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655 lines
33 KiB
655 lines
33 KiB
from itertools import chain
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from urllib.parse import quote
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import apt_pkg
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from britney2 import DependencyType
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from britney2.excuse import Excuse
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from britney2.policies import PolicyVerdict
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from britney2.utils import (invalidate_excuses, find_smooth_updateable_binaries, compute_item_name,
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get_dependency_solvers,
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)
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class ExcuseFinder(object):
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def __init__(self, options, suite_info, all_binaries, pkg_universe, policy_engine, mi_factory, hints):
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self.options = options
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self.suite_info = suite_info
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self.all_binaries = all_binaries
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self.pkg_universe = pkg_universe
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self._policy_engine = policy_engine
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self._migration_item_factory = mi_factory
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self.hints = hints
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self.excuses = {}
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def _excuse_unsat_deps(self, pkg, src, arch, source_suite, excuse, get_dependency_solvers=get_dependency_solvers):
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"""Find unsatisfied dependencies for a binary package
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This method analyzes the dependencies of the binary package specified
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by the parameter `pkg', built from the source package `src', for the
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architecture `arch' within the suite `suite'. If the dependency can't
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be satisfied in testing and/or unstable, it updates the excuse passed
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as parameter.
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"""
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# retrieve the binary package from the specified suite and arch
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target_suite = self.suite_info.target_suite
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binaries_s_a = source_suite.binaries[arch]
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provides_s_a = source_suite.provides_table[arch]
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binaries_t_a = target_suite.binaries[arch]
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provides_t_a = target_suite.provides_table[arch]
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binary_u = binaries_s_a[pkg]
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source_s = source_suite.sources[binary_u.source]
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if (binary_u.source_version != source_s.version):
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# we don't want cruft to block packages, so if this is cruft, we
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# can simply ignore it; if the cruft would migrate to testing, the
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# installability check will catch missing deps
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return True
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# local copies for better performance
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parse_depends = apt_pkg.parse_depends
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# analyze the dependency fields (if present)
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deps = binary_u.depends
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if not deps:
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return True
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is_all_ok = True
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# for every dependency block (formed as conjunction of disjunction)
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for block, block_txt in zip(parse_depends(deps, False), deps.split(',')):
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# if the block is satisfied in testing, then skip the block
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packages = get_dependency_solvers(block, binaries_t_a, provides_t_a)
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if packages:
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for p in packages:
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if p.pkg_id.package_name not in binaries_s_a:
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continue
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excuse.add_sane_dep(p.source)
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continue
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# check if the block can be satisfied in the source suite, and list the solving packages
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packages = get_dependency_solvers(block, binaries_s_a, provides_s_a)
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packages = sorted(p.source for p in packages)
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# if the dependency can be satisfied by the same source package, skip the block:
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# obviously both binary packages will enter testing together
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if src in packages:
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continue
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# if no package can satisfy the dependency, add this information to the excuse
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if not packages:
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excuse.addhtml("%s/%s unsatisfiable Depends: %s" % (pkg, arch, block_txt.strip()))
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excuse.add_unsatisfiable_dep(block_txt.strip(), arch)
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excuse.addreason("depends")
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excuse.add_unsatisfiable_on_arch(arch)
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if arch not in self.options.break_arches:
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is_all_ok = False
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continue
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# for the solving packages, update the excuse to add the dependencies
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if arch not in self.options.break_arches:
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sources_t = target_suite.sources
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sources_s = source_suite.sources
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for p in packages:
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item_name = compute_item_name(sources_t, sources_s, p, arch)
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excuse.add_dependency(DependencyType.DEPENDS, item_name, arch)
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else:
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for p in packages:
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excuse.add_break_dep(p, arch)
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return is_all_ok
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def _should_remove_source(self, item):
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"""Check if a source package should be removed from testing
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This method checks if a source package should be removed from the
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target suite; this happens if the source package is not
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present in the primary source suite anymore.
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It returns True if the package can be removed, False otherwise.
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In the former case, a new excuse is appended to the object
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attribute excuses.
