1use crate::{EdifactError, Segment};
9use std::borrow::Cow;
10use std::io::Read;
11use std::str::FromStr;
12
13pub trait EdifactDeserialize: Sized {
20 fn edifact_deserialize(segments: &[Segment<'_>]) -> Result<Self, EdifactError>;
25
26 fn edifact_deserialize_owned(segments: &[crate::OwnedSegment]) -> Result<Self, EdifactError> {
45 let borrowed: Vec<Segment<'_>> = segments.iter().map(|s| s.as_borrowed()).collect();
46 Self::edifact_deserialize(&borrowed)
47 }
48}
49
50pub trait EdifactCompositeDeserialize: Sized {
55 fn edifact_deserialize_composite(composite: CompositeElement<'_>)
57 -> Result<Self, EdifactError>;
58}
59
60impl EdifactCompositeDeserialize for Vec<String> {
61 fn edifact_deserialize_composite(
62 composite: CompositeElement<'_>,
63 ) -> Result<Self, EdifactError> {
64 Ok(composite.iter().map(str::to_owned).collect())
65 }
66}
67
68pub trait EdifactSegmentTag {
73 const SEGMENT_TAG: &'static str;
75
76 const QUALIFIER_PATTERN: Option<&'static str> = None;
82
83 fn matches_qualifier(seg: &Segment<'_>) -> bool {
85 match Self::QUALIFIER_PATTERN {
86 Some(pattern) => seg
87 .element_str(0)
88 .is_some_and(|q| qualifier_matches_pattern(q, pattern)),
89 None => true,
90 }
91 }
92
93 fn matches_segment(seg: &Segment<'_>) -> bool {
98 seg.tag == Self::SEGMENT_TAG && Self::matches_qualifier(seg)
99 }
100
101 fn matches_owned_segment(seg: &crate::OwnedSegment) -> bool {
105 if seg.tag != Self::SEGMENT_TAG {
106 return false;
107 }
108 match Self::QUALIFIER_PATTERN {
109 None => true,
110 Some(pattern) => {
111 let q = seg
112 .elements
113 .first()
114 .and_then(|e| e.components.first())
115 .map(|(c, _)| c.as_str())
116 .unwrap_or("");
117 qualifier_matches_pattern(q, pattern)
118 }
119 }
120 }
121}
122
123impl<T> EdifactDeserialize for Vec<T>
128where
129 T: EdifactDeserialize + EdifactSegmentTag,
130{
131 fn edifact_deserialize(segments: &[Segment<'_>]) -> Result<Self, EdifactError> {
132 segments
133 .iter()
134 .filter(|s| T::matches_segment(s))
135 .map(|seg| T::edifact_deserialize(std::slice::from_ref(seg)))
136 .collect()
137 }
138
139 fn edifact_deserialize_owned(segments: &[crate::OwnedSegment]) -> Result<Self, EdifactError> {
140 segments
141 .iter()
142 .filter(|s| T::matches_owned_segment(s))
143 .map(|seg| T::edifact_deserialize_owned(std::slice::from_ref(seg)))
144 .collect()
145 }
146}
147
148pub fn deserialize<T: EdifactDeserialize>(input: &[u8]) -> Result<T, EdifactError> {
164 let segments: Vec<Segment<'_>> = crate::from_bytes(input).collect::<Result<_, _>>()?;
165 T::edifact_deserialize(&segments)
166}
167
168pub fn deserialize_first_streaming<T>(input: &[u8]) -> Result<T, EdifactError>
173where
174 T: EdifactDeserialize + EdifactSegmentTag,
175{
176 for segment in crate::from_bytes(input) {
177 let segment = segment?;
178 if T::matches_segment(&segment) {
179 return T::edifact_deserialize(std::slice::from_ref(&segment));
180 }
181 }
182
183 Err(EdifactError::MissingSegment {
184 tag: T::SEGMENT_TAG.to_owned(),
185 expected_position: "any position in input".to_owned(),
186 })
187}
188
189pub fn deserialize_all_streaming<T>(input: &[u8]) -> Result<Vec<T>, EdifactError>
193where
194 T: EdifactDeserialize + EdifactSegmentTag,
195{
196 let mut out = Vec::new();
197 for segment in crate::from_bytes(input) {
198 let segment = segment?;
199 if T::matches_segment(&segment) {
200 out.push(T::edifact_deserialize(std::slice::from_ref(&segment))?);
201 }
202 }
203 Ok(out)
204}
205
206pub fn deserialize_first_from_reader<T, R>(reader: R) -> Result<T, EdifactError>
210where
211 T: EdifactDeserialize + EdifactSegmentTag,
212 R: Read,
213{
214 for segment in crate::from_reader(reader) {
215 let segment = segment?;
216 if !T::matches_owned_segment(&segment) {
218 continue;
219 }
220 return T::edifact_deserialize_owned(std::slice::from_ref(&segment));
221 }
222
223 Err(EdifactError::MissingSegment {
224 tag: T::SEGMENT_TAG.to_owned(),
225 expected_position: "any position in input".to_owned(),
226 })
227}
228
229pub fn deserialize_all_from_reader<T, R>(reader: R) -> Result<Vec<T>, EdifactError>
231where
232 T: EdifactDeserialize + EdifactSegmentTag,
233 R: Read,
234{
235 let mut out = Vec::new();
236 for segment in crate::from_reader(reader) {
237 let segment = segment?;
238 if !T::matches_owned_segment(&segment) {
240 continue;
241 }
242 out.push(T::edifact_deserialize_owned(std::slice::from_ref(
243 &segment,
244 ))?);
245 }
246 Ok(out)
247}
248
249pub fn deserialize_str<T: EdifactDeserialize>(input: &str) -> Result<T, EdifactError> {
251 deserialize(input.as_bytes())
252}
253
254pub fn find_segment<'s, 'd>(segments: &'s [Segment<'d>], tag: &str) -> Option<&'s Segment<'d>> {
258 segments.iter().find(|s| s.tag == tag)
259}
260
261pub fn find_segments_iter<'s, 'd: 's>(
263 segments: &'s [Segment<'d>],
264 tag: &'s str,
265) -> impl Iterator<Item = &'s Segment<'d>> {
266 segments.iter().filter(move |s| s.tag == tag)
267}
268
269pub fn find_qualified_segment<'s, 'd>(
271 segments: &'s [Segment<'d>],
272 tag: &str,
273 qualifier: &str,
