Mercurial > hg
annotate mercurial/repoview.py @ 23306:f7a42f8e82bd
revlog: cache chain info after calculating it for a rev (issue4452)
This dumb cache works surprisingly well: on a repository with typical delta
chains ~50k in length, unbundling a linear series of 5000 revisions (changelogs
and manifests only) went from 60 seconds to 3.
author | Siddharth Agarwal <sid0@fb.com> |
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date | Thu, 13 Nov 2014 21:36:38 -0800 |
parents | 90200e864ffc |
children | 47091002ae62 |
rev | line source |
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1 # repoview.py - Filtered view of a localrepo object |
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2 # |
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3 # Copyright 2012 Pierre-Yves David <pierre-yves.david@ens-lyon.org> |
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4 # Logilab SA <contact@logilab.fr> |
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5 # |
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6 # This software may be used and distributed according to the terms of the |
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7 # GNU General Public License version 2 or any later version. |
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8 |
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9 import copy |
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10 import error |
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11 import phases |
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12 import util |
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13 import obsolete |
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14 import struct |
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15 import tags as tagsmod |
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16 |
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17 def hideablerevs(repo): |
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18 """Revisions candidates to be hidden |
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19 |
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20 This is a standalone function to help extensions to wrap it.""" |
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21 return obsolete.getrevs(repo, 'obsolete') |
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22 |
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23 def _getstaticblockers(repo): |
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24 """Cacheable revisions blocking hidden changesets from being filtered. |
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25 |
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26 Additional non-cached hidden blockers are computed in _getdynamicblockers. |
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27 This is a standalone function to help extensions to wrap it.""" |
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28 assert not repo.changelog.filteredrevs |
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29 hideable = hideablerevs(repo) |
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30 blockers = set() |
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31 if hideable: |
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32 # We use cl to avoid recursive lookup from repo[xxx] |
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33 cl = repo.changelog |
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34 firsthideable = min(hideable) |
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35 revs = cl.revs(start=firsthideable) |
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36 tofilter = repo.revs( |
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37 '(%ld) and children(%ld)', list(revs), list(hideable)) |
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38 blockers.update([r for r in tofilter if r not in hideable]) |
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39 return blockers |
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40 |
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41 def _getdynamicblockers(repo): |
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42 """Non-cacheable revisions blocking hidden changesets from being filtered. |
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43 |
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44 Get revisions that will block hidden changesets and are likely to change, |
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45 but unlikely to create hidden blockers. They won't be cached, so be careful |
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46 with adding additional computation.""" |
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47 |
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48 cl = repo.changelog |
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49 blockers = set() |
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50 blockers.update([par.rev() for par in repo[None].parents()]) |
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51 blockers.update([cl.rev(bm) for bm in repo._bookmarks.values()]) |
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52 |
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53 tags = {} |
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54 tagsmod.readlocaltags(repo.ui, repo, tags, {}) |
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55 if tags: |
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56 rev, nodemap = cl.rev, cl.nodemap |
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57 blockers.update(rev(t[0]) for t in tags.values() if t[0] in nodemap) |
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58 return blockers |
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59 |
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60 cacheversion = 1 |
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61 cachefile = 'cache/hidden' |
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62 |
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63 def cachehash(repo, hideable): |
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64 """return sha1 hash of repository data to identify a valid cache. |
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65 |
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66 We calculate a sha1 of repo heads and the content of the obsstore and write |
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67 it to the cache. Upon reading we can easily validate by checking the hash |
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68 against the stored one and discard the cache in case the hashes don't match. |
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69 """ |
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70 h = util.sha1() |
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71 h.update(''.join(repo.heads())) |
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72 h.update(str(hash(frozenset(hideable)))) |
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73 return h.digest() |
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74 |
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75 def trywritehiddencache(repo, hideable, hidden): |
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76 """write cache of hidden changesets to disk |
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77 |
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78 Will not write the cache if a wlock cannot be obtained lazily. |
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79 The cache consists of a head of 22byte: |
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80 2 byte version number of the cache |
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81 20 byte sha1 to validate the cache |
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82 n*4 byte hidden revs |
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83 """ |
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84 wlock = fh = None |
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85 try: |
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86 try: |
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87 wlock = repo.wlock(wait=False) |
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88 # write cache to file |
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89 newhash = cachehash(repo, hideable) |
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90 sortedset = sorted(hidden) |
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91 data = struct.pack('>%ii' % len(sortedset), *sortedset) |
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92 fh = repo.vfs.open(cachefile, 'w+b', atomictemp=True) |
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93 fh.write(struct.pack(">H", cacheversion)) |
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94 fh.write(newhash) |
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95 fh.write(data) |
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96 except (IOError, OSError): |
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97 repo.ui.debug('error writing hidden changesets cache') |
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98 except error.LockHeld: |
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99 repo.ui.debug('cannot obtain lock to write hidden changesets cache') |
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100 finally: |
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101 if fh: |
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102 fh.close() |
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103 if wlock: |
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104 wlock.release() |
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105 |
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106 def tryreadcache(repo, hideable): |
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107 """read a cache if the cache exists and is valid, otherwise returns None.""" |
