prov_graph/link.rs
1//! Link text — the raw strings a relation field holds, the wikilinks embedded
2//! in body prose, and the path arithmetic around them.
3//!
4//! A link target as written in metadata is either a bare path or a
5//! markdown-style labeled link (`[Design](docs/design.md)`), and its path may be
6//! **relative** to the document (`notes/a.md`), **workspace-absolute** from the
7//! root (`/Blog/Blog.md`), or wrapped in Markdown **angle brackets** when it
8//! contains spaces (`</Creative Writing/index.md>`, `[Notes](</My Notes/x.md>)`).
9//! This is prov's *link-syntax layer* — the analogue of `fig`'s format
10//! layer: it recognizes the conventions a real workspace mixes and round-trips
11//! them on write (spaces re-acquire their brackets). A [`Wikilink`] is the
12//! body-text counterpart (`[[notes/a.md]]`, `[[colophon:ajp7eq|My file]]`).
13//! Everything here is *lexical*: no filesystem
14//! access, no symlink resolution, and no markdown-structure awareness (a `[[…]]`
15//! inside a code span is still scanned) — resolution and code-fence discipline
16//! belong to the traversal and validation layers, which can report what they
17//! find.
18
19use std::ops::Range;
20use std::path::{Path, PathBuf};
21
22/// A parsed link string: an optional human label and the target it points at.
23#[derive(Debug, Clone, PartialEq, Eq)]
24pub struct Link {
25 /// The display label, when written as `[label](target)` or `[[target|label]]`.
26 pub label: Option<String>,
27 /// The target exactly as written (a relative path, an `id:<id>` handle, or a
28 /// URL for overlay relations that point off-workspace).
29 pub target: String,
30 /// `true` when the scalar was written as an Obsidian wikilink
31 /// (`[[target]]` / `[[target|label]]`) rather than a markdown link or bare
32 /// target — preserved so [`render`](Link::render) round-trips the wrapper.
33 pub wikilink: bool,
34}
35
36impl Link {
37 /// Parse a raw link string. `[label](target)` yields both parts; anything
38 /// else is a bare target with no label. A target wrapped in Markdown angle
39 /// brackets (`<…>`, used when it contains spaces) is unwrapped *only* when
40 /// it appears as the URL portion of a successfully parsed `[label](<target>)`
41 /// — never when it wraps a bare, unlabeled value, which stays byte-literal
42 /// (diaryx reads a bare `<…>` as a literal path, angle brackets and all: see
43 /// [`parse_path_only`](Link::parse_path_only) and the `link_style` render
44 /// tests). A `[[target]]` / `[[target|label]]` Obsidian wikilink scalar is
45 /// also recognized here; use [`parse_path_only`](Link::parse_path_only) when
46 /// the caller's value is a frontmatter *path* field that must not
47 /// reinterpret a literal `[[…]]` string as a wikilink.
48 pub fn parse(raw: &str) -> Self {
49 Self::parse_impl(raw, true)
50 }
51
52 /// [`parse`](Link::parse), but never treats `"[[target]]"` as an Obsidian
53 /// wikilink — such a value is left exactly as written (a bare literal, or,
54 /// if it happens to also match `[label](target)`, a markdown link). This is
55 /// the opt-out a frontmatter *path* field needs: diaryx's own path-value
56 /// parser has no wikilink convention at all, so a workspace that stores a
57 /// literal `"[[…]]"`-shaped string in a path property (unusual, but legal
58 /// input data) must round-trip it untouched rather than have `parse`
59 /// silently reinterpret it as a link. Every other rule of `parse` —
60 /// `[label](target)` splitting, balanced parens, angle-bracket unwrapping of
61 /// a parsed URL — applies unchanged.
62 pub fn parse_path_only(raw: &str) -> Self {
63 Self::parse_impl(raw, false)
64 }
65
66 /// Shared implementation behind [`parse`](Link::parse) and
67 /// [`parse_path_only`](Link::parse_path_only); `wikilink` gates the
68 /// `[[target]]` recognition branch.
69 fn parse_impl(raw: &str, wikilink: bool) -> Self {
70 let raw = raw.trim();
71 // A wikilink scalar — `[[target]]` / `[[target|label]]` — the Obsidian
72 // wrapper permitted in metadata as well as body prose. Skipped entirely
73 // by `parse_path_only`.
74 if wikilink && let Some(inner) = raw.strip_prefix("[[").and_then(|r| r.strip_suffix("]]")) {
75 let (target, label) = match inner.split_once('|') {
76 Some((target, label)) => (target.trim(), Some(label.trim().to_string())),
77 None => (inner.trim(), None),
78 };
79 return Self {
80 label,
81 target: target.to_string(),
82 wikilink: true,
83 };
84 }
85 if let Some((label, target)) = split_markdown_link(raw) {
86 return Self {
87 label: Some(label),
88 target,
89 wikilink: false,
90 };
91 }
92 // Bare value: stored byte-literal, angle brackets and all. Unlike the
93 // markdown-link branch above, there is no URL position here to unwrap —
94 // a bare `<…>`-shaped string is data, not delimiters (see `parse`'s doc
95 // comment and the C2 regression tests).
96 Self {
97 label: None,
98 target: raw.to_string(),
99 wikilink: false,
100 }
101 }
102
103 /// Render back to a writable link string. A labeled link keeps its label and
104 /// wraps the URL in Markdown angle brackets when it holds a space or paren
105 /// (so `]` / `)` in the path cannot break parsing); a bare target is emitted
106 /// verbatim — brackets belong *inside* `[label](…)`, never around a bare
107 /// value (matching diaryx, which reads a bare `<…>` as a literal path).
108 pub fn render(&self) -> String {
109 match (&self.label, self.wikilink) {
110 (Some(label), true) => format!("[[{}|{label}]]", self.target),
111 (None, true) => format!("[[{}]]", self.target),
112 (Some(label), false) => format!("[{label}]({})", emit_target(&self.target)),
113 (None, false) => self.target.clone(),
114 }
115 }
116
117 /// This link with a different target, keeping the label and wrapper. The
118 /// rename path uses this so `[Design](old.md)` becomes `[Design](new.md)`,
119 /// never a bare `new.md`.
120 pub fn with_target(&self, target: impl Into<String>) -> Self {
121 Self {
122 label: self.label.clone(),
123 target: target.into(),
124 wikilink: self.wikilink,
125 }
126 }
127
128 /// This link with a different display label, keeping the target and wrapper.
129 /// The retitle path uses this so `[Old Title](id:abc)` becomes
130 /// `[New Title](id:abc)` when the target is renamed — the label follows the
131 /// title while the (id or path) target stays exactly as written.
132 pub fn with_label(&self, label: impl Into<String>) -> Self {
133 Self {
134 label: Some(label.into()),
135 target: self.target.clone(),
136 wikilink: self.wikilink,
137 }
138 }
139
140 /// `true` when the target points off-workspace (a URL or mail address)
141 /// rather than at a file — such links are never resolved against the
142 /// filesystem or rewritten by moves.
143 pub fn is_external(&self) -> bool {
144 self.target.contains("://") || self.target.starts_with("mailto:")
145 }
146
147 /// The **sub-document locator** this target carries — the text after a `#`,
148 /// naming a place *inside* a document rather than a document.
149 ///
150 /// A locator is carried, never resolved. prov strips it before resolving the
151 /// target and re-attaches it on rewrite, which is the same contract §4 gives
152 /// an external URL: recognized by syntax, never validated. What it *means*
153 /// is the workspace's business — a verse number in a chapter, a heading
154 /// slug, a line range — so a locator naming nothing is not a `check`
155 /// finding. That is the price of not teaching prov every document format's
156 /// internal address space.
157 ///
158 /// `None` for an external target (a URL's fragment belongs to the URL) and
159 /// for a target that is *only* a locator (`#3`), which stays byte-literal —
160 /// see [`split_locator`].
161 pub fn locator(&self) -> Option<&str> {
162 if self.is_external() {
163 return None;
164 }
165 split_locator(&self.target).1
166 }
167
168 /// This link's target with any [`locator`](Self::locator) removed — the part
169 /// that names a *document*, and so the only part that resolves.
170 pub fn addressed_target(&self) -> &str {
171 if self.is_external() {
172 return &self.target;
173 }
174 split_locator(&self.target).0
175 }
176
177 /// This link with its document part replaced, **preserving the locator**.
178 ///
179 /// The rewrite passes (rename, re-relativize, restyle) use this rather than
180 /// [`with_target`](Self::with_target), which sets the target verbatim: a
181 /// move changes where a document lives, never which part of it was pointed
182 /// at.
183 pub fn with_path(&self, path: impl Into<String>) -> Self {
184 self.with_target(join_locator(path, self.locator()))
185 }
186
187 /// What this link's `id:`-scheme target names — local, foreign, or
188 /// malformed. `None` when the target carries no id scheme at all (a path,
189 /// an alias, a URL).
190 ///
191 /// Any [`locator`](Self::locator) is stripped first, so `id:abc1234#2-3`
192 /// names the same document as `id:abc1234`.
193 pub fn id_ref(&self) -> Option<IdRef> {
194 strip_id_scheme(self.addressed_target()).map(parse_id_body)
195 }
196
197 /// The stable ID this link names, when the target uses the `id:<id>`
198 /// scheme (or the legacy `colophon:<id>` spelling) — the
199 /// location-independent alternative to a relative path. Such targets
200 /// resolve through the workspace's ID registry, never against the
201 /// filesystem, and are deliberately *not* rewritten by moves: staying valid
202 /// across moves is their entire point.
203 ///
204 /// **Local ids only.** A cross-workspace `id:<workspace>/<id>` yields
205 /// `None`, because the registry this would be resolved against is not the
206 /// one that issued the id — see [`id_ref`](Self::id_ref). Callers asking
207 /// "must a move leave this alone?" want [`is_path_target`](Self::is_path_target),
208 /// which covers every id form.
209 pub fn id_target(&self) -> Option<crate::identity::Id> {
210 match self.id_ref() {
211 Some(IdRef::Local(id)) => Some(id),
212 _ => None,
213 }
214 }
215
216 /// The workspace and id this link names, when it is a cross-workspace
217 /// reference (`id:<workspace>/<id>`).
218 pub fn foreign_target(&self) -> Option<(String, crate::identity::Id)> {
219 match self.id_ref() {
220 Some(IdRef::Foreign { workspace, id }) => Some((workspace, id)),
221 _ => None,
222 }
223 }
224
225 /// Whether this link's target is a **path** — the only kind that says where
226 /// its target lives, and so the only kind a move may rewrite.
227 ///
228 /// False for an external URL and for every `id:` reference alike (local,
229 /// foreign, and malformed): none of them encodes a location, so
230 /// re-relativizing one could only damage it. This is the predicate the
231 /// rename, re-relativize and restyle passes filter on.
232 pub fn is_path_target(&self) -> bool {
233 !self.is_external() && self.id_ref().is_none()
234 }
235}
236
237/// Try to split `raw` as a Markdown link `[label](target)` (or, when the URL
238/// holds a space or paren, `[label](<target>)`). Returns the label and the
239/// unwrapped target, or `None` when `raw` doesn't have this shape.
240///
241/// Ports diaryx_core's `link_parser::try_parse_markdown_link` byte-for-byte
242/// (see module doc comment) rather than re-deriving it, because its two
243/// corrected behaviors are exactly what C2/C3 need and diaryx's test suite is
244/// the ground truth for their edge cases:
245/// - The label is whatever sits between the first `[` and the first `]`
246/// immediately followed by `(` — *not* whatever precedes the last `)` in the
247/// whole string, so trailing prose after the link (`"[Title](/a.md) note"`)
248/// never gets swept into the target.
