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fallow_core/analyze/
mod.rs

1mod predicates;
2mod unused_deps;
3mod unused_exports;
4mod unused_files;
5mod unused_members;
6
7use rustc_hash::FxHashMap;
8
9use fallow_config::{PackageJson, ResolvedConfig, Severity};
10
11use crate::discover::FileId;
12use crate::extract::ModuleInfo;
13use crate::graph::ModuleGraph;
14use crate::resolve::ResolvedModule;
15use crate::results::*;
16use crate::suppress::{self, IssueKind, Suppression};
17
18use unused_deps::{
19    find_type_only_dependencies, find_unlisted_dependencies, find_unresolved_imports,
20    find_unused_dependencies,
21};
22use unused_exports::{collect_export_usages, find_duplicate_exports, find_unused_exports};
23use unused_files::find_unused_files;
24use unused_members::find_unused_members;
25
26/// Pre-computed line offset tables indexed by `FileId`, built during parse and
27/// carried through the cache. Eliminates redundant file reads during analysis.
28pub(crate) type LineOffsetsMap<'a> = FxHashMap<FileId, &'a [u32]>;
29
30/// Convert a byte offset to (line, col) using pre-computed line offsets.
31/// Falls back to `(1, byte_offset)` when no line table is available.
32pub(crate) fn byte_offset_to_line_col(
33    line_offsets_map: &LineOffsetsMap<'_>,
34    file_id: FileId,
35    byte_offset: u32,
36) -> (u32, u32) {
37    line_offsets_map
38        .get(&file_id)
39        .map_or((1, byte_offset), |offsets| {
40            fallow_types::extract::byte_offset_to_line_col(offsets, byte_offset)
41        })
42}
43
44/// Read source content from disk, returning empty string on failure.
45/// Only used for LSP Code Lens reference resolution where the referencing
46/// file may not be in the line offsets map.
47fn read_source(path: &std::path::Path) -> String {
48    std::fs::read_to_string(path).unwrap_or_default()
49}
50
51/// Find all dead code in the project.
52pub fn find_dead_code(graph: &ModuleGraph, config: &ResolvedConfig) -> AnalysisResults {
53    find_dead_code_with_resolved(graph, config, &[], None)
54}
55
56/// Find all dead code, with optional resolved module data and plugin context.
57pub fn find_dead_code_with_resolved(
58    graph: &ModuleGraph,
59    config: &ResolvedConfig,
60    resolved_modules: &[ResolvedModule],
61    plugin_result: Option<&crate::plugins::AggregatedPluginResult>,
62) -> AnalysisResults {
63    find_dead_code_full(
64        graph,
65        config,
66        resolved_modules,
67        plugin_result,
68        &[],
69        &[],
70        false,
71    )
72}
73
74/// Find all dead code, with optional resolved module data, plugin context, and workspace info.
75pub fn find_dead_code_full(
76    graph: &ModuleGraph,
77    config: &ResolvedConfig,
78    resolved_modules: &[ResolvedModule],
79    plugin_result: Option<&crate::plugins::AggregatedPluginResult>,
80    workspaces: &[fallow_config::WorkspaceInfo],
81    modules: &[ModuleInfo],
82    collect_usages: bool,
83) -> AnalysisResults {
84    let _span = tracing::info_span!("find_dead_code").entered();
85
86    // Build suppression index: FileId -> suppressions
87    let suppressions_by_file: FxHashMap<FileId, &[Suppression]> = modules
88        .iter()
89        .filter(|m| !m.suppressions.is_empty())
90        .map(|m| (m.file_id, m.suppressions.as_slice()))
91        .collect();
92
93    // Build line offset index: FileId -> pre-computed line start offsets.
94    // Eliminates redundant file reads for byte-to-line/col conversion.
