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zrip_encode/
lib.rs

1#![cfg_attr(not(feature = "std"), no_std)]
2#![cfg_attr(feature = "nightly", feature(optimize_attribute))]
3#![cfg_attr(feature = "paranoid", forbid(unsafe_code))]
4
5#[cfg(feature = "alloc")]
6extern crate alloc;
7
8pub(crate) mod block_encoder;
9#[cfg(feature = "std")]
10pub mod context;
11pub(crate) mod dfast;
12pub(crate) mod fast;
13#[cfg(feature = "ldm")]
14pub(crate) mod ldm;
15pub(crate) mod primitives;
16pub(crate) mod sequences;
17pub mod strategy;
18#[cfg(feature = "std")]
19pub mod streaming;
20
21#[cfg(feature = "alloc")]
22use alloc::vec;
23#[cfg(feature = "alloc")]
24use alloc::vec::Vec;
25
26use crate::strategy::Strategy;
27use zrip_core::error::CompressError;
28use zrip_core::frame::{MAX_BLOCK_SIZE, ZSTD_MAGIC};
29use zrip_core::xxhash::xxh64;
30
31pub(crate) fn write_frame_header(output: &mut Vec<u8>, content_size: usize, dict_id: Option<u32>) {
32    output.extend_from_slice(&ZSTD_MAGIC.to_le_bytes());
33
34    let fcs_size = if content_size <= 255 {
35        1
36    } else if content_size <= 0xFFFF + 256 {
37        2
38    } else if content_size <= 0xFFFF_FFFF {
39        4
40    } else {
41        8
42    };
43    let fcs_flag: u8 = match fcs_size {
44        1 => 0,
45        2 => 1,
46        4 => 2,
47        _ => 3,
48    };
49
50    let dict_id_flag: u8 = match dict_id {
51        None => 0,
52        Some(id) if id <= 0xFF => 1,
53        Some(id) if id <= 0xFFFF => 2,
54        Some(_) => 3,
55    };
56
57    let descriptor = 0x20 | 0x04 | (fcs_flag << 6) | dict_id_flag;
58    output.push(descriptor);
59
60    match dict_id {
61        Some(id) if id <= 0xFF => output.push(id as u8),
62        Some(id) if id <= 0xFFFF => output.extend_from_slice(&(id as u16).to_le_bytes()),
63        Some(id) => output.extend_from_slice(&id.to_le_bytes()),
64        None => {}
65    }
66
67    match fcs_size {
68        1 => output.push(content_size as u8),
69        2 => {
70            let v = (content_size - 256) as u16;
71            output.extend_from_slice(&v.to_le_bytes());
72        }
73        4 => output.extend_from_slice(&(content_size as u32).to_le_bytes()),
74        _ => output.extend_from_slice(&(content_size as u64).to_le_bytes()),
75    }
76}
77
78pub(crate) fn block_looks_incompressible(data: &[u8]) -> bool {
79    const SAMPLE: usize = 1024;
80    const DISTINCT_THRESHOLD: u32 = 200;
81    const MAX_FREQ_DENOM: u32 = 24;
82    if data.len() < SAMPLE {
83        return false;
84    }
85    let mut counts = [0u16; 256];
86    for &b in &data[..SAMPLE] {
87        counts[b as usize] += 1;
88    }
89    let mut distinct: u32 = 0;
90    let mut max_freq: u16 = 0;
91    for &c in &counts {
92        distinct += (c > 0) as u32;
93        max_freq = max_freq.max(c);
94    }
95    distinct >= DISTINCT_THRESHOLD && (max_freq as u32) <= SAMPLE as u32 / MAX_FREQ_DENOM
96}
97
98pub(crate) fn clamp_params_to_src_size(params: &mut strategy::LevelParams, src_len: usize) {
99    params.hash_log = params
100        .hash_log
101        .clamp(strategy::HASH_LOG_MIN, strategy::HASH_LOG_MAX);
102    params.chain_log = params
103        .chain_log
104        .clamp(strategy::HASH_LOG_MIN, strategy::HASH_LOG_MAX);
105    if src_len >= 2 {
106        let src_log = 32 - ((src_len as u32) - 1).leading_zeros();
107        params.hash_log = params.hash_log.min(src_log).max(strategy::HASH_LOG_MIN);
108        params.chain_log = params.chain_log.min(src_log).max(strategy::HASH_LOG_MIN);
109        params.window_log = params.window_log.min(src_log);
110    }
111}
112
113pub fn compress_with_params(
114    input: &[u8],
115    params: &strategy::LevelParams,
116) -> Result<Vec<u8>, CompressError> {
117    let mut params = *params;
118    clamp_params_to_src_size(&mut params, input.len());
119    compress_inner(input, &params)
120}
121
122pub fn compress(input: &[u8], level: i32) -> Result<Vec<u8>, CompressError> {
123    let params = strategy::level_params_for_size(level, input.len())
124        .ok_or(CompressError::InvalidLevel(level))?;
125    compress_inner(input, &params)
126}
127
128pub fn compress_opts(
129    input: &[u8],
130    level: i32,
131    opts: &strategy::Options,
132) -> Result<Vec<u8>, CompressError> {
133    let mut params = strategy::level_params_for_size(level, input.len())
134        .ok_or(CompressError::InvalidLevel(level))?;
135    strategy::apply_options(&mut params, opts);
136    compress_inner(input, &params)
137}
138
139#[allow(clippy::unnecessary_wraps)]
140fn compress_inner(input: &[u8], params: &strategy::LevelParams) -> Result<Vec<u8>, CompressError> {
141    let mut output = Vec::with_capacity(input.len() + 32);
142    compress_frame(input, params, &mut output);
143    Ok(output)
144}
145
146fn compress_frame(input: &[u8], params: &strategy::LevelParams, output: &mut Vec<u8>) {