274) -> Option<&'s Segment<'d>> {
275 segments
276 .iter()
277 .find(|s| s.tag == tag && s.element_str(0).unwrap_or("") == qualifier)
278}
279
280pub fn find_segment_typed<'s, 'd, T>(segments: &'s [Segment<'d>]) -> Option<&'s Segment<'d>>
282where
283 T: EdifactSegmentTag,
284{
285 segments.iter().find(|s| T::matches_segment(s))
286}
287
288pub fn find_segments_typed<'s, 'd: 's, T>(
290 segments: &'s [Segment<'d>],
291) -> impl Iterator<Item = &'s Segment<'d>>
292where
293 T: EdifactSegmentTag,
294{
295 segments.iter().filter(|s| T::matches_segment(s))
296}
297
298pub fn contiguous_groups_by_qualifier<'s, 'd, T>(
303 segments: &'s [Segment<'d>],
304) -> Vec<&'s [Segment<'d>]>
305where
306 T: EdifactSegmentTag,
307{
308 let mut groups = Vec::new();
309 let mut idx = 0;
310 while idx < segments.len() {
311 if T::matches_segment(&segments[idx]) {
312 let start = idx;
313 idx += 1;
314 while idx < segments.len() && T::matches_segment(&segments[idx]) {
315 idx += 1;
316 }
317 groups.push(&segments[start..idx]);
318 } else {
319 idx += 1;
320 }
321 }
322 groups
323}
324
325pub fn contiguous_groups_iter<'s, 'd, T>(
342 segments: &'s [Segment<'d>],
343) -> impl Iterator<Item = &'s [Segment<'d>]> + 's
344where
345 T: EdifactSegmentTag,
346{
347 let mut idx = 0;
348 let len = segments.len();
349 std::iter::from_fn(move || {
350 while idx < len && !T::matches_segment(&segments[idx]) {
352 idx += 1;
353 }
354 if idx >= len {
355 return None;
356 }
357 let start = idx;
358 idx += 1;
359 while idx < len && T::matches_segment(&segments[idx]) {
360 idx += 1;
361 }
362 Some(&segments[start..idx])
363 })
364}
365
366pub fn groups_are_contiguous_by_qualifier<T>(segments: &[Segment<'_>]) -> bool
368where
369 T: EdifactSegmentTag,
370{
371 let mut seen_match = false;
372 let mut seen_gap_after_match = false;
373
374 for seg in segments {
375 if T::matches_segment(seg) {
376 if seen_gap_after_match {
377 return false;
378 }
379 seen_match = true;
380 } else if seen_match {
381 seen_gap_after_match = true;
382 }
383 }
384
385 true
386}
387
388pub fn qualifier_matches_pattern(value: &str, pattern: &str) -> bool {
400 if pattern.is_empty() {
401 return value.is_empty();
402 }
403
404 if !pattern.contains('*') {
405 return value == pattern;
406 }
407
408 if let Some((prefix, suffix)) = pattern.split_once('*') {
410 if !pattern[prefix.len() + 1..].contains('*') {
412 return value.len() >= prefix.len() + suffix.len()
413 && value.starts_with(prefix)
414 && value.ends_with(suffix)
415 && {
416 let mid_start = prefix.len();
418 let mid_end = value.len().saturating_sub(suffix.len());
419 mid_start <= mid_end
420 };
421 }
422 }
423
424 let parts: smallvec::SmallVec<[&str; 4]> = pattern.split('*').collect();
426
427 if parts.len() > 4 {
432 return false;
433 }
434
435 let prefix = parts[0];
436 let suffix = parts[parts.len() - 1];
437
438 if !value.starts_with(prefix) || !value.ends_with(suffix) {
439 return false;
440 }
441
442 let mid_start = prefix.len();
443 let mid_end = value.len().saturating_sub(suffix.len());
444
445 if mid_start > mid_end {
446 return parts[1..parts.len() - 1].iter().all(|p| p.is_empty());
447 }
448
449 let mut remaining = &value[mid_start..mid_end];
450
451 for part in &parts[1..parts.len() - 1] {
452 if part.is_empty() {
453 continue;
454 }
455 match remaining.find(part) {
456 Some(idx) => remaining = &remaining[idx + part.len()..],
457 None => return false,
458 }
459 }
460
461 true
462}
463
464#[inline]
466pub fn element_str<'s>(seg: &'s Segment<'_>, idx: usize) -> &'s str {
467 seg.element_str(idx).unwrap_or("")
468}
469
470pub fn required_element<'a>(seg: &'a Segment<'_>, idx: usize) -> Result<&'a str, EdifactError> {
486 seg.text_element(idx)
487}
488
489pub fn optional_element<'a>(seg: &'a Segment<'_>, idx: usize) -> Option<&'a str> {
495 SegmentAccessor::optional_element(seg, idx)
496}
497
498pub fn required_component<'a>(
516 seg: &'a Segment<'_>,
517 elem_idx: usize,
518 comp_idx: usize,
519) -> Result<&'a str, EdifactError> {
520 seg.required_composite(elem_idx, comp_idx)
521}
522
523pub fn optional_component<'a>(
529 seg: &'a Segment<'_>,
530 elem_idx: usize,
531 comp_idx: usize,
532) -> Option<&'a str> {
533 SegmentAccessor::get_component(seg, elem_idx, comp_idx)
534}
535
536pub fn get_components_iter<'a>(seg: &'a Segment<'_>, idx: usize) -> impl Iterator<Item = &'a str> {
540 seg.elements
541 .get(idx)
542 .into_iter()
543 .flat_map(|elem| elem.components.iter().map(|(c, _)| c.as_ref()))
544}
545
546pub struct CompositeElement<'a> {
556 components: smallvec::SmallVec<[&'a str; 4]>,
557}
558
559impl<'a> CompositeElement<'a> {
560 pub fn from_slice(components: &'a [std::borrow::Cow<'a, str>]) -> Self {
564 Self {
565 components: components.iter().map(|c| c.as_ref()).collect(),
566 }
567 }
568
569 pub(crate) fn from_strs(components: smallvec::SmallVec<[&'a str; 4]>) -> Self {
571 Self { components }
572 }
573
574 pub fn get(&self, i: usize) -> Option<&'a str> {
576 self.components.get(i).copied()
577 }
578
579 pub fn get_or_empty(&self, i: usize) -> &'a str {
