Mercurial > hg
annotate rust/hg-core/src/dagops.rs @ 51605:e4b9f8a74d5f
match: simplify the rust-side file pattern kind parsing
There's no need to add the ':' characters if
we're simply pattern matching against constants next.
author | Arseniy Alekseyev <aalekseyev@janestreet.com> |
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date | Tue, 16 Apr 2024 17:21:37 +0100 |
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1 // dagops.rs |
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2 // |
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3 // Copyright 2019 Georges Racinet <georges.racinet@octobus.net> |
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4 // |
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5 // This software may be used and distributed according to the terms of the |
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6 // GNU General Public License version 2 or any later version. |
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7 |
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8 //! Miscellaneous DAG operations |
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9 //! |
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10 //! # Terminology |
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11 //! - By *relative heads* of a collection of revision numbers (`Revision`), we |
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12 //! mean those revisions that have no children among the collection. |
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13 //! - Similarly *relative roots* of a collection of `Revision`, we mean those |
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14 //! whose parents, if any, don't belong to the collection. |
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15 use bitvec::slice::BitSlice; |
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16 |
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17 use super::{Graph, GraphError, Revision, NULL_REVISION}; |
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18 use crate::{ancestors::AncestorsIterator, BaseRevision}; |
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19 use std::collections::{BTreeSet, HashSet}; |
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20 |
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21 fn remove_parents<S: std::hash::BuildHasher>( |
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22 graph: &impl Graph, |
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23 rev: Revision, |
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24 set: &mut HashSet<Revision, S>, |
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25 ) -> Result<(), GraphError> { |
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26 for parent in graph.parents(rev)?.iter() { |
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27 if *parent != NULL_REVISION { |
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28 set.remove(parent); |
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29 } |
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30 } |
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31 Ok(()) |
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32 } |
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33 |
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34 /// Relative heads out of some revisions, passed as an iterator. |
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35 /// |
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36 /// These heads are defined as those revisions that have no children |
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37 /// among those emitted by the iterator. |
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38 /// |
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39 /// # Performance notes |
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40 /// Internally, this clones the iterator, and builds a `HashSet` out of it. |
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41 /// |
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42 /// This function takes an `Iterator` instead of `impl IntoIterator` to |
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43 /// guarantee that cloning the iterator doesn't result in cloning the full |
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44 /// construct it comes from. |
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45 pub fn heads<'a>( |
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46 graph: &impl Graph, |
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47 iter_revs: impl Clone + Iterator<Item = &'a Revision>, |
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48 ) -> Result<HashSet<Revision>, GraphError> { |
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49 let mut heads: HashSet<Revision> = iter_revs.clone().cloned().collect(); |
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50 heads.remove(&NULL_REVISION); |
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51 for rev in iter_revs { |
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52 if *rev != NULL_REVISION { |
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53 remove_parents(graph, *rev, &mut heads)?; |
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54 } |
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55 } |
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56 Ok(heads) |
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57 } |
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58 |
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59 /// Retain in `revs` only its relative heads. |
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60 /// |
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61 /// This is an in-place operation, so that control of the incoming |
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62 /// set is left to the caller. |
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63 /// - a direct Python binding would probably need to build its own `HashSet` |
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64 /// from an incoming iterable, even if its sole purpose is to extract the |
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65 /// heads. |
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66 /// - a Rust caller can decide whether cloning beforehand is appropriate |
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67 /// |
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68 /// # Performance notes |
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69 /// Internally, this function will store a full copy of `revs` in a `Vec`. |
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70 pub fn retain_heads<S: std::hash::BuildHasher>( |
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71 graph: &impl Graph, |
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72 revs: &mut HashSet<Revision, S>, |
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73 ) -> Result<(), GraphError> { |
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74 revs.remove(&NULL_REVISION); |
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75 // we need to construct an iterable copy of revs to avoid itering while |
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76 // mutating |
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77 let as_vec: Vec<Revision> = revs.iter().cloned().collect(); |
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78 for rev in as_vec { |
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79 if rev != NULL_REVISION { |
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80 remove_parents(graph, rev, revs)?; |
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81 } |
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82 } |
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83 Ok(()) |
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84 } |
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85 |
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86 /// Optimized version of `retain_heads` that expects an zeroed bitvec of the |
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87 /// size of the graph, to act as a faster but less space-efficient `HashSet`. |
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88 /// |
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89 /// # Panics |
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90 /// |
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91 /// Can panic if `not_heads` is shorten than the length of graph. |
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92 pub fn retain_heads_fast( |
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93 graph: &impl Graph, |
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94 not_heads: &mut BitSlice, |
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95 filtered_revs: &HashSet<Revision>, |
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96 ) -> Result<(), GraphError> { |
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97 for idx in (0..not_heads.len()).rev() { |
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98 let rev = Revision(idx as BaseRevision); |
