swamp_script_eval_loader/
lib.rs1use swamp_script_analyzer::Analyzer;
6use swamp_script_analyzer::prelude::{Error, Program};
7use swamp_script_dep_loader::{
8 DependencyParser, ParsedAstModule, parse_local_modules_and_get_order,
9};
10use swamp_script_modules::prelude::*;
11use swamp_script_modules::symtbl::SymbolTableRef;
12use swamp_script_semantic::{InternalMainExpression, ProgramState, SemanticError};
13use swamp_script_source_map::SourceMap;
14use tracing::{Level, debug, span};
15
16#[derive(Debug)]
17pub enum LoaderErr {
18 CouldNotLoad,
19 SemanticError(SemanticError),
20 AnalyzerError(Error),
21}
22
23impl From<Error> for LoaderErr {
24 fn from(value: Error) -> Self {
25 LoaderErr::AnalyzerError(value)
26 }
27}
28
29pub fn analyze_module(
30 state: &mut ProgramState,
31 default_lookup_symbol_table: &SymbolTable,
32 modules: &mut Modules,
33 core_symbol_table: &SymbolTableRef,
34 source_map: &SourceMap,
35 module_path: &[String],
36 ast_module: &ParsedAstModule,
37) -> Result<(SymbolTable, Option<InternalMainExpression>), LoaderErr> {
38 let mut resolver = Analyzer::new(
39 state,
40 modules,
41 core_symbol_table.clone(),
42 source_map,
43 module_path,
44 ast_module.file_id,
45 );
46
47 resolver.shared.lookup_table = default_lookup_symbol_table.clone();
48
49 let statements = {
50 for ast_def in ast_module.ast_module.definitions() {
51 resolver.analyze_definition(ast_def)?;
52 }
53
54 let maybe_resolved_expression = if let Some(expr) = ast_module.ast_module.expression() {
55 let internal_main = resolver.analyze_main_expression(expr)?;
56 Some(internal_main)
57 } else {
58 None
59 };
60 maybe_resolved_expression
61 };
62
63 Ok((resolver.shared.definition_table, statements))
64}
65
66pub fn analyze_modules_in_order(
69 state: &mut ProgramState,
70 default_lookup_symbol_table: &SymbolTable,
71 modules: &mut Modules,
72 core_symbol_table: SymbolTableRef,
73 source_map: &SourceMap,
74 module_paths_in_order: &[Vec<String>],
75 parsed_modules: &DependencyParser,
76) -> Result<(), LoaderErr> {
77 debug!(?module_paths_in_order, "analyzing modules in order");
78 for module_path in module_paths_in_order {
79 if *module_path == ["core"] {
80 continue;
81 }
82 if let Some(parse_module) = parsed_modules.get_parsed_module(module_path) {
83 let process_span = span!(Level::TRACE, "analyze mod", path = ?module_path);
84 let _enter = process_span.enter();
85
86 let (analyzed_symbol_table, maybe_expression) = analyze_module(
87 state,
88 default_lookup_symbol_table,
89 modules,
90 &core_symbol_table,
91 source_map,
92 module_path,
93 parse_module,
94 )?;
95 let analyzed_module = Module::new(analyzed_symbol_table, maybe_expression);
96 modules.add(analyzed_module.into());
97 } else {
98 panic!("could not load")
99 }
100 }
101 Ok(())
102}
103
104pub fn compile_and_analyze_all_modules(
105 module_path: &[String],
106 resolved_program: &mut Program,
107 source_map: &mut SourceMap,
108 core_symbol_table: SymbolTableRef,
109) -> Result<(), LoaderErr> {
110 let mut dependency_parser = DependencyParser::new();
111
112 let module_paths_in_order =
113 parse_local_modules_and_get_order(module_path.to_vec(), &mut dependency_parser, source_map)
114 .unwrap(); analyze_modules_in_order(
117 &mut resolved_program.state,
118 &resolved_program.default_symbol_table,
119 &mut resolved_program.modules,
120 core_symbol_table,
121 source_map,
122 &module_paths_in_order,
123 &dependency_parser,
124 )?;
125
126 Ok(())
127}