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#' @title Proportional and Choropleth Symbols Layer
#' @name propSymbolsChoroLayer
#' @description Plot a proportional symbols layer with colors based on a
#' quantitative data classification
#' @param x an sf object, a simple feature collection. If x is used then spdf, df, spdfid and dfid are not.
#' @param spdf SpatialPointsDataFrame or SpatialPolygonsDataFrame; if spdf
#' is a SpatialPolygonsDataFrame symbols are plotted on centroids.
#' @param df a data frame that contains the values to plot. If df is missing
#' spdf@data is used instead.
#' @param spdfid name of the identifier variable in spdf, default to the first column
#' of the spdf data frame. (optional)
#' @param dfid name of the identifier variable in df, default to the first column
#' of df. (optional)
#' @param inches size of the biggest symbol (radius for circles, width for
#' squares, height for bars) in inches.
#' @param var name of the numeric variable used to plot the symbols sizes.
#' @param var2 name of the numeric variable used to plot the symbols colors.
#' @param breaks break points in sorted order to indicate the intervals for assigning the colors.
#' Note that if there are nlevel colors (classes) there should be (nlevel+1)
#' breakpoints (see \link{choroLayer} Details).
#' @param col a vector of colors. Note that if breaks is specified there must be one less
#' colors specified than the number of break.
#' @param nclass a targeted number of classes. If null, the number of class is
#' automatically defined (see \link{choroLayer} Details).
#' @param method a classification method; one of "sd", "equal",
#' "quantile", "fisher-jenks", "q6" or "geom" (see \link{choroLayer} Details).
#' @param symbols type of symbols, one of "circle", "square" or "bar".
#' @param fixmax value of the biggest symbol (see \link{propSymbolsLayer} Details).
#' @param border color of symbols borders.
#' @param lwd width of symbols borders.
#' @param legend.var.pos position of the legend, one of "topleft", "top",
#' "topright", "right", "bottomright", "bottom", "bottomleft", "left" or a
#' vector of two coordinates in map units (c(x, y)). If
#' legend.var.pos is "n" then the legend is not plotted.
#' @param legend.var2.pos position of the legend, one of "topleft", "top",
#' "topright", "right", "bottomright", "bottom", "bottomleft", "left" or a
#' vector of two coordinates in map units (c(x, y)). If
#' legend.var2.pos is "n" then the legend is not plotted.
#' @param legend.var.title.txt title of the legend (proportional symbols).
#' @param legend.var2.title.txt title of the legend (colors).
#' @param legend.title.cex size of the legend title.
#' @param legend.values.cex size of the values in the legend.
#' @param legend.var.values.rnd number of decimal places of the values in
#' the legend.
#' @param legend.var2.values.rnd number of decimal places of the values in
#' the legend.
#' @param legend.var.style either "c" or "e". The legend has two display
#' styles.
#' @param legend.var.frame whether to add a frame to the legend (TRUE) or
#' not (FALSE).
#' @param legend.var2.frame whether to add a frame to the legend (TRUE) or
#' not (FALSE).
#' @param legend.var2.nodata text for "no data" values
#' @param legend.var2.border color of boxes borders in the legend.
#' @param legend.var2.horiz whether to display the legend horizontally (TRUE) or
#' not (FALSE).
#' @param colNA no data color.
#' @param add whether to add the layer to an existing plot (TRUE) or
#' not (FALSE).
