mirror of
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aabdcc9151
This fixes building Samba, libtalloc, libtevent, libtdb and libldb with Python 3.8. wget https://waf.io/waf-2.0.17.tar.bz2 tar -xf waf-2.0.17.tar.bz2 git rm third_party/waf/waflib/ -r mkdir third_party/waf -p rsync -a waf-2.0.17/waflib/ third_party/waf/waflib/ git add third_party/waf/waflib/ (Then update version number in buildtools/bin/waf and buildtools/wafsamba/wafsamba.py) BUG: https://bugzilla.samba.org/show_bug.cgi?id=13960 Signed-off-by: Andreas Schneider <asn@samba.org> Reviewed-by: Andrew Bartlett <abartlet@samba.org> Signed-off-by: Andrew Bartlett <abartlet@samba.org>
623 lines
16 KiB
Python
623 lines
16 KiB
Python
#!/usr/bin/env python
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# encoding: utf-8
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# Thomas Nagy, 2005-2018 (ita)
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"""
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Runner.py: Task scheduling and execution
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"""
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import heapq, traceback
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try:
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from queue import Queue, PriorityQueue
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except ImportError:
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from Queue import Queue
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try:
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from Queue import PriorityQueue
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except ImportError:
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class PriorityQueue(Queue):
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def _init(self, maxsize):
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self.maxsize = maxsize
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self.queue = []
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def _put(self, item):
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heapq.heappush(self.queue, item)
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def _get(self):
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return heapq.heappop(self.queue)
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from waflib import Utils, Task, Errors, Logs
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GAP = 5
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"""
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Wait for at least ``GAP * njobs`` before trying to enqueue more tasks to run
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"""
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class PriorityTasks(object):
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def __init__(self):
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self.lst = []
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def __len__(self):
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return len(self.lst)
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def __iter__(self):
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return iter(self.lst)
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def __str__(self):
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return 'PriorityTasks: [%s]' % '\n '.join(str(x) for x in self.lst)
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def clear(self):
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self.lst = []
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def append(self, task):
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heapq.heappush(self.lst, task)
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def appendleft(self, task):
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"Deprecated, do not use"
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heapq.heappush(self.lst, task)
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def pop(self):
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return heapq.heappop(self.lst)
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def extend(self, lst):
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if self.lst:
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for x in lst:
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self.append(x)
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else:
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if isinstance(lst, list):
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self.lst = lst
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heapq.heapify(lst)
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else:
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self.lst = lst.lst
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class Consumer(Utils.threading.Thread):
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"""
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Daemon thread object that executes a task. It shares a semaphore with
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the coordinator :py:class:`waflib.Runner.Spawner`. There is one
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instance per task to consume.
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"""
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def __init__(self, spawner, task):
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Utils.threading.Thread.__init__(self)
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self.task = task
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"""Task to execute"""
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self.spawner = spawner
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"""Coordinator object"""
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self.setDaemon(1)
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self.start()
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def run(self):
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"""
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Processes a single task
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"""
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try:
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if not self.spawner.master.stop:
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self.spawner.master.process_task(self.task)
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finally:
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self.spawner.sem.release()
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self.spawner.master.out.put(self.task)
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self.task = None
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self.spawner = None
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class Spawner(Utils.threading.Thread):
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"""
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Daemon thread that consumes tasks from :py:class:`waflib.Runner.Parallel` producer and
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spawns a consuming thread :py:class:`waflib.Runner.Consumer` for each
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:py:class:`waflib.Task.Task` instance.
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"""
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def __init__(self, master):
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Utils.threading.Thread.__init__(self)
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self.master = master
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""":py:class:`waflib.Runner.Parallel` producer instance"""
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self.sem = Utils.threading.Semaphore(master.numjobs)
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"""Bounded semaphore that prevents spawning more than *n* concurrent consumers"""
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self.setDaemon(1)
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self.start()
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def run(self):
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"""
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Spawns new consumers to execute tasks by delegating to :py:meth:`waflib.Runner.Spawner.loop`
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"""
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try:
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self.loop()
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except Exception:
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# Python 2 prints unnecessary messages when shutting down
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# we also want to stop the thread properly
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pass
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def loop(self):
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"""
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Consumes task objects from the producer; ends when the producer has no more
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task to provide.
