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https://git.gfz-potsdam.de/naaice/iphreeqc.git
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Merge commit 'ae41a1ffa67d7b4bf60373a164e24802cb7a1797'
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commit
af0c0b0e86
@ -286,6 +286,7 @@ write_banner(void)
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#ifdef TESTING
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return OK;
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#endif
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#ifndef NO_UTF8_ENCODING
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char buffer[80];
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int len, indent;
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screen_msg(
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@ -329,7 +330,7 @@ write_banner(void)
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screen_msg(
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" █▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄▄█\n\n");
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#endif
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return 0;
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}
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@ -1,3 +1,4 @@
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// -*- coding: windows-1252 -*-
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#include "Utils.h"
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#include "Phreeqc.h"
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#include "phqalloc.h"
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@ -1457,7 +1458,7 @@ print_species(void)
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"Molality", "Activity", "Molality", "Activity", "Gamma", "cm3/mol"));
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#else
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output_msg(sformatf(" %-13s%12s%12s%10s%10s%10s%11s\n\n", "Species",
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"Molality", "Activity", "Molality", "Activity", "Gamma", "cm³/mol"));
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"Molality", "Activity", "Molality", "Activity", "Gamma", "cm³/mol"));
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#endif
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/*
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* Print list of species
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@ -1625,7 +1626,7 @@ print_surface(void)
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#ifdef NO_UTF8_ENCODING
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output_msg(sformatf("\t%11.3e sigma, C/m2\n",
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#else
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output_msg(sformatf("\t%11.3e sigma, C/m²\n",
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output_msg(sformatf("\t%11.3e sigma, C/m²\n",
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#endif
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(double) (charge * F_C_MOL /
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(charge_ptr->Get_specific_area() *
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@ -1636,7 +1637,7 @@ print_surface(void)
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#ifdef NO_UTF8_ENCODING
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output_msg(sformatf("\tundefined sigma, C/m2\n"));
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#else
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output_msg(sformatf("\tundefined sigma, C/m²\n"));
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output_msg(sformatf("\tundefined sigma, C/m²\n"));
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#endif
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}
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if (use.Get_surface_ptr()->Get_type() == cxxSurface::CCM)
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@ -1658,7 +1659,7 @@ print_surface(void)
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#ifdef NO_UTF8_ENCODING
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"\t%11.3e specific area, m2/mol %s\n",
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#else
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"\t%11.3e specific area, m²/mol %s\n",
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"\t%11.3e specific area, m²/mol %s\n",
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#endif
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(double) charge_ptr->Get_specific_area(),
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comp_ptr->Get_phase_name().c_str()));
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@ -1666,7 +1667,7 @@ print_surface(void)
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#ifdef NO_UTF8_ENCODING
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"\t%11.3e m2 for %11.3e moles of %s\n\n",
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#else
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"\t%11.3e m² for %11.3e moles of %s\n\n",
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"\t%11.3e m² for %11.3e moles of %s\n\n",
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#endif
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(double) (charge_ptr->Get_grams() *
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charge_ptr->Get_specific_area()),
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@ -1679,7 +1680,7 @@ print_surface(void)
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#ifdef NO_UTF8_ENCODING
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"\t%11.3e specific area, m2/mol %s\n",
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#else
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"\t%11.3e specific area, m²/mol %s\n",
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"\t%11.3e specific area, m²/mol %s\n",
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#endif
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(double) charge_ptr->Get_specific_area(),
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comp_ptr->Get_rate_name().c_str()));
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@ -1687,7 +1688,7 @@ print_surface(void)
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#ifdef NO_UTF8_ENCODING
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"\t%11.3e m2 for %11.3e moles of %s\n\n",
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#else
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"\t%11.3e m² for %11.3e moles of %s\n\n",
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"\t%11.3e m² for %11.3e moles of %s\n\n",
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#endif
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(double) (charge_ptr->Get_grams() *
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charge_ptr->Get_specific_area()),
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@ -1700,13 +1701,13 @@ print_surface(void)
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#ifdef NO_UTF8_ENCODING
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"\t%11.3e specific area, m2/g\n",
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#else
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"\t%11.3e specific area, m²/g\n",