249/// - The target's closing paren is found by depth-counting (see
250/// [`find_closing_paren`]), so a target containing its own parens
251/// (`/file (1).md`, even nested) still closes at the right `)`; any text
252/// after that `)` is deliberately never inspected — tolerated, not merely
253/// permitted.
254/// - Angle brackets are only unwrapped here, on the URL of a link that already
255/// parsed as `[label](…)` — never on a bare value (that's C2; see
256/// [`Link::parse`]'s doc comment and `parse_impl`'s bare-value branch).
257fn split_markdown_link(raw: &str) -> Option<(String, String)> {
258 if !raw.starts_with('[') {
259 return None;
260 }
261 let close_bracket = raw.find(']')?;
262 if !raw[close_bracket..].starts_with("](") {
263 return None;
264 }
265 let label = raw[1..close_bracket].to_string();
266 let after = &raw[close_bracket + 2..];
267 let target = if let Some(inner) = after.strip_prefix('<') {
268 // `](<target>)`: the closing `>` must be immediately followed by `)` —
269 // otherwise this isn't really an angle-bracketed URL and the whole
270 // markdown-link parse fails (falls through to the bare branch).
271 let close_angle = inner.find('>')?;
272 if inner.get(close_angle + 1..close_angle + 2) != Some(")") {
273 return None;
274 }
275 inner[..close_angle].to_string()
276 } else {
277 let close_paren = find_closing_paren(after)?;
278 after[..close_paren].to_string()
279 };
280 Some((label, target))
281}
282
283/// Find the byte offset of the `)` that balances the *implicit* open paren at
284/// the start of a Markdown link URL — i.e. the first `)` encountered at
285/// nesting depth zero, treating every `(` as opening one more level. A target
286/// with no closing paren at all (an unterminated link) yields `None`.
287///
288/// This is the crux of the C3 fix: the old code demanded the link be the very
289/// end of the input (`raw.strip_suffix(')')` on the whole trimmed string), so
290/// `"[Title](/a.md) trailing junk"` fell through to a bare target holding the
291/// entire string. Scanning for the *matching* close paren instead — and never
292/// examining what follows it — makes the split correct both for a target
293/// containing its own balanced parens (`/file (1).md`, `/file (a (b)).md`) and
294/// for trailing prose after the link.
295fn find_closing_paren(s: &str) -> Option<usize> {
296 let mut depth = 0u32;
297 for (i, c) in s.char_indices() {
298 match c {
299 '(' => depth += 1,
300 ')' => {
301 if depth == 0 {
302 return Some(i);
303 }
304 depth -= 1;
305 }
306 _ => {}
307 }
308 }
309 None
310}
311
312/// The writable spelling of a Markdown-link URL: wrapped in angle brackets when
313/// it holds a space or parenthesis (which would otherwise break `[label](url)`),
314/// bare otherwise. For URLs *inside* `[label](…)` only.
315fn emit_target(target: &str) -> String {
316 if target.contains([' ', '(', ')']) {
317 format!("<{target}>")
318 } else {
319 target.to_string()
320 }
321}
322
323/// The write style for links a workspace authors — prov's analogue of
324/// diaryx's `LinkFormat`, and read from the same place: the `link_format` key in
325/// the root document's frontmatter (a fact declared *in* the workspace, not an
326/// app-private config). Every link prov writes (autofix today; create/rename
327/// in time) uses this, so a repair never introduces a foreign style.
328#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
329pub enum LinkStyle {
330 /// `[Title](/path/file.md)` — workspace-absolute Markdown link. diaryx's
331 /// default, and the most portable/self-documenting.
332 #[default]
333 MarkdownRoot,
334 /// `[Title](../path/file.md)` — relative Markdown link.
335 MarkdownRelative,
336 /// `/path/file.md` — bare workspace-absolute path.
337 PlainRoot,
338 /// `../path/file.md` — bare relative path.
339 PlainRelative,
340}
341
342impl LinkStyle {
343 /// This style's notation (bracketed Markdown vs bare path) and path
344 /// resolution — the two orthogonal axes the config `references.notation` /
345 /// `references.path_style` keys expose (see [`Notation`] / [`PathStyle`]).
346 /// `LinkStyle` is the fused internal carrier; these split it back out.
347 pub fn axes(self) -> (Notation, PathStyle) {
348 match self {
349 Self::MarkdownRoot => (Notation::Markdown, PathStyle::Root),
350 Self::MarkdownRelative => (Notation::Markdown, PathStyle::Relative),
351 Self::PlainRoot => (Notation::Bare, PathStyle::Root),
352 Self::PlainRelative => (Notation::Bare, PathStyle::Relative),
353 }
354 }
355
356 /// The fused [`LinkStyle`] for a bracketed-vs-bare notation and a path
357 /// resolution. `Wikilink` has no bare/bracketed distinction, so it maps
358 /// through the Markdown family (only the path-text shape matters for it).
359 pub fn from_axes(notation: Notation, path_style: PathStyle) -> Self {
360 match (notation, path_style) {
361 (Notation::Markdown | Notation::Wikilink, PathStyle::Root) => Self::MarkdownRoot,
362 (Notation::Markdown | Notation::Wikilink, PathStyle::Relative) => {
363 Self::MarkdownRelative
364 }
365 (Notation::Bare, PathStyle::Root) => Self::PlainRoot,
366 (Notation::Bare, PathStyle::Relative) => Self::PlainRelative,
367 }
368 }
369}
370
371/// The syntactic form a reference is written in — the config-facing notation
372/// axis (`references.notation`), orthogonal to [`PathStyle`]. This is the clean
373/// split of what the internal [`Wrapper`] + `plain_`/`markdown_` [`LinkStyle`]
374/// prefix fused: `Bare` is a path with no brackets, `Markdown` is `[Title](…)`,
375/// `Wikilink` is `[[…]]`.
376#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
377pub enum Notation {
378 /// `[Title](target)`.
379 #[default]
380 Markdown,
381 /// `[[target]]` / `[[target|Title]]`.
382 Wikilink,
383 /// A bare `target`, no brackets — what the old `plain_*` link formats wrote.
384 Bare,
385}
386
387impl Notation {
388 /// Parse the `references.notation` config spelling; unknown → `None`.
389 pub fn from_config_str(value: &str) -> Option<Self> {
390 match value {
391 "markdown" => Some(Self::Markdown),
392 "wikilink" => Some(Self::Wikilink),
393 "bare" => Some(Self::Bare),
394 _ => None,
395 }
396 }
397
398 /// The `references.notation` config spelling.
399 pub fn as_config_str(self) -> &'static str {
400 match self {
401 Self::Markdown => "markdown",
402 Self::Wikilink => "wikilink",
403 Self::Bare => "bare",
404 }
405 }
406
407 /// The internal [`Wrapper`] this notation renders through. `Markdown` and
408 /// `Bare` share the Markdown wrapper (the bracket-vs-bare choice lives in the
409 /// path style); `Wikilink` is its own wrapper.
410 pub fn wrapper(self) -> Wrapper {
411 match self {
412 Self::Wikilink => Wrapper::Wikilink,
413 Self::Markdown | Self::Bare => Wrapper::Markdown,
414 }
415 }
416
417 /// Recover the notation from a fused [`Wrapper`] + [`LinkStyle`] — the inverse
418 /// direction, for serializing an internal style back to config.
419 pub fn from_wrapper(wrapper: Wrapper, style: LinkStyle) -> Self {
420 match wrapper {
421 Wrapper::Wikilink => Self::Wikilink,
422 Wrapper::Markdown => style.axes().0,
423 }
424 }
425}
426
427/// The path-resolution a reference uses for a path target — the config-facing
428/// `references.path_style` axis, orthogonal to [`Notation`]. Applies to path
429/// targets only (id/alias ignore it).
430///
431/// Two resolutions, and deliberately not three. A `canonical` style once emitted
432/// a *workspace*-relative path with no leading slash (`path/file.md`), which
433/// [`resolve`] reads as *directory*-relative — so a canonical link resolved to
434/// what it named only from a document at the workspace root, and silently
435/// misresolved everywhere else. The ambiguity of a bare path is settled by
436/// committing to one meaning rather than by tagging it: **bare is
437/// directory-relative**, and a workspace-relative reference is spelled
438/// [`Root`](Self::Root), with the slash that says so. `prov convert <root>
439/// link_format markdown_root -r` restyles a workspace that used the old value.
440#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
441pub enum PathStyle {
442 /// Workspace-absolute: `/path/file.md`.
443 #[default]
444 Root,
445 /// Relative to the referring document: `../file.md`.
446 Relative,
447}
448
449impl PathStyle {
450 /// Parse the `references.path_style` config spelling; unknown → `None`.
451 pub fn from_config_str(value: &str) -> Option<Self> {
452 match value {
453 "root" => Some(Self::Root),
454 "relative" => Some(Self::Relative),
455 _ => None,
456 }
457 }
458
459 /// The `references.path_style` config spelling.
460 pub fn as_config_str(self) -> &'static str {
461 match self {
462 Self::Root => "root",
463 Self::Relative => "relative",
464 }
465 }
466}
467
468/// Format a link to `target` (a workspace-relative canonical path) as written in
469/// the document at `from`, in `style`, with `title` (used only by the Markdown
470/// styles). This is what keeps an authored link native to the workspace.
471pub fn format_link(style: LinkStyle, from: &Path, target: &Path, title: &str) -> String {
472 let canonical = target.to_string_lossy();
473 match style {
474 LinkStyle::MarkdownRoot => {
475 format!("[{title}]({})", emit_target(&format!("/{canonical}")))
476 }
477 LinkStyle::MarkdownRelative => {
478 let rel = relative(from.parent().unwrap_or(Path::new("")), target);
479 format!("[{title}]({})", emit_target(&rel))
480 }
481 LinkStyle::PlainRoot => format!("/{canonical}"),
482 LinkStyle::PlainRelative => relative(from.parent().unwrap_or(Path::new("")), target),
483 }
484}
485
486/// A human title generated from a path's file stem: `_`/`-` become spaces and
487/// each word is capitalized (`utility_index.md` → `Utility Index`). The fallback
488/// when a target document declares no `title`.
489pub fn path_to_title(path: &Path) -> String {
490 let stem = path
491 .file_stem()
492 .and_then(|s| s.to_str())
493 .unwrap_or_default();
494 stem.split(['_', '-', ' '])
495 .filter(|w| !w.is_empty())
496 .map(|word| {
497 let mut chars = word.chars();
498 match chars.next() {
499 Some(first) => first.to_ascii_uppercase().to_string() + chars.as_str(),
500 None => String::new(),
501 }
502 })
503 .collect::<Vec<_>>()
504 .join(" ")
505}
506
507/// Turn a human title into a filesystem-friendly filename stem — the readable
508/// slug prov derives when a document is created by title (`prov new "My
509/// Great Note"` → `my-great-note`). The rough inverse of
510/// [`path_to_title`]: lowercase, runs of whitespace and separators
511/// (space / `-` / `_` / `/`) collapsed to a single `-`, and any other
512/// punctuation dropped. Unicode letters and digits are kept, so a non-ASCII
513/// title still yields a legible name. A title with no slug-able characters (pure
514/// punctuation) falls back to `"untitled"` so the result is always a valid stem.
515///
516/// The point is prov's legibility contract (DESIGN §1): a title-first
517/// authoring flow that still leaves *readable paths* in the tree and in
518/// path-addressed links — unlike an opaque `note-3.md`.
519pub fn slug(title: &str) -> String {
520 let mut out = String::with_capacity(title.len());
521 let mut pending_dash = false;
522 for ch in title.chars() {
523 if ch.is_alphanumeric() {
524 if pending_dash {
525 out.push('-');
526 pending_dash = false;
527 }
528 out.extend(ch.to_lowercase());
529 } else if ch.is_whitespace() || matches!(ch, '-' | '_' | '/') {
530 // Defer the separator: only emitted if a kept character follows, so
531 // leading, trailing, and repeated separators never reach `out`.