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"""
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master = self.master
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while 1:
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task = master.ready.get()
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self.sem.acquire()
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if not master.stop:
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task.log_display(task.generator.bld)
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Consumer(self, task)
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class Parallel(object):
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"""
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Schedule the tasks obtained from the build context for execution.
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"""
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def __init__(self, bld, j=2):
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"""
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The initialization requires a build context reference
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for computing the total number of jobs.
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"""
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self.numjobs = j
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"""
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Amount of parallel consumers to use
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"""
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self.bld = bld
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"""
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Instance of :py:class:`waflib.Build.BuildContext`
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"""
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self.outstanding = PriorityTasks()
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"""Heap of :py:class:`waflib.Task.Task` that may be ready to be executed"""
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self.postponed = PriorityTasks()
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"""Heap of :py:class:`waflib.Task.Task` which are not ready to run for non-DAG reasons"""
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self.incomplete = set()
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"""List of :py:class:`waflib.Task.Task` waiting for dependent tasks to complete (DAG)"""
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self.ready = PriorityQueue(0)
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"""List of :py:class:`waflib.Task.Task` ready to be executed by consumers"""
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self.out = Queue(0)
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"""List of :py:class:`waflib.Task.Task` returned by the task consumers"""
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self.count = 0
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"""Amount of tasks that may be processed by :py:class:`waflib.Runner.TaskConsumer`"""
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self.processed = 0
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"""Amount of tasks processed"""
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self.stop = False
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"""Error flag to stop the build"""
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self.error = []
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"""Tasks that could not be executed"""
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self.biter = None
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"""Task iterator which must give groups of parallelizable tasks when calling ``next()``"""
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self.dirty = False
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"""
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Flag that indicates that the build cache must be saved when a task was executed
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(calls :py:meth:`waflib.Build.BuildContext.store`)"""
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self.revdeps = Utils.defaultdict(set)
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"""
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The reverse dependency graph of dependencies obtained from Task.run_after
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"""
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self.spawner = None
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"""
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Coordinating daemon thread that spawns thread consumers
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"""
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if self.numjobs > 1:
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self.spawner = Spawner(self)
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def get_next_task(self):
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"""
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Obtains the next Task instance to run
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:rtype: :py:class:`waflib.Task.Task`
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"""
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if not self.outstanding:
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return None
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return self.outstanding.pop()
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def postpone(self, tsk):
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"""
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Adds the task to the list :py:attr:`waflib.Runner.Parallel.postponed`.
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The order is scrambled so as to consume as many tasks in parallel as possible.
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:param tsk: task instance
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:type tsk: :py:class:`waflib.Task.Task`
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"""
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self.postponed.append(tsk)
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def refill_task_list(self):
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"""
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Pulls a next group of tasks to execute in :py:attr:`waflib.Runner.Parallel.outstanding`.
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Ensures that all tasks in the current build group are complete before processing the next one.
