oxidize_pdf/parser/mod.rs
1//! PDF Parser Module - Complete PDF parsing and rendering support
2//!
3//! This module provides a comprehensive, 100% native Rust implementation for parsing PDF files
4//! according to the ISO 32000-1 (PDF 1.7) and ISO 32000-2 (PDF 2.0) specifications.
5//!
6//! # Overview
7//!
8//! The parser is designed to support building PDF renderers, content extractors, and analysis tools.
9//! It provides multiple levels of API access:
10//!
11//! - **High-level**: `PdfDocument` for easy document manipulation
12//! - **Mid-level**: `ParsedPage`, content streams, and resources
13//! - **Low-level**: Direct access to PDF objects and streams
14//!
15//! # Quick Start
16//!
17//! ```rust,no_run
18//! use oxidize_pdf::parser::{PdfDocument, PdfReader};
19//! use oxidize_pdf::parser::content::ContentParser;
20//!
21//! # fn main() -> Result<(), Box<dyn std::error::Error>> {
22//! // Open a PDF document
23//! let reader = PdfReader::open("document.pdf")?;
24//! let document = PdfDocument::new(reader);
25//!
26//! // Get document information
27//! println!("Pages: {}", document.page_count()?);
28//! println!("Version: {}", document.version()?);
29//!
30//! // Process first page
31//! let page = document.get_page(0)?;
32//! println!("Page size: {}x{} points", page.width(), page.height());
33//!
34//! // Parse content streams
35//! let streams = page.content_streams_with_document(&document)?;
36//! for stream in streams {
37//! let operations = ContentParser::parse(&stream)?;
38//! println!("Operations: {}", operations.len());
39//! }
40//!
41//! // Extract text
42//! let text = document.extract_text_from_page(0)?;
43//! println!("Text: {}", text.text);
44//! # Ok(())
45//! # }
46//! ```
47//!
48//! # Architecture
49//!
50//! ```text
51//! ┌─────────────────────────────────────────────────┐
52//! │ PdfDocument │ ← High-level API
53//! │ ┌──────────┐ ┌──────────┐ ┌────────────────┐ │
54//! │ │PdfReader │ │PageTree │ │ResourceManager │ │
55//! │ └──────────┘ └──────────┘ └────────────────┘ │
56//! └─────────────────────────────────────────────────┘
57//! │ │ │
58//! ↓ ↓ ↓
59//! ┌─────────────────────────────────────────────────┐
60//! │ ParsedPage │ ← Page API
61//! │ ┌──────────┐ ┌──────────┐ ┌────────────────┐ │
62//! │ │Properties│ │Resources │ │Content Streams │ │
63//! │ └──────────┘ └──────────┘ └────────────────┘ │
64//! └─────────────────────────────────────────────────┘
65//! │ │ │
66//! ↓ ↓ ↓
67//! ┌─────────────────────────────────────────────────┐
68//! │ ContentParser & PdfObject │ ← Low-level API
69//! │ ┌──────────┐ ┌──────────┐ ┌────────────────┐ │
70//! │ │Tokenizer │ │Operators │ │Object Types │ │
71//! │ └──────────┘ └──────────┘ └────────────────┘ │
72//! └─────────────────────────────────────────────────┘
73//! ```
74//!
75//! # Features
76//!
77//! - **Complete PDF Object Model**: All PDF object types supported
78//! - **Content Stream Parsing**: Full operator support for rendering
79//! - **Resource Management**: Fonts, images, color spaces, patterns
80//! - **Text Extraction**: With position and formatting information
81//! - **Page Navigation**: Efficient page tree traversal
82//! - **Stream Filters**: Decompression support (FlateDecode, ASCIIHex, etc.)
83//! - **Reference Resolution**: Automatic handling of indirect objects
84//!
85//! # Example: Building a Simple Renderer
86//!
87//! ```rust,no_run
88//! use oxidize_pdf::parser::{PdfDocument, PdfReader};
89//! use oxidize_pdf::parser::content::{ContentParser, ContentOperation};
90//!
91//! # fn main() -> Result<(), Box<dyn std::error::Error>> {
92//! struct SimpleRenderer {
93//! current_path: Vec<(f32, f32)>,
94//! }
95//!
