version 1.35, 2002/03/26 17:08:39
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version 1.36, 2002/03/29 15:27:27
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Line 136 int imx;
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Line 136 int imx;
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int stepm;
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int stepm;
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/* Stepm, step in month: minimum step interpolation*/
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/* Stepm, step in month: minimum step interpolation*/
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int estepm;
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/* Estepm, step in month to interpolate survival function in order to approximate Life Expectancy*/
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int m,nb;
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int m,nb;
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int *num, firstpass=0, lastpass=4,*cod, *ncodemax, *Tage;
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int *num, firstpass=0, lastpass=4,*cod, *ncodemax, *Tage;
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double **agev,*moisnais, *annais, *moisdc, *andc,**mint, **anint;
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double **agev,*moisnais, *annais, *moisdc, *andc,**mint, **anint;
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Line 1528 void tricode(int *Tvar, int **nbcode, in
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Line 1531 void tricode(int *Tvar, int **nbcode, in
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/*********** Health Expectancies ****************/
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/*********** Health Expectancies ****************/
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void evsij(char fileres[], double ***eij, double x[], int nlstate, int stepm, int bage, int fage, double **oldm, double **savm, int ij)
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void evsij(char fileres[], double ***eij, double x[], int nlstate, int stepm, int bage, int fage, double **oldm, double **savm, int ij, int estepm)
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{
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{
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/* Health expectancies */
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/* Health expectancies */
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int i, j, nhstepm, hstepm, h, nstepm, k;
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int i, j, nhstepm, hstepm, h, nstepm;
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double age, agelim, hf;
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double age, agelim, hf;
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double ***p3mat;
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double ***p3mat;
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Line 1542 void evsij(char fileres[], double ***eij
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Line 1545 void evsij(char fileres[], double ***eij
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fprintf(ficreseij," %1d-%1d",i,j);
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fprintf(ficreseij," %1d-%1d",i,j);
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fprintf(ficreseij,"\n");
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fprintf(ficreseij,"\n");
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k=1; /* For example stepm=6 months */
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if(estepm < stepm){
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hstepm=k*YEARM; /* (a) Every k years of age (in months), for example every k=2 years 24 m */
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printf ("Problem %d lower than %d\n",estepm, stepm);
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hstepm=stepm; /* or (b) We decided to compute the life expectancy with the smallest unit */
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}
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else hstepm=estepm;
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/* We compute the life expectancy from trapezoids spaced every estepm months
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* This is mainly to measure the difference between two models: for example
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* if stepm=24 months pijx are given only every 2 years and by summing them
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* we are calculating an estimate of the Life Expectancy assuming a linear
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* progression inbetween and thus overestimating or underestimating according
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* to the curvature of the survival function. If, for the same date, we
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* estimate the model with stepm=1 month, we can keep estepm to 24 months
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* to compare the new estimate of Life expectancy with the same linear
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* hypothesis. A more precise result, taking into account a more precise
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* curvature will be obtained if estepm is as small as stepm. */
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/* For example we decided to compute the life expectancy with the smallest unit */
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/* hstepm beeing the number of stepms, if hstepm=1 the length of hstepm is stepm.
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/* hstepm beeing the number of stepms, if hstepm=1 the length of hstepm is stepm.
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nhstepm is the number of hstepm from age to agelim
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nhstepm is the number of hstepm from age to agelim
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nstepm is the number of stepm from age to agelin.
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nstepm is the number of stepm from age to agelin.
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Look at hpijx to understand the reason of that which relies in memory size
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Look at hpijx to understand the reason of that which relies in memory size
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and note for a fixed period like k years */
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and note for a fixed period like estepm months */
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/* We decided (b) to get a life expectancy respecting the most precise curvature of the
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/* We decided (b) to get a life expectancy respecting the most precise curvature of the
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survival function given by stepm (the optimization length). Unfortunately it
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survival function given by stepm (the optimization length). Unfortunately it
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means that if the survival funtion is printed only each two years of age and if
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means that if the survival funtion is printed only each two years of age and if
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you sum them up and add 1 year (area under the trapezoids) you won't get the same
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you sum them up and add 1 year (area under the trapezoids) you won't get the same
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results. So we changed our mind and took the option of the best precision.
