2020-07-07 15:40:39 +08:00
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// Copyright (c) 2020 PaddlePaddle Authors. All Rights Reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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2020-07-10 20:02:49 +08:00
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#include "crnn_process.h" //NOLINT
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2020-07-07 15:40:39 +08:00
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#include <algorithm>
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#include <memory>
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#include <string>
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const std::vector<int> rec_image_shape{3, 32, 320};
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2020-07-11 13:52:06 +08:00
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cv::Mat CrnnResizeImg(cv::Mat img, float wh_ratio) {
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2020-07-07 15:40:39 +08:00
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int imgC, imgH, imgW;
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imgC = rec_image_shape[0];
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imgW = rec_image_shape[2];
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imgH = rec_image_shape[1];
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imgW = int(32 * wh_ratio);
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float ratio = float(img.cols) / float(img.rows);
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int resize_w, resize_h;
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if (ceilf(imgH * ratio) > imgW)
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resize_w = imgW;
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else
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resize_w = int(ceilf(imgH * ratio));
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cv::Mat resize_img;
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2020-07-10 20:02:49 +08:00
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cv::resize(img, resize_img, cv::Size(resize_w, imgH), 0.f, 0.f,
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cv::INTER_LINEAR);
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2020-07-07 15:40:39 +08:00
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2020-07-11 13:52:06 +08:00
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return resize_img;
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2020-07-07 15:40:39 +08:00
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}
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std::vector<std::string> ReadDict(std::string path) {
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std::ifstream in(path);
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std::string filename;
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std::string line;
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std::vector<std::string> m_vec;
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if (in) {
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while (getline(in, line)) {
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m_vec.push_back(line);
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}
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} else {
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std::cout << "no such file" << std::endl;
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}
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return m_vec;
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}
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cv::Mat GetRotateCropImage(cv::Mat srcimage,
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std::vector<std::vector<int>> box) {
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cv::Mat image;
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srcimage.copyTo(image);
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std::vector<std::vector<int>> points = box;
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int x_collect[4] = {box[0][0], box[1][0], box[2][0], box[3][0]};
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int y_collect[4] = {box[0][1], box[1][1], box[2][1], box[3][1]};
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int left = int(*std::min_element(x_collect, x_collect + 4));
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int right = int(*std::max_element(x_collect, x_collect + 4));
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int top = int(*std::min_element(y_collect, y_collect + 4));
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int bottom = int(*std::max_element(y_collect, y_collect + 4));
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cv::Mat img_crop;
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image(cv::Rect(left, top, right - left, bottom - top)).copyTo(img_crop);
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for (int i = 0; i < points.size(); i++) {
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points[i][0] -= left;
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points[i][1] -= top;
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}
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int img_crop_width = int(sqrt(pow(points[0][0] - points[1][0], 2) +
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pow(points[0][1] - points[1][1], 2)));
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int img_crop_height = int(sqrt(pow(points[0][0] - points[3][0], 2) +
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pow(points[0][1] - points[3][1], 2)));
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cv::Point2f pts_std[4];
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pts_std[0] = cv::Point2f(0., 0.);
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pts_std[1] = cv::Point2f(img_crop_width, 0.);
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pts_std[2] = cv::Point2f(img_crop_width, img_crop_height);
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pts_std[3] = cv::Point2f(0.f, img_crop_height);
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cv::Point2f pointsf[4];
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pointsf[0] = cv::Point2f(points[0][0], points[0][1]);
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pointsf[1] = cv::Point2f(points[1][0], points[1][1]);
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pointsf[2] = cv::Point2f(points[2][0], points[2][1]);
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pointsf[3] = cv::Point2f(points[3][0], points[3][1]);
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cv::Mat M = cv::getPerspectiveTransform(pointsf, pts_std);
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cv::Mat dst_img;
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2020-07-10 20:02:49 +08:00
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cv::warpPerspective(img_crop, dst_img, M,
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2020-07-07 15:40:39 +08:00
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cv::Size(img_crop_width, img_crop_height),
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cv::BORDER_REPLICATE);
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if (float(dst_img.rows) >= float(dst_img.cols) * 1.5) {
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cv::Mat srcCopy = cv::Mat(dst_img.rows, dst_img.cols, dst_img.depth());
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cv::transpose(dst_img, srcCopy);
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cv::flip(srcCopy, srcCopy, 0);
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return srcCopy;
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} else {
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return dst_img;
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}
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}
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