1use std::cell::RefCell;
2use std::collections::{BTreeMap, HashSet};
3use std::future::Future;
4use std::path::{Path, PathBuf};
5use std::pin::Pin;
6use std::rc::Rc;
7
8use crate::value::{ModuleFunctionRegistry, VmClosure, VmEnv, VmError, VmValue};
9
10use super::{ScopeSpan, Vm};
11
12#[derive(Clone)]
13pub(crate) struct LoadedModule {
14 pub(crate) functions: BTreeMap<String, Rc<VmClosure>>,
15 pub(crate) public_names: HashSet<String>,
16}
17
18pub fn resolve_module_import_path(base: &Path, path: &str) -> PathBuf {
19 let synthetic_current_file = base.join("__harn_import_base__.harn");
20 if let Some(resolved) = harn_modules::resolve_import_path(&synthetic_current_file, path) {
21 return resolved;
22 }
23
24 let mut file_path = base.join(path);
25
26 if !file_path.exists() && file_path.extension().is_none() {
27 file_path.set_extension("harn");
28 }
29
30 file_path
31}
32
33impl Vm {
34 async fn load_module_from_source(
35 &mut self,
36 synthetic: PathBuf,
37 source: &str,
38 ) -> Result<LoadedModule, VmError> {
39 if let Some(loaded) = self.module_cache.get(&synthetic).cloned() {
40 return Ok(loaded);
41 }
42
43 let mut lexer = harn_lexer::Lexer::new(source);
44 let tokens = lexer.tokenize().map_err(|e| {
45 VmError::Runtime(format!("Import lex error in {}: {e}", synthetic.display()))
46 })?;
47 let mut parser = harn_parser::Parser::new(tokens);
48 let program = parser.parse().map_err(|e| {
49 VmError::Runtime(format!(
50 "Import parse error in {}: {e}",
51 synthetic.display()
52 ))
53 })?;
54
55 self.imported_paths.push(synthetic.clone());
56 let loaded = self.import_declarations(&program, None).await?;
57 self.imported_paths.pop();
58 self.module_cache.insert(synthetic, loaded.clone());
59 Ok(loaded)
60 }
61
62 fn export_loaded_module(
63 &mut self,
64 module_path: &Path,
65 loaded: &LoadedModule,
66 selected_names: Option<&[String]>,
67 ) -> Result<(), VmError> {
68 let export_names: Vec<String> = if let Some(names) = selected_names {
69 names.to_vec()
70 } else if !loaded.public_names.is_empty() {
71 loaded.public_names.iter().cloned().collect()
72 } else {
73 loaded.functions.keys().cloned().collect()
74 };
75
76 let module_name = module_path.display().to_string();
77 for name in export_names {
78 let Some(closure) = loaded.functions.get(&name) else {
79 return Err(VmError::Runtime(format!(
80 "Import error: '{name}' is not defined in {module_name}"
81 )));
82 };
83 if let Some(VmValue::Closure(_)) = self.env.get(&name) {
84 return Err(VmError::Runtime(format!(
85 "Import collision: '{name}' is already defined when importing {module_name}. \
86 Use selective imports to disambiguate: import {{ {name} }} from \"...\""
87 )));
88 }
89 self.env
90 .define(&name, VmValue::Closure(Rc::clone(closure)), false)?;
91 }
92 Ok(())
93 }
94
95 pub(super) fn execute_import<'a>(
97 &'a mut self,
98 path: &'a str,
99 selected_names: Option<&'a [String]>,
100 ) -> Pin<Box<dyn Future<Output = Result<(), VmError>> + 'a>> {
101 Box::pin(async move {
102 let _import_span = ScopeSpan::new(crate::tracing::SpanKind::Import, path.to_string());
103
104 if let Some(module) = path.strip_prefix("std/") {
105 if let Some(source) = crate::stdlib_modules::get_stdlib_source(module) {
106 let synthetic = PathBuf::from(format!("<stdlib>/{module}.harn"));
107 if self.imported_paths.contains(&synthetic) {
108 return Ok(());
109 }
110 let loaded = self
111 .load_module_from_source(synthetic.clone(), source)
112 .await?;
113 self.export_loaded_module(&synthetic, &loaded, selected_names)?;
114 return Ok(());
115 }
116 return Err(VmError::Runtime(format!(
117 "Unknown stdlib module: std/{module}"
118 )));
119 }
120
121 let base = self
122 .source_dir
123 .clone()
124 .unwrap_or_else(|| PathBuf::from("."));
125 let file_path = resolve_module_import_path(&base, path);
