102 lines
3.3 KiB
C++
102 lines
3.3 KiB
C++
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//---------------------------------------------------------------------------//
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// Copyright (c) 2013-2014 Kyle Lutz <kyle.r.lutz@gmail.com>
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//
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// Distributed under the Boost Software License, Version 1.0
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// See accompanying file LICENSE_1_0.txt or copy at
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// http://www.boost.org/LICENSE_1_0.txt
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//
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// See http://boostorg.github.com/compute for more information.
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//---------------------------------------------------------------------------//
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#include <iostream>
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#include <opencv2/core/core.hpp>
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#include <opencv2/highgui/highgui.hpp>
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#include <opencv2/imgproc/imgproc.hpp>
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#include <boost/compute/system.hpp>
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#include <boost/compute/interop/opencv/core.hpp>
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#include <boost/compute/interop/opencv/highgui.hpp>
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#include <boost/compute/utility/source.hpp>
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namespace compute = boost::compute;
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// this example shows how to read an image with OpenCV, transfer the
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// image to the GPU, and apply a simple flip filter written in OpenCL
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int main(int argc, char *argv[])
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{
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// check command line
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if(argc < 2){
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std::cerr << "usage: " << argv[0] << " FILENAME" << std::endl;
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return -1;
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}
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// read image with opencv
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cv::Mat cv_image = cv::imread(argv[1], CV_LOAD_IMAGE_COLOR);
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if(!cv_image.data){
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std::cerr << "failed to load image" << std::endl;
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return -1;
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}
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// get default device and setup context
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compute::device gpu = compute::system::default_device();
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compute::context context(gpu);
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compute::command_queue queue(context, gpu);
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// convert image to BGRA (OpenCL requires 16-byte aligned data)
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cv::cvtColor(cv_image, cv_image, CV_BGR2BGRA);
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// transfer image to gpu
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compute::image2d input_image =
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compute::opencv_create_image2d_with_mat(
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cv_image, compute::image2d::read_write, queue
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);
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// create output image
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compute::image2d output_image(
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context,
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input_image.width(),
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input_image.height(),
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input_image.format(),
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compute::image2d::write_only
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);
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// create flip program
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const char source[] = BOOST_COMPUTE_STRINGIZE_SOURCE(
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__kernel void flip_kernel(__read_only image2d_t input,
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__write_only image2d_t output)
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{
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const sampler_t sampler = CLK_ADDRESS_NONE | CLK_FILTER_NEAREST;
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int height = get_image_height(input);
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int2 input_coord = { get_global_id(0), get_global_id(1) };
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int2 output_coord = { input_coord.x, height - input_coord.y - 1 };
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float4 value = read_imagef(input, sampler, input_coord);
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write_imagef(output, output_coord, value);
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}
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);
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compute::program flip_program =
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compute::program::create_with_source(source, context);
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flip_program.build();
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// create flip kernel and set arguments
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compute::kernel flip_kernel(flip_program, "flip_kernel");
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flip_kernel.set_arg(0, input_image);
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flip_kernel.set_arg(1, output_image);
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// run flip kernel
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size_t origin[2] = { 0, 0 };
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size_t region[2] = { input_image.width(), input_image.height() };
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queue.enqueue_nd_range_kernel(flip_kernel, 2, origin, region, 0);
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// show host image
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cv::imshow("opencv image", cv_image);
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// show gpu image
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compute::opencv_imshow("filtered image", output_image, queue);
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// wait and return
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cv::waitKey(0);
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return 0;
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}
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