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Export operators
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2 changed files with 82 additions and 81 deletions
34
jaxpm/ops.py
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34
jaxpm/ops.py
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@ -0,0 +1,34 @@
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import numpy as np
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from _src.spmd_config import pm_operators
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def fftn(arr):
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return pm_operators.fftn(arr)
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def ifftn(arr):
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return pm_operators.ifftn(arr)
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def halo_exchange(arr):
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return pm_operators.halo_exchange(arr)
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def slice_pad(arr, pad_width):
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return pm_operators.slice_pad(arr, pad_width)
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def slice_unpad(arr, pad_width):
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return pm_operators.slice_unpad(arr, pad_width)
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def normal(shape, key, dtype='float32'):
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return pm_operators.normal(shape, key, dtype)
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def fftk(shape, symmetric=True, finite=False, dtype=np.float32):
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return pm_operators.fftk(shape, symmetric, finite, dtype)
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def generate_initial_positions(shape):
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return pm_operators.generate_initial_positions(shape)
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@ -1,59 +1,25 @@
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import jax
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import jax
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import jax.numpy as jnp
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import jax.lax as lax
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import jax.lax as lax
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import jax.numpy as jnp
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from jaxpm.kernels import fftk, cic_compensation
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import jaxpm
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import jaxpm.ops
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from jaxpm.kernels import cic_compensation, fftk
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def cic_paint(mesh, positions, weight=None):
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""" Paints positions onto mesh
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mesh: [nx, ny, nz]
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positions: [npart, 3]
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"""
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positions = jnp.expand_dims(positions, 1)
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floor = jnp.floor(positions)
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connection = jnp.array([[[0, 0, 0], [1., 0, 0], [0., 1, 0],
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[0., 0, 1], [1., 1, 0], [1., 0, 1],
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[0., 1, 1], [1., 1, 1]]])
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neighboor_coords = floor + connection
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def cic_paint(particle_mesh, positions, halo_size=0):
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kernel = 1. - jnp.abs(positions - neighboor_coords)
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return jaxpm.ops.cic_paint(particle_mesh, positions, halo_size=halo_size)
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kernel = kernel[..., 0] * kernel[..., 1] * kernel[..., 2]
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if weight is not None:
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kernel = jnp.multiply(jnp.expand_dims(weight, axis=-1), kernel)
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neighboor_coords = jnp.mod(neighboor_coords.reshape([-1,8,3]).astype('int32'), jnp.array(mesh.shape))
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dnums = jax.lax.ScatterDimensionNumbers(
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def cic_read(mesh, positions, halo_size=0):
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update_window_dims=(),
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return jaxpm.ops.cic_read(mesh, positions, halo_size=halo_size)
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inserted_window_dims=(0, 1, 2),
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scatter_dims_to_operand_dims=(0, 1, 2))
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mesh = lax.scatter_add(mesh,
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neighboor_coords,
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kernel.reshape([-1,8]),
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dnums)
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return mesh
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def cic_read(mesh, positions):
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""" Paints positions onto mesh
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mesh: [nx, ny, nz]
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positions: [npart, 3]
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"""
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positions = jnp.expand_dims(positions, 1)
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floor = jnp.floor(positions)
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connection = jnp.array([[[0, 0, 0], [1., 0, 0], [0., 1, 0],
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[0., 0, 1], [1., 1, 0], [1., 0, 1],
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[0., 1, 1], [1., 1, 1]]])
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neighboor_coords = floor + connection
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def cic_paint_dx(displacements, halo_size=0):
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kernel = 1. - jnp.abs(positions - neighboor_coords)
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return jaxpm.ops.cic_paint_dx(displacements, halo_size=halo_size)
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kernel = kernel[..., 0] * kernel[..., 1] * kernel[..., 2]
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neighboor_coords = jnp.mod(neighboor_coords.astype('int32'), jnp.array(mesh.shape))
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return (mesh[neighboor_coords[...,0],
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neighboor_coords[...,1],
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neighboor_coords[...,3]]*kernel).sum(axis=-1)
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# TO REDO
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def cic_paint_2d(mesh, positions, weight):
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def cic_paint_2d(mesh, positions, weight):
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""" Paints positions onto a 2d mesh
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""" Paints positions onto a 2d mesh
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mesh: [nx, ny]
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mesh: [nx, ny]
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@ -70,18 +36,19 @@ def cic_paint_2d(mesh, positions, weight):
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if weight is not None:
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if weight is not None:
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kernel = kernel * weight[..., jnp.newaxis]
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kernel = kernel * weight[..., jnp.newaxis]
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neighboor_coords = jnp.mod(neighboor_coords.reshape([-1,4,2]).astype('int32'), jnp.array(mesh.shape))
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neighboor_coords = jnp.mod(
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neighboor_coords.reshape([-1, 4, 2]).astype('int32'),
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jnp.array(mesh.shape))
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dnums = jax.lax.ScatterDimensionNumbers(
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dnums = jax.lax.ScatterDimensionNumbers(update_window_dims=(),
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update_window_dims=(),
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inserted_window_dims=(0, 1),
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inserted_window_dims=(0, 1),
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scatter_dims_to_operand_dims=(0, 1))
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scatter_dims_to_operand_dims=(0,
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mesh = lax.scatter_add(mesh,
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1))
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neighboor_coords,
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mesh = lax.scatter_add(mesh, neighboor_coords, kernel.reshape([-1, 4]),
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kernel.reshape([-1,4]),
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dnums)
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dnums)
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return mesh
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return mesh
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def compensate_cic(field):
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def compensate_cic(field):
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"""
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"""
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Compensate for CiC painting
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Compensate for CiC painting
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@ -91,8 +58,8 @@ def compensate_cic(field):
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compensated_field
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compensated_field
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"""
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"""
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nc = field.shape
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nc = field.shape
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kvec = fftk(nc)
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kvec = jaxpm.ops.fftk(nc)
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delta_k = jnp.fft.rfftn(field)
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delta_k = jaxpm.ops.fftn(field)
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delta_k = cic_compensation(kvec) * delta_k
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delta_k = cic_compensation(kvec) * delta_k
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return jnp.fft.irfftn(delta_k)
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return jaxpm.ops.ifftn(delta_k).real
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