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"""
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# if the source package is available in unstable, then do nothing
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source_suite = self.suite_info.primary_source_suite
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pkg = item.package
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if pkg in source_suite.sources:
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return False
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# otherwise, add a new excuse for its removal
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src = item.suite.sources[pkg]
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excuse = Excuse(item.name)
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excuse.addhtml("Package not in %s, will try to remove" % source_suite.name)
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excuse.set_vers(src.version, None)
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src.maintainer and excuse.set_maint(src.maintainer)
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src.section and excuse.set_section(src.section)
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# if the package is blocked, skip it
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for hint in self.hints.search('block', package=pkg, removal=True):
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excuse.addhtml("Not touching package, as requested by %s "
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"(contact debian-release if update is needed)" % hint.user)
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excuse.addreason("block")
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self.excuses[excuse.name] = excuse
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return False
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excuse.policy_verdict = PolicyVerdict.PASS
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self.excuses[excuse.name] = excuse
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return True
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def _should_upgrade_srcarch(self, item):
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"""Check if a set of binary packages should be upgraded
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This method checks if the binary packages produced by the source
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package on the given architecture should be upgraded; this can
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happen also if the migration is a binary-NMU for the given arch.
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It returns False if the given packages don't need to be upgraded,
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True otherwise. In the former case, a new excuse is appended to
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the object attribute excuses.
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"""
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# retrieve the source packages for testing and suite
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target_suite = self.suite_info.target_suite
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source_suite = item.suite
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src = item.package
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arch = item.architecture
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source_t = target_suite.sources[src]
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source_u = source_suite.sources[src]
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excuse = Excuse(item.name)
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excuse.set_vers(source_t.version, source_t.version)
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source_u.maintainer and excuse.set_maint(source_u.maintainer)
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source_u.section and excuse.set_section(source_u.section)
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# if there is a `remove' hint and the requested version is the same as the
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# version in testing, then stop here and return False
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# (as a side effect, a removal may generate such excuses for both the source
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# package and its binary packages on each architecture)
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for hint in self.hints.search('remove', package=src, version=source_t.version):
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excuse.add_hint(hint)
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excuse.addhtml("Removal request by %s" % (hint.user))
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excuse.addhtml("Trying to remove package, not update it")
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self.excuses[excuse.name] = excuse
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return False
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# the starting point is that there is nothing wrong and nothing worth doing
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anywrongver = False
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anyworthdoing = False
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packages_t_a = target_suite.binaries[arch]
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packages_s_a = source_suite.binaries[arch]
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# for every binary package produced by this source in unstable for this architecture
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for pkg_id in sorted(x for x in source_u.binaries if x.architecture == arch):
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pkg_name = pkg_id.package_name
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# retrieve the testing (if present) and unstable corresponding binary packages
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binary_t = packages_t_a[pkg_name] if pkg_name in packages_t_a else None
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binary_u = packages_s_a[pkg_name]
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# this is the source version for the new binary package
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pkgsv = binary_u.source_version
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# if the new binary package is architecture-independent, then skip it
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if binary_u.architecture == 'all':
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if pkg_id not in source_t.binaries:
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# only add a note if the arch:all does not match the expected version
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excuse.addhtml("Ignoring %s %s (from %s) as it is arch: all" % (pkg_name, binary_u.version, pkgsv))
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continue
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# if the new binary package is not from the same source as the testing one, then skip it
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# this implies that this binary migration is part of a source migration
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if source_u.version == pkgsv and source_t.version != pkgsv:
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anywrongver = True
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excuse.addhtml("From wrong source: %s %s (%s not %s)" % (pkg_name, binary_u.version, pkgsv,
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source_t.version))
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continue
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# cruft in unstable
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if source_u.version != pkgsv and source_t.version != pkgsv:
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if self.options.ignore_cruft:
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excuse.addhtml("Old cruft: %s %s (but ignoring cruft, so nevermind)" % (pkg_name, pkgsv))
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else:
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anywrongver = True
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excuse.addhtml("Old cruft: %s %s" % (pkg_name, pkgsv))
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continue
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# if the source package has been updated in unstable and this is a binary migration, skip it
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# (the binaries are now out-of-date)
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if source_t.version == pkgsv and source_t.version != source_u.version:
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anywrongver = True
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excuse.addhtml("From wrong source: %s %s (%s not %s)" % (pkg_name, binary_u.version, pkgsv,
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source_u.version))
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continue
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# find unsatisfied dependencies for the new binary package
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self._excuse_unsat_deps(pkg_name, src, arch, source_suite, excuse)
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# if the binary is not present in testing, then it is a new binary;
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# in this case, there is something worth doing
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if not binary_t:
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excuse.addhtml("New binary: %s (%s)" % (pkg_name, binary_u.version))
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anyworthdoing = True
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continue
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# at this point, the binary package is present in testing, so we can compare
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# the versions of the packages ...
