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rumdl_lib/lint_context/
mod.rs

1pub mod types;
2pub use types::*;
3
4mod element_parsers;
5mod flavor_detection;
6mod heading_detection;
7mod line_computation;
8mod link_parser;
9mod list_blocks;
10#[cfg(test)]
11mod tests;
12
13use crate::config::MarkdownFlavor;
14use crate::inline_config::InlineConfig;
15use crate::rules::front_matter_utils::FrontMatterUtils;
16use crate::utils::code_block_utils::{CodeBlockDetail, CodeBlockUtils};
17use crate::utils::range_utils::byte_to_char_count;
18use std::collections::HashMap;
19use std::path::PathBuf;
20
21/// Macro for profiling sections - only active in non-WASM builds
22#[cfg(not(target_arch = "wasm32"))]
23macro_rules! profile_section {
24    ($name:expr, $profile:expr, $code:expr) => {{
25        let start = std::time::Instant::now();
26        let result = $code;
27        if $profile {
28            eprintln!("[PROFILE] {}: {:?}", $name, start.elapsed());
29        }
30        result
31    }};
32}
33
34#[cfg(target_arch = "wasm32")]
35macro_rules! profile_section {
36    ($name:expr, $profile:expr, $code:expr) => {{ $code }};
37}
38
39/// Grouped byte ranges for skip context detection
40/// Used to reduce parameter count in internal functions
41pub(super) struct SkipByteRanges<'a> {
42    pub(super) html_comment_ranges: &'a [crate::utils::skip_context::ByteRange],
43    pub(super) autodoc_ranges: &'a [crate::utils::skip_context::ByteRange],
44    pub(super) pandoc_div_ranges: &'a [crate::utils::skip_context::ByteRange],
45    pub(super) pymdown_block_ranges: &'a [crate::utils::skip_context::ByteRange],
46}
47
48use std::sync::{Arc, OnceLock};
49
50/// Map from line byte offset to list item data: (is_ordered, marker, marker_column, content_column, number)
51pub(super) type ListItemMap = std::collections::HashMap<usize, (bool, String, usize, usize, Option<usize>)>;
52
53/// Type alias for byte ranges used in JSX expression and MDX comment detection
54pub(super) type ByteRanges = Vec<(usize, usize)>;
55
56pub struct LintContext<'a> {
57    pub content: &'a str,
58    content_lines: Vec<&'a str>, // Pre-split lines from content (avoids repeated allocations)
59    pub line_offsets: Vec<usize>,
60    pub code_blocks: Vec<(usize, usize)>, // Cached code block ranges (not including inline code spans)
61    pub code_block_details: Vec<CodeBlockDetail>, // Per-block metadata (fenced/indented, info string)
62    pub strong_spans: Vec<crate::utils::code_block_utils::StrongSpanDetail>, // Pre-computed strong emphasis spans
63    pub line_to_list: crate::utils::code_block_utils::LineToListMap, // Ordered list membership by line
64    pub list_start_values: crate::utils::code_block_utils::ListStartValues, // Start values per list ID
65    pub lines: Vec<LineInfo>,             // Pre-computed line information
66    pub links: Vec<ParsedLink<'a>>,       // Pre-parsed links
67    pub images: Vec<ParsedImage<'a>>,     // Pre-parsed images
68    pub broken_links: Vec<BrokenLinkInfo>, // Broken/undefined references
69    pub footnote_refs: Vec<FootnoteRef>,  // Pre-parsed footnote references
70    pub reference_defs: Vec<ReferenceDef>, // Reference definitions
71    reference_defs_map: HashMap<String, usize>, // O(1) lookup by lowercase ID -> index in reference_defs
72    code_spans_cache: OnceLock<Arc<Vec<CodeSpan>>>, // Lazy-loaded inline code spans
73    math_spans_cache: OnceLock<Arc<Vec<MathSpan>>>, // Lazy-loaded math spans ($...$ and $$...$$)
74    math_byte_ranges_cache: OnceLock<Vec<(usize, usize)>>, // Lazy-loaded math byte ranges for is_in_math_context
75    pub list_blocks: Vec<ListBlock>,      // Pre-parsed list blocks
76    pub char_frequency: CharFrequency,    // Character frequency analysis
77    html_tags_cache: OnceLock<Arc<Vec<HtmlTag>>>, // Lazy-loaded HTML tags
78    jsx_component_tags_cache: OnceLock<Arc<Vec<HtmlTag>>>, // Lazy-loaded JSX component tags (shares the html_tags parse)
79    emphasis_spans_cache: OnceLock<Arc<Vec<EmphasisSpan>>>, // Lazy-loaded emphasis spans
80    bare_urls_cache: OnceLock<Arc<Vec<BareUrl>>>,          // Lazy-loaded bare URLs
81    has_mixed_list_nesting_cache: OnceLock<bool>, // Cached result for mixed ordered/unordered list nesting detection
82    html_comment_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed HTML comment ranges
83    pub table_blocks: Vec<crate::utils::table_utils::TableBlock>, // Pre-computed table blocks
84    pub line_index: crate::utils::range_utils::LineIndex<'a>, // Pre-computed line index for byte position calculations
85    jinja_ranges: Vec<(usize, usize)>,            // Pre-computed Jinja template ranges ({{ }}, {% %})
86    pub flavor: MarkdownFlavor,                   // Markdown flavor being used
87    pub source_file: Option<PathBuf>,             // Source file path (for rules that need file context)
88    jsx_expression_ranges: Vec<(usize, usize)>,   // Pre-computed JSX expression ranges (MDX: {expression})
89    mdx_comment_ranges: Vec<(usize, usize)>,      // Pre-computed MDX comment ranges ({/* ... */})
90    citation_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc/Quarto citation ranges (@key, [@key])
91    pandoc_div_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc/Quarto div block ranges (::: ... :::)
92    colon_fence_ranges: Vec<(usize, usize)>, // Pre-computed Azure DevOps colon code fence ranges (:::lang ... :::)
93    inline_footnote_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc inline footnote ranges (^[...])
94    pandoc_header_slugs: std::collections::HashSet<String>, // Pre-computed Pandoc implicit header reference slugs
95    example_list_marker_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc example-list marker ranges (@) / (@label)
96    example_reference_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc example reference ranges (@label) inline
97    sub_super_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc subscript (~x~) and superscript (^x^) ranges
98    inline_code_attr_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc inline code attribute ranges (`code`{.lang})
99    bracketed_span_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc bracketed span ranges ([text]{attrs})
100    line_block_ranges: Vec<crate::utils::skip_context::ByteRange>,     // Pre-computed Pandoc line block ranges (| text)
101    pipe_table_caption_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc pipe-table caption ranges (: caption)
102    pandoc_metadata_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc YAML metadata block ranges (--- ... --- or ...)
103    grid_table_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc grid-table ranges (+---+---+)
104    multi_line_table_ranges: Vec<crate::utils::skip_context::ByteRange>, // Pre-computed Pandoc multi-line table ranges
105    shortcode_ranges: Vec<(usize, usize)>, // Pre-computed Hugo/Quarto shortcode ranges ({{< ... >}} and {{% ... %}})
106    link_title_ranges: Vec<(usize, usize)>, // Pre-computed sorted link title byte ranges
107    code_span_byte_ranges: Vec<(usize, usize)>, // Pre-computed code span byte ranges from pulldown-cmark
108    inline_config: InlineConfig,           // Parsed inline configuration comments for rule disabling
109    obsidian_comment_ranges: Vec<(usize, usize)>, // Pre-computed Obsidian comment ranges (%%...%%)
110    unterminated_html_comment: Option<usize>, // Byte offset of a `<!--` with no `-->`
111    unterminated_obsidian_comment: Option<usize>, // Byte offset of a `%%` with no closing `%%`
112    lazy_cont_lines_cache: OnceLock<Arc<Vec<LazyContLine>>>, // Lazy-loaded lazy continuation lines
113    myst_directive_ranges: Vec<(usize, usize)>, // Pre-computed MyST colon directive byte ranges (:::{name} ... :::)
114    myst_comment_ranges: Vec<(usize, usize)>, // Pre-computed MyST comment byte ranges (% comment)
115    myst_role_ranges: Vec<(usize, usize)>, // Pre-computed MyST role byte ranges ({role}`content`)
116    front_matter_end: usize,               // 1-indexed line where front matter ends, 0 if none
117}
118
119/// The byte ranges this document's flavor really holds as code.
120///
121/// An inline directive written inside one of these configures nothing, so there
122/// is nothing to report about it. The answer is read off a full context rather
123/// than scanned out of the text, which is what keeps it identical to the one
124/// `InlineConfig` was built from: a MkDocs admonition body is indented but is
125/// structure, and a scan of the text alone reads it as an indented code block.
126///
127/// Building a context costs a parse, so callers filter with it only once they
128/// hold something to filter.
129pub fn code_block_ranges(content: &str, flavor: MarkdownFlavor) -> Vec<(usize, usize)> {
130    LintContext::new(content, flavor, None).code_blocks
131}
132
133impl<'a> LintContext<'a> {
134    pub fn new(content: &'a str, flavor: MarkdownFlavor, source_file: Option<PathBuf>) -> Self {
135        #[cfg(not(target_arch = "wasm32"))]
136        let profile = std::env::var("RUMDL_PROFILE_QUADRATIC").is_ok();
137
138        let line_offsets = profile_section!("Line offsets", profile, {
139            let mut offsets = vec![0];
140            for (i, c) in content.char_indices() {
141                if c == '\n' {
142                    offsets.push(i + 1);
143                }
144            }
145            offsets
146        });
147
148        // Compute content_lines once for all functions that need it
149        let content_lines: Vec<&str> = content.lines().collect();
150
151        // Detect front matter boundaries once for all functions that need it.
152        // This is the single allowed call site; rules read the cached value
153        // via front_matter_end_line().
154        #[allow(clippy::disallowed_methods)]
155        let front_matter_end = FrontMatterUtils::get_front_matter_end_line(content);
156
157        // Detect code blocks and code spans once and cache them
158        let parse_result = profile_section!(
159            "Code blocks",
160            profile,
161            CodeBlockUtils::detect_code_blocks_and_spans(content)
162        );
163        let mut code_blocks = parse_result.code_blocks;
164        let code_span_ranges = parse_result.code_spans;
165        let code_block_details = parse_result.code_block_details;
166        let strong_spans = parse_result.strong_spans;
167        let line_to_list = parse_result.line_to_list;
168        let list_start_values = parse_result.list_start_values;
169        let html_blocks = parse_result.html_blocks;
170
171        // Container structure the parser cannot see. Computed from the line text
172        // alone, so it is available here, before the line info it corrects.
173        let containers = profile_section!(
174            "Container lines",
175            profile,
176            flavor_detection::detect_container_lines(&content_lines, flavor)
177        );
178
179        // Pre-compute HTML comment ranges ONCE for all operations.
