634 lines
21 KiB
Python
634 lines
21 KiB
Python
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"""SCons.Executor
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A module for executing actions with specific lists of target and source
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Nodes.
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"""
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#
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# Copyright (c) 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010 The SCons Foundation
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#
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# Permission is hereby granted, free of charge, to any person obtaining
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# a copy of this software and associated documentation files (the
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# "Software"), to deal in the Software without restriction, including
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# without limitation the rights to use, copy, modify, merge, publish,
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# distribute, sublicense, and/or sell copies of the Software, and to
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# permit persons to whom the Software is furnished to do so, subject to
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# the following conditions:
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#
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# The above copyright notice and this permission notice shall be included
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# in all copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY
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# KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE
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# WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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# NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
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# LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
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# OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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# WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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__revision__ = "src/engine/SCons/Executor.py 5134 2010/08/16 23:02:40 bdeegan"
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import collections
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from SCons.Debug import logInstanceCreation
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import SCons.Errors
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import SCons.Memoize
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class Batch(object):
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"""Remembers exact association between targets
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and sources of executor."""
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def __init__(self, targets=[], sources=[]):
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self.targets = targets
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self.sources = sources
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class TSList(collections.UserList):
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"""A class that implements $TARGETS or $SOURCES expansions by wrapping
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an executor Method. This class is used in the Executor.lvars()
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to delay creation of NodeList objects until they're needed.
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Note that we subclass collections.UserList purely so that the
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is_Sequence() function will identify an object of this class as
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a list during variable expansion. We're not really using any
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collections.UserList methods in practice.
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"""
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def __init__(self, func):
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self.func = func
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def __getattr__(self, attr):
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nl = self.func()
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return getattr(nl, attr)
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def __getitem__(self, i):
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nl = self.func()
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return nl[i]
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def __getslice__(self, i, j):
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nl = self.func()
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i = max(i, 0); j = max(j, 0)
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return nl[i:j]
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def __str__(self):
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nl = self.func()
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return str(nl)
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def __repr__(self):
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nl = self.func()
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return repr(nl)
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class TSObject(object):
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"""A class that implements $TARGET or $SOURCE expansions by wrapping
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an Executor method.
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"""
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def __init__(self, func):
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self.func = func
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def __getattr__(self, attr):
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n = self.func()
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return getattr(n, attr)
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def __str__(self):
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n = self.func()
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if n:
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return str(n)
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return ''
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def __repr__(self):
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n = self.func()
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if n:
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return repr(n)
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return ''
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def rfile(node):
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"""
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A function to return the results of a Node's rfile() method,
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if it exists, and the Node itself otherwise (if it's a Value
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Node, e.g.).
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"""
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try:
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rfile = node.rfile
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except AttributeError:
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return node
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else:
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return rfile()
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class Executor(object):
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"""A class for controlling instances of executing an action.
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This largely exists to hold a single association of an action,
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environment, list of environment override dictionaries, targets
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and sources for later processing as needed.
