Annotation of imach/src/imach.exe, revision 1.10

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        !           156: &@$Revision: 1.119 $ $Date: 2006/03/15 17:42:26 $Imach version 0.98e, March 2006, INED-EUROREVES-Institut de longevite @,A DIRC2 = %s 
1.9       brouard   157:  DIRC3 = %s 
                    158:  DIRC = %s 
                    159: ERREUR ...
1.1       lievre    160: %s
1.9       brouard   161: allocation failure in vectorallocation failure in ivectorallocation failure 1 in matrix()allocation failure 2 in matrix()allocation failure 3 in matrix()Too many iterations in brent?|=ŋ!r??w?#B;B#B;#B׻-C6*?%d day(s) %d hour(s) %d minute(s) %d second(s)
                    162: Powell iter=%d -2*LL=%.12f %ld sec. %ld sec. %d %.12lf %d %.12f %.12lf%d
1.7       brouard   163: Considering the time needed for this last iteration #%d: %ld seconds,
1.8       lievre    164:    - if your program needs %d iterations to converge, convergence will be 
                    165:    reached in %s i.e.
1.7       brouard   166:    on %s (current time is %s);
1.10    ! brouard   167: powell exceeding maximum iterations.HB@A@A@A:0yE>?%9d %6d %2d %2d %1d %1d %3d %11.6f %8.4f %11.6f %11.6f %11.6f  %10.6f %10.6f
1.9       brouard   168: @A:0yE>?
                    169: <br>File of contributions to the likelihood: <a href="%s">%s</a><br>
                    170: w#individual(line's_record) s1 s2 wave# effective_wave# number_of_matrices_product pij weight -2ln(pij)*weight 0pij_x 0pij_(x-stepm) cumulating_loglikeli_by_health_state(reweighted=-2ll*weightXnumber_of_contribs/sum_of_weights) and_total
1.8       lievre    171: #num_i i s1 s2 mi mw dh likeli weight 2wlli out sav  -2*gipw/gsw*weight*ll[%d]++ -2*gipw/gsw*weight*ll(total)
1.9       brouard   172: Problem with resultfile: %s
                    173: PowellPowell
                    174: # Powell
1.8       lievre    175: # iter -2*LL p%1d%1d
1.1       lievre    176: #Number of iterations = %d, -2 Log likelihood = %.12f
1.9       brouard   177: #Number of iterations = %d, -2 Log likelihood = %.12f 
1.8       lievre    178: 
1.6       brouard   179: #Number of iterations = %d, -2 Log likelihood = %.12f 
1.9       brouard   180: -C6??h㈵>h㈵>>?Singular matrix in routine ludcmp#B;
                    181: Calculation of the hessian matrix. Wait...
1.1       lievre    182: Calculation of the hessian matrix. Wait...
1.9       brouard   183: 
                    184: Inverting the hessian to get the covariance matrix. Wait...
1.1       lievre    185: Inverting the hessian to get the covariance matrix. Wait...
                    186: 
1.9       brouard   187: #Hessian matrix#
1.1       lievre    188: #Hessian matrix#
1.10    ! brouard   189: %.3e .%d%d# %s.%s
        !           190: #%s
        !           191: #%s
        !           192: # %s
1.2       lievre    193: #********** Variable V%d=%d **********
1.9       brouard   194: # Age Prev(%d) N(%d) NAge %d %d.=%.0f loss[%d]=NaNQ%% %d.=%.0f loss[%d]=%.1f%% %d.=%.0f prev[%d]=%.1f%% %d %.5f %.0f %.0f %d%d=%.0fProblem with prevalence resultfile: %s
1.10    ! brouard   195:  %d.=%.0f prev[%d]=NaNQ%% %d NaNq %.0f %.0fOthers in log...TotalSee log file for details...|=Bh㈵>Error on individual =%d agev[m][i]=%f m=%d
1.9       brouard   196: @AWarning! No valid information for individual %ld line=%d (skipped) and may be others, see log file
                    197: Warning! No valid information for individual %ld line=%d (skipped)
                    198: Delay (in months) between two waves Min=%d (for indiviudal %ld) Max=%d (%ld) Mean=%f
1.7       brouard   199: 
1.9       brouard   200:  Error! Negative delay (%d) between waves %d and %d of individual %ld at line %d who is aged %.1f with statuses from %d to %d
                    201:  Error! Negative delay (%d to death) between waves %d and %d of individual %ld at line %d who is aged %.1f with statuses from %d to %d
                    202:     We assumed that the date of interview was correct (and not the date of death) and postponed the death %d month(s) (one stepm) after the interview. You MUST fix the contradiction between dates.