180        // Code-span and code-block ranges are passed so `<!--`/`-->` inside code
181        // are treated as literal text, not comment delimiters that could pair
182        // across code regions on different lines. An indented block over
183        // container content is the parser reading a MkDocs admonition or a
184        // `<div markdown>` body as code, and a comment written there is a real
185        // comment, so only the parts of such a block that a fence really does
186        // hold as code are kept.
187        let comment_code_block_ranges: Vec<(usize, usize)> = code_block_details
188            .iter()
189            .flat_map(|detail| {
190                if detail.is_fenced {
191                    return vec![(detail.start, detail.end)];
192                }
193                let start_line = line_offsets
194                    .partition_point(|&offset| offset <= detail.start)
195                    .saturating_sub(1);
196                let end_line = line_offsets.partition_point(|&offset| offset < detail.end);
197                containers
198                    .code_line_spans_in(start_line..end_line)
199                    .into_iter()
200                    .map(|span| {
201                        let start = line_offsets[span.start].max(detail.start);
202                        let end = line_offsets
203                            .get(span.end)
204                            .copied()
205                            .unwrap_or(content.len())
206                            .min(detail.end);
207                        (start, end)
208                    })
209                    .collect()
210            })
211            .collect();
212        // Front matter is data, not markdown: a `<!--` in a YAML value would
213        // otherwise pair with a `-->` in the body and hide everything between
214        // them from every rule. `front_matter_end` is the 1-indexed closing
215        // delimiter line, so the body starts at the line after it, and a
216        // document without front matter starts at byte 0.
217        let body_start = line_offsets.get(front_matter_end).copied().unwrap_or(content.len());
218        let html_comment_scan = profile_section!(
219            "HTML comment ranges",
220            profile,
221            crate::utils::skip_context::scan_html_comments(
222                content,
223                &code_span_ranges,
224                &comment_code_block_ranges,
225                body_start
226            )
227        );
228        let mut html_comment_ranges = html_comment_scan.ranges;
229        let unterminated_html_comment = html_comment_scan.unterminated;
230
231        // Pre-compute autodoc block ranges (avoids O(n^2) scaling)
232        // Detected for all flavors except AzureDevOps, where `:::` denotes code fences
233        // rather than autodoc directives.
234        let autodoc_ranges = profile_section!("Autodoc block ranges", profile, {
235            if flavor.supports_colon_code_fences() || flavor.supports_myst_directives() {
236                Vec::new()
237            } else {
238                crate::utils::mkdocstrings_refs::detect_autodoc_block_ranges(content)
239            }
240        });
241
242        // Pre-compute Pandoc/Quarto div block ranges for Pandoc-compatible flavors
243        let pandoc_div_ranges = profile_section!("Pandoc div ranges", profile, {
244            if flavor.is_pandoc_compatible() {
245                crate::utils::pandoc::detect_div_block_ranges(content)
246            } else {
247                Vec::new()
248            }
249        });
250
251        // Pre-compute PyMdown Blocks ranges for MkDocs flavor (/// ... ///)
252        let pymdown_block_ranges = profile_section!("PyMdown block ranges", profile, {
253            if flavor == MarkdownFlavor::MkDocs {
254                crate::utils::pymdown_blocks::detect_block_ranges(content)
255            } else {
256                Vec::new()
257            }
258        });
259
260        // Pre-compute line information AND emphasis spans (without headings/blockquotes yet)
261        // Emphasis spans are captured during the same pulldown-cmark parse as list detection
262        let skip_ranges = SkipByteRanges {
263            html_comment_ranges: &html_comment_ranges,
264            autodoc_ranges: &autodoc_ranges,
265            pandoc_div_ranges: &pandoc_div_ranges,
266            pymdown_block_ranges: &pymdown_block_ranges,
267        };
268        let (mut lines, emphasis_spans) = profile_section!(
269            "Basic line info",
270            profile,
271            line_computation::compute_basic_line_info(
272                content,
273                &content_lines,
274                &line_offsets,
275                &code_blocks,
276                flavor,
277                &skip_ranges,
278                front_matter_end,
279            )
280        );
281
282        // Detect HTML blocks BEFORE heading detection
283        profile_section!(
284            "HTML blocks",
285            profile,
286            heading_detection::detect_html_blocks(content, &mut lines)
287        );
288
289        // Detect ESM import/export blocks in MDX files BEFORE heading detection
290        profile_section!(
291            "ESM blocks",
292            profile,
293            flavor_detection::detect_esm_blocks(content, &mut lines, flavor)
294        );
295
296        // Detect JSX component blocks in MDX files (e.g. <Tabs>...</Tabs>)
297        profile_section!(
298            "JSX block detection",
299            profile,
300            flavor_detection::detect_jsx_blocks(content, &mut lines, flavor)
301        );
302
303        // Detect JSX expressions and MDX comments in MDX files
304        let (jsx_expression_ranges, mdx_comment_ranges) = profile_section!(
305            "JSX/MDX detection",
306            profile,
307            flavor_detection::detect_jsx_and_mdx_comments(content, &mut lines, flavor, &code_blocks)
308        );
309
310        // Detect `<div markdown>`-style HTML blocks (grid cards, etc.) regardless of flavor.
311        // The `markdown` attribute is an explicit, author-supplied signal; recognizing it
312        // in all flavors keeps `rumdl fmt` from mangling Material grid cards when the
313        // MkDocs flavor isn't active.
314        profile_section!(
315            "Markdown-in-HTML blocks",
316            profile,
317            flavor_detection::detect_markdown_html_blocks(&mut lines, &containers)
318        );
319
320        // Detect MkDocs-specific constructs (admonitions, tabs, definition lists)
321        profile_section!(
322            "MkDocs constructs",
323            profile,
324            flavor_detection::detect_mkdocs_line_info(&content_lines, &mut lines, flavor, &containers)
325        );
326
327        // Detect footnote definitions and correct false code block detection.
328        // With ENABLE_FOOTNOTES, pulldown-cmark correctly parses multi-line
329        // footnotes, but the code block detector may still mark 4-space-indented
330        // footnote continuation lines as indented code blocks.
331        profile_section!(
332            "Footnote definitions",
333            profile,
334            detect_footnote_definitions(content, &mut lines, &line_offsets)
335        );
336
337        // Filter code_blocks to remove false positives from footnote continuation content.
338        // Same pattern as MkDocs/JSX corrections below.
339        {
340            let mut new_code_blocks = Vec::with_capacity(code_blocks.len());
341            for &(start, end) in &code_blocks {
342                let start_line = line_offsets
343                    .partition_point(|&offset| offset <= start)
344                    .saturating_sub(1);
345                let end_line = line_offsets.partition_point(|&offset| offset < end).min(lines.len());
346
347                let mut sub_start: Option<usize> = None;
348                for (i, &offset) in line_offsets[start_line..end_line]
349                    .iter()
350                    .enumerate()
351                    .map(|(j, o)| (j + start_line, o))
352                {
353                    let is_real_code = lines.get(i).is_some_and(|info| info.in_code_block);
354                    if is_real_code && sub_start.is_none() {
355                        let byte_start = if i == start_line { start } else { offset };
356                        sub_start = Some(byte_start);
357                    } else if !is_real_code && sub_start.is_some() {
358                        new_code_blocks.push((sub_start.unwrap(), offset));
359                        sub_start = None;
360                    }
361                }
362                if let Some(s) = sub_start {
363                    new_code_blocks.push((s, end));
364                }
365            }
366            code_blocks = new_code_blocks;
367        }
368
369        // Filter code_blocks to remove false positives from MkDocs admonition/tab content
370        // and `<div markdown>` HTML blocks (grid cards).
371        // pulldown-cmark treats 4-space-indented content as indented code blocks, but inside
372        // these containers this is regular markdown content. detect_mkdocs_line_info and
373        // detect_markdown_html_blocks already corrected LineInfo.in_code_block for these lines,
374        // but the code_blocks byte ranges are still stale. We split ranges rather than using
375        // all-or-nothing removal, so fenced code blocks within the containers are preserved.
376        let has_markdown_html = lines.iter().any(|l| l.in_mkdocs_html_markdown);
377        if flavor == MarkdownFlavor::MkDocs || has_markdown_html {
378            let mut new_code_blocks = Vec::with_capacity(code_blocks.len());
379            for &(start, end) in &code_blocks {
380                let start_line = line_offsets
381                    .partition_point(|&offset| offset <= start)
382                    .saturating_sub(1);
383                let end_line = line_offsets.partition_point(|&offset| offset < end).min(lines.len());
384
385                // Walk lines in this range, collecting sub-ranges where in_code_block is true
386                let mut sub_start: Option<usize> = None;
387                for (i, &offset) in line_offsets[start_line..end_line]
388                    .iter()
389                    .enumerate()
390                    .map(|(j, o)| (j + start_line, o))
391                {
392                    let is_real_code = lines.get(i).is_some_and(|info| info.in_code_block);
393                    if is_real_code && sub_start.is_none() {
394                        let byte_start = if i == start_line { start } else { offset };
395                        sub_start = Some(byte_start);
396                    } else if !is_real_code && sub_start.is_some() {
397                        new_code_blocks.push((sub_start.unwrap(), offset));
398                        sub_start = None;
399                    }
400                }
401                if let Some(s) = sub_start {
402                    new_code_blocks.push((s, end));
403                }
404            }
405            code_blocks = new_code_blocks;
406        }
407
408        // Filter code_blocks for MDX JSX blocks (same pattern as MkDocs above).
409        // detect_jsx_blocks already corrected LineInfo.in_code_block for indented content
410        // inside JSX component blocks, but code_blocks byte ranges need updating too.
411        if flavor.supports_jsx() {
412            let mut new_code_blocks = Vec::with_capacity(code_blocks.len());
413            for &(start, end) in &code_blocks {
414                let start_line = line_offsets
415                    .partition_point(|&offset| offset <= start)
416                    .saturating_sub(1);
417                let end_line = line_offsets.partition_point(|&offset| offset < end).min(lines.len());
418
419                let mut sub_start: Option<usize> = None;
420                for (i, &offset) in line_offsets[start_line..end_line]
421                    .iter()
422                    .enumerate()
423                    .map(|(j, o)| (j + start_line, o))
424                {
425                    let is_real_code = lines.get(i).is_some_and(|info| info.in_code_block);
426                    if is_real_code && sub_start.is_none() {
427                        let byte_start = if i == start_line { start } else { offset };
428                        sub_start = Some(byte_start);
429                    } else if !is_real_code && sub_start.is_some() {
430                        new_code_blocks.push((sub_start.unwrap(), offset));
431                        sub_start = None;
432                    }
433                }
434                if let Some(s) = sub_start {
435                    new_code_blocks.push((s, end));
436                }
437            }
438            code_blocks = new_code_blocks;
439
440            // Add byte ranges for fenced code blocks nested inside a JSX component.
441            // pulldown-cmark classifies the whole component as one HTML block and
442            // emits no code-block range for the fence, so the split loop above
443            // (which can only narrow existing ranges) never adds it. Derive the
444            // ranges from the per-line in_code_block flags detect_jsx_blocks set,
445            // so byte-range consumers (e.g. MD011, MD044) skip the fence content.