581 self.get(i).unwrap_or("")
582 }
583
584 pub fn len(&self) -> usize {
586 self.components.len()
587 }
588
589 pub fn is_empty(&self) -> bool {
591 self.components.is_empty()
592 }
593
594 pub fn iter(&self) -> impl Iterator<Item = &'a str> + '_ {
596 self.components.iter().copied()
597 }
598}
599
600pub fn composite_element<'a, 'd: 'a>(
602 seg: &'a Segment<'d>,
603 idx: usize,
604) -> Option<CompositeElement<'a>> {
605 seg.elements.get(idx).map(|elem| {
608 CompositeElement::from_strs(elem.components.iter().map(|(c, _)| c.as_ref()).collect())
609 })
610}
611
612pub fn find_segment_owned<'s>(
619 segments: &'s [crate::OwnedSegment],
620 tag: &str,
621) -> Option<&'s crate::OwnedSegment> {
622 segments.iter().find(|s| s.tag == tag)
623}
624
625pub fn find_qualified_segment_owned<'s>(
633 segments: &'s [crate::OwnedSegment],
634 tag: &str,
635 qualifier: &str,
636) -> Option<&'s crate::OwnedSegment> {
637 segments
638 .iter()
639 .find(|s| s.tag == tag && s.element_str(0).unwrap_or("") == qualifier)
640}
641
642pub trait SegmentAccessor<'a> {
644 fn get_element(&'a self, idx: usize) -> Option<&'a str>;
646 fn get_component(&'a self, elem: usize, comp: usize) -> Option<&'a str>;
648 fn get_composite(&'a self, idx: usize) -> Option<CompositeElement<'a>>;
650
651 fn text_element(&'a self, idx: usize) -> Result<&'a str, EdifactError>;
653 fn optional_element(&'a self, idx: usize) -> Option<&'a str>;
655 fn code_element<T: FromStr>(&'a self, idx: usize) -> Result<T, EdifactError>;
657 fn required_composite(&'a self, elem: usize, comp: usize) -> Result<&'a str, EdifactError>;
659 fn repeating_components(
665 &'a self,
666 elem: usize,
667 start_idx: usize,
668 count: usize,
669 ) -> Result<Vec<&'a str>, EdifactError> {
670 self.repeating_components_iter(elem, start_idx, count)
673 .collect()
674 }
675
676 fn repeating_components_iter(
681 &'a self,
682 elem: usize,
683 start_idx: usize,
684 count: usize,
685 ) -> impl Iterator<Item = Result<&'a str, EdifactError>> + 'a;
686}
687
688impl<'s, 'd> SegmentAccessor<'s> for Segment<'d>
689where
690 'd: 's,
691{
692 fn get_element(&'s self, idx: usize) -> Option<&'s str> {
693 self.element_str(idx).filter(|s| !s.is_empty())
694 }
695
696 fn get_component(&'s self, elem: usize, comp: usize) -> Option<&'s str> {
697 self.elements
698 .get(elem)
699 .and_then(|e| e.get_component(comp))
700 .filter(|s| !s.is_empty())
701 }
702
703 fn get_composite(&'s self, idx: usize) -> Option<CompositeElement<'s>> {
704 composite_element(self, idx)
705 }
706
707 fn text_element(&'s self, idx: usize) -> Result<&'s str, EdifactError> {
708 <Self as SegmentAccessor>::get_element(self, idx).ok_or_else(|| {
709 EdifactError::MissingRequiredElement {
710 tag: self.tag.to_owned(),
711 element_index: idx,
712 }
713 })
714 }
715
716 fn optional_element(&'s self, idx: usize) -> Option<&'s str> {
717 <Self as SegmentAccessor>::get_element(self, idx)
718 }
719
720 fn code_element<T: FromStr>(&'s self, idx: usize) -> Result<T, EdifactError> {
721 let raw = self.text_element(idx)?;
722 raw.parse::<T>().map_err(|_| EdifactError::InvalidText {
723 offset: self
724 .element_span(idx)
725 .map(|s| s.start)
726 .unwrap_or(self.span.start),
727 })
728 }
729
730 fn required_composite(&'s self, elem: usize, comp: usize) -> Result<&'s str, EdifactError> {
731 match self.elements.get(elem) {
732 None => Err(EdifactError::MissingRequiredElement {
733 tag: self.tag.to_owned(),
734 element_index: elem,
735 }),
736 Some(e) => e
737 .get_component(comp)
738 .filter(|s| !s.is_empty())
739 .ok_or_else(|| EdifactError::MissingRequiredComponent {
740 tag: self.tag.to_owned(),
741 element_index: elem,
742 component_index: comp,
743 }),
744 }
745 }
746
747 fn repeating_components_iter(
748 &'s self,
749 elem: usize,
750 start_idx: usize,
751 count: usize,
752 ) -> impl Iterator<Item = Result<&'s str, EdifactError>> + 's {
753 let tag = self.tag;
754 let element_exists = self.elements.get(elem).is_some();
755 let components = self
756 .elements
757 .get(elem)
758 .map(|e| e.components.as_slice())
759 .unwrap_or(&[]);
760 (start_idx..start_idx + count).map(move |idx| {
761 components
762 .get(idx)
763 .map(|(c, _)| c.as_ref())
764 .filter(|s| !s.is_empty())
765 .ok_or_else(|| {
766 if element_exists {
767 EdifactError::MissingRequiredComponent {
768 tag: tag.to_owned(),
769 element_index: elem,
770 component_index: idx,
771 }
772 } else {
773 EdifactError::MissingRequiredElement {
774 tag: tag.to_owned(),
775 element_index: elem,
776 }
777 }
778 })
779 })
780 }
781}
782
783#[derive(Debug)]
805pub struct MessageWindow<'a> {
806 pub message_type: Option<Cow<'a, str>>,
811 pub association_code: Option<Cow<'a, str>>,
816 pub segments: Vec<crate::Segment<'a>>,
818}
819
820impl<'a> MessageWindow<'a> {
821 fn from_segments(segments: Vec<crate::Segment<'a>>) -> Self {
827 let message_type = segments
828 .first()
829 .filter(|s| s.tag == "UNH")
830 .and_then(|unh| unh_component(unh, 0));
831 let association_code = segments
832 .first()
833 .filter(|s| s.tag == "UNH")
834 .and_then(|unh| unh_component(unh, 4));
