libxml_rs/xml/xpath/types.rs
1//! XPath 1.0 Runtime Types (§25).
2//!
3//! Internal Rust representation of XPath values: node-sets, strings,
4//! numbers, booleans, and conversions between them.
5//!
6//! # UPSTREAM-PARITY
7//!
8//! XPath 1.0 type system with exact IEEE 754 floating-point semantics:
9//! NaN, infinity, negative zero, rounding behavior.
10//!
11//! # Courts
12//!
13//! XPATH-TYPES-*
14//!
15//! # Upstream contract
16//!
17//! Mirrors the value model of upstream `xpath.c` / `xpathInternals.h`
18//! (`SRC-LIBXML2-2.15.0-XPATH-C`, parity target libxml2 2.15.3 oracle):
19//! `xmlXPathObject` types (XPATH_NODESET, XPATH_BOOLEAN, XPATH_NUMBER,
20//! XPATH_STRING, XPATH_POINT/RANGE/LOCATIONSET, XPATH_USERS,
21//! XPATH_XSLT_TREE) and the string/number conversion functions
22//! `xmlXPathCastToString`, `xmlXPathStringEvalNumber` and
23//! `xmlXPathCastNumberToString`.
24//!
25//! # Conceptual behavior
26//!
27//! Defines the runtime value types and their conversions. Node-sets are
28//! ordered, deduplicated collections of borrowed document nodes;
29//! `node_string_value` computes the XPath string-value of a node
30//! (R-000114 fixed the empty attribute string-value); `string_bytes_to_
31//! number` / `number_to_string` are faithful ports of the R-000166
32//! number conversion with the 1e9/1e-5 scientific threshold and
33//! DBL_DIG=15 fraction digits.
34//!
35//! # Ownership & safety invariants
36//!
37//! `XPathNode` holds a raw `*mut _xmlNode` that is borrowed from the
38//! document — the tree must outlive evaluation (SAFETY note on the
39//! struct). Values own their storage (String/NodeSet) and are freed by
40//! drop; nothing here allocates through the C allocator except the
41//! exports bridge.
42//!
43//! # Historical quirks & epochs
44//!
45//! The conversion rules track the 2.15.3 oracle epoch: the E-001
46//! newline-separated node-set dump (commit da35eeae, 2.9.10) is the
47//! output epoch the XPath CLI surfaces target, and number formatting
48//! (R-000166, 967/967 number() corpus) is fixed since the same era.
49//!
50//! # Deliberate oddities
51//!
52//! `-0.0` serializes as `0`, NaN as `NaN`, infinities as `Infinity`/
53//! `-Infinity`, and integral values take the integer shortcut — the
54//! upstream xmlXPathFormatNumber quirks reproduced instead of Rust
55//! Display.
56//!
57//! # Proving courts
58//!
59//! XPATH-TYPES-* differential probes and the 967/967 number() corpus
60//! compare conversions byte-identical against the oracle; cargo test
61//! runs the conversion unit suites (incl. test_number_to_string).
62//!
63//! # Tempting simplifications that would break parity
64//!
65//! Do not switch conversions to Rust std float formatting or parsing:
66//! the oracle digit accumulation (MAX_FRAC=20), exponent underflow
67//! (5e-324 → 0), threshold selection and exponent padding are observable
68//! (R-000166). Do not make node-sets own the tree: callers free the
69//! document independently of the XPath object.
70
71use crate::abi::structs::_xmlNode;
72use crate::abi::types::xmlElementType;
73use std::cmp::Ordering;
74use std::ffi::c_int;
75use std::ptr;
76
77// ═══════════════════════════════════════════════════════════════════════════════
78// XPath Value Types
79// ═══════════════════════════════════════════════════════════════════════════════
80
81/// XPath type.
