Files
cellxgene/server/cli/prepare.py
Matt Weiden f3015cb9df Makefile modularity, test targets, and auto-formatting (#1070)
* Fix Makefile whitespace and .PHONY use

* Fix Makefile filename

* Modularize Makefile into client and server Makefiles

Part of the reason that the Makefile in the root directory is a bit
complicated is that it tries to handle tasks that can be handled
separately in the client and server modules.

This commit pushes some of the make logic specific to each module into
their own makefiles and calls out to those makefiles from that in the
project root.

* Add auto-formatting to client and server modules

One thing that can make linting faster is auto-formatting. This commit
adds the yapf auto-formatting tool to the server module and uses
eslint's "fix" functionality to speed up the linting/formatting process.

* Add yapf for automatic code formatting

* Add a root test target that calls sub-tests

* Apply yapf to python files

* Do not duplicate npm commands, simply pass through

* Update documentation

* Do not shadow reserved word len

* Add general test target

* Fix make call in dev-env

* Use black instead of yapf

* Run flake8 from the root directory

* Revert "Apply yapf to python files"

This reverts commit cdca128a01.

* Apply black to python code

* Resolve lint errors resulting from black format

* Add explanation of server unit tests in dev guidelines
2019-12-27 14:43:37 -08:00

224 lines
7.8 KiB
Python

from os.path import expanduser, isdir, isfile, sep, splitext
import click
from numpy import ndarray, unique
from scipy.sparse.csc import csc_matrix
from server.utils.utils import sort_options
@sort_options
@click.command(
short_help="Preprocess data for use with cellxgene. " "Run `cellxgene prepare --help` for more information.",
options_metavar="<options>",
)
@click.argument("data", nargs=1, metavar="<path to data file>", required=True)
@click.option(
"--embedding",
"-e",
default=["umap", "tsne"],
multiple=True,
type=click.Choice(["umap", "tsne"]),
help="Embedding algorithm(s). Repeat option for multiple embeddings.",
show_default=True,
)
@click.option(
"--recipe",
"-r",
default="none",
type=click.Choice(["none", "seurat", "zheng17"]),
help="Preprocessing to run.",
show_default=True,
)
@click.option("--output", "-o", default="", help="Save a new file to filename.", metavar="<filename>")
@click.option("--plotting", "-p", default=False, is_flag=True, help="Generate plots.", show_default=True)
@click.option("--sparse", default=False, is_flag=True, help="Force sparsity.", show_default=True)
@click.option("--overwrite", default=False, is_flag=True, help="Allow file overwriting.", show_default=True)
@click.option("--set-obs-names", default="", help="Named field to set as index for obs.", metavar="<name>")
@click.option("--set-var-names", default="", help="Named field to set as index for var.", metavar="<name>")
@click.option(
"--skip-qc",
default=False,
is_flag=True,
help="Do not run quality control metrics. By default cellxgene runs them "
"(saved to adata.obs and adata.var; see scanpy.pp.calculate_qc_metrics for details).",
)
@click.option(
"--make-obs-names-unique", default=True, is_flag=True, help="Ensure obs index is unique.", show_default=True
)
@click.option(
"--make-var-names-unique", default=True, is_flag=True, help="Ensure var index is unique.", show_default=True
)
@click.help_option("--help", "-h", help="Show this message and exit.")
def prepare(
data,
embedding,
recipe,
output,
plotting,
sparse,
overwrite,
set_obs_names,
set_var_names,
skip_qc,
make_obs_names_unique,
make_var_names_unique,
):
"""
Preprocess data for use with cellxgene.
This tool runs a series of scanpy routines for preparing a dataset for use
with cellxgene. It loads data from different formats
(h5ad, loom, or a 10x directory), runs dimensionality reduction,
computes nearest neighbors, computes an embedding, performs clustering,
and saves the results. Includes additional options for naming annotations,
ensuring sparsity, and plotting results."""
