1 | #include "sopnamsp.h"
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2 | #include "machdefs.h"
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3 | #include <iostream>
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4 | #include <stdlib.h>
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5 | #include <stdio.h>
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6 | #include <string.h>
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7 | #include <math.h>
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8 | #include <unistd.h>
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9 |
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10 | #include "sophyainit.h"
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11 | #include "timing.h"
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12 | #include "dvlist.h"
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13 | #include "ntuple.h"
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14 | #include "matharr.h"
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15 | #include "randfmt.h"
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16 | //#include "randr48.h"
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17 | #include "srandgen.h"
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18 |
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19 | #include "constcosmo.h"
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20 | #include "geneutils.h"
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21 | #include "genefluct3d.h"
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22 |
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23 | string decodecambarg(string arg,double& h, double& z);
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24 |
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25 | void usage(void);
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26 | void usage(void)
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27 | {
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28 | cout<<"cmvginit3d [...options...]"<<endl
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29 | <<" -a : auto init random seed (needed for multiple simul)"<<endl
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30 | <<" -G typevol: compute Pk(z=0) and apply growth factor in real space"<<endl
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31 | <<" typevol=1 evolved with distance / observateur (def)"<<endl
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32 | <<" typevol=2 evolved with distance to middle of Z planes"<<endl
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33 | <<" else : no evol, spectrum Pk(z=z_median) for all cube (def)"<<endl
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34 | <<" -F : filter spectrum by pixel shape (0=no 1=yes(default)"<<endl
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35 | <<" -K : modify spectrum with Kaiser redshift distortion (default=no)"<<endl
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36 | <<" -x nx,dx : size along x axis (npix,Mpc)"<<endl
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37 | <<" -y ny,dy : size along y axis (npix,Mpc)"<<endl
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38 | <<" if ny or dy <=0 take same value as for x"<<endl
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39 | <<" -z nz,dz : size along z axis (redshift axis, npix,Mpc)"<<endl
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40 | <<" -Z zref : redshift for the center of the simulation cube"<<endl
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41 | <<" -f cambspec.dat,h100tab,ztab : use CAMB file (def: Eisenstein spectrum)"<<endl
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42 | <<" -1 : compute 1D spectrum (default: no)"<<endl
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43 | <<" -2 : compute 2D spectrum (default: no)"<<endl
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44 | <<" -C : go back to cube in FT space and compute P(k) for check (def: do nothing)"<<endl
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45 | <<" -8 sigmaR,R : normalisation du spectre de puissance, R en Mpc"<<endl
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46 | <<" (default sigmaR=1, R=8/h100 Mpc)"<<endl
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47 | <<" -v temp_file.ppf: generate los velocity cube"<<endl
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48 | <<" temporary save cube in temp_file.ppf"<<endl
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49 | <<" -n nent : fill control ntuple with nent entries (def: do not fill)"<<endl
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50 | <<" -O a,b : tell what you want to write"<<endl
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51 | <<" a : write generated fourier cube (_k0)"<<endl
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52 | <<" b : write real space cube dRho/Rho at z (_r0)"<<endl
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53 | <<" a,b= 0 no write, 1 ppf write, 2 fits write, 3 ppf+fits write"<<endl
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54 | <<" -S : write cube slices in PPF format"<<endl
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55 | <<" -o out_base_name : base string for output file name (def: cmvginit3d)"<<endl
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56 | <<" -V : compute variance from real space (for check, default: no)"<<endl
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57 | <<" -T nth : nombre de threads (si compil multi-thread, default: 0)"<<endl
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58 | <<endl;
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59 | }
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60 |
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61 | int main(int narg,char *arg[])
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62 | {
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63 | SophyaInit();
