shape_runtime/renderers/
markdown.rs1use crate::content_renderer::{ContentRenderer, RendererCapabilities};
11use shape_value::content::{ChartSpec, ContentNode, ContentTable};
12use std::fmt::Write;
13
14pub struct MarkdownRenderer;
16
17impl ContentRenderer for MarkdownRenderer {
18 fn capabilities(&self) -> RendererCapabilities {
19 RendererCapabilities::markdown()
20 }
21
22 fn render(&self, content: &ContentNode) -> String {
23 render_node(content)
24 }
25}
26
27fn render_node(node: &ContentNode) -> String {
28 match node {
29 ContentNode::Text(st) => {
30 let mut out = String::new();
31 for span in &st.spans {
32 let mut text = span.text.clone();
33 if span.style.bold {
34 text = format!("**{}**", text);
35 }
36 if span.style.italic {
37 text = format!("*{}*", text);
38 }
39 out.push_str(&text);
40 }
41 out
42 }
43 ContentNode::Table(table) => render_table(table),
44 ContentNode::Code { language, source } => render_code(language.as_deref(), source),
45 ContentNode::Chart(spec) => render_chart(spec),
46 ContentNode::KeyValue(pairs) => render_key_value(pairs),
47 ContentNode::Fragment(parts) => parts.iter().map(render_node).collect(),
48 }
49}
50
51fn render_table(table: &ContentTable) -> String {
52 let col_count = table.headers.len();
53 if col_count == 0 {
54 return String::new();
55 }
56
57 let mut widths: Vec<usize> = table.headers.iter().map(|h| h.len().max(3)).collect();
58
59 let limit = table.max_rows.unwrap_or(table.rows.len());
60 let display_rows = &table.rows[..limit.min(table.rows.len())];
61 let truncated = table.rows.len().saturating_sub(limit);
62
63 for row in display_rows {
64 for (i, cell) in row.iter().enumerate() {
65 if i < col_count {
66 let cell_text = cell.to_string();
67 widths[i] = widths[i].max(cell_text.len());
68 }
69 }
70 }
71
72 let mut out = String::new();
73
74 out.push('|');
76 for (i, header) in table.headers.iter().enumerate() {
77 let _ = write!(out, " {:width$} |", header, width = widths[i]);
78 }
79 let _ = writeln!(out);
80
81 out.push('|');
83 for w in &widths {
84 out.push(' ');
85 for _ in 0..*w {
86 out.push('-');
87 }
88 out.push_str(" |");
89 }
90 let _ = writeln!(out);
91
92 for row in display_rows {
94 out.push('|');
95 for i in 0..col_count {
96 let cell_text = row.get(i).map(|c| c.to_string()).unwrap_or_default();
97 let _ = write!(out, " {:width$} |", cell_text, width = widths[i]);
98 }
99 let _ = writeln!(out);
100 }
101
102 if truncated > 0 {
103 let _ = writeln!(out, "\n*... {} more rows*", truncated);
104 }
105
106 out
107}
108
109fn render_code(language: Option<&str>, source: &str) -> String {
110 let lang = language.unwrap_or("");
111 format!("```{}\n{}\n```\n", lang, source)
112}
113
114fn render_chart(spec: &ChartSpec) -> String {
115 let title = spec.title.as_deref().unwrap_or("untitled");
116 let type_name = match spec.chart_type {
117 shape_value::content::ChartType::Line => "Line",
118 shape_value::content::ChartType::Bar => "Bar",
119 shape_value::content::ChartType::Scatter => "Scatter",
120 shape_value::content::ChartType::Area => "Area",
121 shape_value::content::ChartType::Candlestick => "Candlestick",
122 shape_value::content::ChartType::Histogram => "Histogram",
123 };
124 format!(
125 "*[{} Chart: {} ({} series)]*\n",
126 type_name,
127 title,
128 spec.series.len()
129 )
130}
131
132fn render_key_value(pairs: &[(String, ContentNode)]) -> String {
133 let mut out = String::new();
134 for (key, value) in pairs {
135 let _ = writeln!(out, "**{}**: {}", key, render_node(value));
136 }
137 out
138}
139
140#[cfg(test)]
141mod tests {
142 use super::*;
