mirror of
https://github.com/NGSolve/netgen.git
synced 2024-11-11 16:49:16 +05:00
399 lines
15 KiB
C++
399 lines
15 KiB
C++
#include <mystdlib.h>
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// #include <incopengl.hpp>
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#include <inctcl.hpp>
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#include <myadt.hpp>
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#include <meshing.hpp>
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#include <csg.hpp>
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#include <stlgeom.hpp>
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// #include <parallel.hpp>
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#include <visual.hpp>
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#include <limits>
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namespace netgen
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{
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/*
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*/
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int Ng_Vis_Set (ClientData clientData,
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Tcl_Interp * interp,
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int argc, tcl_const char *argv[])
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{
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if (argc >= 2)
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{
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if (strcmp (argv[1], "parameters") == 0)
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{
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vssolution.imag_part =
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atoi (Tcl_GetVar (interp, "::visoptions.imaginary", TCL_GLOBAL_ONLY));
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vssolution.usetexture =
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atoi (Tcl_GetVar (interp, "::visoptions.usetexture", TCL_GLOBAL_ONLY));
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if (atoi (Tcl_GetVar (interp, "::visoptions.redrawperiodic", TCL_GLOBAL_ONLY)))
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vssolution.usetexture = 2;
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vssolution.invcolor =
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atoi (Tcl_GetVar (interp, "::visoptions.invcolor", TCL_GLOBAL_ONLY));
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vssolution.clipsolution = 0;
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if (strcmp (Tcl_GetVar (interp, "::visoptions.clipsolution", TCL_GLOBAL_ONLY),
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"scal") == 0)
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vssolution.clipsolution = 1;
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if (strcmp (Tcl_GetVar (interp, "::visoptions.clipsolution", TCL_GLOBAL_ONLY),
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"vec") == 0)
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vssolution.clipsolution = 2;
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tcl_const char * scalname =
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Tcl_GetVar (interp, "::visoptions.scalfunction", TCL_GLOBAL_ONLY);
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tcl_const char * vecname =
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Tcl_GetVar (interp, "::visoptions.vecfunction", TCL_GLOBAL_ONLY);
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tcl_const char * fieldlines_vecname =
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Tcl_GetVar (interp, "::visoptions.fieldlinesvecfunction", TCL_GLOBAL_ONLY);
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vssolution.scalfunction = -1;
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vssolution.vecfunction = -1;
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vssolution.fieldlines_vecfunction = -1;
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int pointpos; // SZ
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const char * pch = strchr(scalname,':');
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pointpos = int(pch-scalname+1);
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for (int i = 0; i < vssolution.soldata.Size(); i++)
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{
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if ( (strlen (vssolution.soldata[i]->name) == size_t(pointpos-1)) &&
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(strncmp (vssolution.soldata[i]->name, scalname, pointpos-1) == 0) )
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{
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vssolution.scalfunction = i;
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vssolution.scalcomp = atoi (scalname + pointpos);
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if ( vssolution.scalcomp > vssolution.soldata[i]->components )
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vssolution.scalcomp = 1;
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char newscalname[100];
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for ( int ii = 0; ii < pointpos; ii++ )
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newscalname[ii] = scalname[ii];
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newscalname[pointpos] = ':';
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sprintf (newscalname+pointpos, "%i", vssolution.scalcomp);
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if (strcmp (scalname, newscalname) != 0)
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Tcl_SetVar ( interp, "::visoptions.scalfunction", newscalname, TCL_GLOBAL_ONLY );
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scalname = Tcl_GetVar (interp, "::visoptions.scalfunction", TCL_GLOBAL_ONLY);
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}
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if (strcmp (vssolution.soldata[i]->name, vecname) == 0)
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vssolution.vecfunction = i;
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if (strcmp (vssolution.soldata[i]->name, fieldlines_vecname) == 0)
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vssolution.fieldlines_vecfunction = i;
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}
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if(vssolution.fieldlines_vecfunction != -1 &&
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vssolution.vecfunction == -1)
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{
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//cout << "WARNING: Setting vector function in Visualization toolbox to value from Fieldlines toolbox!" << endl;
