sevenz_rust2/
reader.rs

1use crate::{archive::*, decoders::add_decoder, error::Error, folder::*, password::Password};
2use bit_set::BitSet;
3use crc32fast::Hasher;
4use std::collections::HashMap;
5use std::{
6    fs::File,
7    io::{ErrorKind, Read, Seek, SeekFrom},
8};
9
10const MAX_MEM_LIMIT_KB: usize = usize::MAX / 1024;
11
12pub struct BoundedReader<R: Read> {
13    inner: R,
14    remain: usize,
15}
16
17impl<R: Read> BoundedReader<R> {
18    pub fn new(inner: R, max_size: usize) -> Self {
19        Self {
20            inner,
21            remain: max_size,
22        }
23    }
24}
25
26impl<R: Read> Read for BoundedReader<R> {
27    fn read(&mut self, buf: &mut [u8]) -> std::io::Result<usize> {
28        if self.remain == 0 {
29            return Ok(0);
30        }
31        let remain = self.remain;
32        let buf2 = if buf.len() < remain {
33            buf
34        } else {
35            &mut buf[..remain]
36        };
37        match self.inner.read(buf2) {
38            Ok(size) => {
39                if self.remain < size {
40                    self.remain = 0;
41                } else {
42                    self.remain -= size;
43                }
44                Ok(size)
45            }
46            Err(e) => Err(e),
47        }
48    }
49}
50
51#[derive(Debug, Default, Clone)]
52pub struct SeekableBoundedReader<R: Read + Seek> {
53    inner: R,
54    cur: u64,
55    bounds: (u64, u64),
56}
57
58impl<R: Read + Seek> Seek for SeekableBoundedReader<R> {
59    fn seek(&mut self, pos: SeekFrom) -> std::io::Result<u64> {
60        let new_pos = match pos {
61            SeekFrom::Start(pos) => self.bounds.0 as i64 + pos as i64,
62            SeekFrom::End(pos) => self.bounds.1 as i64 + pos,
63            SeekFrom::Current(pos) => self.cur as i64 + pos,
64        };
65        if new_pos < 0 {
66            return Err(std::io::Error::new(ErrorKind::Other, "SeekBeforeStart"));
67        }
68        self.cur = new_pos as u64;
69        self.inner.seek(SeekFrom::Start(self.cur))
70    }
71}
72
73impl<R: Read + Seek> Read for SeekableBoundedReader<R> {
74    fn read(&mut self, buf: &mut [u8]) -> std::io::Result<usize> {
75        if self.cur >= self.bounds.1 {
76            return Ok(0);
77        }
78        if self.stream_position()? != self.cur {
79            self.inner.seek(SeekFrom::Start(self.cur))?;
80        }
81        let buf2 = if buf.len() < (self.bounds.1 - self.cur) as usize {
82            buf
83        } else {
84            &mut buf[..(self.bounds.1 - self.cur) as usize]
85        };
86        let size = self.inner.read(buf2)?;
87        self.cur += size as u64;
88        Ok(size)
89    }
90}
91
92impl<R: Read + Seek> SeekableBoundedReader<R> {
93    pub fn new(inner: R, bounds: (u64, u64)) -> Self {
94        Self {
95            inner,
96            cur: bounds.0,
97            bounds,
98        }
99    }
100}
101
102struct Crc32VerifyingReader<R> {
103    inner: R,
104    crc_digest: Hasher,
105    expected_value: u64,
106    remaining: i64,
107}
108
109impl<R: Read> Crc32VerifyingReader<R> {
110    fn new(inner: R, remaining: usize, expected_value: u64) -> Self {
111        Self {
112            inner,
113            crc_digest: Hasher::new(),
114            expected_value,
115            remaining: remaining as i64,
116        }
117    }
118}
119
120impl<R: Read> Read for Crc32VerifyingReader<R> {
121    fn read(&mut self, buf: &mut [u8]) -> std::io::Result<usize> {
122        if self.remaining <= 0 {
123            return Ok(0);
124        }
125        let size = self.inner.read(buf)?;
126        if size > 0 {
127            self.remaining -= size as i64;
128            self.crc_digest.update(&buf[..size]);
129        }
130        if self.remaining <= 0 {
131            let d = std::mem::replace(&mut self.crc_digest, Hasher::new()).finalize();
132            if d as u64 != self.expected_value {
133                return Err(std::io::Error::new(
134                    ErrorKind::Other,
135                    Error::ChecksumVerificationFailed,
136                ));
137            }
138        }
139        Ok(size)
140    }
141}
142
143impl Archive {
144    /// Open 7z file under specified `path`.
145    #[inline]
146    pub fn open(path: impl AsRef<std::path::Path>) -> Result<Archive, Error> {
147        Self::open_with_password(path, &Password::empty())
148    }
149
150    /// Open an encrypted 7z file under specified `path` with  `password`.
151    #[inline]
152    pub fn open_with_password(
153        path: impl AsRef<std::path::Path>,
154        password: &Password,
155    ) -> Result<Archive, Error> {
156        let mut file = File::open(path)?;
157        let len = file.metadata()?.len();
158        Self::read(&mut file, len, password.as_ref())
159    }
160    /// Read 7z file archive info use the specified `reader`.
161    /// -[`reader_len`] the `reader` stream length
162    /// -[`password`] Archive password encoded in utf16 little endian.