147    write_frame_header(output, input.len(), None);
148
149    if input.is_empty() {
150        block_encoder::encode_raw_block(&[], true, output);
151    } else {
152        let mut rep_offsets = [1u32, 4, 8];
153        let mut offset = 0;
154        let mut sequences = Vec::with_capacity(MAX_BLOCK_SIZE / 8);
155        let mut workspace = block_encoder::BlockEncodeWorkspace::new();
156
157        #[cfg(feature = "ldm")]
158        let mut ldm_state = params.ldm_params.as_ref().map(ldm::LdmState::new);
159
160        match params.strategy {
161            Strategy::Fast => {
162                let hash_size = 1usize << params.hash_log;
163                let mut hash_table = vec![0u32; hash_size];
164                while offset < input.len() {
165                    let chunk_size = (input.len() - offset).min(MAX_BLOCK_SIZE);
166                    let block_end = offset + chunk_size;
167                    let is_last = block_end >= input.len();
168
169                    if block_looks_incompressible(&input[offset..block_end]) {
170                        block_encoder::encode_raw_block(&input[offset..block_end], is_last, output);
171                    } else {
172                        #[cfg(feature = "ldm")]
173                        let used_ldm = if let Some(ref mut ldm) = ldm_state {
174                            let mut empty = Vec::new();
175                            ldm.compress_block(
176                                input,
177                                offset,
178                                block_end,
179                                params,
180                                &rep_offsets,
181                                &mut hash_table,
182                                &mut empty,
183                                &mut sequences,
184                            );
185                            true
186                        } else {
187                            false
188                        };
189                        #[cfg(not(feature = "ldm"))]
190                        let used_ldm = false;
191
192                        if !used_ldm {
193                            fast::compress_fast_block(
194                                input,
195                                offset,
196                                block_end,
197                                params,
198                                &rep_offsets,
199                                &mut hash_table,
200                                &mut sequences,
201                            );
202                        }
203                        if params.force_raw_literals {
204                            block_encoder::encode_compressed_block_raw(
205                                &input[offset..block_end],
206                                &sequences,
207                                &mut rep_offsets,
208                                is_last,
209                                output,
210                                &mut workspace,
211                            );
212                        } else {
213                            block_encoder::encode_compressed_block(
214                                &input[offset..block_end],
215                                &sequences,
216                                &mut rep_offsets,
217                                is_last,
218                                output,
219                                &mut workspace,
220                            );
221                        }
222                    }
223                    offset = block_end;
224                }
225            }
226            Strategy::DFast => {
227                let short_size = 1usize << params.chain_log;
228                let long_size = 1usize << params.hash_log;
229                let mut hash_short = vec![0u32; short_size];
230                let mut hash_long = vec![0u32; long_size];
231                while offset < input.len() {
232                    let chunk_size = (input.len() - offset).min(MAX_BLOCK_SIZE);
233                    let block_end = offset + chunk_size;
234                    let is_last = block_end >= input.len();
235
236                    if block_looks_incompressible(&input[offset..block_end]) {
237                        block_encoder::encode_raw_block(&input[offset..block_end], is_last, output);
238                    } else {
239                        #[cfg(feature = "ldm")]
240                        let used_ldm = if let Some(ref mut ldm) = ldm_state {
241                            ldm.compress_block(
242                                input,
243                                offset,
244                                block_end,
245                                params,
246                                &rep_offsets,
247                                &mut hash_short,
248                                &mut hash_long,