1.10    ! brouard   203: C?(@# (a) Life expectancies by health status at initial age and (b) health expectancies by health status at initial age
        !           204: # Age e%1d%1d  e%1d. %d|%3.0f%9.4fProblem %d lower than %d
        !           205: C@A??# Health expectancies with standard errors
        !           206:  e%1d%1d (SE)# Subdiagonal matrix of covariances of health expectancies by age: cov(eij,ekl)
        !           207:   %1d%1d,%1d%1d %9.4f (%.4f) %.4fC@A??%-dComputing total mortality p.j=w1*p1j+w2*p2j+..: result on file '%s' 
1.9       brouard   208: # Age cov=%-d# probabilities of dying before estepm=%d months for people of exact age and weighted probabilities w1*p1j+w2*p2j+... stand dev in()
                    209:  p.%-d SE w%1d p%-d%-d
1.10    ! brouard   210: # Routine varevsij
        !           211: <li><h4> Computing probabilities of dying over estepm months as a weighted average (i.e global mortality independent of initial healh state)</h4></li>
        !           212: 
1.9       brouard   213: <br>%s  <br>
1.10    ! brouard   214: # Variance and covariance of health expectancies e.j 
        !           215: #  (weighted average of eij where weights are the age specific period (stable) prevalences in each health state 
        !           216:  Cov(e.%1d, e.%1d)%3d %d  %11.3e %11.3e %11.3e %11.3e %.0f 
1.8       lievre    217: set noparametric;set nolabel; set ter png small;set size 0.65, 0.65
                    218:  set log y; set nolog x;set xlabel "Age"; set ylabel "Force of mortality (year-1)";
                    219:  plot "%s"  u 1:($3) not w l 1 
                    220:  replot "%s"  u 1:(($3+1.96*$4)) t "95%% interval" w l 2 
                    221:  replot "%s"  u 1:(($3-1.96*$4)) not w l 2 
1.6       brouard   222: <br> File (multiple files are possible if covariates are present): <A href="%s">%s</a>
1.8       lievre    223: varmuptjgr
1.7       brouard   224: <br> Probability is computed over estepm=%d months. <br> <img src="%s%s.png"> <br>
                    225: 
                    226: set out "%s%s.png";replot;
1.10    ! brouard   227: the age specific prevalence observed in the population i.e cross-sectionally
        !           228:  in each health state (popbased=1) Error in movingaverage mobilav=%d
        !           229: @A??@`@# Standard deviation of period (stable) prevalences 
        !           230:  %1d-%1d %.5f (%.5f)?Computing standard deviation of one-step probabilities: result on file '%s' 
1.8       lievre    231: Computing matrix of variance covariance of one-step probabilities: result on file '%s' 
                    232: and correlation matrix of one-step probabilities: result on file '%s' 
                    233: #One-step probabilities and stand. devi in ()
                    234: #One-step probabilities and covariance matrix
                    235: #One-step probabilities and correlation matrix
1.9       brouard   236:  p%1d-%1d (SE) p%1d-%1d 
                    237: <li><h4> <a href="%s">Matrix of variance-covariance of pairs of step probabilities (drawings)</a></h4></li>
                    238: 
1.8       lievre    239: # Routine varprob
1.6       brouard   240: <li><h4> Computing and drawing one step probabilities with their confidence intervals</h4></li>
1.8       lievre    241: 
1.7       brouard   242: <h4>Matrix of variance-covariance of pairs of step probabilities</h4>
                    243:   file %s<br>
1.8       lievre    244: 
1.7       brouard   245: Ellipsoids of confidence centered on point (p<inf>ij</inf>, p<inf>kl</inf>) are estimatedand drawn. It helps understanding how is the covariance between two incidences. They are expressed in year<sup>-1</sup> in order to be less dependent of stepm.<br>
1.8       lievre    246: 
1.7       brouard   247: <br> Contour plot corresponding to x'cov<sup>-1</sup>x = 4 (where x is the column vector (pij,pkl)) are drawn. It can be understood this way: if pij and pkl where uncorrelated the (2x2) matrix of covariance would have been (1/(var pij), 0 , 0, 1/(var pkl)), and the confidence interval would be 2 standard deviations wide on each axis. <br> Now, if both incidences are correlated (usual case) we diagonalised the inverse of the covariance matrix and made the appropriate rotation to look at the uncorrelated principal directions.<br>To be simple, these graphs help to understand the significativity of each parameter in relation to a second other one.<br> 