835 Self {
836 message_type,
837 association_code,
838 segments,
839 }
840 }
841}
842
843fn unh_component<'a, 'b>(seg: &'b crate::Segment<'a>, comp_idx: usize) -> Option<Cow<'a, str>>
851where
852 'a: 'b,
853{
854 seg.elements
855 .get(1)
856 .and_then(|e| e.components.get(comp_idx))
857 .and_then(|(c, _)| if c.is_empty() { None } else { Some(c.clone()) })
858}
859
860#[derive(Debug, Clone)]
869pub struct OwnedMessageWindow {
870 pub message_type: Option<String>,
872 pub association_code: Option<String>,
874 pub segments: Vec<crate::OwnedSegment>,
876}
877
878impl OwnedMessageWindow {
879 fn from_segments(segments: Vec<crate::OwnedSegment>) -> Self {
880 let unh = segments.first().filter(|s| s.tag == "UNH");
881 let message_type = unh
882 .and_then(|s| s.elements.get(1))
883 .and_then(|e| e.components.first())
884 .map(|(c, _)| c.as_str())
885 .filter(|s| !s.is_empty())
886 .map(str::to_owned);
887 let association_code = unh
888 .and_then(|s| s.elements.get(1))
889 .and_then(|e| e.components.get(4))
890 .map(|(c, _)| c.as_str())
891 .filter(|s| !s.is_empty())
892 .map(str::to_owned);
893 Self {
894 message_type,
895 association_code,
896 segments,
897 }
898 }
899}
900
901pub struct MessageWindowsSliceIter<'a> {
911 inner: crate::FromBytesIter<'a>,
912 buf: Vec<crate::Segment<'a>>,
913 in_message: bool,
914 done: bool,
915}
916
917impl<'a> MessageWindowsSliceIter<'a> {
918 fn new(inner: crate::FromBytesIter<'a>) -> Self {
919 Self {
920 inner,
921 buf: Vec::new(),
922 in_message: false,
923 done: false,
924 }
925 }
926}
927
928impl<'a> Iterator for MessageWindowsSliceIter<'a> {
929 type Item = Result<MessageWindow<'a>, EdifactError>;
930
931 fn next(&mut self) -> Option<Self::Item> {
932 if self.done {
933 return None;
934 }
935 loop {
936 let segment = match self.inner.next() {
937 Some(Ok(s)) => s,
938 Some(Err(e)) => {
939 self.done = true;
940 return Some(Err(e));
941 }
942 None => {
943 self.done = true;
944 if self.in_message && !self.buf.is_empty() {
945 self.in_message = false;
946 let offset = self.buf.last().map(|s| s.span.end).unwrap_or(0);
947 return Some(Err(EdifactError::UnexpectedEof { offset }));
948 }
949 return None;
950 }
951 };
952
953 match segment.tag {
954 "UNH" => {
955 if self.in_message {
956 self.buf.clear();
957 self.in_message = false;
958 self.done = true;
959 return Some(Err(EdifactError::InvalidSegmentForMessage {
960 tag: "UNH".to_owned(),
961 message_type: "ENVELOPE".to_owned(),
962 span: segment.span,
963 }));
964 }
965 self.buf.clear();
966 self.in_message = true;
967 self.buf.push(segment);
968 }
969 "UNT" if self.in_message => {
970 self.buf.push(segment);
971 self.in_message = false;
972 let segments = std::mem::take(&mut self.buf);
973 return Some(Ok(MessageWindow::from_segments(segments)));
974 }
975 _ if self.in_message => {
976 self.buf.push(segment);
977 }
978 _ => {
979 }
981 }
982 }
983 }
984}
985
986pub struct MessageWindowsIter<I> {
1007 inner: I,
1008 buf: Vec<crate::OwnedSegment>,
1009 in_message: bool,
1010 done: bool,
1013}
1014
1015impl<I: Iterator<Item = Result<crate::OwnedSegment, EdifactError>>> MessageWindowsIter<I> {
1016 pub fn new(inner: I) -> Self {
1018 Self {
1019 inner,
1020 buf: Vec::new(),
1021 in_message: false,
1022 done: false,
1023 }
1024 }
1025}
1026
1027impl<I: Iterator<Item = Result<crate::OwnedSegment, EdifactError>>> Iterator
1028 for MessageWindowsIter<I>
1029{
1030 type Item = Result<OwnedMessageWindow, EdifactError>;
1031
1032 fn next(&mut self) -> Option<Self::Item> {
1033 if self.done {
1034 return None;
1035 }
1036 loop {
1037 let segment = match self.inner.next() {
1038 Some(Ok(s)) => s,
1039 Some(Err(e)) => {
1040 self.done = true;
1041 return Some(Err(e));
1042 }
1043 None => {
1044 self.done = true;
1045 if self.in_message && !self.buf.is_empty() {
1048 self.in_message = false;
1049 let offset = self.buf.last().map(|s| s.span.end).unwrap_or(0);
1050 return Some(Err(EdifactError::UnexpectedEof { offset }));
1051 }
1052 return None;
1053 }
1054 };
1055
1056 match segment.tag.as_str() {
1057 "UNH" => {
1058 if self.in_message {
1059 self.buf.clear();
1061 self.in_message = false;
1062 self.done = true;
1063 return Some(Err(EdifactError::InvalidSegmentForMessage {
1064 tag: "UNH".to_owned(),
1065 message_type: "ENVELOPE".to_owned(),
1066 span: segment.span,
1067 }));
1068 }
1069 self.buf.clear();
1070 self.in_message = true;
1071 self.buf.push(segment);
1072 }
1073 "UNT" if self.in_message => {
1074 self.buf.push(segment);
1075 self.in_message = false;
1076 let segments = std::mem::take(&mut self.buf);
1077 return Some(Ok(OwnedMessageWindow::from_segments(segments)));
1078 }
1079 _ if self.in_message => {
1080 self.buf.push(segment);
1081 }
1082 _ => {
1083 }
1085 }
1086 }
1087 }
1088}
1089
1090pub fn message_windows_bytes(input: &[u8]) -> MessageWindowsSliceIter<'_> {
1119 MessageWindowsSliceIter::new(crate::from_bytes(input))
1120}
1121
1122pub fn message_windows_from_reader<R: Read>(
1128 reader: R,
1129) -> MessageWindowsIter<crate::FromReaderIter<R>> {