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vssolution.vecfunction = vssolution.fieldlines_vecfunction;
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}
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// reset visoptions.scalfunction and visoptions.vecfunction if not avialable
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if ( vssolution.scalfunction == -1 && strcmp (scalname, "none") != 0)
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Tcl_SetVar ( interp, "::visoptions.scalfunction", "none", TCL_GLOBAL_ONLY );
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if ( vssolution.vecfunction == -1 && strcmp (vecname, "none") != 0)
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Tcl_SetVar ( interp, "::visoptions.vecfunction", "none", TCL_GLOBAL_ONLY );
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tcl_const char * evalname =
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Tcl_GetVar (interp, "::visoptions.evaluate", TCL_GLOBAL_ONLY);
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if (strcmp(evalname, "abs") == 0) vssolution.evalfunc = VisualSceneSolution::FUNC_ABS;
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if (strcmp(evalname, "abstens") == 0) vssolution.evalfunc = VisualSceneSolution::FUNC_ABS_TENSOR;
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if (strcmp(evalname, "mises") == 0) vssolution.evalfunc = VisualSceneSolution::FUNC_MISES;
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if (strcmp(evalname, "main") == 0) vssolution.evalfunc = VisualSceneSolution::FUNC_MAIN;
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vssolution.gridsize =
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atoi (Tcl_GetVar (interp, "::visoptions.gridsize", TCL_GLOBAL_ONLY));
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vssolution.xoffset =
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atof (Tcl_GetVar (interp, "::visoptions.xoffset", TCL_GLOBAL_ONLY));
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// cout << "x-offset:" << vssolution.xoffset << endl;
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vssolution.yoffset =
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atof (Tcl_GetVar (interp, "::visoptions.yoffset", TCL_GLOBAL_ONLY));
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vssolution.autoscale =
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atoi (Tcl_GetVar (interp, "::visoptions.autoscale", TCL_GLOBAL_ONLY));
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/*
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vssolution.linear_colors =
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atoi (Tcl_GetVar (interp, "::visoptions.lineartexture", TCL_GLOBAL_ONLY));
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*/
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vssolution.logscale =
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atoi (Tcl_GetVar (interp, "::visoptions.logscale", TCL_GLOBAL_ONLY));
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vssolution.mminval =
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atof (Tcl_GetVar (interp, "::visoptions.mminval", TCL_GLOBAL_ONLY));
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vssolution.mmaxval =
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atof (Tcl_GetVar (interp, "::visoptions.mmaxval", TCL_GLOBAL_ONLY));
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vssolution.showclipsolution =
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atoi (Tcl_GetVar (interp, "::visoptions.showclipsolution", TCL_GLOBAL_ONLY));
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vssolution.showsurfacesolution =
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atoi (Tcl_GetVar (interp, "::visoptions.showsurfacesolution", TCL_GLOBAL_ONLY));
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vssolution.lineartexture =
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atoi (Tcl_GetVar (interp, "::visoptions.lineartexture", TCL_GLOBAL_ONLY));
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vssolution.numtexturecols =
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atoi (Tcl_GetVar (interp, "::visoptions.numtexturecols", TCL_GLOBAL_ONLY));
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vssolution.multidimcomponent =
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atoi (Tcl_GetVar (interp, "::visoptions.multidimcomponent", TCL_GLOBAL_ONLY));
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vssolution.drawpointcurves =
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atoi (Tcl_GetVar (interp, "::visoptions.drawpointcurves", TCL_GLOBAL_ONLY));
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vssolution.draw_fieldlines =
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atoi (Tcl_GetVar (interp, "::visoptions.drawfieldlines", TCL_GLOBAL_ONLY));
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vssolution.num_fieldlines =
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atoi (Tcl_GetVar (interp, "::visoptions.numfieldlines", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_randomstart =
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atoi (Tcl_GetVar (interp, "::visoptions.fieldlinesrandomstart", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_reltolerance =
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atof (Tcl_GetVar (interp, "::visoptions.fieldlinestolerance", TCL_GLOBAL_ONLY));
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if (strcmp (Tcl_GetVar (interp, "::visoptions.fieldlinesrktype", TCL_GLOBAL_ONLY),
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"euler") == 0)
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vssolution.fieldlines_rktype = 0;
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else if (strcmp (Tcl_GetVar (interp, "::visoptions.fieldlinesrktype", TCL_GLOBAL_ONLY),
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"eulercauchy") == 0)
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vssolution.fieldlines_rktype = 1;
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else if (strcmp (Tcl_GetVar (interp, "::visoptions.fieldlinesrktype", TCL_GLOBAL_ONLY),
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"simpson") == 0)
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vssolution.fieldlines_rktype = 2;
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else if (strcmp (Tcl_GetVar (interp, "::visoptions.fieldlinesrktype", TCL_GLOBAL_ONLY),
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"crungekutta") == 0)
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vssolution.fieldlines_rktype = 3;
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vssolution.fieldlines_rellength =
