352 lines
13 KiB
Python
352 lines
13 KiB
Python
from django.core.exceptions import ObjectDoesNotExist
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from django.db import models
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from django.utils import formats
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from django.utils.html import escape
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from django.utils.safestring import mark_safe
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from django.utils.text import capfirst
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from django.utils.encoding import force_unicode, smart_unicode, smart_str
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from django.utils.translation import ungettext, ugettext as _
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from django.core.urlresolvers import reverse, NoReverseMatch
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from django.utils.datastructures import SortedDict
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def quote(s):
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"""
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Ensure that primary key values do not confuse the admin URLs by escaping
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any '/', '_' and ':' characters. Similar to urllib.quote, except that the
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quoting is slightly different so that it doesn't get automatically
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unquoted by the Web browser.
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"""
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if not isinstance(s, basestring):
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return s
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res = list(s)
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for i in range(len(res)):
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c = res[i]
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if c in """:/_#?;@&=+$,"<>%\\""":
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res[i] = '_%02X' % ord(c)
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return ''.join(res)
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def unquote(s):
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"""
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Undo the effects of quote(). Based heavily on urllib.unquote().
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"""
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mychr = chr
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myatoi = int
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list = s.split('_')
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res = [list[0]]
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myappend = res.append
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del list[0]
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for item in list:
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if item[1:2]:
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try:
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myappend(mychr(myatoi(item[:2], 16)) + item[2:])
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except ValueError:
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myappend('_' + item)
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else:
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myappend('_' + item)
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return "".join(res)
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def flatten_fieldsets(fieldsets):
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"""Returns a list of field names from an admin fieldsets structure."""
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field_names = []
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for name, opts in fieldsets:
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for field in opts['fields']:
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# type checking feels dirty, but it seems like the best way here
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if type(field) == tuple:
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field_names.extend(field)
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else:
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field_names.append(field)
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return field_names
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def _format_callback(obj, user, admin_site, levels_to_root, perms_needed):
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has_admin = obj.__class__ in admin_site._registry
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opts = obj._meta
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try:
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admin_url = reverse('%s:%s_%s_change'
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% (admin_site.name,
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opts.app_label,
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opts.object_name.lower()),
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None, (quote(obj._get_pk_val()),))
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except NoReverseMatch:
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admin_url = '%s%s/%s/%s/' % ('../'*levels_to_root,
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opts.app_label,
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opts.object_name.lower(),
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quote(obj._get_pk_val()))
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if has_admin:
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p = '%s.%s' % (opts.app_label,
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opts.get_delete_permission())
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if not user.has_perm(p):
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perms_needed.add(opts.verbose_name)
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# Display a link to the admin page.
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return mark_safe(u'%s: <a href="%s">%s</a>' %
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(escape(capfirst(opts.verbose_name)),
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admin_url,
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escape(obj)))
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else:
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# Don't display link to edit, because it either has no
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# admin or is edited inline.
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return u'%s: %s' % (capfirst(opts.verbose_name),
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force_unicode(obj))
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def get_deleted_objects(objs, opts, user, admin_site, levels_to_root=4):
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"""
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Find all objects related to ``objs`` that should also be
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deleted. ``objs`` should be an iterable of objects.
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Returns a nested list of strings suitable for display in the
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template with the ``unordered_list`` filter.
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`levels_to_root` defines the number of directories (../) to reach
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the admin root path. In a change_view this is 4, in a change_list
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view 2.
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This is for backwards compatibility since the options.delete_selected
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method uses this function also from a change_list view.
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This will not be used if we can reverse the URL.
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"""
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collector = NestedObjects()
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for obj in objs:
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# TODO using a private model API!
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obj._collect_sub_objects(collector)
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# TODO This next bit is needed only because GenericRelations are
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# cascade-deleted way down in the internals in
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# DeleteQuery.delete_batch_related, instead of being found by
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# _collect_sub_objects. Refs #12593.
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from django.contrib.contenttypes import generic
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for f in obj._meta.many_to_many:
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if isinstance(f, generic.GenericRelation):
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rel_manager = f.value_from_object(obj)
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for related in rel_manager.all():
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# There's a wierdness here in the case that the
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# generic-related object also has FKs pointing to it
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# from elsewhere. DeleteQuery does not follow those
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# FKs or delete any such objects explicitly (which is
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# probably a bug). Some databases may cascade those
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# deletes themselves, and some won't. So do we report
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# those objects as to-be-deleted? No right answer; for
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# now we opt to report only on objects that Django
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# will explicitly delete, at risk that some further
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# objects will be silently deleted by a
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# referential-integrity-maintaining database.
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collector.add(related.__class__, related.pk, related,
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obj.__class__, obj)
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perms_needed = set()
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to_delete = collector.nested(_format_callback,
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user=user,
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admin_site=admin_site,
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levels_to_root=levels_to_root,
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perms_needed=perms_needed)
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return to_delete, perms_needed
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class NestedObjects(object):
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"""
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A directed acyclic graph collection that exposes the add() API
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expected by Model._collect_sub_objects and can present its data as
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a nested list of objects.
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"""
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def __init__(self):
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# Use object keys of the form (model, pk) because actual model
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# objects may not be unique
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# maps object key to list of child keys
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self.children = SortedDict()
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# maps object key to parent key
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self.parents = SortedDict()
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# maps object key to actual object
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self.seen = SortedDict()
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def add(self, model, pk, obj,
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parent_model=None, parent_obj=None, nullable=False):
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"""
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Add item ``obj`` to the graph. Returns True (and does nothing)
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if the item has been seen already.
