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# repoview.py - Filtered view of a localrepo object
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#
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# Copyright 2012 Pierre-Yves David <pierre-yves.david@ens-lyon.org>
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# Logilab SA <contact@logilab.fr>
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#
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# This software may be used and distributed according to the terms of the
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# GNU General Public License version 2 or any later version.
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from __future__ import absolute_import
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import copy
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import weakref
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from .node import nullrev
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from . import (
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obsolete,
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phases,
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pycompat,
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tags as tagsmod,
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)
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def hideablerevs(repo):
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"""Revision candidates to be hidden
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This is a standalone function to allow extensions to wrap it.
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Because we use the set of immutable changesets as a fallback subset in
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branchmap (see mercurial.branchmap.subsettable), you cannot set "public"
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changesets as "hideable". Doing so would break multiple code assertions and
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lead to crashes."""
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return obsolete.getrevs(repo, 'obsolete')
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def pinnedrevs(repo):
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"""revisions blocking hidden changesets from being filtered
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"""
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cl = repo.changelog
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pinned = set()
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pinned.update([par.rev() for par in repo[None].parents()])
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pinned.update([cl.rev(bm) for bm in repo._bookmarks.values()])
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tags = {}
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tagsmod.readlocaltags(repo.ui, repo, tags, {})
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if tags:
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rev, nodemap = cl.rev, cl.nodemap
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pinned.update(rev(t[0]) for t in tags.values() if t[0] in nodemap)
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return pinned
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def _revealancestors(pfunc, hidden, revs):
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"""reveals contiguous chains of hidden ancestors of 'revs' by removing them
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from 'hidden'
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- pfunc(r): a funtion returning parent of 'r',
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- hidden: the (preliminary) hidden revisions, to be updated
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- revs: iterable of revnum,
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(Ancestors are revealed exclusively, i.e. the elements in 'revs' are
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*not* revealed)
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"""
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stack = list(revs)
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while stack:
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for p in pfunc(stack.pop()):
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if p != nullrev and p in hidden:
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hidden.remove(p)
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stack.append(p)
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def computehidden(repo, visibilityexceptions=None):
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"""compute the set of hidden revision to filter
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During most operation hidden should be filtered."""
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assert not repo.changelog.filteredrevs
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hidden = hideablerevs(repo)
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if hidden:
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hidden = set(hidden - pinnedrevs(repo))
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if visibilityexceptions:
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hidden -= visibilityexceptions
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pfunc = repo.changelog.parentrevs
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mutable = repo._phasecache.getrevset(repo, phases.mutablephases)
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visible = mutable - hidden
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_revealancestors(pfunc, hidden, visible)
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return frozenset(hidden)
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def computeunserved(repo, visibilityexceptions=None):
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"""compute the set of revision that should be filtered when used a server
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Secret and hidden changeset should not pretend to be here."""
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assert not repo.changelog.filteredrevs
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# fast path in simple case to avoid impact of non optimised code
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hiddens = filterrevs(repo, 'visible')
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if phases.hassecret(repo):
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secrets = repo._phasecache.getrevset(repo, phases.remotehiddenphases)
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return frozenset(hiddens | frozenset(secrets))
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else:
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return hiddens
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def computemutable(repo, visibilityexceptions=None):
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assert not repo.changelog.filteredrevs
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# fast check to avoid revset call on huge repo
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if any(repo._phasecache.phaseroots[1:]):
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getphase = repo._phasecache.phase
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maymutable = filterrevs(repo, 'base')
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return frozenset(r for r in maymutable if getphase(repo, r))
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return frozenset()
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def computeimpactable(repo, visibilityexceptions=None):
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"""Everything impactable by mutable revision
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The immutable filter still have some chance to get invalidated. This will
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happen when:
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- you garbage collect hidden changeset,
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- public phase is moved backward,
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- something is changed in the filtering (this could be fixed)
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This filter out any mutable changeset and any public changeset that may be
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impacted by something happening to a mutable revision.
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This is achieved by filtered everything with a revision number egal or
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higher than the first mutable changeset is filtered."""
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assert not repo.changelog.filteredrevs
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cl = repo.changelog
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firstmutable = len(cl)
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for roots in repo._phasecache.phaseroots[1:]:
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if roots:
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firstmutable = min(firstmutable, min(cl.rev(r) for r in roots))
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# protect from nullrev root
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firstmutable = max(0, firstmutable)
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return frozenset(pycompat.xrange(firstmutable, len(cl)))
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# function to compute filtered set
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#
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# When adding a new filter you MUST update the table at:
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# mercurial.branchmap.subsettable
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# Otherwise your filter will have to recompute all its branches cache
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# from scratch (very slow).
