OpenCV putText在图像上添加汉字

#pragma once
#ifndef PUTTEXT_H_
#define PUTTEXT_H_


#include 
#include 
#include 


using namespace cv;


class putText
{
private:
	static void GetStringSize(HDC hdc, const char* str, int* w, int* h);


public:
	static void putTextZH(Mat& dst, const char* str, Point org, Scalar color, int fontsize,
		const char* fn = "Arial", bool italic = false, bool underline = false);
	static std::string UtfToGbk(std::string strValue);
};


#endif // !PUTTEXT_H_
#include "putText.h"


void putText::GetStringSize(HDC hdc, const char* str, int* w, int* h)
{
	SIZE size;
	GetTextExtentPoint32A(hdc, str, strlen(str), &size);
	if (w != 0) *w = size.cx;
	if (h != 0) *h = size.cy;
}

void putText::putTextZH(Mat& dst, const char* str, Point org, Scalar color, int fontsize, const char* fn, bool italic, bool underline)
{
	CV_Assert(dst.data != 0 && (dst.channels() == 1 || dst.channels() == 3));


	int x, y, r, b;
	//坐标点大于图像宽和高直接返回
	if (org.x > dst.cols || org.y > dst.rows) return;
	x = org.x < 0 ? -org.x : 0;
	y = org.y < 0 ? -org.y : 0;


	LOGFONTA lf;
	lf.lfHeight = -fontsize; //字体高度
	lf.lfWidth = 0;          //平均宽度
	lf.lfEscapement = 0;   //字符排列角度
	lf.lfOrientation = 0;   //字符本身旋转的角度
	lf.lfWeight = 5;        //设置字体线条的宽度
	lf.lfItalic = italic; //斜体
	lf.lfUnderline = underline; //下划线
	lf.lfStrikeOut = 0;     //是否字符中央加横线
	lf.lfCharSet = DEFAULT_CHARSET;   //字符集
	lf.lfOutPrecision = 0;  //字体的精确度
	lf.lfQuality = PROOF_QUALITY;  //字体质量
	lf.lfPitchAndFamily = 0; //选择字体的间距和字体家族
	strcpy_s(lf.lfFaceName, fn); //字体的名称


	HFONT hf = CreateFontIndirectA(&lf);
	HDC hdc = CreateCompatibleDC(0);
	HFONT holdfont = (HFONT)SelectObject(hdc, hf);


	int strBaseW = 0, strBaseH = 0;
	int singleRow = 0;
	char buf[1 << 12];
	strcpy_s(buf, str);
	char* bufT[1 << 12];   //这个用于分隔字符串后剩余的字符,可能会超出。


	//处理多行
	{
		int nnh = 0;
		int cw, ch;


		const char* ln = strtok_s(buf, "\n", bufT);
		while (ln != 0)
		{
			GetStringSize(hdc, ln, &cw, &ch);
			strBaseW = max(strBaseW, cw);
			strBaseH = max(strBaseH, ch);


			ln = strtok_s(0, "\n", bufT);
			nnh++;
		}
		singleRow = strBaseH;
		strBaseH *= nnh;
	}


	if (org.x + strBaseW < 0 || org.y + strBaseH < 0)
	{
		SelectObject(hdc, holdfont);
		DeleteObject(hf);
		DeleteObject(hdc);
		return;
	}


	r = org.x + strBaseW > dst.cols ? dst.cols - org.x - 1 : strBaseW - 1;
	b = org.y + strBaseH > dst.rows ? dst.rows - org.y - 1 : strBaseH - 1;
	org.x = org.x < 0 ? 0 : org.x;
	org.y = org.y < 0 ? 0 : org.y;