446            let mut jsx_fence_ranges: Vec<(usize, usize)> = Vec::new();
447            let mut run: Option<(usize, usize)> = None;
448            for line in &lines {
449                if line.in_jsx_block && line.in_code_block {
450                    let line_end = line.byte_offset + line.byte_len;
451                    match &mut run {
452                        Some((_, end)) => *end = line_end,
453                        None => run = Some((line.byte_offset, line_end)),
454                    }
455                } else if let Some(r) = run.take() {
456                    jsx_fence_ranges.push(r);
457                }
458            }
459            if let Some(r) = run.take() {
460                jsx_fence_ranges.push(r);
461            }
462            if !jsx_fence_ranges.is_empty() {
463                code_blocks.extend(jsx_fence_ranges);
464                code_blocks.sort_by_key(|&(start, _)| start);
465            }
466        }
467
468        // Detect Azure DevOps colon code fences and extend code_blocks so that
469        // all byte-range consumers correctly skip their content.
470        let colon_fence_ranges = profile_section!(
471            "Azure colon fence detection",
472            profile,
473            flavor_detection::detect_azure_colon_fences(content, &mut lines, flavor)
474        );
475        if !colon_fence_ranges.is_empty() {
476            code_blocks.extend(colon_fence_ranges.iter().copied());
477            code_blocks.sort_by_key(|&(start, _)| start);
478        }
479
480        // Detect MyST colon directives (:::{name} ... :::) — these are structural
481        // containers, NOT code blocks. Content inside is linted as markdown.
482        let myst_directive_ranges = profile_section!(
483            "MyST colon directives",
484            profile,
485            flavor_detection::detect_myst_colon_directives(content, &mut lines, flavor)
486        );
487
488        // Detect MyST % comments
489        let myst_comment_ranges = profile_section!(
490            "MyST comments",
491            profile,
492            flavor_detection::detect_myst_comments(content, &mut lines, flavor)
493        );
494
495        // Detect MyST backtick directives (```{name}) and clear in_code_block for
496        // content-bearing directives so their body is linted as markdown.
497        profile_section!(
498            "MyST backtick directives",
499            profile,
500            flavor_detection::detect_myst_backtick_directives(
501                content,
502                &mut lines,
503                flavor,
504                &code_block_details,
505                &line_offsets
506            )
507        );
508
509        // Filter code_blocks to remove false positives from MyST content-bearing directives.
510        // Same pattern as MkDocs admonition filtering.
511        if flavor.supports_myst_directives() {
512            let mut new_code_blocks = Vec::with_capacity(code_blocks.len());
513            for &(start, end) in &code_blocks {
514                let start_line = line_offsets
515                    .partition_point(|&offset| offset <= start)
516                    .saturating_sub(1);
517                let end_line = line_offsets.partition_point(|&offset| offset < end).min(lines.len());
518
519                let mut sub_start: Option<usize> = None;
520                for (i, &offset) in line_offsets[start_line..end_line]
521                    .iter()
522                    .enumerate()
523                    .map(|(j, o)| (j + start_line, o))
524                {
525                    let is_real_code = lines.get(i).is_some_and(|info| info.in_code_block);
526                    if is_real_code && sub_start.is_none() {
527                        let byte_start = if i == start_line { start } else { offset };
528                        sub_start = Some(byte_start);
529                    } else if !is_real_code && sub_start.is_some() {
530                        new_code_blocks.push((sub_start.unwrap(), offset));
531                        sub_start = None;
532                    }
533                }
534                if let Some(s) = sub_start {
535                    new_code_blocks.push((s, end));
536                }
537            }
538            code_blocks = new_code_blocks;
539        }
540
541        // Detect kramdown constructs (extension blocks, IALs, ALDs) in kramdown flavor
542        profile_section!(
543            "Kramdown constructs",
544            profile,
545            flavor_detection::detect_kramdown_line_info(content, &mut lines, flavor)
546        );
547
548        // Layer 1: Sanitize content-derived fields inside kramdown extension blocks
549        // so downstream heading detection and collection builders never see them.
550        // This must run BEFORE detect_headings_and_blockquotes to prevent headings
551        // from being populated inside extension blocks.
552        for line in &mut lines {
553            if line.in_kramdown_extension_block {
554                line.list_item = None;
555                line.is_horizontal_rule = false;
556                line.blockquote = None;
557                line.is_kramdown_block_ial = false;
558            }
559        }
560
561        // Detect Obsidian comments (%%...%%) in Obsidian flavor
562        let obsidian_comment_scan = profile_section!(
563            "Obsidian comments",
564            profile,
565            flavor_detection::detect_obsidian_comments(
566                content,
567                &mut lines,
568                flavor,
569                &code_span_ranges,
570                &html_comment_ranges,
571                body_start
572            )
573        );
574        let mut obsidian_comment_ranges = obsidian_comment_scan.ranges;
575        let mut unterminated_obsidian_comment = obsidian_comment_scan.unterminated;
576
577        // An Obsidian comment hides the text it wraps, so a `<!--` inside one is
578        // not a comment opener. The HTML scan cannot know that yet - detecting
579        // Obsidian comments needs its ranges - so the opener it reported is
580        // re-resolved here, now that the comments that hide it are known.
581        let unterminated_html_comment = crate::utils::skip_context::unterminated_html_comment_outside(
582            unterminated_html_comment,
583            &obsidian_comment_ranges,
584            content,
585            &code_span_ranges,
586            &comment_code_block_ranges,
587            body_start,
588        );
589
590        // An unclosed `<!--` that opens an HTML block comments out the rest of
591        // that block, so the text below it is not content any rule should judge.
592        // Without this the block-structure rules and the comment-aware rules
593        // disagree about the same lines: the parser reports no list inside the
594        // block, while a bare URL there is still flagged.
595        //
596        // The opener stays reported either way. This governs what the rest of
597        // the linter sees, not whether the missing closer is raised.
598        //
599        // It waits for the re-resolution above because an opener a `%%` pair
600        // hides is not an opener, and giving that one a range would hide the
601        // rest of the note from every rule.
602        if let Some(range) = unterminated_html_comment.and_then(|opener| {
603            crate::utils::skip_context::unterminated_comment_range(opener, &html_blocks)
604                .or_else(|| container_comment_range(opener, &containers, &lines, content))
605        }) {
606            // Every complete comment starts before the unclosed opener, so this
607            // keeps the ranges sorted for the binary searches over them.
608            html_comment_ranges.push(range);
609
610            // The line flags are computed before the Obsidian comments are
611            // known, so they predate this range. Recomputing them through the
612            // same helper keeps `is_in_html_comment` and the per-line flag
613            // answering alike, which is the agreement this range exists to
614            // create.
615            for line in &mut lines {
616                let text = line.content(content);
617                let content_start = line.byte_offset + line.indent;
618                let content_end = line.byte_offset + text.trim_end().len();
619                line.in_html_comment = crate::utils::skip_context::is_line_entirely_in_html_comment(
620                    &html_comment_ranges,
621                    content_start,
622                    content_end,
623                );
624                line.in_obsidian_comment = false;
625            }
626
627            // The `%%` delimiters the block covers are comment text, so a
628            // delimiter below the block opens a comment rather than closing the
629            // one those appeared to open. Only a rescan pairs them correctly;
630            // dropping the ranges that start inside the block would leave the
631            // delimiter below it paired with nothing and unreported.
632            //
633            // This is the mirror of the re-resolution above, and it needs no
634            // second round: the block starts at or after the opener, so the
635            // pairing before the opener is what it already was, and the opener
636            // resolved against it cannot change.
637            let obsidian_rescan = flavor_detection::detect_obsidian_comments(
638                content,
639                &mut lines,
640                flavor,
641                &code_span_ranges,
642                &html_comment_ranges,
643                body_start,
644            );
645            obsidian_comment_ranges = obsidian_rescan.ranges;
646            unterminated_obsidian_comment = obsidian_rescan.unterminated;
647        }
648
649        // Detect MyST role syntax ({role}`content`)
650        let myst_role_ranges = profile_section!(
651            "MyST roles",
652            profile,
653            flavor_detection::detect_myst_role_ranges(content, &lines, flavor, &code_blocks)
654        );
655
656        // Run pulldown-cmark parse for links, images, and link byte ranges in a single pass.
657        // Link byte ranges are needed for heading detection; links/images are finalized later
658        // after code_spans are available.
659        let pulldown_result = profile_section!(
660            "Links, images & link ranges",
661            profile,
662            link_parser::parse_links_images_pulldown(content, &lines, &code_blocks, flavor, &html_comment_ranges)
663        );
664
665        // Now detect headings and blockquotes
666        profile_section!(
667            "Headings & blockquotes",
668            profile,
669            heading_detection::detect_headings_and_blockquotes(
670                &content_lines,
671                &mut lines,
672                flavor,
673                &html_comment_ranges,
674                &pulldown_result.link_byte_ranges,
675                front_matter_end,
676            )
677        );
678
679        // Clear headings that were detected inside kramdown extension blocks
680        for line in &mut lines {
681            if line.in_kramdown_extension_block {
682                line.heading = None;
683            }
684        }
685
686        // Parse code spans early so we can exclude them from link/image parsing
687        let mut code_spans = profile_section!(
688            "Code spans",
689            profile,
690            element_parsers::build_code_spans_from_ranges(content, &lines, &code_span_ranges)
691        );
692
693        // Supplement code spans for MkDocs container content that pulldown-cmark missed.
694        // pulldown-cmark treats 4-space-indented MkDocs content as indented code blocks,
695        // so backtick code spans within admonitions/tabs/markdown HTML are invisible to it.
696        if flavor == MarkdownFlavor::MkDocs {
697            let extra = profile_section!(
698                "MkDocs code spans",
699                profile,
700                element_parsers::scan_mkdocs_container_code_spans(content, &lines, &code_span_ranges,)
701            );
702            if !extra.is_empty() {
703                code_spans.extend(extra);
704                code_spans.sort_by_key(|span| span.byte_offset);
705            }
706        }
707
708        // Supplement code spans for MDX JSX component body content that pulldown-cmark missed.
709        // pulldown-cmark treats JSX component opening tags (e.g. `<ParamField>`) as HTML block
710        // starters, so backtick code spans within component bodies are invisible to the initial
711        // parse.
