annotate rust/hg-core/src/revlog/index.rs @ 46033:88e741bf2d93

rust: use NodePrefix::from_hex instead of hex::decode directly This adds support for prefixes with an odd number of hex digits. Differential Revision: https://phab.mercurial-scm.org/D9490
author Simon Sapin <simon-commits@exyr.org>
date Wed, 02 Dec 2020 15:00:49 +0100
parents 1cef583541c0
children 9eb07ab3f2d4
Ignore whitespace changes - Everywhere: Within whitespace: At end of lines:
rev   line source
46033
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1 use std::convert::TryInto;
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2 use std::ops::Deref;
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3
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4 use byteorder::{BigEndian, ByteOrder};
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5
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6 use crate::revlog::node::Node;
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7 use crate::revlog::revlog::RevlogError;
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8 use crate::revlog::{Revision, NULL_REVISION};
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9
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10 pub const INDEX_ENTRY_SIZE: usize = 64;
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11
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12 /// A Revlog index
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13 pub struct Index {
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14 bytes: Box<dyn Deref<Target = [u8]> + Send>,
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15 /// Offsets of starts of index blocks.
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16 /// Only needed when the index is interleaved with data.
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17 offsets: Option<Vec<usize>>,
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18 }
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19
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20 impl Index {
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21 /// Create an index from bytes.
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22 /// Calculate the start of each entry when is_inline is true.
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23 pub fn new(
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24 bytes: Box<dyn Deref<Target = [u8]> + Send>,
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25 ) -> Result<Self, RevlogError> {
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26 if is_inline(&bytes) {
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27 let mut offset: usize = 0;
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28 let mut offsets = Vec::new();
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29
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30 while offset + INDEX_ENTRY_SIZE <= bytes.len() {
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31 offsets.push(offset);
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32 let end = offset + INDEX_ENTRY_SIZE;
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33 let entry = IndexEntry {
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34 bytes: &bytes[offset..end],
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35 offset_override: None,
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36 };
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37
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38 offset += INDEX_ENTRY_SIZE + entry.compressed_len();
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39 }
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40
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41 if offset == bytes.len() {
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42 Ok(Self {
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43 bytes,
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44 offsets: Some(offsets),
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45 })
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46 } else {
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47 Err(RevlogError::Corrupted)
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48 }
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49 } else {
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50 Ok(Self {
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51 bytes,
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52 offsets: None,
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53 })
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54 }
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55 }
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56
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57 /// Value of the inline flag.
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58 pub fn is_inline(&self) -> bool {
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59 is_inline(&self.bytes)
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60 }
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61
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62 /// Return a slice of bytes if `revlog` is inline. Panic if not.
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63 pub fn data(&self, start: usize, end: usize) -> &[u8] {
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64 if !self.is_inline() {
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65 panic!("tried to access data in the index of a revlog that is not inline");
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66 }
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67 &self.bytes[start..end]
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68 }
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69
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70 /// Return number of entries of the revlog index.
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71 pub fn len(&self) -> usize {
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72 if let Some(offsets) = &self.offsets {
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73 offsets.len()
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74 } else {
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75 self.bytes.len() / INDEX_ENTRY_SIZE
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76 }
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77 }
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78
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79 /// Returns `true` if the `Index` has zero `entries`.
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80 pub fn is_empty(&self) -> bool {
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81 self.len() == 0
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82 }
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83
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84 /// Return the index entry corresponding to the given revision if it
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85 /// exists.
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86 pub fn get_entry(&self, rev: Revision) -> Option<IndexEntry> {
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87 if rev == NULL_REVISION {
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88 return None;
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89 }
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90 if let Some(offsets) = &self.offsets {
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91 self.get_entry_inline(rev, offsets)
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92 } else {
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93 self.get_entry_separated(rev)
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94 }
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95 }
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96
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97 fn get_entry_inline(
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98 &self,
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99 rev: Revision,
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100 offsets: &[usize],
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101 ) -> Option<IndexEntry> {
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102 let start = *offsets.get(rev as usize)?;
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103 let end = start.checked_add(INDEX_ENTRY_SIZE)?;
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104 let bytes = &self.bytes[start..end];
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105
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106 // See IndexEntry for an explanation of this override.
