1#![forbid(unsafe_code)]
2
3use super::*;
4use crate::wire::ProtocolLimits;
5
6#[inline]
17fn validate_utf8(slice: &[u8]) -> core::result::Result<&str, ()> {
18 #[cfg(feature = "simd-decode")]
19 {
20 simdutf8::basic::from_utf8(slice).map_err(|_| ())
21 }
22 #[cfg(not(feature = "simd-decode"))]
23 {
24 core::str::from_utf8(slice).map_err(|_| ())
25 }
26}
27
28#[derive(Clone, Copy, Debug, Eq, PartialEq)]
29pub(crate) enum LobDecodeMode {
30 PlainLocator,
31 DefineMetadata,
32}
33
34pub fn build_fetch_payload(cursor_id: u32, arraysize: u32, ttc_field_version: u8) -> Vec<u8> {
35 build_fetch_payload_with_seq(cursor_id, arraysize, 1, ttc_field_version)
36}
37
38pub fn build_fetch_payload_with_seq(
39 cursor_id: u32,
40 arraysize: u32,
41 seq_num: u8,
42 ttc_field_version: u8,
43) -> Vec<u8> {
44 let mut writer = TtcWriter::with_capacity(32);
48 writer.write_function_header(TNS_FUNC_FETCH, seq_num, ttc_field_version);
49 writer.write_ub4(cursor_id);
50 writer.write_ub4(arraysize);
51 writer.into_bytes()
52}
53
54pub fn build_define_fetch_payload_with_seq(
55 cursor_id: u32,
56 arraysize: u32,
57 seq_num: u8,
58 define_columns: &[ColumnMetadata],
59 ttc_field_version: u8,
60) -> Result<Vec<u8>> {
61 let define_count =
62 u32::try_from(define_columns.len()).map_err(|_| ProtocolError::InvalidPacketLength {
63 length: define_columns.len(),
64 minimum: 0,
65 })?;
66 let mut writer = TtcWriter::new();
67 writer.write_function_header(TNS_FUNC_EXECUTE, seq_num, ttc_field_version);
68 writer.write_ub4(TNS_EXEC_OPTION_DEFINE | TNS_EXEC_OPTION_NOT_PLSQL);
69 writer.write_ub4(cursor_id);
70 writer.write_u8(0);
71 writer.write_ub4(0);
72 writer.write_u8(1);
73 writer.write_ub4(13);
74 writer.write_u8(0);
75 writer.write_u8(0);
76 writer.write_ub4(0);
77 writer.write_ub4(arraysize);
78 writer.write_ub4(TNS_MAX_LONG_LENGTH);
79 writer.write_u8(0);
80 writer.write_ub4(0);
81 writer.write_u8(0);
82 writer.write_u8(0);
83 writer.write_u8(0);
84 writer.write_u8(0);
85 writer.write_u8(0);
86 writer.write_u8(1);
87 writer.write_ub4(define_count);
88 writer.write_ub4(0);
89 writer.write_u8(0);
90 writer.write_u8(1);
91 writer.write_u8(0);
92 writer.write_ub4(0);
93 writer.write_u8(0);
94 writer.write_ub4(0);
95 writer.write_ub4(0);
96 writer.write_u8(0);
97 writer.write_ub4(0);
98 writer.write_u8(0);
99 writer.write_u8(0);
100 writer.write_ub4(0);
101 writer.write_ub4(0);
102 writer.write_ub4(0);
103 writer.write_ub4(0);
104 writer.write_ub4(0);
105 writer.write_ub4(0);
106 writer.write_ub4(0);
107 writer.write_ub4(arraysize);
108 writer.write_ub4(0);
109 writer.write_ub4(0);
110 writer.write_ub4(0);
111 writer.write_ub4(0);
112 writer.write_ub4(0);
113 writer.write_ub4(1);
114 writer.write_ub4(0);
115 writer.write_ub4(0);
116 writer.write_ub4(0);
117 writer.write_ub4(0);
118 writer.write_ub4(0);
119 for metadata in define_columns {
120 write_define_column_metadata(&mut writer, metadata);
121 }
122 Ok(writer.into_bytes())
123}
124
125pub(crate) fn write_define_column_metadata(writer: &mut TtcWriter, metadata: &ColumnMetadata) {
126 let (mut buffer_size, cont_flags, lob_prefetch_length) = match metadata.ora_type_num {
130 ORA_TYPE_NUM_CLOB | ORA_TYPE_NUM_BLOB => (metadata.buffer_size, TNS_LOB_PREFETCH_FLAG, 0),
131 ORA_TYPE_NUM_VECTOR => (
132 TNS_VECTOR_MAX_LENGTH,
133 TNS_LOB_PREFETCH_FLAG,
134 TNS_VECTOR_MAX_LENGTH,
135 ),
136 ORA_TYPE_NUM_JSON => (
137 TNS_JSON_MAX_LENGTH,
138 TNS_LOB_PREFETCH_FLAG,
139 TNS_JSON_MAX_LENGTH,
140 ),
141 _ => (metadata.buffer_size, 0, 0),
142 };
143 buffer_size = buffer_size.max(1);
144 writer.write_u8(metadata.ora_type_num);
145 writer.write_u8(TNS_BIND_USE_INDICATORS);
146 writer.write_u8(0);
147 writer.write_u8(0);
148 writer.write_ub4(buffer_size);
149 writer.write_ub4(0);
150 writer.write_ub8(cont_flags);
151 writer.write_ub4(0);
152 writer.write_ub2(0);
153 if metadata.csfrm != 0 {
154 writer.write_ub2(TNS_CHARSET_UTF8);
155 } else {
156 writer.write_ub2(0);
157 }
158 writer.write_u8(metadata.csfrm);
159 writer.write_ub4(lob_prefetch_length);
160 writer.write_ub4(0);
161}
162
163pub fn parse_query_response(
164 payload: &[u8],
165 capabilities: ClientCapabilities,
166) -> Result<QueryResult> {
167 parse_query_response_with_previous(payload, capabilities, None)
168}
169
170pub fn parse_query_response_with_limits(
171 payload: &[u8],
172 capabilities: ClientCapabilities,
173 limits: ProtocolLimits,
174) -> Result<QueryResult> {
175 parse_query_response_with_context_binds_options_and_limits(
176 payload,
177 capabilities,
178 &[],
179 None,
180 &[],
181 &[],
182 false,
183 ExecuteOptions::default(),
184 limits,
185 )
186}
187
188pub fn parse_query_response_with_binds(
189 payload: &[u8],
190 capabilities: ClientCapabilities,
191 binds: &[BindValue],
192) -> Result<QueryResult> {
193 parse_query_response_with_binds_and_options(
194 payload,
195 capabilities,
196 binds,
197 ExecuteOptions::default(),
198 )
199}
200
201pub fn parse_query_response_with_binds_and_options(
202 payload: &[u8],
203 capabilities: ClientCapabilities,
204 binds: &[BindValue],
205 exec_options: ExecuteOptions,
206) -> Result<QueryResult> {
207 parse_query_response_with_binds_options_and_columns(
208 payload,
209 capabilities,
210 binds,
211 exec_options,
212 &[],
213 )
214}
215
216pub fn parse_query_response_with_binds_options_and_columns(
220 payload: &[u8],
221 capabilities: ClientCapabilities,
222 binds: &[BindValue],
223 exec_options: ExecuteOptions,
224 known_columns: &[ColumnMetadata],
225) -> Result<QueryResult> {
226 let bind_columns = binds.iter().map(bind_column_metadata).collect::<Vec<_>>();
227 let output_bind_indexes = binds
228 .iter()
229 .enumerate()
230 .filter_map(|(index, value)| value.is_return_output().then_some(index))
231 .collect::<Vec<_>>();
232 parse_query_response_with_context_binds_and_options(
233 payload,
234 capabilities,
235 known_columns,
236 None,
237 &bind_columns,
238 &output_bind_indexes,
239 false,
240 exec_options,
241 )
242}
243
244pub fn parse_query_response_with_binds_options_columns_and_limits(
245 payload: &[u8],
246 capabilities: ClientCapabilities,
247 binds: &[BindValue],
248 exec_options: ExecuteOptions,
249 known_columns: &[ColumnMetadata],
250 limits: ProtocolLimits,
251) -> Result<QueryResult> {
252 limits.check_binds(binds.len())?;
253 let bind_columns = binds.iter().map(bind_column_metadata).collect::<Vec<_>>();
254 let output_bind_indexes = binds
255 .iter()
256 .enumerate()
257 .filter_map(|(index, value)| value.is_return_output().then_some(index))
258 .collect::<Vec<_>>();
259 parse_query_response_with_context_binds_options_and_limits(
260 payload,
261 capabilities,
262 known_columns,
263 None,
264 &bind_columns,
265 &output_bind_indexes,
266 false,
267 exec_options,
268 limits,
269 )
270}
271
272pub fn parse_query_response_with_previous(
273 payload: &[u8],
274 capabilities: ClientCapabilities,
275 previous_row: Option<&[Option<QueryValue>]>,
276) -> Result<QueryResult> {
277 parse_query_response_with_context(payload, capabilities, &[], previous_row)
278}
279
280pub fn parse_query_response_with_context(
281 payload: &[u8],
282 capabilities: ClientCapabilities,
283 previous_columns: &[ColumnMetadata],
284 previous_row: Option<&[Option<QueryValue>]>,
285) -> Result<QueryResult> {
286 parse_query_response_with_context_and_binds(
287 payload,
288 capabilities,
289 previous_columns,
290 previous_row,
291 &[],
292 &[],
293 false,
294 ProtocolLimits::DEFAULT,
295 )
296}
297
298pub fn parse_fetch_response_with_context(
299 payload: &[u8],
300 capabilities: ClientCapabilities,
301 previous_columns: &[ColumnMetadata],
302 previous_row: Option<&[Option<QueryValue>]>,
303) -> Result<QueryResult> {
304 parse_fetch_response_with_context_and_limits(
305 payload,
306 capabilities,
307 previous_columns,
308 previous_row,
309 ProtocolLimits::DEFAULT,
310 )
311}
312
313pub fn parse_fetch_response_with_context_and_limits(
314 payload: &[u8],
315 capabilities: ClientCapabilities,
316 previous_columns: &[ColumnMetadata],
317 previous_row: Option<&[Option<QueryValue>]>,
318 limits: ProtocolLimits,
319) -> Result<QueryResult> {
320 parse_query_response_with_context_binds_options_lob_mode_and_limits(
321 payload,
322 capabilities,
323 previous_columns,
324 previous_row,
325 &[],
326 &[],
327 true,
328 ExecuteOptions::default(),
329 LobDecodeMode::PlainLocator,
330 limits,
331 )
332}
333
334pub fn parse_define_fetch_response_with_context_and_limits(
335 payload: &[u8],
336 capabilities: ClientCapabilities,
337 previous_columns: &[ColumnMetadata],
338 previous_row: Option<&[Option<QueryValue>]>,
339 limits: ProtocolLimits,
340) -> Result<QueryResult> {
341 parse_query_response_with_context_binds_options_lob_mode_and_limits(
342 payload,
343 capabilities,
344 previous_columns,
345 previous_row,
346 &[],
347 &[],
348 true,
349 ExecuteOptions::default(),
350 LobDecodeMode::DefineMetadata,
351 limits,
352 )
353}
354
355#[allow(clippy::too_many_arguments)] pub(crate) fn parse_query_response_with_context_and_binds(
357 payload: &[u8],
358 capabilities: ClientCapabilities,
359 previous_columns: &[ColumnMetadata],
360 previous_row: Option<&[Option<QueryValue>]>,
361 bind_columns: &[ColumnMetadata],
362 output_bind_indexes: &[usize],
363 fetch_long_status: bool,
364 limits: ProtocolLimits,
365) -> Result<QueryResult> {
366 parse_query_response_with_context_binds_options_and_limits(
367 payload,
368 capabilities,
369 previous_columns,
370 previous_row,
371 bind_columns,
372 output_bind_indexes,
373 fetch_long_status,
374 ExecuteOptions::default(),
375 limits,
376 )
377}
378
379#[allow(clippy::too_many_arguments)] pub(crate) fn parse_query_response_with_context_binds_and_options(
381 payload: &[u8],
382 capabilities: ClientCapabilities,
383 previous_columns: &[ColumnMetadata],
384 previous_row: Option<&[Option<QueryValue>]>,
385 bind_columns: &[ColumnMetadata],
386 output_bind_indexes: &[usize],
387 fetch_long_status: bool,
388 exec_options: ExecuteOptions,
389) -> Result<QueryResult> {
390 parse_query_response_with_context_binds_options_and_limits(
391 payload,
392 capabilities,
393 previous_columns,
394 previous_row,
395 bind_columns,
396 output_bind_indexes,
397 fetch_long_status,
398 exec_options,
399 ProtocolLimits::DEFAULT,
400 )
401}
402
403#[allow(clippy::too_many_arguments)] pub(crate) fn parse_query_response_with_context_binds_options_and_limits(
405 payload: &[u8],
406 capabilities: ClientCapabilities,
407 previous_columns: &[ColumnMetadata],
408 previous_row: Option<&[Option<QueryValue>]>,
409 bind_columns: &[ColumnMetadata],
410 output_bind_indexes: &[usize],
411 fetch_long_status: bool,
412 exec_options: ExecuteOptions,
413 limits: ProtocolLimits,
414) -> Result<QueryResult> {
415 parse_query_response_with_context_binds_options_lob_mode_and_limits(
416 payload,
417 capabilities,
418 previous_columns,
419 previous_row,
420 bind_columns,
421 output_bind_indexes,
422 fetch_long_status,
423 exec_options,
424 LobDecodeMode::DefineMetadata,
425 limits,
426 )
427}
428
429#[allow(clippy::too_many_arguments)] fn parse_query_response_with_context_binds_options_lob_mode_and_limits(
431 payload: &[u8],
432 capabilities: ClientCapabilities,
433 previous_columns: &[ColumnMetadata],
434 previous_row: Option<&[Option<QueryValue>]>,
435 bind_columns: &[ColumnMetadata],
436 output_bind_indexes: &[usize],
437 fetch_long_status: bool,
438 exec_options: ExecuteOptions,
439 lob_decode_mode: LobDecodeMode,
440 limits: ProtocolLimits,
441) -> Result<QueryResult> {
442 let mut reader = TtcReader::with_limits(payload, limits)?;
443 let mut result = QueryResult {
444 columns: previous_columns.to_vec(),
445 more_rows: true,
446 ..QueryResult::default()
447 };
448 let mut fetch_long_status = fetch_long_status;
456 let mut bit_vector: Option<Vec<u8>> = None;
457 let mut out_bind_indexes: Vec<usize> = Vec::new();
458 while reader.remaining() > 0 {
459 let message_type = reader.read_u8()?;
460 match message_type {
461 0 => {}
462 TNS_MSG_TYPE_DESCRIBE_INFO => {
463 let _describe_name = reader.read_bytes()?;
464 let previous = std::mem::take(&mut result.columns);
465 parse_describe_info(&mut reader, capabilities, &mut result)?;
466 for (index, column) in result.columns.iter_mut().enumerate() {
473 if let Some(prev) = previous.get(index) {
474 if adjust_refetch_metadata(prev, column) {
475 fetch_long_status = true;
478 }
479 }
480 }
481 }
482 TNS_MSG_TYPE_ROW_HEADER => {
483 bit_vector = parse_row_header(&mut reader)?;
484 }
485 TNS_MSG_TYPE_ROW_DATA => {
486 if result.columns.is_empty() && !out_bind_indexes.is_empty() {
487 parse_out_bind_row_data(
488 &mut reader,
489 &mut result,
490 bind_columns,
491 &out_bind_indexes,
492 )?;
493 } else if result.columns.is_empty() && !output_bind_indexes.is_empty() {
494 parse_returning_row_data(
495 &mut reader,
496 &mut result,
497 bind_columns,
498 output_bind_indexes,
499 )?;
500 } else {
501 parse_row_data(
502 &mut reader,
503 &mut result,
504 bit_vector.as_deref(),
505 previous_row,
506 fetch_long_status,
507 lob_decode_mode,
508 )?;
509 }
510 bit_vector = None;
511 }
512 TNS_MSG_TYPE_BIT_VECTOR => {
513 bit_vector = Some(parse_bit_vector(&mut reader, result.columns.len())?);
514 }
515 TNS_MSG_TYPE_PARAMETER => {
516 let params =
517 parse_query_return_parameters(&mut reader, exec_options.arraydmlrowcounts)?;
518 if exec_options.arraydmlrowcounts {
519 result.array_dml_row_counts = Some(params.row_counts.unwrap_or_default());
520 }
521 if params.query_id.is_some() {
522 result.query_id = params.query_id;
523 }
524 }
525 TNS_MSG_TYPE_STATUS => {
526 let call_status = reader.read_ub4()?;
527 let _seq = reader.read_ub2()?;
528 result.txn_in_progress = Some(call_status & TNS_EOCS_FLAGS_TXN_IN_PROGRESS != 0);
529 }
530 TNS_MSG_TYPE_IO_VECTOR => {
531 out_bind_indexes = parse_io_vector(&mut reader, bind_columns.len())?