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vcompare = apt_pkg.version_compare(binary_t.version, binary_u.version)
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# ... if updating would mean downgrading, then stop here: there is something wrong
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if vcompare > 0:
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anywrongver = True
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excuse.addhtml("Not downgrading: %s (%s to %s)" % (pkg_name, binary_t.version, binary_u.version))
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break
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# ... if updating would mean upgrading, then there is something worth doing
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elif vcompare < 0:
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excuse.addhtml("Updated binary: %s (%s to %s)" % (pkg_name, binary_t.version, binary_u.version))
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anyworthdoing = True
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srcv = source_u.version
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same_source = source_t.version == srcv
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primary_source_suite = self.suite_info.primary_source_suite
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is_primary_source = source_suite == primary_source_suite
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# if there is nothing wrong and there is something worth doing or the source
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# package is not fake, then check what packages should be removed
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if not anywrongver and (anyworthdoing or not source_u.is_fakesrc):
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# we want to remove binaries that are no longer produced by the
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# new source, but there are some special cases:
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# - if this is binary-only (same_source) and not from the primary
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# source, we don't do any removals:
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# binNMUs in *pu on some architectures would otherwise result in
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# the removal of binaries on other architectures
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# - for the primary source, smooth binaries in the target suite
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# are not considered for removal
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if not same_source or is_primary_source:
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smoothbins = set()
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if is_primary_source:
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binaries_t = target_suite.binaries
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possible_smooth_updates = [p for p in source_t.binaries if p.architecture == arch]
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smoothbins = find_smooth_updateable_binaries(possible_smooth_updates,
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source_u,
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self.pkg_universe,
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target_suite,
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binaries_t,
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source_suite.binaries,
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frozenset(),
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self.options.smooth_updates)
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# for every binary package produced by this source in testing for this architecture
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for pkg_id in sorted(x for x in source_t.binaries if x.architecture == arch):
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pkg = pkg_id.package_name
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# if the package is architecture-independent, then ignore it
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tpkg_data = packages_t_a[pkg]
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if tpkg_data.architecture == 'all':
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if pkg_id not in source_u.binaries:
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# only add a note if the arch:all does not match the expected version
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excuse.addhtml("Ignoring removal of %s as it is arch: all" % (pkg))
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continue
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# if the package is not produced by the new source package, then remove it from testing
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if pkg not in packages_s_a:
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excuse.addhtml("Removed binary: %s %s" % (pkg, tpkg_data.version))
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# the removed binary is only interesting if this is a binary-only migration,
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# as otherwise the updated source will already cause the binary packages
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# to be updated
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if same_source and pkg_id not in smoothbins:
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# Special-case, if the binary is a candidate for a smooth update, we do not consider
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# it "interesting" on its own. This case happens quite often with smooth updatable
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# packages, where the old binary "survives" a full run because it still has
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# reverse dependencies.