249                                &mut sequences,
250                            );
251                            true
252                        } else {
253                            false
254                        };
255                        #[cfg(not(feature = "ldm"))]
256                        let used_ldm = false;
257
258                        if !used_ldm {
259                            dfast::compress_dfast_block(
260                                input,
261                                offset,
262                                block_end,
263                                params,
264                                &rep_offsets,
265                                &mut hash_short,
266                                &mut hash_long,
267                                &mut sequences,
268                            );
269                        }
270                        block_encoder::encode_compressed_block(
271                            &input[offset..block_end],
272                            &sequences,
273                            &mut rep_offsets,
274                            is_last,
275                            output,
276                            &mut workspace,
277                        );
278                    }
279                    offset = block_end;
280                }
281            }
282        }
283    }
284
285    let hash = xxh64(input, 0);
286    let checksum = (hash & 0xFFFF_FFFF) as u32;
287    output.extend_from_slice(&checksum.to_le_bytes());
288}
289
290pub fn compress_with_dict(
291    input: &[u8],
292    level: i32,
293    dict: &zrip_core::dict::Dictionary,
294) -> Result<Vec<u8>, CompressError> {
295    let total_window = dict.content().len() + input.len();
296    let params = strategy::level_params_for_size(level, total_window)
297        .ok_or(CompressError::InvalidLevel(level))?;
298
299    let mut output = Vec::with_capacity(input.len() + 32);
300    write_frame_header(&mut output, input.len(), Some(dict.id()));
301
302    if input.is_empty() {
303        block_encoder::encode_raw_block(&[], true, &mut output);
304    } else {
305        let prefix = dict.content();
306        let mut rep_offsets = *dict.rep_offsets();
307        let mut workspace = block_encoder::BlockEncodeWorkspace::new();
308
309        workspace.prev_ll = dict
310            .ll_table()
311            .map(|(dt, al)| block_encoder::FseEncodeTable::from_decode_table(dt, al, 35));
312        workspace.prev_of = dict
313            .of_table()
314            .map(|(dt, al)| block_encoder::FseEncodeTable::from_decode_table(dt, al, 31));
315        workspace.prev_ml = dict
316            .ml_table()
317            .map(|(dt, al)| block_encoder::FseEncodeTable::from_decode_table(dt, al, 52));
318        workspace.prev_huffman = dict.huf_table().and_then(|(dt, tl)| {
319            zrip_core::huffman::encode::HuffmanEncodeTable::from_decode_table(dt, tl)
320        });
321
322        if input.len() <= MAX_BLOCK_SIZE {
323            let sequences = match params.strategy {
324                Strategy::Fast => {
325                    fast::compress_fast_with_prefix(input, &params, &rep_offsets, prefix)
326                }
327                Strategy::DFast => {
328                    dfast::compress_dfast_with_prefix(input, &params, &rep_offsets, prefix)
329                }
330            };
331            if params.force_raw_literals {
332                block_encoder::encode_compressed_block_raw(
333                    input,
334                    &sequences,
335                    &mut rep_offsets,
336                    true,
337                    &mut output,
338                    &mut workspace,
339                );
340            } else {
341                block_encoder::encode_compressed_block(
342                    input,
343                    &sequences,
344                    &mut rep_offsets,
345                    true,
346                    &mut output,
347                    &mut workspace,
348                );
349            }
350        } else {
351            let mut combined = Vec::with_capacity(prefix.len() + input.len());
352            combined.extend_from_slice(prefix);
353            combined.extend_from_slice(input);
354            let plen = prefix.len();
355            let hash_size = 1usize << params.hash_log;
356            let mut sequences = Vec::new();
357
358            match params.strategy {
359                Strategy::Fast => {
360                    let mut hash_table = vec![0u32; hash_size];
361                    fast::prefill_hash_table(&combined, plen, params.hash_log, &mut hash_table);
362                    let mut offset = 0;
363                    while offset < input.len() {
364                        let chunk_size = (input.len() - offset).min(MAX_BLOCK_SIZE);
365                        let is_last = offset + chunk_size >= input.len();
