/external/opencv3/modules/stitching/src/ |
exposure_compensate.cpp | 176 for (int img_idx = 0; img_idx < num_images; ++img_idx) 178 Size bl_per_img((images[img_idx].cols + bl_width_ - 1) / bl_width_, 179 (images[img_idx].rows + bl_height_ - 1) / bl_height_); 180 int bl_width = (images[img_idx].cols + bl_per_img.width - 1) / bl_per_img.width; 181 int bl_height = (images[img_idx].rows + bl_per_img.height - 1) / bl_per_img.height; 182 bl_per_imgs[img_idx] = bl_per_img; 188 Point bl_br(std::min(bl_tl.x + bl_width, images[img_idx].cols), 189 std::min(bl_tl.y + bl_height, images[img_idx].rows)) [all...] |
stitcher.cpp | 220 for (size_t img_idx = 0; img_idx < imgs_.size(); ++img_idx) 222 LOGLN("Compositing image #" << indices_[img_idx] + 1); 228 full_img = imgs_[img_idx]; 282 cameras_[img_idx].K().convertTo(K, CV_32F); 288 w->warp(img, K, cameras_[img_idx].R, INTER_LINEAR, BORDER_CONSTANT, img_warped); 297 w->warp(mask, K, cameras_[img_idx].R, INTER_NEAREST, BORDER_CONSTANT, mask_warped); 304 exposure_comp_->apply((int)img_idx, corners[img_idx], img_warped, mask_warped) [all...] |
/external/opencv3/samples/cpp/ |
stitching_detailed.cpp | 443 features[i].img_idx = i; 722 for (int img_idx = 0; img_idx < num_images; ++img_idx) 724 LOGLN("Compositing image #" << indices[img_idx]+1); 727 full_img = imread(img_names[img_idx]); 773 cameras[img_idx].K().convertTo(K, CV_32F); 776 warper->warp(img, K, cameras[img_idx].R, INTER_LINEAR, BORDER_REFLECT, img_warped); 781 warper->warp(mask, K, cameras[img_idx].R, INTER_NEAREST, BORDER_CONSTANT, mask_warped); 784 compensator->apply(img_idx, corners[img_idx], img_warped, mask_warped) [all...] |
/external/opencv3/modules/stitching/include/opencv2/stitching/detail/ |
matchers.hpp | 64 int img_idx; member in struct:cv::detail::ImageFeatures
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/external/libusb/examples/ |
dpfp.c | 65 static int img_idx = 0; variable 229 sprintf(filename, "finger%d.pgm", img_idx++);
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dpfp_threaded.c | 66 static int img_idx = 0; variable 258 sprintf(filename, "finger%d.pgm", img_idx++);
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