Open Source Computer Vision Library https://opencv.org/
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//M///////////////////////////////////////////////////////////////////////////////////////
//
// IMPORTANT: READ BEFORE DOWNLOADING, COPYING, INSTALLING OR USING.
//
// By downloading, copying, installing or using the software you agree to this license.
// If you do not agree to this license, do not download, install,
// copy or use the software.
//
//
// License Agreement
// For Open Source Computer Vision Library
//
// Copyright (C) 2000-2008, Intel Corporation, all rights reserved.
// Copyright (C) 2008-2012, Willow Garage Inc., all rights reserved.
// Third party copyrights are property of their respective owners.
//
// Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met:
//
// * Redistribution's of source code must retain the above copyright notice,
// this list of conditions and the following disclaimer.
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//M
#ifndef __OPENCV_ICF_HPP__
#define __OPENCV_ICF_HPP__
#include <opencv2/gpu/device/common.hpp>
#include <stdio.h>
#if defined __CUDACC__
# define __device __device__ __forceinline__
#else
# define __device
#endif
namespace cv { namespace gpu { namespace device {
namespace icf {
struct __align__(16) Octave
{
ushort index;
ushort stages;
ushort shrinkage;
ushort2 size;
float scale;
Octave(const ushort i, const ushort s, const ushort sh, const ushort2 sz, const float sc)
: index(i), stages(s), shrinkage(sh), size(sz), scale(sc) {}
};
struct __align__(8) Level //is actually 24 bytes
{
int octave;
float relScale;
float shrScale; // used for marking detection
float scaling[2]; // calculated according to Dollal paper
// for 640x480 we can not get overflow
uchar2 workRect;
uchar2 objSize;
Level(int idx, const Octave& oct, const float scale, const int w, const int h);
__device Level(){}
};
struct __align__(8) Node
{
uchar4 rect;
// ushort channel;
uint threshold;
enum { THRESHOLD_MASK = 0x0FFFFFFF };
Node(const uchar4 r, const uint ch, const uint t) : rect(r), threshold(t + (ch << 28))
{
// printf("%d\n", t);
// printf("[%d %d %d %d] %d, %d\n",rect.x, rect.y, rect.z, rect.w, (int)(threshold >> 28),
// (int)(0x0FFFFFFF & threshold));
}
};
struct __align__(16) Detection
{
ushort x;
ushort y;
ushort w;
ushort h;
float confidence;
int kind;
Detection(){}
__device Detection(int _x, int _y, uchar _w, uchar _h, float c)
: x(_x), y(_y), w(_w), h(_h), confidence(c), kind(0) {};
};
struct CascadePolicy
{
enum {STA_X = 32, STA_Y = 8};
};
template<typename Policy>
struct CascadeInvoker
{
CascadeInvoker(): levels(0), octaves(0), stages(0), nodes(0), leaves(0) {}
CascadeInvoker(const PtrStepSzb& _levels, const PtrStepSzb& _octaves, const PtrStepSzf& _stages,
const PtrStepSzb& _nodes, const PtrStepSzf& _leaves)
: levels((const Level*)_levels.ptr()), octaves((const Octave*)_octaves.ptr()), stages((const float*)_stages.ptr()),
nodes((const Node*)_nodes.ptr()), leaves((const float*)_leaves.ptr())
{}
const Level* levels;
const Octave* octaves;
const float* stages;
const Node* nodes;
const float* leaves;
void operator()(const PtrStepSzb& roi, const PtrStepSzi& hogluv, PtrStepSz<uchar4> objects,
PtrStepSzi counter, const int downscales, const int csale = -1) const;
};
}
}}}
#endif