163    ///
164    /// # Examples
165    /// ```no_run
166    /// use std::io::{Read,Seek};
167    /// use std::fs::File;
168    /// use sevenz_rust2::*;
169    /// let mut reader = File::open("example.7z").unwrap();
170    /// let len = reader.metadata().unwrap().len();
171    ///
172    /// let password = Password::from("the password");
173    /// let archive = Archive::read(&mut reader,len, password.as_ref()).unwrap();
174    ///
175    /// //let archive = Archive::read(&mut reader,len, &[]);// for unencrypted file
176    /// for entry in &archive.files {
177    ///     println!("{}", entry.name());
178    /// }
179    /// ```
180    pub fn read<R: Read + Seek>(
181        reader: &mut R,
182        reader_len: u64,
183        password: &[u8],
184    ) -> Result<Archive, Error> {
185        let mut signature = [0; 6];
186        reader.read_exact(&mut signature).map_err(Error::io)?;
187        if signature != SEVEN_Z_SIGNATURE {
188            return Err(Error::BadSignature(signature));
189        }
190        let mut versions = [0; 2];
191        reader.read_exact(&mut versions).map_err(Error::io)?;
192        let version_major = versions[0];
193        let version_minor = versions[1];
194        if version_major != 0 {
195            return Err(Error::UnsupportedVersion {
196                major: version_major,
197                minor: version_minor,
198            });
199        }
200
201        let start_header_crc = read_u32(reader)?;
202
203        let header_valid = if start_header_crc == 0 {
204            let current_position = reader.stream_position().map_err(Error::io)?;
205            let mut buf = [0; 20];
206            reader.read_exact(&mut buf).map_err(Error::io)?;
207            reader
208                .seek(SeekFrom::Start(current_position))
209                .map_err(Error::io)?;
210            buf.iter().any(|a| *a != 0)
211        } else {
212            true
213        };
214        if header_valid {
215            let start_header = Self::read_start_header(reader, start_header_crc)?;
216            Self::init_archive(reader, start_header, password, true)
217        } else {
218            Self::try_to_locale_end_header(reader, reader_len, password)
219        }
220    }
221
222    fn read_start_header<R: Read>(
223        reader: &mut R,
224        start_header_crc: u32,
225    ) -> Result<StartHeader, Error> {
226        let mut buf = [0; 20];
227        reader.read_exact(&mut buf).map_err(Error::io)?;
228        let crc32 = crc32fast::hash(&buf);
229        if crc32 != start_header_crc {
230            return Err(Error::ChecksumVerificationFailed);
231        }
232        let mut buf_read = buf.as_slice();
233        let offset = read_u64le(&mut buf_read)?;
234
235        let size = read_u64le(&mut buf_read)?;
236        let crc = read_u32(&mut buf_read)?;
237        Ok(StartHeader {
238            next_header_offset: offset,
239            next_header_size: size,
240            next_header_crc: crc as u64,
241        })
242    }
243
244    fn read_header<R: Read + Seek>(header: &mut R, archive: &mut Archive) -> Result<(), Error> {
245        let mut nid = read_u8(header)?;
246        if nid == K_ARCHIVE_PROPERTIES {
247            Self::read_archive_properties(header)?;
248            nid = read_u8(header)?;
249        }
250
251        if nid == K_ADDITIONAL_STREAMS_INFO {
252            return Err(Error::other("Additional streams unsupported"));
253        }
254        if nid == K_MAIN_STREAMS_INFO {
255            Self::read_streams_info(header, archive)?;
256            nid = read_u8(header)?;
257        }
258        if nid == K_FILES_INFO {
259            Self::read_files_info(header, archive)?;
260            nid = read_u8(header)?;
261        }
262        if nid != K_END {
263            return Err(Error::BadTerminatedheader(nid));
264        }
265
266        Ok(())
267    }
268
269    fn read_archive_properties<R: Read + Seek>(header: &mut R) -> Result<(), Error> {
270        let mut nid = read_u8(header)?;
271        while nid != K_END {
272            let property_size = read_usize(header, "propertySize")?;
273            header
274                .seek(SeekFrom::Current(property_size as i64))
275                .map_err(Error::io)?;
276            nid = read_u8(header)?;
277        }
278        Ok(())
279    }
280
281    fn try_to_locale_end_header<R: Read + Seek>(
282        reader: &mut R,
283        reader_len: u64,
284        password: &[u8],
285    ) -> Result<Self, Error> {
286        let search_limit = 1024 * 1024;
287        let prev_data_size = reader.stream_position().map_err(Error::io)? + 20;
288        let size = reader_len;
289        let min_pos = if reader.stream_position().map_err(Error::io)? + search_limit > size {
290            reader.stream_position().map_err(Error::io)?
291        } else {
292            size - search_limit
293        };
294        let mut pos = reader_len - 1;
295        while pos > min_pos {
296            pos -= 1;
297
298            reader.seek(SeekFrom::Start(pos)).map_err(Error::io)?;
299            let nid = read_u8(reader)?;
300            if nid == K_ENCODED_HEADER || nid == K_HEADER {
301                let start_header = StartHeader {
302                    next_header_offset: pos - prev_data_size,
303                    next_header_size: reader_len - pos,
304                    next_header_crc: 0,
305                };
306                let result = Self::init_archive(reader, start_header, password, false)?;
307
308                if !result.files.is_empty() {
309                    return Ok(result);
310                }
311            }
312        }
313        Err(Error::other(
314            "Start header corrupt and unable to guess end header",
315        ))
316    }
317
318    fn init_archive<R: Read + Seek>(
319        reader: &mut R,
320        start_header: StartHeader,
321        password: &[u8],
322        verify_crc: bool,
323    ) -> Result<Self, Error> {
324        if start_header.next_header_size > usize::MAX as u64 {
325            return Err(Error::other(format!(
326                "Cannot handle next_header_size {}",
327                start_header.next_header_size
328            )));
329        }
330
331        let next_header_size_int = start_header.next_header_size as usize;
332
333        reader
334            .seek(SeekFrom::Start(
335                SIGNATURE_HEADER_SIZE + start_header.next_header_offset,
336            ))
337            .map_err(Error::io)?;
338
339        let mut buf = vec![0; next_header_size_int];
340        reader.read_exact(&mut buf).map_err(Error::io)?;
341        if verify_crc && crc32fast::hash(&buf) as u64 != start_header.next_header_crc {
342            return Err(Error::NextHeaderCrcMismatch);
343        }
344
345        let mut archive = Archive::default();
346        let mut buf_reader = buf.as_slice();
347        let mut nid = read_u8(&mut buf_reader)?;
348        let mut header = if nid == K_ENCODED_HEADER {
349            let (mut out_reader, buf_size) =
350                Self::read_encoded_header(&mut buf_reader, reader, &mut archive, password)?;
351            buf.clear();
352            buf.resize(buf_size, 0);
353            out_reader
354                .read_exact(&mut buf)
355                .map_err(|e| Error::bad_password(e, !password.is_empty()))?;
356            archive = Archive::default();
357            buf_reader = buf.as_slice();
358            nid = read_u8(&mut buf_reader)?;
359            buf_reader
360        } else {
361            buf_reader
362        };
363        let mut header = std::io::Cursor::new(&mut header);
364        if nid == K_HEADER {
365            Self::read_header(&mut header, &mut archive)?;
366        } else {
367            return Err(Error::other("Broken or unsupported archive: no Header"));
368        }
369
370        archive.is_solid = archive
371            .folders
372            .iter()
373            .any(|folder| folder.num_unpack_sub_streams > 1);
374
375        Ok(archive)
376    }
377
378    fn read_encoded_header<'r, R: Read, RI: 'r + Read + Seek>(
379        header: &mut R,
380        reader: &'r mut RI,