532 pending_dash = !out.is_empty();
533 }
534 // Any other character (punctuation, symbols) is dropped.
535 }
536 if out.is_empty() {
537 "untitled".to_string()
538 } else {
539 out
540 }
541}
542
543/// The character that begins a [sub-document locator](Link::locator) on a link
544/// target.
545pub const LOCATOR_SEPARATOR: char = '#';
546
547/// Split a target into the part naming a document and its locator.
548///
549/// Splits at the **first** separator, so a locator may itself contain one. Two
550/// targets deliberately have no locator:
551///
552/// - one with no `#` at all — the ordinary case;
553/// - one whose `#` is the *first* character (`#3`). That is a same-document
554/// reference, and reading it as a locator on an empty path would resolve the
555/// link to the containing *directory* — a silent retarget where doing nothing
556/// is correct.
557///
558/// Purely syntactic: callers that must not split an external URL's fragment
559/// guard with [`Link::is_external`] first, as [`Link::locator`] does.
560///
561/// The cost of the convention is a document whose *filename* contains `#`,
562/// which can no longer be linked by path. That is the same trade every URL and
563/// Markdown implementation makes, and the character is rare in filenames where
564/// a locator is not.
565pub fn split_locator(target: &str) -> (&str, Option<&str>) {
566 match target.split_once(LOCATOR_SEPARATOR) {
567 Some((doc, locator)) if !doc.is_empty() => (doc, Some(locator)),
568 _ => (target, None),
569 }
570}
571
572/// Re-attach a locator to a document target — the inverse of [`split_locator`].
573/// `None` returns the target unchanged, so this is safe on a target that never
574/// had one.
575pub fn join_locator(target: impl Into<String>, locator: Option<&str>) -> String {
576 let mut target = target.into();
577 if let Some(locator) = locator {
578 target.push(LOCATOR_SEPARATOR);
579 target.push_str(locator);
580 }
581 target
582}
583
584/// The target scheme marking a link-by-ID: `id:<id>`.
585pub const ID_SCHEME: &str = "id:";
586
587/// The legacy scheme (`colophon:<id>`), still recognized on read so existing
588/// workspaces keep resolving. New links are authored with [`ID_SCHEME`].
589pub const LEGACY_ID_SCHEME: &str = "colophon:";
590
591/// Strip the ID scheme from a target, accepting the current `id:` spelling or
592/// the legacy `colophon:` one. `None` when the target names no ID.
593pub fn strip_id_scheme(target: &str) -> Option<&str> {
594 target
595 .strip_prefix(ID_SCHEME)
596 .or_else(|| target.strip_prefix(LEGACY_ID_SCHEME))
597}
598
599/// Render an ID as a link target (`id:<id>`).
600pub fn id_target(id: &crate::identity::Id) -> String {
601 format!("{ID_SCHEME}{id}")
602}
603
604/// The character separating the workspace qualifier from the id in a
605/// cross-workspace reference (`id:<workspace>/<id>`).
606pub const WORKSPACE_SEPARATOR: char = '/';
607
608/// Render a cross-workspace reference as a link target (`id:<workspace>/<id>`).
609pub fn foreign_id_target(workspace: &str, id: &crate::identity::Id) -> String {
610 format!("{ID_SCHEME}{workspace}{WORKSPACE_SEPARATOR}{id}")
611}
612
613/// Whether `name` is a usable workspace self-name.
614///
615/// The constraint comes entirely from where the name is *written*: it is the
616/// qualifier in an `id:<workspace>/<id>` target, so it may not contain the
617/// [`WORKSPACE_SEPARATOR`] that divides it from the id, the `:` that ends the
618/// scheme, or whitespace (a target is a single scalar; a space would make it
619/// two). Anything else is the user's business — this is a name for humans to
620/// *choose*. [`identity::mint_workspace_id`](crate::identity::mint_workspace_id) (reached by `prov id
621/// --workspace`) can mint an opaque one for an owner with no naming authority
622/// to lean on, but only when asked: a minted name satisfies this predicate like
623/// any other, and nothing here can tell the two apart.
624///
625/// It lives beside the grammar it is a constraint on rather than in
626/// `prov-config` with the [`workspace_id`] key, because it is not a policy
627/// choice — every clause above is dictated by how [`IdRef`] parses, and a config
628/// layer that spelled its own version of this could drift from the parser that
629/// decides what a reference actually means.
630///
631/// Deliberately *not* checked: uniqueness across workspaces. Nothing here can
632/// see another workspace, so a collision is undetectable from inside; it is the
633/// resolving host's problem, and the host is the only thing with the evidence to
634/// notice ([`crate::peer`]). A minted name buys its uniqueness with width
635/// instead — the only currency available to something that cannot check.
636///
637/// [`workspace_id`]: crate::graph::ReadSettings::workspace_id
638pub fn is_valid_workspace_id(name: &str) -> bool {
639 !name.is_empty()
640 && !name
641 .chars()
642 .any(|c| c == WORKSPACE_SEPARATOR || c == ':' || c.is_whitespace())
643}
644
645/// What an `id:`-scheme target names.
646///
647/// The scheme carries three distinguishable things, and keeping them apart is
648/// the whole point: a reference prov can resolve, one it deliberately cannot,
649/// and one that is broken. See `docs/reference-styles.md`.
650#[derive(Debug, Clone, PartialEq, Eq)]
651pub enum IdRef {
652 /// `id:<id>` — a document in *this* workspace, resolved through the registry.
653 Local(crate::identity::Id),
654 /// `id:<workspace>/<id>` — a document in the workspace named `workspace`.
655 ///
656 /// prov resolves this only when `workspace` is the reading workspace's own
657 /// [`workspace_id`](crate::graph::ReadSettings::workspace_id), in which case it
658 /// *is* local and is treated as such. Any other name is somewhere prov
659 /// cannot see: the library holds no map from a workspace name to a location
660 /// (that is a fact about a device, not about an archive), so the reference is
661 /// carried, never rewritten, and never reported broken.
662 Foreign {
663 /// The workspace qualifier, exactly as written.
664 workspace: String,
665 /// The id, exactly as written. **Not** check-verified: the foreign
666 /// workspace owns its id space and need not be a prov workspace at all
667 /// (a diaryx ARK blade is a different length and alphabet), so applying
668 /// prov's check character here would reject valid references.
669 id: crate::identity::Id,
670 },
671 /// The `id:` scheme with a body that is no reference at all — an empty half
672 /// (`id:`, `id:/x`, `id:ws/`) or more than one separator (`id:a/b/c`).
673 ///
674 /// Deliberately its own case rather than falling through to a path: the
675 /// author wrote `id:`, so silently resolving the text as a filename would
676 /// turn a typo into a dangling path and hide what actually went wrong.
677 Malformed,
678}
679
680/// Parse the body of an `id:`-scheme target (the text after the scheme).
681fn parse_id_body(body: &str) -> IdRef {
682 let Some((workspace, id)) = body.split_once(WORKSPACE_SEPARATOR) else {
683 return if body.is_empty() {
684 IdRef::Malformed
685 } else {
686 IdRef::Local(crate::identity::Id(body.to_string()))
687 };
688 };
689 if workspace.is_empty() || id.is_empty() || id.contains(WORKSPACE_SEPARATOR) {
690 return IdRef::Malformed;
691 }
692 IdRef::Foreign {
693 workspace: workspace.to_string(),
694 id: crate::identity::Id(id.to_string()),
695 }
696}
697
698/// The syntactic wrapper a reference is written in — the first of the two style
699/// axes (see `docs/reference-styles.md`).
700#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
701pub enum Wrapper {
702 /// The diaryx/markdown family: `[Title](target)` or a bare target, with the
703 /// exact path rendering governed by [`ReferenceStyle::path_style`].
704 #[default]
705 Markdown,
706 /// The Obsidian wikilink: `[[target]]` / `[[target|label]]`.
707 Wikilink,
708}
709
710impl Wrapper {
711 /// Parse the `reference_wrapper` config spelling; unknown → `None`.
712 pub fn from_config_str(value: &str) -> Option<Self> {
713 match value {
714 "markdown" => Some(Self::Markdown),
715 "wikilink" => Some(Self::Wikilink),
716 _ => None,
717 }
718 }
719
720 /// The `reference_wrapper` config spelling.
721 pub fn as_config_str(self) -> &'static str {
722 match self {
723 Self::Markdown => "markdown",
724 Self::Wikilink => "wikilink",
725 }
726 }
727}
728
729/// What a reference addresses its target *by* — the second style axis.
730#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
731pub enum Addressing {
732 /// By path — rewritten on every move; rendering follows
733 /// [`ReferenceStyle::path_style`].
734 #[default]
735 Path,
736 /// By durable `id:<id>` handle — move-stable; authoring one registers the
737 /// target (the link-by-id trigger).
738 Id,
739 /// By the target's title/name, resolved nominally through the title index —
740 /// readable but not move/rename-safe, and never registers. Implies
741 /// [`Wrapper::Wikilink`].
742 Alias,
743}
744
745impl Addressing {
746 /// Parse the `reference_target` config spelling; unknown → `None`.
747 pub fn from_config_str(value: &str) -> Option<Self> {
748 match value {
749 "path" => Some(Self::Path),
750 "id" => Some(Self::Id),
751 "alias" => Some(Self::Alias),
752 _ => None,
753 }
754 }
755
756 /// The `reference_target` config spelling.
757 pub fn as_config_str(self) -> &'static str {
758 match self {
759 Self::Path => "path",
760 Self::Id => "id",
761 Self::Alias => "alias",
762 }
763 }
764}
765
766/// How a durable reference is spelled: a [`Wrapper`], an [`Addressing`], whether
767/// an `id` link carries a title label, and the path rendering used when
768/// addressing by path. This is the per-workspace default *and* the per-relation
769/// override (see [`crate::relation::Relation::style`]).
770#[derive(Debug, Clone, Copy, PartialEq, Eq)]
771pub struct ReferenceStyle {
772 /// The syntactic wrapper.
773 pub wrapper: Wrapper,
774 /// What the reference addresses its target by.
775 pub addressing: Addressing,
776 /// Whether an `id` wikilink carries a `|Title` label (a maintained cache of
777 /// the target's title). Ignored for markdown (its `[Title]` is intrinsic)
778 /// and for `alias` (the target string *is* the title).
779 pub label: bool,
780 /// Path rendering for [`Addressing::Path`] — ignored otherwise.
781 pub path_style: LinkStyle,
782}
783
784impl Default for ReferenceStyle {
785 /// Markdown path links in the default [`LinkStyle`] — the pre-existing
786 /// behavior, so an unconfigured workspace is unchanged.
787 fn default() -> Self {
788 Self {
789 wrapper: Wrapper::Markdown,
790 addressing: Addressing::Path,
791 label: false,
792 path_style: LinkStyle::default(),
793 }
794 }
795}
796
797impl ReferenceStyle {
798 /// Normalize impossible combinations: `alias` has no markdown spelling (there
799 /// is no locator to put in `[Title](…)`), so a markdown+alias request becomes
800 /// wikilink+alias.
801 pub fn normalized(mut self) -> Self {
802 if self.addressing == Addressing::Alias {
803 self.wrapper = Wrapper::Wikilink;
804 }
805 self
806 }
807
808 /// Whether authoring in this style is a *link-by-id* — the trigger that
809 /// registers the target. Only `id` addressing registers.
810 pub fn registers(self) -> bool {
811 self.addressing == Addressing::Id
812 }
813}
814
815/// Render a durable reference from the document at `from` to `to` (titled
816/// `title`) in `style`. `id` must be `Some` when the style addresses by id
817/// (the caller registers the target first); it is ignored otherwise. Returns the
818/// exact scalar to store in metadata (a wikilink scalar keeps its `[[…]]` — the
819/// metadata writer is responsible for any format-level quoting).
