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210 lines
6.4 KiB
210 lines
6.4 KiB
#pragma once |
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#include "BFileR.h" |
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#include "BFileW.h" |
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#include "actiondep.h" |
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#include "interpolation.h" |
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#include "ncfilew.h" |
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#include "ncfuncs.h" |
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#include <memory> |
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template<class T> |
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concept ReadIsInterpolable = requires { |
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{ |
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std::declval<ReadType<T>>().GridPos(0.0, 0.0) |
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} -> std::convertible_to<struct GridPoint>; |
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}; |
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ADD_ACTION(INT, int, (ReadPSupported<Source> || ReadSupported<Source>)&&ReadIsInterpolable<Source>); |
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template<class D> MString ActionINT::DoAction(const CLArgs& args, D& ds) |
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{ |
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struct TPoint |
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{ |
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struct Point2D p; |
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MDateTime t; |
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real lon0, lat0, dtime; |
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}; |
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MDateTime refdate("1980-01-01"); |
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if(!args.contains("input")) return "No input file given"; |
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michlib::BFileR in; |
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if(in.Open(args.at("input")) != ERR_NOERR) return "Can't open input file " + args.at("input"); |
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std::vector<TPoint> points; |
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struct Region reg; |
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{ |
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michlib::uint loncol = in.Columns(), latcol = in.Columns(), timecol = in.Columns(); |
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michlib::uint lon0col = in.Columns(), lat0col = in.Columns(), dtimecol = in.Columns(); |
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for(uint i = 0; i < in.Columns(); i++) |
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{ |
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if(in.ColumnName(i + 1) == "lon") loncol = i; |
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if(in.ColumnName(i + 1) == "lat") latcol = i; |
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if(in.ColumnName(i + 1) == "rtime") timecol = i; |
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if(in.ColumnName(i + 1) == "lon0") lon0col = i; |
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if(in.ColumnName(i + 1) == "lat0") lat0col = i; |
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if(in.ColumnName(i + 1) == "time") dtimecol = i; |
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} |
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if(loncol >= in.Columns()) return "Lon column not found in input file " + args.at("input"); |
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if(latcol >= in.Columns()) return "Lat column not found in input file " + args.at("input"); |
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if(timecol >= in.Columns()) return "Time column not found in input file " + args.at("input"); |
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if(lon0col >= in.Columns()) return "Lon0 column not found in input file " + args.at("input"); |
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if(lat0col >= in.Columns()) return "Lat0 column not found in input file " + args.at("input"); |
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if(dtimecol >= in.Columns()) return "Age column not found in input file " + args.at("input"); |
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points.resize(in.Rows()); |
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reg.lonb = reg.lone = in[loncol][0]; |
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reg.latb = reg.late = in[latcol][0]; |
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for(uint i = 0; i < in.Rows(); i++) |
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{ |
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points[i].p.x = in[loncol][i]; |
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points[i].p.y = in[latcol][i]; |
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points[i].t = refdate + static_cast<time_t>(michlib::Round(in[timecol][i] * 86400)); |
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points[i].lon0 = in[lon0col][i]; |
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points[i].lat0 = in[lat0col][i]; |
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points[i].dtime = in[dtimecol][i]; |
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reg.lonb = std::min(reg.lonb, points[i].p.x); |
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reg.lone = std::max(reg.lone, points[i].p.x); |
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reg.latb = std::min(reg.latb, points[i].p.y); |
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reg.late = std::max(reg.late, points[i].p.y); |
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} |
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std::ranges::sort(points, {}, &TPoint::t); |
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} |
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in.Close(); |
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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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pars.SetParameter("history", args.at("_cmdline")); |
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MString varstring; |
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if(args.contains("var")) |
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varstring = args.at("var"); |
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else |
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{ |
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if(args.contains("vars")) |
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varstring = args.at("vars"); |
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else |
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{ |
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if constexpr(HasDefVars<D>) |
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varstring = ds.DefaultVars(); |
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else |
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return "Variables not specified"; |
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} |