532 .into_iter()
533 .filter(|index| !output_bind_indexes.contains(index))
534 .collect();
535 }
536 TNS_MSG_TYPE_FLUSH_OUT_BINDS => break,
537 TNS_MSG_TYPE_SERVER_SIDE_PIGGYBACK => {
538 if let Some(update) = skip_server_side_piggyback(&mut reader)? {
539 result.sessionless_txn_state = Some(update);
540 }
541 }
542 TNS_MSG_TYPE_IMPLICIT_RESULTSET => {
543 let num_results = reader.read_ub4()?;
545 let mut resultsets: Vec<QueryValue> = reader.with_capacity_limited(
552 num_results as usize,
553 1,
554 ProtocolLimits::check_length_prefixed_elements,
555 )?;
556 for _ in 0..num_results {
557 let num_bytes = reader.read_u8()?;
558 reader.skip(usize::from(num_bytes))?;
559 let mut child = QueryResult::default();
560 parse_describe_info(&mut reader, capabilities, &mut child)?;
561 let child_cursor_id = u32::from(reader.read_ub2()?);
562 resultsets.push(QueryValue::Cursor(Box::new(CursorValue {
563 columns: child.columns,
564 cursor_id: child_cursor_id,
565 })));
566 }
567 result.implicit_resultsets = Some(resultsets);
568 }
569 TNS_MSG_TYPE_END_OF_RESPONSE => break,
570 TNS_MSG_TYPE_TOKEN => {
574 result.token_num = Some(reader.read_ub8()?);
575 }
576 TNS_MSG_TYPE_ERROR => {
577 let info = parse_server_error_info(&mut reader, capabilities.ttc_field_version)?;
578 result.txn_in_progress =
582 Some(info.call_status & TNS_EOCS_FLAGS_TXN_IN_PROGRESS != 0);
583 if info.cursor_id != 0 {
584 result.cursor_id = u32::from(info.cursor_id);
585 }
586 result.row_count = info.row_count;
587 result.compilation_error_warning |= info.compilation_error_warning;
588 result.last_rowid = info.rowid.clone();
589 if info.number == TNS_ERR_NO_DATA_FOUND && !result.columns.is_empty() {
590 result.more_rows = false;
591 } else if info.number == TNS_ERR_ARRAY_DML_ERRORS {
592 result.batch_errors = info.batch_errors;
596 } else if info.number != 0 {
597 let mut details = info.into_details();
598 details.array_dml_row_counts = result.array_dml_row_counts.take();
599 return Err(ProtocolError::ServerErrorInfo(Box::new(details)));
600 }
601 }
602 _ => {
603 let position = reader.position().saturating_sub(1);
604 if let Some(message) =
605 find_embedded_server_error(payload, capabilities.ttc_field_version, position)
606 {
607 return Err(ProtocolError::ServerError(message));
608 }
609 return Err(ProtocolError::UnknownMessageType {
610 message_type,
611 position,
612 });
613 }
614 }
615 }
616 Ok(result)
617}
618
619pub(crate) fn bind_column_metadata(value: &BindValue) -> ColumnMetadata {
620 let (ora_type_num, csfrm, buffer_size) = bind_metadata(value);
621 let object_schema = match value {
622 BindValue::ObjectOutput { schema, .. } | BindValue::ObjectInput { schema, .. } => {
623 Some(schema.clone())
624 }
625 _ => None,
626 };
627 let object_type_name = match value {
628 BindValue::ObjectOutput { type_name, .. } | BindValue::ObjectInput { type_name, .. } => {
629 Some(type_name.clone())
630 }
631 _ => None,
632 };
633 ColumnMetadata {
634 name: String::new(),
635 ora_type_num,
636 csfrm,
637 precision: 0,
638 scale: 0,
639 buffer_size,
640 max_size: buffer_size,
641 nulls_allowed: true,
642 is_json: false,
643 is_oson: false,
644 object_schema,
645 object_type_name,
646 is_array: matches!(value, BindValue::Array { .. }),
647 vector_dimensions: None,
648 vector_format: 0,
649 vector_flags: 0,
650 domain_schema: None,
651 domain_name: None,
652 annotations: None,
653 }
654}
655
656pub(crate) fn parse_io_vector(reader: &mut TtcReader<'_>, bind_count: usize) -> Result<Vec<usize>> {
657 let _flags = reader.read_u8()?;
658 let temp16 = reader.read_ub2()?;
659 let temp32 = reader.read_ub4()?;
660 let num_binds = usize::try_from(temp32)
661 .map_err(|_| ProtocolError::InvalidPacketLength {
662 length: usize::MAX,
663 minimum: 0,
664 })?
665 .checked_mul(256)
666 .and_then(|value| value.checked_add(usize::from(temp16)))
667 .ok_or(ProtocolError::InvalidPacketLength {
668 length: usize::MAX,
669 minimum: 0,
670 })?;
671 let _num_iters_this_time = reader.read_ub4()?;
672 let _uac_buffer_length = reader.read_ub2()?;
673 let fast_fetch_len = reader.read_ub2()?;
674 if fast_fetch_len > 0 {
675 reader.skip(usize::from(fast_fetch_len))?;
676 }
677 let rowid_len = reader.read_ub2()?;
678 if rowid_len > 0 {
679 reader.skip(usize::from(rowid_len))?;
680 }
681 let mut out_indexes = Vec::new();
682 reader.limits().check_binds(num_binds)?;
683 for index in 0..num_binds {
684 let direction = reader.read_u8()?;
685 if index < bind_count && direction != TNS_BIND_DIR_INPUT {
686 out_indexes.push(index);
687 }
688 }
689 Ok(out_indexes)
690}
691
692pub(crate) fn find_embedded_server_error(
693 payload: &[u8],
694 ttc_field_version: u8,
695 position: usize,
696) -> Option<String> {
697 let start = position.saturating_sub(64);
698 for candidate in start..=position {
699 if !matches!(payload.get(candidate).copied(), Some(TNS_MSG_TYPE_ERROR)) {
700 continue;
701 }
702 let mut reader = TtcReader::new(payload.get(candidate + 1..)?);
703 let info = parse_server_error_info(&mut reader, ttc_field_version).ok()?;
704 if info.number != 0 && info.message.starts_with("ORA-") {
705 return Some(info.message);
706 }
707 }
708 None
709}
710
711pub(crate) fn parse_describe_info(
712 reader: &mut TtcReader<'_>,
713 capabilities: ClientCapabilities,
714 result: &mut QueryResult,
715) -> Result<()> {
716 let _max_row_size = reader.read_ub4()?;
717 let num_columns = reader.read_ub4()?;
718 reader.limits().check_columns(num_columns as usize)?;
719 result.columns.clear();
720 if num_columns > 0 {
721 reader.skip(1)?;
722 }
723 for _ in 0..num_columns {
724 result
725 .columns
726 .push(parse_column_metadata(reader, capabilities)?);
727 }
728 let _current_date = reader.read_bytes_with_length()?;
729 let _dcbflag = reader.read_ub4()?;
730 let _dcbmdbz = reader.read_ub4()?;
731 let _dcbmnpr = reader.read_ub4()?;
732 let _dcbmxpr = reader.read_ub4()?;
733 let _dcbqcky = reader.read_bytes_with_length()?;
734 Ok(())
735}
736
737pub(crate) fn parse_column_metadata(
738 reader: &mut TtcReader<'_>,
739 capabilities: ClientCapabilities,
740) -> Result<ColumnMetadata> {
741 let ora_type_num = reader.read_u8()?;
742 reader.skip(1)?;
743 let precision = reader.read_i8()?;
744 let scale = reader.read_i8()?;
745 let buffer_size = reader.read_ub4()?;
746 let _max_array_elements = reader.read_ub4()?;
747 let _cont_flags = reader.read_ub8()?;
748 let _oid = reader.read_bytes_with_length()?;
749 let _version = reader.read_ub2()?;
750 let _charset_id = reader.read_ub2()?;
751 let csfrm = reader.read_u8()?;
752 let mut max_size = reader.read_ub4()?;
753 if ora_type_num == ORA_TYPE_NUM_RAW {
754 max_size = buffer_size;
755 }
756 if version_gates::carries_oaccolid(capabilities.ttc_field_version) {
757 let _oaccolid = reader.read_ub4()?;
758 }
759 let nulls_allowed = reader.read_u8()? != 0;
760 reader.skip(1)?;
761 let name = reader.read_string_with_length()?.unwrap_or_default();
762 let object_schema = reader.read_string_with_length()?;
763 let object_type_name = reader.read_string_with_length()?;
764 let _column_position = reader.read_ub2()?;
765 let uds_flags = reader.read_ub4()?;
766 let mut domain_schema = None;
767 let mut domain_name = None;
768 let mut annotations: Option<Vec<(String, String)>> = None;
769 if version_gates::reads_column_domain(capabilities.ttc_field_version) {
770 domain_schema = reader.read_string_with_length()?;
771 domain_name = reader.read_string_with_length()?;
772 }
773 if version_gates::reads_column_annotations(capabilities.ttc_field_version) {
774 let num_annotations = reader.read_ub4()?;
775 if num_annotations > 0 {
776 reader.skip(1)?;
777 let num_annotations = reader.read_ub4()?;
778 reader.skip(1)?;
779 let mut collected: Vec<(String, String)> = reader.with_capacity_limited(
783 num_annotations as usize,
784 1,
785 ProtocolLimits::check_object_elements,
786 )?;
787 for _ in 0..num_annotations {
788 let key = reader.read_string_with_length()?.unwrap_or_default();
789 let value = reader.read_string_with_length()?.unwrap_or_default();
792 let _flags = reader.read_ub4()?;
793 collected.push((key, value));
794 }
795 let _flags = reader.read_ub4()?;
796 annotations = Some(collected);
797 }
798 }
799 let mut vector_dimensions = None;
800 let mut vector_format = 0u8;
801 let mut vector_flags = 0u8;
802 if version_gates::reads_column_vector_metadata(capabilities.ttc_field_version) {
803 let dims = reader.read_ub4()?;
805 reader.limits().check_vector_dimensions(dims as usize)?;
806 vector_format = reader.read_u8()?;
807 vector_flags = reader.read_u8()?;
808 if ora_type_num == ORA_TYPE_NUM_VECTOR {
809 vector_dimensions = Some(dims);
810 }
811 }
812
813 Ok(ColumnMetadata {
814 name,
815 ora_type_num,
816 csfrm,
817 precision,
818 scale,
819 buffer_size,
820 max_size,
821 nulls_allowed,
822 is_json: uds_flags & TNS_UDS_FLAGS_IS_JSON != 0,
823 is_oson: uds_flags & TNS_UDS_FLAGS_IS_OSON != 0,
824 object_schema,
825 object_type_name,
826 is_array: false,
827 vector_dimensions,
828 vector_format,
829 vector_flags,
830 domain_schema,
831 domain_name,
832 annotations,
833 })
834}
835
836pub(crate) fn parse_row_header(reader: &mut TtcReader<'_>) -> Result<Option<Vec<u8>>> {
837 reader.skip(1)?;
838 let _num_requests = reader.read_ub2()?;
839 let _iteration_number = reader.read_ub4()?;
840 let _num_iters = reader.read_ub4()?;
841 let _buffer_length = reader.read_ub2()?;
842 let num_bytes = reader.read_ub4()?;
843 let bit_vector = if num_bytes > 0 {
