annotate rust/hg-core/src/revlog/revlog.rs @ 47380:fad504cfc94b

rust: Use a maintained crate for SHA-1 hashing https://crates.io/crates/rust-crypto hasn’t been updated in 5 years. This doesn’t neccesarily mean there’s anything wrong with it, but if something comes up it’s preferable to rely on libraries that have active maintainers. Use https://crates.io/crates/sha-1 from https://github.com/RustCrypto instead Differential Revision: https://phab.mercurial-scm.org/D10835
author Simon Sapin <simon.sapin@octobus.net>
date Wed, 02 Jun 2021 10:00:50 +0200
parents e8ae91b1a63d
children 8c29af0f6d6e
Ignore whitespace changes - Everywhere: Within whitespace: At end of lines:
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1 use std::borrow::Cow;
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2 use std::io::Read;
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3 use std::ops::Deref;
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4 use std::path::Path;
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5
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6 use byteorder::{BigEndian, ByteOrder};
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7 use flate2::read::ZlibDecoder;
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8 use micro_timer::timed;
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9 use sha1::{Digest, Sha1};
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10 use zstd;
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11
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12 use super::index::Index;
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13 use super::node::{NodePrefix, NODE_BYTES_LENGTH, NULL_NODE};
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14 use super::nodemap;
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15 use super::nodemap::{NodeMap, NodeMapError};
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16 use super::nodemap_docket::NodeMapDocket;
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17 use super::patch;
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18 use crate::errors::HgError;
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19 use crate::repo::Repo;
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20 use crate::revlog::Revision;
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21
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22 #[derive(derive_more::From)]
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23 pub enum RevlogError {
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24 InvalidRevision,
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25 /// Working directory is not supported
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26 WDirUnsupported,
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27 /// Found more than one entry whose ID match the requested prefix
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28 AmbiguousPrefix,
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29 #[from]
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30 Other(HgError),
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31 }
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32
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33 impl From<NodeMapError> for RevlogError {
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34 fn from(error: NodeMapError) -> Self {
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35 match error {
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36 NodeMapError::MultipleResults => RevlogError::AmbiguousPrefix,
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37 NodeMapError::RevisionNotInIndex(_) => RevlogError::corrupted(),
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38 }
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39 }
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40 }
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41
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42 impl RevlogError {
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43 fn corrupted() -> Self {
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44 RevlogError::Other(HgError::corrupted("corrupted revlog"))
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45 }
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46 }
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47
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48 /// Read only implementation of revlog.
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49 pub struct Revlog {
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50 /// When index and data are not interleaved: bytes of the revlog index.
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51 /// When index and data are interleaved: bytes of the revlog index and
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52 /// data.
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53 pub(crate) index: Index,
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54 /// When index and data are not interleaved: bytes of the revlog data
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55 data_bytes: Option<Box<dyn Deref<Target = [u8]> + Send>>,
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56 /// When present on disk: the persistent nodemap for this revlog
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57 nodemap: Option<nodemap::NodeTree>,
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58 }
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59
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60 impl Revlog {
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61 /// Open a revlog index file.
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62 ///
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63 /// It will also open the associated data file if index and data are not
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64 /// interleaved.
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65 #[timed]
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66 pub fn open(
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67 repo: &Repo,
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68 index_path: impl AsRef<Path>,
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69 data_path: Option<&Path>,
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70 ) -> Result<Self, RevlogError> {
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71 let index_path = index_path.as_ref();
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72 let index_mmap = repo.store_vfs().mmap_open(&index_path)?;
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73
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74 let version = get_version(&index_mmap);
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75 if version != 1 {
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76 // A proper new version should have had a repo/store requirement.