820pub fn format_reference(
821 style: ReferenceStyle,
822 from: &Path,
823 to: &Path,
824 id: Option<&crate::identity::Id>,
825 title: &str,
826) -> String {
827 let style = style.normalized();
828 match style.addressing {
829 // No id available (identity off / does not register on link) degrades to
830 // a path link, mirroring the pre-existing `authored_target` fallback.
831 Addressing::Id => match id {
832 Some(id) => wrap(style.wrapper, &id_target(id), title, style.label),
833 None => format_path(
834 Wrapper::Markdown,
835 style.path_style,
836 from,
837 to,
838 title,
839 style.label,
840 ),
841 },
842 Addressing::Alias => wrap_alias(title),
843 Addressing::Path => format_path(
844 style.wrapper,
845 style.path_style,
846 from,
847 to,
848 title,
849 style.label,
850 ),
851 }
852}
853
854/// Render a path reference in `wrapper` at `path_style`.
855fn format_path(
856 wrapper: Wrapper,
857 path_style: LinkStyle,
858 from: &Path,
859 to: &Path,
860 title: &str,
861 label: bool,
862) -> String {
863 match wrapper {
864 // Preserve the exact markdown/plain behavior (labeled vs bare) that
865 // `LinkStyle` already encodes — the `label` axis does not apply here.
866 Wrapper::Markdown => format_link(path_style, from, to, title),
867 Wrapper::Wikilink => wrap(
868 Wrapper::Wikilink,
869 &path_text(path_style, from, to),
870 title,
871 label,
872 ),
873 }
874}
875
876/// The bare path *text* a path reference points at, in the shape `path_style`
877/// selects: workspace-absolute (`/canonical`), relative, or canonical.
878pub fn path_text(path_style: LinkStyle, from: &Path, to: &Path) -> String {
879 match path_style {
880 LinkStyle::MarkdownRoot | LinkStyle::PlainRoot => format!("/{}", to.to_string_lossy()),
881 LinkStyle::MarkdownRelative | LinkStyle::PlainRelative => {
882 relative(from.parent().unwrap_or(Path::new("")), to)
883 }
884 }
885}
886
887/// Wrap a resolved `target` (already scheme-/path-formatted) in `wrapper`,
888/// attaching `title` as a label when `with_label`. A markdown reference without
889/// a label is emitted bare (`id:xxx`) — the diaryx-shaped id link.
890fn wrap(wrapper: Wrapper, target: &str, title: &str, with_label: bool) -> String {
891 match (wrapper, with_label) {
892 (Wrapper::Wikilink, true) => format!("[[{target}|{title}]]"),
893 (Wrapper::Wikilink, false) => format!("[[{target}]]"),
894 (Wrapper::Markdown, true) => format!("[{title}]({})", emit_target(target)),
895 (Wrapper::Markdown, false) => emit_target(target),
896 }
897}
898
899/// An alias reference: the title itself, as a bare-name wikilink.
900fn wrap_alias(title: &str) -> String {
901 format!("[[{title}]]")
902}
903
904/// A wikilink embedded in a document's body: `[[target]]` or, with an Obsidian
905/// pipe label, `[[target|label]]`.
906///
907/// This is the body-text sibling of a metadata [`Link`]. The `target` is either
908/// a path (`[[notes/a.md]]`, the identity-free Diaryx-style link that moves
909/// rewrite) or a `colophon:<id>` reference (`[[colophon:ajp7eq]]`, the
910/// location-independent Obsidian-style link that moves leave alone — the
911/// registry update is its maintenance). Which one a workspace mints is a policy
912/// choice; discovering the span is not, so the scanner is neutral between them.
913///
914/// [`span`](Wikilink::span) is the byte range of the whole `[[…]]` construct in
915/// the source body — exactly what a rewrite replaces, so a path retarget can
916/// splice a new target back in without re-parsing the prose around it.
917#[derive(Debug, Clone, PartialEq, Eq)]
918pub struct Wikilink {
919 /// The target as written between `[[` and the `|` (or the closing `]]`),
920 /// trimmed of surrounding whitespace.
921 pub target: String,
922 /// The display label after `|`, when written `[[target|label]]`.
923 pub label: Option<String>,
924 /// Byte range of the entire `[[…]]` span within the scanned body.
925 pub span: Range<usize>,
926}
927
928impl Wikilink {
929 /// Build a wikilink from the raw inner text (between `[[` and `]]`) and its
930 /// span. Splits an Obsidian `target|label` on the first `|`; an empty target
931 /// (e.g. `[[]]` or `[[ | x ]]`) is not a link and yields `None`.
932 fn from_inner(inner: &str, span: Range<usize>) -> Option<Self> {
933 let (target, label) = match inner.split_once('|') {
934 Some((target, label)) => (target.trim(), Some(label.trim().to_string())),
935 None => (inner.trim(), None),
936 };
937 if target.is_empty() {
938 return None;
939 }
940 Some(Self {
941 target: target.to_string(),
942 label,
943 span,
944 })
945 }
946
947 /// Render back to `[[target]]` / `[[target|label]]`. Surrounding whitespace
948 /// inside the brackets is not preserved — the rendered form is canonical.
949 pub fn render(&self) -> String {
950 match &self.label {
951 Some(label) => format!("[[{}|{label}]]", self.target),
952 None => format!("[[{}]]", self.target),
953 }
954 }
955
956 /// This wikilink with a different target, keeping the label — the move path
957 /// uses it to rewrite a *path* target while leaving the display text intact.
958 /// (ID targets are never rewritten; that is the whole point of using one.)
959 pub fn with_target(&self, target: impl Into<String>) -> Self {
960 Self {
961 target: target.into(),
962 label: self.label.clone(),
963 span: self.span.clone(),
964 }
965 }
966
967 /// The stable ID this wikilink names, when its target uses the `id:<id>`
968 /// scheme (or the legacy `colophon:<id>` spelling) — `None` for a plain path
969 /// target. Mirrors [`Link::id_target`], including its locator handling:
970 /// `[[id:abc1234#2]]` names the document `abc1234`.
971 pub fn id_target(&self) -> Option<crate::identity::Id> {
972 strip_id_scheme(split_locator(&self.target).0).map(|id| crate::identity::Id(id.to_string()))
973 }
974}
975
976/// Scan body prose for every `[[…]]` wikilink, in source order, each carrying
977/// its byte span. Purely lexical: unclosed `[[` is ignored, the first following
978/// `]]` closes the span, and no markdown structure (code spans, escapes) is
979/// interpreted — a higher layer decides whether a match in a code fence counts.
980pub fn parse_wikilinks(body: &str) -> Vec<Wikilink> {
981 let mut out = Vec::new();
982 let mut base = 0; // byte offset of `rest` within `body`
983 let mut rest = body;
984 while let Some(open_rel) = rest.find("[[") {
985 let open = base + open_rel;
986 let after_open = open + 2;
987 let Some(close_rel) = body[after_open..].find("]]") else {
988 break; // no closing delimiter anywhere ahead — nothing more to find
989 };
990 let close = after_open + close_rel;
991 if let Some(link) = Wikilink::from_inner(&body[after_open..close], open..close + 2) {
992 out.push(link);
993 }
994 base = close + 2;
995 rest = &body[base..];
996 }
997 out
998}
999
1000/// Keep only the wikilinks in `links` whose span does not overlap any of
1001/// `code_spans` — the code-awareness DESIGN §8 asks for: a `[[…]]` that is
1002/// really code (inside a fenced/inline code span) must never be treated as a
1003/// link.
1004///
1005/// **Caveat:** this only helps for a `links` list in which every real
1006/// wikilink was already found as its own match. It cannot rescue a real
1007/// `[[…]]` that [`parse_wikilinks`]' greedy "next `]]` wins" scan has already
1008/// merged into one bogus match together with an unrelated `[[` earlier in
1009/// the same code span — by the time that happens, the real link was never
1010/// emitted as a separate [`Wikilink`] to keep. [`scan_wikilinks`] avoids the
1011/// problem at the source (it never lets a lexical scan cross a code span in
1012/// the first place) and is what `census`/`check`/rename actually use; reach
1013/// for this function only when you already have a trustworthy `Vec<Wikilink>`
1014/// (e.g. from a segment [`scan_wikilinks`] itself produced) and just need the
1015/// range check.
1016pub fn exclude_code_spans(links: Vec<Wikilink>, code_spans: &[Range<usize>]) -> Vec<Wikilink> {
1017 links
1018 .into_iter()
1019 .filter(|link| {
1020 !code_spans
1021 .iter()
1022 .any(|cs| cs.start < link.span.end && link.span.start < cs.end)
1023 })
1024 .collect()
1025}
1026
1027/// Scan `body` for wikilinks the way `census`/`check`/the rename machinery
1028/// actually should — never [`parse_wikilinks`] directly. When `path`'s
1029/// extension names a format `twig` understands, every code span (fenced/inline
1030/// code, raw escapes) is treated as opaque *before* the lexical `[[`…`]]` scan
1031/// ever sees it: each prose run between code spans is scanned on its own and the
1032/// results stitched back into `body`-relative spans. For an unrecognized
1033/// extension — or if the parse fails — this is exactly [`parse_wikilinks`] over
1034/// the whole body, the same behavior as before code-awareness existed.
1035///
1036/// The span is **lexical either way**: twig has no wikilink concept, so it
1037/// supplies the mask and nothing more. A caller about to *rewrite* what a span
1038/// covers wants [`parsed_link_spans`] instead, which reports only spans twig
1039/// itself identified as links.
1040///
1041/// Scanning prose runs *separately*, rather than scanning the whole body and
1042/// filtering the results (what [`exclude_code_spans`] alone can do), matters:
1043/// [`parse_wikilinks`]' greedy scan finds each `[[` a *later* `]]`, code or
1044/// not, closes — so one stray `[[` in a code block (a Python
1045/// `[[float('inf')] * width ...]`, DESIGN §8's motivating example, life-sized)
1046/// can eat every `]]` after it, including a real `[[gone.md]]` further down
1047/// the body, merging them into one bogus match that swallows the real link
1048/// whole. No post-hoc filter can get that link back — it was never emitted
1049/// as its own match. Keeping code spans out of the scan in the first place
1050/// is the only fix; this function is that fix.
1051pub fn scan_wikilinks(path: &Path, body: &str) -> Vec<Wikilink> {
1052 match code_spans_for(path, body) {
1053 Some(spans) if !spans.is_empty() => scan_outside_spans(body, &merge_spans(spans)),
1054 _ => parse_wikilinks(body),
1055 }
1056}
1057
1058/// One link found in body prose: the parsed [`Link`] (target, label, and whether
1059/// it was an Obsidian `[[…]]` wikilink or a markdown/djot `[label](target)`
1060/// link) together with the byte [`span`](BodyLink::span) of the whole construct
1061/// — exactly what a rewrite replaces. The unifying body-link currency: census,
1062/// `check`, and the rename machinery all consume this, blind to which syntax the
1063/// link was written in.
1064#[derive(Debug, Clone, PartialEq, Eq)]
1065pub struct BodyLink {
1066 /// The parsed link — [`render`](Link::render) reproduces its original
1067 /// wrapper, so a retargeted `[[a]]` stays a wikilink and a `[t](a)` stays a
1068 /// markdown link.
1069 pub link: Link,
1070 /// Byte range of the whole link construct within the scanned body.
1071 pub span: Range<usize>,
1072}
1073
1074impl BodyLink {
1075 /// The stable ID this link names, if any — [`Link::id_target`] on the inner
1076 /// link. ID targets are never rewritten by a move.