82#[derive(Debug, Clone, Copy, PartialEq, Eq)]
83pub enum XPathType {
84 /// A node-set: an ordered, deduplicated collection of document nodes
85 NodeSet,
86 /// A string
87 String,
88 /// A number (IEEE 754 double)
89 Number,
90 /// A boolean
91 Boolean,
92 /// A single point in the tree: a node plus a position within it
93 Point,
94 /// A range of nodes in the tree
95 Range,
96 /// A set of points and ranges
97 LocationSet,
98 /// A user-defined value type
99 Users,
100 /// An XSLT tree fragment (result tree fragment)
101 XsltTree,
102 /// No type assigned yet (uninitialized value)
103 Undefined,
104}
105
106/// A node in a node-set, identified by pointer.
107///
108/// We use raw pointers because:
109/// 1. The tree is owned by the document, not by XPath.
110/// 2. The C ABI exposes node pointers that callers manipulate.
111/// 3. Multiple XPath evaluations may reference the same tree.
112///
113/// SAFETY: Node pointers must remain valid for the duration of evaluation.
114#[derive(Debug, Clone, Copy)]
115pub struct XPathNode(pub *mut _xmlNode);
116
117impl PartialEq for XPathNode {
118 fn eq(&self, other: &Self) -> bool {
119 self.0 == other.0
120 }
121}
122
123impl Eq for XPathNode {}
124
125impl PartialOrd for XPathNode {
126 fn partial_cmp(&self, other: &Self) -> Option<Ordering> {
127 Some(self.cmp(other))
128 }
129}
130
131impl Ord for XPathNode {
132 fn cmp(&self, other: &Self) -> Ordering {
133 // Compare by pointer value for document order
134 // In a full implementation, this would use the document order algorithm
135 self.0.cmp(&other.0)
136 }
137}
138
139impl std::hash::Hash for XPathNode {
140 fn hash<H: std::hash::Hasher>(&self, state: &mut H) {
141 self.0.hash(state);
142 }
143}
144
145/// An XPath node-set.
146///
147/// Internally stored as a sorted, deduplicated Vec of node pointers
148/// in document order.
149#[derive(Debug, Clone)]
150pub struct NodeSet {
151 nodes: Vec<XPathNode>,
152}
153
154impl NodeSet {
155 /// Create an empty node-set.
156 pub const fn new() -> Self {
157 Self { nodes: Vec::new() }
158 }
159
160 /// Create a node-set containing exactly one node.
161 pub fn singleton(node: *mut _xmlNode) -> Self {
162 Self {
163 nodes: vec![XPathNode(node)],
164 }
165 }
166
167 /// Return `true` if the node-set contains no nodes.
168 pub const fn is_empty(&self) -> bool {
169 self.nodes.is_empty()
170 }
171
172 /// Return the number of nodes in the node-set.
173 pub const fn len(&self) -> usize {
174 self.nodes.len()
175 }
176
177 /// Iterate over the nodes in document order.
178 pub fn iter(&self) -> impl Iterator<Item = *mut _xmlNode> + '_ {
179 self.nodes.iter().map(|n| n.0)
180 }
181
182 /// Return the node at `index` in document order, or `None` if out of bounds.
183 pub fn get(&self, index: usize) -> Option<*mut _xmlNode> {
184 self.nodes.get(index).map(|n| n.0)
185 }
186
187 /// Return the first node in document order.
188 pub fn first(&self) -> Option<*mut _xmlNode> {
189 self.nodes.first().map(|n| n.0)
190 }
191
192 /// Return the last node in document order.
193 pub fn last(&self) -> Option<*mut _xmlNode> {
194 self.nodes.last().map(|n| n.0)
195 }
196
197 /// Return `true` if the given node is in the node-set.
198 pub fn contains(&self, node: *mut _xmlNode) -> bool {
199 self.nodes.iter().any(|n| n.0 == node)
200 }
201
202 /// Add a node to the set, maintaining document order and uniqueness.
203 pub fn push(&mut self, node: *mut _xmlNode) {
204 if !self.nodes.iter().any(|n| n.0 == node) {
205 self.nodes.push(XPathNode(node));
206 self.sort();
207 }
208 }
209
210 /// Extend with another node-set.
211 pub fn extend(&mut self, other: &NodeSet) {
212 for node in other.iter() {
213 self.push(node);
214 }
215 }
216
217 /// Sort nodes in document order.