96//! impl SimpleRenderer {
97//! fn render_page(document: &PdfDocument<std::fs::File>, page_idx: u32) -> Result<(), Box<dyn std::error::Error>> {
98//! let page = document.get_page(page_idx)?;
99//! let streams = page.content_streams_with_document(&document)?;
100//!
101//! let mut renderer = SimpleRenderer {
102//! current_path: Vec::new(),
103//! };
104//!
105//! for stream in streams {
106//! let operations = ContentParser::parse(&stream)?;
107//! for op in operations {
108//! match op {
109//! ContentOperation::MoveTo(x, y) => {
110//! renderer.current_path.clear();
111//! renderer.current_path.push((x, y));
112//! }
113//! ContentOperation::LineTo(x, y) => {
114//! renderer.current_path.push((x, y));
115//! }
116//! ContentOperation::Stroke => {
117//! println!("Draw path with {} points", renderer.current_path.len());
118//! renderer.current_path.clear();
119//! }
120//! ContentOperation::ShowText(text) => {
121//! println!("Draw text: {:?}", String::from_utf8_lossy(&text));
122//! }
123//! _ => {} // Handle other operations
124//! }
125//! }
126//! }
127//! Ok(())
128//! }
129//! }
130//! # Ok(())
131//! # }
132//! ```
133
134pub mod content;
135pub mod document;
136pub mod encoding;
137pub mod encryption_handler;
138pub mod filter_impls;
139pub mod filters;
140pub mod header;
141pub mod lexer;
142pub mod object_stream;
143pub mod objects;
144pub mod optimized_reader;
145pub mod outline;
146pub mod page_tree;
147pub mod reader;
148pub mod stack_safe;
149pub mod stack_safe_tests;
150pub mod trailer;
151pub mod xref;
152pub mod xref_stream;
153pub mod xref_types;
154
155#[cfg(test)]
156mod stream_length_tests;
157#[cfg(test)]
158pub mod test_helpers;
159
160use crate::error::OxidizePdfError;
161
162// Re-export main types for convenient access
163pub use self::content::{ContentOperation, ContentParser, TextElement};
164pub use self::document::{PdfDocument, ResourceManager};
165pub use self::encoding::{
166 CharacterDecoder, EncodingOptions, EncodingResult, EncodingType, EnhancedDecoder,
167};
168pub use self::encryption_handler::{
169 ConsolePasswordProvider, EncryptionHandler, EncryptionInfo, InteractiveDecryption,
170 PasswordProvider, PasswordResult,
171};
172pub use self::objects::{PdfArray, PdfDictionary, PdfName, PdfObject, PdfStream, PdfString};
173pub use self::optimized_reader::OptimizedPdfReader;
174pub use self::outline::OutlineReadOptions;
175pub use self::page_tree::ParsedPage;
176pub use self::reader::{DocumentMetadata, PdfReader};
177
178/// Result type for parser operations
179pub type ParseResult<T> = Result<T, ParseError>;
180
181/// Options for parsing PDF files with different levels of strictness
182///
183/// # Example
184///
185/// ```rust
186/// use oxidize_pdf::parser::ParseOptions;
187///
188/// // Create tolerant options for handling corrupted PDFs
189/// let options = ParseOptions::tolerant();
190/// assert!(!options.strict_mode);
191/// assert!(options.recover_from_stream_errors);
192///
193/// // Create custom options
194/// let custom = ParseOptions {
195/// strict_mode: false,
196/// recover_from_stream_errors: true,
197/// ignore_corrupt_streams: false, // Still report errors but try to recover
198/// partial_content_allowed: true,
199/// max_recovery_attempts: 10, // Try harder to recover
200/// log_recovery_details: false, // Quiet recovery
201/// lenient_streams: true,
202/// max_recovery_bytes: 5000,
203/// collect_warnings: true,
204/// lenient_encoding: true,
205/// preferred_encoding: None,
206/// lenient_syntax: true,
207/// };
208/// ```
209#[derive(Debug, Clone)]
210pub struct ParseOptions {
211 /// Strict mode enforces PDF specification compliance (default: true)
212 pub strict_mode: bool,
213 /// Attempt to recover from stream decoding errors (default: false)
214 ///
215 /// When enabled, the parser will try multiple strategies to decode
216 /// corrupted streams, including:
217 /// - Raw deflate without zlib wrapper
218 /// - Decompression with checksum validation disabled
219 /// - Skipping corrupted header bytes
220 pub recover_from_stream_errors: bool,
221 /// Skip corrupted streams instead of failing (default: false)
222 ///
223 /// When enabled, corrupted streams will return empty data instead
224 /// of causing parsing to fail entirely.