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108 hidden = fh = None |
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109 try: |
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110 if repo.vfs.exists(cachefile): |
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111 fh = repo.vfs.open(cachefile, 'rb') |
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112 version, = struct.unpack(">H", fh.read(2)) |
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113 oldhash = fh.read(20) |
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114 newhash = cachehash(repo, hideable) |
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115 if (cacheversion, oldhash) == (version, newhash): |
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116 # cache is valid, so we can start reading the hidden revs |
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117 data = fh.read() |
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118 count = len(data) / 4 |
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119 hidden = frozenset(struct.unpack('>%ii' % count, data)) |
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120 return hidden |
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121 finally: |
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122 if fh: |
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123 fh.close() |
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124 |
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125 def computehidden(repo): |
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126 """compute the set of hidden revision to filter |
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127 |
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128 During most operation hidden should be filtered.""" |
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129 assert not repo.changelog.filteredrevs |
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130 |
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131 hidden = frozenset() |
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132 hideable = hideablerevs(repo) |
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133 if hideable: |
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134 cl = repo.changelog |
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135 hidden = tryreadcache(repo, hideable) |
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136 if hidden is None: |
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137 blocked = cl.ancestors(_getstaticblockers(repo), inclusive=True) |
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138 hidden = frozenset(r for r in hideable if r not in blocked) |
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139 trywritehiddencache(repo, hideable, hidden) |
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140 |
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141 # check if we have wd parents, bookmarks or tags pointing to hidden |
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142 # changesets and remove those. |
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143 dynamic = hidden & _getdynamicblockers(repo) |
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144 if dynamic: |
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145 blocked = cl.ancestors(dynamic, inclusive=True) |
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146 hidden = frozenset(r for r in hidden if r not in blocked) |
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147 return hidden |
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148 |
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149 def computeunserved(repo): |
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150 """compute the set of revision that should be filtered when used a server |
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151 |
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152 Secret and hidden changeset should not pretend to be here.""" |
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153 assert not repo.changelog.filteredrevs |
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154 # fast path in simple case to avoid impact of non optimised code |
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155 hiddens = filterrevs(repo, 'visible') |
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156 if phases.hassecret(repo): |
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157 cl = repo.changelog |
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158 secret = phases.secret |
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159 getphase = repo._phasecache.phase |
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160 first = min(cl.rev(n) for n in repo._phasecache.phaseroots[secret]) |
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161 revs = cl.revs(start=first) |
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162 secrets = set(r for r in revs if getphase(repo, r) >= secret) |
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163 return frozenset(hiddens | secrets) |
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164 else: |
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165 return hiddens |
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166 |
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167 def computemutable(repo): |
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168 """compute the set of revision that should be filtered when used a server |
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169 |
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170 Secret and hidden changeset should not pretend to be here.""" |
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171 assert not repo.changelog.filteredrevs |
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172 # fast check to avoid revset call on huge repo |
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173 if util.any(repo._phasecache.phaseroots[1:]): |
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174 getphase = repo._phasecache.phase |
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175 maymutable = filterrevs(repo, 'base') |
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176 return frozenset(r for r in maymutable if getphase(repo, r)) |
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177 return frozenset() |
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178 |
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179 def computeimpactable(repo): |
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180 """Everything impactable by mutable revision |
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181 |
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182 The immutable filter still have some chance to get invalidated. This will |
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183 happen when: |
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184 |
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185 - you garbage collect hidden changeset, |
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186 - public phase is moved backward, |
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187 - something is changed in the filtering (this could be fixed) |
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188 |
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189 This filter out any mutable changeset and any public changeset that may be |
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190 impacted by something happening to a mutable revision. |
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191 |
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192 This is achieved by filtered everything with a revision number egal or |
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193 higher than the first mutable changeset is filtered.""" |
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194 assert not repo.changelog.filteredrevs |
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195 cl = repo.changelog |
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196 firstmutable = len(cl) |
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197 for roots in repo._phasecache.phaseroots[1:]: |
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198 if roots: |
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199 firstmutable = min(firstmutable, min(cl.rev(r) for r in roots)) |
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200 # protect from nullrev root |
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201 firstmutable = max(0, firstmutable) |
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202 return frozenset(xrange(firstmutable, len(cl))) |
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203 |
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204 # function to compute filtered set |
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205 # |
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206 # When adding a new filter you MUST update the table at: |
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207 # mercurial.branchmap.subsettable |
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208 # Otherwise your filter will have to recompute all its branches cache |
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209 # from scratch (very slow). |
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210 filtertable = {'visible': computehidden, |
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211 'served': computeunserved, |
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212 'immutable': computemutable, |
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213 'base': computeimpactable} |
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214 |
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215 def filterrevs(repo, filtername): |
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216 """returns set of filtered revision for this filter name""" |