381        archive: &mut Archive,
382        password: &[u8],
383    ) -> Result<(Box<dyn Read + 'r>, usize), Error> {
384        Self::read_streams_info(header, archive)?;
385        let folder = archive
386            .folders
387            .first()
388            .ok_or(Error::other("no folders, can't read encoded header"))?;
389        let first_pack_stream_index = 0;
390        let folder_offset = SIGNATURE_HEADER_SIZE + archive.pack_pos;
391        if archive.pack_sizes.is_empty() {
392            return Err(Error::other("no packed streams, can't read encoded header"));
393        }
394
395        reader
396            .seek(SeekFrom::Start(folder_offset))
397            .map_err(Error::io)?;
398        let coder_len = folder.coders.len();
399        let unpack_size = folder.get_unpack_size() as usize;
400        let pack_size = archive.pack_sizes[first_pack_stream_index] as usize;
401        let input_reader =
402            SeekableBoundedReader::new(reader, (folder_offset, folder_offset + pack_size as u64));
403        let mut decoder: Box<dyn Read> = Box::new(input_reader);
404        let mut decoder = if coder_len > 0 {
405            for (index, coder) in folder.ordered_coder_iter() {
406                if coder.num_in_streams != 1 || coder.num_out_streams != 1 {
407                    return Err(Error::other(
408                        "Multi input/output stream coders are not yet supported",
409                    ));
410                }
411                let next = add_decoder(
412                    decoder,
413                    folder.get_unpack_size_at_index(index) as usize,
414                    coder,
415                    password,
416                    MAX_MEM_LIMIT_KB,
417                )?;
418                decoder = Box::new(next);
419            }
420            decoder
421        } else {
422            decoder
423        };
424        if folder.has_crc {
425            decoder = Box::new(Crc32VerifyingReader::new(decoder, unpack_size, folder.crc));
426        }
427
428        Ok((decoder, unpack_size))
429    }
430
431    fn read_streams_info<R: Read>(header: &mut R, archive: &mut Archive) -> Result<(), Error> {
432        let mut nid = read_u8(header)?;
433        if nid == K_PACK_INFO {
434            Self::read_pack_info(header, archive)?;
435            nid = read_u8(header)?;
436        }
437
438        if nid == K_UNPACK_INFO {
439            Self::read_unpack_info(header, archive)?;
440            nid = read_u8(header)?;
441        } else {
442            archive.folders.clear();
443        }
444        if nid == K_SUB_STREAMS_INFO {
445            Self::read_sub_streams_info(header, archive)?;
446            nid = read_u8(header)?;
447        }
448        if nid != K_END {
449            return Err(Error::BadTerminatedStreamsInfo(nid));
450        }
451
452        Ok(())
453    }
454
455    fn read_files_info<R: Read + Seek>(header: &mut R, archive: &mut Archive) -> Result<(), Error> {
456        let num_files = read_usize(header, "num files")?;
457        let mut files: Vec<SevenZArchiveEntry> = vec![Default::default(); num_files];
458
459        let mut is_empty_stream: Option<BitSet> = None;
460        let mut is_empty_file: Option<BitSet> = None;
461        let mut is_anti: Option<BitSet> = None;
462        loop {
463            let prop_type = read_u8(header)?;
464            if prop_type == 0 {
465                break;
466            }
467            let size = read_u64(header)?;
468            match prop_type {
469                K_EMPTY_STREAM => {
470                    is_empty_stream = Some(read_bits(header, num_files)?);
471                }
472                K_EMPTY_FILE => {
473                    let n = if let Some(s) = &is_empty_stream {
474                        s.len()
475                    } else {
476                        return Err(Error::other(
477                            "Header format error: kEmptyStream must appear before kEmptyFile",
478                        ));
479                    };
480                    is_empty_file = Some(read_bits(header, n)?);
481                }
482                K_ANTI => {
483                    let n = if let Some(s) = is_empty_stream.as_ref() {
484                        s.len()
485                    } else {
486                        return Err(Error::other(
487                            "Header format error: kEmptyStream must appear before kEmptyFile",
488                        ));
489                    };
490                    is_anti = Some(read_bits(header, n)?);
491                }
492                K_NAME => {
493                    let external = read_u8(header)?;
494                    if external != 0 {
495                        return Err(Error::other("Not implemented:external != 0"));
496                    }
497                    if (size - 1) & 1 != 0 {
498                        return Err(Error::other("file names length invalid"));
499                    }
500
501                    let size = assert_usize(size, "file names length")?;
502                    // let mut names = vec![0u8; size - 1];
503                    // header.read_exact(&mut names).map_err(Error::io)?;
504                    let names_reader = NamesReader::new(header, size - 1);
505
506                    let mut next_file = 0;
507                    for s in names_reader {
508                        files[next_file].name = s?;
509                        next_file += 1;
510                    }
511
512                    if next_file != files.len() {
513                        return Err(Error::other("Error parsing file names"));
514                    }
515                }
516                K_C_TIME => {
517                    let times_defined = read_all_or_bits(header, num_files)?;
518                    let external = read_u8(header)?;
519                    if external != 0 {
520                        return Err(Error::other(format!(
521                            "kCTime Unimplemented:external={}",
522                            external
523                        )));
524                    }
525                    for (i, file) in files.iter_mut().enumerate() {
526                        file.has_creation_date = times_defined.contains(i);
527                        if file.has_creation_date {
528                            file.creation_date = read_u64le(header)?.into();
529                        }
530                    }
531                }
532                K_A_TIME => {
533                    let times_defined = read_all_or_bits(header, num_files)?;
534                    let external = read_u8(header)?;
535                    if external != 0 {
536                        return Err(Error::other(format!(
537                            "kATime Unimplemented:external={}",
538                            external
539                        )));
540                    }
541                    for (i, file) in files.iter_mut().enumerate() {
542                        file.has_access_date = times_defined.contains(i);
543                        if file.has_access_date {
544                            file.access_date = read_u64le(header)?.into();
545                        }
546                    }
547                }
548                K_M_TIME => {
549                    let times_defined = read_all_or_bits(header, num_files)?;
550                    let external = read_u8(header)?;
551                    if external != 0 {
552                        return Err(Error::other(format!(
553                            "kMTime Unimplemented:external={}",
554                            external
555                        )));
556                    }
557                    for (i, file) in files.iter_mut().enumerate() {
558                        file.has_last_modified_date = times_defined.contains(i);
559                        if file.has_last_modified_date {
560                            file.last_modified_date = read_u64le(header)?.into();
561                        }
562                    }
563                }
564                K_WIN_ATTRIBUTES => {
