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200 lines
6.3 KiB
200 lines
6.3 KiB
# Copyright (c) 2018 PaddlePaddle Authors. All Rights Reserved.
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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import core
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import framework
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import executor
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import data_feeder
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import contextlib
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# optimizer is same as the parameter of Trainer.__init__. Rename it to opt_module
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import optimizer as opt_module
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__all__ = [
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'Trainer',
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'BeginEpochEvent',
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'EndEpochEvent',
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'BeginStepEvent',
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'EndStepEvent',
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]
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class BeginEpochEvent(object):
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def __init__(self, epoch_id):
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self.epoch = epoch_id
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class EndEpochEvent(object):
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def __init__(self, epoch_id):
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self.epoch = epoch_id
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class BeginStepEvent(object):
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def __init__(self, epoch_id, step_id):
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self.epoch = epoch_id
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self.step = step_id
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class EndStepEvent(object):
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def __init__(self, epoch_id, step_id):
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self.epoch = epoch_id
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self.step = step_id
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class Trainer(object):
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"""
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Args:
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program_func(callable): A function which will return loss. The loss must be a scaler.
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optimizer(optimizer.Optimizer): The optimizer should be an instance of Optimizer
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place: The device place of this trainer.
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"""
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def __init__(self, program_func, optimizer, param_path=None, place=None):
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# 1. we need to generate a framework.Program by calling
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# program_func. Reference: fluid.program_guard in
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# test_word2vec.py
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self.scope = core.Scope()
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self.startup_program = framework.Program()
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self.train_program = framework.Program()
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with framework.program_guard(self.train_program, self.startup_program):
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loss = program_func()
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if not isinstance(optimizer, opt_module.Optimizer):
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raise TypeError(
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"The optimizer should be an instance of Optimizer")
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optimizer.minimize(loss)
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self.place = Trainer._check_and_get_place(place)
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# 2. move the default_main_program to self.program and run the
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# default_startup program on an empty core.Scope()
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# Run startup program
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exe = executor.Executor(place)
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exe.run(self.startup_program, scope=self.scope)
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if param_path:
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# load params from param_path into scope
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# TODO(yuyang): This depends on parameters implementation.
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pass
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# TODO(helin): support distributed training
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def train(self,
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num_epochs,
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event_handler,
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reader=None,
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parallel=False,
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feed_order=None):
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"""
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Train the model.
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Args:
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num_epochs: The number of epoch. An epoch will process all data in reader
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event_handler: The event handler. A function with type (ev:Event)->void
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reader:
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parallel: True if use multi-CPUs or multi-GPUs
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feed_order: Feeding order of reader. None will following the defining
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order in program
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Returns:
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"""
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if parallel:
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raise NotImplementedError(
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"Parallel Executor version of trainer is not implemented")
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self._train_by_executor(num_epochs, event_handler, reader, feed_order)
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def test(self, reader):
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pass
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def save_params(self, param_path):
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# reference: save_persistables in io.py
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pass
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@staticmethod
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def _check_and_get_place(place):
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"""
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Check the type of place or get the default place
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Args:
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place(None|core.CUDAPlace|core.CPUPlace): the place that trainer will be executed on.
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Raises:
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TypeError if the type mismatched.
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Returns:
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the original place if it is not None.
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if fluid is compiled with CUDA, returns CUDAPlace(0) by default.
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Otherwise returns CPUPlace by default.
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"""
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if place is None:
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if core.is_compiled_with_cuda():
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return core.CUDAPlace(0)
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else:
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return core.CPUPlace()
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else:
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if not isinstance(place, core.CUDAPlace) and not isinstance(
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place, core.CPUPlace):
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raise TypeError("Place should be either CUDAPlace or CPUPlace")
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return place
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@contextlib.contextmanager
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def _prog_and_scope_guard(self):
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with framework.program_guard(
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main_program=self.train_program,
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startup_program=self.startup_program):
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with executor.scope_guard(self.scope):
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yield
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def _train_by_executor(self, num_epochs, event_handler, reader, feed_order):
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"""
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Train by Executor and single device.
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Args:
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num_epochs:
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event_handler:
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reader:
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feed_order:
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Returns:
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"""
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with self._prog_and_scope_guard():
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exe = executor.Executor(self.place)
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if feed_order is None:
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feed_var_list = [
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var
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for var in self.train_program.global_block(
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).vars.itervalues()
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if hasattr(var, 'is_data') and var.is_data
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]
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else:
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feed_var_list = [
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self.train_program.global_block().var(var_name)
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for var_name in feed_order
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]
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feeder = data_feeder.DataFeeder(
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feed_list=feed_var_list, place=self.place)
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for epoch_id in range(num_epochs):
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event_handler(BeginEpochEvent(epoch_id))
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for step_id, data in enumerate(reader()):
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event_handler(BeginStepEvent(epoch_id, step_id))
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exe.run(feed=feeder.feed(data), fetch_list=[])
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event_handler(EndStepEvent(epoch_id, step_id))
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event_handler(EndEpochEvent(epoch_id))
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