Add doc
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@ -6,7 +6,37 @@ import h5py as h5
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import numpy as np
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import weakref
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def smooth_particle_density(position, velocities=None, radius=1e6, boxsize=None, resolution=128, center=None ):
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def smooth_particle_density(
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position,
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velocities=None,
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radius=1e6,
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boxsize=None,
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resolution=128,i
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center=None, tmpprefix=None ):
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"""Use adaptive smoothing to produce density and momentum fields.
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Parameters:
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position : numpy array NxQ
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the particle positions
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if Q==3, only positions. Q==6 means full space phase
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velocities : Optional numpy array Nx3.
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It is only optional if the above Q is 6.
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radius : float
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Maximum radius to which we need to compute fields
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boxsize : float
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Size of the box for the generated fields
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resolution : int
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Resolution of the output boxes
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center : list of 3 floats
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Center of the new box. It depends on the convention
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for particles. If those are between [0, L], then [0,0,0]
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is correct. If those are [-L/2,L/2] then you should set
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[L/2,L/2,L/2].
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tmpprefix : string
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prefix of the temporary directory that will be used.
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It needs to have a lot of space available. By default
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'/tmp/ will be typically used.
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"""
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if len(position.shape) != 2:
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raise ValueError("Invalid position array shape")
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@ -19,7 +49,7 @@ def smooth_particle_density(position, velocities=None, radius=1e6, boxsize=None,
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raise ValueError("Need a boxsize")
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cx,cy,cz=center
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with TemporaryDirectory() as tmpdir:
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with TemporaryDirectory(prefix=tmpprefix) as tmpdir:
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h5_file = os.path.join(tmpdir, 'particles.h5')
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with h5.File(h5_file, mode="w") as f:
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data = f.create_dataset('particles', shape=(position.shape[0],7), dtype=np.float32)
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