565                    let times_defined = read_all_or_bits(header, num_files)?;
566                    let external = read_u8(header)?;
567                    if external != 0 {
568                        return Err(Error::other(format!(
569                            "kWinAttributes Unimplemented:external={}",
570                            external
571                        )));
572                    }
573                    for (i, file) in files.iter_mut().enumerate() {
574                        file.has_windows_attributes = times_defined.contains(i);
575                        if file.has_windows_attributes {
576                            file.windows_attributes = read_u32(header)?;
577                        }
578                    }
579                }
580                K_START_POS => return Err(Error::other("kStartPos is unsupported, please report")),
581                K_DUMMY => {
582                    header
583                        .seek(SeekFrom::Current(size as i64))
584                        .map_err(Error::io)?;
585                }
586                _ => {
587                    header
588                        .seek(SeekFrom::Current(size as i64))
589                        .map_err(Error::io)?;
590                }
591            };
592        }
593
594        let mut non_empty_file_counter = 0;
595        let mut empty_file_counter = 0;
596        for (i, file) in files.iter_mut().enumerate() {
597            file.has_stream = is_empty_stream
598                .as_ref()
599                .map(|s| !s.contains(i))
600                .unwrap_or(true);
601            if file.has_stream {
602                let sub_stream_info = if let Some(s) = archive.sub_streams_info.as_ref() {
603                    s
604                } else {
605                    return Err(Error::other(
606                        "Archive contains file with streams but no subStreamsInfo",
607                    ));
608                };
609                file.is_directory = false;
610                file.is_anti_item = false;
611                file.has_crc = sub_stream_info.has_crc.contains(non_empty_file_counter);
612                file.crc = sub_stream_info.crcs[non_empty_file_counter];
613                file.size = sub_stream_info.unpack_sizes[non_empty_file_counter];
614                non_empty_file_counter += 1;
615            } else {
616                file.is_directory = if let Some(s) = &is_empty_file {
617                    !s.contains(empty_file_counter)
618                } else {
619                    true
620                };
621                file.is_anti_item = is_anti
622                    .as_ref()
623                    .map(|s| s.contains(empty_file_counter))
624                    .unwrap_or(false);
625                file.has_crc = false;
626                file.size = 0;
627                empty_file_counter += 1;
628            }
629        }
630        archive.files = files;
631
632        Self::calculate_stream_map(archive)?;
633        Ok(())
634    }
635
636    fn calculate_stream_map(archive: &mut Archive) -> Result<(), Error> {
637        let mut stream_map = StreamMap::default();
638
639        let mut next_folder_pack_stream_index = 0;
640        let num_folders = archive.folders.len();
641        stream_map.folder_first_pack_stream_index = vec![0; num_folders];
642        for i in 0..num_folders {
643            stream_map.folder_first_pack_stream_index[i] = next_folder_pack_stream_index;
644            next_folder_pack_stream_index += archive.folders[i].packed_streams.len();
645        }
646
647        let mut next_pack_stream_offset = 0;
648        let num_pack_sizes = archive.pack_sizes.len();
649        stream_map.pack_stream_offsets = vec![0; num_pack_sizes];
650        for i in 0..num_pack_sizes {
651            stream_map.pack_stream_offsets[i] = next_pack_stream_offset;
652            next_pack_stream_offset += archive.pack_sizes[i];
653        }
654
655        stream_map.folder_first_file_index = vec![0; num_folders];
656        stream_map.file_folder_index = vec![None; archive.files.len()];
657        let mut next_folder_index = 0;
658        let mut next_folder_unpack_stream_index = 0;
659        for i in 0..archive.files.len() {
660            if !archive.files[i].has_stream && next_folder_unpack_stream_index == 0 {
661                stream_map.file_folder_index[i] = None;
662                continue;
663            }
664            if next_folder_unpack_stream_index == 0 {
665                while next_folder_index < archive.folders.len() {
666                    stream_map.folder_first_file_index[next_folder_index] = i;
667                    if archive.folders[next_folder_index].num_unpack_sub_streams > 0 {
668                        break;
669                    }
670                    next_folder_index += 1;
671                }
672                if next_folder_index >= archive.folders.len() {
673                    return Err(Error::other("Too few folders in archive"));
674                }
675            }
676            stream_map.file_folder_index[i] = Some(next_folder_index);
677            if !archive.files[i].has_stream {
678                continue;
679            }
680
681            //set `compressed_size` of first file in block
682            if stream_map.folder_first_file_index[next_folder_index] == i {
683                let first_pack_stream_index =
684                    stream_map.folder_first_pack_stream_index[next_folder_index];
685                let pack_size = archive.pack_sizes[first_pack_stream_index];
686
687                archive.files[i].compressed_size = pack_size;
688            }
689
690            next_folder_unpack_stream_index += 1;
691            if next_folder_unpack_stream_index
692                >= archive.folders[next_folder_index].num_unpack_sub_streams
693            {
694                next_folder_index += 1;
695                next_folder_unpack_stream_index = 0;
696            }
697        }
698
699        archive.stream_map = stream_map;
700        Ok(())
701    }
702
703    fn read_pack_info<R: Read>(header: &mut R, archive: &mut Archive) -> Result<(), Error> {
704        archive.pack_pos = read_u64(header)?;
705        let num_pack_streams = read_usize(header, "num pack streams")?;
706        let mut nid = read_u8(header)?;
707        if nid == K_SIZE {
708            archive.pack_sizes = vec![0u64; num_pack_streams];
709            for i in 0..archive.pack_sizes.len() {
710                archive.pack_sizes[i] = read_u64(header)?;
711            }
712            nid = read_u8(header)?;
713        }
714
715        if nid == K_CRC {
716            archive.pack_crcs_defined = read_all_or_bits(header, num_pack_streams)?;
717            archive.pack_crcs = vec![0; num_pack_streams];
718            for i in 0..num_pack_streams {
719                if archive.pack_crcs_defined.contains(i) {
720                    archive.pack_crcs[i] = read_u32(header)? as u64;
721                }
722            }
723            nid = read_u8(header)?;
724        }
725
726        if nid != K_END {
727            return Err(Error::BadTerminatedPackInfo(nid));
728        }
729
730        Ok(())
731    }
732    fn read_unpack_info<R: Read>(header: &mut R, archive: &mut Archive) -> Result<(), Error> {
733        let nid = read_u8(header)?;
734        if nid != K_FOLDER {
735            return Err(Error::other(format!("Expected kFolder, got {}", nid)));
736        }
737        let num_folders = read_usize(header, "num folders")?;
738
739        archive.folders.reserve_exact(num_folders);
740        let external = read_u8(header)?;
741        if external != 0 {
742            return Err(Error::ExternalUnsupported);
743        }
744
745        for _ in 0..num_folders {
746            archive.folders.push(Self::read_folder(header)?);
747        }
748
749        let nid = read_u8(header)?;
750        if nid != K_CODERS_UNPACK_SIZE {
751            return Err(Error::other(format!(
752                "Expected kCodersUnpackSize, got {}",
753                nid
754            )));
755        }
756
757        for folder in archive.folders.iter_mut() {