1.6       brouard   248: **********
                    249: #
1.8       lievre    250:  V%d=%d 
                    251: <hr  size="2" color="#EC5E5E">********** Variable **********
1.6       brouard   252: <hr size="2" color="#EC5E5E">
1.9       brouard   253: %d %11.3e (%11.3e) %d %d%d-%d%d mu %.4e %.4e Var %.4e %.4e cor %.3f cov %.4e Eig %.3e %.3e 1stv %.3f %.3f tan %.3f
                    254:  %d (%.3f),
                    255: # Age %d, p%1d%1d - p%1d%1d
                    256: set label "%d" at %11.3e,%11.3e center
                    257: replot %11.3e+ %.3f*(%11.3e*%11.3e*cos(t)+%11.3e*%11.3e*sin(t)), %11.3e +%.3f*(%11.3e*%11.3e*cos(t)+%11.3e*%11.3e*sin(t)) notvarpijgr
                    258: set out "%s%d%1d%1d-%1d%1d.png";replot;
1.8       lievre    259: set parametric;unset label
                    260: set log y;set log x; set xlabel "p%1d%1d (year-1)";set ylabel "p%1d%1d (year-1)"
1.6       brouard   261: set ter png small
1.9       brouard   262: set size 0.65,0.65
1.8       lievre    263: <br>Ellipsoids of confidence cov(p%1d%1d,p%1d%1d) expressed in year<sup>-1</sup> :<a href="%s%d%1d%1d-%1d%1d.png">%s%d%1d%1d-%1d%1d.png</A>, 
                    264: <br><img src="%s%d%1d%1d-%1d%1d.png"> 
                    265: <br> Correlation at age %d (%.3f),
                    266: set out "%s%d%1d%1d-%1d%1d.png"
1.9       brouard   267: plot [-pi:pi] %11.3e+ %.3f*(%11.3e*%11.3e*cos(t)+%11.3e*%11.3e*sin(t)), %11.3e +%.3f*(%11.3e*%11.3e*cos(t)+%11.3e*%11.3e*sin(t)) not%d %d%d-%d%d mu %.4e %.4e Var %.4e %.4e cor %.3f cov %.4e Eig %.3e %.3e 1stv %.3f %.3f tang %.3f
                    268: Others in log...
                    269: %11.3e 
                    270: %d %d-%d %11.3e?(@@?<ul><li><a href='#firstorder'>Result files (first order: no variance)</a>
                    271:     <li><a href='#secondorder'>Result files (second order (variance)</a>
                    272:  </ul>p<ul><li><h4><a name='firstorder'>Result files (first order: no variance)</a></h4>
1.7       brouard   273:   - Observed prevalence in each state (during the period defined between %.lf/%.lf/%.lf and %.lf/%.lf/%.lf): <a href="%s">%s</a> <br>
1.9       brouard   274:  pij - Estimated transition probabilities over %d (stepm) months: <a href="%s">%s</a><br>
1.10    ! brouard   275:  pl - Period (stable) prevalence in each health state: <a href="%s">%s</a> <br>
        !           276: e - (a) Life expectancies by health status at initial age, (b) health expectancies by health status at initial age:  ei., eij (estepm=%2d months):    <a href="%s">%s</a> <br>
        !           277: </li> 
1.8       lievre    278: <ul><li><b>Graphs</b></li><p><hr  size="2" color="#EC5E5E">************ Results for covariates ************
1.10    ! brouard   279: <hr size="2" color="#EC5E5E">pe<br>- Pij or Conditional probabilities to be observed in state j being in state i, %d (stepm) months before: <a href="%s%d1.png">%s%d1.png</a><br> <img src="%s%d1.png"><br>- Pij or Conditional probabilities to be observed in state j being in state i %d (stepm) months before but expressed in per year i.e. quasi incidences if stepm is small and probabilities too: <a href="%s%d2.png">%s%d2.png</a><br> <img src="%s%d2.png"><br>- Period (stable) prevalence in each health state : <a href="%s%d%d.png">%s%d%d.png</a><br> <img src="%s%d%d.png">exp
        !           280: <br>- Life expectancy by health state (%d) at initial age and its decomposition into health expectancies : <a href="%s%d%d.png">%s%d%d.png</a> <br> <img src="%s%d%d.png"></ul>
1.9       brouard   281: <br><li><h4> <a name='secondorder'>Result files (second order: variances)</a></h4>
1.6       brouard   282:  - Parameter file with estimated parameters and covariance matrix: <a href="%s">%s</a> <br>
1.9       brouard   283: prob - Variance of one-step probabilities: <a href="%s">%s</a> <br>
                    284: probcov - Variance-covariance of one-step probabilities: <a href="%s">%s</a> <br>
                    285: probcor - Correlation matrix of one-step probabilities: <a href="%s">%s</a> <br>
1.10    ! brouard   286: cve - Variances and covariances of health expectancies by age and <b>initial health status</b> (cov(e<sup>ij</sup>,e<sup>kl</sup>)(estepm=%2d months):    <a href="%s">%s</a> <br>