844 reader.skip(1)?;
845 Some(reader.read_raw(num_bytes as usize)?.to_vec())
846 } else {
847 None
848 };
849 let _rxhrid = reader.read_bytes_with_length()?;
850 Ok(bit_vector)
851}
852
853pub(crate) fn parse_bit_vector(reader: &mut TtcReader<'_>, num_columns: usize) -> Result<Vec<u8>> {
854 let _num_columns_sent = reader.read_ub2()?;
855 let num_bytes = num_columns.div_ceil(8);
856 Ok(reader.read_raw(num_bytes)?.to_vec())
857}
858
859pub(crate) fn parse_row_data(
860 reader: &mut TtcReader<'_>,
861 result: &mut QueryResult,
862 bit_vector: Option<&[u8]>,
863 previous_row: Option<&[Option<QueryValue>]>,
864 fetch_long_status: bool,
865 lob_decode_mode: LobDecodeMode,
866) -> Result<()> {
867 let mut row = Vec::with_capacity(result.columns.len());
868 for (index, metadata) in result.columns.iter().enumerate() {
869 if is_duplicate_column(bit_vector, index) {
870 let previous = result
871 .rows
872 .last()
873 .map(Vec::as_slice)
874 .or(previous_row)
875 .and_then(|last| last.get(index))
876 .cloned()
877 .ok_or(ProtocolError::TtcDecode(
878 "duplicate row data without previous row",
879 ))?;
880 row.push(previous);
881 continue;
882 }
883 row.push(parse_column_value_with_lob_mode(
884 reader,
885 metadata,
886 lob_decode_mode,
887 )?);
888 if fetch_long_status
889 && matches!(
890 metadata.ora_type_num,
891 ORA_TYPE_NUM_LONG | ORA_TYPE_NUM_LONG_RAW
892 )
893 {
894 let _null_indicator = reader.read_sb4()?;
895 let _return_code = reader.read_ub4()?;
896 }
897 }
898 result.rows.push(row);
899 Ok(())
900}
901
902pub(crate) fn parse_out_bind_row_data(
903 reader: &mut TtcReader<'_>,
904 result: &mut QueryResult,
905 bind_columns: &[ColumnMetadata],
906 out_bind_indexes: &[usize],
907) -> Result<()> {
908 for index in out_bind_indexes {
909 let metadata = bind_columns.get(*index).ok_or(ProtocolError::TtcDecode(
910 "out bind index without bind metadata",
911 ))?;
912 if metadata.is_array {
913 let num_elements = usize::try_from(reader.read_ub4()?).map_err(|_| {
914 ProtocolError::InvalidPacketLength {
915 length: usize::MAX,
916 minimum: 0,
917 }
918 })?;
919 reader.limits().check_batch_rows(num_elements)?;
920 let mut values: Vec<Option<QueryValue>> =
923 reader.with_capacity_limited(num_elements, 1, ProtocolLimits::check_batch_rows)?;
924 for _ in 0..num_elements {
925 let value = parse_column_value(reader, metadata)?;
926 let actual_num_bytes = reader.read_sb4()?;
927 values.push(apply_out_bind_actual_num_bytes(
928 metadata,
929 value,
930 actual_num_bytes,
931 "truncated array OUT bind value",
932 )?);
933 }
934 result
935 .out_values
936 .push((*index, Some(QueryValue::Array(values))));
937 continue;
938 }
939 let value = parse_column_value(reader, metadata)?;
940 let actual_num_bytes = reader.read_sb4()?;
941 result.out_values.push((
942 *index,
943 apply_out_bind_actual_num_bytes(
944 metadata,
945 value,
946 actual_num_bytes,
947 "truncated OUT bind value",
948 )?,
949 ));
950 }
951 Ok(())
952}
953
954pub(crate) fn parse_returning_row_data(
955 reader: &mut TtcReader<'_>,
956 result: &mut QueryResult,
957 bind_columns: &[ColumnMetadata],
958 output_bind_indexes: &[usize],
959) -> Result<()> {
960 for index in output_bind_indexes {
961 let metadata = bind_columns.get(*index).ok_or(ProtocolError::TtcDecode(
962 "return bind index without bind metadata",
963 ))?;
964 let num_rows = usize::try_from(reader.read_ub4()?).map_err(|_| {
965 ProtocolError::InvalidPacketLength {
966 length: usize::MAX,
967 minimum: 0,
968 }
969 })?;
970 reader.limits().check_batch_rows(num_rows)?;
971 let mut values: Vec<Option<QueryValue>> =
973 reader.with_capacity_limited(num_rows, 1, ProtocolLimits::check_batch_rows)?;
974 for _ in 0..num_rows {
975 let value = parse_column_value(reader, metadata)?;
976 let actual_num_bytes = reader.read_sb4()?;
977 values.push(apply_out_bind_actual_num_bytes(
978 metadata,
979 value,
980 actual_num_bytes,
981 "truncated DML RETURNING value",
982 )?);
983 }
984 result.return_values.push((*index, values));
985 }
986 Ok(())
987}
988
989fn apply_out_bind_actual_num_bytes(
990 metadata: &ColumnMetadata,
991 value: Option<QueryValue>,
992 actual_num_bytes: i32,
993 truncation_error: &'static str,
994) -> Result<Option<QueryValue>> {
995 if actual_num_bytes < 0 && metadata.ora_type_num == ORA_TYPE_NUM_BOOLEAN {
996 return Ok(None);
997 }
998 if actual_num_bytes != 0 && value.is_some() {
999 return Err(ProtocolError::TtcDecode(truncation_error));
1000 }
1001 Ok(value)
1002}
1003
1004pub(crate) fn is_duplicate_column(bit_vector: Option<&[u8]>, column_num: usize) -> bool {
1005 let Some(bit_vector) = bit_vector else {
1006 return false;
1007 };
1008 let byte_num = column_num / 8;
1009 let bit_num = column_num % 8;
1010 bit_vector
1011 .get(byte_num)
1012 .is_some_and(|byte| byte & (1 << bit_num) == 0)
1013}
1014
1015pub(crate) fn parse_column_value(
1016 reader: &mut TtcReader<'_>,
1017 metadata: &ColumnMetadata,
1018) -> Result<Option<QueryValue>> {
1019 parse_column_value_with_lob_mode(reader, metadata, LobDecodeMode::DefineMetadata)
1020}
1021
1022fn parse_column_value_with_lob_mode(
1023 reader: &mut TtcReader<'_>,
1024 metadata: &ColumnMetadata,
1025 lob_decode_mode: LobDecodeMode,
1026) -> Result<Option<QueryValue>> {
1027 if metadata.buffer_size == 0
1028 && !matches!(
1029 metadata.ora_type_num,
1030 ORA_TYPE_NUM_LONG | ORA_TYPE_NUM_LONG_RAW | ORA_TYPE_NUM_UROWID
1031 )
1032 {
1033 return Ok(None);
1034 }
1035 match metadata.ora_type_num {
1036 ORA_TYPE_NUM_VARCHAR | ORA_TYPE_NUM_CHAR | ORA_TYPE_NUM_LONG => {
1037 let Some(bytes) = reader.read_bytes()? else {
1038 return Ok(None);
1039 };
1040 match decode_text_value(&bytes, metadata.csfrm) {
1041 Ok(value) => Ok(Some(QueryValue::Text(value))),
1042 Err(ProtocolError::TtcDecode(_)) => Ok(Some(QueryValue::TextRaw {
1046 bytes,
1047 csfrm: metadata.csfrm,
1048 })),
1049 Err(err) => Err(err),
1050 }
1051 }
1052 ORA_TYPE_NUM_RAW | ORA_TYPE_NUM_LONG_RAW => Ok(reader.read_bytes()?.map(QueryValue::Raw)),
1053 ORA_TYPE_NUM_ROWID => parse_rowid_value(reader).map(|value| value.map(QueryValue::Rowid)),
1054 ORA_TYPE_NUM_UROWID => parse_urowid_value(reader).map(|value| value.map(QueryValue::Rowid)),
1055 ORA_TYPE_NUM_NUMBER | ORA_TYPE_NUM_BINARY_INTEGER => {
1056 let Some(bytes) = reader.read_bytes()? else {
1057 return Ok(None);
1058 };
1059 decode_number_value(&bytes).map(Some)
1060 }
1061 ORA_TYPE_NUM_BINARY_DOUBLE => {
1062 let Some(bytes) = reader.read_bytes()? else {
1063 return Ok(None);
1064 };
1065 decode_binary_double(&bytes)
1066 .map(|value| Some(QueryValue::BinaryDouble(value.to_string())))
1067 }
1068 ORA_TYPE_NUM_BINARY_FLOAT => {
1069 let Some(bytes) = reader.read_bytes()? else {
1070 return Ok(None);
1071 };
1072 decode_binary_float(&bytes)
1074 .map(|value| Some(QueryValue::BinaryDouble(f64::from(value).to_string())))
1075 }
1076 ORA_TYPE_NUM_BOOLEAN => {
1077 let Some(bytes) = reader.read_bytes()? else {
1078 return Ok(None);
1079 };
1080 let is_true = matches!(bytes.last(), Some(&1));
1083 Ok(Some(QueryValue::Boolean(is_true)))
1084 }
1085 ORA_TYPE_NUM_INTERVAL_DS => {
1086 let Some(bytes) = reader.read_bytes()? else {
1087 return Ok(None);
1088 };
1089 decode_interval_ds(&bytes).map(Some)
1090 }
1091 ORA_TYPE_NUM_INTERVAL_YM => {
1092 let Some(bytes) = reader.read_bytes()? else {
1093 return Ok(None);
1094 };
1095 decode_interval_ym(&bytes).map(Some)
1096 }
1097 ORA_TYPE_NUM_DATE
1098 | ORA_TYPE_NUM_TIMESTAMP
1099 | ORA_TYPE_NUM_TIMESTAMP_LTZ
1100 | ORA_TYPE_NUM_TIMESTAMP_TZ => {
1101 let Some(bytes) = reader.read_bytes()? else {
1102 return Ok(None);
1103 };
1104 decode_datetime_value(&bytes).map(Some)
1105 }
1106 ORA_TYPE_NUM_CLOB | ORA_TYPE_NUM_BLOB | ORA_TYPE_NUM_BFILE => {
1107 parse_lob_value(reader, metadata, lob_decode_mode)
1108 }
1109 ORA_TYPE_NUM_VECTOR => parse_vector_value(reader),
1110 ORA_TYPE_NUM_JSON => parse_json_value(reader),
1111 ORA_TYPE_NUM_CURSOR => parse_cursor_value(reader).map(Some),
1112 ORA_TYPE_NUM_OBJECT => parse_object_value(reader, metadata),
1113 _ => Err(ProtocolError::UnsupportedFeature("query column type")),
1114 }
1115}
1116
1117enum ColumnSlot<'buf> {
1125 Null,
1127 Wire(QueryValueRef<'buf>),
1129 Number {
1132 range: core::ops::Range<usize>,
1133 is_integer: bool,
1134 },
1135 Owned(usize),
1138}
1139
1140fn parse_column_slot<'buf>(
1150 reader: &mut TtcReader<'buf>,
1151 metadata: &ColumnMetadata,
1152 number_arena: &mut String,
1153 owned_arena: &mut Vec<QueryValue>,
1154 digits: &mut Vec<u8>,
1155 lob_decode_mode: LobDecodeMode,
1156) -> Result<ColumnSlot<'buf>> {
1157 fn park(owned_arena: &mut Vec<QueryValue>, value: Option<QueryValue>) -> ColumnSlot<'static> {
1160 match value {
1161 None => ColumnSlot::Null,
1162 Some(value) => {
1163 owned_arena.push(value);
1164 ColumnSlot::Owned(owned_arena.len() - 1)
1165 }
1166 }
1167 }
1168
1169 if metadata.buffer_size == 0
1170 && !matches!(
1171 metadata.ora_type_num,
1172 ORA_TYPE_NUM_LONG | ORA_TYPE_NUM_LONG_RAW | ORA_TYPE_NUM_UROWID
1173 )
1174 {
1175 return Ok(ColumnSlot::Null);
1176 }
1177 match metadata.ora_type_num {
1178 ORA_TYPE_NUM_VARCHAR | ORA_TYPE_NUM_CHAR | ORA_TYPE_NUM_LONG => {
1179 match reader.read_bytes_borrowed()? {
1180 BorrowedBytes::Null => Ok(ColumnSlot::Null),
1181 BorrowedBytes::Slice(slice) if metadata.csfrm != CS_FORM_NCHAR => {
1184 match validate_utf8(slice) {
1185 Ok(text) => Ok(ColumnSlot::Wire(QueryValueRef::Text(text))),