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} |
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auto vlist = michlib::Split_on_words(varstring, " ,", false); |
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std::vector<MString> vnames{std::make_move_iterator(std::begin(vlist)), std::make_move_iterator(std::end(vlist))}; |
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{ |
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std::set<MString> used; |
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for(const auto& vname: vnames) |
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{ |
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if(used.contains(vname)) return "Duplicate variable " + vname + " in list " + varstring; |
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if(ds.CheckVar(vname) == VarPresence::NONE) return "Variable " + vname + " not exists in this dataset"; |
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used.insert(vname); |
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} |
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} |
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pars.SetParameter("variables", varstring); |
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//int compress = 3; |
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//if(args.contains("compress")) compress = args.at("compress").ToInt(); |
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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.contains("out") ? args.at("out") : "out.bin"; |
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//MString outfmt = args.contains("format") ? args.at("format") : (GetExt(name) == "nc" ? "nc" : "bin"); |
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size_t loind = ds.NTimes(), hiind = ds.NTimes(), curind = 0; |
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michlib::BFileW fw; |
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const MDateTime first = ds.Time(0), last = ds.Time(ds.NTimes() - 1); |
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std::vector<LinearInterpolator<ReadType<D>>> lo, hi; |
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{ |
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size_t ic = 0; |
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fw.Create(name, 6 + vnames.size()); |
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fw.SetColumnName(++ic, "lon0"); |
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fw.SetColumnName(++ic, "lat0"); |
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fw.SetColumnName(++ic, "lon"); |
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fw.SetColumnName(++ic, "lat"); |
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fw.SetColumnName(++ic, "time"); |
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fw.SetColumnName(++ic, "rtime"); |
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for(size_t i = 0; i < vnames.size(); i++) fw.SetColumnName(++ic, vnames[i]); |
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fw.SetParameters(pars); |
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} |
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for(size_t i = 0; i < points.size(); i++) |
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{ |
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if(points[i].t < first || points[i].t > last) continue; |
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while(!(points[i].t >= ds.Time(curind) && points[i].t <= ds.Time(curind + 1))) curind++; |
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if(curind != loind && curind != hiind) |
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{ |
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loind = curind; |
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hiind = curind + 1; |
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{ |
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auto temp = Read(ds, vnames, p, loind); |
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if(temp.size() != vnames.size()) return "Can't read data"; |
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//lo.resize(temp.size()); |
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for(size_t j = 0; j < temp.size(); j++) lo.emplace_back(std::move(temp[j])); |
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} |
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{ |
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auto temp = Read(ds, vnames, p, hiind); |
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if(temp.size() != vnames.size()) return "Can't read data"; |
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//hi.resize(temp.size()); |
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for(size_t j = 0; j < temp.size(); j++) hi.emplace_back(std::move(temp[j])); |
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} |
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} |
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else if(curind == hiind) |
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{ |
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loind = curind; |
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hiind = curind + 1; |
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lo = std::move(hi); |
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{ |
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auto temp = Read(ds, vnames, p, hiind); |
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if(temp.size() != vnames.size()) return "Can't read data"; |
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//hi.resize(temp.size()); |
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for(size_t j = 0; j < temp.size(); j++) hi.emplace_back(std::move(temp[j])); |
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} |
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} |
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auto step = ds.Time(hiind) - ds.Time(loind); |
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auto delta = points[i].t - ds.Time(loind); |
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real trel = static_cast<real>(delta) / static_cast<real>(step); |
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fw.Write(points[i].lon0); |
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fw.Write(points[i].lat0); |
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fw.Write(points[i].p.x); |
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fw.Write(points[i].p.y); |
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fw.Write(points[i].dtime); |
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fw.Write(DeltaDates(refdate, points[i].t)); |
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for(size_t iv = 0; iv < lo.size(); iv++) |
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{ |
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real vlo = lo[iv](points[i].p); |
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real vhi = hi[iv](points[i].p); |
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fw.Write(vlo + (vhi - vlo) * trel); |
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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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