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results. So we changed our mind and took the option of the best precision.
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*/
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*/
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hstepm=hstepm/stepm; /* Typically in stepm units, if k= 2 years, = 2/6 months = 4 */
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hstepm=hstepm/stepm; /* Typically in stepm units, if stepm=6 & estepm=24 , = 24/6 months = 4 */
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agelim=AGESUP;
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agelim=AGESUP;
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for (age=bage; age<=fage; age ++){ /* If stepm=6 months */
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for (age=bage; age<=fage; age ++){ /* If stepm=6 months */
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Line 1587 void evsij(char fileres[], double ***eij
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Line 1603 void evsij(char fileres[], double ***eij
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}
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}
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/************ Variance ******************/
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/************ Variance ******************/
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void varevsij(char fileres[], double ***vareij, double **matcov, double x[], double delti[], int nlstate, int stepm, double bage, double fage, double **oldm, double **savm, double **prlim, double ftolpl, int ij)
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void varevsij(char fileres[], double ***vareij, double **matcov, double x[], double delti[], int nlstate, int stepm, double bage, double fage, double **oldm, double **savm, double **prlim, double ftolpl, int ij, int estepm)
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{
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{
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/* Variance of health expectancies */
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/* Variance of health expectancies */
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/* double **prevalim(double **prlim, int nlstate, double *xp, double age, double **oldm, double ** savm,double ftolpl);*/
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/* double **prevalim(double **prlim, int nlstate, double *xp, double age, double **oldm, double ** savm,double ftolpl);*/
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double **newm;
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double **newm;
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double **dnewm,**doldm;
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double **dnewm,**doldm;
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int i, j, nhstepm, hstepm, h, nstepm, kk;
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int i, j, nhstepm, hstepm, h, nstepm ;
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int k, cptcode;
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int k, cptcode;
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double *xp;
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double *xp;
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double **gp, **gm;
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double **gp, **gm;
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Line 1613 void varevsij(char fileres[], double ***
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Line 1629 void varevsij(char fileres[], double ***
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dnewm=matrix(1,nlstate,1,npar);
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dnewm=matrix(1,nlstate,1,npar);
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doldm=matrix(1,nlstate,1,nlstate);
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doldm=matrix(1,nlstate,1,nlstate);
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kk=1; /* For example stepm=6 months */
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if(estepm < stepm){
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hstepm=kk*YEARM; /* (a) Every k years of age (in months), for example every k=2 years 24 m */
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printf ("Problem %d lower than %d\n",estepm, stepm);
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hstepm=stepm; /* or (b) We decided to compute the life expectancy with the smallest unit */
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}
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else hstepm=estepm;
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/* For example we decided to compute the life expectancy with the smallest unit */
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/* hstepm beeing the number of stepms, if hstepm=1 the length of hstepm is stepm.
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/* hstepm beeing the number of stepms, if hstepm=1 the length of hstepm is stepm.
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nhstepm is the number of hstepm from age to agelim
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nhstepm is the number of hstepm from age to agelim
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nstepm is the number of stepm from age to agelin.
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nstepm is the number of stepm from age to agelin.
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Line 1627 void varevsij(char fileres[], double ***
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Line 1645 void varevsij(char fileres[], double ***
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you sum them up and add 1 year (area under the trapezoids) you won't get the same
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you sum them up and add 1 year (area under the trapezoids) you won't get the same
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results. So we changed our mind and took the option of the best precision.
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results. So we changed our mind and took the option of the best precision.