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107 let offset_override = Some(end);
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108
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109 Some(IndexEntry {
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110 bytes,
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111 offset_override,
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112 })
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113 }
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114
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115 fn get_entry_separated(&self, rev: Revision) -> Option<IndexEntry> {
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116 let max_rev = self.bytes.len() / INDEX_ENTRY_SIZE;
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117 if rev as usize >= max_rev {
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118 return None;
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119 }
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120 let start = rev as usize * INDEX_ENTRY_SIZE;
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121 let end = start + INDEX_ENTRY_SIZE;
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122 let bytes = &self.bytes[start..end];
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123
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124 // Override the offset of the first revision as its bytes are used
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125 // for the index's metadata (saving space because it is always 0)
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126 let offset_override = if rev == 0 { Some(0) } else { None };
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127
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128 Some(IndexEntry {
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129 bytes,
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130 offset_override,
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131 })
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132 }
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133 }
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134
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135 #[derive(Debug)]
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136 pub struct IndexEntry<'a> {
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137 bytes: &'a [u8],
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138 /// Allows to override the offset value of the entry.
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139 ///
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140 /// For interleaved index and data, the offset stored in the index
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141 /// corresponds to the separated data offset.
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142 /// It has to be overridden with the actual offset in the interleaved
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143 /// index which is just after the index block.
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144 ///
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145 /// For separated index and data, the offset stored in the first index
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146 /// entry is mixed with the index headers.
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147 /// It has to be overridden with 0.
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148 offset_override: Option<usize>,
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149 }
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150
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151 impl<'a> IndexEntry<'a> {
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152 /// Return the offset of the data.
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153 pub fn offset(&self) -> usize {
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154 if let Some(offset_override) = self.offset_override {
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155 offset_override
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156 } else {
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157 let mut bytes = [0; 8];
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158 bytes[2..8].copy_from_slice(&self.bytes[0..=5]);
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159 BigEndian::read_u64(&bytes[..]) as usize
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160 }
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161 }
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162
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163 /// Return the compressed length of the data.
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164 pub fn compressed_len(&self) -> usize {
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165 BigEndian::read_u32(&self.bytes[8..=11]) as usize
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166 }
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167
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168 /// Return the uncompressed length of the data.
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169 pub fn uncompressed_len(&self) -> usize {
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170 BigEndian::read_u32(&self.bytes[12..=15]) as usize
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171 }
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172
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173 /// Return the revision upon which the data has been derived.
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174 pub fn base_revision(&self) -> Revision {
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175 // TODO Maybe return an Option when base_revision == rev?
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176 // Requires to add rev to IndexEntry
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177
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178 BigEndian::read_i32(&self.bytes[16..])
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179 }
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180
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181 pub fn p1(&self) -> Revision {
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182 BigEndian::read_i32(&self.bytes[24..])
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183 }
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184
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185 pub fn p2(&self) -> Revision {
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186 BigEndian::read_i32(&self.bytes[28..])
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187 }
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188
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189 /// Return the hash of revision's full text.
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190 ///
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191 /// Currently, SHA-1 is used and only the first 20 bytes of this field
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192 /// are used.
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193 pub fn hash(&self) -> &Node {
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194 (&self.bytes[32..52]).try_into().unwrap()
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195 }
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196 }
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197
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198 /// Value of the inline flag.
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199 pub fn is_inline(index_bytes: &[u8]) -> bool {
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200 match &index_bytes[0..=1] {
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201 [0, 0] | [0, 2] => false,
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202 _ => true,
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203 }
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204 }
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205
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206 #[cfg(test)]
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207 mod tests {
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208 use super::*;
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209
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210 #[cfg(test)]
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211 #[derive(Debug, Copy, Clone)]
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212 pub struct IndexEntryBuilder {
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213 is_first: bool,
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214 is_inline: bool,
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215 is_general_delta: bool,
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216 version: u16,
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217 offset: usize,
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218 compressed_len: usize,
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219 uncompressed_len: usize,
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220 base_revision: Revision,
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221 }
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222
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223 #[cfg(test)]
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224 impl IndexEntryBuilder {
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225 pub fn new() -> Self {
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226 Self {
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227 is_first: false,
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228 is_inline: false,
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229 is_general_delta: true,
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230 version: 2,
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231 offset: 0,
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232 compressed_len: 0,
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233 uncompressed_len: 0,
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234 base_revision: 0,
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235 }
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236 }
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237
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238 pub fn is_first(&mut self, value: bool) -> &mut Self {
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239 self.is_first = value;
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240 self
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241 }
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242
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243 pub fn with_inline(&mut self, value: bool) -> &mut Self {
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244 self.is_inline = value;
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245 self
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246 }
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247
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248 pub fn with_general_delta(&mut self, value: bool) -> &mut Self {
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249 self.is_general_delta = value;
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250 self
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251 }
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252
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253 pub fn with_version(&mut self, value: u16) -> &mut Self {
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254 self.version = value;
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255 self
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256 }
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257
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258 pub fn with_offset(&mut self, value: usize) -> &mut Self {
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259 self.offset = value;
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260 self
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261 }
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262
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263 pub fn with_compressed_len(&mut self, value: usize) -> &mut Self {
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264 self.compressed_len = value;
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265 self
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266 }
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267
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268 pub fn with_uncompressed_len(&mut self, value: usize) -> &mut Self {
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269 self.uncompressed_len = value;
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270 self
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271 }
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272
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273 pub fn with_base_revision(&mut self, value: Revision) -> &mut Self {
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274 self.base_revision = value;
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275 self
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276 }
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277
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278 pub fn build(&self) -> Vec<u8> {
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279 let mut bytes = Vec::with_capacity(INDEX_ENTRY_SIZE);
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280 if self.is_first {
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281 bytes.extend(&match (self.is_general_delta, self.is_inline) {
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282 (false, false) => [0u8, 0],
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283 (false, true) => [0u8, 1],
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284 (true, false) => [0u8, 2],
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285 (true, true) => [0u8, 3],
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286 });
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287 bytes.extend(&self.version.to_be_bytes());
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288 // Remaining offset bytes.
