source: issm/trunk-jpl/src/c/objects/ElementResults/PentaP1ElementResult.cpp@ 12014

Last change on this file since 12014 was 12014, checked in by Eric.Larour, 13 years ago

Removing some unused SERIAL code

File size: 4.5 KB
RevLine 
[11292]1/*!\file PentaP1ElementResult.c
2 * \brief: implementation of the PentaP1ElementResult object
[4050]3 */
4
5#ifdef HAVE_CONFIG_H
[9320]6 #include <config.h>
[4050]7#else
8#error "Cannot compile with HAVE_CONFIG_H symbol! run configure first!"
9#endif
10
[9320]11#include <stdio.h>
[4050]12#include <string.h>
13#include "./ElementResultLocal.h"
14#include "../objects.h"
15#include "../../EnumDefinitions/EnumDefinitions.h"
16#include "../../shared/shared.h"
[4236]17#include "../../Container/Container.h"
[4050]18#include "../../include/include.h"
19
[11292]20/*PentaP1ElementResult constructors and destructor*/
21/*FUNCTION PentaP1ElementResult::PentaP1ElementResult(){{{1*/
22PentaP1ElementResult::PentaP1ElementResult(){
[4050]23 return;
24}
25/*}}}*/
[11292]26/*FUNCTION PentaP1ElementResult::PentaP1ElementResult(int in_enum_type,double* in_values,int in_step, double in_time){{{1*/
27PentaP1ElementResult::PentaP1ElementResult(int in_enum_type,double* in_values,int in_step, double in_time){
[4050]28
[4239]29 int i;
30
31 enum_type=in_enum_type;
32 for(i=0;i<6;i++)values[i]=in_values[i];
[4050]33 step=in_step;
34 time=in_time;
35}
36/*}}}*/
[11292]37/*FUNCTION PentaP1ElementResult::~PentaP1ElementResult(){{{1*/
38PentaP1ElementResult::~PentaP1ElementResult(){
[4050]39 return;
40}
41/*}}}*/
42
[4248]43/*Object virtual functions definitions:*/
[11292]44/*FUNCTION PentaP1ElementResult::Echo {{{1*/
45void PentaP1ElementResult::Echo(void){
[4248]46 this->DeepEcho();
[4050]47}
48/*}}}*/
[11292]49/*FUNCTION PentaP1ElementResult::DeepEcho{{{1*/
50void PentaP1ElementResult::DeepEcho(void){
[4050]51
[11292]52 printf("PentaP1ElementResult:\n");
[8224]53 printf(" enum: %i (%s)\n",this->enum_type,EnumToStringx(this->enum_type));
[4239]54 printf(" values: [%g %g %g %g %g %g]\n",this->values[0],this->values[1],this->values[2],this->values[3],this->values[4],this->values[5]);
[4050]55 printf(" step: %i\n",this->step);
56 printf(" time: %g\n",this->time);
57
58}
59/*}}}*/
[11292]60/*FUNCTION PentaP1ElementResult::Id{{{1*/
61int PentaP1ElementResult::Id(void){ return -1; }
[4050]62/*}}}*/
[11292]63/*FUNCTION PentaP1ElementResult::MyRank{{{1*/
64int PentaP1ElementResult::MyRank(void){
[4248]65 extern int my_rank;
66 return my_rank;
[4050]67}
68/*}}}*/
[11292]69/*FUNCTION PentaP1ElementResult::ObjectEnum{{{1*/
70int PentaP1ElementResult::ObjectEnum(void){
[4050]71
[11292]72 return PentaP1ElementResultEnum;
[4248]73
74}
75/*}}}*/
[11292]76/*FUNCTION PentaP1ElementResult::copy{{{1*/
77Object* PentaP1ElementResult::copy() {
[4248]78
[11292]79 return new PentaP1ElementResult(this->enum_type,this->values,this->step,this->time);
[4248]80
81}
82/*}}}*/
83
84/*ElementResult management*/
[11292]85/*FUNCTION PentaP1ElementResult::InstanceEnum{{{1*/
86int PentaP1ElementResult::InstanceEnum(void){
[4248]87
88 return this->enum_type;
89
90}
91/*}}}*/
[11292]92/*FUNCTION PentaP1ElementResult::SpawnTriaElementResult{{{1*/
93ElementResult* PentaP1ElementResult::SpawnTriaElementResult(int* indices){
[4050]94
95 /*output*/
[11292]96 TriaP1ElementResult* outresult=NULL;
[4050]97 double newvalues[3];
98
99 /*Loop over the new indices*/
100 for(int i=0;i<3;i++){
101
102 /*Check index value*/
[6412]103 _assert_(indices[i]>=0 && indices[i]<6);
[4050]104
105 /*Assign value to new result*/
106 newvalues[i]=this->values[indices[i]];
107 }
108
109 /*Create new Tria result*/
[11292]110 outresult=new TriaP1ElementResult(this->enum_type,&newvalues[0],this->step,this->time);
[4050]111
112 /*Assign output*/
113 return outresult;
114
115}
116/*}}}*/
[11292]117/*FUNCTION PentaP1ElementResult::ProcessUnits{{{1*/
118void PentaP1ElementResult::ProcessUnits(Parameters* parameters){
[4050]119
[8967]120 UnitConversion(this->values,6,IuToExtEnum,this->enum_type);
[4050]121
122}
123/*}}}*/
[11292]124/*FUNCTION PentaP1ElementResult::NumberOfNodalValues{{{1*/
125int PentaP1ElementResult::NumberOfNodalValues(void){
[4050]126 return 6;
127}
128/*}}}*/
[11292]129/*FUNCTION PentaP1ElementResult::PatchFill{{{1*/
130void PentaP1ElementResult::PatchFill(int row, Patch* patch){
[4050]131
132 /*Here, we fill the result information into the patch object. First, let's remember what is in a row
133 * of the patch object: enum_type step time element_id interpolation vertices_ids nodal_values
134 * Here, we will supply the enum_type, step, time, interpolation and nodal_values: */
135 patch->fillresultinfo(row,this->enum_type,this->step,this->time,P1Enum,this->values,6);
136
137}
138/*}}}*/
[11292]139/*FUNCTION PentaP1ElementResult::GetVectorFromResults{{{1*/
[11695]140void PentaP1ElementResult::GetVectorFromResults(Vector* vector,int* doflist,int* connectivitylist,int numdofs){
[9874]141
[11001]142 double data[6];
143
[11292]144 if(numdofs!=6)_error_("Result %s is a PentaP1ElementResult and cannot write vector of %i dofs",numdofs);
[11001]145 for(int i=0;i<6;i++) data[i]=this->values[i]/(double)connectivitylist[i];
[11695]146 vector->SetValues(numdofs,doflist,&data[0],ADD_VAL);
[9874]147
148} /*}}}*/
[11292]149/*FUNCTION PentaP1ElementResult::GetElementVectorFromResults{{{1*/
[11695]150void PentaP1ElementResult::GetElementVectorFromResults(Vector* vector,int dof){
[10990]151
[11292]152 _error_("Result %s is a PentaP1ElementResult and should not write vector of size numberofelemenrs",EnumToStringx(enum_type));
[10990]153} /*}}}*/
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