1use crate::{Ctx, Schema, ValidationError};
2use serde_json::Value;
3
4pub struct RawSchema;
5
6impl Schema for RawSchema {
7 fn parse(&self, _value: &Value, ctx: &Ctx) -> Result<Value, ValidationError> {
8 Ok(Value::String(ctx.body.clone()))
9 }
10}
11
12pub struct MarkdownSchema;
13
14impl Schema for MarkdownSchema {
15 fn parse(&self, _value: &Value, ctx: &Ctx) -> Result<Value, ValidationError> {
16 let html = ctx.html.clone().ok_or_else(|| ValidationError::root("markdown body not yet rendered (engine bug?)"))?;
17 Ok(Value::String(html))
18 }
19}
20
21pub struct MdxSchema;
22
23impl Schema for MdxSchema {
24 fn parse(&self, _value: &Value, ctx: &Ctx) -> Result<Value, ValidationError> {
25 let body = ctx.mdx_body.clone().ok_or_else(|| ValidationError::root("mdx body not yet rendered (engine bug?)"))?;
26 Ok(Value::String(body))
27 }
28}
29
30pub struct TocSchema;
31
32impl Schema for TocSchema {
33 fn parse(&self, _value: &Value, ctx: &Ctx) -> Result<Value, ValidationError> {
34 Ok(ctx.toc.clone().unwrap_or_else(|| Value::Array(vec![])))
35 }
36}
37
38pub struct MetadataSchema;
39
40impl Schema for MetadataSchema {
41 fn parse(&self, _value: &Value, ctx: &Ctx) -> Result<Value, ValidationError> {
42 let words = word_count(&ctx.body);
47 let reading = ((words as f32) / 200.0).ceil() as u32;
48 Ok(serde_json::json!({
49 "readingTime": reading.max(1),
50 "wordCount": words,
51 }))
52 }
53}
54
55fn word_count(source: &str) -> u32 {
59 let mut out = String::with_capacity(source.len());
60 let mut in_fence = false;
61 for line in source.lines() {
62 if line.trim_start().starts_with("```") {
63 in_fence = !in_fence;
64 continue;
65 }
66 if !in_fence {
67 out.push_str(line);
68 out.push('\n');
69 }
70 }
71 out.split_whitespace().count() as u32
72}
73
74pub struct ExcerptSchema {
75 pub length: usize,
76}
77
78impl ExcerptSchema {
79 pub fn length(mut self, n: usize) -> Self {
80 self.length = n;
81 self
82 }
83}
84
85impl Default for ExcerptSchema {
86 fn default() -> Self {
87 Self { length: 260 }
88 }
89}
90
91impl Schema for ExcerptSchema {
92 fn parse(&self, _value: &Value, ctx: &Ctx) -> Result<Value, ValidationError> {
93 let plain = ctx.plain_text.clone().unwrap_or_default();
94 let s: String = plain.split_whitespace().collect::<Vec<_>>().join(" ");
95 let out = if s.chars().count() <= self.length {
96 s
97 } else {
98 let truncated: String = s.chars().take(self.length).collect();
99 format!("{}...", truncated.trim_end())
100 };
101 Ok(Value::String(out))
102 }
103}
104
105#[derive(Default)]
106pub struct PathSchema {
107 pub remove_index: bool,
108}
109
110impl PathSchema {
111 pub fn remove_index(mut self) -> Self {
112 self.remove_index = true;
113 self
114 }
115}
116
117impl Schema for PathSchema {
118 fn parse(&self, _value: &Value, ctx: &Ctx) -> Result<Value, ValidationError> {
119 let rel = ctx.file_path.strip_prefix(&ctx.root).unwrap_or(&ctx.file_path);
120 let mut s = rel.to_string_lossy().to_string();
121 s = s.trim_end_matches(".mdx").trim_end_matches(".md").to_string();
122 if self.remove_index {
123 s = s.trim_end_matches("/index").to_string();
124 }
125 Ok(Value::String(s))
126 }
127}
128