1130 MessageWindowsIter::new(crate::from_reader(reader))
1131}
1132
1133pub fn deserialize_messages_from_reader<T, R>(
1152 reader: R,
1153) -> impl Iterator<Item = Result<T, EdifactError>>
1154where
1155 T: EdifactDeserialize,
1156 R: Read,
1157{
1158 message_windows_from_reader(reader).map(|window| {
1159 let window = window?;
1160 T::edifact_deserialize_owned(&window.segments)
1161 })
1162}
1163
1164pub fn deserialize_messages_bytes<T>(
1166 input: &[u8],
1167) -> impl Iterator<Item = Result<T, EdifactError>> + '_
1168where
1169 T: EdifactDeserialize,
1170{
1171 message_windows_bytes(input).map(|window| {
1172 let window = window?;
1173 T::edifact_deserialize(&window.segments)
1174 })
1175}
1176
1177pub struct DispatchedMessage {
1181 pub message_type: String,
1183 value: Box<dyn std::any::Any + Send + Sync>,
1184}
1185
1186impl DispatchedMessage {
1187 pub fn downcast<T: std::any::Any + Send + Sync + 'static>(&self) -> Option<&T> {
1191 self.value.downcast_ref::<T>()
1192 }
1193}
1194
1195impl std::fmt::Debug for DispatchedMessage {
1196 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
1197 f.debug_struct("DispatchedMessage")
1198 .field("message_type", &self.message_type)
1199 .finish_non_exhaustive()
1200 }
1201}
1202
1203type DispatchHandlerFn = Box<
1204 dyn for<'a> Fn(&[Segment<'a>]) -> Result<Box<dyn std::any::Any + Send + Sync>, EdifactError>
1205 + Send
1206 + Sync,
1207>;
1208
1209type FallbackHandlerFn = Box<
1210 dyn for<'a> Fn(
1211 &[Segment<'a>],
1212 &str,
1213 ) -> Result<Box<dyn std::any::Any + Send + Sync>, EdifactError>
1214 + Send
1215 + Sync,
1216>;
1217
1218pub struct MessageDispatch {
1243 handlers: Vec<(String, DispatchHandlerFn)>,
1244 fallback: Option<FallbackHandlerFn>,
1245}
1246
1247impl Default for MessageDispatch {
1248 fn default() -> Self {
1249 Self::new()
1250 }
1251}
1252
1253impl MessageDispatch {
1254 pub fn new() -> Self {
1256 Self {
1257 handlers: Vec::new(),
1258 fallback: None,
1259 }
1260 }
1261
1262 pub fn on<T, F>(mut self, message_type: &str, handler: F) -> Self
1267 where
1268 T: std::any::Any + Send + Sync + 'static,
1269 F: for<'a> Fn(&[Segment<'a>]) -> Result<T, EdifactError> + Send + Sync + 'static,
1270 {
1271 let erased: DispatchHandlerFn = Box::new(move |segs| {
1272 let val = handler(segs)?;
1273 Ok(Box::new(val) as Box<dyn std::any::Any + Send + Sync>)
1274 });
1275 self.handlers.push((message_type.to_owned(), erased));
1276 self
1277 }
1278
1279 pub fn fallback<T, F>(mut self, handler: F) -> Self
1284 where
1285 T: std::any::Any + Send + Sync + 'static,
1286 F: for<'a> Fn(&[Segment<'a>], &str) -> Result<T, EdifactError> + Send + Sync + 'static,
1287 {
1288 let erased: FallbackHandlerFn = Box::new(move |segs, mt| {
1289 let val = handler(segs, mt)?;
1290 Ok(Box::new(val) as Box<dyn std::any::Any + Send + Sync>)
1291 });
1292 self.fallback = Some(erased);
1293 self
1294 }
1295
1296 pub fn dispatch(&self, window: &[Segment<'_>]) -> Result<DispatchedMessage, EdifactError> {
1301 let message_type = window
1302 .iter()
1303 .find(|s| s.tag == "UNH")
1304 .and_then(|unh| unh.get_element(1))
1305 .and_then(|e| e.get_component(0))
1306 .map(|s| s.to_owned())
1307 .ok_or_else(|| EdifactError::MissingSegment {
1308 tag: "UNH".to_owned(),
1309 expected_position: "first segment of message window".to_owned(),
1310 })?;
1311
1312 for (mt, handler) in &self.handlers {
1313 if *mt == message_type {
1314 let value = handler(window)?;
1315 return Ok(DispatchedMessage {
1316 message_type,
1317 value,
1318 });
1319 }
1320 }
1321
1322 if let Some(fallback) = &self.fallback {
1323 let value = fallback(window, &message_type)?;
1324 return Ok(DispatchedMessage {
1325 message_type,
1326 value,
1327 });
1328 }
1329
1330 Err(EdifactError::UnexpectedMessageType { message_type })
1331 }
1332
1333 pub fn dispatch_all_from_bytes<'a>(
1338 &'a self,
1339 input: &'a [u8],
1340 ) -> impl Iterator<Item = Result<DispatchedMessage, EdifactError>> + 'a {
1341 message_windows_bytes(input).map(move |window| {
1342 let window = window?;
1343 self.dispatch(&window.segments)
1344 })
1345 }
1346
1347 pub fn dispatch_all_from_reader<R: Read + 'static>(
1354 &self,
1355 reader: R,
1356 ) -> impl Iterator<Item = Result<DispatchedMessage, EdifactError>> + '_ {
1357 message_windows_from_reader(reader).map(|window| {
1358 let window = window?;
1359 let borrowed: Vec<Segment<'_>> =
1360 window.segments.iter().map(|s| s.as_borrowed()).collect();
1361 self.dispatch(&borrowed)
1362 })
1363 }
1364}
1365
1366#[cfg(test)]
1367mod tests {
1368 use super::*;
1369
1370 #[derive(Debug, PartialEq)]
1372 struct BgmSegment {
1373 doc_name_code: String,
1374 pruef_id: String,
1375 msg_function: Option<String>,
1376 }
1377
1378 impl EdifactSegmentTag for BgmSegment {
1379 const SEGMENT_TAG: &'static str = "BGM";
1380 }
1381
1382 struct NadM;
1383
1384 impl EdifactSegmentTag for NadM {
1385 const SEGMENT_TAG: &'static str = "NAD";
1386 const QUALIFIER_PATTERN: Option<&'static str> = Some("M*");
1387 }
1388
1389 struct NadWildcard;
1390
1391 impl EdifactSegmentTag for NadWildcard {