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"""
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if SCons.Memoize.use_memoizer:
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__metaclass__ = SCons.Memoize.Memoized_Metaclass
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memoizer_counters = []
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def __init__(self, action, env=None, overridelist=[{}],
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targets=[], sources=[], builder_kw={}):
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if __debug__: logInstanceCreation(self, 'Executor.Executor')
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self.set_action_list(action)
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self.pre_actions = []
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self.post_actions = []
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self.env = env
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self.overridelist = overridelist
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if targets or sources:
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self.batches = [Batch(targets[:], sources[:])]
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else:
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self.batches = []
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self.builder_kw = builder_kw
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self._memo = {}
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def get_lvars(self):
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try:
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return self.lvars
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except AttributeError:
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self.lvars = {
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'CHANGED_SOURCES' : TSList(self._get_changed_sources),
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'CHANGED_TARGETS' : TSList(self._get_changed_targets),
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'SOURCE' : TSObject(self._get_source),
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'SOURCES' : TSList(self._get_sources),
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'TARGET' : TSObject(self._get_target),
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'TARGETS' : TSList(self._get_targets),
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'UNCHANGED_SOURCES' : TSList(self._get_unchanged_sources),
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'UNCHANGED_TARGETS' : TSList(self._get_unchanged_targets),
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}
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return self.lvars
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def _get_changes(self):
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cs = []
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ct = []
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us = []
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ut = []
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for b in self.batches:
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if b.targets[0].is_up_to_date():
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us.extend(list(map(rfile, b.sources)))
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ut.extend(b.targets)
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else:
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cs.extend(list(map(rfile, b.sources)))
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ct.extend(b.targets)
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self._changed_sources_list = SCons.Util.NodeList(cs)
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self._changed_targets_list = SCons.Util.NodeList(ct)
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self._unchanged_sources_list = SCons.Util.NodeList(us)
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self._unchanged_targets_list = SCons.Util.NodeList(ut)
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def _get_changed_sources(self, *args, **kw):
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try:
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return self._changed_sources_list
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except AttributeError:
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self._get_changes()
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return self._changed_sources_list
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def _get_changed_targets(self, *args, **kw):
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try:
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return self._changed_targets_list
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except AttributeError:
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self._get_changes()
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return self._changed_targets_list
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def _get_source(self, *args, **kw):
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#return SCons.Util.NodeList([rfile(self.batches[0].sources[0]).get_subst_proxy()])
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return rfile(self.batches[0].sources[0]).get_subst_proxy()
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def _get_sources(self, *args, **kw):
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return SCons.Util.NodeList([rfile(n).get_subst_proxy() for n in self.get_all_sources()])
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def _get_target(self, *args, **kw):
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#return SCons.Util.NodeList([self.batches[0].targets[0].get_subst_proxy()])
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return self.batches[0].targets[0].get_subst_proxy()
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def _get_targets(self, *args, **kw):
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return SCons.Util.NodeList([n.get_subst_proxy() for n in self.get_all_targets()])
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def _get_unchanged_sources(self, *args, **kw):
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try:
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return self._unchanged_sources_list
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except AttributeError:
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self._get_changes()
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return self._unchanged_sources_list
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def _get_unchanged_targets(self, *args, **kw):
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try:
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return self._unchanged_targets_list
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except AttributeError:
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self._get_changes()
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return self._unchanged_targets_list
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def get_action_targets(self):
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if not self.action_list:
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return []
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targets_string = self.action_list[0].get_targets(self.env, self)
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if targets_string[0] == '$':
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targets_string = targets_string[1:]
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return self.get_lvars()[targets_string]
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def set_action_list(self, action):
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import SCons.Util
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if not SCons.Util.is_List(action):
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if not action:
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import SCons.Errors
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raise SCons.Errors.UserError("Executor must have an action.")
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action = [action]
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self.action_list = action
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def get_action_list(self):
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return self.pre_actions + self.action_list + self.post_actions
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def get_all_targets(self):
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"""Returns all targets for all batches of this Executor."""
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result = []
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for batch in self.batches:
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result.extend(batch.targets)
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return result
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def get_all_sources(self):
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"""Returns all sources for all batches of this Executor."""
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result = []
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for batch in self.batches:
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result.extend(batch.sources)
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return result
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def get_all_children(self):
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"""Returns all unique children (dependencies) for all batches
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of this Executor.
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The Taskmaster can recognize when it's already evaluated a
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Node, so we don't have to make this list unique for its intended
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canonical use case, but we expect there to be a lot of redundancy
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(long lists of batched .cc files #including the same .h files
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over and over), so removing the duplicates once up front should
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save the Taskmaster a lot of work.
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"""
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result = SCons.Util.UniqueList([])
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for target in self.get_all_targets():
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result.extend(target.children())
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return result
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def get_all_prerequisites(self):
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"""Returns all unique (order-only) prerequisites for all batches
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of this Executor.
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"""
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result = SCons.Util.UniqueList([])
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for target in self.get_all_targets():
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result.extend(target.prerequisites)
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return result
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def get_action_side_effects(self):
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"""Returns all side effects for all batches of this
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Executor used by the underlying Action.
