chart = {
const width = 640;
const height = 400;
const marginTop = 20;
const marginRight = 0;
const marginBottom = 30;
const marginLeft = 40;
const default_color = "steelblue";
const highlight_color = "orange";
const x = d3.scaleBand()
.domain(data.map(d => d.letter))
.range([marginLeft, width - marginRight])
.padding(0.1);
const xAxis = d3.axisBottom(x).tickSizeOuter(0);
const y = d3.scaleLinear()
.domain([0, d3.max(data, d => d.frequency)]).nice()
.range([height - marginBottom, marginTop]);
const svg = d3.create("svg")
.attr("viewBox", [0, 0, width, height])
.attr("style", `max-width: ${width}px; height: auto; font: 10px sans-serif; overflow: visible;`);
const tooltip = d3.select("body").append("div").style("position", "absolute")
.style("background", "rgba(0, 0, 0, 0.7)")
.style("color", "#fff")
.style("padding", "8px")
.style("border-radius", "4px")
.style("pointer-events", "none")
.style("font-size", "12px")
.style("visibility", "hidden");
// Styles you may want to use: background, border, padding, etc.
// Remember to set div invisible and make position absolute for default
// Create a bar for each letter.
// TODO: 1. Add tooltip functionalities
// 2. Add an hover and on-click highlight color change to bars
const bar = svg.append("g")
.attr("fill", default_color)
.selectAll("rect")
.data(data)
.join("rect")
.style("mix-blend-mode", "multiply") // Darker color when bars overlap during the transition.
.attr("x", d => x(d.letter))
.attr("y", d => y(d.frequency))
.attr("height", d => y(0) - y(d.frequency))
.attr("width", x.bandwidth())
.on("mouseover", function(event, d) {
const bar = d3.select(this);
bar.attr("fill", highlight_color); // Highlight bar
tooltip
.style("visibility", "visible")
.html(`<strong>${d.letter}</strong><br>Frequency: ${d.frequency}<br><img src="${d.image}" width="100" />`);
})
.on("mousemove", function(event) {
tooltip
.style("top", (event.pageY + 10) + "px")
.style("left", (event.pageX + 10) + "px");
})
.on("mouseout", function(event, d) {
const bar = d3.select(this);
if (!bar.classed("clicked")) {
bar.attr("fill", default_color);
}
tooltip.style("visibility", "hidden");
})
.on("click", function(event, d) {
const bar = d3.select(this);
bar.classed("clicked", !bar.classed("clicked"));
if (bar.classed("clicked")) {
bar.attr("fill", highlight_color);
} else {
bar.attr("fill", default_color);
}
});
// Create the axes.
const gx = svg.append("g")
.attr("transform", `translate(0,${height - marginBottom})`)
.call(xAxis);
const gy = svg.append("g")
.attr("transform", `translate(${marginLeft},0)`)
.call(d3.axisLeft(y).tickFormat((y) => (y * 100).toFixed()))
.call(g => g.select(".domain").remove());
function update(order) {
// Get selected ordered data mapping
x.domain(data.sort(order).map(d => d.letter));
bar.data(data, d => d.letter)
.order()
.transition()
.duration(750)
.delay((d, i) => i * 50) // stagger effec
.attr("x", d => x(d.letter));
gx.transition()
.duration(750)
.call(xAxis)
.selectAll(".tick")
.delay((d, i) => i * 50);
};
// Return the chart, with an update function that takes as input a domain
// comparator and transitions the x axis and bar positions accordingly.
return Object.assign(svg.node(), {update});
}