126
127 let canonical = file_path
128 .canonicalize()
129 .unwrap_or_else(|_| file_path.clone());
130 if self.imported_paths.contains(&canonical) {
131 return Ok(());
132 }
133 if let Some(loaded) = self.module_cache.get(&canonical).cloned() {
134 return self.export_loaded_module(&canonical, &loaded, selected_names);
135 }
136 self.imported_paths.push(canonical.clone());
137
138 let source = std::fs::read_to_string(&file_path).map_err(|e| {
139 VmError::Runtime(format!(
140 "Import error: cannot read '{}': {e}",
141 file_path.display()
142 ))
143 })?;
144
145 let mut lexer = harn_lexer::Lexer::new(&source);
146 let tokens = lexer
147 .tokenize()
148 .map_err(|e| VmError::Runtime(format!("Import lex error: {e}")))?;
149 let mut parser = harn_parser::Parser::new(tokens);
150 let program = parser
151 .parse()
152 .map_err(|e| VmError::Runtime(format!("Import parse error: {e}")))?;
153
154 let loaded = self.import_declarations(&program, Some(&file_path)).await?;
155 self.imported_paths.pop();
156 self.module_cache.insert(canonical.clone(), loaded.clone());
157 self.export_loaded_module(&canonical, &loaded, selected_names)?;
158
159 Ok(())
160 })
161 }
162
163 fn import_declarations<'a>(
165 &'a mut self,
166 program: &'a [harn_parser::SNode],
167 file_path: Option<&'a Path>,
168 ) -> Pin<Box<dyn Future<Output = Result<LoadedModule, VmError>> + 'a>> {
169 Box::pin(async move {
170 let caller_env = self.env.clone();
171 let old_source_dir = self.source_dir.clone();
172 self.env = VmEnv::new();
173 if let Some(fp) = file_path {
174 if let Some(parent) = fp.parent() {
175 self.source_dir = Some(parent.to_path_buf());
176 }
177 }
178
179 for node in program {
180 match &node.node {
181 harn_parser::Node::ImportDecl { path: sub_path } => {
182 self.execute_import(sub_path, None).await?;
183 }
184 harn_parser::Node::SelectiveImport {
185 names,
186 path: sub_path,
187 } => {
188 self.execute_import(sub_path, Some(names)).await?;
189 }
190 _ => {}
191 }
192 }
193
194 let module_state: crate::value::ModuleState = {
200 let mut init_env = self.env.clone();
201 let init_nodes: Vec<harn_parser::SNode> = program
202 .iter()
203 .filter(|sn| {
204 matches!(
205 &sn.node,
206 harn_parser::Node::VarBinding { .. }
207 | harn_parser::Node::LetBinding { .. }
208 )
209 })
210 .cloned()
211 .collect();
212 if !init_nodes.is_empty() {
213 let init_compiler = crate::Compiler::new();
214 let init_chunk = init_compiler
215 .compile(&init_nodes)
216 .map_err(|e| VmError::Runtime(format!("Import init compile error: {e}")))?;
217 let saved_env = std::mem::replace(&mut self.env, init_env);
220 let saved_frames = std::mem::take(&mut self.frames);
221 let saved_handlers = std::mem::take(&mut self.exception_handlers);
222 let saved_iterators = std::mem::take(&mut self.iterators);
223 let saved_deadlines = std::mem::take(&mut self.deadlines);
224 let init_result = self.run_chunk(&init_chunk).await;
225 init_env = std::mem::replace(&mut self.env, saved_env);
226 self.frames = saved_frames;
227 self.exception_handlers = saved_handlers;
228 self.iterators = saved_iterators;
229 self.deadlines = saved_deadlines;
230 init_result?;
231 }
232 Rc::new(RefCell::new(init_env))
233 };
234
235 let module_env = self.env.clone();
236 let registry: ModuleFunctionRegistry = Rc::new(RefCell::new(BTreeMap::new()));
237 let source_dir = file_path.and_then(|fp| fp.parent().map(|p| p.to_path_buf()));
238 let mut functions: BTreeMap<String, Rc<VmClosure>> = BTreeMap::new();
239 let mut public_names: HashSet<String> = HashSet::new();
240
241 for node in program {
242 let inner = match &node.node {
246 harn_parser::Node::AttributedDecl { inner, .. } => inner.as_ref(),
247 _ => node,
248 };
249 let harn_parser::Node::FnDecl {
250 name,
251 params,
252 body,
253 is_pub,
254 ..