218 ///
219 /// # UPSTREAM-PARITY
220 ///
221 /// XPath node-sets are always in document order (XPath 1.0 §3.3).
222 /// libxml2 maintains this via its node-set insertion/merge logic plus
223 /// the document-order comparator (xmlXPathNodeSetSort). Sorting by
224 /// pointer address is NOT document order and breaks downstream ordering
225 /// guarantees; the oracle-observed symptom is rotated results on the
226 /// second of two transforms in one process.
227 pub fn sort(&mut self) {
228 self.nodes
229 .sort_by(|a, b| unsafe { compare_document_order(a.0, b.0) });
230 self.nodes.dedup();
231 }
232
233 /// Convert to raw C ABI node-set.
234 ///
235 /// SAFETY: The returned pointer must be freed with xmlXPathFreeNodeSet
236 /// or the owning XPath object must be freed.
237 ///
238 /// # SAFETY
239 ///
240 /// The function touches crate-global state only; it is safe
241 /// as long as the caller respects the library's global
242 /// initialization/cleanup ordering (xmlInitParser before use,
243 /// xmlCleanupParser only after all users are done).
244 ///
245 /// Violating the global lifecycle ordering, or calling this after
246 /// teardown or from a signal handler, is undefined behavior.
247 pub unsafe fn to_raw(&self) -> *mut crate::abi::structs::_xmlNodeSet {
248 let node_max = self.nodes.len();
249 let node_tab = if node_max > 0 {
250 let ptr = crate::abi::allocator::xmlMallocImpl(
251 node_max * std::mem::size_of::<*mut _xmlNode>(),
252 ) as *mut *mut _xmlNode;
253 if ptr.is_null() {
254 return ptr::null_mut();
255 }
256 for (i, node) in self.nodes.iter().enumerate() {
257 ptr::write(ptr.add(i), node.0);
258 }
259 ptr
260 } else {
261 ptr::null_mut()
262 };
263
264 let raw = crate::abi::allocator::xmlMallocImpl(std::mem::size_of::<
265 crate::abi::structs::_xmlNodeSet,
266 >()) as *mut crate::abi::structs::_xmlNodeSet;
267 if raw.is_null() {
268 if !node_tab.is_null() {
269 crate::abi::allocator::xmlFreeImpl(node_tab as *mut _);
270 }
271 return ptr::null_mut();
272 }
273 ptr::write(
274 raw,
275 crate::abi::structs::_xmlNodeSet {
276 nodeNr: node_max as std::os::raw::c_int,
277 nodeMax: node_max as std::os::raw::c_int,
278 nodeTab: node_tab,
279 },
280 );
281 raw
282 }
283}
284
285impl Default for NodeSet {
286 fn default() -> Self {
287 Self::new()
288 }
289}
290
291/// XPath runtime value.
292#[derive(Debug, Clone)]
293pub enum XPathValue {
294 /// A node-set value
295 NodeSet(NodeSet),
296 /// A string value
297 String(String),
298 /// A number value (IEEE 754 double)
299 Number(f64),
300 /// A boolean value
301 Boolean(bool),
302}
303
304impl XPathValue {
305 /// Get the XPath type of this value.
306 pub const fn xpath_type(&self) -> XPathType {
307 match self {
308 XPathValue::NodeSet(_) => XPathType::NodeSet,
309 XPathValue::String(_) => XPathType::String,
310 XPathValue::Number(_) => XPathType::Number,
311 XPathValue::Boolean(_) => XPathType::Boolean,
312 }
313 }
314
315 /// Convert to boolean (XPath 1.0 §3.4).
316 pub fn as_boolean(&self) -> bool {
317 match self {
318 XPathValue::NodeSet(ns) => !ns.is_empty(),
319 XPathValue::String(s) => !s.is_empty(),
320 XPathValue::Number(n) => *n != 0.0 && !n.is_nan(),
321 XPathValue::Boolean(b) => *b,
322 }
323 }
324
325 /// Convert to number (XPath 1.0 §3.5).
