使用OpenCV2.4.9 + vs2013
// 绘制形状与文字
#include <opencv2/opencv.hpp>
#include <iostream>
using namespace cv;
using namespace std;
Mat bgImage;
const char*drawdemo_win = "draw shapes and text demo";
void MyLines(); //函数声明(线)
void MyRectangle(); //(矩形)
void MyEllipse(); //(椭圆)
void MyCircle(); //(画圆)
void MyPolygon(); //(多边形)
void RandomLineDemo(); //(随机线条)
int main(int argc, char** argv) {
bgImage = imread("F:\\test.jpg");
if (bgImage.empty()){
cout << "could not load bgImage..." << endl;
system("pause");
return -1;
}
MyLines(); //函数调用(线)
MyRectangle(); //(矩形)
MyEllipse(); //(椭圆)
MyCircle(); //(画圆)
MyPolygon(); //(多边形)
RandomLineDemo(); //(随机线条)
putText(bgImage, "Hello OpenCV", Point(300, 300), CV_FONT_HERSHEY_COMPLEX, 1.0, Scalar(12, 25, 200), 3, 8);
// 参数分别代表:输入图像, 文字, 位置, 字体缩放(1.0表示不缩放), 颜色, 字体粗细, 是否抗锯齿
namedWindow(drawdemo_win, CV_WINDOW_AUTOSIZE);
imshow("drawdown_win", bgImage);
RandomLineDemo();
waitKey(0);
return 0;
}
//函数实现
//画线
void MyLines() {
Point p1 = Point(20, 30); //创建一个点的坐标
Point p2;
p2.x = 400;
p2.y = 400; //另一个点的坐标
Scalar color = Scalar(0, 0, 255); //颜色(b, g, r)
line(bgImage, p1, p2, color, 1, 8); //输入图像,起始点坐标, 结束点坐标,线条颜色, 粗细, 抗锯齿
}
//画矩形
void MyRectangle() {
Rect rect = Rect(200, 100, 300, 300);
Scalar color = Scalar(255, 0, 0);
rectangle(bgImage, rect, color, 2, 8);//输入图像,矩形,颜色, 粗细, 抗锯齿
}
//画椭圆
void MyEllipse() {
Scalar color = Scalar(0, 255, 0);
ellipse(bgImage, Point(bgImage.cols / 2, bgImage.rows / 2), Size(bgImage.cols/2, bgImage.rows/2), 90, 0, 360, color, 2, 8);
//输入图像,椭圆中心点位置, 椭圆的长轴和短轴, 椭圆的旋转角度, 椭圆开始绘制的角度,椭圆结束绘制的角度, 颜色, (线宽)粗细, 抗锯齿
}
//画圆
void MyCircle() {
Scalar color = Scalar(100, 50, 50);
Point center = Point(bgImage.cols / 2, bgImage.rows / 2);
circle(bgImage, center, 150, color, 1, 8); //输入图像, 圆心位置, 圆半径, 颜色, 线宽, 抗锯齿
}
//画多边形并填充颜色
void MyPolygon() {
Point pts[1][5]; //多边形的点
pts[0][0] = Point(100, 100);
pts[0][1] = Point(100, 200);
pts[0][2] = Point(200, 200);
pts[0][3] = Point(200, 100);
pts[0][4] = Point(100, 100);
const Point*ppts[] = { pts[0] }; //指向数组的指针
int npt[] = { 5 };
Scalar color = Scalar(255, 12, 255);
fillPoly(bgImage, ppts, npt, 1, color, 8);
}
//随机线条
void RandomLineDemo() {
RNG rng(12345); //创建随机数对象
Point pt1;
Point pt2;
Mat bg = Mat::zeros(bgImage.size(), bgImage.type());
namedWindow("randow line demo", CV_WINDOW_AUTOSIZE);
for (int i = 0; i < 200; i++) { //随机画200条线
pt1.x = rng.uniform(0, bgImage.cols);
pt2.x = rng.uniform(0, bgImage.cols);
pt1.y = rng.uniform(0, bgImage.rows);
pt2.y = rng.uniform(0, bgImage.rows);
Scalar color = Scalar(rng.uniform(0, 255), rng.uniform(0, 255), rng.uniform(0, 255));
if (waitKey(20) > 0) { //如果超过20s, break
break;
}
line(bg, pt1, pt2, color, 1, 8);
imshow("randow line demo", bg);
}
}
运行结果为: