add hdf5 output option
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358f831513
commit
c17ef20c76
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@ -13,3 +13,7 @@ members = [
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[profile.bench]
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debug = true
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[patch]
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[patch.crates-io]
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hdf5 = { git = "https://github.com/mulimoen/hdf5-rust.git", branch = "feature/resizable_idx" }
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@ -22,6 +22,7 @@ criterion = "0.3.0"
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structopt = "0.3.12"
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indicatif = "0.14.0"
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rayon = "1.3.0"
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hdf5 = "0.6.0"
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[[bench]]
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name = "maxwell"
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@ -30,3 +31,4 @@ harness = false
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[[bench]]
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name = "euler"
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harness = false
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@ -2,6 +2,7 @@
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import matplotlib as mpl
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import matplotlib.pyplot as plt
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import numpy as np
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import h5py
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import os
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@ -195,6 +196,29 @@ def plot_pressure(grids, save: bool, filename="figure.png"):
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def read_from_file(filename):
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grids = []
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file = h5py.File(filename, "r")
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for groupname in file:
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group = file[groupname]
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if not isinstance(group, h5py.Group):
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continue
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grids.append(
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{
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"x": group["x"][:],
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"y": group["y"][:],
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"rho": group["rho"][-1, :, :],
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"rhou": group["rhou"][-1, :, :],
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"rhov": group["rhov"][-1, :, :],
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"e": group["e"][-1, :, :],
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}
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)
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return grids
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def read_from_legacy_file(filename):
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grids = []
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with open(filename, "rb") as f:
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ngrids = int(np.fromfile(f, dtype=np.uint32, count=1))
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for i in range(ngrids):
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@ -283,6 +283,12 @@ struct Options {
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/// Number of simultaneous threads
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#[structopt(short, long)]
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jobs: Option<Option<usize>>,
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/// Name of output file
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#[structopt(default_value = "output")]
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output: std::path::PathBuf,
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/// Output on the legacy format
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#[structopt(long)]
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legacy: bool,
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}
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fn main() {
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@ -326,7 +332,7 @@ fn main() {
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};
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let dt = 0.2 / (max_n as Float);
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let ntime = (integration_time / dt).round() as usize;
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let ntime = (integration_time / dt).round() as u64;
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let pool = if let Some(j) = opt.jobs {
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let builder = rayon::ThreadPoolBuilder::new();
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@ -340,6 +346,15 @@ fn main() {
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None
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};
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let output = if opt.legacy {
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None
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} else {
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Some(create_hdf(&opt.output, sys.grids.as_slice()).unwrap())
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};
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if let Some(file) = output.as_ref() {
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add_timestep_to_file(&file, 0, sys.fnow.as_slice()).unwrap();
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}
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let bar = if opt.no_progressbar {
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indicatif::ProgressBar::hidden()
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} else {
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@ -359,12 +374,19 @@ fn main() {
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}
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bar.finish();
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dump_to_file(&sys);
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if let Some(file) = output.as_ref() {
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add_timestep_to_file(&file, ntime, sys.fnow.as_slice()).unwrap();
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} else {
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legacy_output(&opt.output, &sys);
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}
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}
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fn dump_to_file<T: sbp::operators::UpwindOperator>(sys: &System<T>) {
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fn legacy_output<T: sbp::operators::UpwindOperator, P: AsRef<std::path::Path>>(
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path: &P,
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sys: &System<T>,
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) {
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use std::io::prelude::*;
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let file = std::fs::File::create("output").unwrap();
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let file = std::fs::File::create(path).unwrap();
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let mut file = std::io::BufWriter::new(file);
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let ngrids = sys.grids.len();
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file.write_all(&(ngrids as u32).to_le_bytes()).unwrap();
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@ -391,3 +413,85 @@ fn dump_to_file<T: sbp::operators::UpwindOperator>(sys: &System<T>) {
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}
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}
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}
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fn create_hdf<P: AsRef<std::path::Path>>(
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path: P,
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grids: &[sbp::grid::Grid],
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) -> Result<hdf5::File, Box<dyn std::error::Error>> {
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let gzip = 7;
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let file = hdf5::File::create(path.as_ref())?;
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let _tds = file
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.new_dataset::<u64>()
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.resizable(true)
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.chunk((1,))
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.create("t", (0,))?;
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for (i, grid) in grids.iter().enumerate() {
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let g = file.create_group(&i.to_string())?;
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g.link_soft("/t", "t").unwrap();
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let add_dim = |name| {
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g.new_dataset::<f64>()
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.gzip(gzip)
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.create(name, (grid.ny(), grid.nx()))
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};
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let xds = add_dim("x")?;
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xds.write(grid.x())?;
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let yds = add_dim("y")?;
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yds.write(grid.y())?;
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let add_var = |name| {
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g.new_dataset::<f64>()
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.gzip(gzip)
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.chunk((1, grid.ny(), grid.nx()))
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.resizable_idx(&[true, false, false])
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.create(name, (0, grid.ny(), grid.nx()))
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};
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add_var("rho")?;
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add_var("rhou")?;
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add_var("rhov")?;
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add_var("e")?;
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}
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Ok(file)
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}
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fn add_timestep_to_file(
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file: &hdf5::File,
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t: u64,
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fields: &[euler::Field],
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) -> Result<(), Box<dyn std::error::Error>> {
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let tds = file.dataset("t")?;
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let tpos = tds.size();
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tds.resize((tpos + 1,))?;
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tds.write_slice(&[t], ndarray::s![tpos..tpos + 1])?;
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for (i, fnow) in fields.iter().enumerate() {
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let g = file.group(&i.to_string())?;
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let (tpos, ny, nx) = {
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let ds = g.dataset("rho")?;
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let shape = ds.shape();
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(shape[0], shape[1], shape[2])
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};
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let rhods = g.dataset("rho")?;
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let rhouds = g.dataset("rhou")?;
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let rhovds = g.dataset("rhov")?;
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let eds = g.dataset("e")?;
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let (rho, rhou, rhov, e) = fnow.components();
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rhods.resize((tpos + 1, ny, nx))?;
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rhods.write_slice(rho, ndarray::s![tpos, .., ..])?;
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rhouds.resize((tpos + 1, ny, nx))?;
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rhouds.write_slice(rhou, ndarray::s![tpos, .., ..])?;
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rhovds.resize((tpos + 1, ny, nx))?;
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rhovds.write_slice(rhov, ndarray::s![tpos, .., ..])?;
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eds.resize((tpos + 1, ny, nx))?;
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eds.write_slice(e, ndarray::s![tpos, .., ..])?;
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}
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Ok(())
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}
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