1186 Err(_) => Ok(park(
1187 owned_arena,
1188 Some(QueryValue::TextRaw {
1189 bytes: slice.to_vec(),
1190 csfrm: metadata.csfrm,
1191 }),
1192 )),
1193 }
1194 }
1195 other => {
1198 let bytes = other.into_vec();
1199 let value = match decode_text_value(&bytes, metadata.csfrm) {
1200 Ok(text) => QueryValue::Text(text),
1201 Err(ProtocolError::TtcDecode(_)) => QueryValue::TextRaw {
1202 bytes,
1203 csfrm: metadata.csfrm,
1204 },
1205 Err(err) => return Err(err),
1206 };
1207 Ok(park(owned_arena, Some(value)))
1208 }
1209 }
1210 }
1211 ORA_TYPE_NUM_RAW | ORA_TYPE_NUM_LONG_RAW => match reader.read_bytes_borrowed()? {
1212 BorrowedBytes::Null => Ok(ColumnSlot::Null),
1213 BorrowedBytes::Slice(slice) => Ok(ColumnSlot::Wire(QueryValueRef::Raw(slice))),
1214 BorrowedBytes::Chunked(bytes) => Ok(park(owned_arena, Some(QueryValue::Raw(bytes)))),
1215 },
1216 ORA_TYPE_NUM_NUMBER | ORA_TYPE_NUM_BINARY_INTEGER => {
1217 with_small_bytes(reader, |bytes| match bytes {
1223 None => Ok(ColumnSlot::Null),
1224 Some(bytes) => {
1225 let start = number_arena.len();
1226 let is_integer = decode_number_text_into(bytes, digits, number_arena)?;
1227 Ok(ColumnSlot::Number {
1228 range: start..number_arena.len(),
1229 is_integer,
1230 })
1231 }
1232 })
1233 }
1234 ORA_TYPE_NUM_BOOLEAN => with_small_bytes(reader, |bytes| match bytes {
1235 None => Ok(ColumnSlot::Null),
1236 Some(bytes) => Ok(ColumnSlot::Wire(QueryValueRef::Boolean(matches!(
1237 bytes.last(),
1238 Some(&1)
1239 )))),
1240 }),
1241 ORA_TYPE_NUM_INTERVAL_DS => with_small_bytes(reader, |bytes| match bytes {
1242 None => Ok(ColumnSlot::Null),
1243 Some(bytes) => match decode_interval_ds(bytes)? {
1244 QueryValue::IntervalDS {
1245 days,
1246 hours,
1247 minutes,
1248 seconds,
1249 fseconds,
1250 } => Ok(ColumnSlot::Wire(QueryValueRef::IntervalDS {
1251 days,
1252 hours,
1253 minutes,
1254 seconds,
1255 fseconds,
1256 })),
1257 other => Ok(park(owned_arena, Some(other))),
1258 },
1259 }),
1260 ORA_TYPE_NUM_INTERVAL_YM => with_small_bytes(reader, |bytes| match bytes {
1261 None => Ok(ColumnSlot::Null),
1262 Some(bytes) => match decode_interval_ym(bytes)? {
1263 QueryValue::IntervalYM { years, months } => {
1264 Ok(ColumnSlot::Wire(QueryValueRef::IntervalYM {
1265 years,
1266 months,
1267 }))
1268 }
1269 other => Ok(park(owned_arena, Some(other))),
1270 },
1271 }),
1272 ORA_TYPE_NUM_DATE
1273 | ORA_TYPE_NUM_TIMESTAMP
1274 | ORA_TYPE_NUM_TIMESTAMP_LTZ
1275 | ORA_TYPE_NUM_TIMESTAMP_TZ => with_small_bytes(reader, |bytes| match bytes {
1276 None => Ok(ColumnSlot::Null),
1277 Some(bytes) => match decode_datetime_value(bytes)? {
1278 QueryValue::DateTime {
1279 year,
1280 month,
1281 day,
1282 hour,
1283 minute,
1284 second,
1285 nanosecond,
1286 } => Ok(ColumnSlot::Wire(QueryValueRef::DateTime {
1287 year,
1288 month,
1289 day,
1290 hour,
1291 minute,
1292 second,
1293 nanosecond,
1294 })),
1295 QueryValue::TimestampTz {
1296 year,
1297 month,
1298 day,
1299 hour,
1300 minute,
1301 second,
1302 nanosecond,
1303 offset_minutes,
1304 } => Ok(ColumnSlot::Wire(QueryValueRef::TimestampTz {
1305 year,
1306 month,
1307 day,
1308 hour,
1309 minute,
1310 second,
1311 nanosecond,
1312 offset_minutes,
1313 })),
1314 other => Ok(park(owned_arena, Some(other))),
1315 },
1316 }),
1317 _ => {
1321 let value = parse_column_value_with_lob_mode(reader, metadata, lob_decode_mode)?;
1322 Ok(park(owned_arena, value))
1323 }
1324 }
1325}
1326
1327fn with_small_bytes<'buf, T>(
1333 reader: &mut TtcReader<'buf>,
1334 f: impl FnOnce(Option<&[u8]>) -> Result<T>,
1335) -> Result<T> {
1336 match reader.read_bytes_borrowed()? {
1337 BorrowedBytes::Null => f(None),
1338 BorrowedBytes::Slice(slice) => f(Some(slice)),
1339 BorrowedBytes::Chunked(owned) => f(Some(&owned)),
1340 }
1341}
1342
1343impl BorrowedBytes<'_> {
1344 fn into_vec(self) -> Vec<u8> {
1347 match self {
1348 BorrowedBytes::Null => Vec::new(),
1349 BorrowedBytes::Slice(slice) => slice.to_vec(),
1350 BorrowedBytes::Chunked(owned) => owned,
1351 }
1352 }
1353}
1354
1355#[derive(Clone, Debug)]
1371pub struct BorrowedRowBatch {
1372 buffer: Vec<u8>,
1373 columns: Vec<ColumnMetadata>,
1374 row_starts: Vec<usize>,
1376 row_bit_vectors: Vec<Option<Vec<u8>>>,
1381 fetch_long_status: bool,
1384 lob_decode_mode: LobDecodeMode,
1385 previous_row_seed: Option<Vec<Option<QueryValue>>>,
1389}
1390
1391impl BorrowedRowBatch {
1392 pub fn new(buffer: Vec<u8>, columns: Vec<ColumnMetadata>, row_starts: Vec<usize>) -> Self {
1398 Self {
1399 buffer,
1400 columns,
1401 row_starts,
1402 row_bit_vectors: Vec::new(),
1403 fetch_long_status: false,
1404 lob_decode_mode: LobDecodeMode::PlainLocator,
1405 previous_row_seed: None,
1406 }
1407 }
1408
1409 pub fn row_count(&self) -> usize {
1411 self.row_starts.len()
1412 }
1413
1414 pub fn columns(&self) -> &[ColumnMetadata] {
1416 &self.columns
1417 }
1418
1419 #[cfg(test)]
1422 pub fn buffer_ptr_range(&self) -> core::ops::Range<usize> {
1423 let start = self.buffer.as_ptr() as usize;
1424 start..start + self.buffer.len()
1425 }
1426
1427 pub fn for_each_row_ref<F, E>(&self, mut callback: F) -> std::result::Result<(), E>
1437 where
1438 F: FnMut(&[Option<QueryValueRef<'_>>]) -> std::result::Result<(), E>,
1439 E: From<ProtocolError>,
1440 {
1441 let mut number_arena = String::new();
1447 let mut owned_arena: Vec<QueryValue> = Vec::new();
1448 let mut digits: Vec<u8> = Vec::new();
1454 let mut slots: Vec<Option<ColumnSlot<'_>>> = Vec::with_capacity(self.columns.len());
1455 let mut previous_owned: Vec<Option<QueryValue>> =
1460 self.previous_row_seed.clone().unwrap_or_default();
1461 let uses_bit_vectors = !self.row_bit_vectors.is_empty();
1462
1463 for (row_index, &start) in self.row_starts.iter().enumerate() {
1464 number_arena.clear();
1465 owned_arena.clear();
1466 slots.clear();
1467 let bit_vector = self
1468 .row_bit_vectors
1469 .get(row_index)
1470 .and_then(|bv| bv.as_deref());
1471
1472 let mut reader = TtcReader::new(&self.buffer[start..]);
1478 for (index, metadata) in self.columns.iter().enumerate() {
1479 if is_duplicate_column(bit_vector, index) {
1480 let previous = previous_owned.get(index).and_then(Option::as_ref);
1481 match previous {
1482 None => slots.push(None),
1483 Some(value) => {
1484 owned_arena.push(value.clone());
1485 slots.push(Some(ColumnSlot::Owned(owned_arena.len() - 1)));
1486 }
1487 }
1488 continue;
1489 }
1490 let slot = parse_column_slot(
1491 &mut reader,
1492 metadata,
1493 &mut number_arena,
1494 &mut owned_arena,
1495 &mut digits,
1496 self.lob_decode_mode,
1497 )?;
1498 slots.push(match slot {
1499 ColumnSlot::Null => None,
1500 other => Some(other),
1501 });
1502 if self.fetch_long_status
1503 && matches!(
1504 metadata.ora_type_num,
1505 ORA_TYPE_NUM_LONG | ORA_TYPE_NUM_LONG_RAW
1506 )
1507 {
1508 let _null_indicator = reader.read_sb4()?;
1509 let _return_code = reader.read_ub4()?;
1510 }
1511 }
1512
1513 let row: Vec<Option<QueryValueRef<'_>>> = slots
1521 .iter()
1522 .map(|slot| {
1523 slot.as_ref().map(|slot| match *slot {
1524 ColumnSlot::Null => unreachable!("Null slots are stored as None"),
1525 ColumnSlot::Wire(value) => value,
1526 ColumnSlot::Number {
1527 ref range,
1528 is_integer,
1529 } => QueryValueRef::Number {
1530 text: &number_arena[range.clone()],
1531 is_integer,
1532 },
1533 ColumnSlot::Owned(index) => QueryValueRef::Owned(&owned_arena[index]),
1534 })
1535 })
1536 .collect();
1537
1538 callback(&row)?;
1539
1540 if uses_bit_vectors {
1544 previous_owned.clear();
1545 previous_owned.extend(row.iter().map(|cell| cell.map(|v| v.to_owned_value())));
1546 }
1547 }
1548 Ok(())
1549 }
1550}
1551
1552#[derive(Clone, Debug)]
1556pub struct BorrowedFetchResult {
1557 pub batch: BorrowedRowBatch,
1559 pub more_rows: bool,
1561 pub cursor_id: u32,
1563 pub row_count: u64,
1565}
1566
1567pub fn parse_query_response_borrowed(
1579 payload: &[u8],
1580 capabilities: ClientCapabilities,
1581 columns: &[ColumnMetadata],
1582 previous_row: Option<&[Option<QueryValue>]>,
1583) -> Result<BorrowedFetchResult> {
1584 parse_query_response_borrowed_with_limits(
1585 payload,
1586 capabilities,
1587 columns,
1588 previous_row,
1589 ProtocolLimits::DEFAULT,
1590 )
1591}
1592
1593pub fn parse_query_response_borrowed_with_limits(
1594 payload: &[u8],
1595 capabilities: ClientCapabilities,
1596 columns: &[ColumnMetadata],
1597 previous_row: Option<&[Option<QueryValue>]>,
1598 limits: ProtocolLimits,
1599) -> Result<BorrowedFetchResult> {
1600 parse_query_response_borrowed_with_lob_mode_and_limits(
1601 payload,
1602 capabilities,
1603 columns,
1604 previous_row,
1605 LobDecodeMode::PlainLocator,
1606 limits,
1607 )
1608}
1609
1610pub fn parse_define_fetch_response_borrowed_with_limits(
1611 payload: &[u8],
1612 capabilities: ClientCapabilities,
1613 columns: &[ColumnMetadata],
1614 previous_row: Option<&[Option<QueryValue>]>,
1615 limits: ProtocolLimits,
1616) -> Result<BorrowedFetchResult> {
1617 parse_query_response_borrowed_with_lob_mode_and_limits(
1618 payload,
1619 capabilities,
1620 columns,
1621 previous_row,
1622 LobDecodeMode::DefineMetadata,
1623 limits,
1624 )
1625}
1626
1627fn parse_query_response_borrowed_with_lob_mode_and_limits(
1628 payload: &[u8],
1629 capabilities: ClientCapabilities,
1630 columns: &[ColumnMetadata],
1631 previous_row: Option<&[Option<QueryValue>]>,
1632 lob_decode_mode: LobDecodeMode,
1633 limits: ProtocolLimits,
1634) -> Result<BorrowedFetchResult> {