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64 | InitTim();
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65 |
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66 | //-----------------------------------------------------------------
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67 | // *** Survey definition
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68 | long nx=360, ny=-1, nz=64; double dx=1., dy=-1., dz=-1.;
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69 | //long nx=1000, ny=-1, nz=128; double dx=3., dy=-1., dz=6.;
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70 | //long nx=1200, ny=-1, nz=128; double dx=1., dy=-1., dz=3;
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71 |
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72 | // *** Cosmography definition (WMAP)
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73 | unsigned short flat = 0;
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74 | double ob0 = 0.0444356;
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75 | double h100=0.71, om0=0.267804, or0=7.9e-05, ol0=0.73, w0=-1.;
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76 | double zref = 0.5;
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77 | double perc=0.01,dzinc=-1.,dzmax=-1.; unsigned short glorder=4;
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78 |
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79 | // *** Spectrum and variance definition
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80 | double ns = 1., as = 1.;
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81 | double R=8./h100, Rg=R/sqrt(5.);
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82 | double sigmaR = 1.;
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83 |
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84 | double kmin=1e-4,kmax=100.;
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85 | int npt = 1000;
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86 | double eps=1.e-3;
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87 |
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88 | // *** Spectrum read from CAMB file
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89 | string cambfread = "";
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90 |
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91 | // *** type de generation
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92 | int use_growth_factor = 0;
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93 | unsigned short nthread=0;
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94 | int filter_by_pixel = 1;
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95 | bool kaiser_modify = false;
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96 |
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97 | // *** What to do
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98 | bool comptransveloc = false;
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99 | string temporay_file = "cmvginit3d_tmp.ppf";
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100 | // compute: 1=1D spectra, 2=2D spectra,
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101 | // 4=recompute spectra after real space generation
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102 | unsigned short compdspec = 0;
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103 | long ntnent = 0; // fill control NTuple
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104 | bool wslice = false;
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105 | bool compvarreal = false;
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106 | unsigned short whattowrt[2] = {1,1};
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107 | string rootnameout = "cmvobserv3d";
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108 |
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109 | // --- Decodage arguments
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110 | if(narg>0) {
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111 | cout<<"\n--- Arguments: "<<endl;
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112 | for(int i=0;i<narg;i++) cout<<arg[i]<<" ";
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113 | cout<<endl;
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114 | }
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115 | system("date -u");
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116 |
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117 | // --- Choix du generateur aleatoire (a faire ICI imperativement avant AutoInitRand)
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118 | FMTRandGen *RandGen = new FMTRandGen;
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119 | RandGen->SelectGaussianAlgo(C_Gaussian_RandLibSNorm);
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120 | RandomGeneratorInterface::SetGlobalRandGenP(RandGen);
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121 |
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122 | // --- Decodage des arguments
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123 | char c;
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124 | while((c = getopt(narg,arg,"haG:F:Kx:y:z:Z:128:v:n:CO:So:VT:f:")) != -1) {
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125 | int nth = 0;
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126 | switch (c) {
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127 | case 'a' :
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128 | AutoInitRand(5);
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129 | break;
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130 | case 'G' :
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131 | use_growth_factor = atoi(optarg);
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132 | break;
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133 | case 'F' :
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134 | filter_by_pixel = atoi(optarg);