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"\t%11.3e specific area, m²/g\n",
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#endif
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(double) charge_ptr->Get_specific_area()));
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#ifdef NO_UTF8_ENCODING
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output_msg(sformatf("\t%11.3e m2 for %11.3e g\n\n",
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#else
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output_msg(sformatf("\t%11.3e m² for %11.3e g\n\n",
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output_msg(sformatf("\t%11.3e m² for %11.3e g\n\n",
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#endif
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(double) (charge_ptr->Get_specific_area() *
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charge_ptr->Get_grams()),
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@ -1921,28 +1922,28 @@ print_surface_cd_music(void)
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#ifdef NO_UTF8_ENCODING
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"\t%11.3e sigma, plane 0, C/m2\n",
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#else
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"\t%11.3e sigma, plane 0, C/m²\n",
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"\t%11.3e sigma, plane 0, C/m²\n",
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#endif
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(double) charge_ptr->Get_sigma0()));
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output_msg(sformatf(
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#ifdef NO_UTF8_ENCODING
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"\t%11.3e sigma, plane 1, C/m2\n",
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#else
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"\t%11.3e sigma, plane 1, C/m²\n",
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"\t%11.3e sigma, plane 1, C/m²\n",
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#endif
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(double) charge_ptr->Get_sigma1()));
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output_msg(sformatf(
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#ifdef NO_UTF8_ENCODING
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"\t%11.3e sigma, plane 2, C/m2\n",
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#else
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"\t%11.3e sigma, plane 2, C/m²\n",
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"\t%11.3e sigma, plane 2, C/m²\n",
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#endif
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(double) charge_ptr->Get_sigma2()));
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output_msg(sformatf(
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#ifdef NO_UTF8_ENCODING
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"\t%11.3e sigma, diffuse layer, C/m2\n\n",
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#else
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"\t%11.3e sigma, diffuse layer, C/m²\n\n",
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"\t%11.3e sigma, diffuse layer, C/m²\n\n",
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#endif
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(double) charge_ptr->Get_sigmaddl()));
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}
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@ -1951,7 +1952,7 @@ print_surface_cd_music(void)
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#ifdef NO_UTF8_ENCODING
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output_msg(sformatf("\tundefined sigma, C/m2\n"));
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#else
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output_msg(sformatf("\tundefined sigma, C/m²\n"));
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output_msg(sformatf("\tundefined sigma, C/m²\n"));
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#endif
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}
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output_msg(sformatf("\t%11.3e psi, plane 0, V\n",
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@ -2210,7 +2211,7 @@ print_totals(void)
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"Specific Conductance (uS/cm, ", tc_x, "oC) = ", (int) SC));
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#else
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output_msg(sformatf("%36s%3.0f%7s%i\n",
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"Specific Conductance (µS/cm, ", tc_x, "°C) = ", (int) SC));
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"Specific Conductance (µS/cm, ", tc_x, "°C) = ", (int) SC));
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#endif
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}
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/* VP: Density Start */
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@ -2220,7 +2221,7 @@ print_totals(void)
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#ifdef NO_UTF8_ENCODING
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output_msg(sformatf("%45s%9.5f", "Density (g/cm3) = ",
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#else
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output_msg(sformatf("%46s%9.5f", "Density (g/cm³) = ",
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output_msg(sformatf("%46s%9.5f", "Density (g/cm³) = ",
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#endif
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(double) dens));
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if (state == INITIAL_SOLUTION && use.Get_solution_ptr()->Get_initial_data()->Get_calc_density())
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@ -2245,7 +2246,7 @@ print_totals(void)
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" (solute contributions limited to 200 oC)"));
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#else
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output_msg(sformatf("%19s\n",
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" (solute contributions limited to 200 °C)"));
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" (solute contributions limited to 200 °C)"));
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#endif
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}
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else output_msg(sformatf("\n"));
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@ -2275,7 +2276,7 @@ print_totals(void)
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#ifdef NO_UTF8_ENCODING
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output_msg(sformatf("%45s%6.2f\n", "Temperature (oC) = ",
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#else
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output_msg(sformatf("%46s%6.2f\n", "Temperature (°C) = ",
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output_msg(sformatf("%46s%6.2f\n", "Temperature (°C) = ",
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#endif
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(double) tc_x));
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