#' @examples
#' library(sf)
#' mtq <- st_read(system.file("gpkg/mtq.gpkg", package="cartography"))
#' plot(st_geometry(mtq), col = "grey60",border = "white",
#' lwd=0.4, bg = "lightsteelblue1")
#' propSymbolsChoroLayer(x = mtq, var = "POP", var2 = "MED",
#' col = carto.pal(pal1 = "blue.pal", n1 = 3,
#' pal2 = "red.pal", n2 = 3),
#' inches = 0.2, method = "q6",
#' border = "grey50", lwd = 1,
#' legend.var.pos = "topright",
#' legend.var2.pos = "left",
#' legend.var2.values.rnd = -2,
#' legend.var2.title.txt = "Median Income\n(in euros)",
#' legend.var.title.txt = "Total Population",
#' legend.var.style = "e")
#' # First layout
#' layoutLayer(title="Population and Wealth in Martinique, 2015")
#' @export
#' @seealso \link{legendBarsSymbols}, \link{legendChoro},
#' \link{legendCirclesSymbols}, \link{legendSquaresSymbols},
#' \link{choroLayer}, \link{propSymbolsLayer}
propSymbolsChoroLayer <- function(x, spdf, df, spdfid = NULL, dfid = NULL,
var,
inches = 0.3, fixmax = NULL,
symbols = "circle", border = "grey20",
lwd = 1,
var2,
breaks = NULL, method="quantile",
nclass= NULL,
col = NULL,
colNA = "white",
legend.title.cex = 0.8,
legend.values.cex = 0.6,
legend.var.pos = "right",
legend.var.title.txt = var,
legend.var.values.rnd = 0,
legend.var.style = "c",
legend.var.frame = FALSE,
legend.var2.pos = "topright",
legend.var2.title.txt = var2,
legend.var2.values.rnd = 2,
legend.var2.nodata = "no data",
legend.var2.frame = FALSE,
legend.var2.border = "black",
legend.var2.horiz = FALSE,
add = TRUE){
if (missing(x)){
x <- convertToSf(spdf = spdf, df = df, spdfid = spdfid, dfid = dfid)
}
# check merge and order spdf & df
dots <- checkMergeOrder(x = x, var = var)
# Color Management
layer <- choro(var = dots[[var2]], distr = breaks, col = col,
nclass = nclass, method = method)
mycols <- as.vector(layer$colMap)
nodata <- FALSE
if(max(is.na(dots[[var2]]) > 0)){
nodata <- TRUE
mycols[is.na(mycols)] <- colNA
}
if (is.null(fixmax)){
fixmax <- max(dots[[var]])
}
# compute sizes
sizes <- sizer(dots = dots, inches = inches, var = var,
fixmax = fixmax, symbols = symbols)
# size and values for legend, hollow circle (fixmax case)
sizeMax <- max(sizes)
if (inches <= sizeMax){
sizevect <- xinch(seq(inches, min(sizes), length.out = 4))
varvect <- seq(fixmax, 0, length.out = 4)
inches <- sizeMax
}else{
mycols <- c(NA, mycols)
border <- c(NA, rep(border, nrow(dots)))
dots <- rbind(dots[1,],dots)
dots[1,var] <- fixmax
sizes <- c(inches, sizes)
sizevect <- xinch(seq(inches, min(sizes), length.out = 4))
varvect <- seq(fixmax, 0,length.out = 4 )
}
# plot
if (add==FALSE){
bbx <- sf::st_bbox(x)
plot(0, type='n', axes = FALSE, ann = FALSE, asp = 1,
xlim = bbx[c(1,3)], ylim = bbx[c(2,4)])
}
switch(symbols,
circle = {
symbols(dots[, 1:2, drop = TRUE], circles = sizes,
bg = as.vector(mycols),
fg = border,
lwd = lwd, add = TRUE, inches = inches, asp = 1)
legendCirclesSymbols(pos = legend.var.pos,
title.txt = legend.var.title.txt,
title.cex = legend.title.cex,
values.cex = legend.values.cex,
var = c(min(dots[[var]]),max(dots[[var]])),
inches = inches,
col = "grey", lwd = lwd,
frame = legend.var.frame,
values.rnd = legend.var.values.rnd,
style = legend.var.style)
},
square = {
symbols(dots[, 1:2, drop = TRUE], squares = sizes,
bg = as.vector(mycols),
fg = border,
lwd = lwd, add = TRUE, inches = inches, asp = 1)
legendSquaresSymbols(pos = legend.var.pos,
title.txt = legend.var.title.txt,
title.cex = legend.title.cex,
values.cex = legend.values.cex,
var = c(min(dots[[var]]),max(dots[[var]])),
inches = inches,
col = "grey", lwd = lwd,
frame = legend.var.frame,
values.rnd = legend.var.values.rnd,
style = legend.var.style)
},
bar = {
tmp <- as.matrix(data.frame(width = inches/7, height = sizes))
dots[[2]] <- dots[[2]] + yinch(sizes/2)
symbols(dots[, 1:2, drop = TRUE], rectangles = tmp, add = TRUE,
bg = as.vector(mycols),
fg = border, lwd = lwd, inches = inches, asp = 1)
legendBarsSymbols(pos = legend.var.pos,
title.txt = legend.var.title.txt,
title.cex = legend.title.cex,
values.cex = legend.values.cex,
var = c(min(dots[[var]]),max(dots[[var]])),
inches = inches,
col = "grey", lwd = lwd,
frame = legend.var.frame,
values.rnd = legend.var.values.rnd,
style = legend.var.style)
})
legendChoro(pos = legend.var2.pos,
title.txt = legend.var2.title.txt,
title.cex = legend.title.cex,
values.cex = legend.values.cex,
breaks = layer$distr,
col = layer$col,
values.rnd = legend.var2.values.rnd,
frame = legend.var2.frame,
symbol="box",
nodata = nodata, nodata.col = colNA,
nodata.txt = legend.var2.nodata,
border = legend.var2.border, horiz = legend.var2.horiz)
}
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