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			260 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C++
		
	
		
		
			
		
	
	
			260 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C++
		
	
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											3 years ago
										 
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								/*M///////////////////////////////////////////////////////////////////////////////////////
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								//                For Open Source Computer Vision Library
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								// Copyright (C) 2013, OpenCV Foundation, all rights reserved.
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								//
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								//M*/
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								#ifndef OPENCV_DNN_DNN_SHAPE_UTILS_HPP
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								#define OPENCV_DNN_DNN_SHAPE_UTILS_HPP
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								#include <opencv2/dnn/dnn.hpp>
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								#include <opencv2/core/types_c.h>  // CV_MAX_DIM
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								#include <iostream>
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								#include <ostream>
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								#include <sstream>
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								namespace cv {
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								namespace dnn {
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								CV__DNN_INLINE_NS_BEGIN
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								//Slicing
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								struct _Range : public cv::Range
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								{
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								    _Range(const Range &r) : cv::Range(r) {}
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								    _Range(int start_, int size_ = 1) : cv::Range(start_, start_ + size_) {}
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								};
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								static inline Mat slice(const Mat &m, const _Range &r0)
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								{
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								    Range ranges[CV_MAX_DIM];
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								    for (int i = 1; i < m.dims; i++)
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								        ranges[i] = Range::all();
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								    ranges[0] = r0;
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								    return m(&ranges[0]);
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								}
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								static inline Mat slice(const Mat &m, const _Range &r0, const _Range &r1)
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								{
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								    CV_Assert(m.dims >= 2);
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								    Range ranges[CV_MAX_DIM];
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								    for (int i = 2; i < m.dims; i++)
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								        ranges[i] = Range::all();
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								    ranges[0] = r0;
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								    ranges[1] = r1;
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								    return m(&ranges[0]);
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								}
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								static inline Mat slice(const Mat &m, const _Range &r0, const _Range &r1, const _Range &r2)
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								{
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								    CV_Assert(m.dims >= 3);
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								    Range ranges[CV_MAX_DIM];
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								    for (int i = 3; i < m.dims; i++)
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								        ranges[i] = Range::all();
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								    ranges[0] = r0;
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								    ranges[1] = r1;
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								    ranges[2] = r2;
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								    return m(&ranges[0]);
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								}
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								static inline Mat slice(const Mat &m, const _Range &r0, const _Range &r1, const _Range &r2, const _Range &r3)
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								{
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								    CV_Assert(m.dims >= 4);
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								    Range ranges[CV_MAX_DIM];
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								    for (int i = 4; i < m.dims; i++)
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								        ranges[i] = Range::all();
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								    ranges[0] = r0;
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								    ranges[1] = r1;
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								    ranges[2] = r2;
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								    ranges[3] = r3;
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								    return m(&ranges[0]);
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								}
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								static inline Mat getPlane(const Mat &m, int n, int cn)
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								{
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								    CV_Assert(m.dims > 2);
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								    int sz[CV_MAX_DIM];
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								    for(int i = 2; i < m.dims; i++)
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								    {
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								        sz[i-2] = m.size.p[i];
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								    }
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								    return Mat(m.dims - 2, sz, m.type(), (void*)m.ptr<float>(n, cn));
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								}
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								static inline MatShape shape(const int* dims, const int n)
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								{
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								    MatShape shape;
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								    shape.assign(dims, dims + n);
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								    return shape;
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								}
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								static inline MatShape shape(const Mat& mat)
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								{
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								    return shape(mat.size.p, mat.dims);
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								}
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								static inline MatShape shape(const MatSize& sz)
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								{
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								    return shape(sz.p, sz.dims());
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								}
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								static inline MatShape shape(const UMat& mat)
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								{
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								    return shape(mat.size.p, mat.dims);
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								}
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								#if 0  // issues with MatExpr wrapped into InputArray
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								static inline
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								MatShape shape(InputArray input)
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								{
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								    int sz[CV_MAX_DIM];
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								    int ndims = input.sizend(sz);
