Skip to main content
  • Home
  • Development
  • Documentation
  • Donate
  • Operational login
  • Browse the archive

swh logo
SoftwareHeritage
Software
Heritage
Archive
Features
  • Search

  • Downloads

  • Save code now

  • Add forge now

  • Help

Revision 11287d19d1d92fdd8a14248f613cc4a6351f0276 authored by ahaghani on 11 February 2021, 21:50:29 UTC, committed by GitHub on 11 February 2021, 21:50:29 UTC
Add files via upload
1 parent e1fd56b
  • Files
  • Changes
  • a1547c5
  • /
  • CMAPS_source
  • /
  • addSNVsToProbes.py
Raw File Download

To reference or cite the objects present in the Software Heritage archive, permalinks based on SoftWare Hash IDentifiers (SWHIDs) must be used.
Select below a type of object currently browsed in order to display its associated SWHID and permalink.

  • revision
  • directory
  • content
revision badge
swh:1:rev:11287d19d1d92fdd8a14248f613cc4a6351f0276
directory badge
swh:1:dir:5088cc59eb5ed4f9a87ba680a43bd978f66d46b8
content badge
swh:1:cnt:b605e90c882886010afc5f585efcb05d61d4b7bc

This interface enables to generate software citations, provided that the root directory of browsed objects contains a citation.cff or codemeta.json file.
Select below a type of object currently browsed in order to generate citations for them.

  • revision
  • directory
  • content
Generate software citation in BibTex format (requires biblatex-software package)
Generating citation ...
Generate software citation in BibTex format (requires biblatex-software package)
Generating citation ...
Generate software citation in BibTex format (requires biblatex-software package)
Generating citation ...
addSNVsToProbes.py
import gzip

if __name__ == "__main__":
    array_file = open("../mammalianChip_36K_probes.tsv", "r")
    scored_probes_file = gzip.open("../allProbes_scored_GW.tsv.gz", "rt")
    output_file = gzip.open("../36K_probes_SNV_species.tsv.gz", "wt")

    # Construct dictionary of probes submitted to Bret
    inf_type_dict = {}
    forward_type_dict = {}
    line_dict = {}
    chrom_dict = {}
    pos_dict = {}
    for line in array_file:
        if line[:2] == "cg":
            split_line = line.strip().split("\t")
            probe_ID = split_line[0].split("_")[0].split("-")[0]
            inf_type = split_line[31]
            forward_type = split_line[0].split("_")[-1]
            chrom_dict[probe_ID] = split_line[4]
            pos_dict[probe_ID] = split_line[5]

            if probe_ID in line_dict:
                print("WTF")
                print(line_dict[probe_ID])
                print(line)
            inf_type_dict[probe_ID] = inf_type
            forward_type_dict[probe_ID] = forward_type
            line_dict[probe_ID] = split_line
        else:
            header_line = line.strip().split("\t")
    output_file.write("\t".join(header_line[:31]) + "\ttarget_SNV1\ttarget_SNV2\ttarget_SNV3\t" +
                      "\t".join(header_line[31:]) + "\n")

    print("Total number of probes on array: ", len(line_dict.keys()))

    # Go through list of all probes and add SNP info
    probes_done_dict = {}
    probes_done = 0

    for line in scored_probes_file:
        split_line = line.strip().split("\t")
        probe_ID = split_line[0]
        forward_type = split_line[15]
        is_converted = (split_line[17] == "C")

        chrom = split_line[3]
        pos = split_line[4]
        if (probe_ID in line_dict) and (forward_type_dict[probe_ID] == forward_type) and (is_converted) and \
                chrom_dict[probe_ID] == chrom and pos_dict[probe_ID] == pos:
            probes_done += 1
            if probe_ID in probes_done_dict:
                print("WTF")
                print(probe_ID)
                print(line_dict[probe_ID])
                print(line)
                exit(1)
            probes_done_dict[probe_ID] = 1
            if probes_done % 100 == 0:
                print("Probes done so far: ", probes_done)
            inf_type = inf_type_dict[probe_ID]

            output_file.write("\t".join(line_dict[probe_ID][:31]) + "\t")
            if inf_type == "Inf1":
                output_file.write(split_line[30] + "\t" + split_line[31] + "\t" + split_line[32] + "\t")
            else:
                output_file.write(split_line[40] + "\t" + split_line[41] + "\t" + split_line[42] + "\t")
            output_file.write("\t".join(line_dict[probe_ID][31:]) + "\n")

    probes_not_done = open("../probes_not_done.tsv", "w")
    for probe_ID in line_dict:
        if probe_ID not in probes_done_dict:
            probes_not_done.write("\t".join(line_dict[probe_ID]) + "\n")

    output_file.close()
The diff you're trying to view is too large. Only the first 1000 changed files have been loaded.
Showing with 0 additions and 0 deletions (0 / 0 diffs computed)
swh spinner

Computing file changes ...

back to top

Software Heritage — Copyright (C) 2015–2026, The Software Heritage developers. License: GNU AGPLv3+.
The source code of Software Heritage itself is available on our development forge.
The source code files archived by Software Heritage are available under their own copyright and licenses.
Terms of use: Archive access, API— Content policy— Contact— JavaScript license information— Web API