use crate::name::normalize_package_separator;
use crate::token_parser::parse_module_token;
use perl_parser_core::text_line::{is_keyword_boundary, line_bounds_at, skip_ascii_whitespace};
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum ModuleReferenceKind {
Use,
Require,
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub struct ModuleReference<'a> {
pub kind: ModuleReferenceKind,
pub module_name: &'a str,
pub module_start: usize,
pub module_end: usize,
}
impl ModuleReference<'_> {
#[must_use]
pub fn canonical_module_name(&self) -> String {
normalize_package_separator(self.module_name).into_owned()
}
}
#[must_use]
pub fn find_module_reference(text: &str, cursor_pos: usize) -> Option<ModuleReference<'_>> {
if text.is_empty() || cursor_pos > text.len() {
return None;
}
let (line_start, line_end) = line_bounds_at(text, cursor_pos);
let line = &text[line_start..line_end];
let cursor_in_line = cursor_pos.saturating_sub(line_start);
find_in_line(line, line_start, cursor_in_line)
}
#[must_use]
pub fn find_module_reference_extended(
text: &str,
cursor_pos: usize,
) -> Option<ModuleReference<'_>> {
if let Some(reference) = find_module_reference(text, cursor_pos) {
return Some(reference);
}
if text.is_empty() || cursor_pos > text.len() {
return None;
}
let (line_start, line_end) = line_bounds_at(text, cursor_pos);
let line = &text[line_start..line_end];
let cursor_in_line = cursor_pos.saturating_sub(line_start);
find_parent_base_module_in_line(line, line_start, cursor_in_line)
}
#[must_use]
pub fn extract_module_reference(text: &str, cursor_pos: usize) -> Option<String> {
find_module_reference(text, cursor_pos).map(|reference| reference.canonical_module_name())
}
#[must_use]
pub fn extract_module_reference_extended(text: &str, cursor_pos: usize) -> Option<String> {
find_module_reference_extended(text, cursor_pos)
.map(|reference| reference.canonical_module_name())
}
fn find_in_line(
line: &str,
line_offset: usize,
cursor_in_line: usize,
) -> Option<ModuleReference<'_>> {
find_in_line_for_keyword(line, line_offset, cursor_in_line, "use", ModuleReferenceKind::Use)
.or_else(|| {
find_in_line_for_keyword(
line,
line_offset,
cursor_in_line,
"require",
ModuleReferenceKind::Require,
)
})
}
fn find_parent_base_module_in_line<'a>(
line: &'a str,
line_offset: usize,
cursor_in_line: usize,
) -> Option<ModuleReference<'a>> {
let trimmed = line.trim_start();
let leading_ws = line.len().saturating_sub(trimmed.len());
let rest = trimmed.strip_prefix("use")?;
if !rest.starts_with(|c: char| c.is_whitespace()) {
return None;
}
let rest = rest.trim_start();
let is_parent = rest.starts_with("parent");
let is_base = rest.starts_with("base");
if !is_parent && !is_base {
return None;
}
let keyword = if is_parent { "parent" } else { "base" };
let after_keyword = &rest[keyword.len()..];
if !after_keyword.is_empty() && !after_keyword.starts_with(|c: char| c.is_whitespace()) {
return None;
}
let args_area = after_keyword;
let args_start_in_line = leading_ws + "use ".len() + (rest.len() - after_keyword.len());
let bytes = args_area.as_bytes();
let mut i = 0;
while i < bytes.len() {
let b = bytes[i];
if !is_module_start_byte(b) {
i += 1;
continue;
}
let token_start_in_args = i;
let token_end_in_args = scan_canonical_module_token(bytes, i);
let token_start_in_line = args_start_in_line + token_start_in_args;
let token_end_in_line = args_start_in_line + token_end_in_args;
let module_name = &args_area[token_start_in_args..token_end_in_args];
let is_module_like = module_name.contains("::")
|| module_name.as_bytes().first().is_some_and(u8::is_ascii_uppercase);
if is_module_like
&& cursor_in_line >= token_start_in_line
&& cursor_in_line <= token_end_in_line
{
return Some(ModuleReference {
kind: ModuleReferenceKind::Use,
module_name,
module_start: line_offset + token_start_in_line,
module_end: line_offset + token_end_in_line,
});
}
i = token_end_in_args;
}
None
}
fn scan_canonical_module_token(bytes: &[u8], start: usize) -> usize {
let mut i = start;
loop {
while i < bytes.len() && is_identifier_byte(bytes[i]) {
i += 1;
}
if i + 1 < bytes.len()
&& bytes[i] == b':'
&& bytes[i + 1] == b':'
&& i + 2 < bytes.len()
&& is_module_start_byte(bytes[i + 2])
{
i += 2;
} else {
break;
}
}
i
}
fn is_module_start_byte(b: u8) -> bool {
b.is_ascii_alphabetic() || b == b'_'
}
fn is_identifier_byte(b: u8) -> bool {
b.is_ascii_alphanumeric() || b == b'_'
}
fn find_in_line_for_keyword<'a>(
line: &'a str,
line_offset: usize,
cursor_in_line: usize,
keyword: &'static str,
kind: ModuleReferenceKind,
) -> Option<ModuleReference<'a>> {
let keyword_len = keyword.len();
let bytes = line.as_bytes();
let mut idx = 0usize;
while idx + keyword_len <= bytes.len() {
if !line[idx..].starts_with(keyword) {
idx += 1;
continue;
}
if !is_keyword_boundary(bytes, idx, keyword_len) {
idx += 1;
continue;
}
let after_keyword = idx + keyword_len;
if after_keyword >= bytes.len() || !bytes[after_keyword].is_ascii_whitespace() {
idx += 1;
continue;
}
let module_start = skip_ascii_whitespace(bytes, after_keyword);
if module_start >= bytes.len() {
idx += 1;
continue;
}
if let Some(span) = parse_module_token(line, module_start)
&& cursor_in_line >= module_start
&& cursor_in_line <= span.end
{
return Some(ModuleReference {
kind,
module_name: &line[module_start..span.end],
module_start: line_offset + module_start,
module_end: line_offset + span.end,
});
}
idx += 1;
}
None
}