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correlation_join_data_plot.R
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correlation_join_data_plot.R
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output_plot <- function(index, data, color, xlim, ylim) {
dataMatrix <- read.csv(data, header = FALSE)
if (index == 1) {
plot(dataMatrix[,2], dataMatrix[,1], xlim = xlim, ylim = ylim, type = "p", col = color, cex = 1.5)
} else {
points(dataMatrix[,2], dataMatrix[,1], type = "p", col = color, cex = 1.5)
}
}
arg <- commandArgs(trailingOnly = TRUE)
argLen <- length(arg)
if (argLen <= 5) {
x_coords = c()
y_coords = c()
for (argIndex in 1:(argLen - 1)) {
dataMatrix <- read.csv(arg[argIndex], header = FALSE)
x_coords <- append(x_coords, dataMatrix[, 2])
y_coords <- append(y_coords, dataMatrix[, 1])
}
x_min = x_coords[which.min(x_coords)]
y_min = y_coords[which.min(y_coords)]
x_max = x_coords[which.max(x_coords)]
y_max = y_coords[which.max(y_coords)]
xlim = c(x_min, x_max)
ylim = c(y_min, y_max)
print(xlim)
print(ylim)
symbols = 19:25
colors = c("red", "blue", "yellow", "purple")
png(filename = paste(arg[argLen], ".png", sep = ''))
for (argIndex in 1:(argLen - 1)) {
print(paste("Output plot for ", arg[argIndex], " data...", sep = ''))
output_plot(argIndex, arg[argIndex], colors[argIndex], xlim, ylim)
}
dev.off()
}