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135 | break;
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136 | case 'K' :
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137 | kaiser_modify = true;
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138 | break;
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139 | case 'x' :
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140 | sscanf(optarg,"%ld,%lf",&nx,&dx);
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141 | break;
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142 | case 'y' :
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143 | sscanf(optarg,"%ld,%lf",&ny,&dy);
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144 | break;
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145 | case 'z' :
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146 | sscanf(optarg,"%ld,%lf",&nz,&dz);
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147 | break;
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148 | case 'Z' :
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149 | zref = atof(optarg);
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150 | break;
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151 | case 'v' :
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152 | comptransveloc = true;
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153 | temporay_file = optarg;
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154 | break;
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155 | case '1' :
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156 | compdspec |= 1;
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157 | break;
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158 | case '2' :
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159 | compdspec |= 2;
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160 | break;
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161 | case 'C' :
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162 | compdspec |= 4;
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163 | break;
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164 | case '8' :
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165 | sscanf(optarg,"%lf,%lf",&sigmaR,&R);
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166 | break;
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167 | case 'V' :
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168 | compvarreal = true;
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169 | break;
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170 | case 'n':
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171 | ntnent = atol(optarg);
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172 | if(ntnent<0) ntnent = 0;
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173 | break;
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174 | case 'O' :
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175 | sscanf(optarg,"%hu,%hu",&whattowrt[0],&whattowrt[1]);
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176 | break;
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177 | case 'S' :
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178 | wslice = true;
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179 | break;
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180 | case 'o' :
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181 | rootnameout = optarg;
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182 | break;
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183 | case 'T' :
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184 | nth = atoi(optarg);
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185 | nthread = (nth<1)? 0: nth;
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186 | break;
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187 | case 'f' :
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188 | cambfread = optarg;
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189 | break;
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190 | case 'h' :
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191 | default :
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192 | usage(); return -1;
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193 | }
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194 | }
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195 |
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196 | //----TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH
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197 | try {
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198 | //----TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH
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199 |
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200 | //-----------------------------------------------------------------
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201 | cout<<endl<<"\n--- Initialisation and parameters"<<endl;
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202 | cout<<"zref="<<zref<<endl;
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203 | cout<<"nx="<<nx<<" dx="<<dx<<" ny="<<ny<<" dy="<<dy<<" nz="<<nz<<" dz="<<dz<<endl;
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204 | cout<<"kmin="<<kmin<<" ("<<log10(kmin)<<"), kmax="<<kmax<<" ("<<log10(kmax)<<") Mpc^-1"<<", npt="<<npt<<endl;
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205 | cout<<"Filter by pixel = "<<filter_by_pixel<<endl;
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206 | if(kaiser_modify) cout<<"Modify spectrum with Kaiser redshift distorted formula"<<endl;
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207 | if(comptransveloc) cout<<"Tansverse velocity generation requested"<<endl;
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208 | if(cambfread.size()>0) cout<<"use CAMB file: cambfread="<<cambfread<<endl;
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209 | cout<<"R="<<R<<" Rg="<<Rg<<" Mpc, sigmaR="<<sigmaR<<endl;