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"""
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result = SCons.Util.UniqueList([])
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for target in self.get_action_targets():
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result.extend(target.side_effects)
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return result
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memoizer_counters.append(SCons.Memoize.CountValue('get_build_env'))
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def get_build_env(self):
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"""Fetch or create the appropriate build Environment
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for this Executor.
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"""
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try:
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return self._memo['get_build_env']
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except KeyError:
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pass
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# Create the build environment instance with appropriate
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# overrides. These get evaluated against the current
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# environment's construction variables so that users can
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# add to existing values by referencing the variable in
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# the expansion.
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overrides = {}
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for odict in self.overridelist:
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overrides.update(odict)
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import SCons.Defaults
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env = self.env or SCons.Defaults.DefaultEnvironment()
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build_env = env.Override(overrides)
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self._memo['get_build_env'] = build_env
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return build_env
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def get_build_scanner_path(self, scanner):
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"""Fetch the scanner path for this executor's targets and sources.
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"""
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env = self.get_build_env()
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try:
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cwd = self.batches[0].targets[0].cwd
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except (IndexError, AttributeError):
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cwd = None
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return scanner.path(env, cwd,
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self.get_all_targets(),
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self.get_all_sources())
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def get_kw(self, kw={}):
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result = self.builder_kw.copy()
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result.update(kw)
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result['executor'] = self
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return result
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def do_nothing(self, target, kw):
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return 0
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def do_execute(self, target, kw):
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"""Actually execute the action list."""
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env = self.get_build_env()
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kw = self.get_kw(kw)
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status = 0
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for act in self.get_action_list():
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#args = (self.get_all_targets(), self.get_all_sources(), env)
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args = ([], [], env)
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status = act(*args, **kw)
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if isinstance(status, SCons.Errors.BuildError):
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status.executor = self
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raise status
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elif status:
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msg = "Error %s" % status
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raise SCons.Errors.BuildError(
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errstr=msg,
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node=self.batches[0].targets,
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executor=self,
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action=act)
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return status
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# use extra indirection because with new-style objects (Python 2.2
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# and above) we can't override special methods, and nullify() needs
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# to be able to do this.
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def __call__(self, target, **kw):
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return self.do_execute(target, kw)
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def cleanup(self):
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self._memo = {}
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def add_sources(self, sources):
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"""Add source files to this Executor's list. This is necessary
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for "multi" Builders that can be called repeatedly to build up
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a source file list for a given target."""
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# TODO(batch): extend to multiple batches
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assert (len(self.batches) == 1)
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# TODO(batch): remove duplicates?
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sources = [x for x in sources if x not in self.batches[0].sources]
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self.batches[0].sources.extend(sources)
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def get_sources(self):
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return self.batches[0].sources
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def add_batch(self, targets, sources):
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"""Add pair of associated target and source to this Executor's list.
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This is necessary for "batch" Builders that can be called repeatedly
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to build up a list of matching target and source files that will be
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used in order to update multiple target files at once from multiple
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corresponding source files, for tools like MSVC that support it."""
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self.batches.append(Batch(targets, sources))
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def prepare(self):
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"""
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Preparatory checks for whether this Executor can go ahead
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and (try to) build its targets.
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"""
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for s in self.get_all_sources():
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if s.missing():
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msg = "Source `%s' not found, needed by target `%s'."
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raise SCons.Errors.StopError(msg % (s, self.batches[0].targets[0]))
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def add_pre_action(self, action):
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self.pre_actions.append(action)
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def add_post_action(self, action):
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self.post_actions.append(action)
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# another extra indirection for new-style objects and nullify...
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def my_str(self):
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env = self.get_build_env()
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return "\n".join([action.genstring(self.get_all_targets(),
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self.get_all_sources(),
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env)
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for action in self.get_action_list()])
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def __str__(self):
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return self.my_str()
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def nullify(self):
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self.cleanup()
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self.do_execute = self.do_nothing
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self.my_str = lambda: ''
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memoizer_counters.append(SCons.Memoize.CountValue('get_contents'))
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def get_contents(self):
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"""Fetch the signature contents. This is the main reason this
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class exists, so we can compute this once and cache it regardless
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of how many target or source Nodes there are.
