shift_layer.cpp 2.85 KB
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// This file is part of OpenCV project.
// It is subject to the license terms in the LICENSE file found in the top-level directory
// of this distribution and at http://opencv.org/license.html.

// Copyright (C) 2016, Intel Corporation, all rights reserved.
// Third party copyrights are property of their respective owners.

/*
Implementation of shift layer, which adds up const values to blob.
*/

#include "../precomp.hpp"
#include "op_blas.hpp"
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#include <opencv2/dnn/shape_utils.hpp>
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namespace cv
{
namespace dnn
{

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class ShiftLayerImpl : public ShiftLayer
{
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public:
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    ShiftLayerImpl(const LayerParams &params)
    {
        setParamsFrom(params);
        CV_Assert(blobs.size() == 1);
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#ifdef HAVE_LAPACK
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        {
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            if (getBlasThreads() != cv::getThreadNum())
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            {
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                setBlasThreads(cv::getThreadNum());
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            }
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        }
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#endif
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    }

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    bool getMemoryShapes(const std::vector<MatShape> &inputs,
                         const int requiredOutputs,
                         std::vector<MatShape> &outputs,
                         std::vector<MatShape> &internals) const
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    {
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        Layer::getMemoryShapes(inputs, requiredOutputs, outputs, internals);
        internals.assign(1, shape(1, total(inputs[0], 2)));
        return true;
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    }

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    virtual void forward(std::vector<Mat*> &inputs, std::vector<Mat> &outputs, std::vector<Mat> &internals)
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    {
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        CV_Assert(inputs.size() > 0);
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        CV_Assert(blobs.size() > 0);
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        if(inputs[0]->dims == blobs[0].dims)
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        {
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            for (size_t ii = 0; ii < outputs.size(); ii++)
            {
                Mat &inpBlob = *inputs[ii];
                Mat &outBlob = outputs[ii];
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                outBlob = inpBlob + blobs[0];
            }
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        }
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        else
        {
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            Mat biasOnesMat = internals[0];
            biasOnesMat.setTo(1);
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            for (size_t ii = 0; ii < outputs.size(); ii++)
            {
                Mat &inpBlob = *inputs[ii];
                Mat &outBlob = outputs[ii];
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                inpBlob.copyTo(outBlob);
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                for (int n = 0; n < inpBlob.size[0]; n++)
                {
                    Mat dstMat(inpBlob.size[1], inpBlob.size[2] * inpBlob.size[3],
                               outBlob.type(), outBlob.ptr(n));
                    dnn::gemm(blobs[0], biasOnesMat, 1, dstMat, 1); //TODO: gemv
                }
            }
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        }
    }
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    virtual int64 getFLOPS(const std::vector<MatShape> &inputs,
                           const std::vector<MatShape> &outputs) const
    {
        (void)outputs; // suppress unused variable warning
        long flops = 0;

        for(int i= 0; i < inputs.size(); i++)
        {
           flops += total(inputs[i]);
        }

        return flops;
    }
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};
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Ptr<ShiftLayer> ShiftLayer::create(const LayerParams& params)
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{
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    return Ptr<ShiftLayer>(new ShiftLayerImpl(params));
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}

}
}