1635 let mut reader = TtcReader::with_limits(payload, limits)?;
1636 reader.limits().check_columns(columns.len())?;
1637 let mut result_columns = columns.to_vec();
1638 let mut more_rows = true;
1639 let mut cursor_id = 0u32;
1640 let mut row_count = 0u64;
1641 let mut row_starts: Vec<usize> = Vec::new();
1642 let mut row_bit_vectors: Vec<Option<Vec<u8>>> = Vec::new();
1643 let mut any_bit_vector = false;
1644 let mut pending_bit_vector: Option<Vec<u8>> = None;
1645 let fetch_long_status = true;
1647
1648 while reader.remaining() > 0 {
1649 let message_type = reader.read_u8()?;
1650 match message_type {
1651 0 => {}
1652 TNS_MSG_TYPE_DESCRIBE_INFO => {
1653 let _describe_name = reader.read_bytes()?;
1654 let previous = std::mem::take(&mut result_columns);
1655 let mut described = QueryResult::default();
1656 parse_describe_info(&mut reader, capabilities, &mut described)?;
1657 result_columns = described.columns;
1658 for (index, column) in result_columns.iter_mut().enumerate() {
1659 if let Some(prev) = previous.get(index) {
1660 adjust_refetch_metadata(prev, column);
1661 }
1662 }
1663 }
1664 TNS_MSG_TYPE_ROW_HEADER => {
1665 pending_bit_vector = parse_row_header(&mut reader)?;
1666 }
1667 TNS_MSG_TYPE_BIT_VECTOR => {
1668 pending_bit_vector = Some(parse_bit_vector(&mut reader, result_columns.len())?);
1669 }
1670 TNS_MSG_TYPE_ROW_DATA => {
1671 reader.limits().check_batch_rows(row_starts.len() + 1)?;
1674 row_starts.push(reader.position());
1675 let bit_vector = pending_bit_vector.take();
1676 any_bit_vector |= bit_vector.is_some();
1677 row_bit_vectors.push(bit_vector.clone());
1678 skip_row_data(
1679 &mut reader,
1680 &result_columns,
1681 bit_vector.as_deref(),
1682 fetch_long_status,
1683 lob_decode_mode,
1684 )?;
1685 }
1686 TNS_MSG_TYPE_PARAMETER => {
1687 let _params = parse_query_return_parameters(&mut reader, false)?;
1688 }
1689 TNS_MSG_TYPE_STATUS => {
1690 let _call_status = reader.read_ub4()?;
1691 let _seq = reader.read_ub2()?;
1692 }
1693 TNS_MSG_TYPE_SERVER_SIDE_PIGGYBACK => {
1694 let _ = skip_server_side_piggyback(&mut reader)?;
1695 }
1696 TNS_MSG_TYPE_FLUSH_OUT_BINDS | TNS_MSG_TYPE_END_OF_RESPONSE => break,
1697 TNS_MSG_TYPE_TOKEN => {
1698 let _token = reader.read_ub8()?;
1699 }
1700 TNS_MSG_TYPE_IMPLICIT_RESULTSET => {
1701 let num_results = reader.read_ub4()?;
1707 reader
1708 .limits()
1709 .check_length_prefixed_elements(num_results as usize)?;
1710 for _ in 0..num_results {
1711 let num_bytes = reader.read_u8()?;
1712 reader.skip(usize::from(num_bytes))?;
1713 let mut child = QueryResult::default();
1714 parse_describe_info(&mut reader, capabilities, &mut child)?;
1715 let _child_cursor_id = reader.read_ub2()?;
1716 }
1717 }
1718 TNS_MSG_TYPE_ERROR => {
1719 let info = parse_server_error_info(&mut reader, capabilities.ttc_field_version)?;
1720 if info.cursor_id != 0 {
1721 cursor_id = u32::from(info.cursor_id);
1722 }
1723 row_count = info.row_count;
1724 if info.number == TNS_ERR_NO_DATA_FOUND && !result_columns.is_empty() {
1725 more_rows = false;
1726 } else if info.number != 0 && info.number != TNS_ERR_ARRAY_DML_ERRORS {
1727 return Err(ProtocolError::ServerErrorInfo(Box::new(
1728 info.into_details(),
1729 )));
1730 }
1731 }
1732 _ => {
1733 let position = reader.position().saturating_sub(1);
1734 if let Some(message) =
1735 find_embedded_server_error(payload, capabilities.ttc_field_version, position)
1736 {
1737 return Err(ProtocolError::ServerError(message));
1738 }
1739 return Err(ProtocolError::UnknownMessageType {
1740 message_type,
1741 position,
1742 });
1743 }
1744 }
1745 }
1746
1747 if !any_bit_vector {
1751 row_bit_vectors.clear();
1752 }
1753
1754 let batch = BorrowedRowBatch {
1755 buffer: payload.to_vec(),
1756 columns: result_columns,
1757 row_starts,
1758 row_bit_vectors,
1759 fetch_long_status,
1760 lob_decode_mode,
1761 previous_row_seed: any_bit_vector.then(|| {
1764 previous_row
1765 .map(<[Option<QueryValue>]>::to_vec)
1766 .unwrap_or_default()
1767 }),
1768 };
1769
1770 Ok(BorrowedFetchResult {
1771 batch,
1772 more_rows,
1773 cursor_id,
1774 row_count,
1775 })
1776}
1777
1778fn skip_row_data(
1788 reader: &mut TtcReader<'_>,
1789 columns: &[ColumnMetadata],
1790 bit_vector: Option<&[u8]>,
1791 fetch_long_status: bool,
1792 lob_decode_mode: LobDecodeMode,
1793) -> Result<()> {
1794 for (index, metadata) in columns.iter().enumerate() {
1795 if is_duplicate_column(bit_vector, index) {
1796 continue;
1797 }
1798 let consumed_byte_field = metadata.buffer_size != 0
1799 && matches!(
1800 metadata.ora_type_num,
1801 ORA_TYPE_NUM_VARCHAR
1802 | ORA_TYPE_NUM_CHAR
1803 | ORA_TYPE_NUM_LONG
1804 | ORA_TYPE_NUM_RAW
1805 | ORA_TYPE_NUM_LONG_RAW
1806 | ORA_TYPE_NUM_NUMBER
1807 | ORA_TYPE_NUM_BINARY_INTEGER
1808 | ORA_TYPE_NUM_BINARY_DOUBLE
1809 | ORA_TYPE_NUM_BINARY_FLOAT
1810 | ORA_TYPE_NUM_BOOLEAN
1811 | ORA_TYPE_NUM_INTERVAL_DS
1812 | ORA_TYPE_NUM_INTERVAL_YM
1813 | ORA_TYPE_NUM_DATE
1814 | ORA_TYPE_NUM_TIMESTAMP
1815 | ORA_TYPE_NUM_TIMESTAMP_LTZ
1816 | ORA_TYPE_NUM_TIMESTAMP_TZ
1817 );
1818 if consumed_byte_field {
1819 reader.skip_bytes_field()?;
1820 } else {
1821 let _ = parse_column_value_with_lob_mode(reader, metadata, lob_decode_mode)?;
1824 }
1825 if fetch_long_status
1826 && matches!(
1827 metadata.ora_type_num,
1828 ORA_TYPE_NUM_LONG | ORA_TYPE_NUM_LONG_RAW
1829 )
1830 {
1831 let _null_indicator = reader.read_sb4()?;
1832 let _return_code = reader.read_ub4()?;
1833 }
1834 }
1835 Ok(())
1836}
1837
1838pub(crate) fn encode_rowid_component(mut value: u32, size: usize, output: &mut String) {
1839 let mut encoded = vec![b'A'; size];
1840 for index in 0..size {
1841 let alphabet_index = usize::try_from(value & 0x3f).unwrap_or(0);
1842 encoded[size - index - 1] = TNS_BASE64_ALPHABET[alphabet_index];
1843 value >>= 6;
1844 }
1845 output.extend(encoded.into_iter().map(char::from));
1846}
1847
1848pub(crate) fn encode_physical_rowid(
1849 rba: u32,
1850 partition_id: u16,
1851 block_num: u32,
1852 slot_num: u16,
1853) -> String {
1854 let mut output = String::with_capacity(ORA_TYPE_SIZE_ROWID as usize);
1855 encode_rowid_component(rba, 6, &mut output);
1856 encode_rowid_component(u32::from(partition_id), 3, &mut output);
1857 encode_rowid_component(block_num, 6, &mut output);
1858 encode_rowid_component(u32::from(slot_num), 3, &mut output);
1859 output
1860}
1861
1862pub(crate) fn parse_rowid_value(reader: &mut TtcReader<'_>) -> Result<Option<String>> {
1863 let len = reader.read_u8()?;
1864 if len == 0 || len == crate::wire::TNS_NULL_LENGTH_INDICATOR {
1865 return Ok(None);
1866 }
1867 let rba = reader.read_ub4()?;
1868 let partition_id = reader.read_ub2()?;
1869 reader.skip(1)?;
1870 let block_num = reader.read_ub4()?;
1871 let slot_num = reader.read_ub2()?;
1872 Ok(Some(encode_physical_rowid(
1873 rba,
1874 partition_id,
1875 block_num,
1876 slot_num,
1877 )))
1878}
1879
1880pub(crate) fn encode_logical_urowid(bytes: &[u8]) -> String {
1881 let mut input_offset = 1;
1882 let mut input_len = bytes.len().saturating_sub(1);
1883 let mut output = String::with_capacity((bytes.len() / 3) * 4 + 4);
1884 output.push('*');
1885 while input_len > 0 {
1886 let mut pos = bytes[input_offset] >> 2;
1887 output.push(char::from(TNS_BASE64_ALPHABET[usize::from(pos)]));
1888
1889 pos = (bytes[input_offset] & 0x03) << 4;
1890 if input_len == 1 {
1891 output.push(char::from(TNS_BASE64_ALPHABET[usize::from(pos)]));
1892 break;
1893 }
1894 input_offset += 1;
1895 pos |= (bytes[input_offset] & 0xf0) >> 4;
1896 output.push(char::from(TNS_BASE64_ALPHABET[usize::from(pos)]));
1897
1898 pos = (bytes[input_offset] & 0x0f) << 2;
1899 if input_len == 2 {
1900 output.push(char::from(TNS_BASE64_ALPHABET[usize::from(pos)]));
1901 break;
1902 }
1903 input_offset += 1;
1904 pos |= (bytes[input_offset] & 0xc0) >> 6;
1905 output.push(char::from(TNS_BASE64_ALPHABET[usize::from(pos)]));
1906
1907 pos = bytes[input_offset] & 0x3f;
1908 output.push(char::from(TNS_BASE64_ALPHABET[usize::from(pos)]));
1909 input_offset += 1;
1910 input_len -= 3;
1911 }
1912 output
1913}
1914
1915pub(crate) fn parse_urowid_value(reader: &mut TtcReader<'_>) -> Result<Option<String>> {
1916 if reader.read_bytes()?.is_none() {
1917 return Ok(None);
1918 }
1919 let Some(bytes) = reader.read_bytes()? else {
1920 return Ok(None);
1921 };
1922 if bytes.len() < 13 {
1923 return Err(ProtocolError::TtcDecode("encoded UROWID too short"));
1924 }
1925 if bytes[0] == 1 {
1926 let rba = u32::from_be_bytes([bytes[1], bytes[2], bytes[3], bytes[4]]);
1927 let partition_id = u16::from_be_bytes([bytes[5], bytes[6]]);
1928 let block_num = u32::from_be_bytes([bytes[7], bytes[8], bytes[9], bytes[10]]);
1929 let slot_num = u16::from_be_bytes([bytes[11], bytes[12]]);
1930 Ok(Some(encode_physical_rowid(
1931 rba,
1932 partition_id,
1933 block_num,
1934 slot_num,
1935 )))
1936 } else {
1937 Ok(Some(encode_logical_urowid(&bytes)))
1938 }
1939}
1940
1941pub(crate) fn parse_lob_value(
1942 reader: &mut TtcReader<'_>,
1943 metadata: &ColumnMetadata,
1944 lob_decode_mode: LobDecodeMode,
1945) -> Result<Option<QueryValue>> {
1946 let num_bytes = reader.read_ub4()?;
1947 reader.limits().check_response_bytes(num_bytes as usize)?;
1948 if num_bytes == 0 {
1949 return Ok(None);
1950 }
1951 let (size, chunk_size) = if matches!(
1952 (lob_decode_mode, metadata.ora_type_num),
1953 (_, ORA_TYPE_NUM_BFILE) | (LobDecodeMode::PlainLocator, _)
1954 ) {
1955 (0, 0)
1956 } else {
1957 (reader.read_ub8()?, reader.read_ub4()?)
