86 lines
2.0 KiB
Python
Executable File
86 lines
2.0 KiB
Python
Executable File
import sys, os
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# Add the igl library to the modules search path
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sys.path.insert(0, os.getcwd() + "/../")
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import pyigl as igl
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from shared import TUTORIAL_SHARED_PATH, check_dependencies
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dependencies = ["viewer"]
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check_dependencies(dependencies)
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V = igl.eigen.MatrixXd()
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F = igl.eigen.MatrixXi()
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V_uv = igl.eigen.MatrixXd()
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initial_guess = igl.eigen.MatrixXd()
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show_uv = False
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def key_down(viewer, key, modifier):
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global show_uv, V_uv
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if key == ord('1'):
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show_uv = False
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elif key == ord('2'):
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show_uv = True
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elif key == ord('q'):
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V_uv = initial_guess
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if show_uv:
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viewer.data.set_mesh(V_uv, F)
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viewer.core.align_camera_center(V_uv, F)
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else:
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viewer.data.set_mesh(V, F)
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viewer.core.align_camera_center(V, F)
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viewer.data.compute_normals()
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return False
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# Load a mesh in OFF format
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igl.readOFF(TUTORIAL_SHARED_PATH + "camelhead.off", V, F)
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# Compute the initial solution for ARAP (harmonic parametrization)
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bnd = igl.eigen.MatrixXi()
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igl.boundary_loop(F, bnd)
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bnd_uv = igl.eigen.MatrixXd()
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igl.map_vertices_to_circle(V, bnd, bnd_uv)
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igl.harmonic(V, F, bnd, bnd_uv, 1, initial_guess)
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# Add dynamic regularization to avoid to specify boundary conditions
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arap_data = igl.ARAPData()
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arap_data.with_dynamics = True
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b = igl.eigen.MatrixXi.Zero(0, 0)
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bc = igl.eigen.MatrixXd.Zero(0, 0)
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# Initialize ARAP
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arap_data.max_iter = 100
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# 2 means that we're going to *solve* in 2d
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igl.arap_precomputation(V, F, 2, b, arap_data)
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# Solve arap using the harmonic map as initial guess
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V_uv = igl.eigen.MatrixXd(initial_guess) # important, make a copy of it!
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igl.arap_solve(bc, arap_data, V_uv)
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# Scale UV to make the texture more clear
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V_uv *= 20
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# Plot the mesh
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viewer = igl.viewer.Viewer()
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viewer.data.set_mesh(V, F)
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viewer.data.set_uv(V_uv)
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viewer.callback_key_down = key_down
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# Disable wireframe
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viewer.core.show_lines = False
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# Draw checkerboard texture
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viewer.core.show_texture = True
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# Launch the viewer
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viewer.launch()
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