        !           287: </li>stde - (a) Health expectancies by health status at initial age (e<sup>ij</sup>) and standard errors (in parentheses) (b) life expectancies and standard errors (e<sup>i.</sup>=e<sup>i1</sup>+e<sup>i2</sup>+...)(estepm=%2d months):    <a href="%s">%s</a> <br>
        !           288: </li>v - Variances and covariances of health expectancies by age. Status (i) based health expectancies (in state j), eij are weighted by the period prevalences in each state i (if popbased=1, an additional computation is done using the cross-sectional prevalences (i.e population based) (estepm=%d months): <a href="%s">%s</a><br>
        !           289: t - Total life expectancy and total health expectancies to be spent in each health state e<sup>.j</sup> with their standard errors: <a href="%s">%s</a> <br>
        !           290: vpl - Standard deviation of period (stable) prevalences: <a href="%s">%s</a> <br>
        !           291:  <ul><li><b>Graphs</b></li><p><br>- Observed (cross-sectional) and period (incidence based) prevalence (with 95%% confidence interval) in state (%d): %s%d%d.png <br><img src="%s%d%d.png">
1.8       lievre    292: <br>- Total life expectancy by age and health expectancies in states (1) and (2): %s%d.png<br><img src="%s%d.png">cd "%s" 
1.10    ! brouard   293: p%d=%f " t"Period (stable) prevalence" w l 0,"%s" every :::%d::%d u 1:($2+1.96*$3) "%%lf %%lf (%%lf) %%*lf (%%*lf)" t"95%% CI" w l 1,"%s" every :::%d::%d u 1:($2-1.96*$3) "%%lf" t"" w l 1,"%s" every :::%d::%d u 1:($%d) t"Observed prevalence " w l 2
1.7       brouard   294: set out "%s%d%d.png" 
1.6       brouard   295: 
1.7       brouard   296: #set out "v%s%d%d.png" 
1.9       brouard   297: set xlabel "Age" 
1.1       lievre    298: set ylabel "Probability" 
1.6       brouard   299: set ter png small
                    300: set size 0.65,0.65
1.9       brouard   301: plot [%.f:%.f] "%s" every :::%d::%d u 1:2 "%%lf
1.7       brouard   302: set out "%s%d.png" 
1.8       lievre    303: set ylabel "Years" 
1.6       brouard   304: set ter png small
                    305: set size 0.65,0.65
1.9       brouard   306: plot [%.f:%.f] "%s" every :::%d::%d u 1:2 "%%lf" t"LE in state (%d)" w l ,"%s" every :::%d::%d u 1:($2-$3*2) "%%lf" t"" w l 0,"%s" every :::%d::%d u 1:($2+$3*2) "%%lfset ter png small
1.6       brouard   307: set size 0.65,0.65
1.10    ! brouard   308: plot [%.f:%.f] "%s" every :::%d::%d u 1:%d t "e%d1" w l ,"%s" every :::%d::%d u 1:%d t "e%d%d" w l ,"%s" every :::%d::%d u 1:%d t "e%d." w lset xlabel "Age" 
1.1       lievre    309: set ylabel "Probability" 
1.6       brouard   310: set ter png small
                    311: set size 0.65,0.65
1.7       brouard   312: unset log y
1.8       lievre    313: plot [%.f:%.f] "%s" u ($1==%d ? ($3):1/0):($%d/($%d+$%d)) t"prev(%d,%d)" w l,"%s" u ($1==%d ? ($3):1/0):($%d/($%d)) t"prev(%d,%d)" w l
1.6       brouard   314: 
                    315: set title "Probability"
1.9       brouard   316: 
1.6       brouard   317: set ter png small
                    318: set size 0.65,0.65
1.1       lievre    319: set log y
1.9       brouard   320: plot  [%.f:%.f]  exp(p%d+p%d*x+p%d*%d+p%d*%d*x)/(1+exp(p%d+p%d*x) t "p%d%d"  %f*exp(p%d+p%d*x
                    321: set ylabel "Quasi-incidence per year"
                    322: " t"" w l 0" t"TLE" w l ,@AProblem with forecast resultfile: %s
1.8       lievre    323: Computing forecasting: result on file '%s' 
                    324: # Mean day of interviews %.lf/%.lf/%.lf (%.2f) between %.2f and %.2f 
                    325: #****** Routine prevforecast **
                    326: 
                    327: #****** V%d=%d, hpijx=probability over h years, hp.jx is weighted by observed prev ******
                    328: # Covariate valuofcovar yearproj age p%d%d p.%d
1.9       brouard   329: # Forecasting at date %.lf/%.lf/%.lf  %.3f%d %d %.f %.f @AA??@`@ P.%d
1.1       lievre    330: 
1.9       brouard   331: # Forecasting at date %.lf/%.lf/%.lf r%d %lf
                    332:  %15.2f
                    333:  %3.f  [Population]Problem with population file : %s
                    334: @AC??@`@(@aProblem with file: %s
                    335: # Parameters nlstate*nlstate*ncov a12*1 + b12 * age + ...# Parameters nlstate*nlstate*ncov a12*1 + b12 * age + ...