1077 pub fn id_target(&self) -> Option<crate::identity::Id> {
1078 self.link.id_target()
1079 }
1080
1081 /// Whether this link's target is a path — [`Link::is_path_target`] on the
1082 /// inner link. The predicate the body-rewrite passes filter on.
1083 pub fn is_path_target(&self) -> bool {
1084 self.link.is_path_target()
1085 }
1086}
1087
1088/// Scan `body` for **every** link a move or a check must account for — Obsidian
1089/// `[[…]]` wikilinks *and* markdown/djot `[label](target)` links — each as a
1090/// [`BodyLink`] in source order. This is the single body-scan seam
1091/// `census`/`check`/rename use; it supersedes the wikilink-only
1092/// [`scan_wikilinks`] for callers that must also see markdown/djot links.
1093///
1094/// Two syntaxes, two finders, both code-aware:
1095/// - **Wikilinks** come from the lexical [`scan_wikilinks`] scan (code spans
1096/// excluded at the source, so a `[[` inside a fence can never eat a later real
1097/// link).
1098/// - **Markdown/djot links** come from `twig`'s parser
1099/// ([`crate::content::link_spans`]): it reports the span of each real `link`
1100/// node, so a `[x](y)` in a code fence, an autolink, or bracket text that is
1101/// not a link is never returned. Each span holds exactly one link, so parsing
1102/// it with [`Link::parse`] cannot over-reach across a stray `)` — the
1103/// balanced-paren hazard the lexical parser has is structurally absent here.
1104/// Only inline `[label](target)` links are kept (a successful markdown parse);
1105/// reference-style and autolink forms are left for a later pass.
1106///
1107/// Falls back to wikilinks only when the extension names no `twig` grammar or the
1108/// parse fails — the same graceful degradation [`scan_wikilinks`] already has.
1109pub fn scan_body_links(path: &Path, body: &str) -> Vec<BodyLink> {
1110 let mut out: Vec<BodyLink> = scan_wikilinks(path, body)
1111 .into_iter()
1112 .map(|wl| BodyLink {
1113 link: Link {
1114 label: wl.label,
1115 target: wl.target,
1116 wikilink: true,
1117 },
1118 span: wl.span,
1119 })
1120 .collect();
1121 for span in parsed_link_spans(path, body) {
1122 let link = Link::parse(&body[span.clone()]);
1123 // Keep only inline `[label](target)` links (a labeled markdown parse):
1124 // reference/autolink spans parse to a bare or external target and are
1125 // skipped. Defensively drop a span overlapping a wikilink we already have.
1126 if link.label.is_none() || link.wikilink {
1127 continue;
1128 }
1129 if out
1130 .iter()
1131 .any(|b| b.span.start < span.end && span.start < b.span.end)
1132 {
1133 continue;
1134 }
1135 out.push(BodyLink { link, span });
1136 }
1137 out.sort_by_key(|b| b.span.start);
1138 out
1139}
1140
1141/// The spans of markdown/djot inline links in `body`, via `twig` — empty when
1142/// `path`'s extension names no grammar `twig` understands or the parse fails
1143/// (the same degrade-to-lexical rule as `code_spans_for`).
1144///
1145/// **The "twig says it is a link" predicate.** These spans come from twig's own
1146/// `link` nodes, so a span here is a link an actual parser recognized, and each
1147/// holds exactly one link. That is a materially stronger claim than
1148/// [`scan_wikilinks`] can make about a `[[…]]`: twig has no wikilink concept, so
1149/// it only supplies the *code mask* there and the span itself is still lexical.
1150/// The gap matters wherever a repair is going to *write* — a lexical span may sit
1151/// in prose that merely looks like a link, and DESIGN §8's whole objection to
1152/// editing body prose is that `[[float('inf')] * width]` must never be
1153/// "repaired". So `validate`'s body-link remedies are offered for a span in this
1154/// set and no other.
1155pub fn parsed_link_spans(path: &Path, body: &str) -> Vec<Range<usize>> {
1156 let Some(format) = crate::content::ContentFormat::from_extension(path) else {
1157 return Vec::new();
1158 };
1159 crate::content::link_spans(body, format).unwrap_or_default()
1160}
1161
1162/// Sort-then-merge overlapping/adjacent ranges. `code_spans_for`'s sources
1163/// don't currently nest or overlap (code-block/verbatim/raw nodes are AST
1164/// leaves), but merging first keeps [`scan_outside_spans`] correct even if
1165/// that ever changes, and collapses touching spans into one gap-free skip.
1166fn merge_spans(mut spans: Vec<Range<usize>>) -> Vec<Range<usize>> {
1167 spans.sort_by_key(|s| s.start);
1168 let mut out: Vec<Range<usize>> = Vec::with_capacity(spans.len());
1169 for span in spans {
1170 match out.last_mut() {
1171 Some(prev) if span.start <= prev.end => prev.end = prev.end.max(span.end),
1172 _ => out.push(span),
1173 }
1174 }
1175 out
1176}
1177
1178/// Run [`parse_wikilinks`] independently on each run of `body` outside
1179/// `code_spans` (sorted, non-overlapping), then shift each match's span back
1180/// to `body`-relative coordinates before stitching the runs' results
1181/// together in source order. This is what keeps a `[[` inside a code span
1182/// from ever being in the same scan as prose that follows it.
1183fn scan_outside_spans(body: &str, code_spans: &[Range<usize>]) -> Vec<Wikilink> {
1184 let mut out = Vec::new();
1185 let mut cursor = 0;
1186 for span in code_spans {
1187 if cursor < span.start {
1188 out.extend(shift_spans(
1189 parse_wikilinks(&body[cursor..span.start]),
1190 cursor,
1191 ));
1192 }
1193 cursor = cursor.max(span.end);
1194 }
1195 if cursor < body.len() {
1196 out.extend(shift_spans(parse_wikilinks(&body[cursor..]), cursor));
1197 }
1198 out
1199}
1200
1201fn shift_spans(links: Vec<Wikilink>, offset: usize) -> Vec<Wikilink> {
1202 links
1203 .into_iter()
1204 .map(|link| Wikilink {
1205 span: link.span.start + offset..link.span.end + offset,
1206 ..link
1207 })
1208 .collect()
1209}
1210
1211fn code_spans_for(path: &Path, body: &str) -> Option<Vec<Range<usize>>> {
1212 let format = crate::content::ContentFormat::from_extension(path)?;
1213 // A twig failure degrades to "no spans" rather than aborting the scan —
1214 // code-awareness is a refinement, the purely lexical scan above is
1215 // always a safe fallback. An unrecognized extension is `None` (via
1216 // `from_extension`), scanning the whole body as before.
1217 crate::content::code_spans(body, format).ok()
1218}
1219
1220// Lexical path handling lives in `fs-transaction`, which needs the same
1221// normalization to clamp a staged op to its root. Re-exported here so prov's
1222// read guards and its write guards demonstrably share one implementation
1223// rather than two that agree by inspection.
1224pub use fs_transaction::path::{escapes_root, normalize};
1225
1226/// Resolve a link target written in `doc` to a normalized path in the same
1227/// coordinate system as `doc` (workspace-relative when `doc` is). A target with
1228/// a leading `/` is **workspace-absolute** — resolved from the root, not `doc`'s
1229/// directory, and never against the filesystem root; any other target is
1230/// relative to `doc`'s directory.
1231///
1232/// Any [sub-document locator](Link::locator) is dropped first: it names a place
1233/// inside the document, so it has no bearing on which file this is.
1234pub fn resolve(doc: &Path, target: &str) -> PathBuf {
1235 let (target, _) = split_locator(target);
1236 if let Some(from_root) = target.strip_prefix('/') {
1237 return normalize(from_root);
1238 }
1239 let dir = doc.parent().unwrap_or(Path::new(""));
1240 normalize(dir.join(target))
1241}
1242
1243/// The relative path string that reaches `to` from `from_dir` (both normalized,
1244/// same coordinate system). Rendered with forward slashes — link targets are
1245/// text, not platform paths.
1246pub fn relative(from_dir: &Path, to: &Path) -> String {
1247 let from: Vec<&std::ffi::OsStr> = from_dir.iter().collect();
1248 let to_parts: Vec<&std::ffi::OsStr> = to.iter().collect();
1249 let common = from
1250 .iter()
1251 .zip(to_parts.iter())
1252 .take_while(|(a, b)| a == b)
1253 .count();
1254 let mut parts: Vec<String> = Vec::new();
1255 for _ in common..from.len() {
1256 parts.push("..".to_string());
1257 }
1258 for part in &to_parts[common..] {
1259 parts.push(part.to_string_lossy().into_owned());
1260 }
1261 if parts.is_empty() {
1262 ".".to_string()
1263 } else {
1264 parts.join("/")
1265 }
1266}
1267
1268#[cfg(test)]
1269mod tests {
1270 use super::*;
1271 use std::path::Component;
1272
1273 #[test]
1274 fn locator_splits_at_the_first_separator_and_round_trips() {
1275 assert_eq!(split_locator("chapter.md"), ("chapter.md", None));
1276 assert_eq!(split_locator("chapter.md#3"), ("chapter.md", Some("3")));
1277 assert_eq!(split_locator("id:abc1234#2-3"), ("id:abc1234", Some("2-3")));
1278 // First separator wins, so a locator may itself contain one.
1279 assert_eq!(split_locator("a.md#b#c"), ("a.md", Some("b#c")));
1280 // An empty locator is still a locator — the author wrote the `#`.
1281 assert_eq!(split_locator("a.md#"), ("a.md", Some("")));
1282 // A leading `#` is a same-document reference, not a locator on "".
1283 assert_eq!(split_locator("#3"), ("#3", None));
1284
1285 for target in ["chapter.md", "chapter.md#3", "a.md#b#c", "a.md#", "#3"] {
1286 let (doc, locator) = split_locator(target);
1287 assert_eq!(join_locator(doc, locator), target, "round-trip `{target}`");
1288 }
1289 }
1290
1291 #[test]
1292 fn a_locator_does_not_change_which_document_is_named() {
1293 // Path targets: the locator is dropped before resolution.
1294 assert_eq!(
1295 resolve(Path::new("bofm/1-ne-1.md"), "1-ne-2.md#5"),
1296 PathBuf::from("bofm/1-ne-2.md")
1297 );
1298 assert_eq!(
1299 resolve(Path::new("a/b.md"), "/vol/c.md#2-3"),
1300 PathBuf::from("vol/c.md")
1301 );
1302
1303 // Id targets: same id with or without a locator.
1304 let plain = Link::parse("[1 Nephi 1](id:abc1234)");
1305 let located = Link::parse("[1 Nephi 1:1](id:abc1234#1)");
1306 assert_eq!(located.id_target(), plain.id_target());
1307 assert_eq!(located.id_ref(), plain.id_ref());
1308 assert_eq!(located.locator(), Some("1"));
1309 assert_eq!(located.addressed_target(), "id:abc1234");
1310 assert_eq!(plain.locator(), None);
1311
1312 // …and a located id target is still not a path, so no move rewrites it.
1313 assert!(!located.is_path_target());
1314 }
1315
1316 #[test]
1317 fn an_external_url_keeps_its_own_fragment() {
1318 let url = Link::parse("[talk](https://example.com/a#p3)");
1319 assert!(url.is_external());
1320 assert_eq!(url.locator(), None);
1321 assert_eq!(url.addressed_target(), "https://example.com/a#p3");
1322 // Untouched by a rewrite, fragment and all.
1323 assert_eq!(url.with_path("x.md").render(), "[talk](x.md)");
1324 }
1325
1326 #[test]
1327 fn with_path_preserves_the_locator_but_with_target_does_not() {
1328 let link = Link::parse("[1 Nephi 1:1](../1-ne-1.md#1)");
1329 // The rewrite passes use `with_path`: a move changes where the document
1330 // lives, never which part of it was pointed at.