366                        fast::compress_fast_block(
367                            &combined,
368                            plen + offset,
369                            plen + offset + chunk_size,
370                            &params,
371                            &rep_offsets,
372                            &mut hash_table,
373                            &mut sequences,
374                        );
375                        if params.force_raw_literals {
376                            block_encoder::encode_compressed_block_raw(
377                                &input[offset..offset + chunk_size],
378                                &sequences,
379                                &mut rep_offsets,
380                                is_last,
381                                &mut output,
382                                &mut workspace,
383                            );
384                        } else {
385                            block_encoder::encode_compressed_block(
386                                &input[offset..offset + chunk_size],
387                                &sequences,
388                                &mut rep_offsets,
389                                is_last,
390                                &mut output,
391                                &mut workspace,
392                            );
393                        }
394                        offset += chunk_size;
395                    }
396                }
397                Strategy::DFast => {
398                    let short_size = 1usize << params.chain_log;
399                    let long_size = 1usize << params.hash_log;
400                    let mut hash_short = vec![0u32; short_size];
401                    let mut hash_long = vec![0u32; long_size];
402                    dfast::prefill_hash_tables(
403                        &combined,
404                        plen,
405                        params.hash_log,
406                        params.chain_log,
407                        params.min_match,
408                        &mut hash_short,
409                        &mut hash_long,
410                    );
411                    let mut offset = 0;
412                    while offset < input.len() {
413                        let chunk_size = (input.len() - offset).min(MAX_BLOCK_SIZE);
414                        let is_last = offset + chunk_size >= input.len();
415                        dfast::compress_dfast_block(
416                            &combined,
417                            plen + offset,
418                            plen + offset + chunk_size,
419                            &params,
420                            &rep_offsets,
421                            &mut hash_short,
422                            &mut hash_long,
423                            &mut sequences,
424                        );
425                        block_encoder::encode_compressed_block(
426                            &input[offset..offset + chunk_size],
427                            &sequences,
428                            &mut rep_offsets,
429                            is_last,
430                            &mut output,
431                            &mut workspace,
432                        );
433                        offset += chunk_size;
434                    }
435                }
436            }
437        }
438    }
439
440    let hash = xxh64(input, 0);
441    let checksum = (hash & 0xFFFF_FFFF) as u32;
442    output.extend_from_slice(&checksum.to_le_bytes());
443
444    Ok(output)
445}
446
447pub fn compress_into(input: &[u8], output: &mut [u8], level: i32) -> Result<usize, CompressError> {
448    let params = strategy::level_params_for_size(level, input.len())
449        .ok_or(CompressError::InvalidLevel(level))?;
450    let mut buf = Vec::with_capacity(output.len());
451    compress_frame(input, &params, &mut buf);
452    if buf.len() > output.len() {
453        return Err(CompressError::OutputTooSmall);
454    }
455    output[..buf.len()].copy_from_slice(&buf);
456    Ok(buf.len())
457}
458
459#[cfg(all(test, miri, not(feature = "paranoid")))]
460mod ub_tests {
461    use super::*;
462
463    #[test]
464    fn public_compress_with_params_accepts_zero_hash_log() {
465        // Issue: LevelParams is public and compress_with_params only clamps log
466        // values downward for the input size. A caller can pass hash_log = 0,
467        // which allocates a one-entry hash table, while release-mode hash shifts
468        // produce indexes derived from the input bytes. The first hash_load then
469        // reaches get_unchecked with an out-of-bounds index.
470        let mut params = strategy::level_params(1).unwrap();
471        params.hash_log = 0;
472        params.chain_log = 0;
473        let _ = compress_with_params(b"abcdefghijklmnop", &params);
474    }
475}