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210 | cout<<"Use_growth_factor = "<<use_growth_factor<<endl;
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211 | cout<<"wslice="<<wslice<<" what?="<<whattowrt[0]<<","<<whattowrt[1]<<endl;
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212 | cout<<"rootnameout="<<rootnameout<<endl;
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213 | ShowRandom();
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214 | cout<<" First random is: "<<drand01()<<endl;
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215 |
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216 | string tagobs = rootnameout + ".ppf";
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217 | cout<<"Writing result in "<<tagobs<<endl;
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218 | POutPersist posobs(tagobs);
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219 |
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220 | //-----------------------------------------------------------------
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221 | cout<<endl<<"\n--- Create Cosmology"<<endl;
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222 |
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223 | CosmoCalc univ(flat,true,zref+1.);
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224 | univ.SetInteg(perc,dzinc,dzmax,glorder);
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225 | univ.SetDynParam(h100,om0,or0,ol0,w0);
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226 | univ.PrtInteg();
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227 | univ.Print();
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228 | double loscomref = univ.Dloscom(zref);
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229 | cout<<"\nzref = "<<zref<<" -> dloscom = "<<loscomref<<" Mpc"<<endl;
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230 | univ.Print(zref);
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231 |
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232 | //-----------------------------------------------------------------
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233 | cout<<endl<<"\n--- Create GrowthFactor"<<endl;
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234 |
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235 | GrowthEisenstein growth(om0,ol0);
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236 | // GrowthEisenstein growth(1.,0.); // D(z) = 1/(1+z)
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237 | double growth_at_z = growth(zref);
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238 | cout<<"...Growth factor at z="<<zref<<" = "<<growth_at_z<<endl;
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239 |
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240 | //-----------------------------------------------------------------
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241 | cout<<endl<<"\n--- Create Spectrum"<<endl;
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242 |
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243 | InitialPowerLaw pkini(ns,as);
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244 |
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245 | TransfertEisenstein tfnos(h100,om0-ob0,ob0,T_CMB_Par,false);
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246 | tfnos.SetNoOscEnv(2);
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247 | TransfertEisenstein tf(h100,om0-ob0,ob0,T_CMB_Par,false);
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248 |
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249 | PkSpecCalc pkznos(pkini,tfnos,growth,zref);
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250 | PkSpectrum* pkz = NULL;
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251 | if(cambfread.size()>0) { // read pk in CAMB file
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252 | double h100tab, ztab;
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253 | string fn = decodecambarg(cambfread,h100tab,ztab);
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254 | if(h100tab<=0.) h100tab = h100;
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255 | PkTabulate* pkzt = new PkTabulate;
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256 | pkzt->ReadCAMB(fn,h100tab,ztab);
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257 | pkzt->SetGrowthFactor(&growth);
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258 | pkzt->SetInterpTyp(2);
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259 | pkzt->SetZ(zref);
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260 | pkz = pkzt;
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261 | // change k limits
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262 | kmin = pkzt->KMin();
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263 | kmax = pkzt->KMax();
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264 | cout<<"Change k limits to kmin="<<kmin<<" kmax="<<kmax<<endl;
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265 | } else { // use Eisenstein pk
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266 | PkSpecCalc* pkze = new PkSpecCalc(pkini,tf,growth,zref);
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267 | pkz = pkze;
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268 | }
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269 |
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270 | //-----------------------------------------------------------------
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271 | cout<<endl<<"\n--- Normalize Spectrum"<<endl;
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272 |
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273 | pkz->SetZ(0.);
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274 | pkznos.SetZ(0.);
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275 |
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276 | double normpkz[2] = {0.,0.};
