1pub mod acp_ambient_globals;
2pub mod analysis;
3mod ast;
4pub mod ast_json;
5pub mod builtin_signatures;
6pub mod const_eval;
7pub mod diagnostic;
8pub mod diagnostic_codes;
9pub mod harness_methods;
10pub mod lexical;
11mod parser;
12pub mod stdlib_metadata;
13pub mod typechecker;
14pub mod visit;
15
16pub use ast::*;
17pub use diagnostic_codes::{
18 Category as DiagnosticCodeCategory, Code as DiagnosticCode, ParseRepairSafetyError, Repair,
19 RepairId, RepairSafety, RepairTemplate, REPAIR_REGISTRY,
20};
21pub use parser::*;
22pub use stdlib_metadata::{
23 parse_for_span as parse_stdlib_metadata, synthesize_example, StdlibMetadata,
24};
25pub use typechecker::{
26 block_definitely_exits, format_type, stmt_definitely_exits, substitute_type_expr,
27 DiagnosticDetails, DiagnosticSeverity, InlayHintInfo, NamespaceImportBinding, TypeChecker,
28 TypeDiagnostic,
29};
30
31pub use builtin_signatures::install_builtin_signatures;
32
33pub fn is_known_builtin(name: &str) -> bool {
35 builtin_signatures::is_builtin(name)
36}
37
38pub fn known_builtin_names() -> impl Iterator<Item = &'static str> {
41 builtin_signatures::iter_builtin_names()
42}
43
44pub fn known_builtin_metadata() -> impl Iterator<Item = builtin_signatures::BuiltinMetadata> {
45 builtin_signatures::iter_builtin_metadata()
46}
47
48pub fn static_signature_names() -> impl Iterator<Item = &'static str> {
53 builtin_signatures::static_signature_names()
54}
55
56#[derive(Debug)]
59pub enum PipelineError {
60 Lex(harn_lexer::LexerError),
61 Parse(ParserError),
62 TypeCheck(Box<TypeDiagnostic>),
65}
66
67impl std::fmt::Display for PipelineError {
68 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
69 match self {
70 PipelineError::Lex(e) => e.fmt(f),
71 PipelineError::Parse(e) => e.fmt(f),
72 PipelineError::TypeCheck(diag) => write!(f, "type error: {}", diag.message),
73 }
74 }
75}
76
77impl std::error::Error for PipelineError {}
78
79impl From<harn_lexer::LexerError> for PipelineError {
80 fn from(e: harn_lexer::LexerError) -> Self {
81 PipelineError::Lex(e)
82 }
83}
84
85impl From<ParserError> for PipelineError {
86 fn from(e: ParserError) -> Self {
87 PipelineError::Parse(e)
88 }
89}
90
91impl PipelineError {
92 pub fn span(&self) -> Option<&harn_lexer::Span> {
94 match self {
95 PipelineError::Lex(e) => match e {
96 harn_lexer::LexerError::UnexpectedCharacter(_, span)
97 | harn_lexer::LexerError::UnterminatedString(span)
98 | harn_lexer::LexerError::IntegerLiteralOutOfRange(_, span)
99 | harn_lexer::LexerError::UnterminatedBlockComment(span) => Some(span),
100 },
101 PipelineError::Parse(e) => match e {
102 ParserError::Unexpected { span, .. } => Some(span),
103 ParserError::UnexpectedEof { span, .. } => Some(span),
104 },
105 PipelineError::TypeCheck(diag) => diag.span.as_ref(),
106 }
107 }
108}
109
110pub fn parse_source(source: &str) -> Result<Vec<SNode>, PipelineError> {
112 let mut lexer = harn_lexer::Lexer::new(source);
113 let tokens = lexer.tokenize()?;
114 let mut parser = Parser::new(tokens);
115 Ok(parser.parse()?)
116}
117
118pub fn check_source(source: &str) -> Result<(Vec<SNode>, Vec<TypeDiagnostic>), PipelineError> {
121 let program = parse_source(source)?;
122 let diagnostics = TypeChecker::new().check_with_source(&program, source);
123 Ok((program, diagnostics))
124}
125
126pub fn check_source_strict(source: &str) -> Result<Vec<SNode>, PipelineError> {
128 let (program, diagnostics) = check_source(source)?;
129 for diag in &diagnostics {
130 if diag.severity == DiagnosticSeverity::Error {
131 return Err(PipelineError::TypeCheck(Box::new(diag.clone())));
132 }
133 }
134 Ok(program)
135}
136
137#[cfg(test)]
138mod pipeline_tests {
139 use super::*;
140
141 #[test]
142 fn parse_source_valid() {
143 let program = parse_source("const x = 1").unwrap();
144 assert!(!program.is_empty());
145 }
146
147 #[test]
148 fn parse_source_lex_error() {
149 let err = parse_source("let x = `").unwrap_err();
150 assert!(matches!(err, PipelineError::Lex(_)));
151 assert!(err.span().is_some());
152 assert!(err.to_string().contains("Unexpected character"));
153 }
154
155 #[test]
156 fn parse_source_parse_error() {
157 let err = parse_source("let = 1").unwrap_err();
158 assert!(matches!(err, PipelineError::Parse(_)));
159 assert!(err.span().is_some());
160 }
161
162 #[test]
163 fn check_source_returns_diagnostics() {
164 let (program, _diagnostics) = check_source("const x = 1").unwrap();
165 assert!(!program.is_empty());
166 }
167
168 #[test]
169 fn check_source_strict_passes_valid_code() {
170 let program = check_source_strict("const x = 1\nlog(x)").unwrap();
171 assert!(!program.is_empty());
172 }
173
174 #[test]
175 fn check_source_strict_catches_lex_error() {
176 let err = check_source_strict("`").unwrap_err();
177 assert!(matches!(err, PipelineError::Lex(_)));
178 }
179
180 #[test]
181 fn pipeline_error_display_is_informative() {
182 let err = parse_source("`").unwrap_err();
183 let msg = err.to_string();
184 assert!(!msg.is_empty());
185 assert!(msg.contains('`') || msg.contains("Unexpected"));
186 }
187
188 #[test]
189 fn pipeline_error_size_is_bounded() {
190 assert!(
192 std::mem::size_of::<PipelineError>() <= 96,
193 "PipelineError grew to {} bytes — consider boxing large variants",
194 std::mem::size_of::<PipelineError>()
195 );
196 }
197}