kopia lustrzana https://github.com/OpenDroneMap/ODM
VR videos.
Signed-off-by: Mark Hale <mark.hale@physics.org>
Former-commit-id: 7e14c54ae7
pull/1161/head
rodzic
1b5f9fb872
commit
997375493f
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@ -22,3 +22,20 @@ To generate a 360 3D panoramic photo:
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Output is `<project-path>/odm_photo/odm_photo_vr_L.jpg` and `<project-path>/odm_photo/odm_photo_vr_R.jpg`.
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**NB: argument order matters!**
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# odm_video
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Renders videos from ODM generated texture models.
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Currently can produce 360 panoramic videos.
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NB: the default resolution is 4096x2048 (maximum supported by Facebook).
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## Requirements
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* Blender
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* Python 2.7 (must be on your PATH)
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* Spatial Media Metadata Injector (https://github.com/google/spatial-media/tree/master/spatialmedia) (place in `spatialmedia` subdirectory)
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## Usage
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To generate a 360 panoramic photo:
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blender -b photo_360.blend --python odm_video.py -- <project-path> <camera-waypoints.xyz> <number-of-frames>
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Output is `<project-path>/odm_video/odm_video_360.mp4`.
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@ -5,8 +5,9 @@
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# blender -b photo_360.blend --python odm_video.py -- <project-path> <camera-waypoints.xyz> <number-of-frames>
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import sys
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import bpy
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import subprocess
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import os
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import bpy
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from common import loadMesh
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@ -30,6 +31,7 @@ def main():
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# create path thru waypoints
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curve = bpy.data.curves.new(name='CameraPath', type='CURVE')
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curve.dimensions = '3D'
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curve.twist_mode = 'Z_UP'
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nurbs = curve.splines.new('NURBS')
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nurbs.points.add(numWaypoints-1)
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weight = 1
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@ -52,18 +54,37 @@ def main():
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followPath.use_curve_follow = True
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animateContext = bpy.context.copy()
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animateContext['constraint'] = followPath
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bpy.ops.constraint.followpath_path_animate(animateContext, constraint='CameraFollowPath')
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bpy.ops.constraint.followpath_path_animate(animateContext,
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constraint='CameraFollowPath',
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frame_start=0,
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length=numFrames)
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blendName = bpy.path.display_name_from_filepath(bpy.data.filepath)
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fileName = projectHome + '/odm_video/odm_' + blendName.replace('photo', 'video')
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scene.frame_start = 0
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scene.frame_end = numFrames - 1
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scene.frame_end = numFrames
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render = scene.render
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render.filepath = fileName
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render.filepath = fileName + '.mp4'
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render.image_settings.file_format = 'FFMPEG'
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if(render.use_multiview):
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render.image_settings.stereo_3d_format.display_mode = 'TOPBOTTOM'
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render.image_settings.views_format = 'STEREO_3D'
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render.views[0].file_suffix = ''
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format3d = 'top-bottom'
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else:
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width = render.resolution_x
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height = render.resolution_y
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format3d = 'none'
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render.resolution_x = 4096
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render.resolution_y = 2048
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render.image_settings.file_format = 'FFMPEG'
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#bpy.ops.render.render(animation=True)
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render.ffmpeg.audio_codec = 'AAC'
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render.ffmpeg.codec = 'H264'
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render.ffmpeg.format = 'MPEG4'
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render.ffmpeg.video_bitrate = 45000
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bpy.ops.render.render(animation=True)
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writeMetadata(fileName+'.mp4', format3d)
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def loadWaypoints(filename):
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@ -75,5 +96,18 @@ def loadWaypoints(filename):
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return waypoints
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def writeMetadata(filename, format3d):
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subprocess.run(['python',
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'spatialmedia',
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'-i',
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'--stereo='+format3d,
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filename,
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filename+'.injected'])
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# check metadata injector was succesful
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if os.path.exists(filename+'.injected'):
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os.remove(filename)
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os.rename(filename+'.injected', filename)
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if __name__ == '__main__':
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main()
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