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"""
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while self.count > self.numjobs * GAP:
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self.get_out()
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while not self.outstanding:
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if self.count:
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self.get_out()
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if self.outstanding:
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break
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elif self.postponed:
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try:
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cond = self.deadlock == self.processed
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except AttributeError:
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pass
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else:
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if cond:
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# The most common reason is conflicting build order declaration
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# for example: "X run_after Y" and "Y run_after X"
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# Another can be changing "run_after" dependencies while the build is running
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# for example: updating "tsk.run_after" in the "runnable_status" method
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lst = []
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for tsk in self.postponed:
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deps = [id(x) for x in tsk.run_after if not x.hasrun]
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lst.append('%s\t-> %r' % (repr(tsk), deps))
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if not deps:
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lst.append('\n task %r dependencies are done, check its *runnable_status*?' % id(tsk))
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raise Errors.WafError('Deadlock detected: check the task build order%s' % ''.join(lst))
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self.deadlock = self.processed
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if self.postponed:
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self.outstanding.extend(self.postponed)
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self.postponed.clear()
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elif not self.count:
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if self.incomplete:
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for x in self.incomplete:
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for k in x.run_after:
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if not k.hasrun:
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break
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else:
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# dependency added after the build started without updating revdeps
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self.incomplete.remove(x)
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self.outstanding.append(x)
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break
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else:
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if self.stop or self.error:
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break
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raise Errors.WafError('Broken revdeps detected on %r' % self.incomplete)
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else:
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tasks = next(self.biter)
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ready, waiting = self.prio_and_split(tasks)
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self.outstanding.extend(ready)
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self.incomplete.update(waiting)
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self.total = self.bld.total()
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break
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def add_more_tasks(self, tsk):
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"""
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If a task provides :py:attr:`waflib.Task.Task.more_tasks`, then the tasks contained
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in that list are added to the current build and will be processed before the next build group.
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The priorities for dependent tasks are not re-calculated globally
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:param tsk: task instance
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:type tsk: :py:attr:`waflib.Task.Task`
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"""
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if getattr(tsk, 'more_tasks', None):
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more = set(tsk.more_tasks)
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groups_done = set()
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def iteri(a, b):
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for x in a:
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yield x
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for x in b:
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yield x
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# Update the dependency tree
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# this assumes that task.run_after values were updated
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for x in iteri(self.outstanding, self.incomplete):
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for k in x.run_after:
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if isinstance(k, Task.TaskGroup):
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if k not in groups_done:
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groups_done.add(k)
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for j in k.prev & more:
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self.revdeps[j].add(k)
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elif k in more:
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self.revdeps[k].add(x)
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ready, waiting = self.prio_and_split(tsk.more_tasks)
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self.outstanding.extend(ready)
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self.incomplete.update(waiting)
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self.total += len(tsk.more_tasks)
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def mark_finished(self, tsk):
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def try_unfreeze(x):
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# DAG ancestors are likely to be in the incomplete set
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# This assumes that the run_after contents have not changed
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# after the build starts, else a deadlock may occur
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if x in self.incomplete:
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# TODO remove dependencies to free some memory?
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# x.run_after.remove(tsk)
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for k in x.run_after:
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if not k.hasrun:
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break
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else:
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self.incomplete.remove(x)
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self.outstanding.append(x)
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if tsk in self.revdeps:
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for x in self.revdeps[tsk]:
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if isinstance(x, Task.TaskGroup):
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x.prev.remove(tsk)
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if not x.prev:
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for k in x.next:
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# TODO necessary optimization?
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k.run_after.remove(x)
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try_unfreeze(k)
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# TODO necessary optimization?
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x.next = []
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else:
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try_unfreeze(x)
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del self.revdeps[tsk]
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if hasattr(tsk, 'semaphore'):
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sem = tsk.semaphore
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try:
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sem.release(tsk)
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except KeyError:
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# TODO
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pass
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else:
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while sem.waiting and not sem.is_locked():
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# take a frozen task, make it ready to run
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x = sem.waiting.pop()
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self._add_task(x)
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def get_out(self):
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"""
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Waits for a Task that task consumers add to :py:attr:`waflib.Runner.Parallel.out` after execution.
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Adds more Tasks if necessary through :py:attr:`waflib.Runner.Parallel.add_more_tasks`.
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:rtype: :py:attr:`waflib.Task.Task`
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"""
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tsk = self.out.get()
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if not self.stop:
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self.add_more_tasks(tsk)
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self.mark_finished(tsk)
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self.count -= 1
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self.dirty = True
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return tsk
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def add_task(self, tsk):
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"""
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Enqueue a Task to :py:attr:`waflib.Runner.Parallel.ready` so that consumers can run them.