712        if flavor == MarkdownFlavor::MDX {
713            let extra = profile_section!(
714                "MDX JSX code spans",
715                profile,
716                element_parsers::scan_jsx_block_code_spans(content, &lines, &code_span_ranges)
717            );
718            if !extra.is_empty() {
719                code_spans.extend(extra);
720                code_spans.sort_by_key(|span| span.byte_offset);
721            }
722        }
723
724        // Mark lines that are continuations of multi-line code spans
725        // This is needed for parse_list_blocks to correctly handle list items with multi-line code spans
726        for span in &code_spans {
727            if span.end_line > span.line {
728                // Mark lines after the first line as continuations
729                for line_num in (span.line + 1)..=span.end_line {
730                    if let Some(line_info) = lines.get_mut(line_num - 1) {
731                        line_info.in_code_span_continuation = true;
732                    }
733                }
734            }
735        }
736
737        // Finalize links and images: filter by code_spans and run regex fallbacks
738        let (links, images, broken_links, footnote_refs) = profile_section!(
739            "Links & images finalize",
740            profile,
741            link_parser::finalize_links_and_images(
742                content,
743                &lines,
744                &code_blocks,
745                &code_spans,
746                flavor,
747                &html_comment_ranges,
748                pulldown_result
749            )
750        );
751
752        let reference_defs = profile_section!(
753            "Reference defs",
754            profile,
755            link_parser::parse_reference_defs(content, &lines)
756        );
757
758        let list_blocks = profile_section!("List blocks", profile, list_blocks::parse_list_blocks(content, &lines));
759
760        // Compute character frequency for fast content analysis
761        let char_frequency = profile_section!(
762            "Char frequency",
763            profile,
764            line_computation::compute_char_frequency(content)
765        );
766
767        // Pre-compute table blocks for rules that need them (MD013, MD055, MD056, MD058, MD060)
768        let table_blocks = profile_section!(
769            "Table blocks",
770            profile,
771            crate::utils::table_utils::TableUtils::find_table_blocks_with_code_info(
772                content,
773                &code_blocks,
774                &code_spans,
775                &html_comment_ranges,
776            )
777        );
778
779        // Layer 2: Filter pre-computed collections to exclude items inside kramdown extension blocks.
780        // Rules that iterate these collections automatically skip kramdown content.
781        let links = links
782            .into_iter()
783            .filter(|link| !lines.get(link.line - 1).is_some_and(|l| l.in_kramdown_extension_block))
784            .collect::<Vec<_>>();
785        let images = images
786            .into_iter()
787            .filter(|img| !lines.get(img.line - 1).is_some_and(|l| l.in_kramdown_extension_block))
788            .collect::<Vec<_>>();
789        let broken_links = broken_links
790            .into_iter()
791            .filter(|bl| {
792                // BrokenLinkInfo has span but no line field; find line from byte offset
793                let line_idx = line_offsets
794                    .partition_point(|&offset| offset <= bl.span.start)
795                    .saturating_sub(1);
796                !lines.get(line_idx).is_some_and(|l| l.in_kramdown_extension_block)
797            })
798            .collect::<Vec<_>>();
799        let footnote_refs = footnote_refs
800            .into_iter()
801            .filter(|fr| !lines.get(fr.line - 1).is_some_and(|l| l.in_kramdown_extension_block))
802            .collect::<Vec<_>>();
803        let reference_defs = reference_defs
804            .into_iter()
805            .filter(|def| !lines.get(def.line - 1).is_some_and(|l| l.in_kramdown_extension_block))
806            .collect::<Vec<_>>();
807        let list_blocks = list_blocks
808            .into_iter()
809            .filter(|block| {
810                !lines
811                    .get(block.start_line - 1)
812                    .is_some_and(|l| l.in_kramdown_extension_block)
813            })
814            .collect::<Vec<_>>();
815        let table_blocks = table_blocks
816            .into_iter()
817            .filter(|block| {
818                // TableBlock.start_line is 0-indexed
819                !lines
820                    .get(block.start_line)
821                    .is_some_and(|l| l.in_kramdown_extension_block)
822            })
823            .collect::<Vec<_>>();
824        let emphasis_spans = emphasis_spans
825            .into_iter()
826            .filter(|span| !lines.get(span.line - 1).is_some_and(|l| l.in_kramdown_extension_block))
827            .collect::<Vec<_>>();
828
829        // Mark lines covered by a list or table block so is_in_list_block /
830        // is_in_table_block are O(1) reads (mirrors in_html_block) instead of
831        // scanning the whole block vector on every call.
832        for block in &list_blocks {
833            // ListBlock line numbers are 1-indexed.
834            for line_num in block.start_line..=block.end_line {
835                if let Some(li) = lines.get_mut(line_num - 1) {
836                    li.in_list_block = true;
837                }
838            }
839        }
840        for block in &table_blocks {
841            // TableBlock line numbers are 0-indexed.
842            for idx in block.start_line..=block.end_line {
843                if let Some(li) = lines.get_mut(idx) {
844                    li.in_table_block = true;
845                }
846            }
847        }
848
849        // Rebuild reference_defs_map after filtering
850        let reference_defs_map: HashMap<String, usize> = reference_defs
851            .iter()
852            .enumerate()
853            .map(|(idx, def)| (def.id.to_lowercase(), idx))
854            .collect();
855
856        // Pre-compute sorted link title byte ranges for binary search
857        let link_title_ranges: Vec<(usize, usize)> = reference_defs
858            .iter()
859            .filter_map(|def| match (def.title_byte_start, def.title_byte_end) {
860                (Some(start), Some(end)) => Some((start, end)),
861                _ => None,
862            })
863            .collect();
864
865        // Reuse already-computed line_offsets and code_blocks instead of re-detecting
866        let line_index = profile_section!(
867            "Line index",
868            profile,
869            crate::utils::range_utils::LineIndex::with_line_starts_and_code_blocks(
870                content,
871                line_offsets.clone(),
872                &code_blocks,
873            )
874        );
875
876        // Pre-compute Jinja template ranges once for all rules (eliminates O(n*m) in MD011)
877        let jinja_ranges = profile_section!(
878            "Jinja ranges",
879            profile,
880            crate::utils::jinja_utils::find_jinja_ranges(content)
881        );
882
883        // Pre-compute Pandoc/Quarto citation ranges for Pandoc-compatible flavors
884        let citation_ranges = profile_section!("Citation ranges", profile, {
885            if flavor.is_pandoc_compatible() {
886                crate::utils::pandoc::find_citation_ranges(content)
887            } else {
888                Vec::new()
889            }
890        });
891
892        // Pre-compute Pandoc inline footnote ranges for Pandoc-compatible flavors
893        let inline_footnote_ranges = profile_section!("Inline footnote ranges", profile, {
894            if flavor.is_pandoc_compatible() {
895                crate::utils::pandoc::detect_inline_footnote_ranges(content)
896            } else {
897                Vec::new()
898            }
899        });
900
901        // Pre-compute Pandoc implicit header reference slugs for Pandoc-compatible flavors
902        let pandoc_header_slugs = profile_section!("Pandoc header slugs", profile, {
903            if flavor.is_pandoc_compatible() {
904                crate::utils::pandoc::collect_pandoc_header_slugs(content)
905            } else {
906                std::collections::HashSet::new()
907            }
908        });
909
910        // Pre-compute Pandoc example-list marker ranges for Pandoc-compatible flavors
911        let example_list_marker_ranges = profile_section!("Example list markers", profile, {
912            if flavor.is_pandoc_compatible() {
913                crate::utils::pandoc::detect_example_list_marker_ranges(content)
914            } else {
915                Vec::new()
916            }
917        });
918
919        // Pre-compute Pandoc example reference ranges for Pandoc-compatible flavors
920        let example_reference_ranges = profile_section!("Example references", profile, {
921            if flavor.is_pandoc_compatible() {
922                crate::utils::pandoc::detect_example_reference_ranges(content, &example_list_marker_ranges)
923            } else {
924                Vec::new()
925            }
926        });
927
928        // Pre-compute Pandoc subscript (~x~) and superscript (^x^) ranges
929        let sub_super_ranges = profile_section!("Subscript/superscript ranges", profile, {
930            if flavor.is_pandoc_compatible() {
931                crate::utils::pandoc::detect_subscript_superscript_ranges(content)
932            } else {
933                Vec::new()
934            }
935        });
936
937        // Pre-compute Pandoc inline code attribute ranges (`code`{.lang}) for Pandoc-compatible flavors
938        let inline_code_attr_ranges = profile_section!("Inline code attribute ranges", profile, {
939            if flavor.is_pandoc_compatible() {
940                crate::utils::pandoc::detect_inline_code_attr_ranges(content)
941            } else {
942                Vec::new()
943            }
944        });
945
946        // Pre-compute Pandoc bracketed span ranges ([text]{attrs}) for Pandoc-compatible flavors
947        let bracketed_span_ranges = profile_section!("Bracketed span ranges", profile, {
948            if flavor.is_pandoc_compatible() {
949                crate::utils::pandoc::detect_bracketed_span_ranges(content)
950            } else {
951                Vec::new()
952            }
953        });
954
955        // Pre-compute Pandoc line block ranges (| text) for Pandoc-compatible flavors
956        let line_block_ranges = profile_section!("Line block ranges", profile, {
957            if flavor.is_pandoc_compatible() {
958                crate::utils::pandoc::detect_line_block_ranges(content)
959            } else {
960                Vec::new()
961            }
962        });
963
964        // Pre-compute Pandoc pipe-table caption ranges (: caption) for Pandoc-compatible flavors
965        let pipe_table_caption_ranges = profile_section!("Pipe-table caption ranges", profile, {
966            if flavor.is_pandoc_compatible() {
967                crate::utils::pandoc::detect_pipe_table_caption_ranges(content)
968            } else {
969                Vec::new()
970            }
971        });
972
973        // Pre-compute Pandoc YAML metadata block ranges (--- ... --- or ...) for Pandoc-compatible flavors
974        let pandoc_metadata_ranges = profile_section!("Pandoc metadata ranges", profile, {
975            if flavor.is_pandoc_compatible() {
976                crate::utils::pandoc::detect_yaml_metadata_block_ranges(content)
977            } else {
978                Vec::new()
979            }
980        });
981
982        // Pre-compute Pandoc grid-table ranges (+---+---+) for Pandoc-compatible flavors
983        let grid_table_ranges = profile_section!("Grid table ranges", profile, {
984            if flavor.is_pandoc_compatible() {
985                crate::utils::pandoc::detect_grid_table_ranges(content)
986            } else {
987                Vec::new()
988            }
989        });
990
991        // Pre-compute Pandoc multi-line table ranges for Pandoc-compatible flavors
992        let multi_line_table_ranges = profile_section!("Multi-line table ranges", profile, {
993            if flavor.is_pandoc_compatible() {
994                crate::utils::pandoc::detect_multi_line_table_ranges(content)
995            } else {
996                Vec::new()
997            }
998        });
999
1000        // Pre-compute Hugo/Quarto shortcode ranges ({{< ... >}} and {{% ... %}})
1001        let shortcode_ranges = profile_section!("Shortcode ranges", profile, {
1002            use crate::utils::regex_cache::HUGO_SHORTCODE_REGEX;
1003            let mut ranges = Vec::new();
1004            for mat in HUGO_SHORTCODE_REGEX.find_iter(content) {
1005                ranges.push((mat.start(), mat.end()));
1006            }
1007            ranges
1008        });
1009
1010        let inline_config = InlineConfig::from_content_with_code_blocks(content, &code_blocks);
1011
1012        Self {
1013            content,
1014            content_lines,
1015            line_offsets,
1016            code_blocks,
1017            code_block_details,
1018            strong_spans,
1019            line_to_list,
1020            list_start_values,
1021            lines,
1022            links,
1023            images,
1024            broken_links,
1025            footnote_refs,
1026            reference_defs,
1027            reference_defs_map,
1028            code_spans_cache: OnceLock::from(Arc::new(code_spans)),
1029            math_spans_cache: OnceLock::new(),       // Lazy-loaded on first access
1030            math_byte_ranges_cache: OnceLock::new(), // Lazy-loaded on first access
1031            list_blocks,
1032            char_frequency,
1033            html_tags_cache: OnceLock::new(),
1034            jsx_component_tags_cache: OnceLock::new(),
1035            emphasis_spans_cache: OnceLock::from(Arc::new(emphasis_spans)),
1036            bare_urls_cache: OnceLock::new(),
1037            has_mixed_list_nesting_cache: OnceLock::new(),
1038            html_comment_ranges,
1039            table_blocks,
1040            line_index,
1041            jinja_ranges,
1042            flavor,
1043            source_file,
1044            jsx_expression_ranges,
1045            mdx_comment_ranges,
1046            citation_ranges,
1047            pandoc_div_ranges,
1048            colon_fence_ranges,
1049            inline_footnote_ranges,
1050            pandoc_header_slugs,
1051            example_list_marker_ranges,
1052            example_reference_ranges,
1053            sub_super_ranges,
1054            inline_code_attr_ranges,
1055            bracketed_span_ranges,
1056            line_block_ranges,
1057            pipe_table_caption_ranges,
1058            pandoc_metadata_ranges,
1059            grid_table_ranges,
1060            multi_line_table_ranges,
1061            shortcode_ranges,
1062            link_title_ranges,
1063            code_span_byte_ranges: code_span_ranges,
1064            inline_config,
1065            obsidian_comment_ranges,
1066            unterminated_html_comment,
1067            unterminated_obsidian_comment,
1068            lazy_cont_lines_cache: OnceLock::new(),
1069            myst_directive_ranges,
1070            myst_comment_ranges,
1071            myst_role_ranges,
1072            front_matter_end,
1073        }
1074    }
1075
1076    /// The 1-indexed line number where front matter ends (the closing
1077    /// delimiter line), or 0 when the document has no front matter.
