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250 lines
7.3 KiB
Python
250 lines
7.3 KiB
Python
# Copyright 2015 Hardcoded Software (http://www.hardcoded.net)
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#
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# This software is licensed under the "GPLv3" License as described in the "LICENSE" file,
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# which should be included with this package. The terms are also available at
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# http://www.gnu.org/licenses/gpl-3.0.html
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from collections.abc import MutableSequence
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from hscommon.gui.base import GUIObject
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class Node(MutableSequence):
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"""Pretty bland node implementation to be used in a :class:`Tree`.
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It has a :attr:`parent`, behaves like a list, its content being its children. Link integrity
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is somewhat enforced (adding a child to a node will set the child's :attr:`parent`, but that's
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pretty much as far as we go, integrity-wise. Nodes don't tend to move around much in a GUI
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tree). We don't even check for infinite node loops. Don't play around these grounds too much.
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Nodes are designed to be subclassed and given meaningful attributes (those you'll want to
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display in your tree view), but they all have a :attr:`name`, which is given on initialization.
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"""
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def __init__(self, name):
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self._name = name
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self._parent = None
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self._path = None
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self._children = []
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def __repr__(self):
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return "<Node %r>" % self.name
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# --- MutableSequence overrides
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def __delitem__(self, key):
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self._children.__delitem__(key)
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def __getitem__(self, key):
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return self._children.__getitem__(key)
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def __len__(self):
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return len(self._children)
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def __setitem__(self, key, value):
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self._children.__setitem__(key, value)
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def append(self, node):
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self._children.append(node)
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node._parent = self
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node._path = None
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def insert(self, index, node):
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self._children.insert(index, node)
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node._parent = self
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node._path = None
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# --- Public
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def clear(self):
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"""Clears the node of all its children."""
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del self[:]
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def find(self, predicate, include_self=True):
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"""Return the first child to match ``predicate``.
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See :meth:`findall`.
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"""
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try:
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return next(self.findall(predicate, include_self=include_self))
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except StopIteration:
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return None
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def findall(self, predicate, include_self=True):
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"""Yield all children matching ``predicate``.
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:param predicate: ``f(node) --> bool``
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:param include_self: Whether we can return ``self`` or we return only children.
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"""
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if include_self and predicate(self):
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yield self
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for child in self:
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yield from child.findall(predicate, include_self=True)
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def get_node(self, index_path):
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"""Returns the node at ``index_path``.
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:param index_path: a list of int indexes leading to our node. See :attr:`path`.
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"""
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result = self
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if index_path:
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for index in index_path:
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result = result[index]
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return result
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def get_path(self, target_node):
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"""Returns the :attr:`path` of ``target_node``.
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If ``target_node`` is ``None``, returns ``None``.
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"""
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if target_node is None:
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return None
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return target_node.path
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@property
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def children_count(self):
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"""Same as ``len(self)``."""
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return len(self)
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@property
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def name(self):
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"""Name for the node, supplied on init."""
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return self._name
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@property
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def parent(self):
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"""Parent of the node.
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If ``None``, we have a root node.
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"""
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return self._parent
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@property
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def path(self):
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"""A list of node indexes leading from the root node to ``self``.
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The path of a node is always related to its :attr:`root`. It's the sequences of index that
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we have to take to get to our node, starting from the root. For example, if
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``node.path == [1, 2, 3, 4]``, it means that ``node.root[1][2][3][4] is node``.
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"""
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if self._path is None:
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if self._parent is None:
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self._path = []
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else:
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self._path = self._parent.path + [self._parent.index(self)]
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return self._path
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@property
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def root(self):
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"""Root node of current node.
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To get it, we recursively follow our :attr:`parent` chain until we have ``None``.
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"""
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if self._parent is None:
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return self
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else:
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return self._parent.root
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class Tree(Node, GUIObject):
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"""Cross-toolkit GUI-enabled tree view.
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This class is a bit too thin to be used as a tree view controller out of the box and HS apps
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that subclasses it each add quite a bit of logic to it to make it workable. Making this more
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usable out of the box is a work in progress.
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This class is here (in addition to being a :class:`Node`) mostly to handle selection.
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Subclasses :class:`Node` (it is the root node of all its children) and :class:`.GUIObject`.
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"""
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def __init__(self):
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Node.__init__(self, "")
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GUIObject.__init__(self)
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#: Where we store selected nodes (as a list of :class:`Node`)
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self._selected_nodes = []
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# --- Virtual
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def _select_nodes(self, nodes):
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"""(Virtual) Customize node selection behavior.
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By default, simply set :attr:`_selected_nodes`.
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"""
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self._selected_nodes = nodes
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# --- Override
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def _view_updated(self):
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self.view.refresh()
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def clear(self):
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self._selected_nodes = []
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Node.clear(self)
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# --- Public
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@property
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def selected_node(self):
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"""Currently selected node.
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*:class:`Node`*. *get/set*.
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First of :attr:`selected_nodes`. ``None`` if empty.
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"""
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return self._selected_nodes[0] if self._selected_nodes else None
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@selected_node.setter
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def selected_node(self, node):
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if node is not None:
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self._select_nodes([node])
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else:
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self._select_nodes([])
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@property
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def selected_nodes(self):
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"""List of selected nodes in the tree.
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*List of :class:`Node`*. *get/set*.
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We use nodes instead of indexes to store selection because it's simpler when it's time to
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manage selection of multiple node levels.
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"""
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return self._selected_nodes
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@selected_nodes.setter
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def selected_nodes(self, nodes):
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self._select_nodes(nodes)
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@property
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def selected_path(self):
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"""Currently selected path.
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*:attr:`Node.path`*. *get/set*.
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First of :attr:`selected_paths`. ``None`` if empty.
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"""
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return self.get_path(self.selected_node)
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@selected_path.setter
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def selected_path(self, index_path):
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if index_path is not None:
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self.selected_paths = [index_path]
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else:
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self._select_nodes([])
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@property
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def selected_paths(self):
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"""List of selected paths in the tree.
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*List of :attr:`Node.path`*. *get/set*
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Computed from :attr:`selected_nodes`.
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"""
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return list(map(self.get_path, self._selected_nodes))
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@selected_paths.setter
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def selected_paths(self, index_paths):
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nodes = []
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for path in index_paths:
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try:
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nodes.append(self.get_node(path))
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except IndexError:
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pass
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self._select_nodes(nodes)
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