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anyworthdoing = True
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if not anyworthdoing:
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# nothing worth doing, we don't add an excuse to the list, we just return false
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return False
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# there is something worth doing
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# we assume that this package will be ok, if not invalidated below
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excuse.policy_verdict = PolicyVerdict.PASS
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# if there is something something wrong, reject this package
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if anywrongver:
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excuse.policy_verdict = PolicyVerdict.REJECTED_PERMANENTLY
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self._policy_engine.apply_srcarch_policies(source_suite, src, arch, source_t, source_u, excuse)
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self.excuses[excuse.name] = excuse
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return excuse.is_valid
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def _should_upgrade_src(self, item):
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"""Check if source package should be upgraded
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This method checks if a source package should be upgraded. The analysis
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is performed for the source package specified by the `src' parameter,
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for the distribution `source_suite'.
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It returns False if the given package doesn't need to be upgraded,
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True otherwise. In the former case, a new excuse is appended to
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the object attribute excuses.
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"""
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src = item.package
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source_suite = item.suite
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suite_name = source_suite.name
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source_u = source_suite.sources[src]
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if source_u.is_fakesrc:
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# it is a fake package created to satisfy Britney implementation details; silently ignore it
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return False
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target_suite = self.suite_info.target_suite
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# retrieve the source packages for testing (if available) and suite
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if src in target_suite.sources:
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source_t = target_suite.sources[src]
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# if testing and unstable have the same version, then this is a candidate for binary-NMUs only
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if apt_pkg.version_compare(source_t.version, source_u.version) == 0:
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return False
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else:
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source_t = None
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excuse = Excuse(item.name)
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excuse.set_vers(source_t and source_t.version or None, source_u.version)
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source_u.maintainer and excuse.set_maint(source_u.maintainer)
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source_u.section and excuse.set_section(source_u.section)
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# if the version in unstable is older, then stop here with a warning in the excuse and return False
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if source_t and apt_pkg.version_compare(source_u.version, source_t.version) < 0:
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excuse.addhtml("ALERT: %s is newer in the target suite (%s %s)" % (src, source_t.version, source_u.version))
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self.excuses[excuse.name] = excuse
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excuse.addreason("newerintesting")
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return False
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# the starting point is that we will update the candidate
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excuse.policy_verdict = PolicyVerdict.PASS
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# if there is a `remove' hint and the requested version is the same as the
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# version in testing, then stop here and return False
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for hint in self.hints.search('remove', package=src):
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if source_t and source_t.version == hint.version or \
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source_u.version == hint.version:
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excuse.add_hint(hint)
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excuse.addhtml("Removal request by %s" % (hint.user))
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excuse.addhtml("Trying to remove package, not update it")
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excuse.policy_verdict = PolicyVerdict.REJECTED_PERMANENTLY
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break
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all_binaries = self.all_binaries
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for pkg_id in sorted(source_u.binaries):
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is_valid = self._excuse_unsat_deps(pkg_id.package_name, src, pkg_id.architecture, source_suite, excuse)
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if is_valid:
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continue
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binary_u = all_binaries[pkg_id]
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# There is an issue with the package. If it is arch:any, then _excuse_unsat_deps will have
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# handled everything for us correctly. However, arch:all have some special-casing IRT
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# nobreakall that we deal with ourselves here.
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if binary_u.architecture == 'all' and pkg_id.architecture in self.options.nobreakall_arches:
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# We sometimes forgive uninstallable arch:all packages on nobreakall architectures
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# (e.g. we sometimes force-hint in arch:all packages that are only installable on
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# on a subset of all nobreak architectures).
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# This forgivness is only done if the package is already in testing AND it is broken
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# in testing on this architecture already. Anything else would be a regression
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if target_suite.is_pkg_in_the_suite(pkg_id) and not target_suite.is_installable(pkg_id):
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# It is a regression.