95    let line_offsets_by_file: LineOffsetsMap<'_> = modules
96        .iter()
97        .filter(|m| !m.line_offsets.is_empty())
98        .map(|m| (m.file_id, m.line_offsets.as_slice()))
99        .collect();
100
101    let mut results = AnalysisResults::default();
102
103    if config.rules.unused_files != Severity::Off {
104        results.unused_files = find_unused_files(graph, &suppressions_by_file);
105    }
106
107    if config.rules.unused_exports != Severity::Off || config.rules.unused_types != Severity::Off {
108        let (exports, types) = find_unused_exports(
109            graph,
110            config,
111            plugin_result,
112            &suppressions_by_file,
113            &line_offsets_by_file,
114        );
115        if config.rules.unused_exports != Severity::Off {
116            results.unused_exports = exports;
117        }
118        if config.rules.unused_types != Severity::Off {
119            results.unused_types = types;
120        }
121    }
122
123    if config.rules.unused_enum_members != Severity::Off
124        || config.rules.unused_class_members != Severity::Off
125    {
126        let (enum_members, class_members) = find_unused_members(
127            graph,
128            config,
129            resolved_modules,
130            &suppressions_by_file,
131            &line_offsets_by_file,
132        );
133        if config.rules.unused_enum_members != Severity::Off {
134            results.unused_enum_members = enum_members;
135        }
136        if config.rules.unused_class_members != Severity::Off {
137            results.unused_class_members = class_members;
138        }
139    }
140
141    // Build merged dependency set from root + all workspace package.json files
142    let pkg_path = config.root.join("package.json");
143    let pkg = PackageJson::load(&pkg_path).ok();
144    if let Some(ref pkg) = pkg {
145        if config.rules.unused_dependencies != Severity::Off
146            || config.rules.unused_dev_dependencies != Severity::Off
147            || config.rules.unused_optional_dependencies != Severity::Off
148        {
149            let (deps, dev_deps, optional_deps) =
150                find_unused_dependencies(graph, pkg, config, plugin_result, workspaces);
151            if config.rules.unused_dependencies != Severity::Off {
152                results.unused_dependencies = deps;
153            }
154            if config.rules.unused_dev_dependencies != Severity::Off {
155                results.unused_dev_dependencies = dev_deps;
156            }
157            if config.rules.unused_optional_dependencies != Severity::Off {
158                results.unused_optional_dependencies = optional_deps;
159            }
160        }
161
162        if config.rules.unlisted_dependencies != Severity::Off {
163            results.unlisted_dependencies =
164                find_unlisted_dependencies(graph, pkg, config, workspaces, plugin_result);
165        }
166    }
167
168    if config.rules.unresolved_imports != Severity::Off && !resolved_modules.is_empty() {
169        let virtual_prefixes: Vec<&str> = plugin_result
170            .map(|pr| {
171                pr.virtual_module_prefixes
172                    .iter()
173                    .map(|s| s.as_str())
174                    .collect()
175            })
176            .unwrap_or_default();
177        results.unresolved_imports = find_unresolved_imports(
178            resolved_modules,
179            config,
180            &suppressions_by_file,
181            &virtual_prefixes,
182            &line_offsets_by_file,
183        );
184    }
185
186    if config.rules.duplicate_exports != Severity::Off {
187        results.duplicate_exports = find_duplicate_exports(graph, config, &suppressions_by_file);
188    }
189
190    // In production mode, detect dependencies that are only used via type-only imports
191    if config.production
192        && let Some(ref pkg) = pkg
193    {
194        results.type_only_dependencies =
195            find_type_only_dependencies(graph, pkg, config, workspaces);
196    }
197
198    // Detect circular dependencies
199    if config.rules.circular_dependencies != Severity::Off {
200        let cycles = graph.find_cycles();
201        results.circular_dependencies = cycles
202            .into_iter()
203            .filter(|cycle| {
204                // Skip cycles where any participating file has a file-level suppression
205                !cycle.iter().any(|&id| {
206                    suppressions_by_file.get(&id).is_some_and(|supps| {
207                        suppress::is_file_suppressed(supps, IssueKind::CircularDependency)
208                    })
209                })
210            })
211            .map(|cycle| {
212                let files: Vec<std::path::PathBuf> = cycle
213                    .iter()
214                    .map(|&id| graph.modules[id.0 as usize].path.clone())
215                    .collect();
216                let length = files.len();
217                CircularDependency { files, length }
218            })
219            .collect();
220    }
221
222    // Collect export usage counts for Code Lens (LSP feature).
