• using R version 4.4.0 (2024-04-24)
  • using platform: x86_64-apple-darwin20
  • R was compiled by     Apple clang version 14.0.0 (clang-1400.0.29.202)     GNU Fortran (GCC) 12.2.0
  • running under: macOS Ventura 13.3.1
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  • checking extension type ... Package
  • this is package ‘smoothROCtime’ version ‘0.1.0’
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  • checking whether package ‘smoothROCtime’ can be installed ... [5s/5s] OK See the install log for details.
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  • checking Rd files ... [0s/0s] NOTE checkRd: (-1) funcen.Rd:14: Lost braces; missing escapes or markup?     14 | \item{bw}{method for computing the bandwidth matrix. Most of the methods included in the \code{\link{kde}} function can be used: Hpi, Hpi.diag, Hlscv, Hlscv.diag, Hbcv, Hbcv.diag, Hscv, Hscv.diag, Hucv and Hucv.diag. Other considered methods are naive.pdf (diag(N^{-1/5}, N^{-1/5})^2) and naive.cdf (diag(N^{-1/3}, N^{-1/3})^2), where N is the sample size.}        | ^ checkRd: (-1) funcen.Rd:14: Lost braces; missing escapes or markup?     14 | \item{bw}{method for computing the bandwidth matrix. Most of the methods included in the \code{\link{kde}} function can be used: Hpi, Hpi.diag, Hlscv, Hlscv.diag, Hbcv, Hbcv.diag, Hscv, Hscv.diag, Hucv and Hucv.diag. Other considered methods are naive.pdf (diag(N^{-1/5}, N^{-1/5})^2) and naive.cdf (diag(N^{-1/3}, N^{-1/3})^2), where N is the sample size.}        | ^ checkRd: (-1) funcen.Rd:14: Lost braces; missing escapes or markup?     14 | \item{bw}{method for computing the bandwidth matrix. Most of the methods included in the \code{\link{kde}} function can be used: Hpi, Hpi.diag, Hlscv, Hlscv.diag, Hbcv, Hbcv.diag, Hscv, Hscv.diag, Hucv and Hucv.diag. Other considered methods are naive.pdf (diag(N^{-1/5}, N^{-1/5})^2) and naive.cdf (diag(N^{-1/3}, N^{-1/3})^2), where N is the sample size.}        | ^ checkRd: (-1) funcen.Rd:14: Lost braces; missing escapes or markup?     14 | \item{bw}{method for computing the bandwidth matrix. Most of the methods included in the \code{\link{kde}} function can be used: Hpi, Hpi.diag, Hlscv, Hlscv.diag, Hbcv, Hbcv.diag, Hscv, Hscv.diag, Hucv and Hucv.diag. Other considered methods are naive.pdf (diag(N^{-1/5}, N^{-1/5})^2) and naive.cdf (diag(N^{-1/3}, N^{-1/3})^2), where N is the sample size.}        | ^ checkRd: (-1) smoothROCtime-package.Rd:12: Lost braces     12 | \item \code{\link{funcen}}: {Bivariate kernel density estimation of the joint density function of the \eqn{(marker, time-to-event)} variable.}        | ^ checkRd: (-1) smoothROCtime-package.Rd:13: Lost braces; missing escapes or markup?     13 | \item \code{\link{stRoc}}: {Smooth estimations for Cumulative/Dynamic and Incident/Dynamic ROC curves.}        | ^ checkRd: (-1) smoothROCtime-package.Rd:14: Lost braces; missing escapes or markup?     14 | \item \code{\link{plot.sROCt}}: {Plots of Cumulative/Dynamic and Incident/Dyanmic ROC curve estimations.}        | ^ checkRd: (-1) stRoc.Rd:17: Lost braces; missing escapes or markup?     17 | \item{bw}{procedure for computing the bandwidth matrix. Most of the methods included at the \code{kde} function can be used: Hpi, Hpi.diag, Hlscv, Hlscv.diag, Hbcv, Hbcv.diag, Hscv, Hscv.diag, Hucv and Hucv.diag. Other considered methods are naive.pdf (diag(N^{-1/5}, N^{-1/5})^2) and naive.cdf (diag(N^{-1/3}, N^{-1/3})^2), where N is the sample size.}        | ^ checkRd: (-1) stRoc.Rd:17: Lost braces; missing escapes or markup?     17 | \item{bw}{procedure for computing the bandwidth matrix. Most of the methods included at the \code{kde} function can be used: Hpi, Hpi.diag, Hlscv, Hlscv.diag, Hbcv, Hbcv.diag, Hscv, Hscv.diag, Hucv and Hucv.diag. Other considered methods are naive.pdf (diag(N^{-1/5}, N^{-1/5})^2) and naive.cdf (diag(N^{-1/3}, N^{-1/3})^2), where N is the sample size.}        | ^ checkRd: (-1) stRoc.Rd:17: Lost braces; missing escapes or markup?     17 | \item{bw}{procedure for computing the bandwidth matrix. Most of the methods included at the \code{kde} function can be used: Hpi, Hpi.diag, Hlscv, Hlscv.diag, Hbcv, Hbcv.diag, Hscv, Hscv.diag, Hucv and Hucv.diag. Other considered methods are naive.pdf (diag(N^{-1/5}, N^{-1/5})^2) and naive.cdf (diag(N^{-1/3}, N^{-1/3})^2), where N is the sample size.}        | ^ checkRd: (-1) stRoc.Rd:17: Lost braces; missing escapes or markup?     17 | \item{bw}{procedure for computing the bandwidth matrix. Most of the methods included at the \code{kde} function can be used: Hpi, Hpi.diag, Hlscv, Hlscv.diag, Hbcv, Hbcv.diag, Hscv, Hscv.diag, Hucv and Hucv.diag. Other considered methods are naive.pdf (diag(N^{-1/5}, N^{-1/5})^2) and naive.cdf (diag(N^{-1/3}, N^{-1/3})^2), where N is the sample size.}        | ^ checkRd: (-1) stRoc.Rd:69: Lost braces; missing escapes or markup?     69 | \item {\code{time}} - {single point of time at which the estimation each the C/D ROC curve has been computed.}        | ^ checkRd: (-1) stRoc.Rd:70: Lost braces; missing escapes or markup?     70 | \item {\code{obvt}} - {observed times for the individuals in the sample.}        | ^ checkRd: (-1) stRoc.Rd:71: Lost braces; missing escapes or markup?     71 | \item {\code{p}} - {estimations of the probabilities computed and allocated to each subject.}        | ^
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  • checking examples ... [18s/18s] OK
  • checking PDF version of manual ... [5s/5s] OK
  • DONE Status: 2 NOTEs
  • using check arguments '--no-clean-on-error '