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77 return Err(RevlogError::corrupted());
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78 }
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79
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80 let index = Index::new(Box::new(index_mmap))?;
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81
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82 let default_data_path = index_path.with_extension("d");
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83
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84 // type annotation required
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85 // won't recognize Mmap as Deref<Target = [u8]>
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86 let data_bytes: Option<Box<dyn Deref<Target = [u8]> + Send>> =
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87 if index.is_inline() {
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88 None
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89 } else {
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90 let data_path = data_path.unwrap_or(&default_data_path);
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91 let data_mmap = repo.store_vfs().mmap_open(data_path)?;
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92 Some(Box::new(data_mmap))
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93 };
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94
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95 let nodemap = NodeMapDocket::read_from_file(repo, index_path)?.map(
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96 |(docket, data)| {
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97 nodemap::NodeTree::load_bytes(
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98 Box::new(data),
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99 docket.data_length,
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100 )
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101 },
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102 );
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103
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104 Ok(Revlog {
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105 index,
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106 data_bytes,
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107 nodemap,
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108 })
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109 }
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110
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111 /// Return number of entries of the `Revlog`.
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112 pub fn len(&self) -> usize {
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113 self.index.len()
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114 }
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115
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116 /// Returns `true` if the `Revlog` has zero `entries`.
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117 pub fn is_empty(&self) -> bool {
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118 self.index.is_empty()
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119 }
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120
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121 /// Return the full data associated to a node.
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122 #[timed]
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123 pub fn get_node_rev(
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124 &self,
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125 node: NodePrefix,
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126 ) -> Result<Revision, RevlogError> {
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127 if let Some(nodemap) = &self.nodemap {
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128 return nodemap
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129 .find_bin(&self.index, node)?
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130 .ok_or(RevlogError::InvalidRevision);
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131 }
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132
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133 // Fallback to linear scan when a persistent nodemap is not present.
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134 // This happens when the persistent-nodemap experimental feature is not
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135 // enabled, or for small revlogs.
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136 //
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137 // TODO: consider building a non-persistent nodemap in memory to
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138 // optimize these cases.
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139 let mut found_by_prefix = None;
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140 for rev in (0..self.len() as Revision).rev() {
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141 let index_entry =
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142 self.index.get_entry(rev).ok_or(HgError::corrupted(
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143 "revlog references a revision not in the index",
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144 ))?;
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145 if node == *index_entry.hash() {
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146 return Ok(rev);
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147 }
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148 if node.is_prefix_of(index_entry.hash()) {
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149 if found_by_prefix.is_some() {
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150 return Err(RevlogError::AmbiguousPrefix);
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151 }
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152 found_by_prefix = Some(rev)
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153 }
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154 }
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155 found_by_prefix.ok_or(RevlogError::InvalidRevision)
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156 }
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157
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158 /// Returns whether the given revision exists in this revlog.
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159 pub fn has_rev(&self, rev: Revision) -> bool {
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160 self.index.get_entry(rev).is_some()
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161 }
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162
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163 /// Return the full data associated to a revision.
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164 ///
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165 /// All entries required to build the final data out of deltas will be
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166 /// retrieved as needed, and the deltas will be applied to the inital
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167 /// snapshot to rebuild the final data.
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168 #[timed]
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169 pub fn get_rev_data(&self, rev: Revision) -> Result<Vec<u8>, RevlogError> {
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170 // Todo return -> Cow
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171 let mut entry = self.get_entry(rev)?;
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172 let mut delta_chain = vec![];
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173 while let Some(base_rev) = entry.base_rev {
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174 delta_chain.push(entry);
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175 entry = self
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176 .get_entry(base_rev)
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177 .map_err(|_| RevlogError::corrupted())?;
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178 }
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179
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180 // TODO do not look twice in the index
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181 let index_entry = self
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182 .index
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183 .get_entry(rev)
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184 .ok_or(RevlogError::InvalidRevision)?;
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185
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186 let data: Vec<u8> = if delta_chain.is_empty() {
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187 entry.data()?.into()
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188 } else {
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189 Revlog::build_data_from_deltas(entry, &delta_chain)?
