rbm-convert-to-nnet.cc
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// nnetbin/rbm-convert-to-nnet.cc
// Copyright 2009-2011 Microsoft Corporation
// See ../../COPYING for clarification regarding multiple authors
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// THIS CODE IS PROVIDED *AS IS* BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
// KIND, EITHER EXPRESS OR IMPLIED, INCLUDING WITHOUT LIMITATION ANY IMPLIED
// WARRANTIES OR CONDITIONS OF TITLE, FITNESS FOR A PARTICULAR PURPOSE,
// MERCHANTABLITY OR NON-INFRINGEMENT.
// See the Apache 2 License for the specific language governing permissions and
// limitations under the License.
#include "base/kaldi-common.h"
#include "util/common-utils.h"
#include "nnet/nnet-nnet.h"
#include "nnet/nnet-rbm.h"
int main(int argc, char *argv[]) {
try {
using namespace kaldi;
using namespace kaldi::nnet1;
typedef kaldi::int32 int32;
const char *usage =
"Convert RBM to <affinetransform> and <sigmoid>\n"
"Usage: rbm-convert-to-nnet [options] <rbm-in> <nnet-out>\n"
"e.g.:\n"
" rbm-convert-to-nnet --binary=false rbm.mdl nnet.mdl\n";
bool binary_write = true;
ParseOptions po(usage);
po.Register("binary", &binary_write, "Write output in binary mode");
po.Read(argc, argv);
if (po.NumArgs() != 2) {
po.PrintUsage();
exit(1);
}
std::string model_in_filename = po.GetArg(1),
model_out_filename = po.GetArg(2);
Nnet nnet;
{
bool binary_read;
Input ki(model_in_filename, &binary_read);
nnet.Read(ki.Stream(), binary_read);
}
KALDI_ASSERT(nnet.NumComponents() == 1);
KALDI_ASSERT(nnet.GetComponent(0).GetType() == kaldi::nnet1::Component::kRbm);
RbmBase& rbm = dynamic_cast<RbmBase&>(nnet.GetComponent(0));
{
Output ko(model_out_filename, binary_write);
rbm.WriteAsNnet(ko.Stream(), binary_write);
}
KALDI_LOG << "Written model to " << model_out_filename;
return 0;
} catch(const std::exception &e) {
std::cerr << e.what();
return -1;
}
}