional pairs
  Tfile convolvedseries;

  // waveform data workspace
  stfinv::Tvectorofpairs vectorofpairs;
  vectorofpairs.clear();

  if (opt.additionalpairs)
  {

    convolvedseries.fileheader=seriesdata.fileheader;
    if (opt.verbose)
    {
      cout << "prepare additional series to be convolved" << endl;
    }

    // cycle through all traces
    for (unsigned int itrace=0; itrace<seriesdata.size(); ++itrace)
    {
      if (opt.verbose)
      {
        cout << "  check trace #" << itrace+1 << endl;
      }
      // create a reference to the time series with trace header for thsi
      // specific trace as read from file
      const Tfile::Ttracevector::Ttimeseries& sdtseries=seriesdata[itrace];

      // create a time series to be used in the output of convolved synthetics
      // based on the input synthetics; copy trace header
      Tfile::Ttracevector::Ttimeseries cstseries(sdtseries.shape());
      cstseries.Mtraceindex=sdtseries.Mtraceindex;
      cstseries.header=sdtseries.header;

      // place reference in a waveform triple
      stfinv::WaveformPair tracepair;
      tracepair.synthetics=sdtseries;
      tracepair.convolvedsynthetics=cstseries;
      tracepair.sampling.dt=sdtseries.header.wid2().dt;
      tracepair.sampling.n=sdtseries.header.wid2().nsamples;

      // add this triple to collection
      vectorofpairs.push_back(tracepair);

      // add this trace to convolved synthetics
      convolvedseries.push_back(cstseries);

    } // for (unsigned int itrace=0; itrace<seriesdata.size(); ++itrace)

  } // if (opt.additionalpairs)
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  /*----------------------------------------------------------------------*/

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  // create STF engine
  // -----------------
  if (opt.verbose) 
  {
    parameters += ":verbose";
    cout << "create STF engine" << endl; 
  }
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  if (opt.debug) { parameters += ":DEBUG="+opt.debuglevel; }
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  stfinv::STFEngine engine(vectoroftriples, stfwaveform, 
                           vectorofpairs, parameters);
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  // run STF engine
  // --------------
  if (opt.verbose) { cout << "run engine" << endl; }
  engine.run();

  // write results
  // -------------
  
  if (opt.writestf)
  {
    if (opt.verbose) 
    {
      cout << "write STF to file " << opt.stffilename << endl;
    }
    if (!opt.overwrite)
    {
      std::ifstream file(opt.stffilename.c_str(),std::ios_base::in);
      TFXX_assert((!file.good()),"ERROR: output file exists!");
    }
    std::ios_base::openmode oopenmode
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      =datrw::oanystream::openmode(opt.outputfileformat);
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    std::ofstream ofs(opt.stffilename.c_str(), oopenmode);
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    datrw::oanystream os(ofs, opt.outputfileformat, opt.debug);
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    os << stffile.fileheader.srce();
    for (unsigned int itrace=0; itrace<stffile.size(); ++itrace)
    {
      os << stffile[itrace].header.wid2();
      os << stffile[itrace].header.info();
      os << stffile[itrace].series();
    }
  } // if (opt.writestf)

  if (opt.writeconvolved)
  {
    if (opt.verbose) 
    {
      cout << "write convolved synthetics to file " 
        << opt.convolvedfilename << endl;
    }
    if (!opt.overwrite)
    {
      std::ifstream file(opt.convolvedfilename.c_str(),std::ios_base::in);
      TFXX_assert((!file.good()),"ERROR: output file exists!");
    }
    std::ios_base::openmode oopenmode
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      =datrw::oanystream::openmode(opt.outputfileformat);
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    std::ofstream ofs(opt.convolvedfilename.c_str(), oopenmode);
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    datrw::oanystream os(ofs, opt.outputfileformat, opt.debug);
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    os << convolvedsynthetics.fileheader.srce();
    for (unsigned int itrace=0; itrace<convolvedsynthetics.size(); ++itrace)
    {
      os << convolvedsynthetics[itrace].header.wid2();
      os << convolvedsynthetics[itrace].header.info();
      os << convolvedsynthetics[itrace].series();
    }
  } // if (opt.writeconvolved)
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  if (opt.additionalpairs)
  {
    if (opt.verbose) 
    {
      cout << "write additional convolved series to file " 
        << opt.additionaloutput << endl;
    }
    if (!opt.overwrite)
    {
      std::ifstream file(opt.additionaloutput.c_str(),std::ios_base::in);
      TFXX_assert((!file.good()),"ERROR: output file exists!");
    }
    std::ios_base::openmode oopenmode
      =datrw::oanystream::openmode(opt.outputfileformat);
    std::ofstream ofs(opt.additionaloutput.c_str(), oopenmode);
    datrw::oanystream os(ofs, opt.outputfileformat, opt.debug);
    
    os << convolvedseries.fileheader.srce();
    for (unsigned int itrace=0; itrace<convolvedseries.size(); ++itrace)
    {
      os << convolvedseries[itrace].header.wid2();
      os << convolvedseries[itrace].header.info();
      os << convolvedseries[itrace].series();
    }
  } // if (opt.additionalpairs)

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} // main
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/* ----- END OF soutifu.cc ----- */