# collect slow imports here to make CLI startup more responsive
click.echo("[cellxgene] Starting CLI...")
try:
import matplotlib
matplotlib.use("Agg")
import scanpy as sc
except ImportError:
raise click.ClickException(
"[cellxgene] cellxgene prepare has not been installed. Please run `pip install cellxgene[prepare]` "
"to install the necessary requirements."
)
# scanpy settings
sc.settings.verbosity = 0
sc.settings.autosave = True
# check args
if sparse and not recipe == "none":
raise click.UsageError("Cannot use a recipe when forcing sparsity")
output = expanduser(output)
if not output:
click.echo(
"Warning: No file will be saved, to save the results of cellxgene prepare include "
"--output <filename> to save output to a new file"
)
if isfile(output) and not overwrite:
raise click.UsageError(f"Cannot overwrite existing file {output}, try using the flag --overwrite")
def load_data(data):
if isfile(data):
name, extension = splitext(data)
if extension == ".h5ad":
adata = sc.read_h5ad(data)
elif extension == ".loom":
adata = sc.read_loom(data)
else:
raise click.FileError(data, hint="does not have a valid extension [.h5ad | .loom]")
elif isdir(data):
if not data.endswith(sep):
data += sep
adata = sc.read_10x_mtx(data)
else:
raise click.FileError(data, hint="not a valid file or path")
if not set_obs_names == "":
if set_obs_names not in adata.obs_keys():
raise click.UsageError(f"obs {set_obs_names} not found, options are: {adata.obs_keys()}")
adata.obs_names = adata.obs[set_obs_names]
if not set_var_names == "":
if set_var_names not in adata.var_keys():
raise click.UsageError(f"var {set_var_names} not found, options are: {adata.var_keys()}")
adata.var_names = adata.var[set_var_names]
if make_obs_names_unique:
adata.obs_names_make_unique()
if make_var_names_unique:
adata.var_names_make_unique()
if not adata._obs.index.is_unique:
click.echo("Warning: obs index is not unique")
if not adata._var.index.is_unique:
click.echo("Warning: var index is not unique")
return adata
def calculate_qc_metrics(adata):
if not skip_qc:
sc.pp.calculate_qc_metrics(adata, inplace=True)
return adata
def make_sparse(adata):
if (type(adata.X) is ndarray) and sparse:
adata.X = csc_matrix(adata.X)
def run_recipe(adata):
if recipe == "seurat":
sc.pp.recipe_seurat(adata)
elif recipe == "zheng17":
sc.pp.recipe_zheng17(adata)
else:
sc.pp.filter_cells(adata, min_genes=5)
sc.pp.filter_genes(adata, min_cells=25)
if sparse:
sc.pp.scale(adata, zero_center=False)
else:
sc.pp.scale(adata)
def run_pca(adata):
if sparse:
sc.pp.pca(adata, svd_solver="arpack", zero_center=False)
else:
sc.pp.pca(adata, svd_solver="arpack")
def run_neighbors(adata):
sc.pp.neighbors(adata)
def run_louvain(adata):
sc.tl.louvain(adata)
def run_embedding(adata):
if len(unique(adata.obs["louvain"].values)) < 10:
palette = "tab10"
else:
palette = "tab20"
if "umap" in embedding:
sc.tl.umap(adata)
if plotting:
sc.pl.umap(adata, color="louvain", palette=palette, save="_louvain")
if "tsne" in embedding:
sc.tl.tsne(adata)
if plotting:
sc.pl.tsne(adata, color="louvain", palette=palette, save="_louvain")
def show_step(item):
if not skip_qc:
qc_name = "Calculating QC metrics"
else:
qc_name = "Skipping QC"
names = {
"calculate_qc_metrics": qc_name,
"make_sparse": "Ensuring sparsity",
"run_recipe": f'Running preprocessing recipe "{recipe}"',
"run_pca": "Running PCA",
"run_neighbors": "Calculating neighbors",
"run_louvain": "Calculating clusters",
"run_embedding": "Computing embedding",
}
if item is not None:
return names[item.__name__]
steps = [calculate_qc_metrics, make_sparse, run_recipe, run_pca, run_neighbors, run_louvain, run_embedding]
click.echo(f"[cellxgene] Loading data from {data}, please wait...")
adata = load_data(data)
click.echo("[cellxgene] Beginning preprocessing...")
with click.progressbar(steps, label="[cellxgene] Progress", show_eta=False, item_show_func=show_step) as bar:
for step in bar:
step(adata)
# saving
if not output == "":
click.echo(f"[cellxgene] Saving results to {output}...")
adata.write(output)
click.echo("[cellxgene] Success!")