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277 | for(int i=0;i<2;i++) {
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278 | PkSpectrum* pkvar = NULL; string nam = "";
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279 | if(i==0) pkvar = pkz; else {pkvar = &pkznos; nam = "NoOsc";}
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280 | cout<<endl<<"\n--- Compute variance for Pk "<<nam<<" with top-hat R="<<R<<" at z="<<pkvar->GetZ()<<endl;
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281 | VarianceSpectrum varpk_th(*pkvar,R,VarianceSpectrum::TOPHAT);
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282 | double kfind_th = varpk_th.FindMaximum(kmin,kmax,eps);
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283 | double pkmax_th = varpk_th(kfind_th);
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284 | cout<<"kfind_th = "<<kfind_th<<" ("<<log10(kfind_th)<<"), integrand="<<pkmax_th<<endl;
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285 | double k1=kmin, k2=kmax;
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286 | int rc = varpk_th.FindLimits(pkmax_th/1.e4,k1,k2,eps);
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287 | cout<<"limit_th: rc="<<rc<<" : "<<k1<<" ("<<log10(k1)<<") , "
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288 | <<k2<<" ("<<log10(k2)<<")"<<endl;
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289 | double ldlk = (log10(k2)-log10(k1))/npt;
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290 | varpk_th.SetInteg(0.01,ldlk,-1.,4);
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291 | double sr2 = varpk_th.Variance(k1,k2);
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292 | normpkz[i] = sigmaR*sigmaR/sr2;
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293 | cout<<"varpk_th="<<sr2<<" -> sigma="<<sqrt(sr2)<<" normpkz="<<normpkz[i]<<endl;
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294 | }
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295 | cout<<endl;
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296 |
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297 | if(cambfread.size()>0) {
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298 | pkz->SetScale(1.);
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299 | pkznos.SetScale(normpkz[1]);
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300 | cout<<"Warning: CAMB spectrum, no normalisation applied, scale="<<pkz->GetScale()<<endl;
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301 | } else {
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302 | pkz->SetScale(normpkz[0]);
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303 | pkznos.SetScale(normpkz[0]);
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304 | cout<<"Spectrum normalisation (osc+noosc), scale = "<<pkz->GetScale()<<endl;
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305 | }
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306 |
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307 | {
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308 | Histo hpkz0(log10(kmin),log10(kmax),npt); hpkz0.ReCenterBin();
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309 | FuncToHisto(*pkz,hpkz0,true);
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310 | posobs.PutObject(hpkz0,"hpkz0");
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311 | Histo hpkz0nos(hpkz0);
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312 | FuncToHisto(pkznos,hpkz0nos,true);
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313 | posobs.PutObject(hpkz0nos,"hpkz0nos");
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314 | }
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315 |
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316 | pkz->SetZ(zref);
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317 | pkznos.SetZ(zref);
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318 |
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319 | {
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320 | Histo hpkz(log10(kmin),log10(kmax),npt); hpkz.ReCenterBin();
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321 | FuncToHisto(*pkz,hpkz,true);
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322 | posobs.PutObject(hpkz,"hpkz");
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323 | Histo hpkznos(hpkz);
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324 | FuncToHisto(pkznos,hpkznos,true);
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325 | posobs.PutObject(hpkznos,"hpkznos");
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326 | }
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327 |
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328 | //-----------------------------------------------------------------
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329 | cout<<endl<<"\n--- Compute variance for Pk at z="<<pkz->GetZ()<<endl;
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330 | VarianceSpectrum varpk_int(*pkz,R,VarianceSpectrum::NOFILTER);
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331 | double kfind_int = varpk_int.FindMaximum(kmin,kmax,eps);
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332 | double pkmax_int = varpk_int(kfind_int);
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333 | cout<<"kfind_int = "<<kfind_int<<" ("<<log10(kfind_int)<<"), integrand="<<pkmax_int<<endl;
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334 | double k1int=kmin, k2int=kmax;
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335 | int rcint = varpk_int.FindLimits(pkmax_int/1.e4,k1int,k2int,eps);
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336 | cout<<"limit_int: rc="<<rcint<<" : "<<k1int<<" ("<<log10(k1int)<<") , "
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337 | <<k2int<<" ("<<log10(k2int)<<")"<<endl;
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338 |
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339 | double ldlkint = (log10(k2int)-log10(k1int))/npt;
