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I was wondering if python has some built-in library (or any library on the net..) That will create for for me a graph of dependencies ? I have a file formatted like that

A::Requires         = ""
B::Requires     = A
C::Requires     = B
H::Requires     = A

AA::Requires         = ""
BB::Requires         = AA
C::Requires     = B

CC::Requires    = BB

Ideally I would like to have something like a tree like that:

A
 +-B
   +-C
 +-H

AA
 +-BB
   +-CC

So basically A lib where I will provide a tuple (A,B) or (A,H) and it will build the tree for me? If such a lib doesn't exist, what would be the easier way to accomplish something like that?

Thank you

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3 Answers 3

up vote 3 down vote accepted

Try with one of the several ones:

graph-tool is very difficult to install (it needs a lot of memory for compilation, I think it was around 5GB of RAM and around 12 hours of compilation).

networkx is pretty decent.

igraph quote from their page: igraph is a free software package for creating and manipulating undirected and directed graphs. It includes implementations for classic graph theory problems like minimum spanning trees and network flow, and also implements algorithms for some recent network analysis methods, like community structure search.

I've been using all of them. It really depends on what exactly do you need. If you need them for something as simple as dependencies, then it really is not important which one you are going to use, though, I would recomend you to avoud graph-tool if you need it for something shorter and lighter.

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Thank you. I think that networkx will be more than enough! I really just need to do like Graph.add_edge(A,B) etc.. and networkx will create for me the graph. One question though. I have been playing a bit with it. But How Can I get the list of depencies ? After creating the graph, i would ask networkx to give me {A:{B:{C:{}}, H:{}}} –  Johny19 Jan 9 '13 at 17:53
1  
IMHO igraph is not made for biological research. It is made for any kind of networks. –  Gabor Csardi Jan 9 '13 at 20:24
    
Thanks @GaborCsardi for the critics. I edited my post. +1 on your comment for the correction! –  Belphegor Jan 14 '13 at 17:05
    
@Johny19 I am not entirely sure, I've been using a lot of graph libraries lately and things got mixed up in my head. Search through the documentation and find some examples and learn from them, it shouldn't be hard for you. –  Belphegor Jan 14 '13 at 17:07

Assuming your input from above is given as a string in raw:

import networkx as nx
import re

regex = re.compile(r'^([A-Z]+)::Requires\s+=\s([A-Z"]+)$')

G = nx.DiGraph()
roots = set()
for l in raw.splitlines():
    if len(l):
        target, prereq = regex.match(l).groups()
        if prereq == '""':
            roots.add(target)
        else:
            G.add_edge(prereq, target)

Now print the tree(s):

for s in roots:
    print s
    spacer = {s: 0}
    for prereq, target in nx.dfs_edges(G, s):
        spacer[target] = spacer[prereq] + 2
        print '{spacer}+-{t}'.format(
                                     spacer=' ' * spacer[prereq],
                                     t=target)
    print ''

this prints:

A
+-H
+-B
  +-C

AA
+-BB
  +-CC

This requires that all roots are presented through root::Requires = "" in order for them to be identified as such.

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you can produce a .dot file and compile it with graphviz git it a try! http://www.graphviz.org/

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That would produce the graph. How does he produce the .dot file with python though? –  sigmavirus24 Jan 9 '13 at 17:06
    
you can write a dot file with pithon and then call a command to compile it with graphviz or you can use something like code.google.com/p/pydot –  JoseP Jan 9 '13 at 17:08
    
So pydot will parse his input and create the graph? It doesn't seem that way. Beyond that, he doesn't want to produce a graphic (or he doesn't say that he does). What he wants is an implementation of the graph. –  sigmavirus24 Jan 9 '13 at 17:13

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