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atof (Tcl_GetVar (interp, "::visoptions.fieldlineslength", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_maxpoints =
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atoi (Tcl_GetVar (interp, "::visoptions.fieldlinesmaxpoints", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_relthickness =
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atof (Tcl_GetVar (interp, "::visoptions.fieldlinesthickness", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_fixedphase =
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(atoi (Tcl_GetVar (interp, "::visoptions.fieldlinesonlyonephase", TCL_GLOBAL_ONLY)) != 0);
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if(vssolution.fieldlines_fixedphase)
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vssolution.fieldlines_phase =
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atof (Tcl_GetVar (interp, "::visoptions.fieldlinesphase", TCL_GLOBAL_ONLY));
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if (strcmp (Tcl_GetVar (interp, "::visoptions.fieldlinesstartarea", TCL_GLOBAL_ONLY),
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"box") == 0)
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vssolution.fieldlines_startarea = 0;
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else if (strcmp (Tcl_GetVar (interp, "::visoptions.fieldlinesstartarea", TCL_GLOBAL_ONLY),
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"file") == 0)
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vssolution.fieldlines_startarea = 1;
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else if (strcmp (Tcl_GetVar (interp, "::visoptions.fieldlinesstartarea", TCL_GLOBAL_ONLY),
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"face") == 0)
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vssolution.fieldlines_startarea = 2;
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if (vssolution.fieldlines_startarea == 0)
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{
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vssolution.fieldlines_startarea_parameter.SetSize(6);
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vssolution.fieldlines_startarea_parameter[0] = atof (Tcl_GetVar (interp, "::visoptions.fieldlinesstartareap1x", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_startarea_parameter[1] = atof (Tcl_GetVar (interp, "::visoptions.fieldlinesstartareap1y", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_startarea_parameter[2] = atof (Tcl_GetVar (interp, "::visoptions.fieldlinesstartareap1z", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_startarea_parameter[3] = atof (Tcl_GetVar (interp, "::visoptions.fieldlinesstartareap2x", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_startarea_parameter[4] = atof (Tcl_GetVar (interp, "::visoptions.fieldlinesstartareap2y", TCL_GLOBAL_ONLY));
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vssolution.fieldlines_startarea_parameter[5] = atof (Tcl_GetVar (interp, "::visoptions.fieldlinesstartareap2z", TCL_GLOBAL_ONLY));
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}
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else if (vssolution.fieldlines_startarea == 1)
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{
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vssolution.fieldlines_filename = Tcl_GetVar (interp, "::visoptions.fieldlinesfilename", TCL_GLOBAL_ONLY);
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}
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else if (vssolution.fieldlines_startarea == 2)
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{
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vssolution.fieldlines_startface = atoi (Tcl_GetVar (interp, "::visoptions.fieldlinesstartface", TCL_GLOBAL_ONLY));
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}
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vssolution.deform =
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atoi (Tcl_GetVar (interp, "::visoptions.deformation", TCL_GLOBAL_ONLY));
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vssolution.scaledeform =
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atof (Tcl_GetVar (interp, "::visoptions.scaledeform1", TCL_GLOBAL_ONLY)) *
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atof (Tcl_GetVar (interp, "::visoptions.scaledeform2", TCL_GLOBAL_ONLY));
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if (atoi (Tcl_GetVar (interp, "::visoptions.isolines", TCL_GLOBAL_ONLY)))
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vssolution.numisolines = atoi (Tcl_GetVar (interp, "::visoptions.numiso", TCL_GLOBAL_ONLY));
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else
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vssolution.numisolines = 0;
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vssolution.draw_isosurface =
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atoi (Tcl_GetVar (interp, "::visoptions.isosurf", TCL_GLOBAL_ONLY));
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vssolution.SetSubdivision(atoi (Tcl_GetVar (interp, "::visoptions.subdivisions", TCL_GLOBAL_ONLY)));
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vssolution.UpdateSolutionTimeStamp();
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}
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if (strcmp (argv[1], "parametersrange") == 0)
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{
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vssolution.invcolor =
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atoi (Tcl_GetVar (interp, "::visoptions.invcolor", TCL_GLOBAL_ONLY));
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vssolution.mminval =
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atof (Tcl_GetVar (interp, "::visoptions.mminval", TCL_GLOBAL_ONLY));
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vssolution.mmaxval =
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atof (Tcl_GetVar (interp, "::visoptions.mmaxval", TCL_GLOBAL_ONLY));
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vssolution.lineartexture =
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atoi (Tcl_GetVar (interp, "::visoptions.lineartexture", TCL_GLOBAL_ONLY));
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vssolution.numtexturecols =
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atoi (Tcl_GetVar (interp, "::visoptions.numtexturecols", TCL_GLOBAL_ONLY));
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if (vssolution.usetexture == 0 || vssolution.logscale)
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vssolution.UpdateSolutionTimeStamp();
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}
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if (argc >= 3 && strcmp (argv[1], "time") == 0)