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190 };
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191
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192 if self.check_hash(
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193 index_entry.p1(),
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194 index_entry.p2(),
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195 index_entry.hash().as_bytes(),
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196 &data,
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197 ) {
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198 Ok(data)
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199 } else {
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200 Err(RevlogError::corrupted())
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201 }
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202 }
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203
45531
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204 /// Check the hash of some given data against the recorded hash.
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205 pub fn check_hash(
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206 &self,
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207 p1: Revision,
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208 p2: Revision,
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diff changeset
209 expected: &[u8],
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210 data: &[u8],
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211 ) -> bool {
45601
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diff changeset
212 let e1 = self.index.get_entry(p1);
45531
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diff changeset
213 let h1 = match e1 {
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214 Some(ref entry) => entry.hash(),
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diff changeset
215 None => &NULL_NODE,
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diff changeset
216 };
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diff changeset
217 let e2 = self.index.get_entry(p2);
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diff changeset
218 let h2 = match e2 {
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diff changeset
219 Some(ref entry) => entry.hash(),
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220 None => &NULL_NODE,
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221 };
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diff changeset
222
47380
fad504cfc94b rust: Use a maintained crate for SHA-1 hashing
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diff changeset
223 &hash(data, h1.as_bytes(), h2.as_bytes()) == expected
45531
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224 }
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225
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226 /// Build the full data of a revision out its snapshot
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227 /// and its deltas.
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diff changeset
228 #[timed]
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diff changeset
229 fn build_data_from_deltas(
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diff changeset
230 snapshot: RevlogEntry,
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diff changeset
231 deltas: &[RevlogEntry],
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diff changeset
232 ) -> Result<Vec<u8>, RevlogError> {
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diff changeset
233 let snapshot = snapshot.data()?;
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diff changeset
234 let deltas = deltas
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235 .iter()
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diff changeset
236 .rev()
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diff changeset
237 .map(RevlogEntry::data)
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diff changeset
238 .collect::<Result<Vec<Cow<'_, [u8]>>, RevlogError>>()?;
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diff changeset
239 let patches: Vec<_> =
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diff changeset
240 deltas.iter().map(|d| patch::PatchList::new(d)).collect();
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diff changeset
241 let patch = patch::fold_patch_lists(&patches);
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diff changeset
242 Ok(patch.apply(&snapshot))
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diff changeset
243 }
26c53ee51c68 hg-core: Add a limited read only `revlog` implementation
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parents:
diff changeset
244
26c53ee51c68 hg-core: Add a limited read only `revlog` implementation
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245 /// Return the revlog data.
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246 fn data(&self) -> &[u8] {
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247 match self.data_bytes {
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248 Some(ref data_bytes) => &data_bytes,
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249 None => panic!(
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250 "forgot to load the data or trying to access inline data"
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251 ),
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252 }
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253 }
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254
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255 /// Get an entry of the revlog.
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256 fn get_entry(&self, rev: Revision) -> Result<RevlogEntry, RevlogError> {
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257 let index_entry = self
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258 .index
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259 .get_entry(rev)
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260 .ok_or(RevlogError::InvalidRevision)?;
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261 let start = index_entry.offset();
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262 let end = start + index_entry.compressed_len();
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263 let data = if self.index.is_inline() {
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264 self.index.data(start, end)
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265 } else {
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266 &self.data()[start..end]
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267 };
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268 let entry = RevlogEntry {
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269 rev,
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270 bytes: data,
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271 compressed_len: index_entry.compressed_len(),
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272 uncompressed_len: index_entry.uncompressed_len(),
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273 base_rev: if index_entry.base_revision() == rev {
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274 None
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275 } else {
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276 Some(index_entry.base_revision())
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277 },
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278 };
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279 Ok(entry)
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280 }
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281 }
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282
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283 /// The revlog entry's bytes and the necessary informations to extract
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284 /// the entry's data.
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285 #[derive(Debug)]
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286 pub struct RevlogEntry<'a> {
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287 rev: Revision,
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288 bytes: &'a [u8],
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289 compressed_len: usize,
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290 uncompressed_len: usize,
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291 base_rev: Option<Revision>,
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292 }
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293
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294 impl<'a> RevlogEntry<'a> {
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295 /// Extract the data contained in the entry.