1078    /// Computed once in `new()`; rules must use this instead of re-scanning
1079    /// the content with `FrontMatterUtils`.
1080    pub fn front_matter_end_line(&self) -> usize {
1081        self.front_matter_end
1082    }
1083
1084    /// Binary search for whether `pos` falls inside any range in a sorted, non-overlapping
1085    /// slice of `(start, end)` byte ranges. O(log n) instead of O(n).
1086    #[inline]
1087    fn binary_search_ranges(ranges: &[(usize, usize)], pos: usize) -> bool {
1088        // Find the rightmost range whose start <= pos
1089        let idx = ranges.partition_point(|&(start, _)| start <= pos);
1090        // If idx == 0, no range starts at or before pos
1091        idx > 0 && pos < ranges[idx - 1].1
1092    }
1093
1094    /// Check if a byte position is within a code span. O(log n).
1095    pub fn is_in_code_span_byte(&self, pos: usize) -> bool {
1096        Self::binary_search_ranges(&self.code_span_byte_ranges, pos)
1097    }
1098
1099    /// Check if `pos` is inside any link byte range. O(log n).
1100    pub fn is_in_link(&self, pos: usize) -> bool {
1101        let idx = self.links.partition_point(|link| link.byte_offset <= pos);
1102        if idx > 0 && pos < self.links[idx - 1].byte_end {
1103            return true;
1104        }
1105        let idx = self.images.partition_point(|img| img.byte_offset <= pos);
1106        if idx > 0 && pos < self.images[idx - 1].byte_end {
1107            return true;
1108        }
1109        self.is_in_reference_def(pos)
1110    }
1111
1112    /// Get parsed inline configuration state.
1113    pub fn inline_config(&self) -> &InlineConfig {
1114        &self.inline_config
1115    }
1116
1117    /// Byte ranges of Azure DevOps colon code fences (`:::lang … :::`).
1118    /// Empty for all other flavors.
1119    pub fn colon_fence_ranges(&self) -> &[(usize, usize)] {
1120        &self.colon_fence_ranges
1121    }
1122
1123    /// Get pre-split content lines, avoiding repeated `content.lines().collect()` allocations.
1124    ///
1125    /// Lines are 0-indexed (line 0 corresponds to line number 1 in the document).
1126    pub fn raw_lines(&self) -> &[&'a str] {
1127        &self.content_lines
1128    }
1129
1130    /// Check if a rule is disabled at a specific line number (1-indexed)
1131    ///
1132    /// This method checks both persistent disable comments (<!-- rumdl-disable -->)
1133    /// and line-specific comments (<!-- rumdl-disable-line -->, <!-- rumdl-disable-next-line -->).
1134    pub fn is_rule_disabled(&self, rule_name: &str, line_number: usize) -> bool {
1135        self.inline_config.is_rule_disabled(rule_name, line_number)
1136    }
1137
1138    /// Get code spans - computed lazily on first access
1139    pub fn code_spans(&self) -> Arc<Vec<CodeSpan>> {
1140        Arc::clone(
1141            self.code_spans_cache
1142                .get_or_init(|| Arc::new(element_parsers::parse_code_spans(self.content, &self.lines))),
1143        )
1144    }
1145
1146    /// Math byte ranges (`$...$` inline and `$$...$$` display), computed once and
1147    /// cached. Used by `is_in_math_context`; without the cache that helper
1148    /// rescanned the whole document on every call.
1149    pub fn math_byte_ranges(&self) -> &[(usize, usize)] {
1150        self.math_byte_ranges_cache
1151            .get_or_init(|| crate::utils::skip_context::math_byte_ranges(self.content))
1152    }
1153
1154    /// Get math spans - computed lazily on first access
1155    pub fn math_spans(&self) -> Arc<Vec<MathSpan>> {
1156        Arc::clone(
1157            self.math_spans_cache
1158                .get_or_init(|| Arc::new(element_parsers::parse_math_spans(self.content, &self.lines))),
1159        )
1160    }
1161
1162    /// Check if a byte position is within a math span (inline $...$ or display $$...$$)
1163    pub fn is_in_math_span(&self, byte_pos: usize) -> bool {
1164        let math_spans = self.math_spans();
1165        // Binary search: find the last span whose byte_offset <= byte_pos
1166        let idx = math_spans.partition_point(|span| span.byte_offset <= byte_pos);
1167        idx > 0 && byte_pos < math_spans[idx - 1].byte_end
1168    }
1169
1170    /// Get HTML comment ranges - pre-computed during LintContext construction
1171    pub fn html_comment_ranges(&self) -> &[crate::utils::skip_context::ByteRange] {
1172        &self.html_comment_ranges
1173    }
1174
1175    /// Byte offset of a `<!--` that no `-->` closes, if the document has one.
1176    ///
1177    /// Everything after it is inside the comment as far as the parser is
1178    /// concerned, so no rule sees that text.
1179    pub fn unterminated_html_comment(&self) -> Option<usize> {
1180        self.unterminated_html_comment
1181    }
1182
1183    /// Byte offset of a `%%` that no second `%%` closes, if the document has
1184    /// one. Always `None` outside the Obsidian flavor, where `%%` is ordinary
1185    /// text rather than a comment delimiter.
1186    pub fn unterminated_obsidian_comment(&self) -> Option<usize> {
1187        self.unterminated_obsidian_comment
1188    }
1189
1190    /// Check if a byte position is inside an Obsidian comment
1191    ///
1192    /// Returns false for non-Obsidian flavors.
1193    pub fn is_in_obsidian_comment(&self, byte_pos: usize) -> bool {
1194        Self::binary_search_ranges(&self.obsidian_comment_ranges, byte_pos)
1195    }
1196
1197    /// Check if a line/column position is inside an Obsidian comment
1198    ///
1199    /// Line number is 1-indexed, column is 1-indexed.
1200    /// Returns false for non-Obsidian flavors.
1201    pub fn is_position_in_obsidian_comment(&self, line_num: usize, col: usize) -> bool {
1202        if self.obsidian_comment_ranges.is_empty() {
1203            return false;
1204        }
1205
1206        // Convert line/column (1-indexed, char-based) to byte position
1207        let byte_pos = self.line_index.line_col_to_byte_range(line_num, col).start;
1208        self.is_in_obsidian_comment(byte_pos)
1209    }
1210
1211    /// Get byte ranges of MyST colon directive blocks
1212    pub fn myst_directive_ranges(&self) -> &[(usize, usize)] {
1213        &self.myst_directive_ranges
1214    }
1215
1216    /// Check if a byte position is inside a MyST role (`{role}`content``)
1217    pub fn is_in_myst_role(&self, byte_pos: usize) -> bool {
1218        Self::binary_search_ranges(&self.myst_role_ranges, byte_pos)
1219    }
1220
1221    /// Check if a byte position is inside a MyST comment (`% comment`)
1222    pub fn is_in_myst_comment(&self, byte_pos: usize) -> bool {
1223        Self::binary_search_ranges(&self.myst_comment_ranges, byte_pos)
1224    }
1225
1226    /// Check if a line (1-indexed) is a MyST colon-fence directive opener (`:::{name} ...`).
1227    ///
1228    /// The text after `{name}` on an opener is the directive's argument (an opaque
1229    /// path, URL, or label), not markdown prose. Rules that reformat prose should
1230    /// skip these lines. Returns false for non-MyST flavors and for directive body
1231    /// or closer lines.
1232    pub fn is_myst_colon_directive_opener_line(&self, line_num: usize) -> bool {
1233        if !self.flavor.supports_myst_directives() {
1234            return false;
1235        }
1236        self.lines.get(line_num.wrapping_sub(1)).is_some_and(|info| {
1237            info.in_myst_directive
1238                && flavor_detection::myst_colon_directive_opener(info.content(self.content)).is_some()
1239        })
1240    }
1241
1242    /// Drop tags that live inside kramdown extension blocks, preserving order.
1243    fn filter_kramdown_tags(&self, tags: Vec<HtmlTag>) -> Vec<HtmlTag> {
1244        tags.into_iter()
1245            .filter(|tag| {
1246                !self
1247                    .lines
1248                    .get(tag.line - 1)
1249                    .is_some_and(|l| l.in_kramdown_extension_block)
1250            })
1251            .collect()
1252    }
1253
1254    /// Get HTML tags - computed lazily on first access.
1255    ///
1256    /// JSX component tags (e.g. `<Card .../>`) are excluded so HTML-specific rules
1257    /// keep ignoring them; use [`Self::jsx_component_tags`] to access those. The
1258    /// single underlying parse populates both caches at once.
1259    pub fn html_tags(&self) -> Arc<Vec<HtmlTag>> {
1260        Arc::clone(self.html_tags_cache.get_or_init(|| {
1261            let (html_tags, jsx_component_tags) =
1262                element_parsers::parse_html_tags(self.content, &self.lines, &self.code_blocks, self.flavor);
1263            // Populate the JSX-component cache from the same parse so it is built once.