758            let tos = folder.total_output_streams;
759            folder.unpack_sizes.reserve_exact(tos);
760            for _ in 0..tos {
761                folder.unpack_sizes.push(read_u64(header)?);
762            }
763        }
764
765        let mut nid = read_u8(header)?;
766        if nid == K_CRC {
767            let crcs_defined = read_all_or_bits(header, num_folders)?;
768            for i in 0..num_folders {
769                if crcs_defined.contains(i) {
770                    archive.folders[i].has_crc = true;
771                    archive.folders[i].crc = read_u32(header)? as u64;
772                } else {
773                    archive.folders[i].has_crc = false;
774                }
775            }
776            nid = read_u8(header)?;
777        }
778        if nid != K_END {
779            return Err(Error::BadTerminatedUnpackInfo);
780        }
781
782        Ok(())
783    }
784
785    fn read_sub_streams_info<R: Read>(header: &mut R, archive: &mut Archive) -> Result<(), Error> {
786        for folder in archive.folders.iter_mut() {
787            folder.num_unpack_sub_streams = 1;
788        }
789        let mut total_unpack_streams = archive.folders.len();
790
791        let mut nid = read_u8(header)?;
792        if nid == K_NUM_UNPACK_STREAM {
793            total_unpack_streams = 0;
794            for folder in archive.folders.iter_mut() {
795                let num_streams = read_usize(header, "numStreams")?;
796                folder.num_unpack_sub_streams = num_streams;
797                total_unpack_streams += num_streams;
798            }
799            nid = read_u8(header)?;
800        }
801
802        let mut sub_streams_info = SubStreamsInfo::default();
803        sub_streams_info
804            .unpack_sizes
805            .resize(total_unpack_streams, Default::default());
806        sub_streams_info
807            .has_crc
808            .reserve_len_exact(total_unpack_streams);
809        sub_streams_info.crcs = vec![0; total_unpack_streams];
810
811        let mut next_unpack_stream = 0;
812        for folder in archive.folders.iter() {
813            if folder.num_unpack_sub_streams == 0 {
814                continue;
815            }
816            let mut sum = 0;
817            if nid == K_SIZE {
818                for _i in 0..folder.num_unpack_sub_streams - 1 {
819                    let size = read_u64(header)?;
820                    sub_streams_info.unpack_sizes[next_unpack_stream] = size;
821                    next_unpack_stream += 1;
822                    sum += size;
823                }
824            }
825            if sum > folder.get_unpack_size() {
826                return Err(Error::other(
827                    "sum of unpack sizes of folder exceeds total unpack size",
828                ));
829            }
830            sub_streams_info.unpack_sizes[next_unpack_stream] = folder.get_unpack_size() - sum;
831            next_unpack_stream += 1;
832        }
833        if nid == K_SIZE {
834            nid = read_u8(header)?;
835        }
836
837        let mut num_digests = 0;
838        for folder in archive.folders.iter() {
839            if folder.num_unpack_sub_streams != 1 || !folder.has_crc {
840                num_digests += folder.num_unpack_sub_streams;
841            }
842        }
843
844        if nid == K_CRC {
845            let has_missing_crc = read_all_or_bits(header, num_digests)?;
846            let mut missing_crcs = vec![0; num_digests];
847            for (i, missing_crc) in missing_crcs.iter_mut().enumerate() {
848                if has_missing_crc.contains(i) {
849                    *missing_crc = read_u32(header)? as u64;
850                }
851            }
852            let mut next_crc = 0;
853            let mut next_missing_crc = 0;
854            for folder in archive.folders.iter() {
855                if folder.num_unpack_sub_streams == 1 && folder.has_crc {
856                    sub_streams_info.has_crc.insert(next_crc);
857                    sub_streams_info.crcs[next_crc] = folder.crc;
858                    next_crc += 1;
859                } else {
860                    for _i in 0..folder.num_unpack_sub_streams {
861                        if has_missing_crc.contains(next_missing_crc) {
862                            sub_streams_info.has_crc.insert(next_crc);
863                        } else {
864                            sub_streams_info.has_crc.remove(next_crc);
865                        }
866                        sub_streams_info.crcs[next_crc] = missing_crcs[next_missing_crc];
867                        next_crc += 1;
868                        next_missing_crc += 1;
869                    }
870                }
871            }
872
873            nid = read_u8(header)?;
874        }
875
876        if nid != K_END {
877            return Err(Error::BadTerminatedSubStreamsInfo);
878        }
879
880        archive.sub_streams_info = Some(sub_streams_info);
881        Ok(())
882    }
883
884    fn read_folder<R: Read>(header: &mut R) -> Result<Folder, Error> {
885        let mut folder = Folder::default();
886
887        let num_coders = read_usize(header, "num coders")?;
888        let mut coders = Vec::with_capacity(num_coders);
889        let mut total_in_streams = 0;
890        let mut total_out_streams = 0;
891        for _i in 0..num_coders {
892            let mut coder = Coder::default();
893            let bits = read_u8(header)?;
894            let id_size = bits & 0xf;
895            let is_simple = (bits & 0x10) == 0;
896            let has_attributes = (bits & 0x20) != 0;
897            let more_alternative_methods = (bits & 0x80) != 0;
898
899            coder.id_size = id_size as usize;
900
901            header
902                .read(coder.decompression_method_id_mut())
903                .map_err(Error::io)?;
904            if is_simple {
905                coder.num_in_streams = 1;
906                coder.num_out_streams = 1;
907            } else {
908                coder.num_in_streams = read_u64(header)?;
909                coder.num_out_streams = read_u64(header)?;
910            }
911            total_in_streams += coder.num_in_streams;
912            total_out_streams += coder.num_out_streams;
913            if has_attributes {
914                let properties_size = read_usize(header, "properties size")?;
915                let mut props = vec![0u8; properties_size];
916                header.read(&mut props).map_err(Error::io)?;
917                coder.properties = props;
918            }
919            coders.push(coder);
920            // would need to keep looping as above:
921            if more_alternative_methods {
922                return Err(Error::other("Alternative methods are unsupported, please report. The reference implementation doesn't support them either."));
923            }
924        }
925        folder.coders = coders;
926        let total_in_streams = assert_usize(total_in_streams, "totalInStreams")?;
927        let total_out_streams = assert_usize(total_out_streams, "totalOutStreams")?;
928        folder.total_input_streams = total_in_streams;
929        folder.total_output_streams = total_out_streams;
930
931        if total_out_streams == 0 {
932            return Err(Error::other("Total output streams can't be 0"));
933        }
934        let num_bind_pairs = total_out_streams - 1;
935        let mut bind_pairs = Vec::with_capacity(num_bind_pairs);
936        for _ in 0..num_bind_pairs {
937            let bp = BindPair {
938                in_index: read_u64(header)?,
939                out_index: read_u64(header)?,
940            };
941            bind_pairs.push(bp);
942        }
943        folder.bind_pairs = bind_pairs;
944
945        if total_in_streams < num_bind_pairs {
946            return Err(Error::other(
947                "Total input streams can't be less than the number of bind pairs",
948            ));
949        }
950        let num_packed_streams = total_in_streams - num_bind_pairs;
951        let mut packed_streams = vec![0; num_packed_streams];
952        if num_packed_streams == 1 {
953            let mut index = u64::MAX;