225 pub ignore_corrupt_streams: bool,
226 /// Allow partial content when full parsing fails (default: false)
227 pub partial_content_allowed: bool,
228 /// Maximum number of recovery attempts for corrupted data (default: 3)
229 pub max_recovery_attempts: usize,
230 /// Enable detailed logging of recovery attempts (default: false)
231 ///
232 /// Note: Requires the "logging" feature to be enabled
233 pub log_recovery_details: bool,
234 /// Enable lenient parsing for malformed streams with incorrect Length fields
235 pub lenient_streams: bool,
236 /// Maximum number of bytes to search ahead when recovering from stream errors
237 pub max_recovery_bytes: usize,
238 /// Collect warnings instead of failing on recoverable errors
239 pub collect_warnings: bool,
240 /// Enable lenient character encoding (use replacement characters for invalid sequences)
241 pub lenient_encoding: bool,
242 /// Preferred character encoding for text decoding
243 pub preferred_encoding: Option<encoding::EncodingType>,
244 /// Enable automatic syntax error recovery
245 pub lenient_syntax: bool,
246}
247
248impl Default for ParseOptions {
249 fn default() -> Self {
250 Self {
251 strict_mode: true,
252 recover_from_stream_errors: false,
253 ignore_corrupt_streams: false,
254 partial_content_allowed: false,
255 max_recovery_attempts: 3,
256 log_recovery_details: false,
257 lenient_streams: false, // Strict mode by default
258 max_recovery_bytes: 1000, // Search up to 1KB ahead
259 collect_warnings: false, // Don't collect warnings by default
260 lenient_encoding: true, // Enable lenient encoding by default
261 preferred_encoding: None, // Auto-detect encoding
262 lenient_syntax: false, // Strict syntax parsing by default
263 }
264 }
265}
266
267impl ParseOptions {
268 /// Create options for strict parsing (default)
269 pub fn strict() -> Self {
270 Self {
271 strict_mode: true,
272 recover_from_stream_errors: false,
273 ignore_corrupt_streams: false,
274 partial_content_allowed: false,
275 max_recovery_attempts: 0,
276 log_recovery_details: false,
277 lenient_streams: false,
278 max_recovery_bytes: 0,
279 collect_warnings: false,
280 lenient_encoding: false,
281 preferred_encoding: None,
282 lenient_syntax: false,
283 }
284 }
285
286 /// Create options for tolerant parsing that attempts recovery
287 pub fn tolerant() -> Self {
288 Self {
289 strict_mode: false,
290 recover_from_stream_errors: true,
291 ignore_corrupt_streams: false,
292 partial_content_allowed: true,
293 max_recovery_attempts: 5,
294 log_recovery_details: true,
295 lenient_streams: true,
296 max_recovery_bytes: 5000,
297 collect_warnings: true,
298 lenient_encoding: true,
299 preferred_encoding: None,
300 lenient_syntax: true,
301 }
302 }
303
304 /// Create lenient parsing options for maximum compatibility (alias for tolerant)
305 pub fn lenient() -> Self {
306 Self::tolerant()
307 }
308
309 /// Create options that skip corrupted content
310 pub fn skip_errors() -> Self {
311 Self {
312 strict_mode: false,
313 recover_from_stream_errors: true,
314 ignore_corrupt_streams: true,
315 partial_content_allowed: true,
316 max_recovery_attempts: 1,
317 log_recovery_details: false,
318 lenient_streams: true,
319 max_recovery_bytes: 5000,
320 collect_warnings: false,
321 lenient_encoding: true,
322 preferred_encoding: None,
323 lenient_syntax: true,
324 }
325 }
326}
327
328/// Warnings that can be collected during lenient parsing
329#[derive(Debug, Clone)]
330pub enum ParseWarning {
331 /// Stream length mismatch was corrected
332 StreamLengthCorrected {
333 declared_length: usize,
334 actual_length: usize,
335 object_id: Option<(u32, u16)>,
336 },
337 /// Invalid character encoding was recovered
338 InvalidEncoding {
339 position: usize,
340 recovered_text: String,
341 encoding_used: Option<encoding::EncodingType>,
342 replacement_count: usize,
343 },
344 /// Missing required key with fallback used
345 MissingKeyWithFallback { key: String, fallback_value: String },
346 /// Syntax error was recovered
347 SyntaxErrorRecovered {
348 position: usize,
349 expected: String,
350 found: String,
351 recovery_action: String,
352 },
353 /// Invalid object reference was skipped
354 InvalidReferenceSkipped {
355 object_id: (u32, u16),
356 reason: String,
357 },
358}
359
360/// PDF Parser errors covering all failure modes during parsing.