223    // Skipped in CLI mode since the field is #[serde(skip)] in all output formats.
224    if collect_usages {
225        results.export_usages = collect_export_usages(graph, &line_offsets_by_file);
226    }
227
228    results
229}
230
231#[cfg(test)]
232mod tests {
233    use fallow_types::extract::{byte_offset_to_line_col, compute_line_offsets};
234
235    // Helper: compute line offsets from source and convert byte offset
236    fn line_col(source: &str, byte_offset: u32) -> (u32, u32) {
237        let offsets = compute_line_offsets(source);
238        byte_offset_to_line_col(&offsets, byte_offset)
239    }
240
241    // ── compute_line_offsets ─────────────────────────────────────
242
243    #[test]
244    fn compute_offsets_empty() {
245        assert_eq!(compute_line_offsets(""), vec![0]);
246    }
247
248    #[test]
249    fn compute_offsets_single_line() {
250        assert_eq!(compute_line_offsets("hello"), vec![0]);
251    }
252
253    #[test]
254    fn compute_offsets_multiline() {
255        assert_eq!(compute_line_offsets("abc\ndef\nghi"), vec![0, 4, 8]);
256    }
257
258    #[test]
259    fn compute_offsets_trailing_newline() {
260        assert_eq!(compute_line_offsets("abc\n"), vec![0, 4]);
261    }
262
263    #[test]
264    fn compute_offsets_crlf() {
265        assert_eq!(compute_line_offsets("ab\r\ncd"), vec![0, 4]);
266    }
267
268    #[test]
269    fn compute_offsets_consecutive_newlines() {
270        assert_eq!(compute_line_offsets("\n\n"), vec![0, 1, 2]);
271    }
272
273    // ── byte_offset_to_line_col ─────────────────────────────────
274
275    #[test]
276    fn byte_offset_empty_source() {
277        assert_eq!(line_col("", 0), (1, 0));
278    }
279
280    #[test]
281    fn byte_offset_single_line_start() {
282        assert_eq!(line_col("hello", 0), (1, 0));
283    }
284
285    #[test]
286    fn byte_offset_single_line_middle() {
287        assert_eq!(line_col("hello", 4), (1, 4));
288    }
289
290    #[test]
291    fn byte_offset_multiline_start_of_line2() {
292        assert_eq!(line_col("line1\nline2\nline3", 6), (2, 0));
293    }
294
295    #[test]
296    fn byte_offset_multiline_middle_of_line3() {
297        assert_eq!(line_col("line1\nline2\nline3", 14), (3, 2));
298    }
299
300    #[test]
301    fn byte_offset_at_newline_boundary() {
302        assert_eq!(line_col("line1\nline2", 5), (1, 5));
303    }
304
305    #[test]
306    fn byte_offset_multibyte_utf8() {
307        let source = "hi\n\u{1F600}x";
308        assert_eq!(line_col(source, 3), (2, 0));
309        assert_eq!(line_col(source, 7), (2, 4));
310    }
311
312    #[test]
313    fn byte_offset_multibyte_accented_chars() {
314        let source = "caf\u{00E9}\nbar";
315        assert_eq!(line_col(source, 6), (2, 0));
316        assert_eq!(line_col(source, 3), (1, 3));
317    }
318
319    #[test]
320    fn byte_offset_via_map_fallback() {
321        use super::*;
322        let map: LineOffsetsMap<'_> = FxHashMap::default();
323        assert_eq!(
324            super::byte_offset_to_line_col(&map, FileId(99), 42),
325            (1, 42)
326        );
327    }
328
329    #[test]
330    fn byte_offset_via_map_lookup() {
331        use super::*;
332        let offsets = compute_line_offsets("abc\ndef\nghi");
333        let mut map: LineOffsetsMap<'_> = FxHashMap::default();
334        map.insert(FileId(0), &offsets);
335        assert_eq!(super::byte_offset_to_line_col(&map, FileId(0), 5), (2, 1));
336    }
337}