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340 | varpk_int.SetInteg(0.01,ldlkint,-1.,4);
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341 | double sr2int = varpk_int.Variance(k1int,k2int);
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342 | cout<<"varpk_int="<<sr2int<<" -> sigma="<<sqrt(sr2int)<<endl;
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343 |
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344 | //-----------------------------------------------------------------
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345 |
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346 | PrtTim(">>>> End of definition");
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347 |
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348 | //-----------------------------------------------------------------
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349 | // Le cube et sa cosmlogie
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350 | // FFTW3 (p26): faster if sizes 2^a 3^b 5^c 7^d 11^e 13^f with e+f=0 ou 1
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351 | cout<<endl<<"\n--- Initialisation de GeneFluct3D"<<endl;
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352 |
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353 | GeneFluct3D fluct3d(nx,ny,nz,dx,dy,dz,nthread,2);
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354 | fluct3d.SetCosmology(univ);
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355 | fluct3d.SetGrowthFactor(growth);
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356 | fluct3d.SetObservator(zref,-nz/2.);
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357 | fluct3d.LosComRedshift(0.001,-1);
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358 | //TArray< complex<GEN3D_TYPE> >& pkgen = fluct3d.GetComplexArray();
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359 | //TArray<GEN3D_TYPE>& rgen = fluct3d.GetRealArray();
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360 | cout<<endl; fluct3d.Print();
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361 |
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362 | //-----------------------------------------------------------------
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363 | // Les bins et ranges en k pour les histos 1D et 2D
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364 | double dkmin = fluct3d.GetKincMin();
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365 | double knyqmax = fluct3d.GetKmax();
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366 | long nherr = long(knyqmax/dkmin+0.5);
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367 | cout<<"\nFor HistoErr: d="<<dkmin<<" max="<<knyqmax<<" n="<<nherr<<endl;
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368 |
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369 | double dktmin = fluct3d.GetKTincMin();
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370 | double ktnyqmax = fluct3d.GetKTmax();
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371 | long nherrt = long(ktnyqmax/dktmin+0.5);
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372 | double dkzmin = fluct3d.GetKinc()[2];
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373 | double kznyqmax = fluct3d.GetKnyq()[2];
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374 | long nherrz = long(kznyqmax/dkzmin+0.5);
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375 | cout<<"For Histo2DErr: d="<<dktmin<<","<<dkzmin
|
---|
376 | <<" max="<<ktnyqmax<<","<<kznyqmax<<" n="<<nherrt<<","<<nherrz<<endl;
|
---|
377 | PrtTim(">>>> End Initialisation of GeneFluct3D");
|
---|
378 |
|
---|
379 | //-----------------------------------------------------------------
|
---|
380 | cout<<"\n--- Computing a realization in Fourier space"<<endl;
|
---|
381 | if(use_growth_factor>0) pkz->SetZ(0.); else pkz->SetZ(zref);
|
---|
382 | cout<<"Power spectrum set at redshift: "<<pkz->GetZ()<<endl;
|
---|
383 | fluct3d.ComputeFourier(*pkz);
|
---|
384 | fluct3d.NTupleCheck(posobs,string("ntpkgen"),ntnent);
|
---|
385 | PrtTim(">>>> End Computing a realization in Fourier space");
|
---|
386 |
|
---|
387 | HistoErr hpkgen(0.,knyqmax,nherr);
|
---|
388 | if(compdspec&1) {
|
---|
389 | cout<<"\n--- Checking realization spectra"<<endl;
|
---|
390 | hpkgen.ReCenterBin(); hpkgen.Zero(); hpkgen.Show();
|
---|
391 | fluct3d.ComputeSpectrum(hpkgen);
|
---|
392 | posobs.PutObject(hpkgen,"hpkgen");
|
---|
393 | PrtTim(">>>> End Checking realization 1D spectra");
|
---|
394 | }
|
---|
395 | Histo2DErr hpkgen2(0.,ktnyqmax,nherrt,0.,kznyqmax,nherrz);
|
---|
396 | if(compdspec&2) {
|
---|
397 | cout<<"\n--- Checking realization 2D spectra"<<endl;
|
---|
398 | hpkgen2.ReCenterBin(); hpkgen2.Zero(); hpkgen2.Show();
|
---|
399 | fluct3d.ComputeSpectrum2D(hpkgen2);
|
---|
400 | posobs.PutObject(hpkgen2,"hpkgen2");
|
---|
401 | PrtTim(">>>> End Checking realization 2D spectra");
|
---|
402 | }
|
---|
403 |
|
---|
404 | //-----------------------------------------------------------------
|
---|
405 | bool spec_is_modified = false;
|
---|
406 | if(filter_by_pixel!=0) {
|
---|
407 | cout<<"\n--- Computing convolution by pixel shape"<<endl;
|
---|
408 | fluct3d.FilterByPixel();
|
---|
409 | spec_is_modified = true;
|
---|
410 | PrtTim(">>>> End Computing convolution by pixel shape");
|
---|
411 | }
|
---|
412 |
|
---|
413 | //-----------------------------------------------------------------
|
---|
414 | if(kaiser_modify) {
|
---|
415 | cout<<"\n--- Modify spectrum coeff with Kaiser redshift distorted formula"<<endl;
|
---|
416 | fluct3d.ToRedshiftSpace();
|
---|
417 | spec_is_modified = true;
|
---|
418 | PrtTim(">>>> End Computing Modify spectrum coeff with Kaiser");
|
---|
419 | }
|
---|
420 |
|
---|
421 | //-----------------------------------------------------------------
|
---|
422 | if(spec_is_modified) fluct3d.NTupleCheck(posobs,string("ntpkgenf"),ntnent);
|
---|
423 | if(compdspec&1) {
|
---|
424 | HistoErr hpkgenf(hpkgen);
|
---|
425 | if(spec_is_modified) {
|
---|
