- 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
- using session charset: UTF-8
- checking for file ‘bootSVD/DESCRIPTION’ ... OK
- this is package ‘bootSVD’ version ‘1.1’
- checking package namespace information ... OK
- checking package dependencies ... OK
- checking if this is a source package ... OK
- checking if there is a namespace ... OK
- checking for executable files ... OK
- checking for hidden files and directories ... OK
- checking for portable file names ... OK
- checking for sufficient/correct file permissions ... OK
- checking whether package ‘bootSVD’ can be installed ... [2s/2s] OK
See the install log for details.
- checking installed package size ... OK
- checking package directory ... OK
- checking DESCRIPTION meta-information ... OK
- checking top-level files ... OK
- checking for left-over files ... OK
- checking index information ... OK
- checking package subdirectories ... OK
- checking code files for non-ASCII characters ... OK
- checking R files for syntax errors ... OK
- checking whether the package can be loaded ... [0s/0s] OK
- checking whether the package can be loaded with stated dependencies ... [0s/0s] OK
- checking whether the package can be unloaded cleanly ... [0s/0s] OK
- checking whether the namespace can be loaded with stated dependencies ... [0s/0s] OK
- checking whether the namespace can be unloaded cleanly ... [0s/0s] OK
- checking loading without being on the library search path ... [0s/0s] OK
- checking dependencies in R code ... OK
- checking S3 generic/method consistency ... OK
- checking replacement functions ... OK
- checking foreign function calls ... OK
- checking R code for possible problems ... [2s/2s] OK
- checking Rd files ... [0s/0s] NOTE
checkRd: (-1) bootSVD.Rd:13: Lost braces; missing escapes or markup?
13 | \item{Y}{initial data sample, which can be either a matrix or a \code{\link{ff}} matrix. \code{Y} can be either tall (\eqn{p} by \eqn{n}) or wide (\eqn{n} by \eqn{p}). If \code{Y} is entered and \code{V}, \code{d} and \code{U} (see definitions below) are not entered, then \code{bootSVD} will also compute the SVD of \code{Y}. In this case where the SVD is computed, \code{bootSVD} will assume that the larger dimension of \code{Y} is \eqn{p}, and the smaller dimension of code {Y} is \eqn{n} (i.e. \code{bootSVD} assumes that (\eqn{p>n}). This assumption can be overriden by manually entering \code{V}, \code{U} and \code{d}.\cr
| ^
- checking Rd metadata ... OK
- checking Rd cross-references ... OK
- checking for missing documentation entries ... OK
- checking for code/documentation mismatches ... OK
- checking Rd \usage sections ... OK
- checking Rd contents ... OK
- checking for unstated dependencies in examples ... OK
- checking contents of ‘data’ directory ... OK
- checking data for non-ASCII characters ... [0s/0s] OK
- checking LazyData ... OK
- checking data for ASCII and uncompressed saves ... OK
- checking examples ... [5s/9s] OK
- checking PDF version of manual ... [6s/12s] OK
- DONE
Status: 1 NOTE
- using check arguments '--no-clean-on-error '