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:param tsk: task instance
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:type tsk: :py:attr:`waflib.Task.Task`
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"""
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# TODO change in waf 2.1
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self.ready.put(tsk)
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def _add_task(self, tsk):
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if hasattr(tsk, 'semaphore'):
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sem = tsk.semaphore
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try:
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sem.acquire(tsk)
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except IndexError:
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sem.waiting.add(tsk)
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return
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self.count += 1
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self.processed += 1
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if self.numjobs == 1:
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tsk.log_display(tsk.generator.bld)
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try:
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self.process_task(tsk)
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finally:
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self.out.put(tsk)
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else:
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self.add_task(tsk)
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def process_task(self, tsk):
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"""
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Processes a task and attempts to stop the build in case of errors
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"""
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tsk.process()
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if tsk.hasrun != Task.SUCCESS:
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self.error_handler(tsk)
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def skip(self, tsk):
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"""
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Mark a task as skipped/up-to-date
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"""
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tsk.hasrun = Task.SKIPPED
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self.mark_finished(tsk)
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def cancel(self, tsk):
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"""
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Mark a task as failed because of unsatisfiable dependencies
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"""
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tsk.hasrun = Task.CANCELED
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self.mark_finished(tsk)
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def error_handler(self, tsk):
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"""
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Called when a task cannot be executed. The flag :py:attr:`waflib.Runner.Parallel.stop` is set,
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unless the build is executed with::
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$ waf build -k
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:param tsk: task instance
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:type tsk: :py:attr:`waflib.Task.Task`
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"""
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if not self.bld.keep:
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self.stop = True
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self.error.append(tsk)
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def task_status(self, tsk):
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"""
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Obtains the task status to decide whether to run it immediately or not.
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:return: the exit status, for example :py:attr:`waflib.Task.ASK_LATER`
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:rtype: integer
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"""
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try:
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return tsk.runnable_status()
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except Exception:
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self.processed += 1
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tsk.err_msg = traceback.format_exc()
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if not self.stop and self.bld.keep:
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self.skip(tsk)
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if self.bld.keep == 1:
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# if -k stop on the first exception, if -kk try to go as far as possible
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if Logs.verbose > 1 or not self.error:
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self.error.append(tsk)
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self.stop = True
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else:
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if Logs.verbose > 1:
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self.error.append(tsk)
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return Task.EXCEPTION
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tsk.hasrun = Task.EXCEPTION
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self.error_handler(tsk)
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return Task.EXCEPTION
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def start(self):
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"""
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Obtains Task instances from the BuildContext instance and adds the ones that need to be executed to
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:py:class:`waflib.Runner.Parallel.ready` so that the :py:class:`waflib.Runner.Spawner` consumer thread
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has them executed. Obtains the executed Tasks back from :py:class:`waflib.Runner.Parallel.out`
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and marks the build as failed by setting the ``stop`` flag.
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If only one job is used, then executes the tasks one by one, without consumers.
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"""
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self.total = self.bld.total()
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while not self.stop:
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self.refill_task_list()
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# consider the next task
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tsk = self.get_next_task()
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if not tsk:
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if self.count:
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# tasks may add new ones after they are run
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continue
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else:
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# no tasks to run, no tasks running, time to exit
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break
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if tsk.hasrun:
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# if the task is marked as "run", just skip it
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self.processed += 1
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continue
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if self.stop: # stop immediately after a failure is detected
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break
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st = self.task_status(tsk)
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if st == Task.RUN_ME:
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self._add_task(tsk)
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elif st == Task.ASK_LATER:
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self.postpone(tsk)
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elif st == Task.SKIP_ME:
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self.processed += 1
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self.skip(tsk)
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self.add_more_tasks(tsk)
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elif st == Task.CANCEL_ME:
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# A dependency problem has occurred, and the
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# build is most likely run with `waf -k`
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if Logs.verbose > 1:
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self.error.append(tsk)
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self.processed += 1
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self.cancel(tsk)
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# self.count represents the tasks that have been made available to the consumer threads
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# collect all the tasks after an error else the message may be incomplete
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while self.error and self.count:
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self.get_out()
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self.ready.put(None)
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if not self.stop:
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assert not self.count
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|
assert not self.postponed
|
|
assert not self.incomplete
|
|
|
|
def prio_and_split(self, tasks):
|
|
"""
|
|
Label input tasks with priority values, and return a pair containing
|
|
the tasks that are ready to run and the tasks that are necessarily
|
|
waiting for other tasks to complete.
