Nothing
###########################################################################
# plot.laplace #
# #
# The purpose of the plot.laplace function is to plot an object of class #
# laplace. #
###########################################################################
plot.laplace <- function(x, Data=NULL, PDF=FALSE, Parms=NULL, ...)
{
### Initial Checks
if(missing(x)) stop("The x argument is required.")
if(class(x) != "laplace")
stop("x must be of class laplace.")
if(is.null(Data)) stop("The Data argument is NULL.")
if(any(is.na(x$History))) stop("There is no history to plot.")
### Selecting Parms
if(is.null(Parms)) {
History <- x$History
Posterior <- x$Posterior}
else {
Parms <- sub("\\[","\\\\[",Parms)
Parms <- sub("\\]","\\\\]",Parms)
Parms <- sub("\\.","\\\\.",Parms)
if(length(grep(Parms[1], colnames(x$History))) == 0)
stop("Parameter in Parms does not exist.")
keepcols <- grep(Parms[1], colnames(x$History))
if(length(Parms) > 1) {
for (i in 2:length(Parms)) {
if(length(grep(Parms[i],
colnames(x$History))) == 0)
stop("Parameter in Parms does not exist.")
keepcols <- c(keepcols, grep(Parms[i],
colnames(x$History)))}}
History <- as.matrix(x$History[,keepcols])
colnames(History) <- colnames(x$History)[keepcols]
if(all(!is.na(x$Posterior))) {
Posterior <- as.matrix(x$Posterior[,keepcols])
colnames(Posterior) <- colnames(History)}
else Posterior <- x$Posterior
}
if(PDF == TRUE)
{
pdf("LaplaceApproximation.Plots.pdf")
par(mfrow=c(2,2))
}
else {par(mfrow=c(2,2), ask=TRUE)}
### Plot Parameter
for (j in 1:ncol(History))
{
plot(1:nrow(History), History[,j],
type="l", xlab="Iterations", ylab="Value",
main=colnames(History)[j])
if({x$Converged == TRUE} & !any(is.na(Posterior))) {
plot(density(Posterior[,j]),
xlab="Value", main=colnames(Posterior)[j])
polygon(density(Posterior[,j]),
col="black", border="black")
abline(v=0, col="red", lty=2)}
}
### Plot Deviance History
plot(1:length(x$Deviance), x$Deviance, type="l", xlab="Iterations",
ylab="Value", main="Deviance")
### Plot Monitor
if({x$Converged == TRUE} & !any(is.na(x$Monitor))) {
for (j in 1:ncol(x$Monitor)) {
plot(density(x$Monitor[,j]),
xlab="Value", main=Data[["mon.names"]][j])
polygon(density(x$Monitor[,j]),
col="black", border="black")
abline(v=0, col="red", lty=2)}
}
if(PDF == TRUE) dev.off()
}
#End
Any scripts or data that you put into this service are public.
Add the following code to your website.
For more information on customizing the embed code, read Embedding Snippets.