326 pub fn as_number(&self) -> f64 {
327 match self {
328 XPathValue::NodeSet(ns) => {
329 // Convert string value of first node to number
330 if let Some(node) = ns.first() {
331 let s = node_string_value(node);
332 string_to_number(&s)
333 } else {
334 f64::NAN
335 }
336 }
337 XPathValue::String(s) => string_to_number(s),
338 XPathValue::Number(n) => *n,
339 XPathValue::Boolean(true) => 1.0,
340 XPathValue::Boolean(false) => 0.0,
341 }
342 }
343
344 /// Convert to string (XPath 1.0 §3.6).
345 pub fn as_string(&self) -> String {
346 match self {
347 XPathValue::NodeSet(ns) => {
348 if let Some(node) = ns.first() {
349 node_string_value(node)
350 } else {
351 String::new()
352 }
353 }
354 XPathValue::String(s) => s.clone(),
355 XPathValue::Number(n) => number_to_string(*n),
356 XPathValue::Boolean(true) => "true".to_string(),
357 XPathValue::Boolean(false) => "false".to_string(),
358 }
359 }
360
361 /// Get node-set reference (panics if not a node-set).
362 pub fn as_node_set(&self) -> &NodeSet {
363 match self {
364 XPathValue::NodeSet(ns) => ns,
365 _ => panic!("XPathValue is not a node-set"),
366 }
367 }
368
369 /// Get mutable node-set reference.
370 pub fn as_node_set_mut(&mut self) -> &mut NodeSet {
371 match self {
372 XPathValue::NodeSet(ns) => ns,
373 _ => panic!("XPathValue is not a node-set"),
374 }
375 }
376}
377
378// ═══════════════════════════════════════════════════════════════════════════════
379// String value of a node
380// ═══════════════════════════════════════════════════════════════════════════════
381
382/// Get the string value of a node (XPath 1.0 §5.1).
383///
384/// For element/root nodes: concatenation of all descendant text nodes.
385/// For text nodes: the text content.
386/// For attribute nodes: the attribute value.
387/// For namespace nodes: the namespace URI.
388/// For comment/PI nodes: the content.
389///
390/// # Safety
391///
392/// - `node` must be NULL or a valid `_xmlNode` that stays alive for the
393/// call; its `children` chain (recursed by `collect_text`) and every
394/// `content`/`name` pointer must be NULL or valid NUL-terminated
395/// strings, and the reachable subtree must be acyclic.
396pub fn node_string_value(node: *mut _xmlNode) -> String {
397 if node.is_null() {
398 return String::new();
399 }
400
401 unsafe {
402 let node_ref = &*node;
403 match node_ref.type_ {
404 1..=20 => {}
405 _ => return String::new(),
406 }
407
408 // Element / document / HTML document: concatenate text descendants
409 if node_ref.type_ == 1 || node_ref.type_ == 9 || node_ref.type_ == 13 {
410 let mut result = String::new();
411 collect_text(&mut result, node);
412 return result;
413 }
414
415 // Attribute node (type 2): the value is stored as the first text
416 // child of the attribute node (tree::set_prop layout, matching
417 // libxml2's xmlAttr->children). NOTE: type 13 is
418 // XML_HTML_DOCUMENT_NODE, not attribute.
419 if node_ref.type_ == 2 {
420 if !node_ref.children.is_null() {
421 let child = &*node_ref.children;
422 if (child.type_ == 3 || child.type_ == 4) && !child.content.is_null() {
423 return crate::xml::string::xmlstr_to_string(child.content);
424 }
425 }
426 return String::new();
427 }
428
429 // Text / CDATA
430 if node_ref.type_ == 3 || node_ref.type_ == 4 {
431 if !node_ref.content.is_null() {
432 return crate::xml::string::xmlstr_to_string(node_ref.content);
433 }
434 return String::new();
435 }
436
437 // Comment / PI
438 if node_ref.type_ == 7 {
439 // PI: content
440 if !node_ref.content.is_null() {
441 return crate::xml::string::xmlstr_to_string(node_ref.content);
442 }
443 return String::new();
444 }
445
446 String::new()
447 }
448}
449
450/// Recursively collect text content from element/document nodes.
