use super::super::types::{FunctionInfo, StructureInfo, StructureType, Visibility};
use super::LanguageAnalyzer;
use crate::utils::errors::Result;
pub struct LuaAnalyzer;
impl LuaAnalyzer {
pub fn new() -> Self {
Self
}
fn extract_function_name(&self, line: &str) -> Option<String> {
let trimmed = line.trim();
if trimmed.starts_with("--") || trimmed.is_empty() {
return None;
}
if let Some(start) = trimmed.find("function ") {
let after_function = &trimmed[start + 9..];
let end_pos = after_function.find('(').unwrap_or(after_function.len());
let func_name = after_function[..end_pos].trim();
if !func_name.is_empty()
&& func_name
.chars()
.all(|c| c.is_alphanumeric() || c == '_' || c == '.' || c == ':')
{
return Some(func_name.to_string());
}
}
if let Some(start) = trimmed.find("local function ") {
let after_function = &trimmed[start + 15..];
let end_pos = after_function.find('(').unwrap_or(after_function.len());
let func_name = after_function[..end_pos].trim();
if !func_name.is_empty()
&& func_name
.chars()
.all(|c| c.is_alphanumeric() || c == '_' || c == '.' || c == ':')
{
return Some(func_name.to_string());
}
}
if let Some(equals_pos) = trimmed.find('=') {
let before_equals = &trimmed[..equals_pos].trim();
let after_equals = &trimmed[equals_pos + 1..].trim();
if after_equals.starts_with("function") {
let parts: Vec<&str> = before_equals.split_whitespace().collect();
if let Some(last_part) = parts.last() {
if last_part
.chars()
.all(|c| c.is_alphanumeric() || c == '_' || c == '.' || c == ':')
{
return Some(last_part.to_string());
}
}
}
}
None
}
fn extract_structure_name(&self, line: &str) -> Option<String> {
let trimmed = line.trim();
if let Some(equals_pos) = trimmed.find('=') {
let before_equals = &trimmed[..equals_pos].trim();
let after_equals = &trimmed[equals_pos + 1..].trim();
if after_equals.starts_with('{') {
let parts: Vec<&str> = before_equals.split_whitespace().collect();
if let Some(last_part) = parts.last() {
if last_part
.chars()
.all(|c| c.is_alphanumeric() || c == '_' || c == '.')
{
return Some(last_part.to_string());
}
}
}
}
if trimmed.contains("module(") {
if let Some(start) = trimmed.find("module(") {
let after_module = &trimmed[start + 7..];
if let Some(end) = after_module.find(')') {
let module_name = after_module[..end]
.trim()
.trim_matches('"')
.trim_matches('\'');
if !module_name.is_empty() {
return Some(module_name.to_string());
}
}
}
}
None
}
fn count_complexity_keywords(&self, line: &str) -> usize {
let keywords = [
"if", "elseif", "else", "for", "while", "repeat", "until", "and", "or", "not", "break",
"return", "goto", "pcall", "xpcall", "error", "assert",
];
keywords
.iter()
.map(|&keyword| line.matches(keyword).count())
.sum()
}
fn calculate_cyclomatic_complexity(
&self,
lines: &[String],
start_line: usize,
end_line: usize,
) -> usize {
let mut complexity = 1;
for line in lines.iter().take(end_line + 1).skip(start_line) {
complexity += self.count_complexity_keywords(line);
}
complexity
}
fn find_function_end(&self, lines: &[String], start_line: usize) -> usize {
let mut depth = 0;
let mut in_function = false;
for (i, line) in lines.iter().enumerate().skip(start_line) {
let trimmed = line.trim();
if trimmed.contains("function") {
in_function = true;
depth += 1;
}
if in_function {
if trimmed.contains("function")
|| trimmed.contains("do")
|| trimmed.contains("if")
|| trimmed.contains("for")
|| trimmed.contains("while")