426 | cout<<"\n--- Checking realization spectra"<<endl;
|
---|
427 | hpkgenf.Zero(); hpkgenf.Show();
|
---|
428 | fluct3d.ComputeSpectrum(hpkgenf);
|
---|
429 | PrtTim(">>>> End Checking realization 1D spectra");
|
---|
430 | }
|
---|
431 | posobs.PutObject(hpkgenf,"hpkgenf");
|
---|
432 | }
|
---|
433 | if(compdspec&2) {
|
---|
434 | Histo2DErr hpkgenf2(hpkgen2);
|
---|
435 | if(spec_is_modified) {
|
---|
436 | cout<<"\n--- Checking realization 2D spectra"<<endl;
|
---|
437 | hpkgenf2.Zero(); hpkgenf2.Show();
|
---|
438 | fluct3d.ComputeSpectrum2D(hpkgenf2);
|
---|
439 | PrtTim(">>>> End Checking realization 2D spectra");
|
---|
440 | }
|
---|
441 | posobs.PutObject(hpkgenf2,"hpkgenf2");
|
---|
442 | }
|
---|
443 |
|
---|
444 | //-----------------------------------------------------------------
|
---|
445 | if(whattowrt[0]&1) {
|
---|
446 | tagobs = rootnameout + "_k.ppf";
|
---|
447 | fluct3d.WritePPF(tagobs,false);
|
---|
448 | PrtTim(">>>> End WritePPF");
|
---|
449 | temporay_file = tagobs;
|
---|
450 | }
|
---|
451 | if(whattowrt[0]&2) {
|
---|
452 | tagobs = "!" + rootnameout + "_k.fits";
|
---|
453 | fluct3d.WriteFits(tagobs);
|
---|
454 | PrtTim(">>>> End WriteFits");
|
---|
455 | }
|
---|
456 | if(comptransveloc && !(whattowrt[0]&1)) {
|
---|
457 | cout<<">>> Writing FT cube (for transv veloc.) in "<<temporay_file<<endl;
|
---|
458 | fluct3d.WritePPF(temporay_file,false);
|
---|
459 | PrtTim(">>>> End Writing FT cube");
|
---|
460 | }
|
---|
461 |
|
---|
462 | //-----------------------------------------------------------------
|
---|
463 | cout<<"\n--- Computing a realization in real space"<<endl;
|
---|
464 | double vdum1,vdum2;
|
---|
465 | fluct3d.ComputeReal();
|
---|
466 | fluct3d.MinMax(vdum1,vdum2);
|
---|
467 | fluct3d.MeanSigma2(vdum1,vdum2);
|
---|
468 | fluct3d.NTupleCheck(posobs,string("ntreal"),ntnent);
|
---|
469 | PrtTim(">>>> End Computing a realization in real space");
|
---|
470 |
|
---|
471 | if(use_growth_factor>0) {
|
---|
472 | cout<<"\n--- Apply Growth factor"<<endl;
|
---|
473 | cout<<"...D(z=0)="<<growth(0.)<<" D(z="<<zref<<")="<<growth(zref)<<endl;
|
---|
474 | fluct3d.ApplyGrowthFactor(use_growth_factor);
|
---|
475 | fluct3d.MinMax(vdum1,vdum2);
|
---|
476 | fluct3d.MeanSigma2(vdum1,vdum2);
|
---|
477 | fluct3d.NTupleCheck(posobs,string("ntgrow"),ntnent);
|
---|
478 | PrtTim(">>>> End Applying growth factor");
|
---|
479 | }
|
---|
480 |
|
---|
481 | if(whattowrt[1]&1) {
|
---|
482 | tagobs = rootnameout + "_r.ppf";
|
---|
483 | fluct3d.WritePPF(tagobs,true);
|
---|
484 | PrtTim(">>>> End WritePPF");
|
---|
485 | }
|
---|
486 | if(whattowrt[1]&2) {
|
---|
487 | tagobs = "!" + rootnameout + "_r.fits";
|
---|
488 | fluct3d.WriteFits(tagobs);
|
---|
489 | PrtTim(">>>> End WriteFits");
|
---|
490 | }
|
---|
491 | if(wslice) {
|
---|
492 | tagobs = rootnameout + "_s_r.ppf";
|
---|
493 | fluct3d.WriteSlicePPF(tagobs);
|
---|
494 | PrtTim(">>>> End WriteSlicePPF");
|
---|
495 | }
|
---|
496 |
|
---|
497 | //-----------------------------------------------------------------
|
---|
498 | if(compvarreal) {
|
---|
499 | cout<<"\n--- Check variance sigmaR in real space"<<endl;
|
---|
500 | double varr;
|
---|
501 | fluct3d.VarianceFrReal(R,varr);
|
---|
502 | cout<<"...Computed variance = "<<varr
|
---|
503 | <<" , Theorical variance at (z=0) = "<<pow(sigmaR,2.)
|
---|
504 | <<" , at (z="<<zref<<") = "<<pow(sigmaR*growth_at_z,2.)<<endl;
|
---|
505 | PrtTim(">>>> End Check variance sigmaR in real space");
|
---|
506 | }
|
---|
507 |
|
---|
508 | //-----------------------------------------------------------------
|
---|
509 | if(compdspec&4) { // ATTENTION: d_rho/rho ecrase
|
---|
510 | cout<<endl<<"\n--- ReComputing spectrum from real space"
|
---|
511 | <<"\n Warning: REAL SPACE CUBE OVERWRITTEN"<<endl;
|
---|
512 | fluct3d.ReComputeFourier();
|
---|
513 | fluct3d.NTupleCheck(posobs,string("ntpkrec"),ntnent);
|
---|
514 | PrtTim(">>>> End ReComputing spectrum");
|
---|
515 |
|
---|
516 | cout<<endl<<"\n--- Computing final spectrum"<<endl;
|
---|
517 | HistoErr hpkrecb(0.,knyqmax,nherr); hpkrecb.Zero();
|
---|
518 | hpkrecb.ReCenterBin(); hpkrecb.Show();
|
---|
519 | fluct3d.ComputeSpectrum(hpkrecb);
|
---|
520 | posobs.PutObject(hpkrecb,"hpkrecb");
|
---|
521 | PrtTim(">>>> End Computing final spectrum");
|
---|
522 |
|
---|
523 | HistoErr hpkrec(hpkrecb);
|
---|
524 | if(filter_by_pixel!=0) {
|
---|
525 | cout<<endl<<"\n--- Computing final spectrum with pixel deconv."<<endl;
|
---|
526 | hpkrec.Zero();
|
---|
527 | fluct3d.ComputeSpectrum(hpkrec,0.,filter_by_pixel);
|
---|
528 | PrtTim(">>>> End Computing final spectrum with pixel deconv.");
|
---|
529 | }
|
---|
530 | posobs.PutObject(hpkrec,"hpkrec");
|
---|
531 |
|
---|
532 | cout<<"\n--- Computing final 2D spectrum"<<endl;
|
---|
533 | Histo2DErr hpkrecb2(0.,ktnyqmax,nherrt,0.,kznyqmax,nherrz);
|
---|
534 | hpkrecb2.ReCenterBin(); hpkrecb2.Zero(); hpkrecb2.Show();
|
---|
535 | fluct3d.ComputeSpectrum2D(hpkrecb2);
|
---|
536 | posobs.PutObject(hpkrecb2,"hpkrecb2");
|
---|
537 | PrtTim(">>>> End Computing final 2D spectrum");
|
---|
538 |
|
---|
539 | Histo2DErr hpkrec2(hpkrecb2);
|
---|
540 | if(filter_by_pixel!=0) {
|
---|
541 | cout<<"\n--- Computing final 2D spectrum with pixel deconv."<<endl;
|
---|
542 | hpkrec2.Zero();
|
---|
543 | fluct3d.ComputeSpectrum2D(hpkrec2,0.,filter_by_pixel);
|
---|
544 | PrtTim(">>>> End Computing final 2D spectrum with pixel deconv.");
|
---|
545 | }
|
---|
546 | posobs.PutObject(hpkrec2,"hpkrec2");
|
---|
547 | }
|
---|
548 |
|
---|
549 | //-----------------------------------------------------------------
|
---|
550 | //-----------------------------------------------------------------
|
---|
551 | //-----------------------------------------------------------------
|
---|
552 |
|
---|
553 | if(comptransveloc) {
|
---|
554 | cout<<"\n\n\n"<<"---------------------------------------------\n"
|
---|
555 | <<"--- Transverse velocity space computation ---\n"
|
---|
556 | <<"---------------------------------------------\n"<<endl;
|
---|
557 |
|
---|