1958 };
1959 let Some(locator) = reader.read_bytes()? else {
1960 return Ok(None);
1961 };
1962 Ok(Some(QueryValue::Lob(Box::new(LobValue {
1963 ora_type_num: metadata.ora_type_num,
1964 csfrm: metadata.csfrm,
1965 locator,
1966 size,
1967 chunk_size,
1968 }))))
1969}
1970
1971#[cfg(test)]
1972mod lob_fetch_shape_tests {
1973 use super::*;
1974
1975 fn clob_column() -> ColumnMetadata {
1976 ColumnMetadata {
1977 name: "BODY".into(),
1978 ora_type_num: ORA_TYPE_NUM_CLOB,
1979 csfrm: CS_FORM_IMPLICIT,
1980 precision: 0,
1981 scale: 0,
1982 buffer_size: 4000,
1983 max_size: 4000,
1984 nulls_allowed: true,
1985 is_json: false,
1986 is_oson: false,
1987 object_schema: None,
1988 object_type_name: None,
1989 is_array: false,
1990 vector_dimensions: None,
1991 vector_format: 0,
1992 vector_flags: 0,
1993 domain_schema: None,
1994 domain_name: None,
1995 annotations: None,
1996 }
1997 }
1998
1999 fn blob_column() -> ColumnMetadata {
2000 ColumnMetadata {
2001 name: "IMAGE".into(),
2002 ora_type_num: ORA_TYPE_NUM_BLOB,
2003 csfrm: 0,
2004 precision: 0,
2005 scale: 0,
2006 buffer_size: 4000,
2007 max_size: 4000,
2008 nulls_allowed: true,
2009 is_json: false,
2010 is_oson: false,
2011 object_schema: None,
2012 object_type_name: None,
2013 is_array: false,
2014 vector_dimensions: None,
2015 vector_format: 0,
2016 vector_flags: 0,
2017 domain_schema: None,
2018 domain_name: None,
2019 annotations: None,
2020 }
2021 }
2022
2023 fn lob_row_payload(locator: &[u8], metadata: Option<(u64, u32)>) -> Vec<u8> {
2024 let mut writer = TtcWriter::new();
2025 writer.write_u8(TNS_MSG_TYPE_ROW_DATA);
2026 writer.write_ub4(u32::try_from(locator.len()).expect("locator length fits ub4"));
2027 if let Some((size, chunk_size)) = metadata {
2028 writer.write_ub8(size);
2029 writer.write_ub4(chunk_size);
2030 }
2031 writer
2032 .write_bytes_with_length(locator)
2033 .expect("synthetic locator length is encodable");
2034 writer.write_u8(TNS_MSG_TYPE_END_OF_RESPONSE);
2035 writer.into_bytes()
2036 }
2037
2038 fn write_define_lob_cell(writer: &mut TtcWriter, locator: &[u8], size: u64, chunk_size: u32) {
2039 writer.write_ub4(u32::try_from(locator.len()).expect("locator length fits ub4"));
2040 writer.write_ub8(size);
2041 writer.write_ub4(chunk_size);
2042 writer
2043 .write_bytes_with_length(locator)
2044 .expect("synthetic locator length is encodable");
2045 }
2046
2047 fn first_lob(result: &QueryResult) -> &LobValue {
2048 match &result.rows[0][0] {
2049 Some(QueryValue::Lob(lob)) => lob.as_ref(),
2050 other => panic!("expected LOB value, got {other:?}"),
2051 }
2052 }
2053
2054 #[test]
2055 fn column_metadata_discards_server_charset_id_and_keeps_csfrm_only() {
2056 let caps = ClientCapabilities {
2057 ttc_field_version: 0,
2058 max_string_size: 32_767,
2059 charset_id: 873,
2060 };
2061 let mut writer = TtcWriter::new();
2062 writer.write_u8(ORA_TYPE_NUM_VARCHAR);
2063 writer.write_u8(0); writer.write_u8(0); writer.write_u8(0); writer.write_ub4(4000);
2067 writer.write_ub4(0); writer.write_ub8(0); writer
2070 .write_bytes_with_two_lengths(None)
2071 .expect("empty oid");
2072 writer.write_ub2(0); writer.write_ub2(0); writer.write_u8(CS_FORM_IMPLICIT);
2075 writer.write_ub4(4000);
2076 writer.write_u8(1); writer.write_u8(0); writer
2079 .write_bytes_with_two_lengths(Some(b"TXT"))
2080 .expect("name");
2081 writer
2082 .write_bytes_with_two_lengths(None)
2083 .expect("object schema");
2084 writer
2085 .write_bytes_with_two_lengths(None)
2086 .expect("object type");
2087 writer.write_ub2(1); writer.write_ub4(0); let bytes = writer.into_bytes();
2091 let mut reader = TtcReader::new(&bytes);
2092 let metadata = parse_column_metadata(&mut reader, caps).expect("metadata should parse");
2093 assert_eq!(metadata.name(), "TXT");
2094 assert_eq!(metadata.csfrm(), CS_FORM_IMPLICIT);
2095 assert_eq!(
2096 decode_text_value("ok".as_bytes(), metadata.csfrm()).expect("decode text"),
2097 "ok"
2098 );
2099 }
2100
2101 #[test]
2102 fn plain_fetch_lob_locator_omits_size_and_chunk_fields() {
2103 let locator: Vec<u8> = (0u8..114).collect();
2104 let payload = lob_row_payload(&locator, None);
2105 let columns = [clob_column()];
2106
2107 let result = parse_fetch_response_with_context(
2108 &payload,
2109 ClientCapabilities::default(),
2110 &columns,
2111 None,
2112 )
2113 .expect("plain fetch CLOB locator should decode");
2114
2115 let lob = first_lob(&result);
2116 assert_eq!(lob.locator, locator);
2117 assert_eq!(lob.size, 0);
2118 assert_eq!(lob.chunk_size, 0);
2119 }
2120
2121 #[test]
2122 fn define_fetch_lob_locator_includes_size_and_chunk_fields() {
2123 let locator: Vec<u8> = (0u8..114).collect();
2124 let payload = lob_row_payload(&locator, Some((23, 8060)));
2125 let columns = [clob_column()];
2126
2127 let result = parse_define_fetch_response_with_context_and_limits(
2128 &payload,
2129 ClientCapabilities::default(),
2130 &columns,
2131 None,
2132 ProtocolLimits::DEFAULT,
2133 )
2134 .expect("define fetch CLOB locator should decode");
2135
2136 let lob = first_lob(&result);
2137 assert_eq!(lob.locator, locator);
2138 assert_eq!(lob.size, 23);
2139 assert_eq!(lob.chunk_size, 8060);
2140 }
2141
2142 #[test]
2143 fn borrowed_define_fetch_lob_page_matches_owned_decode() {
2144 let columns = [clob_column(), blob_column()];
2145 let clob_locator_a: Vec<u8> = (0u8..114).collect();
2146 let blob_locator_a: Vec<u8> = (128u8..242).collect();
2147 let clob_locator_b: Vec<u8> = (32u8..146).collect();
2148 let blob_locator_b: Vec<u8> = (64u8..178).collect();
2149 let mut writer = TtcWriter::new();
2150
2151 writer.write_u8(TNS_MSG_TYPE_ROW_DATA);
2152 write_define_lob_cell(&mut writer, &clob_locator_a, 23, 8060);
2153 write_define_lob_cell(&mut writer, &blob_locator_a, 48, 4096);
2154 writer.write_u8(TNS_MSG_TYPE_ROW_DATA);
2155 write_define_lob_cell(&mut writer, &clob_locator_b, 31, 8060);
2156 write_define_lob_cell(&mut writer, &blob_locator_b, 96, 4096);
2157 writer.write_u8(TNS_MSG_TYPE_END_OF_RESPONSE);
2158 let payload = writer.into_bytes();
2159
2160 let owned = parse_define_fetch_response_with_context_and_limits(
2161 &payload,
2162 ClientCapabilities::default(),
2163 &columns,
2164 None,
2165 ProtocolLimits::DEFAULT,
2166 )
2167 .expect("owned define fetch CLOB/BLOB page should decode");
2168 let borrowed = parse_define_fetch_response_borrowed_with_limits(
2169 &payload,
2170 ClientCapabilities::default(),
2171 &columns,
2172 None,
2173 ProtocolLimits::DEFAULT,
2174 )
2175 .expect("borrowed define fetch CLOB/BLOB page should decode");
2176
2177 let mut borrowed_rows: Vec<Vec<Option<QueryValue>>> = Vec::new();
2178 borrowed
2179 .batch
2180 .for_each_row_ref(|row| {
2181 borrowed_rows.push(
2182 row.iter()
2183 .map(|cell| cell.map(|value| value.to_owned_value()))
2184 .collect(),
2185 );
2186 Ok::<(), ProtocolError>(())
2187 })
2188 .expect("borrowed define fetch CLOB/BLOB page should iterate");
2189
2190 assert_eq!(owned.rows.len(), 2, "owned decode sees both rows");
2191 assert_eq!(
2192 borrowed.batch.row_count(),
2193 2,
2194 "borrowed decode sees both rows"
2195 );
2196 assert_eq!(
2197 borrowed_rows, owned.rows,
2198 "borrowed DefineMetadata LOB decode must match owned decode"
2199 );
2200 }
2201}
2202
2203pub(crate) fn parse_vector_value(reader: &mut TtcReader<'_>) -> Result<Option<QueryValue>> {
2207 let num_bytes = reader.read_ub4()?;
2208 reader.limits().check_response_bytes(num_bytes as usize)?;
2209 if num_bytes == 0 {
2210 return Ok(None);
2211 }
2212 reader.read_ub8()?; reader.read_ub4()?; let Some(data) = reader.read_bytes()? else {
2215 return Ok(None);
2216 };
2217 reader.read_bytes()?; if data.is_empty() {
2219 return Ok(None);
2220 }
2221 let vector = crate::vector::decode_vector_with_limits(&data, reader.limits())?;
2222 Ok(Some(QueryValue::Vector(Box::new(vector))))
2223}
2224
2225pub(crate) fn parse_json_value(reader: &mut TtcReader<'_>) -> Result<Option<QueryValue>> {
2229 let num_bytes = reader.read_ub4()?;
2230 reader.limits().check_response_bytes(num_bytes as usize)?;
2231 if num_bytes == 0 {
2232 return Ok(None);
2233 }
2234 reader.read_ub8()?; reader.read_ub4()?; let Some(data) = reader.read_bytes()? else {
2237 return Ok(None);
2238 };
2239 reader.read_bytes()?; if data.is_empty() {
2241 return Ok(None);
2242 }
2243 let value = crate::oson::decode_oson_with_limits(&data, reader.limits())?;
2244 Ok(Some(QueryValue::Json(Box::new(value))))
2245}
2246
2247pub(crate) fn parse_object_value(
2248 reader: &mut TtcReader<'_>,
2249 metadata: &ColumnMetadata,
2250) -> Result<Option<QueryValue>> {
2251 let _toid = reader.read_bytes_with_length()?;
2252 let _oid = reader.read_bytes_with_length()?;
2253 let _snapshot = reader.read_bytes_with_length()?;
2254 let _version = reader.read_ub2()?;
2255 let num_bytes = reader.read_ub4()?;
2256 reader.limits().check_response_bytes(num_bytes as usize)?;
2257 reader.skip(2)?;
2258 if num_bytes == 0 {
2259 return Ok(None);
2260 }
2261 let Some(packed_data) = reader.read_bytes()? else {
2262 return Ok(None);
2263 };
2264 Ok(Some(QueryValue::Object(Box::new(ObjectValue {
2265 schema: metadata.object_schema.clone(),
2266 type_name: metadata.object_type_name.clone(),
2267 packed_data,
2268 }))))
2269}
2270
2271pub(crate) fn parse_cursor_value(reader: &mut TtcReader<'_>) -> Result<QueryValue> {
2272 reader.skip(1)?;
2273 let mut result = QueryResult::default();
2274 parse_describe_info(reader, ClientCapabilities::default(), &mut result)?;
2275 let cursor_id = u32::from(reader.read_ub2()?);
2276 Ok(QueryValue::Cursor(Box::new(CursorValue {
2277 columns: result.columns,
2278 cursor_id,
2279 })))
2280}
2281
2282pub(crate) struct QueryReturnParameters {
2283 pub row_counts: Option<Vec<u64>>,
2284 pub query_id: Option<u64>,
2287}
2288
2289pub(crate) fn parse_query_return_parameters(
2290 reader: &mut TtcReader<'_>,
2291 arraydmlrowcounts: bool,
2292) -> Result<QueryReturnParameters> {
2293 let num_params = reader.read_ub2()?;
2294 for _ in 0..num_params {
2295 let _value = reader.read_ub4()?;
2296 }
2297 let num_bytes = reader.read_ub2()?;
2298 if num_bytes > 0 {
2299 reader.skip(usize::from(num_bytes))?;
2300 }
2301 let num_pairs = reader.read_ub2()?;
2302 skip_keyword_value_pairs(reader, num_pairs)?;
2303 let num_bytes = usize::from(reader.read_ub2()?);
2306 let mut query_id = None;
2307 if num_bytes > 0 {
2308 let block = reader.read_raw(num_bytes)?;
2309 if num_bytes >= 8 {
2310 let msb = u32::from_be_bytes([
2311 block[num_bytes - 4],
2312 block[num_bytes - 3],
2313 block[num_bytes - 2],
2314 block[num_bytes - 1],
2315 ]);
2316 let lsb = u32::from_be_bytes([
2317 block[num_bytes - 8],
2318 block[num_bytes - 7],
2319 block[num_bytes - 6],
2320 block[num_bytes - 5],
2321 ]);
2322 query_id = Some((u64::from(msb) << 32) | u64::from(lsb));
2323 }
2324 }
2325 if arraydmlrowcounts {