                    336: %1d%1d 0.# Scales (for hessian or gradient estimation)# Scales (for hessian or gradient estimation)
                    337: # Covariance matrix# Covariance matrix
                    338: %1d%1d%d Var(%s%1d%1d) Cov(%s%1d%1d,%s%1d%1d)#%1d%1d%d(@<ul><li><h4>Result files </h4>
1.8       lievre    339:  Force of mortality. Parameters of the Gompertz fit (with confidence interval in brackets):<br>  mu(age) =%lf*exp(%lf*(age-%d)) per year<br><br> p[%d] = %lf [%f ; %f]<br>
1.9       brouard   340: <br><br><img src="graphmort.png"><ul><li><h4>Life table</h4>
                    341:  <br>
                    342: Age   l<inf>x</inf>     q<inf>x</inf> d(x,x+1)    L<inf>x</inf>     T<inf>x</inf>     e<infx</inf><br>%d %.0lf %lf %.0lf %.0lf %.0lf %lf<br>
                    343: @set out "graphmort.png"
                    344:  set xlabel "Age"
1.7       brouard   345:  set ylabel "Force of mortality (per year)" 
                    346:  set ter png small
                    347:  set log y
                    348: set size 0.65,0.65
1.9       brouard   349: plot [%d:100] %lf*exp(%lf*(x-%d))                         bcdc
1.7       brouard   350: %s
1.9       brouard   351: %s
                    352: argv[0]=%s argv[1]=%s, 
                    353: 
                    354: argv[0]=%s pathimach=%s, 
                    355: optionfile=%s 
                    356: optionfilext=%s 
                    357: optionfilefiname=%s
                    358: 
                    359: pathtot=%s,
1.7       brouard   360: path=%s,
                    361: optionfile=%s 
                    362: optionfilext=%s 
                    363: optionfilefiname=%s
1.6       brouard   364: Log filename:%s
1.9       brouard   365: 
1.7       brouard   366: Enter the parameter file name: 
1.8       lievre    367: pathimach=%s
1.7       brouard   368: pathtot=%s
                    369:  path=%s 
                    370:  optionfile=%s
                    371:  optionfilext=%s
                    372:  optionfilefiname=%s
1.9       brouard   373: Local time (at start):%sLocal time (at start): %stitle=%s datafile=%s lastobs=%d firstpass=%d lastpass=%d
1.6       brouard   374: ftol=%lf stepm=%d ncovcol=%d nlstate=%d ndeath=%d maxwav=%d mle=%d weight=%d model=%s
1.8       lievre    375: title=%s datafile=%s lastobs=%d firstpass=%d lastpass=%d
1.6       brouard   376: ftol=%e stepm=%d ncovcol=%d nlstate=%d ndeath=%d maxwav=%d mle=%d weight=%d
1.5       lievre    377: model=%s
1.9       brouard   378:  %lf
                    379: Problem with optionfile %s
                    380: 
                    381: Type  q for exiting: %sProblem with logfile %s
                    382: Problem creating directory or it already exists %s%s, err=%d
1.10    ! brouard   383: Current directory %s!
        !           384: 
        !           385: Enter the parameter file name: Pathr |%s|
        !           386: "val= |%s| pathr=%s
        !           387: %le %le %.5le#%s
        !           388: %d/%d%s.Problem with Output resultfile: %s
        !           389:  You choose mle=-3, look at file %s for a template of covariance matrix 
        !           390: Problem writing new parameter file: %s
        !           391: Problem while opening datafile: %s
1.9       brouard   392: Comment line
                    393: %s
1.10    ! brouard   394: Error in line parameters number %d, %1d%1d instead of %1d%1d 
1.9       brouard   395: Error reading data around '%d' at line number %d %s for individual %d, '%s'
                    396: Should be a status of wave %d. Setting maxwav=%d might be wrong.  Exiting.
                    397: Error reading data around '%d' at line number %ld %s for individual %d, '%s'
                    398: Should be a covar (meaning 0 for the reference or 1).  Exiting.
                    399: Error reading data around '%d' at line number %ld %s for individual %d, '%s'
                    400: Should be a value of the %d covar (meaning 0 for the reference or 1. IMaCh does not build design variables, do it your self).  Exiting.
1.10    ! brouard   401: ageage*ageError. Non available option model=%s Error reading data around '%d' at line number %ld %s for individual %d
        !           402: Should be a weight.  Exiting.
1.9       brouard   403: Error reading data around '%s' at line number %ld %s for individual %d, '%s'
                    404: Should be a date of interview (mm/yyyy or .) at wave %d.  Exiting.
1.10    ! brouard   405:  You choose mle=-1, look at file %s for a template of covariance matrix 
        !           406: Error! Month of death of individual %ld on line %d was unknown %2d, you should set it otherwise the information on the death is skipped and results are biased.
1.8       lievre    407: Error! Month of death of individual %ld on line %d was unknown %f, you should set it otherwise the information on the death is skipped and results are biased.
