1 | #include <stdlib.h>
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2 | #include <stdio.h>
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3 | #include <string.h>
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4 |
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5 | #include "machdefs.h"
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6 | #include "fmath.h"
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7 |
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8 | #include "transfost.h"
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9 |
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10 | /* Nouvelle-Fonction */
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11 | void PrintTransfo(TRANSFO *tr)
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12 |
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13 | /* Impression des coefficients du 1er ordre */
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14 | {
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15 | int k;
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16 | char sg[3],sgp[3],*st[2];
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17 |
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18 | strcpy(sg,"XY"); strcpy(sgp,"xy");
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19 | st[0] = "Source"; st[1] = "Dest";
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20 |
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21 | printf("PrintTransfo: Degre = %d (Coeff d'ordre 1) \n", tr->DegPolxy);
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22 | for(k=0; k<2; k++)
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23 | printf(" T%c %c = %10.5f + %10.5f x + %10.5f y \n", sgp[k], sg[k],
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24 | tr->Polxy[0][0][k], tr->Polxy[1][0][k], tr->Polxy[0][1][k]);
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25 |
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26 | for(k=0; k<2; k++)
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27 | {
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28 | printf("Lim[%6s] MidX,Y= %10g %10g LargX,Y= %10g %10g\n",
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29 | st[k],tr->midx[k], tr->midy[k], tr->largx[k], tr->largy[k]);
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30 | printf(" XMin,Max= %10g %10g YMin,Max= %10g %10g \n",
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31 | tr->xmin[k], tr->xmax[k], tr->ymin[k], tr->ymax[k]);
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32 | }
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33 |
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34 | return;
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35 | }
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36 |
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37 |
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38 | /* Nouvelle-Fonction */
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39 | void RedCord(double x, double y, double *xr, double *yr, TRANSFO *transf, int i)
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40 | {
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41 | *xr = (x - transf->midx[i]) / transf->largx[i];
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42 | *yr = (y - transf->midy[i]) / transf->largy[i];
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43 | }
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44 |
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45 |
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46 | /* Nouvelle-Fonction */
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47 | void ExpCord(double xr, double yr, double *x, double *y, TRANSFO *transf, int i)
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48 | {
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49 | *x = transf->largx[i] * xr + transf->midx[i];
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50 | *y = transf->largy[i] * yr + transf->midy[i];
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51 | }
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52 |
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53 |
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54 | /* Nouvelle-Fonction */
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55 | void CordTransf(double xS, double yS, double *xD, double *yD, TRANSFO *transf)
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56 | {
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57 | double xi,yi,xo,yo,xk,yl;
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58 | int k,l;
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59 |
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60 | RedCord(xS,yS,&xi,&yi,transf,0);
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61 | if (transf->DegPolxy == 1) {
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62 | xo = transf->Polxy[0][0][0] + transf->Polxy[1][0][0]*xi + transf->Polxy[0][1][0]*yi;
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63 | yo = transf->Polxy[0][0][1] + transf->Polxy[1][0][1]*xi + transf->Polxy[0][1][1]*yi;
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64 | }
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65 | else {
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66 | xo = yo = 0.0;
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67 | xk = 1.0;
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68 | for (k = 0; k<=transf->DegPolxy; k++) {
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69 | yl = 1.0;
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70 | for (l = 0; l<=transf->DegPolxy-k; l++) {
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71 | xo += transf->Polxy[k][l][0]*xk*yl;
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72 | yo += transf->Polxy[k][l][1]*xk*yl;
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73 | yl *= yi;
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74 | }
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75 | xk *= xi;
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76 | }
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77 | }
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78 | ExpCord(xo,yo,xD,yD,transf,1);
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79 | }
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80 |
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81 |
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82 | /* Nouvelle-Fonction */
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83 | void CordTransfEros2(double xS,double yS,double *xD,double *yD,TRANSFO *transf)
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84 | /*
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85 | Dans Eros2 les infos concernant les coordonnees reduites sont codees
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86 | dans TRANSFO mais la transformation est donnee pour les coordonnees normales
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87 | */
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88 | {
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89 | double xk,yl;
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90 | int k,l;
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91 |
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92 | if (transf->DegPolxy == 1) {
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93 | *xD = transf->Polxy[0][0][0] + transf->Polxy[1][0][0]*xS + transf->Polxy[0][1][0]*yS;
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94 | *yD = transf->Polxy[0][0][1] + transf->Polxy[1][0][1]*xS + transf->Polxy[0][1][1]*yS;
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95 | }
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96 | else {
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97 | *xD = *yD = 0.0;
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98 | xk = 1.0;
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99 | for (k = 0; k<=transf->DegPolxy; k++) {
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100 | yl = 1.0;
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101 | for (l = 0; l<=transf->DegPolxy-k; l++) {
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102 | *xD += transf->Polxy[k][l][0]*xk*yl;
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103 | *yD += transf->Polxy[k][l][1]*xk*yl;
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104 | yl *= yS;
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105 | }
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106 | xk *= xS;
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107 | }
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108 | }
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109 | }
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