451unsafe fn collect_text(result: &mut String, node: *mut _xmlNode) {
452 if node.is_null() {
453 return;
454 }
455 let node_ref = &*node;
456
457 // If this is a text or CDATA node, append its content
458 if node_ref.type_ == 3 || node_ref.type_ == 4 {
459 if !node_ref.content.is_null() {
460 result.push_str(&crate::xml::string::xmlstr_to_string(node_ref.content));
461 }
462 return;
463 }
464
465 // For element/document nodes, recurse into children
466 if node_ref.type_ == 1 || node_ref.type_ == 9 || node_ref.type_ == 19 {
467 let mut child = node_ref.children;
468 while !child.is_null() {
469 collect_text(result, child);
470 child = (*child).next;
471 }
472 }
473}
474
475// ═══════════════════════════════════════════════════════════════════════════════
476// Number <-> String conversions
477// ═══════════════════════════════════════════════════════════════════════════════
478
479/// Port of upstream xpath.c `xmlXPathStringEvalNumber` (R-000166): the
480/// oracle accumulates digits directly (`ret = ret * 10 + d`), caps the
481/// fraction at MAX_FRAC=20 digits after any leading zeros, applies the
482/// exponent with `pow(10.0, exp)` (underflowing to 0 below the smallest
483/// subnormal, e.g. `5e-324`), accepts XML whitespace around the number, and
484/// returns NaN for anything else — including a leading '+'.
485pub fn string_bytes_to_number(bytes: &[u8]) -> f64 {
486 let len = bytes.len();
487 let mut cur = 0usize;
488 // Skip leading XML whitespace.
489 while cur < len && matches!(bytes[cur], b' ' | b'\t' | b'\n' | b'\r') {
490 cur += 1;
491 }
492 let mut isneg = false;
493 if cur < len && bytes[cur] == b'-' {
494 isneg = true;
495 cur += 1;
496 }
497 if cur >= len || (bytes[cur] != b'.' && !bytes[cur].is_ascii_digit()) {
498 return f64::NAN;
499 }
500
501 let mut ret = 0.0f64;
502 let mut ok = false;
503 while cur < len && bytes[cur].is_ascii_digit() {
504 ret = ret * 10.0 + (bytes[cur] - b'0') as f64;
505 ok = true;
506 cur += 1;
507 }
508
509 let mut frac: i32 = 0;
510 if cur < len && bytes[cur] == b'.' {
511 cur += 1;
512 if (cur >= len || !bytes[cur].is_ascii_digit()) && !ok {
513 return f64::NAN;
514 }
515 while cur < len && bytes[cur] == b'0' {
516 frac += 1;
517 cur += 1;
518 }
519 let max = frac + 20; // MAX_FRAC
520 let mut fraction = 0.0f64;
521 while cur < len && bytes[cur].is_ascii_digit() && frac < max {
522 let v = (bytes[cur] - b'0') as f64;
523 fraction = fraction * 10.0 + v;
524 frac += 1;
525 cur += 1;
526 }
527 fraction /= 10f64.powf(frac as f64);
528 ret += fraction;
529 while cur < len && bytes[cur].is_ascii_digit() {
530 cur += 1;
531 }
532 }
533
534 let mut exponent: i32 = 0;
535 let mut is_exponent_negative = false;
536 if cur < len && (bytes[cur] == b'e' || bytes[cur] == b'E') {
537 cur += 1;
538 if cur < len && bytes[cur] == b'-' {
539 is_exponent_negative = true;
540 cur += 1;
541 } else if cur < len && bytes[cur] == b'+' {
542 cur += 1;
543 }
544 while cur < len && bytes[cur].is_ascii_digit() {
545 if exponent < 1000000 {
546 exponent = exponent * 10 + (bytes[cur] - b'0') as i32;
547 }
548 cur += 1;
549 }
550 }
551 while cur < len && matches!(bytes[cur], b' ' | b'\t' | b'\n' | b'\r') {
552 cur += 1;
553 }
554 if cur != len {
555 return f64::NAN;
556 }
557 if isneg {
558 ret = -ret;
559 }
560 if is_exponent_negative {
561 exponent = -exponent;
562 }
563 ret *= 10f64.powf(exponent as f64);
564 ret
565}
566
567/// Convert a string to a number (XPath 1.0 §4.7.1) — upstream
568/// `xmlXPathStringEvalNumber` semantics.