1.10    ! brouard   408: Error: on wave %d of individual %d status %d > (nlstate+ndeath)=(%d+%d)=%d
1.9       brouard   409: Error! Date of death (month %2d and year %4d) of individual %ld on line %d was unknown, you must set an arbitrary year of death or he/she is skipped and results are biased
1.10    ! brouard   410: Warning negative age at death: %ld line:%d
1.8       lievre    411: Total number of individuals= %d, Agemin = %.2f, Agemax= %.2f
1.1       lievre    412: 
1.9       brouard   413: Problem with file %s<body>
1.7       brouard   414: <title>IMaCh Cov %s</title>
                    415:  <font size="2">%s <br> %s</font> <hr size="2" color="#EC5E5E"> 
                    416: Title=%s <br>Datafile=%s Firstpass=%d Lastpass=%d Stepm=%d Weight=%d Model=%s<br>
1.8       lievre    417: <body>
1.7       brouard   418: <title>IMaCh %s</title>
                    419:  <font size="2">%s <br> %s</font> <hr size="2" color="#EC5E5E"> 
                    420: Title=%s <br>Datafile=%s Firstpass=%d Lastpass=%d Stepm=%d Weight=%d Model=%s<br>
                    421: 
                    422: <hr  size="2" color="#EC5E5E"> <ul><li><h4>Parameter files</h4>
1.10    ! brouard   423:  - Parameter file: <a href="%s.%s">%s.%s</a><br>
1.7       brouard   424:  - Copy of the parameter file: <a href="o%s">o%s</a><br>
                    425:  - Log file of the run: <a href="%s">%s</a><br>
                    426:  - Gnuplot file name: <a href="%s">%s</a><br>
                    427:  - Date and time at start: %s</ul>
1.10    ! brouard   428: <br>Total number of observations=%d <br>
1.7       brouard   429: Youngest age at first (selected) pass %.2f, oldest age %.2f<br>
                    430: Interval (in months) between two waves: Min=%d Max=%d Mean=%.2lf<br>
1.8       lievre    431: First Likeli=%12.6f ipmx=%ld sw=%12.6f %d %8.5fSecond Likeli=%12.6f ipmx=%ld sw=%12.6ftitle=%s datafile=%s lastobs=%d firstpass=%d lastpass=%d
1.6       brouard   432: ftol=%e stepm=%d ncovcol=%d nlstate=%d ndeath=%d maxwav=%d mle= 0 weight=%d
1.5       lievre    433: model=%s
1.9       brouard   434: %d%d %1d%1d %f 
                    435: # %s
                    436: # %s
                    437: set missing 'NaNq'
                    438:  %.5e# Covariance matrix 
1.6       brouard   439: # 121 Var(a12)
                    440: # 122 Cov(b12,a12) Var(b12)
                    441: #   ...
                    442: # 232 Cov(b23,a12)  Cov(b23,b12) ... Var (b23)
1.9       brouard   443: # Covariance matrix 
                    444: # 121 Var(a12)
                    445: # 122 Cov(b12,a12) Var(b12)
                    446: #   ...
                    447: # 232 Cov(b23,a12)  Cov(b23,b12) ... Var (b23)
                    448: Covariance matrix
                    449:  
                    450:  iter=%d MLE=%f Eq=%lf*exp(%lf*(age-%d))
                    451: %f [%f ; %f]
                    452: agemin=%lf agemax=%lf bage=%lf fage=%lf estepm=%d
1.8       lievre    453: # agemin agemax for life expectancy, bage fage (if mle==0 ie no data nor Max likelihood).
                    454: agemin=%.0f agemax=%.0f bage=%.0f fage=%.0f estepm=%d
                    455: begin-prev-date=%lf/%lf/%lf end-prev-date=%lf/%lf/%lf mov_average=%d
                    456: begin-prev-date=%.lf/%.lf/%.lf end-prev-date=%.lf/%.lf/%.lf mov_average=%d
1.5       lievre    457: pop_based=%d
1.8       lievre    458: prevforecast=%d starting-proj-date=%lf/%lf/%lf final-proj-date=%lf/%lf/%lf mobil_average=%d
                    459: prevforecast=%d starting-proj-date=%.lf/%.lf/%.lf final-proj-date=%.lf/%.lf/%.lf mobil_average=%d
1.10    ! brouard   460: Computing period (stable) prevalence: result on file '%s' 
        !           461: # Period (stable) prevalence 
        !           462: #Age %d-%d ****** %.5fComputing pij: result on file '%s' 
1.8       lievre    463: #****** h Pij x Probability to be in state j at age x+h being in i at x 
1.10    ! brouard   464: #****** # Cov Agex agex+h hpijx with i,j=%d %3.f %3.fComputing Total Life expectancies with their standard errors: file '%s' 
        !           465: Computing Health Expectancies: result on file '%s' 
        !           466: Computing Health Expectancies and standard errors: result on file '%s' 
        !           467: Computing Covar. of Health Expectancies: result on file '%s' 
        !           468: Computing Variance-covariance of DFLEs: file '%s' 
        !           469: # Total life expectancy with std error and decomposition into time to be expected in each health state
        !           470: # Age ( e.. (std) e.%d (std)  %4.0f %7.3f (%7.3f)Computing Variance-covariance of period (stable) prevalence: file '%s' 
        !           471: End of Imach with %d errors and/or %d warnings
1.8       lievre    472: End of Imach with %d errors and/or warnings %d
1.6       brouard   473: See log file on %s
1.9       brouard   474: Local time at start %s
1.7       brouard   475: Local time at end   %s
1.9       brouard   476: Local time at start %s
                    477: Local time at end   %sTotal time used %s
1.7       brouard   478: Total time was %d Sec.