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The ``parent_obj`` argument must already exist in the graph; if
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not, it's ignored (but ``obj`` is still added with no
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parent). In any case, Model._collect_sub_objects (for whom
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this API exists) will never pass a parent that hasn't already
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been added itself.
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These restrictions in combination ensure the graph will remain
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acyclic (but can have multiple roots).
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``model``, ``pk``, and ``parent_model`` arguments are ignored
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in favor of the appropriate lookups on ``obj`` and
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``parent_obj``; unlike CollectedObjects, we can't maintain
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independence from the knowledge that we're operating on model
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instances, and we don't want to allow for inconsistency.
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``nullable`` arg is ignored: it doesn't affect how the tree of
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collected objects should be nested for display.
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"""
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model, pk = type(obj), obj._get_pk_val()
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key = model, pk
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if key in self.seen:
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return True
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self.seen.setdefault(key, obj)
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if parent_obj is not None:
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parent_model, parent_pk = (type(parent_obj),
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parent_obj._get_pk_val())
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parent_key = (parent_model, parent_pk)
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if parent_key in self.seen:
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self.children.setdefault(parent_key, list()).append(key)
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self.parents.setdefault(key, parent_key)
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def _nested(self, key, format_callback=None, **kwargs):
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obj = self.seen[key]
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if format_callback:
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ret = [format_callback(obj, **kwargs)]
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else:
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ret = [obj]
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children = []
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for child in self.children.get(key, ()):
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children.extend(self._nested(child, format_callback, **kwargs))
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if children:
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ret.append(children)
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return ret
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def nested(self, format_callback=None, **kwargs):
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"""
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Return the graph as a nested list.
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Passes **kwargs back to the format_callback as kwargs.
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"""
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roots = []
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for key in self.seen.keys():
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if key not in self.parents:
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roots.extend(self._nested(key, format_callback, **kwargs))
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return roots
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def model_format_dict(obj):
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"""
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Return a `dict` with keys 'verbose_name' and 'verbose_name_plural',
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typically for use with string formatting.
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`obj` may be a `Model` instance, `Model` subclass, or `QuerySet` instance.
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"""
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if isinstance(obj, (models.Model, models.base.ModelBase)):
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opts = obj._meta
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elif isinstance(obj, models.query.QuerySet):
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opts = obj.model._meta
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else:
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opts = obj
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return {
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'verbose_name': force_unicode(opts.verbose_name),
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'verbose_name_plural': force_unicode(opts.verbose_name_plural)
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}
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def model_ngettext(obj, n=None):
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"""
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Return the appropriate `verbose_name` or `verbose_name_plural` value for
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`obj` depending on the count `n`.
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`obj` may be a `Model` instance, `Model` subclass, or `QuerySet` instance.
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If `obj` is a `QuerySet` instance, `n` is optional and the length of the
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`QuerySet` is used.
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"""
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if isinstance(obj, models.query.QuerySet):
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if n is None:
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n = obj.count()
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obj = obj.model
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d = model_format_dict(obj)
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singular, plural = d["verbose_name"], d["verbose_name_plural"]
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return ungettext(singular, plural, n or 0)
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def lookup_field(name, obj, model_admin=None):
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opts = obj._meta
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try:
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f = opts.get_field(name)
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except models.FieldDoesNotExist:
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# For non-field values, the value is either a method, property or
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# returned via a callable.
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if callable(name):
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attr = name
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value = attr(obj)
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elif (model_admin is not None and hasattr(model_admin, name) and
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not name == '__str__' and not name == '__unicode__'):
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attr = getattr(model_admin, name)
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value = attr(obj)
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else:
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attr = getattr(obj, name)
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if callable(attr):
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value = attr()
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else:
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value = attr
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f = None
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else:
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attr = None
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value = getattr(obj, name)
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return f, attr, value
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def label_for_field(name, model, model_admin=None, return_attr=False):
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attr = None
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try:
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label = model._meta.get_field_by_name(name)[0].verbose_name
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except models.FieldDoesNotExist:
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if name == "__unicode__":
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label = force_unicode(model._meta.verbose_name)
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elif name == "__str__":
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label = smart_str(model._meta.verbose_name)
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else:
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if callable(name):
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attr = name
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elif model_admin is not None and hasattr(model_admin, name):
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attr = getattr(model_admin, name)
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elif hasattr(model, name):
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attr = getattr(model, name)
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else:
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message = "Unable to lookup '%s' on %s" % (name, model._meta.object_name)
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if model_admin:
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message += " or %s" % (model_admin.__name__,)
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raise AttributeError(message)
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if hasattr(attr, "short_description"):
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label = attr.short_description
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elif callable(attr):
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if attr.__name__ == "<lambda>":
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label = "--"
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else:
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label = attr.__name__
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else:
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label = name
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if return_attr:
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return (label, attr)
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else:
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return label
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def display_for_field(value, field):
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from django.contrib.admin.templatetags.admin_list import _boolean_icon
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from django.contrib.admin.views.main import EMPTY_CHANGELIST_VALUE
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if field.flatchoices:
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return dict(field.flatchoices).get(value, EMPTY_CHANGELIST_VALUE)
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elif value is None:
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return EMPTY_CHANGELIST_VALUE
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elif isinstance(field, models.DateField) or isinstance(field, models.TimeField):
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return formats.localize(value)
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elif isinstance(field, models.BooleanField) or isinstance(field, models.NullBooleanField):
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return _boolean_icon(value)
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elif isinstance(field, models.DecimalField):
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return formats.number_format(value, field.decimal_places)
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elif isinstance(field, models.FloatField):
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return formats.number_format(value)
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else:
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return smart_unicode(value)
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