blob: bb55424c0c48e0b866fd5bbb457e69783f1449a2 [file] [log] [blame]
//
// Copyright © 2017 Arm Ltd. All rights reserved.
// SPDX-License-Identifier: MIT
//
#include "Concatenate.hpp"
#include "RefWorkloadUtils.hpp"
#include "Decoders.hpp"
#include "Encoders.hpp"
namespace armnn
{
void Concatenate(const ConcatQueueDescriptor &data)
{
const TensorInfo& outputInfo0 = GetTensorInfo(data.m_Outputs[0]);
std::unique_ptr<Encoder<float>> encoderPtr = MakeEncoder<float>(outputInfo0, data.m_Outputs[0]->Map());
Encoder<float>& encoder = *encoderPtr;
for (unsigned int index = 0 ; index < outputInfo0.GetNumElements(); ++index)
{
unsigned int indices[MaxNumOfTensorDimensions] = { 0 };
unsigned int indexRemainder = index;
unsigned int dimensionStride = outputInfo0.GetNumElements();
for (unsigned int i = 0; i < outputInfo0.GetNumDimensions(); i++)
{
dimensionStride /= outputInfo0.GetShape()[i];
indices[i] = indexRemainder / dimensionStride; // Use integer division to round down.
indexRemainder -= indices[i] * dimensionStride;
}
for (unsigned int viewIdx = 0; viewIdx < data.m_ViewOrigins.size(); ++viewIdx)
{
ConcatQueueDescriptor::ViewOrigin const& view = data.m_ViewOrigins[viewIdx];
//Split view extents are defined by the size of (the corresponding) input tensor.
const TensorInfo& inputInfo = GetTensorInfo(data.m_Inputs[viewIdx]);
BOOST_ASSERT(inputInfo.GetNumDimensions() == outputInfo0.GetNumDimensions());
// Check all dimensions to see if this element is inside the given input view.
bool insideView = true;
for (unsigned int i = 0; i < inputInfo.GetNumDimensions(); i++)
{
if (indices[i] < view.m_Origin[i])
{
insideView = false;
}
if (indices[i] >= view.m_Origin[i] + inputInfo.GetShape()[i])
{
insideView = false;
}
}
if (insideView)
{
std::unique_ptr<Decoder<float>> decoderPtr =
MakeDecoder<float>(inputInfo, data.m_Inputs[viewIdx]->Map());
Decoder<float>& decoder = *decoderPtr;
unsigned int inIndex = 0;
unsigned int dimensionStride = 1;
for (unsigned int i = inputInfo.GetNumDimensions(); i-- > 0;)
{
inIndex += dimensionStride * (indices[i] - view.m_Origin[i]);
dimensionStride *= inputInfo.GetShape()[i];
}
decoder += inIndex;
encoder.Set(decoder.Get());
//What should we do if input views overlap on the output tensor?
//We could error, take the average, or shm else...
//For now just stop after finding first view (input) that matches.
break;
}
}
++encoder;
}
}
} //namespace armnn