361///
362/// # Error Categories
363///
364/// - **I/O Errors**: File access and reading issues
365/// - **Format Errors**: Invalid PDF structure or syntax
366/// - **Unsupported Features**: Encryption, newer PDF versions
367/// - **Reference Errors**: Invalid or circular object references
368/// - **Stream Errors**: Decompression or filter failures
369///
370/// # Example
371///
372/// ```rust
373/// use oxidize_pdf::parser::{PdfReader, ParseError};
374///
375/// # fn example() -> Result<(), ParseError> {
376/// match PdfReader::open("missing.pdf") {
377/// Ok(_) => println!("File opened"),
378/// Err(ParseError::Io(e)) => println!("IO error: {}", e),
379/// Err(ParseError::InvalidHeader) => println!("Not a valid PDF"),
380/// Err(e) => println!("Other error: {}", e),
381/// }
382/// # Ok(())
383/// # }
384/// ```
385///
386/// # Error Recovery and Tolerant Parsing
387///
388/// The parser supports different levels of error tolerance for handling corrupted or
389/// non-standard PDF files:
390///
391/// ```rust,no_run
392/// use oxidize_pdf::parser::{PdfReader, ParseOptions};
393/// use std::fs::File;
394///
395/// # fn main() -> Result<(), Box<dyn std::error::Error>> {
396/// // Strict parsing (default) - fails on any deviation from PDF spec
397/// let strict_reader = PdfReader::open("document.pdf")?;
398///
399/// // Tolerant parsing - attempts to recover from errors
400/// let file = File::open("corrupted.pdf")?;
401/// let tolerant_reader = PdfReader::new_with_options(file, ParseOptions::tolerant())?;
402///
403/// // Skip errors mode - ignores corrupt streams and returns partial content
404/// let file = File::open("problematic.pdf")?;
405/// let skip_errors_reader = PdfReader::new_with_options(file, ParseOptions::skip_errors())?;
406/// # Ok(())
407/// # }
408/// ```
409#[derive(Debug, thiserror::Error)]
410pub enum ParseError {
411 /// I/O error during file operations
412 #[error("IO error: {0}")]
413 Io(#[from] std::io::Error),
414
415 /// PDF file doesn't start with valid header (%PDF-)
416 #[error("Invalid PDF header")]
417 InvalidHeader,
418
419 /// PDF version is not supported
420 #[error("Unsupported PDF version: {0}")]
421 UnsupportedVersion(String),
422
423 /// Syntax error in PDF structure
424 #[error("Syntax error at position {position}: {message}")]
425 SyntaxError { position: usize, message: String },
426
427 #[error("Unexpected token: expected {expected}, found {found}")]
428 UnexpectedToken { expected: String, found: String },
429
430 /// Invalid or non-existent object reference
431 #[error("Invalid object reference: {0} {1} R")]
432 InvalidReference(u32, u16),
433
434 /// Required dictionary key is missing
435 #[error("Missing required key: {0}")]
436 MissingKey(String),
437
438 #[error("Invalid xref table")]
439 InvalidXRef,
440
441 #[error("Invalid trailer")]
442 InvalidTrailer,
443
444 #[error("Circular reference detected")]
445 CircularReference,
446
447 /// Error decoding/decompressing stream data
448 #[error("Stream decode error: {0}")]
449 StreamDecodeError(String),
450
451 /// PDF is encrypted and could not be automatically decrypted
452 #[error(
453 "PDF is encrypted and could not be decrypted (unsupported encryption or password required)"
454 )]
455 EncryptionNotSupported,
456
457 /// Wrong password provided for encrypted PDF
458 #[error("Wrong password: the provided password is incorrect")]
459 WrongPassword,
460
461 /// PDF is locked - must call unlock() before reading objects
462 #[error("PDF is locked: call unlock() with the correct password before reading objects")]
463 PdfLocked,
464
465 /// Empty file
466 #[error("File is empty (0 bytes)")]
467 EmptyFile,
468
469 /// Stream length mismatch (only in strict mode)
