forked from guilhem_lavaux/JaxPM
Adds demo and notebooks
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jaxpm/pm.py
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72
jaxpm/pm.py
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import jax
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import jax.numpy as jnp
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import jax_cosmo as jc
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from jaxpm.kernels import fftk, gradient_kernel, laplace_kernel, longrange_kernel
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from jaxpm.painting import cic_paint, cic_read
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from jaxpm.growth import growth_factor, growth_rate, dGfa
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def pm_forces(positions, mesh_shape=None, delta=None, r_split=0):
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"""
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Computes gravitational forces on particles using a PM scheme
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"""
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if mesh_shape is None:
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mesh_shape = delta.shape
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kvec = fftk(mesh_shape)
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if delta is None:
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delta_k = jnp.fft.rfftn(cic_paint(jnp.zeros(mesh_shape), positions))
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else:
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delta_k = jnp.fft.rfftn(delta)
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# Computes gravitational potential
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pot_k = delta_k * laplace_kernel(kvec) * longrange_kernel(kvec, r_split=r_split)
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# Computes gravitational forces
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return jnp.stack([cic_read(jnp.fft.irfftn(gradient_kernel(kvec, i)*pot_k), positions)
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for i in range(3)],axis=-1)
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def lpt(cosmo, initial_conditions, positions, a):
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"""
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Computes first order LPT displacement
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"""
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initial_force = pm_forces(positions, delta=initial_conditions)
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a = jnp.atleast_1d(a)
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dx = growth_factor(cosmo, a) * initial_force
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p = a**2 * growth_rate(cosmo, a) * jnp.sqrt(jc.background.Esqr(cosmo, a)) * dx
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f = a**2 * jnp.sqrt(jc.background.Esqr(cosmo, a)) * dGfa(cosmo, a) * initial_force
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return dx, p, f
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def linear_field(mesh_shape, box_size, pk, seed):
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"""
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Generate initial conditions.
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"""
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kvec = fftk(mesh_shape)
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kmesh = sum((kk / box_size[i] * mesh_shape[i])**2 for i, kk in enumerate(kvec))**0.5
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pkmesh = pk(kmesh)
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field = jax.random.normal(seed, mesh_shape)
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field = jnp.fft.rfftn(field) * pkmesh**0.5
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field = jnp.fft.irfftn(field)
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return field
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def make_ode_fn(mesh_shape):
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def nbody_ode(state, a, cosmo):
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"""
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state is a tuple (position, velocities)
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"""
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pos, vel = state
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forces = pm_forces(pos, mesh_shape=mesh_shape) * 1.5 * cosmo.Omega_m
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# Computes the update of position (drift)
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dpos = 1. / (a**3 * jnp.sqrt(jc.background.Esqr(cosmo, a))) * vel
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# Computes the update of velocity (kick)
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dvel = 1. / (a**2 * jnp.sqrt(jc.background.Esqr(cosmo, a))) * forces
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return dpos, dvel
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return nbody_ode
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