129pub struct SlugSchema {
130 pub bucket: String,
131 pub reserved: Vec<String>,
132}
133
134impl SlugSchema {
135 pub fn by(mut self, bucket: impl Into<String>) -> Self {
136 self.bucket = bucket.into();
137 self
138 }
139 pub fn reserved(mut self, list: Vec<String>) -> Self {
140 self.reserved = list;
141 self
142 }
143}
144
145impl Default for SlugSchema {
146 fn default() -> Self {
147 Self { bucket: "global".into(), reserved: Vec::new() }
148 }
149}
150
151impl Schema for SlugSchema {
152 fn parse(&self, value: &Value, ctx: &Ctx) -> Result<Value, ValidationError> {
153 let s = value.as_str().ok_or_else(|| ValidationError::root("slug must be a string"))?;
154 if s.len() < 3 || s.len() > 200 {
155 return Err(ValidationError::root(format!("slug length must be 3..=200 (got {})", s.len(),)));
156 }
157 let valid = !s.is_empty()
158 && !s.starts_with('-')
159 && !s.ends_with('-')
160 && !s.contains("--")
161 && s.chars().all(|c| c.is_ascii_lowercase() || c.is_ascii_digit() || c == '-');
162 if !valid {
163 return Err(ValidationError::root("slug must be kebab-case (lowercase letters, digits, single dashes)"));
164 }
165 if self.reserved.iter().any(|r| r == s) {
166 return Err(ValidationError::root(format!("slug '{s}' is reserved")));
167 }
168 let key = format!("{}::{s}", self.bucket);
169 let mut cache = ctx.unique_cache.lock().unwrap();
170 if cache.contains(&key) {
171 return Err(ValidationError::root(format!("slug '{s}' already used in bucket '{}'", self.bucket)));
172 }
173 cache.insert(key);
174 Ok(Value::String(s.to_string()))
175 }
176}
177
178pub struct UniqueSchema {
179 pub bucket: String,
180}
181
182impl UniqueSchema {
183 pub fn by(mut self, bucket: impl Into<String>) -> Self {
184 self.bucket = bucket.into();
185 self
186 }
187}
188
189impl Default for UniqueSchema {
190 fn default() -> Self {
191 Self { bucket: "global".into() }
192 }
193}
194
195impl Schema for UniqueSchema {
196 fn parse(&self, value: &Value, ctx: &Ctx) -> Result<Value, ValidationError> {
197 let s = value.as_str().ok_or_else(|| ValidationError::root("unique value must be a string"))?;
198 let key = format!("{}::{s}", self.bucket);
199 let mut cache = ctx.unique_cache.lock().unwrap();
200 if cache.contains(&key) {
201 return Err(ValidationError::root(format!("'{s}' already used in unique bucket '{}'", self.bucket)));
202 }
203 cache.insert(key);
204 Ok(Value::String(s.to_string()))
205 }
206}
207
208pub struct IsodateSchema;
209
210impl Schema for IsodateSchema {
211 fn parse(&self, value: &Value, _ctx: &Ctx) -> Result<Value, ValidationError> {
212 let s = value.as_str().ok_or_else(|| ValidationError::root("isodate must be a string"))?;
213 let bytes = s.as_bytes();
214 if bytes.len() < 10
215 || !bytes[0].is_ascii_digit()
216 || !bytes[1].is_ascii_digit()
217 || !bytes[2].is_ascii_digit()
218 || !bytes[3].is_ascii_digit()
219 || bytes[4] != b'-'
220 || !bytes[5].is_ascii_digit()
221 || !bytes[6].is_ascii_digit()
222 || bytes[7] != b'-'
223 || !bytes[8].is_ascii_digit()
224 || !bytes[9].is_ascii_digit()
225 {
226 return Err(ValidationError::root(format!("'{s}' is not a valid ISO date")));
227 }
228 Ok(Value::String(s.to_string()))
229 }
230}