psnr和ssim源代码(c++版)
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结合网络上的资料和自己的修改,实现了psnr和ssim的c++版本。#include<iostream>
#include<opencv2\opencv.hpp>
#include <math.h>
#include <stdio.h>
#include <cv.h>
#include <highgui.h>
using std::cout;
using std::endl;
int ssim(char *ref_image, char *obj_image)
{
// default settings
double C1 = 6.5025, C2 = 58.5225;
IplImage
*img1 = NULL, *img2 = NULL, *img1_img2 = NULL,
*img1_temp = NULL, *img2_temp = NULL,
*img1_sq = NULL, *img2_sq = NULL,
*mu1 = NULL, *mu2 = NULL,
*mu1_sq = NULL, *mu2_sq = NULL, *mu1_mu2 = NULL,
*sigma1_sq = NULL, *sigma2_sq = NULL, *sigma12 = NULL,
*ssim_map = NULL, *temp1 = NULL, *temp2 = NULL, *temp3 = NULL;
/***************************** INITS **********************************/
img1_temp = cvLoadImage(ref_image);
img2_temp = cvLoadImage(obj_image);
if (img1_temp == NULL || img2_temp == NULL)
return -1;
int x = img1_temp->width, y = img1_temp->height;
int nChan = img1_temp->nChannels, d = IPL_DEPTH_32F;
CvSize size = cvSize(x, y);
img1 = cvCreateImage(size, d, nChan);
img2 = cvCreateImage(size, d, nChan);
cvConvert(img1_temp, img1);
cvConvert(img2_temp, img2);
cvReleaseImage(&img1_temp);
cvReleaseImage(&img2_temp);
img1_sq = cvCreateImage(size, d, nChan);
img2_sq = cvCreateImage(size, d, nChan);
img1_img2 = cvCreateImage(size, d, nChan);
cvPow(img1, img1_sq, 2);
cvPow(img2, img2_sq, 2);
cvMul(img1, img2, img1_img2, 1);
mu1 = cvCreateImage(size, d, nChan);
mu2 = cvCreateImage(size, d, nChan);
mu1_sq = cvCreateImage(size, d, nChan);
mu2_sq = cvCreateImage(size, d, nChan);
mu1_mu2 = cvCreateImage(size, d, nChan);
sigma1_sq = cvCreateImage(size, d, nChan);
sigma2_sq = cvCreateImage(size, d, nChan);
sigma12 = cvCreateImage(size, d, nChan);
temp1 = cvCreateImage(size, d, nChan);
temp2 = cvCreateImage(size, d, nChan);
temp3 = cvCreateImage(size, d, nChan);
ssim_map = cvCreateImage(size, d, nChan);
/*************************** END INITS **********************************/
//////////////////////////////////////////////////////////////////////////
// PRELIMINARY COMPUTING
cvSmooth(img1, mu1, CV_GAUSSIAN, 11, 11, 1.5);
cvSmooth(img2, mu2, CV_GAUSSIAN, 11, 11, 1.5);
cvPow(mu1, mu1_sq, 2);
cvPow(mu2, mu2_sq, 2);
cvMul(mu1, mu2, mu1_mu2, 1);
cvSmooth(img1_sq, sigma1_sq, CV_GAUSSIAN, 11, 11, 1.5);
cvAddWeighted(sigma1_sq, 1, mu1_sq, -1, 0, sigma1_sq);
cvSmooth(img2_sq, sigma2_sq, CV_GAUSSIAN, 11, 11, 1.5);
cvAddWeighted(sigma2_sq, 1, mu2_sq, -1, 0, sigma2_sq);
cvSmooth(img1_img2, sigma12, CV_GAUSSIAN, 11, 11, 1.5);
cvAddWeighted(sigma12, 1, mu1_mu2, -1, 0, sigma12);
//////////////////////////////////////////////////////////////////////////
// FORMULA
// (2*mu1_mu2 + C1)
cvScale(mu1_mu2, temp1, 2);
cvAddS(temp1, cvScalarAll(C1), temp1);
// (2*sigma12 + C2)
cvScale(sigma12, temp2, 2);
cvAddS(temp2, cvScalarAll(C2), temp2);
// ((2*mu1_mu2 + C1).*(2*sigma12 + C2))
cvMul(temp1, temp2, temp3, 1);
// (mu1_sq + mu2_sq + C1)
cvAdd(mu1_sq, mu2_sq, temp1);
cvAddS(temp1, cvScalarAll(C1), temp1);
// (sigma1_sq + sigma2_sq + C2)
cvAdd(sigma1_sq, sigma2_sq, temp2);
cvAddS(temp2, cvScalarAll(C2), temp2);
// ((mu1_sq + mu2_sq + C1).*(sigma1_sq + sigma2_sq + C2))
cvMul(temp1, temp2, temp1, 1);
// ((2*mu1_mu2 + C1).*(2*sigma12 + C2))./((mu1_sq + mu2_sq + C1).*(sigma1_sq + sigma2_sq + C2))
cvDiv(temp3, temp1, ssim_map, 1);
CvScalar index_scalar = cvAvg(ssim_map);
// through observation, there is approximately
// 1% error max with the original matlab program
cout << "(R, G & B SSIM index)" << std::endl;
cout << index_scalar.val[2] << endl;
cout << index_scalar.val[1] << endl;
cout << index_scalar.val[0] << endl;
cvReleaseImage(&img1_sq);
cvReleaseImage(&img2_sq);
cvReleaseImage(&img1_img2);
cvReleaseImage(&mu1);
cvReleaseImage(&mu2);
cvReleaseImage(&mu1_sq);
cvReleaseImage(&mu2_sq);
cvReleaseImage(&mu1_mu2);
cvReleaseImage(&sigma1_sq);
cvReleaseImage(&sigma2_sq);
cvReleaseImage(&sigma12);
cvReleaseImage(&temp1);
cvReleaseImage(&temp2);
cvReleaseImage(&temp3);
cvReleaseImage(&ssim_map);
return 0;
}
double psnr(char *ref_image, char *obj_image)
{
cv::Mat image_ref = cv::imread(ref_image);
cv::Mat image_obj = cv::imread(obj_image);
double mse = 0;
double div_r=0;
double div_g=0;
double div_b=0;
int width = image_ref.cols;
int height = image_ref.rows;
double psnr = 0;
for (int v = 0; v < height; v++)
{
for (int u = 0; u < width; u++)
{
div_r = image_ref.at<cv::Vec3b>(v, u)[0] - image_obj.at<cv::Vec3b>(v, u)[0];
div_g = image_ref.at<cv::Vec3b>(v, u)[1] - image_obj.at<cv::Vec3b>(v, u)[1];
div_b = image_ref.at<cv::Vec3b>(v, u)[2] - image_obj.at<cv::Vec3b>(v, u)[2];
mse += div_r*div_r + div_b*div_b + div_g*div_g;
}
}
mse = mse / (width*height);
psnr = 10 * log10(255 * 255 / mse);
printf("%lf\n", mse);
printf("%lf\n", psnr);
return psnr;
}更多推荐



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