954            for i in 0..total_in_streams {
955                if folder.find_bind_pair_for_in_stream(i).is_none() {
956                    index = i as u64;
957                    break;
958                }
959            }
960            if index == u64::MAX {
961                return Err(Error::other("Couldn't find stream's bind pair index"));
962            }
963            packed_streams[0] = index;
964        } else {
965            for packed_stream in packed_streams.iter_mut() {
966                *packed_stream = read_u64(header)?;
967            }
968        }
969        folder.packed_streams = packed_streams;
970
971        Ok(folder)
972    }
973}
974
975#[inline]
976fn read_usize<R: Read>(reader: &mut R, field: &str) -> Result<usize, Error> {
977    let size = read_u64(reader)?;
978    assert_usize(size, field)
979}
980
981#[inline]
982fn assert_usize(size: u64, field: &str) -> Result<usize, Error> {
983    if size > usize::MAX as u64 {
984        return Err(Error::other(format!("Cannot handle {} {}", field, size)));
985    }
986    Ok(size as usize)
987}
988
989#[inline]
990fn read_u64le<R: Read>(reader: &mut R) -> Result<u64, Error> {
991    let mut buf = [0; 8];
992    reader.read_exact(&mut buf).map_err(Error::io)?;
993    Ok(u64::from_le_bytes(buf))
994}
995
996fn read_u64<R: Read>(reader: &mut R) -> Result<u64, Error> {
997    let first = read_u8(reader)? as u64;
998    let mut mask = 0x80_u64;
999    let mut value = 0;
1000    for i in 0..8 {
1001        if (first & mask) == 0 {
1002            return Ok(value | ((first & (mask - 1)) << (8 * i)));
1003        }
1004        let b = read_u8(reader)? as u64;
1005        value |= b << (8 * i);
1006        mask >>= 1;
1007    }
1008    Ok(value)
1009}
1010
1011#[inline(always)]
1012fn read_u32<R: Read>(reader: &mut R) -> Result<u32, Error> {
1013    let mut buf = [0; 4];
1014    reader.read_exact(&mut buf).map_err(Error::io)?;
1015    Ok(u32::from_le_bytes(buf))
1016}
1017
1018#[inline(always)]
1019fn read_u8<R: Read>(reader: &mut R) -> Result<u8, Error> {
1020    let mut buf = [0];
1021    reader.read_exact(&mut buf).map_err(Error::io)?;
1022    Ok(buf[0])
1023}
1024
1025fn read_all_or_bits<R: Read>(header: &mut R, size: usize) -> Result<BitSet, Error> {
1026    let all = read_u8(header)?;
1027    if all != 0 {
1028        let mut bits = BitSet::with_capacity(size);
1029        for i in 0..size {
1030            bits.insert(i);
1031        }
1032        Ok(bits)
1033    } else {
1034        read_bits(header, size)
1035    }
1036}
1037
1038fn read_bits<R: Read>(header: &mut R, size: usize) -> Result<BitSet, Error> {
1039    let mut bits = BitSet::with_capacity(size);
1040    let mut mask = 0u32;
1041    let mut cache = 0u32;
1042    for i in 0..size {
1043        if mask == 0 {
1044            mask = 0x80;
1045            cache = read_u8(header)? as u32;
1046        }
1047        if (cache & mask) != 0 {
1048            bits.insert(i);
1049        }
1050        mask >>= 1;
1051    }
1052    Ok(bits)
1053}
1054
1055struct NamesReader<'a, R: Read> {
1056    max_bytes: usize,
1057    read_bytes: usize,
1058    cache: Vec<u16>,
1059    reader: &'a mut R,
1060}
1061
1062impl<'a, R: Read> NamesReader<'a, R> {
1063    fn new(reader: &'a mut R, max_bytes: usize) -> Self {
1064        Self {
1065            max_bytes,
1066            reader,
1067            read_bytes: 0,
1068            cache: Vec::with_capacity(16),
1069        }
1070    }
1071}
1072
1073impl<R: Read> Iterator for NamesReader<'_, R> {
1074    type Item = Result<String, Error>;
1075
1076    fn next(&mut self) -> Option<Self::Item> {
1077        if self.max_bytes <= self.read_bytes {
1078            return None;
1079        }
1080        self.cache.clear();
1081        let mut buf = [0; 2];
1082        while self.read_bytes < self.max_bytes {
1083            let r = self.reader.read_exact(&mut buf).map_err(Error::io);
1084            self.read_bytes += 2;
1085            if let Err(e) = r {
1086                return Some(Err(e));
1087            }
1088            let u = u16::from_le_bytes(buf);
1089            if u == 0 {
1090                break;
1091            }
1092            self.cache.push(u);
1093        }
1094
1095        Some(String::from_utf16(&self.cache).map_err(|e| Error::other(e.to_string())))
1096    }
1097}
1098
1099#[derive(Copy, Clone)]
1100struct IndexEntry {
1101    folder_index: Option<usize>,
1102    file_index: usize,
1103}
1104
1105pub struct SevenZReader<R: Read + Seek> {
1106    source: R,
1107    archive: Archive,
1108    password: Vec<u8>,
1109    index: HashMap<String, IndexEntry>,
1110}
1111
1112#[cfg(not(target_arch = "wasm32"))]
1113impl SevenZReader<File> {
1114    #[inline]
1115    pub fn open(path: impl AsRef<std::path::Path>, password: Password) -> Result<Self, Error> {
1116        let file = File::open(path.as_ref())
1117            .map_err(|e| Error::file_open(e, path.as_ref().to_string_lossy().to_string()))?;
1118        let len = file.metadata().map(|m| m.len()).map_err(Error::io)?;
1119        Self::new(file, len, password)
1120    }
1121}
1122
1123impl<R: Read + Seek> SevenZReader<R> {
1124    #[inline]
1125    pub fn new(mut source: R, reader_len: u64, password: Password) -> Result<Self, Error> {
1126        let password = password.to_vec();
1127        let archive = Archive::read(&mut source, reader_len, &password)?;
1128
1129        let mut reader = Self {
1130            source,
1131            archive,
1132            password,
1133            index: HashMap::default(),
1134        };
1135
1136        reader.fill_index();
1137
1138        Ok(reader)
1139    }
1140
1141    #[inline]
1142    pub fn from_archive(archive: Archive, source: R, password: Password) -> Self {
1143        let mut reader = Self {
1144            source,
1145            archive,
1146            password: password.to_vec(),
1147            index: HashMap::default(),
1148        };
1149
1150        reader.fill_index();
1151
1152        reader
1153    }
1154
1155    fn fill_index(&mut self) {
1156        for (file_index, file) in self.archive.files.iter().enumerate() {
1157            let folder_index = self.archive.stream_map.file_folder_index[file_index];
1158
1159            self.index.insert(
1160                file.name.clone(),
1161                IndexEntry {
1162                    folder_index,
1163                    file_index,
1164                },
1165            );
1166        }
1167    }
1168
1169    #[inline]
1170    pub fn archive(&self) -> &Archive {
1171        &self.archive
1172    }
1173
1174    fn build_decode_stack<'r>(
1175        source: &'r mut R,
1176        archive: &Archive,
1177        folder_index: usize,
1178        password: &[u8],
1179    ) -> Result<(Box<dyn Read + 'r>, usize), Error> {
1180        let folder = &archive.folders[folder_index];
1181        if folder.total_input_streams > folder.total_output_streams {
1182            return Self::build_decode_stack2(source, archive, folder_index, password);
1183        }
1184        let first_pack_stream_index =
1185            archive.stream_map.folder_first_pack_stream_index[folder_index];
1186        let folder_offset = SIGNATURE_HEADER_SIZE
1187            + archive.pack_pos
1188            + archive.stream_map.pack_stream_offsets[first_pack_stream_index];
1189
1190        source
1191            .seek(SeekFrom::Start(folder_offset))
1192            .map_err(Error::io)?;
1193        let pack_size = archive.pack_sizes[first_pack_stream_index] as usize;
1194
1195        let mut decoder: Box<dyn Read> = Box::new(BoundedReader::new(source, pack_size));
1196        let folder = &archive.folders[folder_index];
1197        for (index, coder) in folder.ordered_coder_iter() {
1198            if coder.num_in_streams != 1 || coder.num_out_streams != 1 {
1199                return Err(Error::unsupported(
1200                    "Multi input/output stream coders are not yet supported",
1201                ));
1202            }
1203            let next = add_decoder(
1204                decoder,
1205                folder.get_unpack_size_at_index(index) as usize,