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*/
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*/
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hstepm=hstepm/stepm; /* Typically in stepm units, if k= 2 years, = 2/6 months = 4 */
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hstepm=hstepm/stepm; /* Typically in stepm units, if stepm=6 & estepm=24 , = 24/6 months = 4 */
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agelim = AGESUP;
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agelim = AGESUP;
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for (age=bage; age<=fage; age ++){ /* If stepm=6 months */
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for (age=bage; age<=fage; age ++){ /* If stepm=6 months */
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nstepm=(int) rint((agelim-age)*YEARM/stepm); /* Typically 20 years = 20*12/6=40 */
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nstepm=(int) rint((agelim-age)*YEARM/stepm); /* Typically 20 years = 20*12/6=40 */
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Line 1913 void printinghtml(char fileres[], char t
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Line 1931 void printinghtml(char fileres[], char t
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int lastpass, int stepm, int weightopt, char model[],\
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int lastpass, int stepm, int weightopt, char model[],\
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int imx,int jmin, int jmax, double jmeanint,char optionfile[], \
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int imx,int jmin, int jmax, double jmeanint,char optionfile[], \
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char optionfilehtm[],char rfileres[], char optionfilegnuplot[],\
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char optionfilehtm[],char rfileres[], char optionfilegnuplot[],\
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char version[], int popforecast ){
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char version[], int popforecast, int estepm ){
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int jj1, k1, i1, cpt;
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int jj1, k1, i1, cpt;
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FILE *fichtm;
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FILE *fichtm;
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/*char optionfilehtm[FILENAMELENGTH];*/
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/*char optionfilehtm[FILENAMELENGTH];*/
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Line 1936 Interval (in months) between two waves:
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Line 1954 Interval (in months) between two waves:
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- Observed prevalence in each state: <a href=\"p%s\">p%s</a> <br>\n
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- Observed prevalence in each state: <a href=\"p%s\">p%s</a> <br>\n
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- Stationary prevalence in each state: <a href=\"pl%s\">pl%s</a> <br>\n
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- Stationary prevalence in each state: <a href=\"pl%s\">pl%s</a> <br>\n
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- Transition probabilities: <a href=\"pij%s\">pij%s</a><br>\n
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- Transition probabilities: <a href=\"pij%s\">pij%s</a><br>\n
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- Life expectancies by age and initial health status: <a href=\"e%s\">e%s</a> <br>\n",version,title,datafile,firstpass,lastpass,stepm, weightopt,model,imx,jmin,jmax,jmean,fileres,fileres,optionfilegnuplot,optionfilegnuplot,fileres,fileres,fileres,fileres,fileres,fileres,fileres,fileres);
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- Life expectancies by age and initial health status (estepm=%2d months): <a href=\"e%s\">e%s</a> <br>\n",version,title,datafile,firstpass,lastpass,stepm, weightopt,model,imx,jmin,jmax,jmean,fileres,fileres,optionfilegnuplot,optionfilegnuplot,fileres,fileres,fileres,fileres,fileres,fileres,fileres,fileres,estepm);
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fprintf(fichtm,"\n
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fprintf(fichtm,"\n
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- Parameter file with estimated parameters and the covariance matrix: <a href=\"%s\">%s</a> <br>\n
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- Parameter file with estimated parameters and the covariance matrix: <a href=\"%s\">%s</a> <br>\n
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- Variances of life expectancies by age and initial health status: <a href=\"v%s\">v%s</a><br>\n
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- Variances of life expectancies by age and initial health status (estepm=%d months): <a href=\"v%s\">v%s</a><br>\n
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- Health expectancies with their variances: <a href=\"t%s\">t%s</a> <br>\n
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- Health expectancies with their variances: <a href=\"t%s\">t%s</a> <br>\n
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- Standard deviation of stationary prevalences: <a href=\"vpl%s\">vpl%s</a> <br>\n",rfileres,rfileres,fileres,fileres,fileres,fileres,fileres,fileres);
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- Standard deviation of stationary prevalences: <a href=\"vpl%s\">vpl%s</a> <br>\n",rfileres,rfileres, estepm, fileres,fileres,fileres,fileres,fileres,fileres);
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if(popforecast==1) fprintf(fichtm,"\n
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if(popforecast==1) fprintf(fichtm,"\n