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"""
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try:
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return self._memo['get_contents']
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except KeyError:
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pass
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env = self.get_build_env()
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result = "".join([action.get_contents(self.get_all_targets(),
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self.get_all_sources(),
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env)
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for action in self.get_action_list()])
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self._memo['get_contents'] = result
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return result
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def get_timestamp(self):
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"""Fetch a time stamp for this Executor. We don't have one, of
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course (only files do), but this is the interface used by the
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timestamp module.
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"""
|
||
|
return 0
|
||
|
|
||
|
def scan_targets(self, scanner):
|
||
|
# TODO(batch): scan by batches
|
||
|
self.scan(scanner, self.get_all_targets())
|
||
|
|
||
|
def scan_sources(self, scanner):
|
||
|
# TODO(batch): scan by batches
|
||
|
if self.batches[0].sources:
|
||
|
self.scan(scanner, self.get_all_sources())
|
||
|
|
||
|
def scan(self, scanner, node_list):
|
||
|
"""Scan a list of this Executor's files (targets or sources) for
|
||
|
implicit dependencies and update all of the targets with them.
|
||
|
This essentially short-circuits an N*M scan of the sources for
|
||
|
each individual target, which is a hell of a lot more efficient.
|
||
|
"""
|
||
|
env = self.get_build_env()
|
||
|
|
||
|
# TODO(batch): scan by batches)
|
||
|
deps = []
|
||
|
if scanner:
|
||
|
for node in node_list:
|
||
|
node.disambiguate()
|
||
|
s = scanner.select(node)
|
||
|
if not s:
|
||
|
continue
|
||
|
path = self.get_build_scanner_path(s)
|
||
|
deps.extend(node.get_implicit_deps(env, s, path))
|
||
|
else:
|
||
|
kw = self.get_kw()
|
||
|
for node in node_list:
|
||
|
node.disambiguate()
|
||
|
scanner = node.get_env_scanner(env, kw)
|
||
|
if not scanner:
|
||
|
continue
|
||
|
scanner = scanner.select(node)
|
||
|
if not scanner:
|
||
|
continue
|
||
|
path = self.get_build_scanner_path(scanner)
|
||
|
deps.extend(node.get_implicit_deps(env, scanner, path))
|
||
|
|
||
|
deps.extend(self.get_implicit_deps())
|
||
|
|
||
|
for tgt in self.get_all_targets():
|
||
|
tgt.add_to_implicit(deps)
|
||
|
|
||
|
def _get_unignored_sources_key(self, node, ignore=()):
|
||
|
return (node,) + tuple(ignore)
|
||
|
|
||
|
memoizer_counters.append(SCons.Memoize.CountDict('get_unignored_sources', _get_unignored_sources_key))
|
||
|
|
||
|
def get_unignored_sources(self, node, ignore=()):
|
||
|
key = (node,) + tuple(ignore)
|
||
|
try:
|
||
|
memo_dict = self._memo['get_unignored_sources']
|
||
|
except KeyError:
|
||
|
memo_dict = {}
|
||
|
self._memo['get_unignored_sources'] = memo_dict
|
||
|
else:
|
||
|
try:
|
||
|
return memo_dict[key]
|
||
|
except KeyError:
|
||
|
pass
|
||
|
|
||
|
if node:
|
||
|
# TODO: better way to do this (it's a linear search,
|
||
|
# but it may not be critical path)?
|
||
|
sourcelist = []
|
||
|
for b in self.batches:
|
||
|
if node in b.targets:
|
||
|
sourcelist = b.sources
|
||
|
break
|
||
|
else:
|
||
|
sourcelist = self.get_all_sources()
|
||
|
if ignore:
|
||
|
idict = {}
|
||
|
for i in ignore:
|
||
|
idict[i] = 1
|
||
|
sourcelist = [s for s in sourcelist if s not in idict]
|
||
|
|
||
|
memo_dict[key] = sourcelist
|
||
|
|
||
|
return sourcelist
|
||
|
|
||
|
def get_implicit_deps(self):
|
||
|
"""Return the executor's implicit dependencies, i.e. the nodes of
|
||
|
the commands to be executed."""