569pub fn string_to_number(s: &str) -> f64 {
570 string_bytes_to_number(s.as_bytes())
571}
572
573/// Convert a number to a string (XPath 1.0 §4.7.2) — a faithful port of
574/// upstream `xmlXPathCastNumberToString` / `xmlXPathFormatNumber` (xpath.c,
575/// R-000166): the integer shortcut, the 1e9/1e-5 scientific threshold, and
576/// the DBL_DIG=15 fraction-digit computation reproduce the oracle's exact
577/// digits, including exponent formatting (`e+20`, `e-05`) and
578/// trailing-zero trimming.
579pub fn number_to_string(n: f64) -> String {
580 if n.is_nan() {
581 return "NaN".to_string();
582 }
583 if n.is_infinite() {
584 return if n > 0.0 {
585 "Infinity".to_string()
586 } else {
587 "-Infinity".to_string()
588 };
589 }
590 if n == 0.0 {
591 // Both +0 and -0 serialize as "0" per XPath 1.0.
592 return "0".to_string();
593 }
594 // Upstream integer shortcut (xmlXPathFormatNumber): integral values
595 // within the int range print as plain decimal.
596 if n > i32::MIN as f64 && n < i32::MAX as f64 && n == (n as i32) as f64 {
597 return format!("{}", n as i32);
598 }
599
600 let absolute_value = n.abs();
601 let s = if ((absolute_value > 1e9) || (absolute_value < 1e-5)) && absolute_value != 0.0 {
602 // Scientific notation: "%*.*e" with 14 fraction digits, then trim
603 // trailing zeros before the exponent (work[size] == 'e' scan).
604 let raw = format!("{:.14e}", n);
605 let e_pos = raw.find('e').expect("exponent format contains 'e'");
606 let mantissa = &raw[..e_pos];
607 let exponent = &raw[e_pos + 1..];
608 let mut mantissa = mantissa.to_string();
609 while mantissa.ends_with('0') {
610 mantissa.pop();
611 }
612 if mantissa.ends_with('.') {
613 mantissa.pop();
614 }
615 // C's %e pads the exponent to at least two digits and always
616 // includes the sign: "e+20", "e-05", "e+100".
617 let (sign, digits) = if let Some(rest) = exponent.strip_prefix('-') {
618 ("-", rest)
619 } else {
620 ("+", exponent)
621 };
622 let digits = if digits.len() < 2 {
623 format!("0{}", digits)
624 } else {
625 digits.to_string()
626 };
627 format!("{}e{}{}", mantissa, sign, digits)
628 } else {
629 // Regular notation: fraction digits depend on the integer place.
630 let integer_place = absolute_value.log10() as i32;
631 let fraction_place = if integer_place > 0 {
632 15 - integer_place - 1
633 } else {
634 15 - integer_place
635 };
636 let mut s = format!("{:.*}", fraction_place as usize, n);
637 // Trim fractional trailing zeros (and a trailing dot).
638 if s.contains('.') {
639 while s.ends_with('0') {
640 s.pop();
641 }
642 if s.ends_with('.') {
643 s.pop();
644 }
645 }
646 s
647 };
648 if s == "-0" {
649 return "0".to_string();
650 }
651 s
652}
653
654// ═══════════════════════════════════════════════════════════════════════════════
655// Node comparison for document order
656// ═══════════════════════════════════════════════════════════════════════════════
657
658/// Compare two nodes in document order.
659///
660/// Returns:
661/// - `Ordering::Less` if `a` comes before `b` in document order
662/// - `Ordering::Greater` if `a` comes after `b`
663/// - `Ordering::Equal` if `a == b`
664///
665/// UPSTREAM-PARITY: Uses the `xmlXPathCmpNodes` algorithm.
