CoolFace
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beverley-gorry/colmap-vslamlab

sourceHugging Faceupdated 3mo agoView on Hugging Face
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export_to_visualsfm.py172 linesDownload Raw Back to python
1# Copyright (c), ETH Zurich and UNC Chapel Hill.2# All rights reserved.3#4# Redistribution and use in source and binary forms, with or without5# modification, are permitted provided that the following conditions are met:6#7#     * Redistributions of source code must retain the above copyright8#       notice, this list of conditions and the following disclaimer.9#10#     * Redistributions in binary form must reproduce the above copyright11#       notice, this list of conditions and the following disclaimer in the12#       documentation and/or other materials provided with the distribution.13#14#     * Neither the name of ETH Zurich and UNC Chapel Hill nor the names of15#       its contributors may be used to endorse or promote products derived16#       from this software without specific prior written permission.17#18# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"19# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE20# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE21# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE22# LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR23# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF24# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS25# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN26# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)27# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE28# POSSIBILITY OF SUCH DAMAGE.29 30 31# This script exports a COLMAP database to the file structure to run VisualSfM.32 33import argparse34import os35import shutil36import sqlite337import struct38 39import numpy as np40 41 42def parse_args():43    parser = argparse.ArgumentParser()44    parser.add_argument("--database_path", required=True)45    parser.add_argument("--image_path", required=True)46    parser.add_argument("--output_path", required=True)47    parser.add_argument("--min_num_matches", type=int, default=15)48    parser.add_argument("--binary_feature_files", type=bool, default=True)49    args = parser.parse_args()50    return args51 52 53def pair_id_to_image_ids(pair_id):54    image_id2 = pair_id % 214748364755    image_id1 = (pair_id - image_id2) / 214748364756    return image_id1, image_id257 58 59def main():60    args = parse_args()61 62    connection = sqlite3.connect(args.database_path)63    cursor = connection.cursor()64 65    try:66        os.makedirs(args.output_path)67    except:  # noqa E72268        pass69 70    cameras = {}71    cursor.execute("SELECT camera_id, params FROM cameras;")72    for row in cursor:73        camera_id = row[0]74        params = np.fromstring(row[1], dtype=np.double)75        cameras[camera_id] = params76 77    images = {}78    cursor.execute("SELECT image_id, camera_id, name FROM images;")79    for row in cursor:80        image_id = row[0]81        camera_id = row[1]82        image_name = row[2]83        print("Copying image", image_name)84        images[image_id] = (len(images), image_name)85        if not os.path.exists(os.path.join(args.output_path, image_name)):86            shutil.copyfile(87                os.path.join(args.image_path, image_name),88                os.path.join(args.output_path, image_name),89            )90 91    # The magic numbers used in VisualSfM's binary file format for storing the92    # feature descriptors.93    sift_name = 141389243594    sift_version_v4 = 80833442295    sift_eof_marker = 117960038396 97    for image_id, (image_idx, image_name) in images.iteritems():98        print("Exporting key file for", image_name)99        base_name, ext = os.path.splitext(image_name)100        key_file_name = os.path.join(args.output_path, base_name + ".sift")101        if os.path.exists(key_file_name):102            continue103 104        cursor.execute(105            "SELECT data FROM keypoints WHERE image_id=?;", (image_id,)106        )107        row = next(cursor)108        if row[0] is None:109            keypoints = np.zeros((0, 6), dtype=np.float32)110            descriptors = np.zeros((0, 128), dtype=np.uint8)111        else:112            keypoints = np.fromstring(row[0], dtype=np.float32).reshape(-1, 6)113            cursor.execute(114                "SELECT data FROM descriptors WHERE image_id=?;", (image_id,)115            )116            row = next(cursor)117            descriptors = np.fromstring(row[0], dtype=np.uint8).reshape(-1, 128)118 119        if args.binary_feature_files:120            with open(key_file_name, "wb") as fid:121                fid.write(struct.pack("i", sift_name))122                fid.write(struct.pack("i", sift_version_v4))123                fid.write(struct.pack("i", keypoints.shape[0]))124                fid.write(struct.pack("i", 4))125                fid.write(struct.pack("i", 128))126                keypoints[:, :4].astype(np.float32).tofile(fid)127                descriptors.astype(np.uint8).tofile(fid)128                fid.write(struct.pack("i", sift_eof_marker))129        else:130            with open(key_file_name, "w") as fid:131                fid.write(132                    "%d %d\n" % (keypoints.shape[0], descriptors.shape[1])133                )134                for r in range(keypoints.shape[0]):135                    fid.write("%f %f 0 0 " % (keypoints[r, 0], keypoints[r, 1]))136                    fid.write(137                        " ".join(map(str, descriptors[r].ravel().tolist()))138                    )139                    fid.write("\n")140 141    with open(os.path.join(args.output_path, "matches.txt"), "w") as fid:142        cursor.execute(143            "SELECT pair_id, data FROM two_view_geometries WHERE rows>=?;",144            (args.min_num_matches,),145        )146        for row in cursor:147            pair_id = row[0]148            inlier_matches = np.fromstring(row[1], dtype=np.uint32).reshape(149                -1, 2150            )151            image_id1, image_id2 = pair_id_to_image_ids(pair_id)152            image_name1 = images[image_id1][1]153            image_name2 = images[image_id2][1]154            fid.write(155                "%s %s %d\n"156                % (image_name1, image_name2, inlier_matches.shape[0])157            )158            line1 = ""159            line2 = ""160            for i in range(inlier_matches.shape[0]):161                line1 += "%d " % inlier_matches[i, 0]162                line2 += "%d " % inlier_matches[i, 1]163            fid.write(line1 + "\n")164            fid.write(line2 + "\n")165 166    cursor.close()167    connection.close()168 169 170if __name__ == "__main__":171    main()172