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217 if filtername not in repo.filteredrevcache: |
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218 func = filtertable[filtername] |
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219 repo.filteredrevcache[filtername] = func(repo.unfiltered()) |
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220 return repo.filteredrevcache[filtername] |
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221 |
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222 class repoview(object): |
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223 """Provide a read/write view of a repo through a filtered changelog |
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224 |
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225 This object is used to access a filtered version of a repository without |
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226 altering the original repository object itself. We can not alter the |
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227 original object for two main reasons: |
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228 - It prevents the use of a repo with multiple filters at the same time. In |
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229 particular when multiple threads are involved. |
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230 - It makes scope of the filtering harder to control. |
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231 |
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232 This object behaves very closely to the original repository. All attribute |
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233 operations are done on the original repository: |
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234 - An access to `repoview.someattr` actually returns `repo.someattr`, |
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235 - A write to `repoview.someattr` actually sets value of `repo.someattr`, |
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236 - A deletion of `repoview.someattr` actually drops `someattr` |
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237 from `repo.__dict__`. |
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238 |
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239 The only exception is the `changelog` property. It is overridden to return |
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240 a (surface) copy of `repo.changelog` with some revisions filtered. The |
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241 `filtername` attribute of the view control the revisions that need to be |
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242 filtered. (the fact the changelog is copied is an implementation detail). |
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243 |
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244 Unlike attributes, this object intercepts all method calls. This means that |
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245 all methods are run on the `repoview` object with the filtered `changelog` |
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246 property. For this purpose the simple `repoview` class must be mixed with |
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247 the actual class of the repository. This ensures that the resulting |
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248 `repoview` object have the very same methods than the repo object. This |
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249 leads to the property below. |
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250 |
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251 repoview.method() --> repo.__class__.method(repoview) |
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252 |
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253 The inheritance has to be done dynamically because `repo` can be of any |
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254 subclasses of `localrepo`. Eg: `bundlerepo` or `statichttprepo`. |
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255 """ |
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256 |
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257 def __init__(self, repo, filtername): |
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258 object.__setattr__(self, '_unfilteredrepo', repo) |
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259 object.__setattr__(self, 'filtername', filtername) |
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260 object.__setattr__(self, '_clcachekey', None) |
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261 object.__setattr__(self, '_clcache', None) |
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262 |
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263 # not a propertycache on purpose we shall implement a proper cache later |
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264 @property |
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265 def changelog(self): |
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266 """return a filtered version of the changeset |
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267 |
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268 this changelog must not be used for writing""" |
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269 # some cache may be implemented later |
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270 unfi = self._unfilteredrepo |
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271 unfichangelog = unfi.changelog |
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272 revs = filterrevs(unfi, self.filtername) |
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273 cl = self._clcache |
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274 newkey = (len(unfichangelog), unfichangelog.tip(), hash(revs)) |
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275 if cl is not None: |
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276 # we need to check curkey too for some obscure reason. |
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277 # MQ test show a corruption of the underlying repo (in _clcache) |
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278 # without change in the cachekey. |
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279 oldfilter = cl.filteredrevs |
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280 try: |
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281 cl.filteredrevs = () # disable filtering for tip |
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282 curkey = (len(cl), cl.tip(), hash(oldfilter)) |
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283 finally: |
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284 cl.filteredrevs = oldfilter |
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285 if newkey != self._clcachekey or newkey != curkey: |
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286 cl = None |
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287 # could have been made None by the previous if |
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288 if cl is None: |
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289 cl = copy.copy(unfichangelog) |
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290 cl.filteredrevs = revs |
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291 object.__setattr__(self, '_clcache', cl) |
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292 object.__setattr__(self, '_clcachekey', newkey) |
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293 return cl |
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294 |
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295 def unfiltered(self): |
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296 """Return an unfiltered version of a repo""" |
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297 return self._unfilteredrepo |
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298 |
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299 def filtered(self, name): |
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300 """Return a filtered version of a repository""" |
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301 if name == self.filtername: |
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302 return self |
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303 return self.unfiltered().filtered(name) |
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304 |
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305 # everything access are forwarded to the proxied repo |
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306 def __getattr__(self, attr): |
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307 return getattr(self._unfilteredrepo, attr) |
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308 |
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309 def __setattr__(self, attr, value): |
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310 return setattr(self._unfilteredrepo, attr, value) |
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311 |
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312 def __delattr__(self, attr): |
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313 return delattr(self._unfilteredrepo, attr) |
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314 |
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315 # The `requirements` attribute is initialized during __init__. But |
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316 # __getattr__ won't be called as it also exists on the class. We need |
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317 # explicit forwarding to main repo here |
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318 @property |
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319 def requirements(self): |
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320 return self._unfilteredrepo.requirements |