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// This file is part of OpenCV project.
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// It is subject to the license terms in the LICENSE file found in the top-level directory
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// of this distribution and at http://opencv.org/license.html
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#include "opencv2/core.hpp"
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#include "opencv2/core/ocl.hpp"
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#include "opencv2/highgui.hpp"
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#include "opencv2/imgcodecs.hpp"
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#include "opencv2/imgproc.hpp"
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#include <iostream>
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using namespace std;
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using namespace cv;
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static const char* opencl_kernel_src =
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"__kernel void magnutude_filter_8u(\n"
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" __global const uchar* src, int src_step, int src_offset,\n"
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" __global uchar* dst, int dst_step, int dst_offset, int dst_rows, int dst_cols,\n"
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" float scale)\n"
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"{\n"
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" int x = get_global_id(0);\n"
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" int y = get_global_id(1);\n"
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" if (x < dst_cols && y < dst_rows)\n"
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" {\n"
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" int dst_idx = y * dst_step + x + dst_offset;\n"
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" if (x > 0 && x < dst_cols - 1 && y > 0 && y < dst_rows - 2)\n"
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" {\n"
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" int src_idx = y * src_step + x + src_offset;\n"
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" int dx = (int)src[src_idx]*2 - src[src_idx - 1] - src[src_idx + 1];\n"
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" int dy = (int)src[src_idx]*2 - src[src_idx - 1*src_step] - src[src_idx + 1*src_step];\n"
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" dst[dst_idx] = convert_uchar_sat(sqrt((float)(dx*dx + dy*dy)) * scale);\n"
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" }\n"
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" else\n"
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" {\n"
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" dst[dst_idx] = 0;\n"
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" }\n"
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" }\n"
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"}\n";
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int main(int argc, char** argv)
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{
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const char* keys =
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"{ i input | | specify input image }"
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"{ h help | | print help message }";
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cv::CommandLineParser args(argc, argv, keys);
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if (args.has("help"))
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{
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cout << "Usage : " << argv[0] << " [options]" << endl;
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cout << "Available options:" << endl;
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args.printMessage();
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return EXIT_SUCCESS;
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}
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cv::ocl::Context ctx = cv::ocl::Context::getDefault();
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if (!ctx.ptr())
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{
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cerr << "OpenCL is not available" << endl;
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return 1;
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}
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cv::ocl::Device device = cv::ocl::Device::getDefault();
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if (!device.compilerAvailable())
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{
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cerr << "OpenCL compiler is not available" << endl;
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return 1;
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}
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UMat src;
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{
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string image_file = args.get<string>("i");
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if (!image_file.empty())
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{
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Mat image = imread(image_file);
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if (image.empty())
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{
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cout << "error read image: " << image_file << endl;
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return 1;
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}
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cvtColor(image, src, COLOR_BGR2GRAY);
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}
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else
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{
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Mat frame(cv::Size(640, 480), CV_8U, Scalar::all(128));
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Point p(frame.cols / 2, frame.rows / 2);
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line(frame, Point(0, frame.rows / 2), Point(frame.cols, frame.rows / 2), 1);
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circle(frame, p, 200, Scalar(32, 32, 32), 8, LINE_AA);
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string str = "OpenCL";
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int baseLine = 0;
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Size box = getTextSize(str, FONT_HERSHEY_COMPLEX, 2, 5, &baseLine);
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putText(frame, str, Point((frame.cols - box.width) / 2, (frame.rows - box.height) / 2 + baseLine),
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FONT_HERSHEY_COMPLEX, 2, Scalar(255, 255, 255), 5, LINE_AA);
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frame.copyTo(src);
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}
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}
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cv::String module_name; // empty to disable OpenCL cache
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{
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cout << "OpenCL program source: " << endl;
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cout << "======================================================================================================" << endl;
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cout << opencl_kernel_src << endl;
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cout << "======================================================================================================" << endl;
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//! [Define OpenCL program source]
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cv::ocl::ProgramSource source(module_name, "simple", opencl_kernel_src, "");
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//! [Define OpenCL program source]
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//! [Compile/build OpenCL for current OpenCL device]
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cv::String errmsg;
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cv::ocl::Program program(source, "", errmsg);
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if (program.ptr() == NULL)
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{
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cerr << "Can't compile OpenCL program:" << endl << errmsg << endl;
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return 1;
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}
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//! [Compile/build OpenCL for current OpenCL device]
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if (!errmsg.empty())
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{
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cout << "OpenCL program build log:" << endl << errmsg << endl;
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}
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//! [Get OpenCL kernel by name]
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cv::ocl::Kernel k("magnutude_filter_8u", program);
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if (k.empty())
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{
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cerr << "Can't get OpenCL kernel" << endl;
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return 1;
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}
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//! [Get OpenCL kernel by name]
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UMat result(src.size(), CV_8UC1);
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//! [Define kernel parameters and run]
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size_t globalSize[2] = {(size_t)src.cols, (size_t)src.rows};
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size_t localSize[2] = {8, 8};
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bool executionResult = k
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.args(
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cv::ocl::KernelArg::ReadOnlyNoSize(src), // size is not used (similar to 'dst' size)
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cv::ocl::KernelArg::WriteOnly(result),
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(float)2.0
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)
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.run(2, globalSize, localSize, true);
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if (!executionResult)
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{
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cerr << "OpenCL kernel launch failed" << endl;
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return 1;
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}
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//! [Define kernel parameters and run]
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imshow("Source", src);
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imshow("Result", result);
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for (;;)
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{
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int key = waitKey();
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if (key == 27/*ESC*/ || key == 'q' || key == 'Q')
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break;
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}
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}
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return 0;
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}
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