143 use shape_value::content::{BorderStyle, Color, ContentTable, NamedColor};
144
145 fn renderer() -> MarkdownRenderer {
146 MarkdownRenderer
147 }
148
149 #[test]
150 fn test_plain_text_md() {
151 let node = ContentNode::plain("hello");
152 assert_eq!(renderer().render(&node), "hello");
153 }
154
155 #[test]
156 fn test_bold_text_md() {
157 let node = ContentNode::plain("bold").with_bold();
158 let output = renderer().render(&node);
159 assert_eq!(output, "**bold**");
160 }
161
162 #[test]
163 fn test_italic_text_md() {
164 let node = ContentNode::plain("italic").with_italic();
165 let output = renderer().render(&node);
166 assert_eq!(output, "*italic*");
167 }
168
169 #[test]
170 fn test_bold_italic_md() {
171 let node = ContentNode::plain("both").with_bold().with_italic();
172 let output = renderer().render(&node);
173 assert_eq!(output, "***both***");
174 }
175
176 #[test]
177 fn test_gfm_table() {
178 let table = ContentNode::Table(ContentTable {
179 headers: vec!["Name".into(), "Age".into()],
180 rows: vec![vec![ContentNode::plain("Alice"), ContentNode::plain("30")]],
181 border: BorderStyle::default(),
182 max_rows: None,
183 column_types: None,
184 total_rows: None,
185 sortable: false,
186 });
187 let output = renderer().render(&table);
188 assert!(output.contains("| Name"));
189 assert!(output.contains("| ---"));
190 assert!(output.contains("| Alice"));
191 }
192
193 #[test]
194 fn test_gfm_table_truncation() {
195 let table = ContentNode::Table(ContentTable {
196 headers: vec!["X".into()],
197 rows: vec![
198 vec![ContentNode::plain("1")],
199 vec![ContentNode::plain("2")],
200 vec![ContentNode::plain("3")],
201 ],
202 border: BorderStyle::default(),
203 max_rows: Some(1),
204 column_types: None,
205 total_rows: None,
206 sortable: false,
207 });
208 let output = renderer().render(&table);
209 assert!(output.contains("*... 2 more rows*"));
210 }
211
212 #[test]
213 fn test_fenced_code_block() {
214 let code = ContentNode::Code {
215 language: Some("rust".into()),
216 source: "fn main() {}".into(),
217 };
218 let output = renderer().render(&code);
219 assert!(output.starts_with("```rust\n"));
220 assert!(output.contains("fn main() {}"));
221 assert!(output.contains("```"));
222 }
223
224 #[test]
225 fn test_code_block_no_language() {
226 let code = ContentNode::Code {
227 language: None,
228 source: "hello".into(),
229 };
230 let output = renderer().render(&code);
231 assert!(output.starts_with("```\n"));
232 }
233
234 #[test]
235 fn test_kv_md() {
236 let kv = ContentNode::KeyValue(vec![("name".into(), ContentNode::plain("Alice"))]);
237 let output = renderer().render(&kv);
238 assert!(output.contains("**name**: Alice"));
239 }
240
241 #[test]
242 fn test_chart_placeholder_md() {
243 let chart = ContentNode::Chart(shape_value::content::ChartSpec {
244 chart_type: shape_value::content::ChartType::Line,
245 series: vec![],
246 title: Some("Revenue".into()),
247 x_label: None,
248 y_label: None,
249 width: None,
250 height: None,
251 echarts_options: None,
252 interactive: true,
253 });
254 let output = renderer().render(&chart);
255 assert!(output.contains("Line Chart: Revenue"));
256 }
257
258 #[test]
259 fn test_fragment_md() {
260 let frag = ContentNode::Fragment(vec![
261 ContentNode::plain("hello "),
262 ContentNode::plain("world"),
263 ]);
264 assert_eq!(renderer().render(&frag), "hello world");
265 }
266
267 #[test]
268 fn test_no_ansi_in_md() {
269 let node = ContentNode::plain("colored").with_fg(Color::Named(NamedColor::Red));
270 let output = renderer().render(&node);
271 assert!(!output.contains("\x1b["));
272 }
273}