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excuse.policy_verdict = PolicyVerdict.REJECTED_PERMANENTLY
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# at this point, we check the status of the builds on all the supported architectures
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# to catch the out-of-date ones
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archs_to_consider = list(self.options.architectures)
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archs_to_consider.append('all')
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for arch in archs_to_consider:
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oodbins = {}
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uptodatebins = False
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# for every binary package produced by this source in the suite for this architecture
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if arch == 'all':
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consider_binaries = source_u.binaries
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else:
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# Will also include arch:all for the given architecture (they are filtered out
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# below)
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consider_binaries = sorted(x for x in source_u.binaries if x.architecture == arch)
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for pkg_id in consider_binaries:
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pkg = pkg_id.package_name
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# retrieve the binary package and its source version
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binary_u = all_binaries[pkg_id]
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pkgsv = binary_u.source_version
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# arch:all packages are treated separately from arch:arch
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if binary_u.architecture != arch:
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continue
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# if it wasn't built by the same source, it is out-of-date
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# if there is at least one binary on this arch which is
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# up-to-date, there is a build on this arch
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if source_u.version != pkgsv:
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if pkgsv not in oodbins:
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oodbins[pkgsv] = set()
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oodbins[pkgsv].add(pkg)
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excuse.add_old_binary(pkg, pkgsv)
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continue
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else:
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uptodatebins = True
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# if there are out-of-date packages, warn about them in the excuse and set excuse.is_valid
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# to False to block the update; if the architecture where the package is out-of-date is
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# in the `outofsync_arches' list, then do not block the update
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if oodbins:
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oodtxt = ""
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for v in sorted(oodbins):
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if oodtxt:
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oodtxt = oodtxt + "; "
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oodtxt = oodtxt + "%s (from <a href=\"https://buildd.debian.org/status/logs.php?" \
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"arch=%s&pkg=%s&ver=%s\" target=\"_blank\">%s</a>)" % \
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(", ".join(sorted(oodbins[v])), quote(arch), quote(src), quote(v), v)
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if uptodatebins:
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text = "old binaries left on <a href=\"https://buildd.debian.org/status/logs.php?" \
|
|
"arch=%s&pkg=%s&ver=%s\" target=\"_blank\">%s</a>: %s" % \
|
|
(quote(arch), quote(src), quote(source_u.version), arch, oodtxt)
|
|
else:
|
|
text = "missing build on <a href=\"https://buildd.debian.org/status/logs.php?" \
|
|
"arch=%s&pkg=%s&ver=%s\" target=\"_blank\">%s</a>: %s" % \
|
|
(quote(arch), quote(src), quote(source_u.version), arch, oodtxt)
|
|
|
|
if arch in self.options.outofsync_arches:
|
|
text = text + " (but %s isn't keeping up, so nevermind)" % (arch)
|
|
if not uptodatebins:
|
|
excuse.missing_build_on_ood_arch(arch)
|
|
else:
|
|
if uptodatebins:
|
|
if self.options.ignore_cruft:
|
|
text = text + " (but ignoring cruft, so nevermind)"
|
|
else:
|
|
excuse.policy_verdict = PolicyVerdict.REJECTED_PERMANENTLY
|
|
else:
|
|
excuse.policy_verdict = PolicyVerdict.REJECTED_CANNOT_DETERMINE_IF_PERMANENT
|
|
excuse.missing_build_on_arch(arch)
|
|
|
|
excuse.addhtml(text)
|
|
|
|
# if the source package has no binaries, set is_valid to False to block the update
|
|
if not source_u.binaries:
|
|
excuse.addhtml("%s has no binaries on any arch" % src)
|
|
excuse.addreason("no-binaries")
|
|
excuse.policy_verdict = PolicyVerdict.REJECTED_PERMANENTLY
|
|
|
|
self._policy_engine.apply_src_policies(source_suite, src, source_t, source_u, excuse)
|
|
|
|
if source_suite.suite_class.is_additional_source and source_t:
|
|
# o-o-d(ish) checks for (t-)p-u
|
|
# This only makes sense if the package is actually in testing.
|
|
for arch in self.options.architectures:
|
|
# if the package in testing has no binaries on this
|
|
# architecture, it can't be out-of-date
|
|
if not any(x for x in source_t.binaries
|
|
if x.architecture == arch and all_binaries[x].architecture != 'all'):
|
|
continue
|
|
|
|
# if the (t-)p-u package has produced any binaries on
|
|
# this architecture then we assume it's ok. this allows for
|
|
# uploads to (t-)p-u which intentionally drop binary
|
|
# packages
|
|
if any(x for x in source_suite.binaries[arch].values()
|
|
if x.source == src and x.source_version == source_u.version and x.architecture != 'all'):