470 #[error(
471 "Stream length mismatch: declared {declared} bytes, but found endstream at {actual} bytes"
472 )]
473 StreamLengthMismatch { declared: usize, actual: usize },
474
475 /// Character encoding error
476 #[error("Character encoding error at position {position}: {message}")]
477 CharacterEncodingError { position: usize, message: String },
478
479 /// Unexpected character in PDF content
480 #[error("Unexpected character: {character}")]
481 UnexpectedCharacter { character: String },
482
483 /// Serialization error (e.g. JSON serialization of RAG chunks)
484 #[error("Serialization error: {0}")]
485 SerializationError(String),
486}
487
488impl From<ParseError> for OxidizePdfError {
489 fn from(err: ParseError) -> Self {
490 OxidizePdfError::ParseError(err.to_string())
491 }
492}
493
494#[cfg(test)]
495mod tests {
496 use super::*;
497
498 #[test]
499 fn test_module_exports() {
500 // Verify that all important types are properly exported
501
502 // Test that we can create a PdfObject
503 let _obj = PdfObject::Null;
504
505 // Test that we can create a PdfDictionary
506 let _dict = PdfDictionary::new();
507
508 // Test that we can create a PdfArray
509 let _array = PdfArray::new();
510
511 // Test that we can create a PdfName
512 let _name = PdfName::new("Test".to_string());
513
514 // Test that we can create a PdfString
515 let _string = PdfString::new(b"Test".to_vec());
516 }
517
518 #[test]
519 fn test_parse_error_conversion() {
520 let io_error = std::io::Error::new(std::io::ErrorKind::NotFound, "File not found");
521 let parse_error = ParseError::Io(io_error);
522 let oxidize_error: OxidizePdfError = parse_error.into();
523
524 match oxidize_error {
525 OxidizePdfError::ParseError(_) => assert!(true),
526 _ => assert!(false, "Expected ParseError variant"),
527 }
528 }
529
530 #[test]
531 fn test_parse_error_messages() {
532 let errors = vec![
533 ParseError::InvalidHeader,
534 ParseError::UnsupportedVersion("2.5".to_string()),
535 ParseError::InvalidXRef,
536 ParseError::InvalidTrailer,
537 ParseError::CircularReference,
538 ParseError::EncryptionNotSupported,
539 ];
540
541 for error in errors {
542 let message = error.to_string();
543 assert!(!message.is_empty());
544 }
545 }
546
547 // ============= ParseOptions Tests =============
548
549 #[test]
550 fn test_parse_options_default() {
551 let opts = ParseOptions::default();
552 assert!(opts.strict_mode); // default is true
553 assert!(!opts.recover_from_stream_errors); // default is false
554 assert!(!opts.ignore_corrupt_streams); // default is false
555 assert!(!opts.partial_content_allowed); // default is false
556 assert_eq!(opts.max_recovery_attempts, 3);
557 assert!(!opts.log_recovery_details);
558 assert!(!opts.lenient_streams);
559 assert_eq!(opts.max_recovery_bytes, 1000); // default is 1000
560 assert!(!opts.collect_warnings);
561 assert!(opts.lenient_encoding); // default is true
562 assert!(opts.preferred_encoding.is_none());
563 assert!(!opts.lenient_syntax);
564 }
565
566 #[test]
567 fn test_parse_options_strict() {
568 let opts = ParseOptions::strict();
569 assert!(opts.strict_mode);
570 assert!(!opts.recover_from_stream_errors);
571 assert!(!opts.ignore_corrupt_streams);
572 assert!(!opts.partial_content_allowed);
573 assert!(!opts.lenient_streams);
574 assert!(!opts.collect_warnings);
575 assert!(!opts.lenient_encoding);
576 assert!(!opts.lenient_syntax);
577 }
578
579 #[test]
580 fn test_parse_options_tolerant() {
581 let opts = ParseOptions::tolerant();
582 assert!(!opts.strict_mode);
583 assert!(opts.recover_from_stream_errors);
584 assert!(!opts.ignore_corrupt_streams);
585 assert!(opts.partial_content_allowed);
586 assert!(opts.lenient_streams);