1392 const SEGMENT_TAG: &'static str = "NAD";
1393 const QUALIFIER_PATTERN: Option<&'static str> = Some("M*");
1394 }
1395
1396 impl EdifactDeserialize for BgmSegment {
1397 fn edifact_deserialize(segments: &[Segment<'_>]) -> Result<Self, EdifactError> {
1398 let seg = find_segment(segments, "BGM").ok_or_else(|| {
1399 EdifactError::MissingRequiredElement {
1400 tag: "BGM".to_owned(),
1401 element_index: 0,
1402 }
1403 })?;
1404 Ok(Self {
1405 doc_name_code: element_str(seg, 0).to_owned(),
1406 pruef_id: element_str(seg, 1).to_owned(),
1407 msg_function: seg
1408 .element_str(2)
1409 .filter(|s| !s.is_empty())
1410 .map(str::to_owned),
1411 })
1412 }
1413 }
1414
1415 #[test]
1416 fn deserialize_single_segment() {
1417 let input = b"BGM+E03+11042+9'";
1418 let bgm: BgmSegment = deserialize(input).unwrap();
1419 assert_eq!(bgm.doc_name_code, "E03");
1420 assert_eq!(bgm.pruef_id, "11042");
1421 assert_eq!(bgm.msg_function, Some("9".to_owned()));
1422 }
1423
1424 #[test]
1425 fn streaming_deserialize_first_from_bytes() {
1426 let input = b"UNH+1+ORDERS:D:11A:UN'BGM+E03+11042+9'UNT+3+1'";
1427 let bgm: BgmSegment = deserialize_first_streaming(input).unwrap();
1428 assert_eq!(bgm.pruef_id, "11042");
1429 }
1430
1431 #[test]
1432 fn streaming_deserialize_all_from_bytes() {
1433 let input = b"BGM+E03+11042+9'RFF+AA:1'BGM+E01+11043+9'";
1434 let bgms: Vec<BgmSegment> = deserialize_all_streaming(input).unwrap();
1435 assert_eq!(bgms.len(), 2);
1436 assert_eq!(bgms[0].pruef_id, "11042");
1437 assert_eq!(bgms[1].pruef_id, "11043");
1438 }
1439
1440 #[test]
1441 fn streaming_deserialize_first_from_reader() {
1442 let input =
1443 std::io::Cursor::new(b"UNH+1+ORDERS:D:11A:UN'BGM+E03+11042+9'UNT+3+1'".to_vec());
1444 let bgm: BgmSegment = deserialize_first_from_reader(input).unwrap();
1445 assert_eq!(bgm.pruef_id, "11042");
1446 }
1447
1448 #[test]
1449 fn streaming_deserialize_all_from_reader() {
1450 let input = std::io::Cursor::new(b"BGM+E03+11042+9'BGM+E01+11043+9'".to_vec());
1451 let bgms: Vec<BgmSegment> = deserialize_all_from_reader(input).unwrap();
1452 assert_eq!(bgms.len(), 2);
1453 assert_eq!(bgms[0].pruef_id, "11042");
1454 assert_eq!(bgms[1].pruef_id, "11043");
1455 }
1456
1457 #[test]
1458 fn missing_segment_returns_error() {
1459 let input = b"DTM+137:20230401:102'";
1460 let result: Result<BgmSegment, _> = deserialize(input);
1461 assert!(result.is_err());
1462 }
1463
1464 #[test]
1465 fn vec_collects_all_matching_segments() {
1466 let input = b"DTM+137:20230401:102'BGM+E03+11042+9'BGM+E01+11043+9'";
1467 let bgms: Vec<BgmSegment> = deserialize(input).unwrap();
1468 assert_eq!(bgms.len(), 2);
1469 assert_eq!(bgms[0].pruef_id, "11042");
1470 assert_eq!(bgms[1].pruef_id, "11043");
1471 }
1472
1473 #[test]
1474 fn find_qualified_segment_matches_qualifier() {
1475 let input = b"NAD+MS+9900001+293'NAD+MR+9900002+293'";
1476 let segments: Vec<Segment<'_>> =
1477 crate::from_bytes(input).collect::<Result<_, _>>().unwrap();
1478 let nad_ms = find_qualified_segment(&segments, "NAD", "MS");
1479 let nad_mr = find_qualified_segment(&segments, "NAD", "MR");
1480 assert!(nad_ms.is_some());
1481 assert!(nad_mr.is_some());
1482 assert_eq!(element_str(nad_ms.unwrap(), 0), "MS");
1483 assert_eq!(element_str(nad_mr.unwrap(), 0), "MR");
1484 }
1485
1486 #[test]
1487 fn round_trip_str_api() {
1488 let input = "BGM+E03+11042+9'";
1489 let bgm: BgmSegment = deserialize_str(input).unwrap();
1490 assert_eq!(bgm.pruef_id, "11042");
1491 }
1492
1493 #[test]
1494 fn required_element_extraction() {
1495 let input = b"BGM+E03+11042+9'";
1496 let segments: Vec<Segment<'_>> =
1497 crate::from_bytes(input).collect::<Result<_, _>>().unwrap();
1498 let seg = &segments[0];
1499
1500 assert_eq!(required_element(seg, 0).unwrap(), "E03");
1501 assert_eq!(required_element(seg, 1).unwrap(), "11042");
1502 assert!(required_element(seg, 5).is_err());
1504 }
1505
1506 #[test]
1507 fn optional_element_extraction() {
1508 let input = b"BGM+E03+11042+9'BGM+E01++absent'";
1509 let segments: Vec<Segment<'_>> =
1510 crate::from_bytes(input).collect::<Result<_, _>>().unwrap();
1511
1512 assert_eq!(optional_element(&segments[0], 0), Some("E03"));
1514 assert_eq!(optional_element(&segments[0], 1), Some("11042"));
1515 assert_eq!(optional_element(&segments[0], 5), None);
1516
1517 assert_eq!(optional_element(&segments[1], 1), None);
1519 }
1520
1521 #[test]
1522 fn component_extraction() {
1523 let input = b"UNB+UNOA:1+SENDER+RECEIVER+200101:0900+1'";
1524 let segments: Vec<Segment<'_>> =
1525 crate::from_bytes(input).collect::<Result<_, _>>().unwrap();
1526 let seg = &segments[0];
1527
1528 assert_eq!(required_component(seg, 0, 0).unwrap(), "UNOA");
1529 assert_eq!(required_component(seg, 0, 1).unwrap(), "1");
1530 assert!(required_component(seg, 0, 5).is_err());
1532 }
1533
1534 #[test]
1535 fn composite_element_helper() {
1536 let input = b"UNB+UNOA:1+SENDER+RECEIVER+200101:0900+1'";
1537 let segments: Vec<Segment<'_>> =
1538 crate::from_bytes(input).collect::<Result<_, _>>().unwrap();