|| trimmed.contains("repeat")
{
depth += 1;
}
if trimmed == "end" || trimmed.starts_with("end ") {
depth -= 1;
if depth == 0 {
return i;
}
}
if trimmed.contains("until") {
depth -= 1;
if depth == 0 {
return i;
}
}
}
}
lines.len().saturating_sub(1)
}
fn determine_visibility(&self, line: &str) -> Visibility {
if line.trim().contains("local function") || line.trim().contains("local ") {
Visibility::Private
} else {
Visibility::Public
}
}
fn determine_structure_type(&self, line: &str) -> StructureType {
let trimmed = line.trim();
if trimmed.contains("module(") {
StructureType::Module
} else {
StructureType::Class }
}
}
impl LanguageAnalyzer for LuaAnalyzer {
fn analyze_functions(&self, lines: &[String]) -> Result<Vec<FunctionInfo>> {
let mut functions = Vec::new();
for (i, line) in lines.iter().enumerate() {
if let Some(func_name) = self.extract_function_name(line) {
let end_line = self.find_function_end(lines, i);
let complexity = self.calculate_cyclomatic_complexity(lines, i, end_line);
let _visibility = self.determine_visibility(line);
functions.push(FunctionInfo {
name: func_name,
line_count: end_line.saturating_sub(i).max(1),
cyclomatic_complexity: complexity,
cognitive_complexity: complexity,
nesting_depth: 0,
parameter_count: self.count_parameters(line),
return_path_count: 1,
start_line: i + 1,
end_line: end_line + 1,
is_method: false,
parent_class: None,
local_variable_count: 0,
has_recursion: false,
has_exception_handling: false,
visibility: Visibility::Public,
});
}
}
Ok(functions)
}
fn analyze_structures(&self, lines: &[String]) -> Result<Vec<StructureInfo>> {
let mut structures = Vec::new();
for (i, line) in lines.iter().enumerate() {
if let Some(struct_name) = self.extract_structure_name(line) {
let end_line = self.find_structure_end(lines, i);
let structure_type = self.determine_structure_type(line);
let _visibility = Visibility::Public;
structures.push(StructureInfo {
name: struct_name,
structure_type,
line_count: end_line.saturating_sub(i).max(1),
start_line: i + 1,
end_line: end_line + 1,
methods: Vec::new(),
properties: self.count_fields_in_structure(lines, i, end_line),
visibility: Visibility::Public,
inheritance_depth: 0,
interface_count: 0,
});
}
}
Ok(structures)
}
}
impl LuaAnalyzer {
fn count_parameters(&self, line: &str) -> usize {
if let Some(start) = line.find('(') {
if let Some(end) = line.find(')') {
let params = &line[start + 1..end];
if params.trim().is_empty() {
return 0;
}
return params.split(',').count();
}
}
0
}
fn find_structure_end(&self, lines: &[String], start_line: usize) -> usize {
let mut depth = 0;
let mut in_structure = false;
for (i, line) in lines.iter().enumerate().skip(start_line) {
let trimmed = line.trim();
if trimmed.contains("= {") {
in_structure = true;
depth += 1;
}
if in_structure {
if trimmed.contains('{') {
depth += trimmed.matches('{').count();
}
if trimmed.contains('}') {
depth -= trimmed.matches('}').count();
if depth == 0 {
return i;
}
}
}
}
lines.len().saturating_sub(1)
}
fn count_fields_in_structure(
&self,
lines: &[String],
start_line: usize,
end_line: usize,
) -> usize {
let mut count = 0;
for line in lines.iter().take(end_line + 1).skip(start_line) {
let trimmed = line.trim();
if trimmed.contains('=')
&& !trimmed.contains("function")
&& !trimmed.starts_with("--")
&& !trimmed.is_empty()
{
count += 1;
}
}
count
}
}
impl Default for LuaAnalyzer {
fn default() -> Self {
Self::new()
}
}