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- Prevalences forecasting: <a href=\"f%s\">f%s</a> <br>\n
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- Prevalences forecasting: <a href=\"f%s\">f%s</a> <br>\n
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Line 3021 printf("Total number of individuals= %d,
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Line 3039 printf("Total number of individuals= %d,
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fputs(line,ficparo);
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fputs(line,ficparo);
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}
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}
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ungetc(c,ficpar);
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ungetc(c,ficpar);
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estepm=0;
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fscanf(ficpar,"agemin=%lf agemax=%lf bage=%lf fage=%lf\n",&ageminpar,&agemaxpar, &bage, &fage);
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fscanf(ficpar,"agemin=%lf agemax=%lf bage=%lf fage=%lf estepm=%d\n",&ageminpar,&agemaxpar, &bage, &fage, &estepm);
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if (estepm==0 || estepm < stepm) estepm=stepm;
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if (fage <= 2) {
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if (fage <= 2) {
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bage = ageminpar;
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bage = ageminpar;
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fage = agemaxpar;
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fage = agemaxpar;
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}
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}
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fprintf(ficres,"# agemin agemax for life expectancy, bage fage (if mle==0 ie no data nor Max likelihood).\n");
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fprintf(ficres,"# agemin agemax for life expectancy, bage fage (if mle==0 ie no data nor Max likelihood).\n");
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fprintf(ficres,"agemin=%.0f agemax=%.0f bage=%.0f fage=%.0f\n",ageminpar,agemaxpar,bage,fage);
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fprintf(ficres,"agemin=%.0f agemax=%.0f bage=%.0f fage=%.0f estepm=%d\n",ageminpar,agemaxpar,bage,fage, estepm);
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fprintf(ficparo,"agemin=%.0f agemax=%.0f bage=%.0f fage=%.0f\n",ageminpar,agemaxpar,bage,fage);
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fprintf(ficparo,"agemin=%.0f agemax=%.0f bage=%.0f fage=%.0f estepm=%d\n",ageminpar,agemaxpar,bage,fage, estepm);
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while((c=getc(ficpar))=='#' && c!= EOF){
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while((c=getc(ficpar))=='#' && c!= EOF){
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ungetc(c,ficpar);
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ungetc(c,ficpar);
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Line 3105 while((c=getc(ficpar))=='#' && c!= EOF){
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Line 3123 while((c=getc(ficpar))=='#' && c!= EOF){
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/*--------- index.htm --------*/
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/*--------- index.htm --------*/
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printinghtml(fileres,title,datafile, firstpass, lastpass, stepm, weightopt,model,imx,jmin,jmax,jmean,optionfile,optionfilehtm,rfileres,optionfilegnuplot,version,popforecast);
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printinghtml(fileres,title,datafile, firstpass, lastpass, stepm, weightopt,model,imx,jmin,jmax,jmean,optionfile,optionfilehtm,rfileres,optionfilegnuplot,version,popforecast,estepm);
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/*--------------- Prevalence limit --------------*/
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/*--------------- Prevalence limit --------------*/
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Line 3265 while((c=getc(ficpar))=='#' && c!= EOF){
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Line 3283 while((c=getc(ficpar))=='#' && c!= EOF){
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eij=ma3x(1,nlstate,1,nlstate,(int) bage, (int) fage);
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eij=ma3x(1,nlstate,1,nlstate,(int) bage, (int) fage);
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oldm=oldms;savm=savms;
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oldm=oldms;savm=savms;
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evsij(fileres, eij, p, nlstate, stepm, (int) bage, (int)fage, oldm, savm, k);
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evsij(fileres, eij, p, nlstate, stepm, (int) bage, (int)fage, oldm, savm, k, estepm);
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vareij=ma3x(1,nlstate,1,nlstate,(int) bage, (int) fage);
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vareij=ma3x(1,nlstate,1,nlstate,(int) bage, (int) fage);
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oldm=oldms;savm=savms;
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oldm=oldms;savm=savms;
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varevsij(fileres, vareij, matcov, p, delti, nlstate, stepm, (int) bage, (int) fage, oldm, savm, prlim, ftolpl,k);
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varevsij(fileres, vareij, matcov, p, delti, nlstate, stepm, (int) bage, (int) fage, oldm, savm, prlim, ftolpl,k, estepm);
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