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296 pub fn data(&self) -> Result<Cow<'_, [u8]>, RevlogError> {
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297 if self.bytes.is_empty() {
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298 return Ok(Cow::Borrowed(&[]));
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299 }
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300 match self.bytes[0] {
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301 // Revision data is the entirety of the entry, including this
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302 // header.
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303 b'\0' => Ok(Cow::Borrowed(self.bytes)),
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304 // Raw revision data follows.
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305 b'u' => Ok(Cow::Borrowed(&self.bytes[1..])),
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306 // zlib (RFC 1950) data.
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307 b'x' => Ok(Cow::Owned(self.uncompressed_zlib_data()?)),
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308 // zstd data.
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309 b'\x28' => Ok(Cow::Owned(self.uncompressed_zstd_data()?)),
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310 // A proper new format should have had a repo/store requirement.
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311 _format_type => Err(RevlogError::corrupted()),
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312 }
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313 }
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314
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315 fn uncompressed_zlib_data(&self) -> Result<Vec<u8>, RevlogError> {
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316 let mut decoder = ZlibDecoder::new(self.bytes);
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317 if self.is_delta() {
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318 let mut buf = Vec::with_capacity(self.compressed_len);
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319 decoder
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320 .read_to_end(&mut buf)
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321 .map_err(|_| RevlogError::corrupted())?;
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322 Ok(buf)
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323 } else {
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324 let mut buf = vec![0; self.uncompressed_len];
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325 decoder
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326 .read_exact(&mut buf)
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327 .map_err(|_| RevlogError::corrupted())?;
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328 Ok(buf)
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329 }
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330 }
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331
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332 fn uncompressed_zstd_data(&self) -> Result<Vec<u8>, RevlogError> {
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333 if self.is_delta() {
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334 let mut buf = Vec::with_capacity(self.compressed_len);
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335 zstd::stream::copy_decode(self.bytes, &mut buf)
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336 .map_err(|_| RevlogError::corrupted())?;
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337 Ok(buf)
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338 } else {
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339 let mut buf = vec![0; self.uncompressed_len];
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340 let len = zstd::block::decompress_to_buffer(self.bytes, &mut buf)
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341 .map_err(|_| RevlogError::corrupted())?;
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342 if len != self.uncompressed_len {
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343 Err(RevlogError::corrupted())
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344 } else {
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345 Ok(buf)
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346 }
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347 }
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348 }
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349
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350 /// Tell if the entry is a snapshot or a delta
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351 /// (influences on decompression).
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352 fn is_delta(&self) -> bool {
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353 self.base_rev.is_some()
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354 }
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355 }
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356
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357 /// Format version of the revlog.
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358 pub fn get_version(index_bytes: &[u8]) -> u16 {
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359 BigEndian::read_u16(&index_bytes[2..=3])
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360 }
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361
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362 /// Calculate the hash of a revision given its data and its parents.
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363 fn hash(
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364 data: &[u8],
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365 p1_hash: &[u8],
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366 p2_hash: &[u8],
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367 ) -> [u8; NODE_BYTES_LENGTH] {
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368 let mut hasher = Sha1::new();
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369 let (a, b) = (p1_hash, p2_hash);
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370 if a > b {
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371 hasher.update(b);
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372 hasher.update(a);
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373 } else {
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374 hasher.update(a);
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375 hasher.update(b);
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376 }
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377 hasher.update(data);
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378 *hasher.finalize().as_ref()
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379 }
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380
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381 #[cfg(test)]
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382 mod tests {
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383 use super::*;
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384
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385 use super::super::index::IndexEntryBuilder;
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386
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387 #[test]
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388 fn version_test() {
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389 let bytes = IndexEntryBuilder::new()
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390 .is_first(true)
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391 .with_version(1)
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392 .build();
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393
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394 assert_eq!(get_version(&bytes), 1)
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395 }
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396 }