#' @include bicluster.R
NULL
NoIsa <- function(bics) {
return(dim(bics$rows)[2])
}
#' Extract a list of bicluster objects from an isa2 biclustering object.
#'
#' @param bics A biclust object.
#' @param transposed \code{True}, if the bicluster calculation was performed
#' on a tranposed matrix.
#' @param mat Original matrix, that was used for biclustering.
#' @param filterfun A function to filter biclusters. Only if the function
#' returns \code{True}, the bicluster is added to the returned list.
#' The function has to accept a the bicluster (given as submatrix
#' of \code{mat}) \code{filterfun(bicluster_matrix, ...)}.
#' @param ... Other parameters forwarded to the \code{filterfun}.
#' @return A list of \code{\link{bicluster}} objects, which have
#' to be valid (See \code{\link{validate_bicluster}}.
#'
#' @examples
#' m <- matrix(seq(1:16), nrow=4)
#' # Function part of:
#' # m <- matrix(rnorm(10000), nrow=100)
#' # Not run: run_isa(m)
#'
#' @export
getIsaClusters <- function(bics, mat,
transposed = FALSE,
filterfun = NULL, ...) {
if (!requireNamespace("isa2")) {
stop("Package isa2 not available.
Please install before using this funcion.")
}
numClus <- NoIsa(bics)
tmp <- bicluster()
res <- list()
# Isa provides factors as bicluster affiliation
rows <- seq(1, dim(bics$rows)[1])
cols <- seq(1, dim(bics$columns)[1])
for (i in seq(1, numClus)) {
if (transposed) {
tmp <- bicluster(
column = rows[as.logical(bics$rows[, i])],
row = cols[as.logical(bics$columns[, i])],
algorithm = "isa2"
)
} else {
tmp <- bicluster(
row = rows[as.logical(bics$rows[, i])],
column = cols[as.logical(bics$columns[, i])],
algorithm = "isa2"
)
}
tmp <- set_bicluster_names(tmp, mat)
# Check if cluster fits the constraints
if (validate_bicluster(tmp)) {
if (is.null(filterfun)) {
res[[length(res) + 1]] <- tmp
} else {
if (filterfun(bicluster_to_matrix(mat, tmp), ...)) {
res[[length(res) + 1]] <- tmp
}
}
}
}
return(res)
}
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