558 | //-----------------------------------------------------------------
|
---|
559 | cout<<"\n--- Reading back the Pk(vec(k)) cube from "<<temporay_file<<endl;
|
---|
560 | fluct3d.ReadPPF(temporay_file);
|
---|
561 | PrtTim(">>>> End Reading the Pk(vec(k)) cube");
|
---|
562 |
|
---|
563 | if(compdspec&1) {
|
---|
564 | cout<<"\n--- Check realization spectra that has been re-read"<<endl;
|
---|
565 | HistoErr hpkgenf_rr(hpkgen); hpkgenf_rr.Zero();
|
---|
566 | fluct3d.ComputeSpectrum(hpkgenf_rr);
|
---|
567 | PrtTim(">>>> End Checking re-read realization 1D spectra");
|
---|
568 | posobs.PutObject(hpkgenf_rr,"hpkgenf_rr");
|
---|
569 | }
|
---|
570 |
|
---|
571 | //-----------------------------------------------------------------
|
---|
572 | cout<<"\n--- Modifying cube for Transverse velocity"<<endl;
|
---|
573 | fluct3d.ToVelLoS();
|
---|
574 | fluct3d.NTupleCheck(posobs,string("ntpvgenf"),ntnent);
|
---|
575 | PrtTim(">>>> End Modifying cube for Transverse velocity");
|
---|
576 |
|
---|
577 | if(compdspec&1) {
|
---|
578 | cout<<"\n--- Checking realization spectra"<<endl;
|
---|
579 | HistoErr hpvgen(0.,knyqmax,nherr);
|
---|
580 | hpvgen.ReCenterBin(); hpvgen.Zero(); hpvgen.Show();
|
---|
581 | fluct3d.ComputeSpectrum(hpvgen);
|
---|
582 | posobs.PutObject(hpvgen,"hpvgen");
|
---|
583 | PrtTim(">>>> End Checking realization 1D spectra");
|
---|
584 | }
|
---|
585 | if(compdspec&2) {
|
---|
586 | cout<<"\n--- Checking realization 2D spectra"<<endl;
|
---|
587 | Histo2DErr hpvgen2(0.,ktnyqmax,nherrt,0.,kznyqmax,nherrz);
|
---|
588 | hpvgen2.ReCenterBin(); hpvgen2.Zero(); hpvgen2.Show();
|
---|
589 | fluct3d.ComputeSpectrum2D(hpvgen2);
|
---|
590 | posobs.PutObject(hpvgen2,"hpvgen2");
|
---|
591 | PrtTim(">>>> End Checking realization 2D spectra");
|
---|
592 | }
|
---|
593 |
|
---|
594 | if(whattowrt[0]&1) {
|
---|
595 | tagobs = rootnameout + "_kv.ppf";
|
---|
596 | fluct3d.WritePPF(tagobs,false);
|
---|
597 | PrtTim(">>>> End WritePPF");
|
---|
598 | }
|
---|
599 | if(whattowrt[0]&2) {
|
---|
600 | tagobs = "!" + rootnameout + "_kv.fits";
|
---|
601 | fluct3d.WriteFits(tagobs);
|
---|
602 | PrtTim(">>>> End WriteFits");
|
---|
603 | }
|
---|
604 |
|
---|
605 | //-----------------------------------------------------------------
|
---|
606 | cout<<"\n--- Computing a realization in real space for Transverse velocity"<<endl;
|
---|
607 | fluct3d.ComputeReal();
|
---|
608 | fluct3d.MinMax(vdum1,vdum2);
|
---|
609 | fluct3d.MeanSigma2(vdum1,vdum2);
|
---|
610 | fluct3d.NTupleCheck(posobs,string("nvreal"),ntnent);
|
---|
611 | PrtTim(">>>> End Computing a realization in real space");
|
---|
612 |
|
---|
613 | if(use_growth_factor>0) {
|
---|
614 | cout<<"\n--- Apply Growth factor for transverse velocity"<<endl;
|
---|
615 | cout<<"...D(z=0)="<<growth(0.)<<" D(z="<<zref<<")="<<growth(zref)<<endl;
|
---|
616 | fluct3d.ApplyVelLosGrowthFactor(use_growth_factor);
|
---|
617 | fluct3d.MinMax(vdum1,vdum2);
|
---|
618 | fluct3d.MeanSigma2(vdum1,vdum2);
|
---|
619 | fluct3d.NTupleCheck(posobs,string("nvgrow"),ntnent);
|
---|
620 | PrtTim(">>>> End Applying growth factor");
|
---|
621 | }
|
---|
622 |
|
---|
623 | if(whattowrt[1]&1) {
|
---|
624 | tagobs = rootnameout + "_rv.ppf";
|
---|
625 | fluct3d.WritePPF(tagobs,true);
|
---|
626 | PrtTim(">>>> End WritePPF");
|
---|
627 | }
|
---|
628 | if(whattowrt[1]&2) {
|
---|
629 | tagobs = "!" + rootnameout + "_rv.fits";
|
---|
630 | fluct3d.WriteFits(tagobs);
|
---|
631 | PrtTim(">>>> End WriteFits");
|
---|
632 | }
|
---|
633 | if(wslice) {
|
---|
634 | tagobs = rootnameout + "_s_rv.ppf";
|
---|
635 | fluct3d.WriteSlicePPF(tagobs);
|
---|
636 | PrtTim(">>>> End WriteSlicePPF");
|
---|
637 | }
|
---|
638 |
|
---|
639 | }
|
---|
640 |
|
---|
641 | //-----------------------------------------------------------------
|
---|
642 | {
|
---|
643 | DVList dvl;
|
---|
644 | dvl("Nx") = (int_4)fluct3d.Nx(); dvl("Ny") = (int_4)fluct3d.Ny(); dvl("Nz") = (int_4)fluct3d.Nz();
|
---|
645 | dvl("Dx") = fluct3d.Dx(); dvl("Dy") = fluct3d.Dy(); dvl("Dz") = fluct3d.Dz();
|
---|
646 | dvl("Z") = fluct3d.Zref(); dvl("Zpk") = fluct3d.ZrefPk();
|
---|
647 | dvl("D") = fluct3d.Dref(); dvl("Dpk") = fluct3d.DrefPk();
|
---|
648 | dvl("s8") = sigmaR;
|
---|
649 | dvl("Dtype") = (int_4)use_growth_factor; dvl("Pxfilt") = (int_4)filter_by_pixel;
|
---|
650 | if(cambfread.size()>0) dvl("fCAMB") = cambfread;
|
---|
651 | posobs.PutObject(dvl,"siminfo");
|
---|
652 | }
|
---|
653 |
|
---|
654 | delete RandGen;
|
---|
655 | if(pkz != NULL) delete pkz;
|
---|
656 | PrtTim(">>>> End Of Job");
|
---|
657 |
|
---|
658 | //----TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH
|
---|
659 | } catch (PException& exc) {
|
---|
660 | cerr<<"cmvginit3d.cc catched PException"<<exc.Msg()<<endl;
|
---|
661 | return 77;
|
---|
662 | } catch (std::exception& sex) {
|
---|
663 | cerr << "cmvginit3d.cc std::exception :"
|
---|
664 | << (string)typeid(sex).name() << "\n msg= "
|
---|
665 | << sex.what() << endl;
|
---|
666 | return 78;
|
---|
667 | } catch (...) {
|
---|
668 | cerr << "cmvginit3d.cc catched unknown (...) exception " << endl;
|
---|
669 | return 79;
|
---|
670 | }
|
---|
671 | //----TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH-TRY-CATCH
|
---|
672 |
|
---|
673 | return 0;
|
---|
674 | }
|
---|
675 |
|
---|
676 | #include "strutilxx.h"
|
---|
677 | string decodecambarg(string arg,double& h, double& z)
|
---|
678 | // - decode argument for CAMB generation:
|
---|
679 | // input: arg = "cambfilename,h100tab,ztab"
|
---|
680 | // output: h = h100 use to generate CAMB file
|
---|
681 | // z = redshift use to generate CAMB file
|
---|
682 | // return: CAMB file name
|
---|
683 | {
|
---|
684 | h = -1.;
|
---|
685 | z = 0.;
|
---|
686 | vector<string> vs;
|
---|
687 | FillVStringFrString(arg,vs,',');
|
---|
688 | if(vs.size()>1) h = atof(vs[1].c_str());
|
---|
689 | if(vs.size()>2) z = atof(vs[2].c_str());
|
---|
690 | cout<<"decodecambarg: "<<arg<<" fn=\""<<vs[0]<<"\" h="<<h<<" z="<<z<<endl;
|
---|
691 | return vs[0];
|
---|
692 | }
|
---|