1264            let _ = self
1265                .jsx_component_tags_cache
1266                .set(Arc::new(self.filter_kramdown_tags(jsx_component_tags)));
1267            Arc::new(self.filter_kramdown_tags(html_tags))
1268        }))
1269    }
1270
1271    /// Get JSX component tags (e.g. `<Card .../>`) - computed lazily, sharing the
1272    /// HTML-tag parse. Always empty for flavors without JSX support.
1273    pub fn jsx_component_tags(&self) -> Arc<Vec<HtmlTag>> {
1274        if let Some(cached) = self.jsx_component_tags_cache.get() {
1275            return Arc::clone(cached);
1276        }
1277        // Trigger the shared parse, which also fills jsx_component_tags_cache.
1278        let _ = self.html_tags();
1279        Arc::clone(
1280            self.jsx_component_tags_cache
1281                .get()
1282                .expect("html_tags() populates jsx_component_tags_cache"),
1283        )
1284    }
1285
1286    /// Get emphasis spans - pre-computed during construction
1287    pub fn emphasis_spans(&self) -> Arc<Vec<EmphasisSpan>> {
1288        Arc::clone(
1289            self.emphasis_spans_cache
1290                .get()
1291                .expect("emphasis_spans_cache initialized during construction"),
1292        )
1293    }
1294
1295    /// Get bare URLs - computed lazily on first access
1296    pub fn bare_urls(&self) -> Arc<Vec<BareUrl>> {
1297        Arc::clone(self.bare_urls_cache.get_or_init(|| {
1298            Arc::new(element_parsers::parse_bare_urls(
1299                self.content,
1300                &self.lines,
1301                &self.code_blocks,
1302            ))
1303        }))
1304    }
1305
1306    /// Get lazy continuation lines - computed lazily on first access
1307    pub fn lazy_continuation_lines(&self) -> Arc<Vec<LazyContLine>> {
1308        Arc::clone(self.lazy_cont_lines_cache.get_or_init(|| {
1309            Arc::new(element_parsers::detect_lazy_continuation_lines(
1310                self.content,
1311                &self.lines,
1312                &self.line_offsets,
1313            ))
1314        }))
1315    }
1316
1317    /// Check if document has mixed ordered/unordered list nesting.
1318    /// Result is cached after first computation (document-level invariant).
1319    /// This is used by MD007 for smart style auto-detection.
1320    pub fn has_mixed_list_nesting(&self) -> bool {
1321        *self
1322            .has_mixed_list_nesting_cache
1323            .get_or_init(|| self.compute_mixed_list_nesting())
1324    }
1325
1326    /// Internal computation for mixed list nesting (only called once per LintContext).
1327    fn compute_mixed_list_nesting(&self) -> bool {
1328        // Track parent list items by their marker position and type
1329        // Using marker_column instead of indent because it works correctly
1330        // for blockquoted content where indent doesn't account for the prefix
1331        // Stack stores: (marker_column, is_ordered)
1332        let mut stack: Vec<(usize, bool)> = Vec::new();
1333        let mut last_was_blank = false;
1334
1335        for line_info in &self.lines {
1336            // Skip non-content lines (code blocks, frontmatter, HTML comments, etc.)
1337            if line_info.in_code_block
1338                || line_info.in_front_matter
1339                || line_info.in_mkdocstrings
1340                || line_info.in_html_comment
1341                || line_info.in_mdx_comment
1342                || line_info.in_esm_block
1343            {
1344                continue;
1345            }
1346
1347            // OPTIMIZATION: Use pre-computed is_blank instead of content().trim()
1348            if line_info.is_blank {
1349                last_was_blank = true;
1350                continue;
1351            }
1352
1353            if let Some(list_item) = &line_info.list_item {
1354                // Normalize column 1 to column 0 (consistent with MD007 check function)
1355                let current_pos = if list_item.marker_column == 1 {
1356                    0
1357                } else {
1358                    list_item.marker_column
1359                };
1360
1361                // If there was a blank line and this item is at root level, reset stack
1362                if last_was_blank && current_pos == 0 {
1363                    stack.clear();
1364                }
1365                last_was_blank = false;
1366
1367                // Pop items at same or greater position (they're siblings or deeper, not parents)
1368                while let Some(&(pos, _)) = stack.last() {
1369                    if pos >= current_pos {
1370                        stack.pop();
1371                    } else {
1372                        break;
1373                    }
1374                }
1375
1376                // Check if immediate parent has different type - this is mixed nesting
1377                if let Some(&(_, parent_is_ordered)) = stack.last()
1378                    && parent_is_ordered != list_item.is_ordered
1379                {
1380                    return true; // Found mixed nesting - early exit
1381                }
1382
1383                stack.push((current_pos, list_item.is_ordered));
1384            } else {
1385                // Non-list line (but not blank) - could be paragraph or other content
1386                last_was_blank = false;
1387            }
1388        }
1389
1390        false
1391    }
1392
1393    /// Map a byte offset to (line, column).
1394    ///
1395    /// The column is a 1-indexed *character* offset within the line (rumdl's
1396    /// diagnostic convention), not a byte offset, so it is correct on lines
1397    /// containing multi-byte UTF-8 characters.
1398    pub fn offset_to_line_col(&self, offset: usize) -> (usize, usize) {
1399        match self.line_offsets.binary_search(&offset) {
1400            Ok(line) => (line + 1, 1),
1401            Err(line) => {
1402                let line_start = self.line_offsets.get(line.wrapping_sub(1)).copied().unwrap_or(0);
1403                // Convert the byte offset within the line to a character column.
1404                let col = byte_to_char_count(&self.content[line_start..], offset.saturating_sub(line_start));
1405                (line, col)
1406            }
1407        }
1408    }
1409
1410    /// Check if a position is within a code block or code span. O(log n).
1411    pub fn is_in_code_block_or_span(&self, pos: usize) -> bool {
1412        // Check code blocks first (already uses binary search internally)
1413        if CodeBlockUtils::is_in_code_block_or_span(&self.code_blocks, pos) {
1414            return true;
1415        }
1416
1417        // Check inline code spans via binary search
1418        self.is_byte_offset_in_code_span(pos)
1419    }
1420
1421    /// Get line information by line number (1-indexed)
1422    pub fn line_info(&self, line_num: usize) -> Option<&LineInfo> {
1423        if line_num > 0 {
1424            self.lines.get(line_num - 1)
1425        } else {
1426            None
1427        }
1428    }
1429
1430    /// Get URL for a reference link/image by its ID (O(1) lookup via HashMap)
1431    pub fn get_reference_url(&self, ref_id: &str) -> Option<&str> {
1432        let normalized_id = ref_id.to_lowercase();
1433        self.reference_defs_map
1434            .get(&normalized_id)
1435            .map(|&idx| self.reference_defs[idx].url.as_str())
1436    }
1437
1438    /// Check if a line is part of a list block
1439    pub fn is_in_list_block(&self, line_num: usize) -> bool {
1440        if line_num == 0 || line_num > self.lines.len() {
1441            return false;
1442        }
1443        self.lines[line_num - 1].in_list_block
1444    }
1445
1446    /// Check if a line is within an HTML block
1447    pub fn is_in_html_block(&self, line_num: usize) -> bool {
1448        if line_num == 0 || line_num > self.lines.len() {
1449            return false;
1450        }
1451        self.lines[line_num - 1].in_html_block
1452    }
1453
1454    /// Check if a 1-indexed line number is inside a GFM table block.
1455    ///
1456    /// Returns `true` for the header line, delimiter line, and all body rows.
1457    /// `TableBlock` spans are stored 0-indexed; this helper accepts the
1458    /// 1-indexed line numbers used elsewhere in the rule API.
1459    pub fn is_in_table_block(&self, line_num: usize) -> bool {
1460        if line_num == 0 || line_num > self.lines.len() {
1461            return false;
1462        }
1463        self.lines[line_num - 1].in_table_block
1464    }
1465
1466    /// Check if a line and column is within a code span
1467    pub fn is_in_code_span(&self, line_num: usize, col: usize) -> bool {
1468        if line_num == 0 || line_num > self.lines.len() {
1469            return false;
1470        }
1471
1472        // Use the code spans cache to check
1473        // Note: col is 1-indexed from caller, but span.start_col and span.end_col are 0-indexed
1474        // Convert col to 0-indexed for comparison
1475        let col_0indexed = if col > 0 { col - 1 } else { 0 };
1476        let code_spans = self.code_spans();
1477        code_spans.iter().any(|span| {
1478            // Check if line is within the span's line range
1479            if line_num < span.line || line_num > span.end_line {
1480                return false;
1481            }
1482
1483            if span.line == span.end_line {
1484                // Single-line span: check column bounds
1485                col_0indexed >= span.start_col && col_0indexed < span.end_col
1486            } else if line_num == span.line {
1487                // First line of multi-line span: anything after start_col is in span
1488                col_0indexed >= span.start_col
1489            } else if line_num == span.end_line {
1490                // Last line of multi-line span: anything before end_col is in span
1491                col_0indexed < span.end_col
1492            } else {
1493                // Middle line of multi-line span: entire line is in span
1494                true
1495            }
1496        })
1497    }
1498
1499    /// Check if a byte offset is within a code span. O(log n).
1500    #[inline]
1501    pub fn is_byte_offset_in_code_span(&self, byte_offset: usize) -> bool {
1502        let code_spans = self.code_spans();
1503        let idx = code_spans.partition_point(|span| span.byte_offset <= byte_offset);
1504        idx > 0 && byte_offset < code_spans[idx - 1].byte_end
1505    }
1506
1507    /// Check if a byte position is within a reference definition. O(log n).
1508    #[inline]
1509    pub fn is_in_reference_def(&self, byte_pos: usize) -> bool {
1510        let idx = self.reference_defs.partition_point(|rd| rd.byte_offset <= byte_pos);
1511        idx > 0 && byte_pos < self.reference_defs[idx - 1].byte_end
1512    }
1513
1514    /// Check if a byte position is within an HTML comment. O(log n).
1515    #[inline]
1516    pub fn is_in_html_comment(&self, byte_pos: usize) -> bool {
1517        let idx = self.html_comment_ranges.partition_point(|r| r.start <= byte_pos);
1518        idx > 0 && byte_pos < self.html_comment_ranges[idx - 1].end
1519    }
1520
1521    /// Check if a byte position is within an HTML tag (including multiline tags).
1522    /// Uses the pre-parsed html_tags which correctly handles tags spanning multiple lines. O(log n).
1523    #[inline]
1524    pub fn is_in_html_tag(&self, byte_pos: usize) -> bool {
1525        let tags = self.html_tags();
1526        let idx = tags.partition_point(|tag| tag.byte_offset <= byte_pos);
1527        idx > 0 && byte_pos < tags[idx - 1].byte_end
1528    }
1529
1530    /// Check if a byte position is within a JSX component tag (e.g. `<Card .../>`),
1531    /// including its attribute values and multiline tags. Always false for flavors
1532    /// without JSX support. O(log n).