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filtertable = {'visible': computehidden,
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'visible-hidden': computehidden,
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'served': computeunserved,
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'immutable': computemutable,
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'base': computeimpactable}
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def filterrevs(repo, filtername, visibilityexceptions=None):
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"""returns set of filtered revision for this filter name
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visibilityexceptions is a set of revs which must are exceptions for
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hidden-state and must be visible. They are dynamic and hence we should not
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cache it's result"""
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if filtername not in repo.filteredrevcache:
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func = filtertable[filtername]
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if visibilityexceptions:
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return func(repo.unfiltered, visibilityexceptions)
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repo.filteredrevcache[filtername] = func(repo.unfiltered())
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return repo.filteredrevcache[filtername]
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class repoview(object):
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"""Provide a read/write view of a repo through a filtered changelog
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This object is used to access a filtered version of a repository without
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altering the original repository object itself. We can not alter the
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original object for two main reasons:
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- It prevents the use of a repo with multiple filters at the same time. In
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particular when multiple threads are involved.
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- It makes scope of the filtering harder to control.
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This object behaves very closely to the original repository. All attribute
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operations are done on the original repository:
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- An access to `repoview.someattr` actually returns `repo.someattr`,
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- A write to `repoview.someattr` actually sets value of `repo.someattr`,
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- A deletion of `repoview.someattr` actually drops `someattr`
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from `repo.__dict__`.
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The only exception is the `changelog` property. It is overridden to return
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a (surface) copy of `repo.changelog` with some revisions filtered. The
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`filtername` attribute of the view control the revisions that need to be
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filtered. (the fact the changelog is copied is an implementation detail).
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Unlike attributes, this object intercepts all method calls. This means that
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all methods are run on the `repoview` object with the filtered `changelog`
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property. For this purpose the simple `repoview` class must be mixed with
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the actual class of the repository. This ensures that the resulting
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`repoview` object have the very same methods than the repo object. This
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leads to the property below.
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repoview.method() --> repo.__class__.method(repoview)
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The inheritance has to be done dynamically because `repo` can be of any
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subclasses of `localrepo`. Eg: `bundlerepo` or `statichttprepo`.
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"""
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def __init__(self, repo, filtername, visibilityexceptions=None):
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object.__setattr__(self, r'_unfilteredrepo', repo)
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object.__setattr__(self, r'filtername', filtername)
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object.__setattr__(self, r'_clcachekey', None)
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object.__setattr__(self, r'_clcache', None)
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# revs which are exceptions and must not be hidden
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object.__setattr__(self, r'_visibilityexceptions',
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visibilityexceptions)
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# not a propertycache on purpose we shall implement a proper cache later
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@property
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def changelog(self):
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"""return a filtered version of the changeset
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this changelog must not be used for writing"""
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# some cache may be implemented later
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unfi = self._unfilteredrepo
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unfichangelog = unfi.changelog
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# bypass call to changelog.method
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unfiindex = unfichangelog.index
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unfilen = len(unfiindex)
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unfinode = unfiindex[unfilen - 1][7]
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revs = filterrevs(unfi, self.filtername, self._visibilityexceptions)
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cl = self._clcache
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newkey = (unfilen, unfinode, hash(revs), unfichangelog._delayed)
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# if cl.index is not unfiindex, unfi.changelog would be
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# recreated, and our clcache refers to garbage object
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if (cl is not None and
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(cl.index is not unfiindex or newkey != self._clcachekey)):
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cl = None
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# could have been made None by the previous if
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if cl is None:
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cl = copy.copy(unfichangelog)
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cl.filteredrevs = revs
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object.__setattr__(self, r'_clcache', cl)
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object.__setattr__(self, r'_clcachekey', newkey)
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return cl
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def unfiltered(self):
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"""Return an unfiltered version of a repo"""
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return self._unfilteredrepo
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def filtered(self, name, visibilityexceptions=None):
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"""Return a filtered version of a repository"""
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if name == self.filtername and not visibilityexceptions:
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return self
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return self.unfiltered().filtered(name, visibilityexceptions)
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def __repr__(self):
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return r'<%s:%s %r>' % (self.__class__.__name__,
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pycompat.sysstr(self.filtername),
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self.unfiltered())
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# everything access are forwarded to the proxied repo
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def __getattr__(self, attr):
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return getattr(self._unfilteredrepo, attr)
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def __setattr__(self, attr, value):
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return setattr(self._unfilteredrepo, attr, value)
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def __delattr__(self, attr):
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return delattr(self._unfilteredrepo, attr)
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# Python <3.4 easily leaks types via __mro__. See
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# https://bugs.python.org/issue17950. We cache dynamically created types
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# so they won't be leaked on every invocation of repo.filtered().
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_filteredrepotypes = weakref.WeakKeyDictionary()
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def newtype(base):
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"""Create a new type with the repoview mixin and the given base class"""
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if base not in _filteredrepotypes:
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class filteredrepo(repoview, base):
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pass
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_filteredrepotypes[base] = filteredrepo
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return _filteredrepotypes[base]
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