|
||
|
result = []
|
||
|
build_env = self.get_build_env()
|
||
|
for act in self.get_action_list():
|
||
|
deps = act.get_implicit_deps(self.get_all_targets(),
|
||
|
self.get_all_sources(),
|
||
|
build_env)
|
||
|
result.extend(deps)
|
||
|
return result
|
||
|
|
||
|
|
||
|
|
||
|
_batch_executors = {}
|
||
|
|
||
|
def GetBatchExecutor(key):
|
||
|
return _batch_executors[key]
|
||
|
|
||
|
def AddBatchExecutor(key, executor):
|
||
|
assert key not in _batch_executors
|
||
|
_batch_executors[key] = executor
|
||
|
|
||
|
nullenv = None
|
||
|
|
||
|
|
||
|
def get_NullEnvironment():
|
||
|
"""Use singleton pattern for Null Environments."""
|
||
|
global nullenv
|
||
|
|
||
|
import SCons.Util
|
||
|
class NullEnvironment(SCons.Util.Null):
|
||
|
import SCons.CacheDir
|
||
|
_CacheDir_path = None
|
||
|
_CacheDir = SCons.CacheDir.CacheDir(None)
|
||
|
def get_CacheDir(self):
|
||
|
return self._CacheDir
|
||
|
|
||
|
if not nullenv:
|
||
|
nullenv = NullEnvironment()
|
||
|
return nullenv
|
||
|
|
||
|
class Null(object):
|
||
|
"""A null Executor, with a null build Environment, that does
|
||
|
nothing when the rest of the methods call it.
|
||
|
|
||
|
This might be able to disapper when we refactor things to
|
||
|
disassociate Builders from Nodes entirely, so we're not
|
||
|
going to worry about unit tests for this--at least for now.
|
||
|
"""
|
||
|
def __init__(self, *args, **kw):
|
||
|
if __debug__: logInstanceCreation(self, 'Executor.Null')
|
||
|
self.batches = [Batch(kw['targets'][:], [])]
|
||
|
def get_build_env(self):
|
||
|
return get_NullEnvironment()
|
||
|
def get_build_scanner_path(self):
|
||
|
return None
|
||
|
def cleanup(self):
|
||
|
pass
|
||
|
def prepare(self):
|
||
|
pass
|
||
|
def get_unignored_sources(self, *args, **kw):
|
||
|
return tuple(())
|
||
|
def get_action_targets(self):
|
||
|
return []
|
||
|
def get_action_list(self):
|
||
|
return []
|
||
|
def get_all_targets(self):
|
||
|
return self.batches[0].targets
|
||
|
def get_all_sources(self):
|
||
|
return self.batches[0].targets[0].sources
|
||
|
def get_all_children(self):
|
||
|
return self.batches[0].targets[0].children()
|
||
|
def get_all_prerequisites(self):
|
||
|
return []
|
||
|
def get_action_side_effects(self):
|
||
|
return []
|
||
|
def __call__(self, *args, **kw):
|
||
|
return 0
|
||
|
def get_contents(self):
|
||
|
return ''
|
||
|
def _morph(self):
|
||
|
"""Morph this Null executor to a real Executor object."""
|
||
|
batches = self.batches
|
||
|
self.__class__ = Executor
|
||
|
self.__init__([])
|
||
|
self.batches = batches
|
||
|
|
||
|
# The following methods require morphing this Null Executor to a
|
||
|
# real Executor object.
|
||
|
|
||
|
def add_pre_action(self, action):
|
||
|
self._morph()
|
||
|
self.add_pre_action(action)
|
||
|
def add_post_action(self, action):
|
||
|
self._morph()
|
||
|
self.add_post_action(action)
|
||
|
def set_action_list(self, action):
|
||
|
self._morph()
|
||
|
self.set_action_list(action)
|
||
|
|
||
|
|
||
|
# Local Variables:
|
||
|
# tab-width:4
|
||
|
# indent-tabs-mode:nil
|
||
|
# End:
|
||
|
# vim: set expandtab tabstop=4 shiftwidth=4:
|