2326 let num_rows = reader.read_ub4()?;
2328 reader.limits().check_batch_rows(num_rows as usize)?;
2329 let mut row_counts: Vec<u64> =
2332 reader.with_capacity_limited(num_rows as usize, 1, ProtocolLimits::check_batch_rows)?;
2333 for _ in 0..num_rows {
2334 row_counts.push(reader.read_ub8()?);
2335 }
2336 return Ok(QueryReturnParameters {
2337 row_counts: Some(row_counts),
2338 query_id,
2339 });
2340 }
2341 Ok(QueryReturnParameters {
2342 row_counts: None,
2343 query_id,
2344 })
2345}
2346
2347#[cfg(test)]
2348mod return_parameter_tests {
2349 use super::*;
2350
2351 #[test]
2352 fn registration_info_block_extracts_query_id_from_lsb_msb_tail() {
2353 let mut writer = TtcWriter::new();
2354 writer.write_ub2(0); writer.write_ub2(0); writer.write_ub2(0); writer.write_ub2(8); writer.write_raw(&[
2359 0x55, 0x66, 0x77, 0x88, 0x11, 0x22, 0x33, 0x44, ]);
2362 let payload = writer.into_bytes();
2363 let mut reader = TtcReader::new(&payload);
2364
2365 let params = parse_query_return_parameters(&mut reader, false).expect("return parameters");
2366
2367 assert_eq!(params.query_id, Some(0x1122_3344_5566_7788));
2368 assert_eq!(params.row_counts, None);
2369 }
2370}
2371
2372#[cfg(test)]
2373mod batch_error_continuation_tests {
2374 use super::*;
2375
2376 fn write_return_parameters_with_row_counts(w: &mut TtcWriter, row_counts: &[u64]) {
2391 w.write_ub2(0); w.write_ub2(0); w.write_ub2(0); w.write_ub2(0); w.write_ub4(u32::try_from(row_counts.len()).expect("row count fits u32"));
2396 for &count in row_counts {
2397 w.write_ub8(count);
2398 }
2399 }
2400
2401 fn write_batch_error_info(w: &mut TtcWriter, errors: &[(u32, u32, &str)]) {
2406 w.write_ub4(0); w.write_ub2(0); w.write_ub4(0); w.write_ub2(0); w.write_ub2(0); w.write_ub2(0); w.write_ub2(0); w.write_sb4(0); w.write_raw(&[0u8; 5]); w.write_u8(0); w.write_ub4(0);
2419 w.write_ub2(0);
2420 w.write_u8(0);
2421 w.write_ub4(0);
2422 w.write_ub2(0);
2423 w.write_ub4(0); w.write_raw(&[0u8; 2]); w.write_ub2(0); w.write_ub4(0); w.write_bytes_with_two_lengths(None)
2428 .expect("empty rowid-diagnostic field"); let count = errors.len();
2431 w.write_ub2(u16::try_from(count).expect("error count fits u16"));
2433 if count > 0 {
2434 w.write_u8(u8::try_from(count).expect("packed length fits u8")); for &(code, _, _) in errors {
2436 w.write_ub2(u16::try_from(code).expect("ORA code fits u16"));
2437 }
2438 }
2439 w.write_ub4(u32::try_from(count).expect("offset count fits u32"));
2441 if count > 0 {
2442 w.write_u8(u8::try_from(count).expect("packed length fits u8"));
2443 for &(_, offset, _) in errors {
2444 w.write_ub4(offset);
2445 }
2446 }
2447 w.write_ub2(u16::try_from(count).expect("message count fits u16"));
2449 if count > 0 {
2450 w.write_u8(0); for &(_, _, message) in errors {
2452 w.write_ub2(u16::try_from(message.len()).expect("message len fits u16")); w.write_bytes_with_length(message.as_bytes())
2454 .expect("batch error message");
2455 w.write_raw(&[0u8, 0u8]); }
2457 }
2458 w.write_ub4(TNS_ERR_ARRAY_DML_ERRORS);
2460 w.write_ub8(0); w.write_ub4(0); w.write_ub4(0); w.write_bytes_with_length(b"ORA-24381: error(s) in array DML operation")
2467 .expect("summary message");
2468 }
2469
2470 #[test]
2471 fn execute_response_decodes_batch_error_continuation_and_row_counts() {
2472 let row_counts = [1u64, 0, 1, 0, 1];
2476 let errors: [(u32, u32, &str); 2] = [
2477 (1, 1, "ORA-00001: unique constraint (X.PK) violated"),
2478 (
2479 1400,
2480 3,
2481 "ORA-01400: cannot insert NULL into (\"X\".\"T\".\"C\")",
2482 ),
2483 ];
2484
2485 let mut writer = TtcWriter::new();
2486 writer.write_u8(TNS_MSG_TYPE_PARAMETER);
2487 write_return_parameters_with_row_counts(&mut writer, &row_counts);
2488 writer.write_u8(TNS_MSG_TYPE_ERROR);
2489 write_batch_error_info(&mut writer, &errors);
2490 let payload = writer.into_bytes();
2491
2492 let options = ExecuteOptions::default().with_arraydmlrowcounts(true);
2493 let result = parse_query_response_with_binds_and_options(
2494 &payload,
2495 ClientCapabilities::default(),
2496 &[],
2497 options,
2498 )
2499 .expect("batch-error execute response decodes");
2500
2501 assert_eq!(
2504 result.array_dml_row_counts.as_deref(),
2505 Some(row_counts.as_slice()),
2506 "per-iteration counts survive: committed rows report 1, failed rows 0"
2507 );
2508
2509 assert_eq!(
2512 result.batch_errors.len(),
2513 2,
2514 "both failing rows are reported, proving continuation past row 1"
2515 );
2516 assert_eq!(result.batch_errors[0].code(), 1);
2517 assert_eq!(result.batch_errors[0].offset(), 1);
2518 assert_eq!(
2519 result.batch_errors[0].message(),
2520 "ORA-00001: unique constraint (X.PK) violated"
2521 );
2522 assert_eq!(result.batch_errors[1].code(), 1400);
2523 assert_eq!(result.batch_errors[1].offset(), 3);
2524 assert_eq!(
2525 result.batch_errors[1].message(),
2526 "ORA-01400: cannot insert NULL into (\"X\".\"T\".\"C\")"
2527 );
2528
2529 let committed: u64 = result
2531 .array_dml_row_counts
2532 .as_deref()
2533 .expect("row counts present")
2534 .iter()
2535 .sum();
2536 assert_eq!(committed, 3, "the 3 non-failing rows committed");
2537 }
2538}
2539
2540#[cfg(test)]
2541mod borrowed_fetch_tests {
2542 use super::*;
2543 use crate::thin::codecs::encode_number_text;
2544
2545 #[test]
2551 fn validate_utf8_matches_core_accept_reject() {
2552 let cases: &[&[u8]] = &[
2553 b"",
2554 b"a",
2555 b"hello world",
2556 "VARCHAR2 cell".as_bytes(),
2557 "中文 mixed \u{1f600}".as_bytes(), "naïve café".as_bytes(),
2559 &[0x80], &[0xC0, 0x80], &[0xED, 0xA0, 0x80], &[0xF4, 0x90, 0x80, 0x80], &[0xFF], &[0xE2, 0x82], ];
2566 for &bytes in cases {
2567 let core = core::str::from_utf8(bytes);
2568 let ours = validate_utf8(bytes);
2569 assert_eq!(
2570 core.is_ok(),
2571 ours.is_ok(),
2572 "accept/reject diverged for {bytes:02x?}"
2573 );
2574 if let (Ok(a), Ok(b)) = (core, ours) {
2575 assert_eq!(a, b, "accepted text diverged for {bytes:02x?}");
2576 }
2577 }
2578 }
2579
2580 fn col(name: &str, ora_type_num: u8, csfrm: u8, buffer_size: u32) -> ColumnMetadata {
2582 ColumnMetadata {
2583 name: name.to_string(),
2584 ora_type_num,
2585 csfrm,
2586 buffer_size,
2587 ..ColumnMetadata::default()
2588 }
2589 }
2590
2591 fn encode_mixed_row(writer: &mut TtcWriter, text: &str, number: &str, raw: &[u8]) {
2596 writer.write_bytes_with_length(text.as_bytes()).unwrap();
2597 let num = encode_number_text(number).unwrap();
2598 writer.write_bytes_with_length(&num).unwrap();
2599 writer.write_bytes_with_length(raw).unwrap();
2600 writer.write_u8(0); }
2602
2603 #[test]
2608 fn borrowed_batch_matches_owned_path_for_mixed_row() {
2609 let columns = vec![
2610 col("T", ORA_TYPE_NUM_VARCHAR, CS_FORM_IMPLICIT, 4000),
2611 col("N", ORA_TYPE_NUM_NUMBER, CS_FORM_IMPLICIT, 22),
2612 col("R", ORA_TYPE_NUM_RAW, CS_FORM_IMPLICIT, 2000),
2613 col("Z", ORA_TYPE_NUM_VARCHAR, CS_FORM_IMPLICIT, 4000),
2614 ];
2615
2616 let mut writer = TtcWriter::new();
2617 encode_mixed_row(
2618 &mut writer,
2619 "héllo world",
2620 "-12.5",
2621 &[0xDE, 0xAD, 0xBE, 0xEF],
2622 );
2623 encode_mixed_row(&mut writer, "second", "42", &[0x01]);
2624 let buffer = writer.into_bytes();
2625 let row_starts = vec![0, {
2626 let mut reader = TtcReader::new(&buffer);
2628 for c in &columns {
2629 let _ = parse_column_value(&mut reader, c).unwrap();
2630 }
2631 reader.position()
2632 }];
2633
2634 let owned_rows: Vec<Vec<Option<QueryValue>>> = row_starts
2636 .iter()
2637 .map(|&start| {
2638 let mut reader = TtcReader::new(&buffer[start..]);
2639 columns
2640 .iter()
2641 .map(|c| parse_column_value(&mut reader, c).unwrap())
2642 .collect()
2643 })
2644 .collect();
2645
2646 let batch = BorrowedRowBatch::new(buffer.clone(), columns.clone(), row_starts);
2649 let buf_ptr_range = batch.buffer_ptr_range();
2650
2651 let mut seen_rows = 0usize;
2652 let mut borrowed_owned: Vec<Vec<Option<QueryValue>>> = Vec::new();
2653 batch
2654 .for_each_row_ref(|row| {
2655 seen_rows += 1;
2656 if let Some(QueryValueRef::Text(t)) = row[0] {
2658 let p = t.as_ptr() as usize;
2659 assert!(
2660 buf_ptr_range.contains(&p),
2661 "Text cell must borrow the batch buffer (zero-copy)"
2662 );
2663 }
2664 if let Some(QueryValueRef::Raw(r)) = row[2] {
2666 let p = r.as_ptr() as usize;
2667 assert!(
2668 buf_ptr_range.contains(&p),
2669 "Raw cell must borrow the batch buffer (zero-copy)"
2670 );
2671 }
2672 borrowed_owned.push(
2673 row.iter()
2674 .map(|cell| cell.map(|v| v.to_owned_value()))
2675 .collect(),
2676 );
2677 Ok::<(), ProtocolError>(())
2678 })
2679 .unwrap();
2680
2681 assert_eq!(seen_rows, 2, "batch yields both rows");
2682 assert_eq!(
2683 borrowed_owned, owned_rows,
2684 "borrowed cells to_owned() must equal the owned-path values"
2685 );
2686 }
2687
2688 #[test]
2689 fn borrowed_number_to_owned_matches_owned_for_trailing_zero_number() {
2690 let column = col("N", ORA_TYPE_NUM_NUMBER, CS_FORM_IMPLICIT, 22);
2691 let number = encode_number_text("1000").expect("encode trailing-zero number");
2692 let mut writer = TtcWriter::new();
2693 writer
2694 .write_bytes_with_length(&number)
2695 .expect("write framed number");
2696 let buffer = writer.into_bytes();
2697
2698 let mut owned_reader = TtcReader::new(&buffer);
2699 let owned = parse_column_value(&mut owned_reader, &column)
2700 .expect("owned decode")
2701 .expect("owned number should be non-null");
2702
2703 let batch = BorrowedRowBatch::new(buffer, vec![column], vec![0]);
2704 let mut borrowed_owned = Vec::new();
2705 batch
2706 .for_each_row_ref(|row| {
2707 borrowed_owned.push(
2708 row[0]
2709 .expect("borrowed number should be non-null")
2710 .to_owned_value(),
2711 );
2712 Ok::<(), ProtocolError>(())
2713 })
2714 .expect("borrowed decode");
2715 let borrowed = borrowed_owned
2716 .pop()
2717 .expect("borrowed decode should yield one row");
2718
2719 assert_eq!(
2720 borrowed.as_number_text().as_deref(),
2721 owned.as_number_text().as_deref(),
2722 "borrowed and owned paths must expose identical canonical NUMBER text"
2723 );
2724 assert_eq!(
2725 borrowed, owned,
2726 "borrowed to_owned_value should materialize the same trailing-zero NUMBER"
2727 );
2728 }
2729
2730 #[test]
2731 fn describe_size_zero_urowid_decodes_and_preserves_following_column_alignment() {
2732 let columns = vec![
2733 col("RID", ORA_TYPE_NUM_UROWID, CS_FORM_IMPLICIT, 0),
2734 col("NEXT", ORA_TYPE_NUM_VARCHAR, CS_FORM_IMPLICIT, 4000),
2735 ];
2736 let rba: u32 = 0x0102_0304;
2737 let partition_id: u16 = 0x0506;
2738 let block_num: u32 = 0x0708_090a;
2739 let slot_num: u16 = 0x0b0c;
2740 let mut encoded_urowid = Vec::new();
2741 encoded_urowid.push(1);
2742 encoded_urowid.extend_from_slice(&rba.to_be_bytes());
2743 encoded_urowid.extend_from_slice(&partition_id.to_be_bytes());
2744 encoded_urowid.extend_from_slice(&block_num.to_be_bytes());
2745 encoded_urowid.extend_from_slice(&slot_num.to_be_bytes());
