提交 f54dc983 编写于 作者: H Hui Zhang

using bw rnn in ds2

上级 0d90d3f9
......@@ -18,7 +18,7 @@
All tested under:
* Ubuntu 16.04
* python>=3.7
* paddlepaddle>=2.1.2
* paddlepaddle>=2.2.0rc
Please see [install](doc/src/install.md).
......
......@@ -20,7 +20,7 @@
* Ubuntu 16.04
* python>=3.7
* paddlepaddle>=2.1.2
* paddlepaddle>=2.2.0rc
参看 [安装](doc/src/install.md)
......
......@@ -29,13 +29,13 @@ __all__ = ['RNNStack']
class RNNCell(nn.RNNCellBase):
r"""
Elman RNN (SimpleRNN) cell. Given the inputs and previous states, it
Elman RNN (SimpleRNN) cell. Given the inputs and previous states, it
computes the outputs and updates states.
The formula used is as follows:
.. math::
h_{t} & = act(x_{t} + b_{ih} + W_{hh}h_{t-1} + b_{hh})
y_{t} & = h_{t}
where :math:`act` is for :attr:`activation`.
"""
......@@ -92,7 +92,7 @@ class RNNCell(nn.RNNCellBase):
class GRUCell(nn.RNNCellBase):
r"""
Gated Recurrent Unit (GRU) RNN cell. Given the inputs and previous states,
Gated Recurrent Unit (GRU) RNN cell. Given the inputs and previous states,
it computes the outputs and updates states.
The formula for GRU used is as follows:
.. math::
......@@ -101,8 +101,8 @@ class GRUCell(nn.RNNCellBase):
\widetilde{h}_{t} & = \tanh(W_{ic}x_{t} + b_{ic} + r_{t} * (W_{hc}h_{t-1} + b_{hc}))
h_{t} & = z_{t} * h_{t-1} + (1 - z_{t}) * \widetilde{h}_{t}
y_{t} & = h_{t}
where :math:`\sigma` is the sigmoid fucntion, and * is the elemetwise
where :math:`\sigma` is the sigmoid fucntion, and * is the elemetwise
multiplication operator.
"""
......@@ -202,7 +202,7 @@ class BiRNNWithBN(nn.Layer):
self.fw_rnn = nn.RNN(
self.fw_cell, is_reverse=False, time_major=False) #[B, T, D]
self.bw_rnn = nn.RNN(
self.fw_cell, is_reverse=True, time_major=False) #[B, T, D]
self.bw_cell, is_reverse=True, time_major=False) #[B, T, D]
def forward(self, x: paddle.Tensor, x_len: paddle.Tensor):
# x, shape [B, T, D]
......@@ -246,7 +246,7 @@ class BiGRUWithBN(nn.Layer):
self.fw_rnn = nn.RNN(
self.fw_cell, is_reverse=False, time_major=False) #[B, T, D]
self.bw_rnn = nn.RNN(
self.fw_cell, is_reverse=True, time_major=False) #[B, T, D]
self.bw_cell, is_reverse=True, time_major=False) #[B, T, D]
def forward(self, x, x_len):
# x, shape [B, T, D]
......
......@@ -22,6 +22,13 @@ from deepspeech.utils.log import Log
logger = Log(__name__).getlog()
try:
from deepspeech.decoders.swig_wrapper import ctc_beam_search_decoder_batch # noqa: F401
from deepspeech.decoders.swig_wrapper import ctc_greedy_decoder # noqa: F401
from deepspeech.decoders.swig_wrapper import Scorer # noqa: F401
except Exception as e:
logger.info("ctcdecoder not installed!")
__all__ = ['CTCDecoder']
......@@ -216,9 +223,6 @@ class CTCDecoder(nn.Layer):
def init_decode(self, beam_alpha, beam_beta, lang_model_path, vocab_list,
decoding_method):
from deepspeech.decoders.swig_wrapper import ctc_beam_search_decoder_batch # noqa: F401
from deepspeech.decoders.swig_wrapper import ctc_greedy_decoder # noqa: F401
from deepspeech.decoders.swig_wrapper import Scorer # noqa: F401
if decoding_method == "ctc_beam_search":
self._init_ext_scorer(beam_alpha, beam_beta, lang_model_path,
......
......@@ -10,8 +10,11 @@
| Model | Params | Release | Config | Test set | Loss | CER |
| --- | --- | --- | --- | --- | --- | --- |
| DeepSpeech2 | 58.4M | 2.2.0 | conf/deepspeech2.yaml + spec aug | test | 5.71956205368042 | 0.064287 |
| DeepSpeech2 | 58.4M | 2.2.0 | conf/deepspeech2.yaml + spec aug | test | 6.016139030456543 | 0.066549 |
| --- | --- | --- | --- | --- | --- | --- |
| DeepSpeech2 | 58.4M | 7181e427 | conf/deepspeech2.yaml + spec aug | test | 5.71956205368042 | 0.064287 |
| DeepSpeech2 | 58.4M | 2.1.0 | conf/deepspeech2.yaml + spec aug | test | 7.483316898345947 | 0.077860 |
| DeepSpeech2 | 58.4M | 2.1.0 | conf/deepspeech2.yaml | test | 7.299022197723389 | 0.078671 |
| DeepSpeech2 | 58.4M | 2.0.0 | conf/deepspeech2.yaml | test | - | 0.078977 |
| --- | --- | --- | --- | --- | --- | --- |
| DeepSpeech2 | 58.4M | 1.8.5 | - | test | - | 0.080447 |
......@@ -5,8 +5,8 @@ if [ $# != 3 ]; then
exit -1
fi
ckpt_dir=${1}
avg_mode=${2} # best,latest
avg_mode=${1} # best,latest
ckpt_dir=${2}
average_num=${3}
decode_checkpoint=${ckpt_dir}/avg_${average_num}.pdparams
......
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