255 } = &inner.node
256 else {
257 continue;
258 };
259
260 let mut compiler = crate::Compiler::new();
261 let module_source_file = file_path.map(|p| p.display().to_string());
262 let func_chunk = compiler
263 .compile_fn_body(params, body, module_source_file)
264 .map_err(|e| VmError::Runtime(format!("Import compile error: {e}")))?;
265 let closure = Rc::new(VmClosure {
266 func: Rc::new(func_chunk),
267 env: module_env.clone(),
268 source_dir: source_dir.clone(),
269 module_functions: Some(Rc::clone(®istry)),
270 module_state: Some(Rc::clone(&module_state)),
271 });
272 registry
273 .borrow_mut()
274 .insert(name.clone(), Rc::clone(&closure));
275 self.env
276 .define(name, VmValue::Closure(Rc::clone(&closure)), false)?;
277 module_state.borrow_mut().define(
284 name,
285 VmValue::Closure(Rc::clone(&closure)),
286 false,
287 )?;
288 functions.insert(name.clone(), Rc::clone(&closure));
289 if *is_pub {
290 public_names.insert(name.clone());
291 }
292 }
293
294 self.env = caller_env;
295 self.source_dir = old_source_dir;
296
297 Ok(LoadedModule {
298 functions,
299 public_names,
300 })
301 })
302 }
303
304 pub async fn load_module_exports(
307 &mut self,
308 path: &Path,
309 ) -> Result<BTreeMap<String, Rc<VmClosure>>, VmError> {
310 let path_str = path.to_string_lossy().into_owned();
311 self.execute_import(&path_str, None).await?;
312
313 let mut file_path = if path.is_absolute() {
314 path.to_path_buf()
315 } else {
316 self.source_dir
317 .clone()
318 .unwrap_or_else(|| PathBuf::from("."))
319 .join(path)
320 };
321 if !file_path.exists() && file_path.extension().is_none() {
322 file_path.set_extension("harn");
323 }
324
325 let canonical = file_path
326 .canonicalize()
327 .unwrap_or_else(|_| file_path.clone());
328 let loaded = self.module_cache.get(&canonical).cloned().ok_or_else(|| {
329 VmError::Runtime(format!(
330 "Import error: failed to cache loaded module '{}'",
331 canonical.display()
332 ))
333 })?;
334
335 let export_names: Vec<String> = if loaded.public_names.is_empty() {
336 loaded.functions.keys().cloned().collect()
337 } else {
338 loaded.public_names.iter().cloned().collect()
339 };
340
341 let mut exports = BTreeMap::new();
342 for name in export_names {
343 let Some(closure) = loaded.functions.get(&name) else {
344 return Err(VmError::Runtime(format!(
345 "Import error: exported function '{name}' is missing from {}",
346 canonical.display()
347 )));
348 };
349 exports.insert(name, Rc::clone(closure));
350 }
351
352 Ok(exports)
353 }
354
355 pub async fn load_module_exports_from_source(
358 &mut self,
359 source_key: impl Into<PathBuf>,
360 source: &str,
361 ) -> Result<BTreeMap<String, Rc<VmClosure>>, VmError> {
362 let synthetic = source_key.into();
363 let loaded = self
364 .load_module_from_source(synthetic.clone(), source)
365 .await?;
366 let export_names: Vec<String> = if loaded.public_names.is_empty() {
367 loaded.functions.keys().cloned().collect()
368 } else {
369 loaded.public_names.iter().cloned().collect()
370 };
371
372 let mut exports = BTreeMap::new();
373 for name in export_names {
374 let Some(closure) = loaded.functions.get(&name) else {
375 return Err(VmError::Runtime(format!(
376 "Import error: exported function '{name}' is missing from {}",
377 synthetic.display()
378 )));
379 };
380 exports.insert(name, Rc::clone(closure));
381 }
382
383 Ok(exports)
384 }
385
386 pub async fn load_module_exports_from_import(
390 &mut self,
391 import_path: &str,
392 ) -> Result<BTreeMap<String, Rc<VmClosure>>, VmError> {
393 self.execute_import(import_path, None).await?;
394
395 if let Some(module) = import_path.strip_prefix("std/") {
396 let synthetic = PathBuf::from(format!("<stdlib>/{module}.harn"));
397 let loaded = self.module_cache.get(&synthetic).cloned().ok_or_else(|| {
398 VmError::Runtime(format!(
399 "Import error: failed to cache loaded module '{}'",
400 synthetic.display()
401 ))
402 })?;
403 let mut exports = BTreeMap::new();
404 let export_names: Vec<String> = if loaded.public_names.is_empty() {
405 loaded.functions.keys().cloned().collect()
406 } else {
407 loaded.public_names.iter().cloned().collect()
408 };
409 for name in export_names {
410 let Some(closure) = loaded.functions.get(&name) else {
411 return Err(VmError::Runtime(format!(
412 "Import error: exported function '{name}' is missing from {}",
413 synthetic.display()
414 )));
415 };
416 exports.insert(name, Rc::clone(closure));
417 }
418 return Ok(exports);
419 }
420
421 let base = self
422 .source_dir
423 .clone()
424 .unwrap_or_else(|| PathBuf::from("."));
425 let file_path = resolve_module_import_path(&base, import_path);
426 self.load_module_exports(&file_path).await
427 }
428}