2746 let expected_rowid = encode_physical_rowid(rba, partition_id, block_num, slot_num);
2747
2748 let mut writer = TtcWriter::new();
2749 writer
2750 .write_bytes_with_length(&[1])
2751 .expect("write UROWID null probe field");
2752 writer
2753 .write_bytes_with_length(&encoded_urowid)
2754 .expect("write encoded UROWID");
2755 writer
2756 .write_bytes_with_length(b"after")
2757 .expect("write following text column");
2758 let buffer = writer.into_bytes();
2759
2760 let mut owned_reader = TtcReader::new(&buffer);
2761 let owned = columns
2762 .iter()
2763 .map(|column| parse_column_value(&mut owned_reader, column).expect("owned decode"))
2764 .collect::<Vec<_>>();
2765 assert_eq!(
2766 owned[0].as_ref().and_then(QueryValue::as_rowid),
2767 Some(expected_rowid.as_str()),
2768 "owned decode must not NULL a describe-size-0 UROWID"
2769 );
2770 assert_eq!(
2771 owned[1].as_ref().and_then(QueryValue::as_text),
2772 Some("after"),
2773 "owned decode must consume UROWID bytes before the following column"
2774 );
2775
2776 let batch = BorrowedRowBatch::new(buffer, columns, vec![0]);
2777 let mut borrowed_rows = Vec::new();
2778 batch
2779 .for_each_row_ref(|row| {
2780 borrowed_rows.push(
2781 row.iter()
2782 .map(|cell| cell.map(|value| value.to_owned_value()))
2783 .collect::<Vec<_>>(),
2784 );
2785 Ok::<(), ProtocolError>(())
2786 })
2787 .expect("borrowed decode");
2788 assert_eq!(borrowed_rows, vec![owned]);
2789 }
2790
2791 #[test]
2799 fn borrowed_response_parse_matches_owned_fetch_path() {
2800 use hex::FromHex;
2801 let payload = Vec::from_hex("06020101000205dc0001010101000702c1041d")
2802 .expect("fixture response should be valid hex");
2803 let columns = vec![
2804 col("INTCOL", ORA_TYPE_NUM_NUMBER, CS_FORM_IMPLICIT, 22),
2805 col("NUMBERCOL", ORA_TYPE_NUM_NUMBER, CS_FORM_IMPLICIT, 22),
2806 ];
2807 let previous_row = vec![
2808 Some(QueryValue::number_from_text("2", true)),
2809 Some(QueryValue::number_from_text("0.5", false)),
2810 ];
2811
2812 let owned = parse_query_response_with_context(
2814 &payload,
2815 ClientCapabilities::default(),
2816 &columns,
2817 Some(&previous_row),
2818 )
2819 .expect("owned fetch decode");
2820
2821 let borrowed = parse_query_response_borrowed(
2823 &payload,
2824 ClientCapabilities::default(),
2825 &columns,
2826 Some(&previous_row),
2827 )
2828 .expect("borrowed fetch decode");
2829
2830 assert_eq!(borrowed.more_rows, owned.more_rows);
2831 assert_eq!(borrowed.cursor_id, owned.cursor_id);
2832 assert_eq!(borrowed.batch.row_count(), owned.rows.len());
2833
2834 let mut borrowed_owned: Vec<Vec<Option<QueryValue>>> = Vec::new();
2835 borrowed
2836 .batch
2837 .for_each_row_ref(|row| {
2838 borrowed_owned.push(
2839 row.iter()
2840 .map(|cell| cell.map(|v| v.to_owned_value()))
2841 .collect(),
2842 );
2843 Ok::<(), ProtocolError>(())
2844 })
2845 .expect("iterate borrowed rows");
2846
2847 assert_eq!(
2848 borrowed_owned, owned.rows,
2849 "borrowed batch must reproduce the owned fetch rows (incl. duplicate columns)"
2850 );
2851 }
2852}
2853
2854#[cfg(test)]
2855mod out_bind_boolean_regression_tests {
2856 use super::*;
2857
2858 fn boolean_column(is_array: bool) -> ColumnMetadata {
2859 ColumnMetadata {
2860 name: "B".to_string(),
2861 ora_type_num: ORA_TYPE_NUM_BOOLEAN,
2862 is_array,
2863 ..ColumnMetadata::default()
2864 }
2865 }
2866
2867 fn boolean_value_with_negative_actual_bytes() -> Vec<u8> {
2868 let mut writer = TtcWriter::new();
2869 writer
2870 .write_bytes_with_length(&[1])
2871 .expect("write present boolean value");
2872 writer.write_sb4(-1);
2873 writer.into_bytes()
2874 }
2875
2876 #[test]
2877 fn scalar_boolean_out_bind_negative_actual_bytes_decodes_null() {
2878 let bind_columns = [boolean_column(false)];
2879 let out_bind_indexes = [0usize];
2880 let payload = boolean_value_with_negative_actual_bytes();
2881 let mut reader = TtcReader::new(&payload);
2882 let mut result = QueryResult::default();
2883
2884 parse_out_bind_row_data(&mut reader, &mut result, &bind_columns, &out_bind_indexes)
2885 .expect("parse scalar BOOLEAN OUT bind");
2886
2887 assert_eq!(result.out_values, vec![(0, None)]);
2888 }
2889
2890 #[test]
2891 fn array_boolean_out_bind_negative_actual_bytes_decodes_null_element() {
2892 let bind_columns = [boolean_column(true)];
2893 let out_bind_indexes = [0usize];
2894 let mut writer = TtcWriter::new();
2895 writer.write_ub4(1);
2896 writer
2897 .write_bytes_with_length(&[1])
2898 .expect("write present boolean array element");
2899 writer.write_sb4(-1);
2900 let payload = writer.into_bytes();
2901 let mut reader = TtcReader::new(&payload);
2902 let mut result = QueryResult::default();
2903
2904 parse_out_bind_row_data(&mut reader, &mut result, &bind_columns, &out_bind_indexes)
2905 .expect("parse array BOOLEAN OUT bind");
2906
2907 assert_eq!(
2908 result.out_values,
2909 vec![(0, Some(QueryValue::Array(vec![None])))]
2910 );
2911 }
2912
2913 #[test]
2914 fn returning_boolean_negative_actual_bytes_decodes_null() {
2915 let bind_columns = [boolean_column(false)];
2916 let output_bind_indexes = [0usize];
2917 let mut writer = TtcWriter::new();
2918 writer.write_ub4(1);
2919 writer
2920 .write_bytes_with_length(&[1])
2921 .expect("write present returning boolean value");
2922 writer.write_sb4(-1);
2923 let payload = writer.into_bytes();
2924 let mut reader = TtcReader::new(&payload);
2925 let mut result = QueryResult::default();
2926
2927 parse_returning_row_data(
2928 &mut reader,
2929 &mut result,
2930 &bind_columns,
2931 &output_bind_indexes,
2932 )
2933 .expect("parse BOOLEAN RETURNING value");
2934
2935 assert_eq!(result.return_values, vec![(0, vec![None])]);
2936 }
2937}
2938
2939#[cfg(test)]
2940mod fuzz_regression_tests {
2941 use super::*;
2942
2943 #[test]
2949 fn fuzz_regression_implicit_resultset_oom() {
2950 let payload = [27u8, 4, 37, 0, 0, 0];
2952 let err = parse_query_response(&payload, ClientCapabilities::default())
2953 .expect_err("oversized implicit-resultset count must fail closed");
2954 assert!(
2955 matches!(
2956 err,
2957 ProtocolError::TtcDecode(_) | ProtocolError::ResourceLimit { .. }
2958 ),
2959 "expected fail-closed protocol error, got {err:?}"
2960 );
2961 }
2962
2963 #[test]
2970 fn describe_info_oversized_column_count_fails_closed_not_oom() {
2971 let payload = [16u8, 0, 0, 4, 0x25, 0x00, 0x00, 0x00];
2975 let err = parse_query_response(&payload, ClientCapabilities::default())
2976 .expect_err("oversized column count must fail closed");
2977 assert!(
2978 matches!(
2979 err,
2980 ProtocolError::TtcDecode(_) | ProtocolError::ResourceLimit { .. }
2981 ),
2982 "expected fail-closed protocol error, got {err:?}"
2983 );
2984 }
2985
2986 #[test]
2987 fn describe_info_respects_protocol_column_limit() {
2988 let payload = [TNS_MSG_TYPE_DESCRIBE_INFO, 0, 0, 1, 2];
2992 let limits = ProtocolLimits {
2993 max_columns: 1,
2994 ..ProtocolLimits::DEFAULT
2995 };
2996 let err = parse_query_response_with_limits(&payload, ClientCapabilities::default(), limits)
2997 .expect_err("column count above policy must fail");
2998 assert!(
2999 matches!(
3000 err,
3001 ProtocolError::ResourceLimit {
3002 limit: "columns",
3003 observed: 2,
3004 maximum: 1,
3005 }
3006 ),
3007 "expected column ResourceLimit, got {err:?}"
3008 );
3009 }
3010
3011 #[test]
3016 fn out_bind_array_oversized_element_count_fails_closed_not_oom() {
3017 let metadata = ColumnMetadata {
3018 name: "ARR".to_string(),
3019 ora_type_num: ORA_TYPE_NUM_NUMBER,
3020 is_array: true,
3021 ..ColumnMetadata::default()
3022 };
3023 let bind_columns = [metadata];
3024 let out_bind_indexes = [0usize];
3025 let payload = [4u8, 0x25, 0x00, 0x00, 0x00];
3027 let mut reader = TtcReader::new(&payload);
3028 let mut result = QueryResult::default();
3029 let err =
3030 parse_out_bind_row_data(&mut reader, &mut result, &bind_columns, &out_bind_indexes)
3031 .expect_err("oversized array OUT bind count must fail closed");
3032 assert!(
3033 matches!(
3034 err,
3035 ProtocolError::TtcDecode(_) | ProtocolError::ResourceLimit { .. }
3036 ),
3037 "expected fail-closed protocol error, got {err:?}"
3038 );
3039 }
3040
3041 fn describe_caps(fv: u8) -> ClientCapabilities {
3056 ClientCapabilities {
3057 ttc_field_version: fv,
3058 max_string_size: 32_767,
3059 charset_id: 873,
3060 }
3061 }
3062
3063 fn describe_column_bytes(fv: u8) -> Vec<u8> {
3066 let mut w = TtcWriter::new();
3067 w.write_u8(ORA_TYPE_NUM_VARCHAR);
3068 w.write_u8(0); w.write_u8(0); w.write_u8(0); w.write_ub4(4000); w.write_ub4(0); w.write_ub8(0); w.write_bytes_with_two_lengths(None).expect("oid");
3075 w.write_ub2(0); w.write_ub2(0); w.write_u8(CS_FORM_IMPLICIT);
3078 w.write_ub4(4000); if fv >= TNS_CCAP_FIELD_VERSION_12_2 {
3080 w.write_ub4(0x1122_3344); }
3082 w.write_u8(1); w.write_u8(0); w.write_bytes_with_two_lengths(Some(b"TXT")).expect("name");
3085 w.write_bytes_with_two_lengths(None).expect("object schema");
3086 w.write_bytes_with_two_lengths(None).expect("object type");
3087 w.write_ub2(1); w.write_ub4(0); if fv >= TNS_CCAP_FIELD_VERSION_23_1 {
3090 w.write_bytes_with_two_lengths(None).expect("domain schema");
3091 w.write_bytes_with_two_lengths(None).expect("domain name");
3092 }
3093 if fv >= TNS_CCAP_FIELD_VERSION_23_1_EXT_3 {
3094 w.write_ub4(0); }
3096 if fv >= TNS_CCAP_FIELD_VERSION_23_4 {
3097 w.write_ub4(2); w.write_u8(0); w.write_u8(0); }
3101 w.into_bytes()
3102 }
3103
3104 fn parse_outcome(bytes: &[u8], fv: u8) -> Option<(String, usize)> {
3109 let mut reader = TtcReader::new(bytes);
3110 parse_column_metadata(&mut reader, describe_caps(fv))
3111 .ok()
3112 .map(|meta| (meta.name().to_string(), reader.remaining()))
3113 }
3114
3115 #[test]
3116 fn describe_column_metadata_gates_fields_on_field_version() {
3117 let boundaries = [
3120 (TNS_CCAP_FIELD_VERSION_12_2 - 1, TNS_CCAP_FIELD_VERSION_12_2), (TNS_CCAP_FIELD_VERSION_23_1 - 1, TNS_CCAP_FIELD_VERSION_23_1), (
3123 TNS_CCAP_FIELD_VERSION_23_1_EXT_3 - 1,
3124 TNS_CCAP_FIELD_VERSION_23_1_EXT_3,
3125 ), (TNS_CCAP_FIELD_VERSION_23_4 - 1, TNS_CCAP_FIELD_VERSION_23_4), ];
3128 for (lo, hi) in boundaries {
3129 let lo_bytes = describe_column_bytes(lo);
3130 let hi_bytes = describe_column_bytes(hi);
3131 assert!(
3132 hi_bytes.len() > lo_bytes.len(),
3133 "fv {hi}: the gated field must add bytes vs fv {lo}"
3134 );
3135
3136 let matched = Some(("TXT".to_string(), 0));
3138 assert_eq!(parse_outcome(&lo_bytes, lo), matched, "fv {lo} matched");
3139 assert_eq!(parse_outcome(&hi_bytes, hi), matched, "fv {hi} matched");
3140
3141 assert_ne!(
3145 parse_outcome(&hi_bytes, lo),
3146 matched,
3147 "fv {hi} bytes read as fv {lo} must not consume cleanly"
3148 );
3149 assert_ne!(
3150 parse_outcome(&lo_bytes, hi),
3151 matched,
3152 "fv {lo} bytes read as fv {hi} must not consume cleanly"
3153 );
3154 }
3155 }
3156}