1539 let seg = &segments[0];
1540
1541 let comp = composite_element(seg, 0).unwrap();
1542 assert_eq!(comp.len(), 2);
1543 assert_eq!(comp.get(0), Some("UNOA"));
1544 assert_eq!(comp.get(1), Some("1"));
1545 assert_eq!(comp.get(5), None);
1546 assert_eq!(comp.get_or_empty(5), "");
1547 }
1548
1549 #[test]
1550 fn get_all_components() {
1551 let input = b"UNB+UNOA:1+SENDER+RECEIVER+200101:0900+1'";
1553 let segments: Vec<Segment<'_>> =
1554 crate::from_bytes(input).collect::<Result<_, _>>().unwrap();
1555 let seg = &segments[0];
1556
1557 let comps: Vec<&str> = get_components_iter(seg, 0).collect(); assert!(!comps.is_empty(), "Expected components but got empty");
1559 assert_eq!(comps.len(), 2);
1560 assert_eq!(comps[0], "UNOA");
1561 assert_eq!(comps[1], "1");
1562 }
1563
1564 #[test]
1565 fn qualifier_pattern_matching_supports_exact_and_wildcard() {
1566 assert!(qualifier_matches_pattern("MS", "MS"));
1568 assert!(!qualifier_matches_pattern("MS", "M")); assert!(qualifier_matches_pattern("MS", "M*"));
1571 assert!(qualifier_matches_pattern("MRY", "M*Y"));
1572 assert!(!qualifier_matches_pattern("AB", "M*"));
1573 }
1574
1575 #[test]
1577 fn qualifier_matches_pattern_table() {
1578 let cases: &[(&str, &str, bool)] = &[
1580 ("", "", true), ("", "*", true), ("A", "", false), ("", "A", false), ("MS", "MS", true),
1587 ("BY", "BY", true),
1588 ("ms", "MS", false), ("MSX", "MS", false), ("M", "MS", false), ("MS", "M*", true),
1593 ("MULTI", "MUL*", true),
1594 ("AB", "M*", false),
1595 ("", "M*", false), ("MSG", "*G", true),
1598 ("G", "*G", true),
1599 ("MSG", "*X", false),
1600 ("", "*G", false),
1601 ("MRY", "M*Y", true),
1603 ("MAY", "M*Y", true),
1604 ("MY", "M*Y", true), ("MYY", "M*Y", true), ("MAYZ", "M*Y", false), ("AB", "M*Y", false),
1608 ("*", "*", true), ("anything", "*", true),
1611 ("", "*", true),
1612 ("ABCDE", "A*C*E", true),
1614 ("ACE", "A*C*E", true), ("AXCYE", "A*C*E", true),
1616 ("ABCDF", "A*C*E", false),
1617 ("AB", "A**B", true), ("AB", "A*B*C", false),
1621 ("XMS", "MS", false),
1623 ];
1624
1625 for (value, pattern, expected) in cases {
1626 let got = qualifier_matches_pattern(value, pattern);
1627 assert_eq!(
1628 got, *expected,
1629 "qualifier_matches_pattern({value:?}, {pattern:?}) expected {expected} but got {got}"
1630 );
1631 }
1632 }
1633
1634 #[test]
1635 fn typed_qualifier_helpers_work() {
1636 let input = b"NAD+MS+9900001+293'NAD+MR+9900002+293'";
1637 let segments: Vec<Segment<'_>> =
1638 crate::from_bytes(input).collect::<Result<_, _>>().unwrap();
1639
1640 let first = find_segment_typed::<NadM>(&segments).unwrap();
1641 assert_eq!(first.element_str(0), Some("MS"));
1642
1643 let all: Vec<_> = find_segments_typed::<NadWildcard>(&segments).collect();
1644 assert_eq!(all.len(), 2);
1645 }
1646
1647 #[test]
1648 fn segment_accessor_trait_methods_work() {
1649 let input = b"UNB+UNOA:1+SENDER+RECEIVER+200101:0900+1'";
1650 let segments: Vec<Segment<'_>> =
1651 crate::from_bytes(input).collect::<Result<_, _>>().unwrap();
1652 let seg = &segments[0];
1653
1654 assert_eq!(SegmentAccessor::get_element(seg, 1), Some("SENDER"));
1655 assert_eq!(SegmentAccessor::required_composite(seg, 0, 1).unwrap(), "1");
1656 let parsed: i32 = SegmentAccessor::code_element(seg, 4).unwrap();
1657 assert_eq!(parsed, 1);
1658 let reps = SegmentAccessor::repeating_components(seg, 3, 0, 2).unwrap();
1659 assert_eq!(reps, vec!["200101", "0900"]);
1660 }
1661
1662 #[test]
1663 fn group_helpers_detect_contiguity() {
1664 struct NadAny;
1665 impl EdifactSegmentTag for NadAny {
1666 const SEGMENT_TAG: &'static str = "NAD";
1667 }
1668
1669 let contiguous_input = b"NAD+MS+1'NAD+MR+2'RFF+AA:1'";
1670 let contiguous_segments: Vec<Segment<'_>> = crate::from_bytes(contiguous_input)
1671 .collect::<Result<_, _>>()
1672 .unwrap();
1673 assert!(groups_are_contiguous_by_qualifier::<NadAny>(
1674 &contiguous_segments
1675 ));
1676
1677 let non_contiguous_input = b"NAD+MS+1'RFF+AA:1'NAD+MR+2'";
1678 let non_contiguous_segments: Vec<Segment<'_>> = crate::from_bytes(non_contiguous_input)
1679 .collect::<Result<_, _>>()
1680 .unwrap();
1681 assert!(!groups_are_contiguous_by_qualifier::<NadAny>(
1682 &non_contiguous_segments
1683 ));
1684 }
1685
1686 #[test]
1687 fn group_helpers_collect_contiguous_groups() {
1688 struct NadAny;
1689 impl EdifactSegmentTag for NadAny {
1690 const SEGMENT_TAG: &'static str = "NAD";
1691 }
1692
1693 let input = b"NAD+MS+1'NAD+MR+2'RFF+AA:1'NAD+BY+3'";
1694 let segments: Vec<Segment<'_>> =
1695 crate::from_bytes(input).collect::<Result<_, _>>().unwrap();
1696 let groups = contiguous_groups_by_qualifier::<NadAny>(&segments);
1697
1698 assert_eq!(groups.len(), 2);
1699 assert_eq!(groups[0].len(), 2);
1700 assert_eq!(groups[1].len(), 1);
1701 }
1702
1703 #[test]
1706 fn message_windows_bytes_yields_complete_windows() {
1707 let input = b"UNB+UNOA:1+S+R+200101:0900+1'\
1708 UNH+1+ORDERS:D:96A:UN'\
1709 BGM+220+PO-001+9'\
1710 UNT+3+1'\
1711 UNZ+1+1'";
1712 let windows: Vec<_> = message_windows_bytes(input)
1713 .collect::<Result<_, _>>()
1714 .unwrap();