|
|
continue
|
|
|
|
# TODO: Find a way to avoid hardcoding pu/stable relation.
|
|
if suite_name == 'pu':
|
|
base = 'stable'
|
|
else:
|
|
base = target_suite.name
|
|
text = "Not yet built on <a href=\"https://buildd.debian.org/status/logs.php?arch=%s&pkg=%s&ver=%s&suite=%s\" target=\"_blank\">%s</a> (relative to target suite)" % (quote(arch), quote(src), quote(source_u.version), base, arch)
|
|
|
|
if arch in self.options.outofsync_arches:
|
|
text = text + " (but %s isn't keeping up, so never mind)" % (arch)
|
|
excuse.missing_build_on_ood_arch(arch)
|
|
else:
|
|
excuse.policy_verdict = PolicyVerdict.REJECTED_CANNOT_DETERMINE_IF_PERMANENT
|
|
excuse.missing_build_on_arch(arch)
|
|
|
|
excuse.addhtml(text)
|
|
|
|
# check if there is a `force' hint for this package, which allows it to go in even if it is not updateable
|
|
forces = self.hints.search('force', package=src, version=source_u.version)
|
|
if forces:
|
|
# force() updates the final verdict for us
|
|
changed_state = excuse.force()
|
|
if changed_state:
|
|
excuse.addhtml("Should ignore, but forced by %s" % (forces[0].user))
|
|
|
|
self.excuses[excuse.name] = excuse
|
|
return excuse.is_valid
|
|
|
|
def _compute_excuses_and_initial_actionable_items(self):
|
|
# list of local methods and variables (for better performance)
|
|
excuses = self.excuses
|
|
suite_info = self.suite_info
|
|
pri_source_suite = suite_info.primary_source_suite
|
|
architectures = self.options.architectures
|
|
should_remove_source = self._should_remove_source
|
|
should_upgrade_srcarch = self._should_upgrade_srcarch
|
|
should_upgrade_src = self._should_upgrade_src
|
|
mi_factory = self._migration_item_factory
|
|
|
|
sources_ps = pri_source_suite.sources
|
|
sources_t = suite_info.target_suite.sources
|
|
|
|
# this set will contain the packages which are valid candidates;
|
|
# if a package is going to be removed, it will have a "-" prefix
|
|
actionable_items = set()
|
|
actionable_items_add = actionable_items.add # Every . in a loop slows it down
|
|
|
|
# for every source package in testing, check if it should be removed
|
|
for pkg in sources_t:
|
|
if pkg not in sources_ps:
|
|
item = mi_factory.parse_item("-" + pkg, versioned=False, auto_correct=False)
|
|
if should_remove_source(item):
|
|
actionable_items_add(item.name)
|
|
|
|
# for every source package in the source suites, check if it should be upgraded
|
|
for suite in chain((pri_source_suite, *suite_info.additional_source_suites)):
|
|
sources_s = suite.sources
|
|
item_suffix = "_%s" % suite.excuses_suffix if suite.excuses_suffix else ''
|
|
for pkg in sources_s:
|
|
src_s_data = sources_s[pkg]
|
|
if src_s_data.is_fakesrc:
|
|
continue
|
|
src_t_data = sources_t.get(pkg)
|
|
|
|
if src_t_data is None or apt_pkg.version_compare(src_s_data.version, src_t_data.version) != 0:
|
|
item = mi_factory.parse_item("%s%s" % (pkg, item_suffix), versioned=False, auto_correct=False)
|
|
# check if the source package should be upgraded
|
|
if should_upgrade_src(item):
|
|
actionable_items_add(item.name)
|
|
else:
|
|
# package has same version in source and target suite; check if any of the
|
|
# binaries have changed on the various architectures
|
|
for arch in architectures:
|
|
item = mi_factory.parse_item("%s/%s%s" % (pkg, arch, item_suffix),
|
|
versioned=False, auto_correct=False)