1331 assert_eq!(
1332 link.with_path("bofm/1-ne-1.md").render(),
1333 "[1 Nephi 1:1](bofm/1-ne-1.md#1)"
1334 );
1335 // `with_target` still sets the target verbatim.
1336 assert_eq!(
1337 link.with_target("bofm/1-ne-1.md").render(),
1338 "[1 Nephi 1:1](bofm/1-ne-1.md)"
1339 );
1340 // A wikilink keeps its wrapper and its locator alike.
1341 let wl = Link::parse("[[1-ne-1.md#1|1 Nephi 1:1]]");
1342 assert_eq!(wl.locator(), Some("1"));
1343 assert_eq!(wl.with_path("x.md").render(), "[[x.md#1|1 Nephi 1:1]]");
1344 }
1345
1346 #[test]
1347 fn slug_makes_readable_stems_and_round_trips_the_common_case() {
1348 assert_eq!(slug("My Great Note"), "my-great-note");
1349 // Collapses/strips separators and punctuation; keeps it legible.
1350 assert_eq!(slug(" Hello, World! "), "hello-world");
1351 assert_eq!(slug("already-a-slug"), "already-a-slug");
1352 assert_eq!(slug("under_scored/and slashed"), "under-scored-and-slashed");
1353 assert_eq!(slug("v1.0 Release"), "v10-release");
1354 // Unicode letters/digits survive.
1355 assert_eq!(slug("Café Notes"), "café-notes");
1356 // No leading/trailing/double dashes ever reach the output.
1357 assert_eq!(slug("--x--y--"), "x-y");
1358 // A title with nothing slug-able still yields a valid stem.
1359 assert_eq!(slug("!!!"), "untitled");
1360 assert_eq!(slug(""), "untitled");
1361 // The everyday case is the inverse of path_to_title.
1362 assert_eq!(
1363 path_to_title(std::path::Path::new("my-great-note.md")),
1364 "My Great Note"
1365 );
1366 }
1367
1368 #[test]
1369 fn parses_labeled_and_bare_links() {
1370 let l = Link::parse("[Design](docs/design.md)");
1371 assert_eq!(l.label.as_deref(), Some("Design"));
1372 assert_eq!(l.target, "docs/design.md");
1373 assert_eq!(l.render(), "[Design](docs/design.md)");
1374
1375 let bare = Link::parse("notes/a.md");
1376 assert_eq!(bare.label, None);
1377 assert_eq!(bare.render(), "notes/a.md");
1378 }
1379
1380 #[test]
1381 fn odd_shapes_fall_back_to_bare() {
1382 // A target with brackets but not the [label](target) shape.
1383 for raw in ["[unclosed](x", "no[mid](x)", "[]"] {
1384 assert_eq!(Link::parse(raw).render(), raw);
1385 }
1386 }
1387
1388 #[test]
1389 fn with_target_keeps_the_label() {
1390 let l = Link::parse("[Design](old.md)").with_target("new.md");
1391 assert_eq!(l.render(), "[Design](new.md)");
1392 }
1393
1394 #[test]
1395 fn external_links_are_flagged() {
1396 assert!(Link::parse("https://example.com/x").is_external());
1397 assert!(Link::parse("[me](mailto:a@b.c)").is_external());
1398 assert!(!Link::parse("docs/design.md").is_external());
1399 }
1400
1401 #[test]
1402 fn id_refs_split_into_local_foreign_and_malformed() {
1403 use crate::identity::Id;
1404 let r = |t: &str| Link::parse(t).id_ref();
1405 assert_eq!(r("id:ajp7eq"), Some(IdRef::Local(Id("ajp7eq".into()))));
1406 assert_eq!(
1407 r("id:notes/ajp7eq"),
1408 Some(IdRef::Foreign {
1409 workspace: "notes".into(),
1410 id: Id("ajp7eq".into()),
1411 })
1412 );
1413 // The legacy scheme carries a qualifier just as well — an old workspace
1414 // gains cross-workspace references without a rewrite.
1415 assert_eq!(
1416 r("colophon:notes/ajp7eq"),
1417 Some(IdRef::Foreign {
1418 workspace: "notes".into(),
1419 id: Id("ajp7eq".into()),
1420 })
1421 );
1422 // Every way the scheme can be present but the reference absent.
1423 for bad in ["id:", "id:/x", "id:ws/", "id:a/b/c"] {
1424 assert_eq!(r(bad), Some(IdRef::Malformed), "{bad}");
1425 }
1426 // No scheme at all is not an id ref — it is a path or an alias.
1427 assert_eq!(r("docs/design.md"), None);
1428 assert_eq!(r("https://example.com/x"), None);
1429 }
1430
1431 #[test]
1432 fn a_foreign_id_is_not_a_local_id() {
1433 // The distinction that keeps a foreign reference from being looked up in
1434 // the wrong registry: `id_target` is *local ids only*.
1435 let foreign = Link::parse("id:notes/ajp7eq");
1436 assert_eq!(foreign.id_target(), None);
1437 assert_eq!(
1438 foreign.foreign_target(),
1439 Some(("notes".into(), crate::identity::Id("ajp7eq".into())))
1440 );
1441 let local = Link::parse("id:ajp7eq");
1442 assert_eq!(
1443 local.id_target(),
1444 Some(crate::identity::Id("ajp7eq".into()))
1445 );
1446 assert_eq!(local.foreign_target(), None);
1447 }
1448
1449 #[test]
1450 fn only_paths_are_path_targets() {
1451 // The predicate every rewrite pass filters on. A move may rewrite the
1452 // first group and must leave the second alone — including the malformed
1453 // id, which is a broken reference, not a filename to re-relativize.
1454 for path in ["docs/design.md", "/a.md", "../b.md", "My Note"] {
1455 assert!(Link::parse(path).is_path_target(), "{path}");
1456 }
1457 for stable in [
1458 "id:ajp7eq",
1459 "id:notes/ajp7eq",
1460 "colophon:notes/ajp7eq",
1461 "id:a/b/c",
1462 "https://example.com/x",
1463 "mailto:a@b.c",
1464 ] {
1465 assert!(!Link::parse(stable).is_path_target(), "{stable}");
1466 }
1467 }
1468
1469 #[test]
1470 fn foreign_targets_round_trip_through_rendering() {
1471 let target = foreign_id_target("notes", &crate::identity::Id("ajp7eq".into()));
1472 assert_eq!(target, "id:notes/ajp7eq");
1473 assert_eq!(
1474 Link::parse(&target).foreign_target(),
1475 Some(("notes".into(), crate::identity::Id("ajp7eq".into())))
1476 );
1477 // Through a labeled wikilink too, since that is how diaryx would author
1478 // one — the wrapper is orthogonal to the addressing.
1479 let wl = Link::parse("[[id:notes/ajp7eq|My Note]]");
1480 assert_eq!(wl.label.as_deref(), Some("My Note"));
1481 assert_eq!(
1482 wl.foreign_target(),
1483 Some(("notes".into(), crate::identity::Id("ajp7eq".into())))
1484 );
1485 assert_eq!(wl.render(), "[[id:notes/ajp7eq|My Note]]");
1486 }
1487
1488 #[test]
1489 fn parses_angle_bracketed_and_absolute_targets() {
1490 // Diaryx-style: a labeled link to an angle-bracketed, workspace-absolute
1491 // path containing a space.
1492 let l = Link::parse("[Archived Documents](</Archive/Archived documents.md>)");
1493 assert_eq!(l.label.as_deref(), Some("Archived Documents"));
1494 assert_eq!(l.target, "/Archive/Archived documents.md");
1495 // Round-trips: the space forces the angle brackets back on render.
1496 assert_eq!(
1497 l.render(),
1498 "[Archived Documents](</Archive/Archived documents.md>)"
1499 );
1500
1501 // A bare angle-bracketed target — no `[label](…)` around it — is
1502 // *not* unwrapped: angle brackets are only URL delimiters inside a
1503 // parsed markdown link, so a bare `<…>` value stays byte-literal (C2;
1504 // diaryx reads a bare `<…>` as a literal path, brackets and all). This
1505 // used to unwrap unconditionally; see `bare_angle_bracket_value_stays_literal`
1506 // for the dedicated regression coverage.
1507 let bare = Link::parse("</Creative Writing/Creative Writing.md>");
1508 assert_eq!(bare.target, "</Creative Writing/Creative Writing.md>");
1509 assert_eq!(bare.render(), "</Creative Writing/Creative Writing.md>");
1510
1511 // An absolute path without spaces needs no brackets, and stays bare.
1512 let plain = Link::parse("[Blog](/Blog/Blog.md)");
1513 assert_eq!(plain.target, "/Blog/Blog.md");
1514 assert_eq!(plain.render(), "[Blog](/Blog/Blog.md)");
1515 }
1516
1517 /// C2 regression: before the fix, the bare-value fallback ran `unbracket`
1518 /// on the *whole* raw value, so any `<...>`-shaped bare string (not just
1519 /// the diaryx example above) was silently unwrapped. Now the bare branch
1520 /// never touches angle brackets — only a successfully parsed
1521 /// `[label](<target>)` URL gets unwrapped.
1522 #[test]
1523 fn bare_angle_bracket_value_stays_literal() {
1524 for raw in ["<notes/a.md>", "<https://example.com>", "<a (b) c>", "<>"] {
1525 let l = Link::parse(raw);
1526 assert_eq!(l.label, None);
1527 assert_eq!(l.target, raw, "bare angle-bracket value must be literal");
1528 assert_eq!(l.render(), raw);
1529 }
1530 // Contrast: the *same* angle-bracketed text, once it's the URL of an
1531 // actual markdown link, is unwrapped — that part of the old behavior
1532 // was correct and stays.
1533 assert_eq!(Link::parse("[x](<notes/a.md>)").target, "notes/a.md");
1534 }
1535
1536 /// C3 regression: before the fix, the markdown-link branch demanded the
1537 /// *entire* trimmed input end in `)` (`raw.strip_suffix(')')`), so any
1538 /// trailing text after a well-formed link's closing paren made the whole
1539 /// value fall through to the bare branch — the complete string, including
1540 /// the `[label](target)` syntax, became one literal target. Balanced-paren
1541 /// scanning fixes both halves of that: trailing text is tolerated, and
1542 /// parens *inside* the target (nested, even) don't confuse the scan.
1543 #[test]
1544 fn markdown_link_split_tolerates_trailing_text_and_balanced_parens() {
1545 // Trailing prose after a legitimate link is ignored, not swallowed.
1546 let l = Link::parse("[Title](/path.md) trailing junk");
1547 assert_eq!(l.label.as_deref(), Some("Title"));
1548 assert_eq!(l.target, "/path.md");
1549
1550 // A target containing its own parens still closes at the matching `)`.
1551 let l = Link::parse("[Explanation (1.1)](/Archive/Explanation (1.1).md)");
1552 assert_eq!(l.label.as_deref(), Some("Explanation (1.1)"));
1553 assert_eq!(l.target, "/Archive/Explanation (1.1).md");
1554
1555 // Nested parens in the target keep working.
1556 let l = Link::parse("[File (a (b))](/path/file (a (b)).md)");
1557 assert_eq!(l.label.as_deref(), Some("File (a (b))"));
1558 assert_eq!(l.target, "/path/file (a (b)).md");
1559
1560 // Trailing text *and* parens in the target, together.
1561 let l = Link::parse("[T](/a (1).md) and then some more words");
1562 assert_eq!(l.target, "/a (1).md");
1563
1564 // An angle-bracketed URL still requires the `>` immediately followed by
1565 // `)` — trailing text after *that* `)` is likewise tolerated.