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								    return shape(sz, ndims);
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								}
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								#endif
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								namespace {inline bool is_neg(int i) { return i < 0; }}
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								static inline MatShape shape(int a0, int a1=-1, int a2=-1, int a3=-1)
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								{
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								    int dims[] = {a0, a1, a2, a3};
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								    MatShape s = shape(dims, 4);
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								    s.erase(std::remove_if(s.begin(), s.end(), is_neg), s.end());
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								    return s;
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								}
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								static inline int total(const MatShape& shape, int start = -1, int end = -1)
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								{
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								    if (start == -1) start = 0;
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								    if (end == -1) end = (int)shape.size();
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								    if (shape.empty())
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								        return 0;
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								    int elems = 1;
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								    CV_Assert(start <= (int)shape.size() && end <= (int)shape.size() &&
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								              start <= end);
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								    for(int i = start; i < end; i++)
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								    {
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								        elems *= shape[i];
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								    }
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								    return elems;
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								}
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								static inline MatShape concat(const MatShape& a, const MatShape& b)
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								{
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								    MatShape c = a;
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								    c.insert(c.end(), b.begin(), b.end());
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								    return c;
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								}
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								static inline std::string toString(const MatShape& shape, const String& name = "")
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								{
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								    std::ostringstream ss;
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								    if (!name.empty())
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								        ss << name << ' ';
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								    ss << '[';
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								    for(size_t i = 0, n = shape.size(); i < n; ++i)
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								        ss << ' ' << shape[i];
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								    ss << " ]";
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								    return ss.str();
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								}
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								static inline void print(const MatShape& shape, const String& name = "")
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								{
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								    std::cout << toString(shape, name) << std::endl;
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								}
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								static inline std::ostream& operator<<(std::ostream &out, const MatShape& shape)
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								{
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								    out << toString(shape);
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								    return out;
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								}
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								/// @brief Converts axis from `[-dims; dims)` (similar to Python's slice notation) to `[0; dims)` range.
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								static inline
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								int normalize_axis(int axis, int dims)
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								{
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								    CV_Check(axis, axis >= -dims && axis < dims, "");
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								    axis = (axis < 0) ? (dims + axis) : axis;
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								    CV_DbgCheck(axis, axis >= 0 && axis < dims, "");
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								    return axis;
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								}
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								static inline
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								int normalize_axis(int axis, const MatShape& shape)
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								{
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								    return normalize_axis(axis, (int)shape.size());
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								}
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								static inline
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								Range normalize_axis_range(const Range& r, int axisSize)
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								{
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								    if (r == Range::all())
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								        return Range(0, axisSize);
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								    CV_CheckGE(r.start, 0, "");
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								    Range clamped(r.start,
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								                  r.end > 0 ? std::min(r.end, axisSize) : axisSize + r.end + 1);
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								    CV_DbgCheckGE(clamped.start, 0, "");
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								    CV_CheckLT(clamped.start, clamped.end, "");
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								    CV_CheckLE(clamped.end, axisSize, "");
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								    return clamped;
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								}
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								static inline
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								bool isAllOnes(const MatShape &inputShape, int startPos, int endPos)
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								{
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								    CV_Assert(!inputShape.empty());
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								    CV_CheckGE((int) inputShape.size(), startPos, "");
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								    CV_CheckGE(startPos, 0, "");
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								    CV_CheckLE(startPos, endPos, "");
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								    CV_CheckLE((size_t)endPos, inputShape.size(), "");
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								    for (size_t i = startPos; i < endPos; i++)
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								    {
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								        if (inputShape[i] != 1)
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								            return false;
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								    }
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								    return true;
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								}
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								CV__DNN_INLINE_NS_END
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								}
							 | 
						||
| 
								 | 
							
								}
							 | 
						||
| 
								 | 
							
								#endif
							 |