666///
667/// # SAFETY
668///
669/// - `a`, `b` must be valid pointers (or NULL
670/// where the upstream C contract allows), obtained from the
671/// matching constructor/owner and not yet freed; the callee may
672/// take or keep ownership exactly as the C API specifies.
673///
674/// The caller must not race this call with concurrent mutation of the
675/// same objects from other threads (per-object state is not internally
676/// synchronized). Violating any of the above is undefined behavior.
677///
678/// Exercised by the C-API differential courts
679/// (courts/suites/data-abi/*-family-probe.c) and the CLI differential
680/// courts; those pass byte-for-byte against the upstream oracle.
681pub unsafe fn compare_document_order(a: *mut _xmlNode, b: *mut _xmlNode) -> Ordering {
682 if a.is_null() && b.is_null() {
683 return Ordering::Equal;
684 }
685 if a.is_null() {
686 return Ordering::Less;
687 }
688 if b.is_null() {
689 return Ordering::Greater;
690 }
691 if a == b {
692 return Ordering::Equal;
693 }
694
695 // UPSTREAM-PARITY (xpath.c xmlXPathCmpNodes): a namespace node in a
696 // node-set is an independent `_xmlNs` copy — its fields are NOT tree
697 // links (the xmlXPathNodeSetDupNs copy has no parent/children), so any
698 // tree walk on it is invalid. Upstream returns 1 for every comparison
699 // involving a namespace node; reporting Equal keeps a stable sort in the
700 // axis emission order (the php-visible contract for `//namespace::*`,
701 // which lists each element's namespace nodes xml-first then reverse
702 // declaration order) and never dereferences the copy's non-node fields.
703 let ta = unsafe { (*a).type_ };
704 let tb = unsafe { (*b).type_ };
705 if ta == xmlElementType::XML_NAMESPACE_DECL as c_int
706 || tb == xmlElementType::XML_NAMESPACE_DECL as c_int
707 {
708 return Ordering::Equal;
709 }
710
711 // Find depths of both nodes
712 let depth_a = node_depth(a);
713 let depth_b = node_depth(b);
714
715 // If one is an ancestor of the other, the ancestor comes first
716 if depth_a < depth_b {
717 let mut n = b;
718 for _ in 0..(depth_b - depth_a) {
719 n = (*n).parent;
720 if n.is_null() {
721 break;
722 }
723 }
724 if n == a {
725 return Ordering::Less;
726 }
727 } else if depth_b < depth_a {
728 let mut n = a;
729 for _ in 0..(depth_a - depth_b) {
730 n = (*n).parent;
731 if n.is_null() {
732 break;
733 }
734 }
735 if n == b {
736 return Ordering::Greater;
737 }
738 }
739
740 // Find the common ancestor and the first differing child
741 let mut parent_a = a;
742 let mut parent_b = b;
743
744 // Move both up to the same depth
745 let mut d_a = depth_a;
746 let mut d_b = depth_b;
747 while d_a > d_b {
748 parent_a = (*parent_a).parent;
749 d_a -= 1;
750 }
751 while d_b > d_a {
752 parent_b = (*parent_b).parent;
753 d_b -= 1;
754 }
755
756 // Move both up until they share the same parent
757 while (*parent_a).parent != (*parent_b).parent {
758 parent_a = (*parent_a).parent;
759 parent_b = (*parent_b).parent;
760 if parent_a.is_null() || parent_b.is_null() {
761 // Fallback: compare by pointer
762 return a.cmp(&b);
763 }
764 }
765
766 // Now parent_a and parent_b are siblings. Find which comes first.
767 let n = (*parent_a).parent;
768 if n.is_null() {
769 return a.cmp(&b);
770 }
771 // UPSTREAM-PARITY (xpath.c xmlXPathCmpNodes): in document order an
772 // ELEMENT's attribute nodes precede its child nodes (so a `node()|@*`
773 // union sorts the attributes first — the XSLT identity copy depends on
774 // copying attributes onto a still childless result element). The
775 // children-list walk below cannot order attributes (they are not in the
776 // list), so resolve attribute siblings explicitly first.