	BITMAPINFO bmp = { 0 };
	BITMAPINFOHEADER& bih = bmp.bmiHeader;
	int strDrawLineStep = strBaseW * 3 % 4 == 0 ? strBaseW * 3 : (strBaseW * 3 + 4 - ((strBaseW * 3) % 4));


	bih.biSize = sizeof(BITMAPINFOHEADER);
	bih.biWidth = strBaseW;
	bih.biHeight = strBaseH;
	bih.biPlanes = 1;
	bih.biBitCount = 24;
	bih.biCompression = BI_RGB;
	bih.biSizeImage = strBaseH * strDrawLineStep;
	bih.biClrUsed = 0;
	bih.biClrImportant = 0;


	void* pDibData = 0;
	HBITMAP hBmp = CreateDIBSection(hdc, &bmp, DIB_RGB_COLORS, &pDibData, 0, 0);


	CV_Assert(pDibData != 0);
	HBITMAP hOldBmp = (HBITMAP)SelectObject(hdc, hBmp);


	//color.val[2], color.val[1], color.val[0]
	SetTextColor(hdc, RGB(255, 255, 255));
	SetBkColor(hdc, 0);
	//SetStretchBltMode(hDC, COLORONCOLOR);


	strcpy_s(buf, str);
	const char* ln = strtok_s(buf, "\n", bufT);
	int outTextY = 0;
	while (ln != 0)
	{
		TextOutA(hdc, 0, outTextY, ln, strlen(ln));
		outTextY += singleRow;
		ln = strtok_s(0, "\n", bufT);
	}
	uchar* dstData = (uchar*)dst.data;
	int dstStep = dst.step / sizeof(dstData[0]);
	unsigned char* pImg = (unsigned char*)dst.data + org.x * dst.channels() + org.y * dstStep;
	unsigned char* pStr = (unsigned char*)pDibData + x * 3;
	for (int tty = y; tty <= b; ++tty)
	{
		unsigned char* subImg = pImg + (tty - y) * dstStep;
		unsigned char* subStr = pStr + (strBaseH - tty - 1) * strDrawLineStep;
		for (int ttx = x; ttx <= r; ++ttx)
		{
			for (int n = 0; n < dst.channels(); ++n) {
				double vtxt = subStr[n] / 255.0;
				int cvv = vtxt * color.val[n] + (1 - vtxt) * subImg[n];
				subImg[n] = cvv > 255 ? 255 : (cvv < 0 ? 0 : cvv);
			}


			subStr += 3;
			subImg += dst.channels();
		}
	}


	SelectObject(hdc, hOldBmp);
	SelectObject(hdc, holdfont);
	DeleteObject(hf);
	DeleteObject(hBmp);
	DeleteDC(hdc);
}

std::string putText::UtfToGbk(std::string strValue)
{
	int len = MultiByteToWideChar(CP_UTF8, 0, strValue.c_str(), -1, NULL, 0);
	wchar_t* wstr = new wchar_t[len + 1];
	memset(wstr, 0, len + 1);
	MultiByteToWideChar(CP_UTF8, 0, strValue.c_str(), -1, wstr, len);
	len = WideCharToMultiByte(CP_ACP, 0, wstr, -1, NULL, 0, NULL, NULL);
	char* str = new char[len + 1];
	memset(str, 0, len + 1);
	WideCharToMultiByte(CP_ACP, 0, wstr, -1, str, len, NULL, NULL);
	if (wstr) delete[] wstr;
	return std::string(str);
}
#include
#include"putText.h"
#include
#include

using namespace std;
using namespace cv;



int main(int argc, char* argv[])
{
	string imgName;
	if (argc > 1)
	{
		imgName = argv[1];
	}
	else
	{
		cout << "please input img path: ";
		cin >> imgName;
		cout << endl;
	}
	string n = "图像处理";
	string nn = putText::UtfToGbk(n);
	Mat img;
	img = imread(imgName);
	putText::putTextZH(img, nn.c_str(), Point(img.cols / 2, img.rows / 2), Scalar(255, 10, 200), 100, "微软雅黑");

	cv::namedWindow("img", WINDOW_NORMAL);
	cv::imshow("img", img);
	cv::waitKey();

	return 0;
}

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