1.10    ! brouard   479: <br>Local time at start %s<br>Local time at end   %s<br>Before Current directory %s!
        !           480: Can't move to directory %s!
        !           481: "%sgnuplot.exe"Error gnuplot program not found: %s
1.9       brouard   482: GNUPLOTBINError gnuplot program not found: %s Environment GNUPLOTBIN not set.
                    483: %s %sStarting graphs with: %s
                    484: 
                    485:  Problem with gnuplot Wait...
1.10    ! brouard   486: Type e to edit output files, g to graph again and q for exiting: Starting browser with: %sProblem with variance resultfile: %s
        !           487: Problem with Covar. Health Exp. resultfile: %s
        !           488: Problem with Health Exp. and std errors resultfile: %s
        !           489: Problem with Health Exp. resultfile: %s
1.9       brouard   490: End of ImachEnd of Imach
1.10    ! brouard   491: Problem with variance of period (stable) prevalence  resultfile: %s
        !           492: Problem with total LE resultfile: %s
1.9       brouard   493: Problem with Pij resultfile: %s
1.10    ! brouard   494: Problem with period (stable) prevalence resultfile: %s
        !           495: 
1.9       brouard   496: Age   lx     qx    dx    Lx     Tx     e(x)%d %.0lf %lf %.0lf %.0lf %.0lf %lf
1.10    ! brouard   497: Error reading data around '%s' at line number %ld %s for individual %d, '%s'
        !           498: Should be a date of birth (mm/yyyy or .).  Exiting.
1.9       brouard   499: Problem with %s 
1.10    ! brouard   500: Error reading data around '%s' at line number %ld %s for individual %d, '%s'
        !           501: Should be a date of death (mm/yyyy or .).  Exiting.
        !           502: @xD@xD@AUUUUUU?@CS!uq?sh|??-C6??C?(@@`@TpDu`qhp,vtqLqDvXrhrtrrrrrrrrrrrsss(s4s@sLsTs\sdslsxssssssssssssssttt t,t8t@tHtTt`thttttttttttttttuhrtrrrrrrrrrrrsss(s4s@sLsTs\sdslsxssssssssssssssttt t,t8t@tHtTt`thttttttttttttttu_chdir%_getcwdO_stat'__getmainargs<__p__environ>__p__fmodeP__set_app_typey_cexit_daylight_errno_filbuf_iob^&_onexit&_setmode&_timezone&_tzsetasctimeatexitatoiatol*exit+exp-fclose0fflush3fgets6floor8fopen9fprintf:fputc;fputs?freeBfscanfGfwriteKgetenvOgmtimenlocaltimeologrmalloc|modf~powprintfputcharputsscanfsignalsprintfsqrtsscanfstrcatstrchrstrcpystrlenstrncpystrpbrkstrrchrstrtolsystemungetcExitProcess&GetSystemTimeAsFileTimeSetUnhandledExceptionFilterpppmsvcrt.dllpppppppppppppppppppppppppppppppppppppppppppppppppppppppmsvcrt.dll(p(p(pKERNEL32.dll.fileg&crt1.c& &P&& 2p& B& _atexit& __onexit& .text&&(.data&.bss&.fileZg&imach.ctzflag.08U& _split& c0& _nbocc& _cutv& _nrerror& _vector& z& _ivector& 0& _lvectorP& & _imatrix       & @
1.9       brouard   503: & _matrix
1.10    ! brouard   504: & & _ma3x& @& _subdirf& & P& _maxarg1H_maxarg2X& _powell& _sqrargh && _hpxij*& _func`-& _funconeF& N& _mlikeliQ& _hesscovZ& _pstampa& &&`a& &o& &s& _tricodez& _evsij|& _cvevsij & %&& /&& _varprob& ;&& I&& Z&
        !           505: && h&0&& w&)&& &p)&& &@/&& &P1&& &4&& _main05&& && _lubksbZ& _ludcmppW& _hessijU& _hessiiS& _pmij"& &%& _linminP& _brent& _f1dim& _mnbrak& .text&&&.data&.bss&h.rdata&XS.filedg&strsep.c_strsep&& &.text&&&H&.data&.bss&.filelg&CRTglob.c.text&&&.data&.bss&.filetg&CRTfmode.c.text&&&.data&.bss&.file|g&txtmode.c.text&&&.data&.bss&.fileg&pseudo-reloc.c&&& &.text&&&(.data&.bss&.fileg&CRT_fp10.c_fpreset&& &&&& .text&&&.data&.bss&.fileg&gccmain.c&p.0 && &@&& ___main&& .text&&&.data&&.bss&.fileg&/.text&&&.data&.bss&C&& &.text&&&U&.data&.bss&Mp&& &.textp&&&&.data&.bss&probev&&done&&.textp&&&-.data&.bss&.text&&&.data&.bss&.text&&.data.bss.idata$7@.idata$5h&.idata$4\.idata$6.text&&.data.bss.idata$78.idata$5`&.idata$4T.idata$6h.text&&.data.bss.idata$7<.idata$5d&.idata$4X.idata$6t.fileg&fakehnameTfthunk`&.text&&&.data&.bss&.idata$2&.idata$5\&&.idata$4P&.fileyg&fake.text&&&.data&.bss&.idata$4`&.idata$5l&&.idata$7D&.text&&.data.bss.idata$7p.idata$5&.idata$4.idata$6.text&&.data.bss.idata$7\.idata$5&.idata$4t.idata$6.