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https://github.com/Richard-Sti/csiborgtools.git
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Write particles to ASCII (#117)
* Add option to output high-resolution particles only * Add ASCII writing of simulatios
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0a859a9a06
2 changed files with 62 additions and 25 deletions
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@ -474,7 +474,7 @@ class CSiBORG2Snapshot(BaseSnapshot):
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self._kind = value
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def _get_particles(self, kind):
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def _get_particles(self, kind, high_resolution_only=False):
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with File(self._snapshot_path, "r") as f:
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if kind == "Masses":
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npart = f["Header"].attrs["NumPart_Total"][1]
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@ -483,6 +483,7 @@ class CSiBORG2Snapshot(BaseSnapshot):
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else:
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x = f[f"PartType1/{kind}"][...]
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if not high_resolution_only:
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if x.ndim == 1:
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x = numpy.hstack([x, f[f"PartType5/{kind}"][...]])
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else:
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@ -493,17 +494,17 @@ class CSiBORG2Snapshot(BaseSnapshot):
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return x
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def coordinates(self):
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return self._get_particles("Coordinates")
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def coordinates(self, high_resolution_only=False):
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return self._get_particles("Coordinates", high_resolution_only)
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def velocities(self):
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return self._get_particles("Velocities")
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def velocities(self, high_resolution_only=False):
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return self._get_particles("Velocities", high_resolution_only)
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def masses(self):
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return self._get_particles("Masses") * 1e10
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def masses(self, high_resolution_only=False):
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return self._get_particles("Masses", high_resolution_only) * 1e10
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def particle_ids(self):
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return self._get_particles("ParticleIDs")
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def particle_ids(self, high_resolution_only=False):
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return self._get_particles("ParticleIDs", high_resolution_only)
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def _get_halo_particles(self, halo_id, kind, is_group):
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if not is_group:
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@ -19,14 +19,48 @@ galaxies in a survey as an ASCII file.
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from os.path import join
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import csiborgtools
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import numpy
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import numpy as np
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from tqdm import tqdm
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DIR_OUT = "/mnt/extraspace/rstiskalek/csiborg_postprocessing/ascii_positions"
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def process_simulation(simname):
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"""Watch out about the distinction between real and redshift space."""
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def write_simulation(simname, high_resolution_only=True):
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""""
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Write the positions, velocities and IDs of the particles in a simulation
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to an ASCII file. The output is `X Y Z VX VY VZ ID`.
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"""
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if not high_resolution_only:
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raise RuntimeError("Writing low-res particles is not implemented.")
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paths = csiborgtools.read.Paths(**csiborgtools.paths_glamdring)
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if "csiborg2" in simname:
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nsims = paths.get_ics(simname)
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kind = simname.split("_")[-1]
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for nsim in tqdm(nsims, desc="Simulations"):
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reader = csiborgtools.read.CSiBORG2Snapshot(nsim, 99, kind, paths,
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flip_xz=False)
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x = np.hstack(
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[reader.coordinates(high_resolution_only=True),
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reader.velocities(high_resolution_only=True),
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reader.particle_ids(high_resolution_only=True).reshape(-1, 1)]
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)
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# Store positions and velocities with 6 decimal places and IDs as
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# integers.
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fmt_string = "%1.6f %1.6f %1.6f %1.6f %1.6f %1.6f %d"
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fname = join(DIR_OUT, f"high_res_particles_{simname}_{nsim}.txt")
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np.savetxt(fname, x, fmt=fmt_string)
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else:
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raise RuntimeError("Simulation not implemented..")
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def write_halos(simname):
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"""
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Watch out about the distinction between real and redshift space. The output
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is `X Y Z MASS`.
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"""
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paths = csiborgtools.read.Paths(**csiborgtools.paths_glamdring)
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if "csiborg2" in simname:
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nsims = paths.get_ics(simname)
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@ -37,16 +71,16 @@ def process_simulation(simname):
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pos = cat["cartesian_pos"]
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mass = cat["totmass"]
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# Stack positions and masses
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x = numpy.hstack([pos, mass.reshape(-1, 1)])
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x = np.hstack([pos, mass.reshape(-1, 1)])
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# Save to a file
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fname = join(DIR_OUT, f"halos_real_{simname}_{nsim}.txt")
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numpy.savetxt(fname, x)
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np.savetxt(fname, x)
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else:
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raise RuntimeError("Simulation not implemented..")
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def process_survey(survey_name, boxsize):
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def write_survey(survey_name, boxsize):
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"""Watch out about the distance definition."""
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if survey_name == "SDSS":
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survey = csiborgtools.SDSS()()
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@ -58,19 +92,21 @@ def process_survey(survey_name, boxsize):
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raise RuntimeError("Survey not implemented..")
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# Convert to Cartesian coordinates
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X = numpy.vstack([dist, ra, dec]).T
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X = np.vstack([dist, ra, dec]).T
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X = csiborgtools.radec_to_cartesian(X)
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# Center the coordinates in the box
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X += boxsize / 2
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fname = join(DIR_OUT, f"survey_{survey_name}.txt")
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numpy.savetxt(fname, X)
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np.savetxt(fname, X)
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if __name__ == "__main__":
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# process_simulation("csiborg2_main")
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write_simulation("csiborg2_main")
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boxsize = 676.6
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for survey in ["SDSS", "SDSSxALFALFA"]:
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process_survey(survey, boxsize)
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# write_halos("csiborg2_main")
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# boxsize = 676.6
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# for survey in ["SDSS", "SDSSxALFALFA"]:
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# write_survey(survey, boxsize)
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