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{
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vssolution.time = double (atoi (argv[2])) / 1000;
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vssolution.timetimestamp = NextTimeStamp();
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cout << "\rtime = " << vssolution.time << " " << flush;
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}
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}
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vsmesh.SetClippingPlane (); // for computing parameters
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vssolution.SetClippingPlane (); // for computing parameters
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glDisable(GL_CLIP_PLANE0);
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#ifdef PARALLELGL
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vsmesh.Broadcast ();
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#endif
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return TCL_OK;
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}
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int Ng_Vis_Field (ClientData clientData,
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Tcl_Interp * interp,
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int argc, tcl_const char *argv[])
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{
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auto mesh = vssolution.GetMesh();
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int i;
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char buf[1000];
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buf[0] = 0;
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if (argc >= 2)
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{
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if (strcmp (argv[1], "setfield") == 0)
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{
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if (argc < 3)
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return TCL_ERROR;
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for (i = 0; i < vssolution.GetNSolData(); i++)
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if (strcmp (vssolution.GetSolData(i)->name, argv[2]) == 0)
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{
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cout << "found soldata " << i << endl;
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}
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}
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if (strcmp (argv[1], "getnfieldnames") == 0)
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{
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sprintf (buf, "%d", vssolution.GetNSolData());
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}
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if (strcmp (argv[1], "getfieldname") == 0)
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{
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sprintf (buf, "%s", vssolution.GetSolData(atoi(argv[2])-1)->name);
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}
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if (strcmp (argv[1], "iscomplex") == 0)
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{
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sprintf (buf, "%d", vssolution.GetSolData(atoi(argv[2])-1)->iscomplex);
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}
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if (strcmp (argv[1], "getfieldcomponents") == 0)
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{
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sprintf (buf, "%d", vssolution.GetSolData(atoi(argv[2])-1)->components);
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}
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if (strcmp (argv[1], "getfieldnames") == 0)
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{
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for (i = 0; i < vssolution.GetNSolData(); i++)
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{
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strcat (buf, vssolution.GetSolData(i)->name);
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strcat (buf, " ");
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}
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strcat (buf, "var1 var2 var3");
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Tcl_SetResult (interp, buf, TCL_STATIC);
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}
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if (strcmp (argv[1], "setcomponent") == 0)
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{
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cout << "set component " << argv[2] << endl;
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}
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if (strcmp (argv[1], "getactivefield") == 0)
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{
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sprintf (buf, "1");
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}
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if (strcmp (argv[1], "getdimension") == 0)
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{
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sprintf (buf, "%d", mesh->GetDimension());
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}
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}
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Tcl_SetResult (interp, buf, TCL_STATIC);
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return TCL_OK;
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}
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extern "C" int Ng_Vis_Init (Tcl_Interp * interp);
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int Ng_Vis_Init (Tcl_Interp * interp)
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{
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Tcl_CreateCommand (interp, "Ng_Vis_Set", Ng_Vis_Set,
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(ClientData)NULL,
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(Tcl_CmdDeleteProc*) NULL);
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Tcl_CreateCommand (interp, "Ng_Vis_Field", Ng_Vis_Field,
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(ClientData)NULL,
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(Tcl_CmdDeleteProc*) NULL);
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return TCL_OK;
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}
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}
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