1566 let l = Link::parse("[Notes](</My Notes/x.md>) ignored tail");
1567 assert_eq!(l.target, "/My Notes/x.md");
1568
1569 // An unterminated target (no closing paren at all) still falls back to
1570 // bare, unchanged from before.
1571 let unterminated = "[Title](/path.md";
1572 assert_eq!(Link::parse(unterminated).render(), unterminated);
1573 }
1574
1575 /// C1: `parse_path_only` opts out of the `[[…]]` wikilink convention so a
1576 /// frontmatter path field can hold a literal bracket-shaped string without
1577 /// `Link::parse` reinterpreting it — the convention diaryx's own path-value
1578 /// parser never had. `parse` is unchanged (still treats it as a wikilink).
1579 #[test]
1580 fn wikilink_opt_out_keeps_bracket_literal_string() {
1581 let ordinary = Link::parse("[[notes/a.md]]");
1582 assert!(ordinary.wikilink);
1583 assert_eq!(ordinary.target, "notes/a.md");
1584
1585 let opted_out = Link::parse_path_only("[[notes/a.md]]");
1586 assert!(!opted_out.wikilink);
1587 assert_eq!(opted_out.label, None);
1588 assert_eq!(opted_out.target, "[[notes/a.md]]");
1589 assert_eq!(opted_out.render(), "[[notes/a.md]]");
1590
1591 // A pipe-labeled wikilink scalar is likewise kept as one literal bare
1592 // string, not split into label/target.
1593 let piped = Link::parse_path_only("[[notes/a.md|My Note]]");
1594 assert_eq!(piped.label, None);
1595 assert_eq!(piped.target, "[[notes/a.md|My Note]]");
1596
1597 // Every other `parse` rule is unaffected: markdown links, bare paths,
1598 // and angle-bracket handling (both C2's literal-bare and C3's
1599 // balanced-paren splitting) all behave identically under the opt-out.
1600 assert_eq!(
1601 Link::parse_path_only("[Design](docs/design.md)"),
1602 Link::parse("[Design](docs/design.md)")
1603 );
1604 assert_eq!(
1605 Link::parse_path_only("notes/a.md"),
1606 Link::parse("notes/a.md")
1607 );
1608 assert_eq!(
1609 Link::parse_path_only("<notes/a.md>"),
1610 Link::parse("<notes/a.md>")
1611 );
1612 }
1613
1614 #[test]
1615 fn formats_links_in_each_workspace_style() {
1616 let from = Path::new("School/MATH 213/hw.md");
1617 let target = Path::new("School/Archive/MATH 213 files.md");
1618 // MarkdownRoot: absolute, titled, angle-bracketed for the space.
1619 assert_eq!(
1620 format_link(LinkStyle::MarkdownRoot, from, target, "MATH 213 Files"),
1621 "[MATH 213 Files](</School/Archive/MATH 213 files.md>)"
1622 );
1623 // MarkdownRelative: relative, titled.
1624 assert_eq!(
1625 format_link(LinkStyle::MarkdownRelative, from, target, "MATH 213 Files"),
1626 "[MATH 213 Files](<../Archive/MATH 213 files.md>)"
1627 );
1628 // Plain styles: bare, no title.
1629 assert_eq!(
1630 format_link(LinkStyle::PlainRelative, from, target, "ignored"),
1631 "../Archive/MATH 213 files.md"
1632 );
1633 assert_eq!(
1634 format_link(LinkStyle::PlainRoot, from, target, "ignored"),
1635 "/School/Archive/MATH 213 files.md"
1636 );
1637 }
1638
1639 #[test]
1640 fn link_style_axes_round_trip_and_cover_every_combination() {
1641 use Notation::*;
1642 use PathStyle::*;
1643 // Every notation×path_style combination has a fused LinkStyle, and axes()
1644 // is its inverse — so the orthogonal config surface is lossless.
1645 for notation in [Markdown, Bare] {
1646 for path_style in [Root, Relative] {
1647 let style = LinkStyle::from_axes(notation, path_style);
1648 assert_eq!(style.axes(), (notation, path_style));
1649 }
1650 }
1651 // Wikilink has no bare/bracketed split, so it maps through the Markdown
1652 // family and its path text follows the path style.
1653 assert_eq!(
1654 LinkStyle::from_axes(Wikilink, Relative),
1655 LinkStyle::MarkdownRelative
1656 );
1657 assert_eq!(
1658 Notation::from_wrapper(Wrapper::Wikilink, LinkStyle::MarkdownRoot),
1659 Wikilink
1660 );
1661 assert_eq!(Notation::from_config_str("bare"), Some(Bare));
1662 assert_eq!(PathStyle::from_config_str("relative"), Some(Relative));
1663 // Retired: a bare workspace-relative path is unspellable, because a bare
1664 // path is directory-relative and the two cannot both be true.
1665 assert_eq!(PathStyle::from_config_str("canonical"), None);
1666 assert_eq!(LinkStyle::default(), LinkStyle::MarkdownRoot);
1667 assert_eq!(
1668 path_to_title(Path::new("Folder/utility_index.md")),
1669 "Utility Index"
1670 );
1671 }
1672
1673 #[test]
1674 fn the_bare_workspace_absolute_style_renders_a_leading_slash() {
1675 let from = Path::new("a/b.md");
1676 let to = Path::new("c/d.md");
1677 assert_eq!(format_link(LinkStyle::PlainRoot, from, to, "D"), "/c/d.md");
1678 }
1679
1680 #[test]
1681 fn resolves_workspace_absolute_paths_from_the_root() {
1682 // A leading slash means "from the workspace root", regardless of where
1683 // the linking document sits — and never the filesystem root.
1684 assert_eq!(
1685 resolve(Path::new("Meta/Meta files.md"), "/Blog/Blog.md"),
1686 PathBuf::from("Blog/Blog.md")
1687 );
1688 assert_eq!(
1689 resolve(Path::new("deep/nested/doc.md"), "/Resume.md"),
1690 PathBuf::from("Resume.md")
1691 );
1692 // Relative targets still resolve against the document's own directory.
1693 assert_eq!(
1694 resolve(Path::new("Meta/Meta files.md"), "../Blog/Blog.md"),
1695 PathBuf::from("Blog/Blog.md")
1696 );
1697 }
1698
1699 #[test]
1700 fn normalizes_dot_and_dotdot() {
1701 assert_eq!(normalize("a/./b/../c.md"), PathBuf::from("a/c.md"));
1702 assert_eq!(normalize("../up.md"), PathBuf::from("../up.md"));
1703 assert_eq!(normalize("a/b/../../x.md"), PathBuf::from("x.md"));
1704 }
1705
1706 #[test]
1707 fn resolves_against_the_documents_directory() {
1708 assert_eq!(
1709 resolve(Path::new("docs/index.md"), "../README.md"),
1710 PathBuf::from("README.md")
1711 );
1712 assert_eq!(
1713 resolve(Path::new("README.md"), "docs/design.md"),
1714 PathBuf::from("docs/design.md")
1715 );
1716 }
1717
1718 #[test]
1719 fn scans_bare_and_labeled_wikilinks_with_spans() {
1720 let body = "see [[notes/a.md]] and [[colophon:ajp7eq|My file]] here";
1721 let links = parse_wikilinks(body);
1722 assert_eq!(links.len(), 2);
1723
1724 assert_eq!(links[0].target, "notes/a.md");
1725 assert_eq!(links[0].label, None);
1726 assert_eq!(&body[links[0].span.clone()], "[[notes/a.md]]");
1727 assert_eq!(links[0].id_target(), None);
1728
1729 assert_eq!(links[1].target, "colophon:ajp7eq");
1730 assert_eq!(links[1].label.as_deref(), Some("My file"));
1731 assert_eq!(&body[links[1].span.clone()], "[[colophon:ajp7eq|My file]]");
1732 assert_eq!(
1733 links[1].id_target(),
1734 Some(crate::identity::Id("ajp7eq".into()))
1735 );
1736 }
1737
1738 #[test]
1739 fn wikilink_scan_trims_and_skips_degenerate_shapes() {
1740 // Whitespace inside the brackets is trimmed on both sides of the pipe.
1741 let trimmed = parse_wikilinks("x [[ notes/a.md | Label ]] y");
1742 assert_eq!(trimmed[0].target, "notes/a.md");
1743 assert_eq!(trimmed[0].label.as_deref(), Some("Label"));
1744
1745 // Empty target and unclosed openers are not links.
1746 assert!(parse_wikilinks("nothing [[]] here").is_empty());
1747 assert!(parse_wikilinks("[[ | orphan label ]]").is_empty());
1748 assert!(parse_wikilinks("dangling [[notes/a.md without close").is_empty());
1749 }
1750
1751 #[test]
1752 fn wikilink_render_round_trips_and_retargets() {
1753 let link = &parse_wikilinks("[[old.md|Design]]")[0];
1754 assert_eq!(link.render(), "[[old.md|Design]]");
1755 // Retarget keeps the label — the rename path relies on this.
1756 assert_eq!(link.with_target("new.md").render(), "[[new.md|Design]]");
1757
1758 let bare = &parse_wikilinks("[[old.md]]")[0];
1759 assert_eq!(bare.render(), "[[old.md]]");
1760 }
1761
1762 #[test]
1763 fn exclude_code_spans_drops_only_overlapping_wikilinks() {
1764 let body = "see [[notes/a.md]] and `[[not/a/link]]` too";
1765 let links = parse_wikilinks(body);
1766 assert_eq!(links.len(), 2, "the lexical scanner has no code awareness");
1767
1768 let code_start = body.find('`').unwrap();
1769 let code_end = body.rfind('`').unwrap() + 1;
1770 let code_span = code_start..code_end;
1771 let kept = exclude_code_spans(links, std::slice::from_ref(&code_span));
1772
1773 assert_eq!(kept.len(), 1);
1774 assert_eq!(kept[0].target, "notes/a.md");
1775 }
1776
1777 #[test]
1778 fn relative_walks_up_and_down() {
1779 assert_eq!(
1780 relative(Path::new("docs"), Path::new("README.md")),
1781 "../README.md"
1782 );
1783 assert_eq!(
1784 relative(Path::new(""), Path::new("docs/design.md")),
1785 "docs/design.md"
1786 );
1787 assert_eq!(relative(Path::new("a/b"), Path::new("a/b/c.md")), "c.md");
1788 assert_eq!(relative(Path::new("a/b"), Path::new("a/b")), ".");
1789 }
1790
1791 #[test]
1792 fn parses_and_round_trips_wikilink_scalars_in_metadata() {
1793 // A metadata scalar written as a wikilink resolves through the same
1794 // Link path as a markdown one, and round-trips its wrapper.
1795 let l = Link::parse("[[id:ajp7eqb|My File]]");
1796 assert!(l.wikilink);
1797 assert_eq!(l.label.as_deref(), Some("My File"));
1798 assert_eq!(l.target, "id:ajp7eqb");
1799 assert_eq!(l.id_target(), Some(crate::identity::Id("ajp7eqb".into())));
1800 assert_eq!(l.render(), "[[id:ajp7eqb|My File]]");
1801
1802 let bare = Link::parse("[[notes/a.md]]");
1803 assert!(bare.wikilink);
1804 assert_eq!(bare.label, None);
1805 assert_eq!(bare.render(), "[[notes/a.md]]");
1806 // Retarget keeps the wikilink wrapper and label.
1807 assert_eq!(
1808 l.with_target("id:zzzzzz9").render(),
1809 "[[id:zzzzzz9|My File]]"
1810 );
1811 }
1812
1813 #[test]
1814 fn id_scheme_reads_current_and_legacy_spellings() {
1815 assert_eq!(strip_id_scheme("id:ajp7eqb"), Some("ajp7eqb"));
1816 assert_eq!(strip_id_scheme("colophon:ajp7eqb"), Some("ajp7eqb"));
1817 assert_eq!(strip_id_scheme("notes/a.md"), None);
1818 // New links are authored in the `id:` spelling.