1533    #[inline]
1534    pub fn is_in_jsx_component_tag(&self, byte_pos: usize) -> bool {
1535        if !self.flavor.supports_jsx() {
1536            return false;
1537        }
1538        let tags = self.jsx_component_tags();
1539        let idx = tags.partition_point(|tag| tag.byte_offset <= byte_pos);
1540        idx > 0 && byte_pos < tags[idx - 1].byte_end
1541    }
1542
1543    /// Check if a byte position is within a Jinja template ({{ }} or {% %}). O(log n).
1544    pub fn is_in_jinja_range(&self, byte_pos: usize) -> bool {
1545        Self::binary_search_ranges(&self.jinja_ranges, byte_pos)
1546    }
1547
1548    /// Check if a byte position is within a JSX expression (MDX: {expression}). O(log n).
1549    #[inline]
1550    pub fn is_in_jsx_expression(&self, byte_pos: usize) -> bool {
1551        Self::binary_search_ranges(&self.jsx_expression_ranges, byte_pos)
1552    }
1553
1554    /// Check if a byte position is within an MDX comment ({/* ... */}). O(log n).
1555    #[inline]
1556    pub fn is_in_mdx_comment(&self, byte_pos: usize) -> bool {
1557        Self::binary_search_ranges(&self.mdx_comment_ranges, byte_pos)
1558    }
1559
1560    /// Check if a byte position is within a Pandoc/Quarto citation (`@key` or `[@key]`).
1561    /// Active for Pandoc-compatible flavors. O(log n).
1562    #[inline]
1563    pub fn is_in_citation(&self, byte_pos: usize) -> bool {
1564        let idx = self.citation_ranges.partition_point(|r| r.start <= byte_pos);
1565        idx > 0 && byte_pos < self.citation_ranges[idx - 1].end
1566    }
1567
1568    /// Pre-computed Pandoc/Quarto citation ranges.
1569    #[inline]
1570    pub fn citation_ranges(&self) -> &[crate::utils::skip_context::ByteRange] {
1571        &self.citation_ranges
1572    }
1573
1574    /// Check if a byte position is within a Pandoc/Quarto div block (`::: ... :::`).
1575    /// Active for Pandoc-compatible flavors. O(log n) via binary search over sorted ranges.
1576    #[inline]
1577    pub fn is_in_div_block(&self, byte_pos: usize) -> bool {
1578        let idx = self.pandoc_div_ranges.partition_point(|r| r.start <= byte_pos);
1579        idx > 0 && byte_pos < self.pandoc_div_ranges[idx - 1].end
1580    }
1581
1582    /// Check if a byte position is within a Pandoc inline footnote (`^[note text]`).
1583    /// Active for Pandoc-compatible flavors. O(log n).
1584    #[inline]
1585    pub fn is_in_inline_footnote(&self, byte_pos: usize) -> bool {
1586        let idx = self.inline_footnote_ranges.partition_point(|r| r.start <= byte_pos);
1587        idx > 0 && byte_pos < self.inline_footnote_ranges[idx - 1].end
1588    }
1589
1590    /// Check if a byte position is within a Pandoc example-list marker (`(@)` /
1591    /// `(@label)` at line start). Active for Pandoc-compatible flavors. O(log n).
1592    #[inline]
1593    pub fn is_in_example_list_marker(&self, byte_pos: usize) -> bool {
1594        let idx = self.example_list_marker_ranges.partition_point(|r| r.start <= byte_pos);
1595        idx > 0 && byte_pos < self.example_list_marker_ranges[idx - 1].end
1596    }
1597
1598    /// Check if a byte position is within a Pandoc example reference (`(@label)`
1599    /// inline). Active for Pandoc-compatible flavors. O(log n).
1600    #[inline]
1601    pub fn is_in_example_reference(&self, byte_pos: usize) -> bool {
1602        let idx = self.example_reference_ranges.partition_point(|r| r.start <= byte_pos);
1603        idx > 0 && byte_pos < self.example_reference_ranges[idx - 1].end
1604    }
1605
1606    /// Check if a byte position is within a Pandoc subscript (`~x~`) or
1607    /// superscript (`^x^`) span. Active for Pandoc-compatible flavors. O(log n).
1608    #[inline]
1609    pub fn is_in_subscript_or_superscript(&self, byte_pos: usize) -> bool {
1610        let idx = self.sub_super_ranges.partition_point(|r| r.start <= byte_pos);
1611        idx > 0 && byte_pos < self.sub_super_ranges[idx - 1].end
1612    }
1613
1614    /// Check if a byte position is within a Pandoc inline-code attribute block
1615    /// (`{.lang}` immediately following `` `code` ``). Active for Pandoc-compatible
1616    /// flavors. O(log n).
1617    #[inline]
1618    pub fn is_in_inline_code_attr(&self, byte_pos: usize) -> bool {
1619        let idx = self.inline_code_attr_ranges.partition_point(|r| r.start <= byte_pos);
1620        idx > 0 && byte_pos < self.inline_code_attr_ranges[idx - 1].end
1621    }
1622
1623    /// Check if a byte position is within a Pandoc bracketed span (`[text]{attrs}`).
1624    /// Active for Pandoc-compatible flavors. O(log n).
1625    #[inline]
1626    pub fn is_in_bracketed_span(&self, byte_pos: usize) -> bool {
1627        let idx = self.bracketed_span_ranges.partition_point(|r| r.start <= byte_pos);
1628        idx > 0 && byte_pos < self.bracketed_span_ranges[idx - 1].end
1629    }
1630
1631    /// Returns true if `byte_pos` falls inside a Pandoc line block (`| text`).
1632    /// Active for Pandoc-compatible flavors. O(log n).
1633    #[inline]
1634    pub fn is_in_line_block(&self, byte_pos: usize) -> bool {
1635        let idx = self.line_block_ranges.partition_point(|r| r.start <= byte_pos);
1636        idx > 0 && byte_pos < self.line_block_ranges[idx - 1].end
1637    }
1638
1639    /// Returns true if `byte_pos` falls inside a Pandoc pipe-table caption
1640    /// (`: caption` adjacent to a pipe table). Active for Pandoc-compatible
1641    /// flavors. O(log n).
1642    #[inline]
1643    pub fn is_in_pipe_table_caption(&self, byte_pos: usize) -> bool {
1644        let idx = self.pipe_table_caption_ranges.partition_point(|r| r.start <= byte_pos);
1645        idx > 0 && byte_pos < self.pipe_table_caption_ranges[idx - 1].end
1646    }
1647
1648    /// Returns true if `byte_pos` falls inside a Pandoc YAML metadata block.
1649    /// Active for Pandoc-compatible flavors. O(log n).
1650    #[inline]
1651    pub fn is_in_pandoc_metadata(&self, byte_pos: usize) -> bool {
1652        let idx = self.pandoc_metadata_ranges.partition_point(|r| r.start <= byte_pos);
1653        idx > 0 && byte_pos < self.pandoc_metadata_ranges[idx - 1].end
1654    }
1655
1656    /// Returns true if `byte_pos` falls inside a Pandoc grid table.
1657    /// Active for Pandoc-compatible flavors. O(log n).
1658    #[inline]
1659    pub fn is_in_grid_table(&self, byte_pos: usize) -> bool {
1660        let idx = self.grid_table_ranges.partition_point(|r| r.start <= byte_pos);
1661        idx > 0 && byte_pos < self.grid_table_ranges[idx - 1].end
1662    }
1663
1664    /// Returns true if `byte_pos` falls inside a Pandoc multi-line table.
1665    /// Active for Pandoc-compatible flavors. O(log n).
1666    #[inline]
1667    pub fn is_in_multi_line_table(&self, byte_pos: usize) -> bool {
1668        let idx = self.multi_line_table_ranges.partition_point(|r| r.start <= byte_pos);
1669        idx > 0 && byte_pos < self.multi_line_table_ranges[idx - 1].end
1670    }
1671
1672    /// Returns true if `link_text`, after Pandoc slugification, matches a heading
1673    /// in the document. Returns false for non-Pandoc-compatible flavors because
1674    /// the `pandoc_header_slugs` set is empty when the pre-pass detector is gated
1675    /// off. Use this when the caller has raw bracketed text (`[Section name]`).
1676    pub fn matches_implicit_header_reference(&self, link_text: &str) -> bool {
1677        let slug = crate::utils::pandoc::pandoc_header_slug(link_text);
1678        self.pandoc_header_slugs.contains(&slug)
1679    }
1680
1681    /// Returns true if `slug` (already in Pandoc-slug form) matches a heading
1682    /// in the document. Returns false for non-Pandoc-compatible flavors because
1683    /// the `pandoc_header_slugs` set is empty when the pre-pass detector is gated
1684    /// off. Use this when the caller already has a slug (e.g. the fragment of a
1685    /// URL after `#`). O(1).
1686    #[inline]
1687    pub fn has_pandoc_slug(&self, slug: &str) -> bool {
1688        self.pandoc_header_slugs.contains(slug)
1689    }
1690
1691    /// Check if a byte position is within a Hugo/Quarto shortcode ({{< ... >}} or {{% ... %}}). O(log n).
1692    #[inline]
1693    pub fn is_in_shortcode(&self, byte_pos: usize) -> bool {
1694        Self::binary_search_ranges(&self.shortcode_ranges, byte_pos)
1695    }
1696
1697    /// Pre-computed Hugo/Quarto shortcode ranges.
1698    #[inline]
1699    pub fn shortcode_ranges(&self) -> &[(usize, usize)] {
1700        &self.shortcode_ranges
1701    }
1702
1703    /// Check if a byte position is within a link reference definition title. O(log n).