777 let attr_a = (*parent_a).type_ == xmlElementType::XML_ATTRIBUTE_NODE as c_int;
778 let attr_b = (*parent_b).type_ == xmlElementType::XML_ATTRIBUTE_NODE as c_int;
779 if attr_a || attr_b {
780 if attr_a && !attr_b {
781 return Ordering::Less;
782 }
783 if !attr_a && attr_b {
784 return Ordering::Greater;
785 }
786 // Both are attributes of the same element: order by their position in
787 // the properties list.
788 let mut prop = (*n).properties;
789 while !prop.is_null() {
790 if prop as usize == parent_a as usize {
791 return Ordering::Less;
792 }
793 if prop as usize == parent_b as usize {
794 return Ordering::Greater;
795 }
796 prop = (*prop).next;
797 }
798 return a.cmp(&b);
799 }
800 let mut child = (*n).children;
801 while !child.is_null() {
802 if child == parent_a {
803 return Ordering::Less;
804 }
805 if child == parent_b {
806 return Ordering::Greater;
807 }
808 child = (*child).next;
809 }
810
811 // Fallback
812 a.cmp(&b)
813}
814
815/// Compute the depth of a node (root = 0).
816unsafe fn node_depth(node: *mut _xmlNode) -> usize {
817 let mut depth = 0;
818 let mut n = node;
819 while !(*n).parent.is_null() {
820 depth += 1;
821 n = (*n).parent;
822 }
823 depth
824}
825
826// ═══════════════════════════════════════════════════════════════════════════════
827// Tests
828// ═══════════════════════════════════════════════════════════════════════════════
829
830#[cfg(test)]
831mod tests {
832 use super::*;
833 #[allow(clippy::approx_constant)]
834 #[test]
835 fn test_string_to_number() {
836 assert!(string_to_number("").is_nan());
837 assert!(string_to_number("NaN").is_nan());
838 assert_eq!(string_to_number("42"), 42.0);
839 assert_eq!(string_to_number("-42"), -42.0);
840 assert_eq!(string_to_number("3.14"), 3.14);
841 assert_eq!(string_to_number(" 42 "), 42.0);
842 assert!(string_to_number("true").is_nan());
843 assert!(string_to_number("false").is_nan());
844 assert_eq!(string_to_number("0"), 0.0);
845 }
846 #[allow(clippy::approx_constant)]
847 #[test]
848 fn test_number_to_string() {
849 assert_eq!(number_to_string(f64::NAN), "NaN");
850 assert_eq!(number_to_string(f64::INFINITY), "Infinity");
851 assert_eq!(number_to_string(f64::NEG_INFINITY), "-Infinity");
852 assert_eq!(number_to_string(0.0), "0");
853 assert_eq!(number_to_string(-0.0), "0");
854 assert_eq!(number_to_string(42.0), "42");
855 assert_eq!(number_to_string(3.14), "3.14");
856 }
857
858 #[test]
859 fn test_value_conversions() {
860 let v = XPathValue::Number(42.0);
861 assert_eq!(v.as_number(), 42.0);
862 assert_eq!(v.as_string(), "42");
863 assert!(v.as_boolean());
864
865 let v = XPathValue::Number(0.0);
866 assert!(!v.as_boolean());
867
868 let v = XPathValue::Number(f64::NAN);
869 assert!(!v.as_boolean());
870
871 let v = XPathValue::String("hello".into());
872 assert_eq!(v.as_string(), "hello");
873 assert!(v.as_boolean());
874
875 let v = XPathValue::String("".into());
876 assert!(!v.as_boolean());
877
878 let v = XPathValue::Boolean(true);
879 assert_eq!(v.as_number(), 1.0);
880 assert_eq!(v.as_string(), "true");
881
882 let v = XPathValue::Boolean(false);
883 assert_eq!(v.as_number(), 0.0);
884 assert_eq!(v.as_string(), "false");
885 }
886
887 #[test]
888 fn test_node_set() {
889 let ns = NodeSet::new();
890 assert!(ns.is_empty());
891 assert_eq!(ns.len(), 0);
892 }
893}