parallel_processor/buckets/writers/
compressed_binary_writer.rs1use crate::buckets::writers::{finalize_bucket_file, initialize_bucket_file, THREADS_BUSY_WRITING};
2use crate::buckets::{CheckpointData, LockFreeBucket};
3use crate::memory_data_size::MemoryDataSize;
4use crate::memory_fs::file::flush::GlobalFlush;
5use crate::memory_fs::file::internal::MemoryFileMode;
6use crate::memory_fs::file::reader::FileRangeReference;
7use crate::memory_fs::file::writer::FileWriter;
8use crate::utils::memory_size_to_log2;
9use lz4::{BlockMode, BlockSize, ContentChecksum};
10use mt_debug_counters::counter::AtomicCounterGuardSum;
11use parking_lot::Mutex;
12use replace_with::replace_with_or_abort;
13use serde::Serialize;
14use std::io::Write;
15use std::path::{Path, PathBuf};
16
17use super::BucketHeader;
18
19pub const COMPRESSED_BUCKET_MAGIC: &[u8; 16] = b"CPLZ4_INTR_BKT_M";
20
21#[derive(Clone)]
22pub struct CompressedCheckpointSize(u8);
23impl CompressedCheckpointSize {
24 pub const fn new_from_size(size: MemoryDataSize) -> Self {
25 Self(memory_size_to_log2(size))
26 }
27 pub const fn new_from_log2(val: u8) -> Self {
28 Self(val)
29 }
30}
31
32fn create_lz4_stream<W: Write>(writer: W, level: CompressionLevelInfo) -> lz4::Encoder<W> {
33 let (queue_occupation, queue_size) = GlobalFlush::global_queue_occupation();
34
35 let level = if queue_size < 2 * queue_occupation {
36 level.slow_disk
37 } else {
38 level.fast_disk
39 };
40
41 lz4::EncoderBuilder::new()
42 .level(level)
43 .checksum(ContentChecksum::NoChecksum)
44 .block_mode(BlockMode::Linked)
45 .block_size(BlockSize::Max64KB)
46 .build(writer)
47 .unwrap()
48}
49
50struct CompressedBinaryWriterInternal {
51 writer: lz4::Encoder<FileWriter>,
52 checkpoint_max_size: u64,
53 checkpoints: Vec<CheckpointData>,
54 current_chunk_size: u64,
55 level: CompressionLevelInfo,
56 data_format_info: Vec<u8>,
57
58 checkpoint_data: Option<Vec<u8>>,
59}
60
61pub struct CompressedBinaryWriter {
62 inner: Mutex<CompressedBinaryWriterInternal>,
63 path: PathBuf,
64}
65unsafe impl Send for CompressedBinaryWriter {}
66
67impl CompressedBinaryWriterInternal {
68 fn create_new_block(&mut self, passtrough_range: Option<FileRangeReference>) {
69 replace_with_or_abort(&mut self.writer, |writer| {
70 let (file_buf, res) = writer.finish();
71 res.unwrap();
72
73 let checkpoint_pos = if let Some(passtrough_range) = passtrough_range {
74 self.checkpoints.push(CheckpointData {
76 offset: file_buf.len() as u64,
77 data: self.checkpoint_data.clone(),
78 });
79
80 unsafe {
81 passtrough_range.copy_to_unsync(&file_buf);
82 }
83
84 file_buf.len()
85 } else {
86 file_buf.len()
87 };
88
89 self.checkpoints.push(CheckpointData {
90 offset: checkpoint_pos as u64,
91 data: self.checkpoint_data.clone(),
92 });
93
94 create_lz4_stream(file_buf, self.level)
95 });
96 self.current_chunk_size = 0;
97 }
98}
99
100impl CompressedBinaryWriter {
101 pub const CHECKPOINT_SIZE_UNLIMITED: CompressedCheckpointSize =
102 CompressedCheckpointSize::new_from_log2(62);
103}
104
105#[derive(Copy, Clone)]
106pub struct CompressionLevelInfo {
107 pub fast_disk: u32,
108 pub slow_disk: u32,
109}
110
111impl LockFreeBucket for CompressedBinaryWriter {
112 type InitData = (
113 MemoryFileMode,
114 CompressedCheckpointSize,
115 CompressionLevelInfo,
116 );
117
118 fn new_serialized_data_format(
119 path_prefix: &Path,
120 (file_mode, checkpoint_max_size, compression_level): &(
121 MemoryFileMode,
122 CompressedCheckpointSize,
123 CompressionLevelInfo,
124 ),
125 index: usize,
126 data_format_info: &[u8],
127 ) -> Self {
128 assert!(
129 data_format_info.len() <= BucketHeader::MAX_DATA_FORMAT_INFO_SIZE,
130 "Serialized data format info is too big, this is a bug"
131 );
132
133 let path = path_prefix.parent().unwrap().join(format!(
134 "{}.{}",
135 path_prefix.file_name().unwrap().to_str().unwrap(),
136 index
137 ));
138
139 let mut file = FileWriter::create(&path, *file_mode);
140
141 let first_checkpoint = initialize_bucket_file(&mut file);
142
143 let writer = create_lz4_stream(file, *compression_level);
144
145 Self {
146 inner: Mutex::new(CompressedBinaryWriterInternal {
147 writer,
148 checkpoint_max_size: (1 << checkpoint_max_size.0),
149 checkpoints: vec![CheckpointData {
150 offset: first_checkpoint,
151 data: None,
152 }],
153 current_chunk_size: 0,
154 level: *compression_level,
155 data_format_info: data_format_info.to_vec(),
156 checkpoint_data: None,
157 }),
158 path,
159 }
160 }
161
162 fn set_checkpoint_data<T: Serialize>(
163 &self,
164 data: Option<&T>,
165 passtrough_range: Option<FileRangeReference>,
166 ) {
167 let mut inner = self.inner.lock();
168 inner.checkpoint_data = data.map(|data| bincode::serialize(data).unwrap());
169 inner.create_new_block(passtrough_range);
171 }
172
173 fn write_data(&self, bytes: &[u8]) {
174 let stat_raii = AtomicCounterGuardSum::new(&THREADS_BUSY_WRITING, 1);
175 let mut inner = self.inner.lock();
177
178 inner.writer.write_all(bytes).unwrap();
179 inner.current_chunk_size += bytes.len() as u64;
180 if inner.current_chunk_size > inner.checkpoint_max_size {
181 inner.create_new_block(None);
182 }
183
184 drop(stat_raii);
185 }
186
187 fn get_path(&self) -> PathBuf {
188 self.path.clone()
189 }
190 fn finalize(self) {
191 let mut inner = self.inner.into_inner();
192
193 inner.writer.flush().unwrap();
194 let (file, res) = inner.writer.finish();
195 res.unwrap();
196
197 finalize_bucket_file(
198 file,
199 COMPRESSED_BUCKET_MAGIC,
200 inner.checkpoints,
201 &inner.data_format_info,
202 );
203 }
204}