|
|
|
|
The priority system is really meant as an optional layer for optimization:
|
|
dependency cycles are found quickly, and builds should be more efficient.
|
|
A high priority number means that a task is processed first.
|
|
|
|
This method can be overridden to disable the priority system::
|
|
|
|
def prio_and_split(self, tasks):
|
|
return tasks, []
|
|
|
|
:return: A pair of task lists
|
|
:rtype: tuple
|
|
"""
|
|
# to disable:
|
|
#return tasks, []
|
|
for x in tasks:
|
|
x.visited = 0
|
|
|
|
reverse = self.revdeps
|
|
|
|
groups_done = set()
|
|
for x in tasks:
|
|
for k in x.run_after:
|
|
if isinstance(k, Task.TaskGroup):
|
|
if k not in groups_done:
|
|
groups_done.add(k)
|
|
for j in k.prev:
|
|
reverse[j].add(k)
|
|
else:
|
|
reverse[k].add(x)
|
|
|
|
# the priority number is not the tree depth
|
|
def visit(n):
|
|
if isinstance(n, Task.TaskGroup):
|
|
return sum(visit(k) for k in n.next)
|
|
|
|
if n.visited == 0:
|
|
n.visited = 1
|
|
|
|
if n in reverse:
|
|
rev = reverse[n]
|
|
n.prio_order = n.tree_weight + len(rev) + sum(visit(k) for k in rev)
|
|
else:
|
|
n.prio_order = n.tree_weight
|
|
|
|
n.visited = 2
|
|
elif n.visited == 1:
|
|
raise Errors.WafError('Dependency cycle found!')
|
|
return n.prio_order
|
|
|
|
for x in tasks:
|
|
if x.visited != 0:
|
|
# must visit all to detect cycles
|
|
continue
|
|
try:
|
|
visit(x)
|
|
except Errors.WafError:
|
|
self.debug_cycles(tasks, reverse)
|
|
|
|
ready = []
|
|
waiting = []
|
|
for x in tasks:
|
|
for k in x.run_after:
|
|
if not k.hasrun:
|
|
waiting.append(x)
|
|
break
|
|
else:
|
|
ready.append(x)
|
|
return (ready, waiting)
|
|
|
|
def debug_cycles(self, tasks, reverse):
|
|
tmp = {}
|
|
for x in tasks:
|
|
tmp[x] = 0
|
|
|
|
def visit(n, acc):
|
|
if isinstance(n, Task.TaskGroup):
|
|
for k in n.next:
|
|
visit(k, acc)
|
|
return
|
|
if tmp[n] == 0:
|
|
tmp[n] = 1
|
|
for k in reverse.get(n, []):
|
|
visit(k, [n] + acc)
|
|
tmp[n] = 2
|
|
elif tmp[n] == 1:
|
|
lst = []
|
|
for tsk in acc:
|
|
lst.append(repr(tsk))
|
|
if tsk is n:
|
|
# exclude prior nodes, we want the minimum cycle
|
|
break
|
|
raise Errors.WafError('Task dependency cycle in "run_after" constraints: %s' % ''.join(lst))
|
|
for x in tasks:
|
|
visit(x, [])
|
|
|