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289 bytes.extend(&[0u8; 2]);
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290 } else {
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291 // Offset is only 6 bytes will usize is 8.
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292 bytes.extend(&self.offset.to_be_bytes()[2..]);
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293 }
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294 bytes.extend(&[0u8; 2]); // Revision flags.
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295 bytes.extend(&self.compressed_len.to_be_bytes()[4..]);
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296 bytes.extend(&self.uncompressed_len.to_be_bytes()[4..]);
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297 bytes.extend(&self.base_revision.to_be_bytes());
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298 bytes
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299 }
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300 }
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301
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302 #[test]
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303 fn is_not_inline_when_no_inline_flag_test() {
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304 let bytes = IndexEntryBuilder::new()
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305 .is_first(true)
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306 .with_general_delta(false)
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307 .with_inline(false)
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308 .build();
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309
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310 assert_eq!(is_inline(&bytes), false)
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311 }
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312
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313 #[test]
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314 fn is_inline_when_inline_flag_test() {
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315 let bytes = IndexEntryBuilder::new()
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316 .is_first(true)
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317 .with_general_delta(false)
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318 .with_inline(true)
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319 .build();
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320
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321 assert_eq!(is_inline(&bytes), true)
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322 }
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323
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324 #[test]
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325 fn is_inline_when_inline_and_generaldelta_flags_test() {
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326 let bytes = IndexEntryBuilder::new()
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327 .is_first(true)
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328 .with_general_delta(true)
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329 .with_inline(true)
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330 .build();
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331
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332 assert_eq!(is_inline(&bytes), true)
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333 }
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334
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335 #[test]
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336 fn test_offset() {
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337 let bytes = IndexEntryBuilder::new().with_offset(1).build();
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338 let entry = IndexEntry {
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339 bytes: &bytes,
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340 offset_override: None,
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341 };
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342
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343 assert_eq!(entry.offset(), 1)
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344 }
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345
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346 #[test]
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347 fn test_with_overridden_offset() {
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348 let bytes = IndexEntryBuilder::new().with_offset(1).build();
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349 let entry = IndexEntry {
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350 bytes: &bytes,
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351 offset_override: Some(2),
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352 };
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353
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354 assert_eq!(entry.offset(), 2)
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355 }
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356
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357 #[test]
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358 fn test_compressed_len() {
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359 let bytes = IndexEntryBuilder::new().with_compressed_len(1).build();
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360 let entry = IndexEntry {
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361 bytes: &bytes,
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362 offset_override: None,
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363 };
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364
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365 assert_eq!(entry.compressed_len(), 1)
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366 }
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367
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368 #[test]
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369 fn test_uncompressed_len() {
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370 let bytes = IndexEntryBuilder::new().with_uncompressed_len(1).build();
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371 let entry = IndexEntry {
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372 bytes: &bytes,
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373 offset_override: None,
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374 };
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375
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376 assert_eq!(entry.uncompressed_len(), 1)
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377 }
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378
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379 #[test]
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380 fn test_base_revision() {
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381 let bytes = IndexEntryBuilder::new().with_base_revision(1).build();
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382 let entry = IndexEntry {
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383 bytes: &bytes,
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384 offset_override: None,
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385 };
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386
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387 assert_eq!(entry.base_revision(), 1)
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388 }
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389 }
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390
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391 #[cfg(test)]
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392 pub use tests::IndexEntryBuilder;