587 assert!(opts.collect_warnings);
588 assert!(opts.lenient_encoding);
589 assert!(opts.lenient_syntax);
590 }
591
592 #[test]
593 fn test_parse_options_lenient() {
594 let opts = ParseOptions::lenient();
595 assert!(!opts.strict_mode);
596 assert!(opts.recover_from_stream_errors);
597 assert!(!opts.ignore_corrupt_streams); // lenient (tolerant) doesn't ignore
598 assert!(opts.partial_content_allowed);
599 assert!(opts.lenient_streams);
600 assert!(opts.collect_warnings);
601 assert!(opts.lenient_encoding);
602 assert!(opts.lenient_syntax);
603 assert_eq!(opts.max_recovery_attempts, 5);
604 assert_eq!(opts.max_recovery_bytes, 5000);
605 }
606
607 #[test]
608 fn test_parse_options_skip_errors() {
609 let opts = ParseOptions::skip_errors();
610 assert!(!opts.strict_mode);
611 assert!(opts.recover_from_stream_errors);
612 assert!(opts.ignore_corrupt_streams); // skip_errors does ignore
613 assert!(opts.partial_content_allowed);
614 assert!(opts.lenient_streams);
615 assert!(!opts.collect_warnings); // skip_errors doesn't collect warnings
616 assert!(opts.lenient_encoding);
617 assert!(opts.lenient_syntax);
618 assert_eq!(opts.max_recovery_attempts, 1);
619 assert_eq!(opts.max_recovery_bytes, 5000);
620 }
621
622 #[test]
623 fn test_parse_options_builder() {
624 let mut opts = ParseOptions::default();
625 opts.strict_mode = false;
626 opts.recover_from_stream_errors = true;
627 opts.max_recovery_attempts = 10;
628 opts.lenient_encoding = true;
629
630 assert!(!opts.strict_mode);
631 assert!(opts.recover_from_stream_errors);
632 assert_eq!(opts.max_recovery_attempts, 10);
633 assert!(opts.lenient_encoding);
634 }
635
636 #[test]
637 fn test_parse_error_variants() {
638 // Test all ParseError variants
639 let errors = vec![
640 ParseError::Io(std::io::Error::new(std::io::ErrorKind::NotFound, "test")),
641 ParseError::InvalidHeader,
642 ParseError::UnsupportedVersion("3.0".to_string()),
643 ParseError::InvalidXRef,
644 ParseError::InvalidTrailer,
645 ParseError::InvalidReference(1, 0),
646 ParseError::MissingKey("Type".to_string()),
647 ParseError::CircularReference,
648 ParseError::EncryptionNotSupported,
649 ParseError::EmptyFile,
650 ParseError::StreamDecodeError("decode error".to_string()),
651 ParseError::StreamLengthMismatch {
652 declared: 100,
653 actual: 50,
654 },
655 ParseError::CharacterEncodingError {
656 position: 10,
657 message: "invalid UTF-8".to_string(),
658 },
659 ParseError::SyntaxError {
660 position: 100,
661 message: "unexpected token".to_string(),
662 },
663 ParseError::UnexpectedToken {
664 expected: "dict".to_string(),
665 found: "array".to_string(),
666 },
667 ];
668
669 for error in errors {
670 // Test Display implementation
671 let display = format!("{}", error);
672 assert!(!display.is_empty());
673
674 // Test conversion to OxidizePdfError
675 let _oxidize_err: OxidizePdfError = error.into();
676 }
677 }
678
679 #[test]
680 fn test_pdf_object_creation() {
681 // Test all PdfObject variants
682 let null = PdfObject::Null;
683 let boolean = PdfObject::Boolean(true);
684 let integer = PdfObject::Integer(42);
685 let _real = PdfObject::Real(3.14);
686 let _string = PdfObject::String(PdfString::new(b"test".to_vec()));
687 let _name = PdfObject::Name(PdfName::new("Test".to_string()));
688 let _array = PdfObject::Array(PdfArray::new());
689 let _dict = PdfObject::Dictionary(PdfDictionary::new());
690 // PdfStream doesn't have a public constructor, skip it for now
691 // let stream = PdfObject::Stream(...);
692 let _reference = PdfObject::Reference(1, 0);
693
694 // Test pattern matching
695 match null {
696 PdfObject::Null => assert!(true),
697 _ => panic!("Expected Null"),
698 }
699
700 match boolean {