1704    pub fn is_in_link_title(&self, byte_pos: usize) -> bool {
1705        Self::binary_search_ranges(&self.link_title_ranges, byte_pos)
1706    }
1707
1708    /// Check if content has any instances of a specific character (fast)
1709    pub fn has_char(&self, ch: char) -> bool {
1710        match ch {
1711            '#' => self.char_frequency.hash_count > 0,
1712            '*' => self.char_frequency.asterisk_count > 0,
1713            '_' => self.char_frequency.underscore_count > 0,
1714            '-' => self.char_frequency.hyphen_count > 0,
1715            '+' => self.char_frequency.plus_count > 0,
1716            '>' => self.char_frequency.gt_count > 0,
1717            '|' => self.char_frequency.pipe_count > 0,
1718            '[' => self.char_frequency.bracket_count > 0,
1719            '`' => self.char_frequency.backtick_count > 0,
1720            '<' => self.char_frequency.lt_count > 0,
1721            '!' => self.char_frequency.exclamation_count > 0,
1722            '\n' => self.char_frequency.newline_count > 0,
1723            _ => self.content.contains(ch), // Fallback for other characters
1724        }
1725    }
1726
1727    /// Get count of a specific character (fast)
1728    pub fn char_count(&self, ch: char) -> usize {
1729        match ch {
1730            '#' => self.char_frequency.hash_count,
1731            '*' => self.char_frequency.asterisk_count,
1732            '_' => self.char_frequency.underscore_count,
1733            '-' => self.char_frequency.hyphen_count,
1734            '+' => self.char_frequency.plus_count,
1735            '>' => self.char_frequency.gt_count,
1736            '|' => self.char_frequency.pipe_count,
1737            '[' => self.char_frequency.bracket_count,
1738            '`' => self.char_frequency.backtick_count,
1739            '<' => self.char_frequency.lt_count,
1740            '!' => self.char_frequency.exclamation_count,
1741            '\n' => self.char_frequency.newline_count,
1742            _ => self.content.matches(ch).count(), // Fallback for other characters
1743        }
1744    }
1745
1746    /// Check if content likely contains headings (fast)
1747    pub fn likely_has_headings(&self) -> bool {
1748        self.char_frequency.hash_count > 0 || self.char_frequency.hyphen_count > 2 || self.content.contains('=') // Setext H1 underlines use '='
1749    }
1750
1751    /// Check if content likely contains lists (fast)
1752    pub fn likely_has_lists(&self) -> bool {
1753        self.char_frequency.asterisk_count > 0
1754            || self.char_frequency.hyphen_count > 0
1755            || self.char_frequency.plus_count > 0
1756    }
1757
1758    /// Check if content likely contains emphasis (fast)
1759    pub fn likely_has_emphasis(&self) -> bool {
1760        self.char_frequency.asterisk_count > 1 || self.char_frequency.underscore_count > 1
1761    }
1762
1763    /// Check if content likely contains tables (fast)
1764    pub fn likely_has_tables(&self) -> bool {
1765        self.char_frequency.pipe_count > 2
1766    }
1767
1768    /// Check if content likely contains blockquotes (fast)
1769    pub fn likely_has_blockquotes(&self) -> bool {
1770        self.char_frequency.gt_count > 0
1771    }
1772
1773    /// Check if content likely contains code (fast)
1774    pub fn likely_has_code(&self) -> bool {
1775        self.char_frequency.backtick_count > 0
1776    }
1777
1778    /// Check if content likely contains links or images (fast)
1779    pub fn likely_has_links_or_images(&self) -> bool {
1780        self.char_frequency.bracket_count > 0 || self.char_frequency.exclamation_count > 0
1781    }
1782
1783    /// Check if content likely contains HTML (fast)
1784    pub fn likely_has_html(&self) -> bool {
1785        self.char_frequency.lt_count > 0
1786    }
1787
1788    /// Get the blockquote prefix for inserting a blank line at the given line index.
1789    /// Returns the prefix without trailing content (e.g., ">" or ">>").
1790    /// This is needed because blank lines inside blockquotes must preserve the blockquote structure.
1791    /// Returns an empty string if the line is not inside a blockquote.
1792    pub fn blockquote_prefix_for_blank_line(&self, line_idx: usize) -> String {
1793        if let Some(line_info) = self.lines.get(line_idx)
1794            && let Some(ref bq) = line_info.blockquote
1795        {
1796            bq.prefix.trim_end().to_string()
1797        } else {
1798            String::new()
1799        }
1800    }
1801
1802    /// Find the line index for a given byte offset using binary search.
1803    /// Returns (line_index, line_number, column) where:
1804    /// - line_index is the 0-based index in the lines array
1805    /// - line_number is the 1-based line number
1806    /// - column is the 0-based *character* offset within that line
1807    ///
1808    /// The column is a character offset rather than a byte offset so that the
1809    /// `start_col`/`end_col` it feeds into match rumdl's diagnostic convention
1810    /// (columns are character positions). On lines with multi-byte UTF-8
1811    /// characters the two differ; reporting bytes would mis-position highlights.
1812    #[inline]
1813    fn find_line_for_offset(lines: &[LineInfo], content: &str, byte_offset: usize) -> (usize, usize, usize) {
1814        // Binary search to find the line containing this byte offset
1815        let idx = match lines.binary_search_by(|line| {
1816            if byte_offset < line.byte_offset {
1817                std::cmp::Ordering::Greater
1818            } else if byte_offset > line.byte_offset + line.byte_len {
1819                std::cmp::Ordering::Less
1820            } else {
1821                std::cmp::Ordering::Equal
1822            }
1823        }) {
1824            Ok(idx) => idx,
1825            Err(idx) => idx.saturating_sub(1),
1826        };
1827
1828        let line = &lines[idx];
1829        let line_num = idx + 1;
1830        let byte_col = byte_offset.saturating_sub(line.byte_offset);
1831        // Convert the byte offset within the line to a 0-based character column.
1832        // `byte_to_char_count` returns a 1-based value, so subtract 1.
1833        let col = byte_to_char_count(line.content(content), byte_col) - 1;
1834
1835        (idx, line_num, col)
1836    }
1837
1838    /// Check if a byte offset is within a code span using binary search
1839    #[inline]
1840    fn is_offset_in_code_span(code_spans: &[CodeSpan], offset: usize) -> bool {
1841        // Since spans are sorted by byte_offset, use partition_point for binary search
1842        let idx = code_spans.partition_point(|span| span.byte_offset <= offset);
1843
1844        // Check the span that starts at or before our offset
1845        if idx > 0 {
1846            let span = &code_spans[idx - 1];
1847            if offset >= span.byte_offset && offset < span.byte_end {
1848                return true;
1849            }
1850        }
1851
1852        false
1853    }
1854
1855    /// Get an iterator over valid headings (skipping invalid ones like `#NoSpace`)
1856    ///
1857    /// Valid headings have proper spacing after the `#` markers (or are level > 1).
1858    /// This is the standard iterator for rules that need to process headings.
1859    ///
1860    /// # Examples
1861    ///
1862    /// ```
1863    /// use rumdl_lib::lint_context::LintContext;
1864    /// use rumdl_lib::config::MarkdownFlavor;
1865    ///
1866    /// let content = "# Valid Heading\n#NoSpace\n## Another Valid";
1867    /// let ctx = LintContext::new(content, MarkdownFlavor::Standard, None);
1868    ///
1869    /// for heading in ctx.valid_headings() {
1870    ///     println!("Line {}: {} (level {})", heading.line_num, heading.heading.text, heading.heading.level);
1871    /// }
1872    /// // Only prints valid headings, skips `#NoSpace`
1873    /// ```
1874    #[must_use]
1875    pub fn valid_headings(&self) -> ValidHeadingsIter<'_> {
1876        ValidHeadingsIter::new(&self.lines)
1877    }
1878
1879    /// Check if the document contains any valid CommonMark headings
1880    ///
1881    /// Returns `true` if there is at least one heading with proper space after `#`.
1882    #[must_use]
1883    pub fn has_valid_headings(&self) -> bool {
1884        self.lines
1885            .iter()
1886            .any(|line| line.heading.as_ref().is_some_and(|h| h.is_valid))
1887    }
1888}
1889
1890/// The range an unclosed `<!--` hides when it opens a block the parser missed.
1891///
1892/// A MkDocs admonition or a `<div markdown>` body is rendered as markdown in its
1893/// own right, so a `<!--` starting one of its lines opens an HTML block there
1894/// just as it would at the top level. The parser has no notion of either
1895/// container, reads the body as indented code or as a lazy paragraph
1896/// continuation, and so reports no block for the opener to run to the end of.
1897///
1898/// The block ends where the container's body ends, which is what CommonMark
1899/// gives an unclosed comment in any other container. An opener that is not the
1900/// first thing on its line is inline HTML and opens nothing, here as anywhere.
1901fn container_comment_range(
1902    opener: usize,
1903    containers: &flavor_detection::ContainerLines,
1904    lines: &[types::LineInfo],
1905    content: &str,
1906) -> Option<crate::utils::skip_context::ByteRange> {
1907    let line_index = lines
1908        .partition_point(|line| line.byte_offset <= opener)
1909        .checked_sub(1)?;
1910    let line = lines.get(line_index)?;
1911    if line.byte_offset + line.indent != opener {
1912        return None;
1913    }
1914    if !containers.is_container_body(line_index) {
1915        return None;
1916    }
1917    let end_line = lines.get(containers.body_end_line(line_index)?)?;
1918    Some(crate::utils::skip_context::ByteRange {
1919        start: opener,
1920        end: (end_line.byte_offset + end_line.byte_len).min(content.len()),
1921    })
1922}
1923
1924/// Detect footnote definitions and mark their continuation lines.
1925///
1926/// Uses pulldown-cmark to find footnote definition ranges and fenced code
1927/// blocks within them, then:
1928/// 1. Sets `in_footnote_definition = true` on all lines within
1929/// 2. Clears `in_code_block = false` on continuation lines that were
1930///    misidentified as indented code blocks (but preserves real fenced
1931///    code blocks within footnotes)
1932fn detect_footnote_definitions(content: &str, lines: &mut [types::LineInfo], line_offsets: &[usize]) {
1933    use pulldown_cmark::{CodeBlockKind, Event, Parser, Tag, TagEnd};
1934
1935    let options = crate::utils::rumdl_parser_options();
1936    let parser = Parser::new_ext(content, options).into_offset_iter();
1937
1938    // Collect footnote ranges and fenced code block ranges within them
1939    let mut footnote_ranges: Vec<(usize, usize)> = Vec::new();
1940    let mut fenced_code_ranges: Vec<(usize, usize)> = Vec::new();
1941    let mut in_footnote = false;
1942
1943    for (event, range) in parser {
1944        match event {
1945            Event::Start(Tag::FootnoteDefinition(_)) => {
1946                in_footnote = true;
1947                footnote_ranges.push((range.start, range.end));
1948            }
1949            Event::End(TagEnd::FootnoteDefinition) => {
1950                in_footnote = false;
1951            }
1952            Event::Start(Tag::CodeBlock(CodeBlockKind::Fenced(_))) if in_footnote => {
1953                fenced_code_ranges.push((range.start, range.end));
1954            }
1955            _ => {}
1956        }
1957    }
1958
1959    let byte_to_line = |byte_offset: usize| -> usize {
1960        line_offsets
1961            .partition_point(|&offset| offset <= byte_offset)
1962            .saturating_sub(1)
1963    };
1964
1965    // Mark footnote definition lines
1966    for &(start, end) in &footnote_ranges {
1967        let start_line = byte_to_line(start);
1968        let end_line = line_offsets.partition_point(|&offset| offset < end).min(lines.len());
1969
1970        for line in &mut lines[start_line..end_line] {
1971            line.in_footnote_definition = true;
1972            line.in_code_block = false;
1973        }
1974    }
1975
1976    // Restore in_code_block for fenced code blocks within footnotes
1977    for &(start, end) in &fenced_code_ranges {
1978        let start_line = byte_to_line(start);
1979        let end_line = line_offsets.partition_point(|&offset| offset < end).min(lines.len());
1980
1981        for line in &mut lines[start_line..end_line] {
1982            line.in_code_block = true;
1983        }
1984    }
1985}