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155 lines
4.8 KiB
155 lines
4.8 KiB
#pragma once |
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#include "BFileW.h" |
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#include "actiondep.h" |
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#include <memory> |
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using michlib::BFileW; |
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using michlib::Cos; |
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using michlib::M_PI; |
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ADD_ACTION(GenIntFile, genintfile, ReadIsGrid<Source>); |
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template<class D> MString ActionGenIntFile::DoAction(const CLArgs& args, D& ds) |
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{ |
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auto [reg, regerr] = GetRegion<D>(args); |
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if(regerr.Exist()) return regerr; |
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auto resop = ds.Open(args); |
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if(resop.Exist()) return "Can't open source: " + resop; |
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michlib_internal::ParameterListEx pars; |
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pars.UsePrefix(""); |
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pars.SetParameter("source", args.at("source")); |
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if(!args.contains("out")) return "Output file name not specified"; |
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VelSource mode = VelSource::AUTOSEL; |
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if(args.contains("geostrophic")) |
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{ |
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auto modestr = args.at("geostrophic"); |
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if(modestr == "" || modestr == "ssh") |
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mode = VelSource::GEOSTROPHICSSH; |
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else if(modestr == "surf" || modestr == "surface") |
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mode = VelSource::GEOSTROPHIC; |
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else if(modestr == "nongeo") |
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mode = VelSource::STANDART; |
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else |
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return "Parameter \"geostrophic\" have incorrect value " + modestr; |
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} |
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auto [tindexes, err] = GetTIndexes(ds, args, pars); |
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if(err.Exist()) return err; |
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if(tindexes.size() < 10) return "Too few time moments"; |
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// Check isotropy |
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for(size_t it = 0; it < tindexes.size() - 1; it++) |
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if(ds.Time(tindexes[it + 1]) - ds.Time(tindexes[it]) != ds.Time(tindexes[1]) - ds.Time(tindexes[0])) return "The time step is not isotropic"; |
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std::unique_ptr<const BaseParameters> sourcepars; |
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if constexpr(ParametersSupported<D>) |
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{ |
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if constexpr(ParametersRequiredRegion<D>) |
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{ |
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auto [p, err] = ds.Parameters(pars, args, reg); |
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if(err.Exist()) return err; |
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sourcepars.reset(p); |
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} |
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else |
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{ |
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auto [p, err] = ds.Parameters(pars, args); |
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if(err.Exist()) return err; |
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sourcepars.reset(p); |
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} |
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} |
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auto p = sourcepars.get(); |
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MString name = args.at("out"); |
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BFileW fw; |
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fw.Create(name, 2); |
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fw.SetColumnName(1, "u"); |
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fw.SetColumnName(2, "v"); |
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for(size_t it = 0; it < tindexes.size(); it++) |
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{ |
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auto data = ReadUV(ds, p, tindexes[it], mode); |
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if(!data) return "Can't read data"; |
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if(it == 0) |
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{ |
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real lonb = data.Lon(0, 0), latb = data.Lat(0, 0), lone = data.Lon(data.Nx() - 1, data.Ny() - 1), late = data.Lat(data.Nx() - 1, data.Ny() - 1); |
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fw.UsePrefix(""); |
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fw.SetParameter("nx", data.Nx()); |
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fw.SetParameter("ny", data.Ny()); |
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fw.SetParameter("dx", data.XStep() * 60.0); |
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fw.SetParameter("dy", data.YStep() * 60.0); |
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fw.SetParameter("nt", tindexes.size()); |
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fw.SetParameter("dt", (ds.Time(tindexes[1]) - ds.Time(tindexes[0])).D()); |
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fw.SetParameter("FillValue", data.Fillval()); |
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fw.UsePrefix("Info"); |
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switch(mode) |
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{ |
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case(VelSource::AUTOSEL): |
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{ |
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fw.SetParameter("Mode", "autoselect between standart and geostrophic"); |
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break; |
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} |
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case(VelSource::STANDART): |
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{ |
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fw.SetParameter("Mode", "standart"); |
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break; |
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} |
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case(VelSource::GEOSTROPHIC): |
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{ |
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fw.SetParameter("Mode", "geostrophic"); |
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break; |
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} |
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case(VelSource::GEOSTROPHICSSH): |
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{ |
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fw.SetParameter("Mode", "geostrophic from ssh"); |
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break; |
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} |
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} |
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fw.SetParameter("lonb", lonb); |
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fw.SetParameter("latb", latb); |
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fw.SetParameter("lone", lone); |
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fw.SetParameter("late", late); |
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fw.SetParameter("DataSource", ds.DataTitle()); |
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fw.SetParameter("xy2lon", MString(lonb) + "+%x/60"); |
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fw.SetParameter("xy2lon_rp", MString("POP 60 DIV ") + lonb + " ADD"); |
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fw.SetParameter("lonlat2x", MString("(%lon-") + lonb + ")*60"); |
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fw.SetParameter("xy2lat", MString(latb) + "+%y/60"); |
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fw.SetParameter("xy2lat_rp", MString("EXCH POP 60 DIV ") + latb + " ADD"); |
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fw.SetParameter("lonlat2y", MString("(%lat-") + latb + ")*60"); |
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fw.SetParameter("lonlatuv2dotx", "%u*(0.864/1.852)/Cos(%lat*M_PI/180)"); |
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fw.SetParameter("lonlatuv2doty", "%v*(0.864/1.852)"); |
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fw.SetParameter("dotxdotylonlat2u_rp", "EXCH POP EXCH POP COSD 1.852 0.864 DIV MUL MUL"); |
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fw.SetParameter("dotxdotylonlat2v_rp", "POP POP 1.852 0.864 DIV MUL EXCH POP"); |
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fw.SetParameter("dotxdotylonlat2u", "(1.852/0.864)*Cos(%lat*M_PI/180)*%dotx"); |
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fw.SetParameter("dotxdotylonlat2v", "(1.852/0.864)*%doty"); |
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fw.SetParameter("BeginDate", ds.Time(tindexes.front()).ToTString()); |
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fw.SetParameter("EndDate", ds.Time(tindexes.back()).ToTString()); |
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fw.SetParameter("Timestep", (ds.Time(tindexes[1]) - ds.Time(tindexes[0])).Seconds()); |
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fw.SetParameter("DataID", michlib::UniqueId()); |
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fw.SetParameter("Creation command", args.at("_cmdline")); |
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} |
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for(size_t ilat = 0; ilat < data.Ny(); ilat++) |
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{ |
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for(size_t ilon = 0; ilon < data.Nx(); ilon++) |
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{ |
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if(data.IsCoast(ilon, ilat)) |
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{ |
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fw.Write(data.Fillval()); |
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fw.Write(data.Fillval()); |
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} |
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else |
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{ |
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fw.Write(data.U(ilon, ilat) * (0.864 / 1.852) / Cos(data.Lat(ilon, ilat) * M_PI / 180.0)); |
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fw.Write(data.V(ilon, ilat) * (0.864 / 1.852)); |
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} |
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} |
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} |
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} |
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fw.Finalize(); |
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fw.Close(); |
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return ""; |
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};
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