701 PdfObject::Boolean(v) => assert!(v),
702 _ => panic!("Expected Boolean"),
703 }
704
705 match integer {
706 PdfObject::Integer(v) => assert_eq!(v, 42),
707 _ => panic!("Expected Integer"),
708 }
709 }
710
711 #[test]
712 fn test_pdf_dictionary_operations() {
713 let mut dict = PdfDictionary::new();
714
715 // Test insertion
716 dict.insert(
717 "Type".to_string(),
718 PdfObject::Name(PdfName::new("Page".to_string())),
719 );
720 dict.insert("Count".to_string(), PdfObject::Integer(10));
721
722 // Test retrieval
723 assert!(dict.get("Type").is_some());
724 assert!(dict.get("Count").is_some());
725 assert!(dict.get("Missing").is_none());
726
727 // Test contains
728 assert!(dict.contains_key("Type"));
729 assert!(!dict.contains_key("Missing"));
730
731 // Test get_type
732 let type_name = dict.get_type();
733 assert_eq!(type_name, Some("Page"));
734 }
735
736 #[test]
737 fn test_pdf_array_operations() {
738 let mut array = PdfArray::new();
739
740 // Test push (direct access to inner Vec)
741 array.0.push(PdfObject::Integer(1));
742 array.0.push(PdfObject::Integer(2));
743 array.0.push(PdfObject::Integer(3));
744
745 // Test length
746 assert_eq!(array.len(), 3);
747
748 // Test is_empty
749 assert!(!array.is_empty());
750
751 // Test get
752 assert!(array.get(0).is_some());
753 assert!(array.get(10).is_none());
754
755 // Test iteration (direct access to inner Vec)
756 let mut sum = 0;
757 for obj in array.0.iter() {
758 if let PdfObject::Integer(v) = obj {
759 sum += v;
760 }
761 }
762 assert_eq!(sum, 6);
763 }
764
765 #[test]
766 fn test_pdf_name_operations() {
767 let name1 = PdfName::new("Type".to_string());
768 let name2 = PdfName::new("Type".to_string());
769 let name3 = PdfName::new("Subtype".to_string());
770
771 // Test equality
772 assert_eq!(name1, name2);
773 assert_ne!(name1, name3);
774
775 // Test inner field access (PdfName.0 is pub)
776 assert_eq!(name1.0, "Type");
777 }
778
779 #[test]
780 fn test_pdf_string_operations() {
781 // Test literal string
782 let literal = PdfString::new(b"Hello World".to_vec());
783 // PdfString has public inner field
784 assert_eq!(literal.0, b"Hello World");
785
786 // Test empty string
787 let empty = PdfString::new(Vec::new());
788 assert!(empty.0.is_empty());
789 }
790
791 // PdfStream tests removed - no public constructor
792
793 #[test]
794 fn test_parse_options_modifications() {
795 let mut opts = ParseOptions::default();
796
797 // Test field modifications
798 opts.strict_mode = false;
799 assert!(!opts.strict_mode);
800
801 opts.recover_from_stream_errors = true;
802 assert!(opts.recover_from_stream_errors);
803
804 opts.max_recovery_attempts = 20;
805 assert_eq!(opts.max_recovery_attempts, 20);
806
807 opts.lenient_streams = true;
808 assert!(opts.lenient_streams);
809
810 // Skip encoding type test - types not matching
811 // opts.preferred_encoding = Some(...);
812 }
813
814 // Content operation and encoding tests removed - types don't match actual implementation
815
816 #[test]
817 fn test_resource_types() {
818 // Test that we can create resource dictionaries
819 let mut resources = PdfDictionary::new();
820
821 // Add Font resources
822 let mut fonts = PdfDictionary::new();
823 fonts.insert("F1".to_string(), PdfObject::Reference(10, 0));
824 resources.insert("Font".to_string(), PdfObject::Dictionary(fonts));
825
826 // Add XObject resources
827 let mut xobjects = PdfDictionary::new();
828 xobjects.insert("Im1".to_string(), PdfObject::Reference(20, 0));
829 resources.insert("XObject".to_string(), PdfObject::Dictionary(xobjects));
830
831 // Verify resources structure
832 assert!(resources.contains_key("Font"));
833 assert!(resources.contains_key("XObject"));
834 }
835}