1use gpui::prelude::*;
17use gpui::{
18 canvas, div, fill, point, px, size, App, Bounds, Hsla, IntoElement, SharedString, Window,
19};
20
21use crate::style::ColorValue;
22use crate::theme::theme;
23
24use super::axis::nice_ticks;
25use super::frame::{hover_slots, legend_row, x_label_row, y_axis_column};
26use super::{
27 min_max, normalize_between, paint_polyline, paint_polyline_ys, resolve_color, series_color,
28 tick_label,
29};
30use crate::devtools::Probed;
31
32const GRIDLINES: usize = 4;
34
35#[derive(IntoElement)]
38pub struct LineChart {
39 series: Vec<(Option<SharedString>, Vec<f32>)>,
40 colors: Vec<ColorValue>,
41 stroke: f32,
42 fill: bool,
43 axis: bool,
44 hover: bool,
45 labels: Vec<SharedString>,
46 width: Option<f32>,
47 height: f32,
48}
49
50impl LineChart {
51 pub fn new(values: impl IntoIterator<Item = f32>) -> Self {
52 LineChart {
53 series: vec![(None, values.into_iter().collect())],
54 colors: Vec::new(),
55 stroke: 2.0,
56 fill: false,
57 axis: false,
58 hover: false,
59 labels: Vec::new(),
60 width: None,
61 height: 140.0,
62 }
63 }
64
65 pub fn series(label: impl Into<SharedString>, values: impl IntoIterator<Item = f32>) -> Self {
69 let mut chart = LineChart::new(values);
70 chart.series[0].0 = Some(label.into());
71 chart
72 }
73
74 pub fn add_series(
76 mut self,
77 label: impl Into<SharedString>,
78 values: impl IntoIterator<Item = f32>,
79 ) -> Self {
80 self.series
81 .push((Some(label.into()), values.into_iter().collect()));
82 self
83 }
84
85 pub fn color(mut self, color: impl Into<ColorValue>) -> Self {
87 self.colors = vec![color.into()];
88 self
89 }
90
91 pub fn colors(mut self, colors: impl IntoIterator<Item = impl Into<ColorValue>>) -> Self {
93 self.colors = colors.into_iter().map(Into::into).collect();
94 self
95 }
96
97 pub fn stroke(mut self, width: f32) -> Self {
99 self.stroke = width.max(0.5);
100 self
101 }
102
103 pub fn fill(mut self) -> Self {
105 self.fill = true;
106 self
107 }
108
109 pub fn axis(mut self) -> Self {
112 self.axis = true;
113 self
114 }
115
116 pub fn hover(mut self) -> Self {
118 self.hover = true;
119 self
120 }
121
122 pub fn labels(mut self, labels: impl IntoIterator<Item = impl Into<SharedString>>) -> Self {
124 self.labels = labels.into_iter().map(Into::into).collect();
125 self
126 }
127
128 pub fn width(mut self, width: f32) -> Self {
130 self.width = Some(width);
131 self
132 }
133
134 pub fn height(mut self, height: f32) -> Self {
136 self.height = height;
137 self
138 }
139}
140
141impl RenderOnce for LineChart {
142 fn render(self, _window: &mut Window, cx: &mut App) -> impl IntoElement {
143 let t = theme(cx);
144 let multi = self.series.len() > 1;
145 let line_colors: Vec<Hsla> = (0..self.series.len())
146 .map(|i| {
147 if !multi && self.colors.is_empty() {
148 t.primary().hsla()
149 } else if self.colors.len() == 1 && !multi {
150 resolve_color(t, self.colors[0])
151 } else {
152 series_color(t, &self.colors, i)
153 }
154 })
155 .collect();
156 let grid = t.border().alpha(0.5);
157 let stroke = self.stroke;
158 let filled = self.fill;
159
160 let all: Vec<f32> = self
162 .series
163 .iter()
164 .flat_map(|(_, values)| values.iter().copied())
165 .collect();
166 let ticks = if self.axis {
167 let (lo, hi) = min_max(&all).unwrap_or((0.0, 1.0));
168 nice_ticks(lo, hi, 4)
169 } else {
170 Vec::new()
171 };
172 let scale = (!ticks.is_empty()).then(|| (*ticks.first().unwrap(), *ticks.last().unwrap()));
173
174 let point_count = self.series.iter().map(|(_, v)| v.len()).max().unwrap_or(0);
175 let gridline_count = if self.axis {
176 ticks.len().max(2)
177 } else {
178 GRIDLINES
179 };
180
181 let series = self.series.clone();
182 let paint_colors = line_colors.clone();
183 let plot = canvas(
184 |_, _, _| (),
185 move |bounds, _, window, _cx| {
186 let w = f32::from(bounds.size.width);
187 let h = f32::from(bounds.size.height);
188 if w <= 0.0 || h <= 0.0 {
189 return;
190 }
191 for i in 0..gridline_count {
192 let y = (h - 1.0) * (i as f32 / (gridline_count - 1) as f32);
193 window.paint_quad(fill(
194 Bounds::new(bounds.origin + point(px(0.0), px(y)), size(px(w), px(1.0))),
195 grid,
196 ));
197 }
198 for (i, (_, values)) in series.iter().enumerate() {
199 let color = paint_colors[i];
200 let area = filled.then_some(Hsla { a: 0.15, ..color });
201 match scale {
202 Some((lo, hi)) => paint_polyline_ys(
203 window,
204 bounds,
205 &normalize_between(values, lo, hi),
206 stroke,
207 color,
208 area,
209 ),
210 None => paint_polyline(window, bounds, values, stroke, color, area),
211 }
212 }
213 },
214 )
215 .w_full()
216 .h(px(self.height));
217
218 let mut plot_wrap = div().relative().flex_1().child(plot);
220 if self.hover && point_count > 0 {
221 let texts: Vec<SharedString> = (0..point_count)
222 .map(|i| {
223 let parts: Vec<String> = self
224 .series
225 .iter()
226 .map(|(label, values)| {
227 let value = values
228 .get(i)
229 .map(|v| tick_label(*v))
230 .unwrap_or_else(|| "–".into());
231 match label {
232 Some(name) => format!("{name}: {value}"),
233 None => value,
234 }
235 })
236 .collect();
237 let text = match self.labels.get(i) {
238 Some(cat) => format!("{cat} — {}", parts.join(" ")),
239 None => parts.join(" "),
240 };
241 text.into()
242 })
243 .collect();
244 plot_wrap = plot_wrap.child(hover_slots("guise-linechart-hover".into(), texts));
245 }
246
247 let mut body = div().flex().flex_row().w_full();
248 if self.axis {
249 body = body.child(y_axis_column(t, &ticks, self.height));
250 }
251 let mut plot_column = div()
252 .flex_1()
253 .flex()
254 .flex_col()
255 .gap(px(4.0))
256 .child(plot_wrap);
257 if !self.labels.is_empty() {
258 plot_column = plot_column.child(x_label_row(t, &self.labels));
259 }
260 body = body.child(plot_column);
261
262 let legend: Vec<(SharedString, Hsla)> = self
263 .series
264 .iter()
265 .enumerate()
266 .filter_map(|(i, (label, _))| label.clone().map(|l| (l, line_colors[i])))
267 .collect();
268
269 let mut root = div().flex().flex_col();
270 root = match self.width {
271 Some(w) => root.w(px(w)),
272 None => root.w_full(),
273 };
274 root = root.child(body);
275 if !legend.is_empty() {
276 root = root.child(legend_row(t, &legend));
277 }
278 root.probe("LineChart")
279 }
280}