Mercurial > hg > aimc
view trunk/carfac/carfac_output.cc @ 685:d0612798f6de
Additional changes to C++ CARFAC on the basis of ronw's comments on r289. Moved CARFAC::Design to CARFAC::CARFAC and CARFAC::Reset(), moved carfac_common.h to common.h, CARFACDetect to carfac_util.h/cc, FloatArray and Float2dArray to ArrayX and ArrayXX, improved variable naming, made a start on improved commenting documentation.
author | alexbrandmeyer |
---|---|
date | Tue, 04 Jun 2013 18:30:22 +0000 |
parents | 594b410c2aed |
children | 972dd2e721f7 |
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// // carfac_output.cc // CARFAC Open Source C++ Library // // Created by Alex Brandmeyer on 5/10/13. // // This C++ file is part of an implementation of Lyon's cochlear model: // "Cascade of Asymmetric Resonators with Fast-Acting Compression" // to supplement Lyon's upcoming book "Human and Machine Hearing" // // 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 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. #include "carfac_output.h" using std::vector; CARFACOutput::CARFACOutput(const bool store_nap, const bool store_nap_decim, const bool store_bm, const bool store_ohc, const bool store_agc) { store_nap_ = store_nap; store_nap_decim_ = store_nap_decim; store_bm_ = store_bm; store_ohc_ = store_ohc; store_agc_ = store_agc; } void CARFACOutput::AppendOutput(const vector<Ear>& ears) { if (store_nap_) { nap_.push_back(vector<ArrayX>()); for (auto ear : ears) { nap_.back().push_back(ear.ihc_out()); } } if (store_ohc_) { ohc_.push_back(vector<ArrayX>()); for (auto ear : ears) { ohc_.back().push_back(ear.za_memory()); } } if (store_agc_) { agc_.push_back(vector<ArrayX>()); for (auto ear : ears) { agc_.back().push_back(ear.zb_memory()); } } if (store_bm_) { bm_.push_back(vector<ArrayX>()); for (auto ear : ears) { bm_.back().push_back(ear.zy_memory()); } } }