1819 assert_eq!(
1820 id_target(&crate::identity::Id("ajp7eqb".into())),
1821 "id:ajp7eqb"
1822 );
1823 assert_eq!(
1824 Link::parse("colophon:ajp7eqb").id_target().unwrap().0,
1825 "ajp7eqb"
1826 );
1827 }
1828
1829 #[test]
1830 fn format_reference_renders_each_style() {
1831 let from = Path::new("notes/hw.md");
1832 let to = Path::new("Archive/a.md");
1833 let id = crate::identity::Id("ajp7eqb".into());
1834 let s = |wrapper, addressing, label| ReferenceStyle {
1835 wrapper,
1836 addressing,
1837 label,
1838 path_style: LinkStyle::MarkdownRoot,
1839 };
1840
1841 // Markdown + path → the classic LinkStyle rendering.
1842 assert_eq!(
1843 format_reference(
1844 s(Wrapper::Markdown, Addressing::Path, false),
1845 from,
1846 to,
1847 None,
1848 "A"
1849 ),
1850 "[A](/Archive/a.md)"
1851 );
1852 // Wikilink + path, label off vs on.
1853 assert_eq!(
1854 format_reference(
1855 s(Wrapper::Wikilink, Addressing::Path, false),
1856 from,
1857 to,
1858 None,
1859 "A"
1860 ),
1861 "[[/Archive/a.md]]"
1862 );
1863 assert_eq!(
1864 format_reference(
1865 s(Wrapper::Wikilink, Addressing::Path, true),
1866 from,
1867 to,
1868 None,
1869 "A"
1870 ),
1871 "[[/Archive/a.md|A]]"
1872 );
1873 // Markdown + id: bare when unlabeled (the diaryx-shaped id link), a
1874 // titled markdown link when labeled.
1875 assert_eq!(
1876 format_reference(
1877 s(Wrapper::Markdown, Addressing::Id, false),
1878 from,
1879 to,
1880 Some(&id),
1881 "A"
1882 ),
1883 "id:ajp7eqb"
1884 );
1885 assert_eq!(
1886 format_reference(
1887 s(Wrapper::Markdown, Addressing::Id, true),
1888 from,
1889 to,
1890 Some(&id),
1891 "A"
1892 ),
1893 "[A](id:ajp7eqb)"
1894 );
1895 // Wikilink + id, no label / with label.
1896 assert_eq!(
1897 format_reference(
1898 s(Wrapper::Wikilink, Addressing::Id, false),
1899 from,
1900 to,
1901 Some(&id),
1902 "A"
1903 ),
1904 "[[id:ajp7eqb]]"
1905 );
1906 assert_eq!(
1907 format_reference(
1908 s(Wrapper::Wikilink, Addressing::Id, true),
1909 from,
1910 to,
1911 Some(&id),
1912 "A"
1913 ),
1914 "[[id:ajp7eqb|A]]"
1915 );
1916 // Alias is a bare-name wikilink, even if markdown was requested.
1917 assert_eq!(
1918 format_reference(
1919 s(Wrapper::Markdown, Addressing::Alias, false),
1920 from,
1921 to,
1922 None,
1923 "My File"
1924 ),
1925 "[[My File]]"
1926 );
1927 // Id addressing with no id available degrades to a path link.
1928 assert_eq!(
1929 format_reference(
1930 s(Wrapper::Wikilink, Addressing::Id, true),
1931 from,
1932 to,
1933 None,
1934 "A"
1935 ),
1936 "[A](/Archive/a.md)"
1937 );
1938 }
1939
1940 #[test]
1941 fn reference_style_config_round_trips_and_normalizes() {
1942 assert_eq!(
1943 Wrapper::from_config_str("wikilink"),
1944 Some(Wrapper::Wikilink)
1945 );
1946 assert_eq!(
1947 Addressing::from_config_str("alias"),
1948 Some(Addressing::Alias)
1949 );
1950 assert_eq!(Wrapper::Wikilink.as_config_str(), "wikilink");
1951 assert_eq!(Addressing::Id.as_config_str(), "id");
1952 // markdown + alias is impossible; normalization forces wikilink.
1953 let n = ReferenceStyle {
1954 addressing: Addressing::Alias,
1955 ..ReferenceStyle::default()
1956 }
1957 .normalized();
1958 assert_eq!(n.wrapper, Wrapper::Wikilink);
1959 assert!(
1960 ReferenceStyle {
1961 addressing: Addressing::Id,
1962 ..ReferenceStyle::default()
1963 }
1964 .registers()
1965 );
1966 assert!(!ReferenceStyle::default().registers());
1967 }
1968
1969 #[test]
1970 fn path_text_takes_the_path_style_shape() {
1971 let from = Path::new("a/b/hw.md");
1972 let to = Path::new("a/c/x.md");
1973 assert_eq!(path_text(LinkStyle::MarkdownRoot, from, to), "/a/c/x.md");
1974 assert_eq!(
1975 path_text(LinkStyle::MarkdownRelative, from, to),
1976 "../c/x.md"
1977 );
1978 assert_eq!(path_text(LinkStyle::PlainRoot, from, to), "/a/c/x.md");
1979 }
1980
1981 /// Laws, rather than examples.
1982 ///
1983 /// Every test above names one input and asserts the output prov produced
1984 /// for it. That is the right shape for a decision (`slug("v1.0 Release")`
1985 /// is `"v10-release"` because someone chose it), and the wrong shape for a
1986 /// *law* — a claim quantified over every input, of which an example
1987 /// witnesses exactly one. The round-trip below is a law: a link prov
1988 /// authors must name the document prov meant, from wherever it was
1989 /// written, in whichever style the workspace declared.
1990 mod properties {
1991 use super::*;
1992 use proptest::prelude::*;
1993
1994 /// A workspace-relative document path — up to two directories deep,
1995 /// short lowercase names. The alphabet is small on purpose: a
1996 /// counterexample is only useful if you can read it, and `a/b.md`
1997 /// makes the same point as `Xk9/qZ2.md` with none of the noise.
1998 fn doc_path() -> impl Strategy<Value = PathBuf> {
1999 (prop::collection::vec("[a-z]{1,3}", 0..3usize), "[a-z]{1,3}").prop_map(
2000 |(dirs, stem)| {
2001 let mut path = PathBuf::new();
2002 for dir in dirs {
2003 path.push(dir);
2004 }
2005 path.push(format!("{stem}.md"));
2006 path
2007 },
2008 )
2009 }
2010
2011 /// A path as a *human* might write one into frontmatter: real names
2012 /// mixed with the `.` and `..` a relative reference is made of. Unlike
2013 /// [`doc_path`] this may climb above the root (`../../x`), which is
2014 /// legal to *write* and refused later by [`escapes_root`] — the
2015 /// normalizer has to survive it either way.
2016 fn messy_path() -> impl Strategy<Value = PathBuf> {
2017 prop::collection::vec(
2018 prop_oneof![Just(".".to_string()), Just("..".to_string()), "[a-z]{1,3}"],
2019 1..5usize,
2020 )
2021 .prop_map(|parts| parts.iter().collect())
2022 }
2023
2024 /// Every style there is.
2025 ///
2026 /// This list was once four of six. The two `Canonical` styles emitted a
2027 /// bare *workspace*-relative path that [`resolve`] reads as
2028 /// *directory*-relative, so they failed the law below — and they are
2029 /// gone now rather than excused, which is why the strategy can name the
2030 /// whole enum again. A style that cannot be read back is not a style.
2031 fn round_tripping_style() -> impl Strategy<Value = LinkStyle> {
2032 prop::sample::select(vec![
2033 LinkStyle::MarkdownRoot,
2034 LinkStyle::MarkdownRelative,
2035 LinkStyle::PlainRoot,
2036 LinkStyle::PlainRelative,
2037 ])
2038 }
2039
2040 proptest! {
2041 /// `resolve ∘ format = id`: authoring a link to `to` from the
2042 /// document at `from`, then reading it back the way every consumer
2043 /// does (`Link::parse` for the scalar, `resolve` for the path),
2044 /// must land on `to` again. The whole point of a style axis is
2045 /// that it changes how a reference is *spelled* and not what it
2046 /// *means* — so this holds for every style, which is a claim the
2047 /// enum only earned once the canonical pair was retired.
2048 #[test]
2049 fn a_formatted_link_resolves_back_to_the_document_it_names(
2050 from in doc_path(),
2051 to in doc_path(),
2052 style in round_tripping_style(),
2053 ) {
2054 let written = format_link(style, &from, &to, "Label");
2055 let got = resolve(&from, &Link::parse(&written).target);
2056 prop_assert_eq!(
2057 &got,
2058 &to,
2059 "{:?} wrote `{}` in `{}`",
2060 style,
2061 written,
2062 from.display()
2063 );
2064 }
2065
2066 /// The law a move rests on: **re-relativizing a link preserves its
2067 /// referent.** `mutate::rename` rewrites every outbound path link
2068 /// of a document it moves by resolving the old text against the old
2069 /// location and re-rendering it against the new one
2070 /// (`rename.rs:236`). That is only safe if the two resolve to the
2071 /// same document — which is this, quantified over every pair of
2072 /// locations a document could move between.
2073 #[test]
2074 fn re_relativizing_a_link_preserves_the_document_it_names(
2075 from in doc_path(),
2076 to in doc_path(),
2077 referent in doc_path(),
2078 ) {
2079 let dir = |p: &Path| p.parent().unwrap_or(Path::new("")).to_path_buf();
2080 // As authored in the document at its old location.
2081 let written = relative(&dir(&from), &referent);
2082 // What `rename` writes when the document lands at `to`.
2083 let rewritten = relative(&dir(&to), &resolve(&from, &written));
2084 prop_assert_eq!(
2085 resolve(&to, &rewritten),
2086 referent,
2087 "`{}` moving {} → {} became `{}`",
2088 written,
2089 from.display(),
2090 to.display(),
2091 rewritten
2092 );
2093 }
2094
2095 /// [`normalize`] is idempotent — folding `.`/`..` a second time
2096 /// changes nothing. Load-bearing because resolved paths are
2097 /// compared for equality all over the crate (`move_conflict`, the
2098 /// registry's id↔path bijection, every `check` finding that says
2099 /// two links name the same document); a normal form that still
2100 /// moves under re-application would make those comparisons depend
2101 /// on how many times a path had been through the resolver.
2102 #[test]
2103 fn normalizing_a_path_twice_is_normalizing_it_once(path in messy_path()) {
2104 let once = normalize(&path);
2105 prop_assert_eq!(normalize(&once), once.clone(), "on `{}`", path.display());
2106 }
2107
2108 /// A normalized path has no `.` left, and any `..` that survives is
2109 /// a *leading* one — the climb above the root that could not be
2110 /// cancelled, which is precisely what [`escapes_root`] then looks
2111 /// for. A `..` appearing after a normal component would mean the
2112 /// fold missed a cancellation, and every path comparison downstream
2113 /// would be reading a path that still had reducing left to do.
2114 #[test]
2115 fn a_normalized_path_keeps_only_the_climb_it_could_not_cancel(
2116 path in messy_path(),
2117 ) {
2118 let normalized = normalize(&path);
2119 let parts: Vec<_> = normalized.components().collect();
2120 let climb = parts
2121 .iter()
2122 .take_while(|c| matches!(c, Component::ParentDir))
2123 .count();
2124 prop_assert!(
2125 parts[climb..]
2126 .iter()
2127 .all(|c| matches!(c, Component::Normal(_) | Component::RootDir)),
2128 "`{}` normalized to `{}`",
2129 path.display(),
2130 normalized.display()
2131 );
2132 }
2133 }
2134 }
2135}