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6@.text&&.data.bss.idata$7t.idata$5&.idata$4.idata$6.text&&.data.bss.idata$7`.idata$5&.idata$4x.idata$6.text&&.data.bss.idata$7T.idata$5x&.idata$4l.idata$6.text&&.data.bss.idata$7.idata$5.idata$4&.idata$6H.text&&.data.bss.idata$7X.idata$5|&.idata$4p.idata$6.text &&.data.bss.idata$7x.idata$5&.idata$4.idata$6.text0&&.data.bss.idata$7P.idata$5t&.idata$4h.idata$6.text@&&.data.bss.idata$7|.idata$5&.idata$4.idata$6.text@&&.data.bss.idata$7d.idata$5&.idata$4|.idata$6.text@&&.data.bss.idata$7.idata$5&.idata$4.idata$6.textP&&.data.bss.idata$7.idata$5.idata$4&.idata$68.text`&&.data.bss.idata$7.idata$5&.idata$4.idata$6.textp&&.data.bss.idata$7.idata$5.idata$4&.idata$6,.text&&.data.bss.idata$7.idata$54.idata$4(&.idata$6.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6.text&&.data.bss.idata$7.idata$5.idata$4&.idata$6@.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6L.text&&.data.bss.idata$7.idata$5,.idata$4 &.idata$6.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6T.text&&.data.bss.idata$7.idata$5$.idata$4&.idata$6h.text&&.data.bss.idata$7 .idata$5D.idata$48&.idata$6.text&&.data.bss.idata$7h.idata$5&.idata$4.idata$6.text &&.data.bss.idata$7(.idata$5L.idata$4@&.idata$6.text0&&.data.bss.idata$7$.idata$5H.idata$4<&.idata$6.text@&&.data.bss.idata$7.idata$5&.idata$4.idata$6.textP&&.data.bss.idata$7.idata$5&.idata$4.idata$6.text`&&.data.bss.idata$7.idata$5&.idata$4.idata$6.textp&&.data.bss.idata$7.idata$5.idata$4.idata$6.text&&.data.bss.idata$7.idata$5 .idata$4&.idata$6`.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6l.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6.text&&.data.bss.idata$7.idata$5&.idata$4.idata$64.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6.text&&.data.bss.idata$7.idata$5.idata$4&.idata$6T.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6x.text&&.data.bss.idata$7.idata$5(.idata$4&.idata$6t.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6.text &&.data.bss.idata$7.idata$5&.idata$4.idata$6.text0&&.data.bss.idata$7.idata$5&.idata$4.idata$6\.text@&&.data.bss.idata$7.idata$5&.idata$4.idata$6.textP&&.data.bss.idata$7.idata$58.idata$4,&.idata$6.text`&&.data.bss.idata$7.idata$5.idata$4.idata$6 .textp&&.data.bss.idata$7.idata$50.idata$4$&.idata$6.text&&.data.bss.idata$7.idata$5@.idata$44&.idata$6.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6(.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6.text&&.data.bss.idata$7l.idata$5&.idata$4.idata$6.text&&.data.bss.idata$7.idata$5.idata$4.idata$6.text&&.data.bss.idata$7.idata$5&.idata$4.idata$6d.text&&.data.bss.idata$7.idata$5<.idata$40&.idata$6.fileg&fakehnamehfthunkt&.text&&&.data&.bss&.idata$2&.idata$5p&&.idata$4d&.fileg&fake.text&&&.data&.bss&.idata$4D&&.idata$5P&.idata$7,&.text&&.data.bss.idata$7@.idata$5`.idata$4T&.idata$6.text&&.data.bss.idata$78.idata$5X.idata$4L&.idata$6.text&&.data.bss.idata$7<.idata$5\.idata$4P&.idata$6.fileg&fakehnameL&fthunkX.text &&&.data&.bss&.idata$2(&.idata$5T&.idata$4H&&.fileg&fake.text &&&.data&.bss&.idata$4X&&.idata$5d&.idata$7D&
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