|
|
if should_upgrade_srcarch(item):
|
|
actionable_items_add(item.name)
|
|
|
|
# process the `remove' hints, if the given package is not yet in actionable_items
|
|
for hint in self.hints['remove']:
|
|
src = hint.package
|
|
if src not in sources_t or src in actionable_items or ("-" + src in actionable_items):
|
|
continue
|
|
|
|
# check if the version specified in the hint is the same as the considered package
|
|
tsrcv = sources_t[src].version
|
|
if tsrcv != hint.version:
|
|
continue
|
|
|
|
# add the removal of the package to actionable_items and build a new excuse
|
|
excuse = Excuse("-%s" % (src))
|
|
excuse.set_vers(tsrcv, None)
|
|
excuse.addhtml("Removal request by %s" % (hint.user))
|
|
# if the removal of the package is blocked, skip it
|
|
blocked = False
|
|
for blockhint in self.hints.search('block', package=src, removal=True):
|
|
excuse.addhtml("Not removing package, due to block hint by %s "
|
|
"(contact debian-release if update is needed)" % blockhint.user)
|
|
excuse.addreason("block")
|
|
blocked = True
|
|
|
|
if blocked:
|
|
excuses[excuse.name] = excuse
|
|
continue
|
|
|
|
actionable_items_add("-%s" % (src))
|
|
excuse.addhtml("Package is broken, will try to remove")
|
|
excuse.add_hint(hint)
|
|
# Using "PASS" here as "Created by a hint" != "accepted due to hint". In a future
|
|
# where there might be policy checks on removals, it would make sense to distinguish
|
|
# those two states. Not sure that future will ever be.
|
|
excuse.policy_verdict = PolicyVerdict.PASS
|
|
excuses[excuse.name] = excuse
|
|
|
|
return actionable_items
|
|
|
|
def find_actionable_excuses(self):
|
|
excuses = self.excuses
|
|
actionable_items = self._compute_excuses_and_initial_actionable_items()
|
|
|
|
# extract the not considered packages, which are in the excuses but not in upgrade_me
|
|
unconsidered = {ename for ename in excuses if ename not in actionable_items}
|
|
|
|
# invalidate impossible excuses
|
|
for e in excuses.values():
|
|
# parts[0] == package name
|
|
# parts[1] == optional architecture
|
|
parts = e.name.split('/')
|
|
for d in sorted(e.all_deps):
|
|
for deptype in e.all_deps[d]:
|
|
ok = False
|
|
# source -> source dependency; both packages must have
|
|
# valid excuses
|
|
if d in actionable_items or d in unconsidered:
|
|
ok = True
|
|
# if the excuse is for a binNMU, also consider d/$arch as a
|
|
# valid excuse
|
|
elif len(parts) == 2:
|
|
bd = '%s/%s' % (d, parts[1])
|
|
if bd in actionable_items or bd in unconsidered:
|
|
ok = True
|
|
# if the excuse is for a source package, check each of the
|
|
# architectures on which the excuse lists a dependency on d,
|
|
# and consider the excuse valid if it is possible on each
|
|
# architecture
|
|
else:
|
|
arch_ok = True
|
|
for arch in e.all_deps[d][deptype]:
|
|
bd = '%s/%s' % (d, arch)
|
|
if bd not in actionable_items and bd not in unconsidered:
|
|
arch_ok = False
|
|
break
|
|
if arch_ok:
|
|
ok = True
|
|
if not ok:
|
|
e.addhtml("Impossible %s: %s -> %s" % (deptype, e.name, d))
|
|
e.addreason(deptype.get_reason())
|
|
|
|
invalidate_excuses(excuses, actionable_items, unconsidered)
|
|
|
|
mi_factory = self._migration_item_factory
|
|
actionable_items = {mi_factory.parse_item(x, versioned=False, auto_correct=False) for x in actionable_items}
|
|
return excuses, actionable_items
|