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"""serialization utilities for apply messages
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Authors:
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* Min RK
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"""
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#-----------------------------------------------------------------------------
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# Copyright (C) 2010-2011 The IPython Development Team
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#
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# Distributed under the terms of the BSD License. The full license is in
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# the file COPYING, distributed as part of this software.
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#-----------------------------------------------------------------------------
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#-----------------------------------------------------------------------------
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# Imports
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#-----------------------------------------------------------------------------
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# Standard library imports
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import logging
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import os
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import re
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import socket
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import sys
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try:
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import cPickle
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pickle = cPickle
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except:
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cPickle = None
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import pickle
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# IPython imports
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from IPython.utils import py3compat
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from IPython.utils.data import flatten
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from IPython.utils.pickleutil import (
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can, uncan, can_sequence, uncan_sequence, CannedObject,
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istype, sequence_types,
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)
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if py3compat.PY3:
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buffer = memoryview
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#-----------------------------------------------------------------------------
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# Serialization Functions
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#-----------------------------------------------------------------------------
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# default values for the thresholds:
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MAX_ITEMS = 64
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MAX_BYTES = 1024
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def _extract_buffers(obj, threshold=MAX_BYTES):
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"""extract buffers larger than a certain threshold"""
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buffers = []
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if isinstance(obj, CannedObject) and obj.buffers:
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for i,buf in enumerate(obj.buffers):
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if len(buf) > threshold:
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# buffer larger than threshold, prevent pickling
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obj.buffers[i] = None
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buffers.append(buf)
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elif isinstance(buf, buffer):
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# buffer too small for separate send, coerce to bytes
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# because pickling buffer objects just results in broken pointers
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obj.buffers[i] = bytes(buf)
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return buffers
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def _restore_buffers(obj, buffers):
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"""restore buffers extracted by """
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if isinstance(obj, CannedObject) and obj.buffers:
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for i,buf in enumerate(obj.buffers):
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if buf is None:
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obj.buffers[i] = buffers.pop(0)
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def serialize_object(obj, buffer_threshold=MAX_BYTES, item_threshold=MAX_ITEMS):
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"""Serialize an object into a list of sendable buffers.
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Parameters
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----------
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obj : object
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The object to be serialized
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buffer_threshold : int
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The threshold (in bytes) for pulling out data buffers
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to avoid pickling them.
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item_threshold : int
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The maximum number of items over which canning will iterate.
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Containers (lists, dicts) larger than this will be pickled without
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introspection.
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Returns
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-------
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[bufs] : list of buffers representing the serialized object.
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"""
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buffers = []
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if istype(obj, sequence_types) and len(obj) < item_threshold:
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cobj = can_sequence(obj)
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for c in cobj:
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buffers.extend(_extract_buffers(c, buffer_threshold))
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elif istype(obj, dict) and len(obj) < item_threshold:
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cobj = {}
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for k in sorted(obj.iterkeys()):
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c = can(obj[k])
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buffers.extend(_extract_buffers(c, buffer_threshold))
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cobj[k] = c
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else:
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cobj = can(obj)
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buffers.extend(_extract_buffers(cobj, buffer_threshold))
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buffers.insert(0, pickle.dumps(cobj,-1))
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return buffers
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def unserialize_object(buffers, g=None):
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"""reconstruct an object serialized by serialize_object from data buffers.
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Parameters
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----------
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bufs : list of buffers/bytes
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g : globals to be used when uncanning
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Returns
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-------
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(newobj, bufs) : unpacked object, and the list of remaining unused buffers.
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"""
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bufs = list(buffers)
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pobj = bufs.pop(0)
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if not isinstance(pobj, bytes):
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# a zmq message
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pobj = bytes(pobj)
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canned = pickle.loads(pobj)
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if istype(canned, sequence_types) and len(canned) < MAX_ITEMS:
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for c in canned:
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_restore_buffers(c, bufs)
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newobj = uncan_sequence(canned, g)
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elif isinstance(canned, dict) and len(canned) < MAX_ITEMS:
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newobj = {}
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for k in sorted(canned.iterkeys()):
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c = canned[k]
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_restore_buffers(c, bufs)
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newobj[k] = uncan(c, g)
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else:
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_restore_buffers(canned, bufs)
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newobj = uncan(canned, g)
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return newobj, bufs
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def pack_apply_message(f, args, kwargs, buffer_threshold=MAX_BYTES, item_threshold=MAX_ITEMS):
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"""pack up a function, args, and kwargs to be sent over the wire
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Each element of args/kwargs will be canned for special treatment,
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but inspection will not go any deeper than that.
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Any object whose data is larger than `threshold` will not have their data copied
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(only numpy arrays and bytes/buffers support zero-copy)
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Message will be a list of bytes/buffers of the format:
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[ cf, pinfo, <arg_bufs>, <kwarg_bufs> ]
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With length at least two + len(args) + len(kwargs)
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"""
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arg_bufs = flatten(serialize_object(arg, buffer_threshold, item_threshold) for arg in args)
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kw_keys = sorted(kwargs.keys())
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kwarg_bufs = flatten(serialize_object(kwargs[key], buffer_threshold, item_threshold) for key in kw_keys)
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info = dict(nargs=len(args), narg_bufs=len(arg_bufs), kw_keys=kw_keys)
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msg = [pickle.dumps(can(f),-1)]
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msg.append(pickle.dumps(info, -1))
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msg.extend(arg_bufs)
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msg.extend(kwarg_bufs)
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return msg
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def unpack_apply_message(bufs, g=None, copy=True):
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"""unpack f,args,kwargs from buffers packed by pack_apply_message()
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Returns: original f,args,kwargs"""
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bufs = list(bufs) # allow us to pop
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assert len(bufs) >= 2, "not enough buffers!"
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if not copy:
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for i in range(2):
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bufs[i] = bufs[i].bytes
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f = uncan(pickle.loads(bufs.pop(0)), g)
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info = pickle.loads(bufs.pop(0))
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arg_bufs, kwarg_bufs = bufs[:info['narg_bufs']], bufs[info['narg_bufs']:]
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args = []
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for i in range(info['nargs']):
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arg, arg_bufs = unserialize_object(arg_bufs, g)
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args.append(arg)
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args = tuple(args)
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assert not arg_bufs, "Shouldn't be any arg bufs left over"
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kwargs = {}
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for key in info['kw_keys']:
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kwarg, kwarg_bufs = unserialize_object(kwarg_bufs, g)
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kwargs[key] = kwarg
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assert not kwarg_bufs, "Shouldn't be any kwarg bufs left over"
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return f,args,kwargs
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