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99 if !not_heads[idx] && filtered_revs.contains(&rev) { |
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100 not_heads.get_mut(idx).unwrap().commit(true); |
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101 continue; |
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102 } |
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103 for parent in graph.parents(rev)?.iter() { |
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104 if *parent != NULL_REVISION { |
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105 not_heads.get_mut(parent.0 as usize).unwrap().commit(true); |
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106 } |
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107 } |
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108 } |
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109 Ok(()) |
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110 } |
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111 |
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112 /// Roots of `revs`, passed as a `HashSet` |
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113 /// |
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114 /// They are returned in arbitrary order |
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115 pub fn roots<G: Graph, S: std::hash::BuildHasher>( |
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116 graph: &G, |
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117 revs: &HashSet<Revision, S>, |
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118 ) -> Result<Vec<Revision>, GraphError> { |
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119 let mut roots: Vec<Revision> = Vec::new(); |
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120 for rev in revs { |
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121 if graph |
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122 .parents(*rev)? |
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123 .iter() |
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124 .filter(|p| **p != NULL_REVISION) |
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125 .all(|p| !revs.contains(p)) |
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126 { |
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127 roots.push(*rev); |
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128 } |
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129 } |
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130 Ok(roots) |
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131 } |
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132 |
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133 /// Compute the topological range between two collections of revisions |
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134 /// |
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135 /// This is equivalent to the revset `<roots>::<heads>`. |
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136 /// |
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137 /// Currently, the given `Graph` has to implement `Clone`, which means |
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138 /// actually cloning just a reference-counted Python pointer if |
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139 /// it's passed over through `rust-cpython`. This is due to the internal |
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140 /// use of `AncestorsIterator` |
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141 /// |
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142 /// # Algorithmic details |
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143 /// |
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144 /// This is a two-pass swipe inspired from what `reachableroots2` from |
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145 /// `mercurial.cext.parsers` does to obtain the same results. |
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146 /// |
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147 /// - first, we climb up the DAG from `heads` in topological order, keeping |
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148 /// them in the vector `heads_ancestors` vector, and adding any element of |
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149 /// `roots` we find among them to the resulting range. |
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150 /// - Then, we iterate on that recorded vector so that a revision is always |
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151 /// emitted after its parents and add all revisions whose parents are already |
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152 /// in the range to the results. |
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153 /// |
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154 /// # Performance notes |
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155 /// |
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156 /// The main difference with the C implementation is that |
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157 /// the latter uses a flat array with bit flags, instead of complex structures |
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158 /// like `HashSet`, making it faster in most scenarios. In theory, it's |
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159 /// possible that the present implementation could be more memory efficient |
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160 /// for very large repositories with many branches. |
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161 pub fn range( |
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162 graph: &(impl Graph + Clone), |
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163 roots: impl IntoIterator<Item = Revision>, |
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164 heads: impl IntoIterator<Item = Revision>, |
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165 ) -> Result<BTreeSet<Revision>, GraphError> { |
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166 let mut range = BTreeSet::new(); |
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167 let roots: HashSet<Revision> = roots.into_iter().collect(); |
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168 let min_root: Revision = match roots.iter().cloned().min() { |
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169 None => { |
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170 return Ok(range); |
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171 } |
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172 Some(r) => r, |
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173 }; |
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174 |
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175 // Internally, AncestorsIterator currently maintains a `HashSet` |
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176 // of all seen revision, which is also what we record, albeit in an ordered |
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177 // way. There's room for improvement on this duplication. |
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178 let ait = AncestorsIterator::new(graph.clone(), heads, min_root, true)?; |
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179 let mut heads_ancestors: Vec<Revision> = Vec::new(); |
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180 for revres in ait { |
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181 let rev = revres?; |
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182 if roots.contains(&rev) { |
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183 range.insert(rev); |
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184 } |
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185 heads_ancestors.push(rev); |
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186 } |
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187 |
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188 for rev in heads_ancestors.into_iter().rev() { |
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189 for parent in graph.parents(rev)?.iter() { |
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190 if *parent != NULL_REVISION && range.contains(parent) { |
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191 range.insert(rev); |
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192 } |
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193 } |
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194 } |
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195 Ok(range) |
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196 } |
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197 |
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198 #[cfg(test)] |
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199 mod tests { |
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200 |
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201 use super::*; |
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202 use crate::{testing::SampleGraph, BaseRevision}; |