1715 assert_eq!(windows.len(), 1);
1716 assert_eq!(windows[0].segments[0].tag, "UNH");
1717 assert_eq!(windows[0].segments.last().unwrap().tag, "UNT");
1718 assert_eq!(windows[0].message_type.as_deref(), Some("ORDERS"));
1719 assert_eq!(windows[0].association_code.as_deref(), None);
1720 }
1721
1722 #[test]
1723 fn message_windows_bytes_preserves_owned_unh_metadata() {
1724 let input = b"UNB+UNOA:1+S+R+200101:0900+1'\
1725 UNH+1+ORD?ERS:D:96A:UN:5??5??3a'\
1726 BGM+220+PO-001+9'\
1727 UNT+3+1'\
1728 UNZ+1+1'";
1729 let windows: Vec<_> = message_windows_bytes(input)
1730 .collect::<Result<_, _>>()
1731 .unwrap();
1732
1733 assert_eq!(windows.len(), 1);
1734 assert_eq!(windows[0].message_type.as_deref(), Some("ORDERS"));
1735 assert_eq!(windows[0].association_code.as_deref(), Some("5?5?3a"));
1736 }
1737
1738 #[test]
1739 fn message_windows_truncated_stream_returns_error() {
1740 let input = b"UNH+1+ORDERS:D:96A:UN'BGM+220+PO-001+9'";
1742 let results: Vec<_> = message_windows_bytes(input).collect();
1743 assert_eq!(results.len(), 1);
1744 assert!(
1745 matches!(results[0], Err(EdifactError::UnexpectedEof { .. })),
1746 "expected UnexpectedEof for truncated window, got: {:?}",
1747 results[0]
1748 );
1749 }
1750
1751 #[test]
1752 fn message_windows_subsequent_calls_return_none_after_truncation() {
1753 let input = b"UNH+1+ORDERS:D:96A:UN'BGM+220+PO-001+9'";
1754 let mut iter = message_windows_bytes(input);
1755 assert!(matches!(
1756 iter.next(),
1757 Some(Err(EdifactError::UnexpectedEof { .. }))
1758 ));
1759 assert!(iter.next().is_none());
1761 }
1762
1763 #[test]
1764 fn message_windows_unh_without_unt_before_next_unh_returns_error() {
1765 let input = b"UNH+1+ORDERS:D:96A:UN'BGM+220+PO-001+9'\
1766 UNH+2+ORDERS:D:96A:UN'BGM+220+PO-002+9'UNT+3+2'";
1767 let results: Vec<_> = message_windows_bytes(input).collect();
1768 assert!(
1770 matches!(
1771 results[0],
1772 Err(EdifactError::InvalidSegmentForMessage { ref tag, .. }) if tag == "UNH"
1773 ),
1774 "expected InvalidSegmentForMessage(UNH), got: {:?}",
1775 results[0]
1776 );
1777 }
1778
1779 fn parse_one(input: &str) -> crate::OwnedSegment {
1782 crate::from_reader_collect(std::io::Cursor::new(input.as_bytes()))
1783 .expect("parse failed")
1784 .into_iter()
1785 .next()
1786 .expect("at least one segment")
1787 }
1788
1789 #[test]
1790 fn segment_accessor_get_element_returns_value() {
1791 let owned = parse_one("BGM+220+PO-001+9'");
1792 let seg = owned.as_borrowed();
1793 assert_eq!(SegmentAccessor::get_element(&seg, 0), Some("220"));
1794 assert_eq!(SegmentAccessor::get_element(&seg, 1), Some("PO-001"));
1795 assert_eq!(SegmentAccessor::get_element(&seg, 2), Some("9"));
1796 assert_eq!(
1797 SegmentAccessor::get_element(&seg, 9),
1798 None,
1799 "out-of-bounds must return None"
1800 );
1801 }
1802
1803 #[test]
1804 fn segment_accessor_get_element_filters_empty() {
1805 let owned = parse_one("TST+++VALUE'");
1806 let seg = owned.as_borrowed();
1807 assert_eq!(
1809 SegmentAccessor::get_element(&seg, 0),
1810 None,
1811 "empty element must return None"
1812 );
1813 assert_eq!(
1814 SegmentAccessor::get_element(&seg, 1),
1815 None,
1816 "empty element must return None"
1817 );
1818 assert_eq!(SegmentAccessor::get_element(&seg, 2), Some("VALUE"));
1819 }
1820
1821 #[test]
1822 fn segment_accessor_get_component_returns_value() {
1823 let owned = parse_one("UNH+1+ORDERS:D:96A:UN'");
1824 let seg = owned.as_borrowed();
1825 assert_eq!(seg.get_component(1, 0), Some("ORDERS"));
1826 assert_eq!(seg.get_component(1, 1), Some("D"));
1827 assert_eq!(seg.get_component(1, 2), Some("96A"));
1828 assert_eq!(seg.get_component(1, 3), Some("UN"));
1829 assert_eq!(
1830 seg.get_component(1, 9),
1831 None,
1832 "out-of-bounds must return None"
1833 );
1834 }
1835
1836 #[test]
1837 fn segment_accessor_text_element_errors_on_missing() {
1838 let owned = parse_one("BGM+'");
1839 let seg = owned.as_borrowed();
1840 let err = seg.text_element(0);
1842 assert!(
1843 matches!(err, Err(EdifactError::MissingRequiredElement { ref tag, element_index: 0 }) if tag == "BGM"),
1844 "expected MissingRequiredElement, got: {err:?}"
1845 );
1846 }
1847
1848 #[test]
1849 fn segment_accessor_required_composite_errors_on_missing() {
1850 let owned = parse_one("DTM+137'");
1851 let seg = owned.as_borrowed();
1852 let err = seg.required_composite(0, 1);
1854 assert!(
1855 matches!(err, Err(EdifactError::MissingRequiredComponent { ref tag, element_index: 0, component_index: 1 }) if tag == "DTM"),
1856 "expected MissingRequiredComponent, got: {err:?}"
1857 );
1858 }
1859
1860 #[test]
1861 fn segment_accessor_code_element_parses_integer() {
1862 let owned = parse_one("QTY+21:100'");
1863 let seg = owned.as_borrowed();
1864 let qty: u32 = seg.code_element(0).expect("should parse qualifier as u32");
1865 assert_eq!(qty, 21);
1866 }
1867
1868 #[test]
1869 fn segment_accessor_optional_element_absent_returns_none() {
1870 let owned = parse_one("BGM+220'");
1871 let seg = owned.as_borrowed();
1872 assert_eq!(seg.optional_element(5), None);
1873 }
1874}