1206                coder,
1207                password,
1208                MAX_MEM_LIMIT_KB,
1209            )?;
1210            decoder = Box::new(next);
1211        }
1212        if folder.has_crc {
1213            decoder = Box::new(Crc32VerifyingReader::new(
1214                decoder,
1215                folder.get_unpack_size() as usize,
1216                folder.crc,
1217            ));
1218        }
1219
1220        Ok((decoder, pack_size))
1221    }
1222
1223    fn build_decode_stack2<'r>(
1224        source: &'r mut R,
1225        archive: &Archive,
1226        folder_index: usize,
1227        password: &[u8],
1228    ) -> Result<(Box<dyn Read + 'r>, usize), Error> {
1229        const MAX_CODER_COUNT: usize = 32;
1230        let folder = &archive.folders[folder_index];
1231        if folder.coders.len() > MAX_CODER_COUNT {
1232            return Err(Error::unsupported(format!(
1233                "Too many coders: {}",
1234                folder.coders.len()
1235            )));
1236        }
1237
1238        assert!(folder.total_input_streams > folder.total_output_streams);
1239        let source = ReaderPtr::new(source);
1240        let first_pack_stream_index =
1241            archive.stream_map.folder_first_pack_stream_index[folder_index];
1242        let start_pos = SIGNATURE_HEADER_SIZE + archive.pack_pos;
1243        let offsets = &archive.stream_map.pack_stream_offsets[first_pack_stream_index..];
1244
1245        let mut sources = Vec::with_capacity(folder.packed_streams.len());
1246
1247        for (i, offset) in offsets[..folder.packed_streams.len()].iter().enumerate() {
1248            let pack_pos = start_pos + offset;
1249            let pack_size = archive.pack_sizes[first_pack_stream_index + i];
1250            let pack_reader =
1251                SeekableBoundedReader::new(source.clone(), (pack_pos, pack_pos + pack_size));
1252            sources.push(pack_reader);
1253        }
1254
1255        let mut coder_to_stream_map = [usize::MAX; MAX_CODER_COUNT];
1256
1257        let mut si = 0;
1258        for (i, coder) in folder.coders.iter().enumerate() {
1259            coder_to_stream_map[i] = si;
1260            si += coder.num_in_streams as usize;
1261        }
1262
1263        let main_coder_index = {
1264            let mut coder_used = [false; MAX_CODER_COUNT];
1265            for bp in folder.bind_pairs.iter() {
1266                coder_used[bp.out_index as usize] = true;
1267            }
1268            let mut mci = 0;
1269            for (i, used) in coder_used[..folder.coders.len()].iter().enumerate() {
1270                if !used {
1271                    mci = i;
1272                    break;
1273                }
1274            }
1275            mci
1276        };
1277
1278        let id = folder.coders[main_coder_index].decompression_method_id();
1279        if id != SevenZMethod::ID_BCJ2 {
1280            return Err(Error::unsupported(format!("Unsupported method: {:?}", id)));
1281        }
1282
1283        let num_in_streams = folder.coders[main_coder_index].num_in_streams as usize;
1284        let mut inputs: Vec<Box<dyn Read>> = Vec::with_capacity(num_in_streams);
1285        let start_i = coder_to_stream_map[main_coder_index];
1286        for i in start_i..num_in_streams + start_i {
1287            inputs.push(Self::get_in_stream(
1288                folder,
1289                &sources,
1290                &coder_to_stream_map,
1291                password,
1292                i,
1293            )?);
1294        }
1295        let mut decoder: Box<dyn Read> = Box::new(crate::bcj2::BCJ2Reader::new(
1296            inputs,
1297            folder.get_unpack_size(),
1298        ));
1299        if folder.has_crc {
1300            decoder = Box::new(Crc32VerifyingReader::new(
1301                decoder,
1302                folder.get_unpack_size() as usize,
1303                folder.crc,
1304            ));
1305        }
1306        Ok((
1307            decoder,
1308            archive.pack_sizes[first_pack_stream_index] as usize,
1309        ))
1310    }
1311
1312    fn get_in_stream<'r>(
1313        folder: &Folder,
1314        sources: &[SeekableBoundedReader<ReaderPtr<R>>],
1315        coder_to_stream_map: &[usize],
1316        password: &[u8],
1317
1318        in_stream_index: usize,
1319    ) -> Result<Box<dyn Read + 'r>, Error>
1320    where
1321        R: 'r,
1322    {
1323        let index = folder
1324            .packed_streams
1325            .iter()
1326            .position(|&i| i == in_stream_index as u64);
1327        if let Some(index) = index {
1328            return Ok(Box::new(sources[index].clone()));
1329        }
1330
1331        let bp = folder
1332            .find_bind_pair_for_in_stream(in_stream_index)
1333            .ok_or_else(|| {
1334                Error::other(format!(
1335                    "Couldn't find bind pair for stream {}",
1336                    in_stream_index
1337                ))
1338            })?;
1339        let index = folder.bind_pairs[bp].out_index as usize;
1340
1341        Self::get_in_stream2(folder, sources, coder_to_stream_map, password, index)
1342    }
1343
1344    fn get_in_stream2<'r>(
1345        folder: &Folder,
1346        sources: &[SeekableBoundedReader<ReaderPtr<R>>],
1347        coder_to_stream_map: &[usize],
1348        password: &[u8],
1349        in_stream_index: usize,
1350    ) -> Result<Box<dyn Read + 'r>, Error>
1351    where
1352        R: 'r,
1353    {
1354        let coder = &folder.coders[in_stream_index];
1355        let start_index = coder_to_stream_map[in_stream_index];
1356        if start_index == usize::MAX {
1357            return Err(Error::other("in_stream_index out of range"));
1358        }
1359        let uncompressed_len = folder.unpack_sizes[in_stream_index] as usize;
1360        if coder.num_in_streams == 1 {
1361            let input =
1362                Self::get_in_stream(folder, sources, coder_to_stream_map, password, start_index)?;
1363
1364            let decoder = add_decoder(input, uncompressed_len, coder, password, MAX_MEM_LIMIT_KB)?;
1365            return Ok(Box::new(decoder));
1366        }
1367        Err(Error::unsupported(
1368            "Multi input stream coders are not yet supported",
1369        ))
1370    }
1371
1372    /// Takes a closure to decode each files in the archive.
1373    ///
1374    /// Attention about solid archive:
1375    /// When decoding a solid archive, the data to be decompressed depends on the data in front of it,
1376    /// you cannot simply skip the previous data and only decompress the data in the back.
1377    ///
1378    /// To speed up decompression, you can check this example [examples/forder_dec.rs](https://github.com/hasenbanck/sevenz-rust2/blob/main/examples/forder_dec.rs).
1379    /// And this example [mt_decompress.rs](https://github.com/hasenbanck/sevenz-rust2/blob/main/examples/mt_decompress.rs) if you want use multi-thread.
1380    pub fn for_each_entries<F: FnMut(&SevenZArchiveEntry, &mut dyn Read) -> Result<bool, Error>>(
1381        &mut self,
1382        mut each: F,
1383    ) -> Result<(), Error> {
1384        let folder_count = self.archive.folders.len();
1385        for folder_index in 0..folder_count {
1386            let forder_dec = BlockDecoder::new(
1387                folder_index,
1388                &self.archive,
1389                &self.password,
1390                &mut self.source,
1391            );
1392            forder_dec.for_each_entries(&mut each)?;
1393        }
1394        // decode empty files
1395        for file_index in 0..self.archive.files.len() {
1396            let folder_index = self.archive.stream_map.file_folder_index[file_index];
1397            if folder_index.is_none() {
1398                let file = &self.archive.files[file_index];
1399                let empty_reader: &mut dyn Read = &mut ([0u8; 0].as_slice());
1400                if !each(file, empty_reader)? {
1401                    return Ok(());
1402                }
1403            }
1404        }
1405        Ok(())
1406    }
1407
1408    /// Returns the data of a file with the given path inside the archive.