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203 |
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204 /// Apply `retain_heads()` to the given slice and return as a sorted `Vec` |
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205 fn retain_heads_sorted( |
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206 graph: &impl Graph, |
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207 revs: &[BaseRevision], |
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208 ) -> Result<Vec<Revision>, GraphError> { |
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209 let mut revs: HashSet<Revision> = |
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210 revs.iter().cloned().map(Revision).collect(); |
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211 retain_heads(graph, &mut revs)?; |
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212 let mut as_vec: Vec<Revision> = revs.iter().cloned().collect(); |
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213 as_vec.sort_unstable(); |
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214 Ok(as_vec) |
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215 } |
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216 |
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217 #[test] |
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218 fn test_retain_heads() -> Result<(), GraphError> { |
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219 assert_eq!(retain_heads_sorted(&SampleGraph, &[4, 5, 6])?, vec![5, 6]); |
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220 assert_eq!( |
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221 retain_heads_sorted(&SampleGraph, &[4, 1, 6, 12, 0])?, |
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222 vec![1, 6, 12] |
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223 ); |
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224 assert_eq!( |
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225 retain_heads_sorted(&SampleGraph, &[1, 2, 3, 4, 5, 6, 7, 8, 9])?, |
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226 vec![3, 5, 8, 9] |
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227 ); |
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228 Ok(()) |
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229 } |
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230 |
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231 /// Apply `heads()` to the given slice and return as a sorted `Vec` |
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232 fn heads_sorted( |
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233 graph: &impl Graph, |
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234 revs: &[BaseRevision], |
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235 ) -> Result<Vec<Revision>, GraphError> { |
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236 let iter_revs: Vec<_> = revs.iter().cloned().map(Revision).collect(); |
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237 let heads = heads(graph, iter_revs.iter())?; |
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238 let mut as_vec: Vec<Revision> = heads.iter().cloned().collect(); |
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239 as_vec.sort_unstable(); |
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240 Ok(as_vec) |
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241 } |
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242 |
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243 #[test] |
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244 fn test_heads() -> Result<(), GraphError> { |
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245 assert_eq!(heads_sorted(&SampleGraph, &[4, 5, 6])?, vec![5, 6]); |
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246 assert_eq!( |
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247 heads_sorted(&SampleGraph, &[4, 1, 6, 12, 0])?, |
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248 vec![1, 6, 12] |
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249 ); |
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250 assert_eq!( |
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251 heads_sorted(&SampleGraph, &[1, 2, 3, 4, 5, 6, 7, 8, 9])?, |
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252 vec![3, 5, 8, 9] |
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253 ); |
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254 Ok(()) |
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255 } |
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256 |
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257 /// Apply `roots()` and sort the result for easier comparison |
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258 fn roots_sorted( |
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259 graph: &impl Graph, |
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260 revs: &[BaseRevision], |
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261 ) -> Result<Vec<Revision>, GraphError> { |
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262 let set: HashSet<_> = revs.iter().cloned().map(Revision).collect(); |
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263 let mut as_vec = roots(graph, &set)?; |
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264 as_vec.sort_unstable(); |
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265 Ok(as_vec) |
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266 } |
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267 |
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268 #[test] |
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269 fn test_roots() -> Result<(), GraphError> { |
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270 assert_eq!(roots_sorted(&SampleGraph, &[4, 5, 6])?, vec![4]); |
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271 assert_eq!( |
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272 roots_sorted(&SampleGraph, &[4, 1, 6, 12, 0])?, |
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273 vec![0, 4, 12] |
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274 ); |
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275 assert_eq!( |
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276 roots_sorted(&SampleGraph, &[1, 2, 3, 4, 5, 6, 7, 8, 9])?, |
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277 vec![1, 8] |
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278 ); |
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279 Ok(()) |
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280 } |
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281 |
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282 /// Apply `range()` and convert the result into a Vec for easier comparison |
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283 fn range_vec( |
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284 graph: impl Graph + Clone, |
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285 roots: &[BaseRevision], |
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286 heads: &[BaseRevision], |
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287 ) -> Result<Vec<Revision>, GraphError> { |
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288 range( |
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289 &graph, |
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290 roots.iter().cloned().map(Revision), |
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291 heads.iter().cloned().map(Revision), |
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292 ) |
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293 .map(|bs| bs.into_iter().collect()) |
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294 } |
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295 |
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296 #[test] |
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297 fn test_range() -> Result<(), GraphError> { |
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298 assert_eq!(range_vec(SampleGraph, &[0], &[4])?, vec![0, 1, 2, 4]); |
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299 assert_eq!( |
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300 range_vec(SampleGraph, &[0], &[8])?, |
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301 Vec::<Revision>::new() |
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302 ); |
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303 assert_eq!( |
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304 range_vec(SampleGraph, &[5, 6], &[10, 11, 13])?, |
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305 vec![5, 10] |
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306 ); |
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307 assert_eq!( |
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308 range_vec(SampleGraph, &[5, 6], &[10, 12])?, |
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309 vec![5, 6, 9, 10, 12] |
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310 ); |
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311 Ok(()) |
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312 } |
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313 } |