1409    ///
1410    /// # Notice
1411    /// This function is very inefficient when used with solid archives, since
1412    /// it needs to decode all data before the actual file.
1413    pub fn read_file(&mut self, name: &str) -> Result<Vec<u8>, Error> {
1414        let index_entry = *self.index.get(name).ok_or(Error::FileNotFound)?;
1415        let file = &self.archive.files[index_entry.file_index];
1416
1417        if !file.has_stream {
1418            return Ok(Vec::new());
1419        }
1420
1421        let folder_index = index_entry
1422            .folder_index
1423            .ok_or_else(|| Error::other("File has no associated folder"))?;
1424
1425        match self.archive.is_solid {
1426            true => {
1427                let mut result = None;
1428                let target_file_ptr = file as *const _;
1429
1430                BlockDecoder::new(
1431                    folder_index,
1432                    &self.archive,
1433                    &self.password,
1434                    &mut self.source,
1435                )
1436                .for_each_entries(&mut |archive_entry, reader| {
1437                    let mut data = Vec::with_capacity(archive_entry.size as usize);
1438                    reader.read_to_end(&mut data)?;
1439
1440                    if archive_entry as *const _ == target_file_ptr {
1441                        result = Some(data);
1442                        Ok(false)
1443                    } else {
1444                        Ok(true)
1445                    }
1446                })?;
1447
1448                result.ok_or(Error::FileNotFound)
1449            }
1450            false => {
1451                let pack_index =
1452                    self.archive.stream_map.folder_first_pack_stream_index[folder_index];
1453                let pack_offset = self.archive.stream_map.pack_stream_offsets[pack_index];
1454                let folder_offset = SIGNATURE_HEADER_SIZE + self.archive.pack_pos + pack_offset;
1455
1456                self.source.seek(SeekFrom::Start(folder_offset))?;
1457
1458                let (mut folder_reader, _size) = Self::build_decode_stack(
1459                    &mut self.source,
1460                    &self.archive,
1461                    folder_index,
1462                    &self.password,
1463                )?;
1464
1465                let mut data = Vec::with_capacity(file.size as usize);
1466                let mut decoder: Box<dyn Read> =
1467                    Box::new(BoundedReader::new(&mut folder_reader, file.size as usize));
1468
1469                if file.has_crc {
1470                    decoder = Box::new(Crc32VerifyingReader::new(
1471                        decoder,
1472                        file.size as usize,
1473                        file.crc,
1474                    ));
1475                }
1476
1477                decoder.read_to_end(&mut data)?;
1478
1479                Ok(data)
1480            }
1481        }
1482    }
1483}
1484
1485pub struct BlockDecoder<'a, R: Read + Seek> {
1486    folder_index: usize,
1487    archive: &'a Archive,
1488    password: &'a [u8],
1489    source: &'a mut R,
1490}
1491
1492impl<'a, R: Read + Seek> BlockDecoder<'a, R> {
1493    pub fn new(
1494        folder_index: usize,
1495        archive: &'a Archive,
1496        password: &'a [u8],
1497        source: &'a mut R,
1498    ) -> Self {
1499        Self {
1500            folder_index,
1501            archive,
1502            password,
1503            source,
1504        }
1505    }
1506
1507    pub fn entries(&self) -> &[SevenZArchiveEntry] {
1508        let start = self.archive.stream_map.folder_first_file_index[self.folder_index];
1509        let file_count = self.archive.folders[self.folder_index].num_unpack_sub_streams;
1510        &self.archive.files[start..(file_count + start)]
1511    }
1512
1513    pub fn entry_count(&self) -> usize {
1514        self.archive.folders[self.folder_index].num_unpack_sub_streams
1515    }
1516
1517    /// Takes a closure to decode each files in this block.
1518    ///
1519    /// When decoding files in a block, the data to be decompressed depends on the data in front of it,
1520    /// you cannot simply skip the previous data and only decompress the data in the back.
1521    ///
1522    /// To speed up decompression, you can check this example [examples/forder_dec.rs](https://github.com/hasenbanck/sevenz-rust2/blob/main/examples/forder_dec.rs).
1523    /// And this example [mt_decompress.rs](https://github.com/hasenbanck/sevenz-rust2/blob/main/examples/mt_decompress.rs) if you want use multi-thread.
1524    pub fn for_each_entries<F: FnMut(&SevenZArchiveEntry, &mut dyn Read) -> Result<bool, Error>>(
1525        self,
1526        each: &mut F,
1527    ) -> Result<bool, Error> {
1528        let Self {
1529            folder_index,
1530            archive,
1531            password,
1532            source,
1533        } = self;
1534        let (mut folder_reader, _size) =
1535            SevenZReader::build_decode_stack(source, archive, folder_index, password)?;
1536        let start = archive.stream_map.folder_first_file_index[folder_index];
1537        let file_count = archive.folders[folder_index].num_unpack_sub_streams;
1538
1539        for file_index in start..(file_count + start) {
1540            let file = &archive.files[file_index];
1541            if file.has_stream && file.size > 0 {
1542                let mut decoder: Box<dyn Read> =
1543                    Box::new(BoundedReader::new(&mut folder_reader, file.size as usize));
1544                if file.has_crc {
1545                    decoder = Box::new(Crc32VerifyingReader::new(
1546                        decoder,
1547                        file.size as usize,
1548                        file.crc,
1549                    ));
1550                }
1551                if !each(file, &mut decoder)
1552                    .map_err(|e| e.maybe_bad_password(!self.password.is_empty()))?
1553                {
1554                    return Ok(false);
1555                }
1556            } else {
1557                let empty_reader: &mut dyn Read = &mut ([0u8; 0].as_slice());
1558                if !each(file, empty_reader)? {
1559                    return Ok(false);
1560                }
1561            }
1562        }
1563        Ok(true)
1564    }
1565}
1566
1567#[derive(Debug, Copy)]
1568struct ReaderPtr<R> {
1569    reader: *mut R,
1570}
1571
1572impl<R> Clone for ReaderPtr<R> {
1573    fn clone(&self) -> Self {
1574        Self {
1575            reader: self.reader,
1576        }
1577    }
1578}
1579
1580impl<R> ReaderPtr<R> {
1581    fn new(reader: &mut R) -> Self {
1582        Self {
1583            reader: reader as *mut R,
1584        }
1585    }
1586}
1587
1588impl<R: Read> Read for ReaderPtr<R> {
1589    fn read(&mut self, buf: &mut [u8]) -> std::io::Result<usize> {
1590        unsafe { (*self.reader).read(buf) }
1591    }
1592}
1593
1594impl<R: Seek> Seek for ReaderPtr<R> {
1595    fn seek(&mut self, pos: SeekFrom) -> std::io::Result<u64> {
1596        unsafe { (*self.reader).seek(pos) }
1597    }
1598}