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Jun
11
awarded  Revival
Jun
1
accepted Computing nearest vertex neighbors in a DAG completed by transitive-closure
May
29
comment Computing nearest vertex neighbors in a DAG completed by transitive-closure
A topological sort induces a partial order over vertices such that their edge directions are always one-way (e.g., right for [v0,v1,...,vN]). So, if we're searching for a path from v0 -> vi, we can't possibly find one from v0 -> ... -> vj where vi < vj in the partial order, because the order indicates there is no path back from vj to vi. Therefore, limiting the BFS in this way is correct. However, the computational complexity is harder to analyse: the O(|V|+|E|) complexity of computing the order is outweighed by the complexity of path-finding between vertex pairs.
May
29
comment Computing nearest vertex neighbors in a DAG completed by transitive-closure
Non-existence of a path using naive BFS may be expensive, as it may search large portions of the graph which cannot contain a solution. However, I'm thinking that the BFS can be limited by the topological order, in that no path v0 -> ... -> vN where v1 > vN in the order need be further considered.
May
28
comment Computing nearest vertex neighbors in a DAG completed by transitive-closure
+1. I suspect this solution might be more efficient than the one I've proposed. In contrast, it uses the edges as the starting point instead of testing combinations of vertices. Secondly, checking for the existence of a longer path between v0 and v1 even using BFS should still be cheap in general, because the transitive closure between v_0 -> ... -> v_1 contains edges between every interior vertex v_i and v_j for i < j. I wonder if the topological sort can still be used to limit the BFS though, such that we don't search past vertices which are > v1 in the order. Many thanks.
May
28
comment Computing nearest vertex neighbors in a DAG completed by transitive-closure
Path checking between two vertices can be performed over the original graph using Dijkstra's algorithm in PTIME. I'm not sure about my topological sort approach either, which is why I'm after a solution that is correct and (hopefully) more efficient!
May
28
revised Computing nearest vertex neighbors in a DAG completed by transitive-closure
added 88 characters in body
May
28
revised Computing nearest vertex neighbors in a DAG completed by transitive-closure
clarified question
May
28
comment Computing nearest vertex neighbors in a DAG completed by transitive-closure
I'm not distinguishing between edges which are asserted, or those which were inferred by the transitive closure. I'm just dealing with a graph that has a certain shape -- one completed by transitive closure -- though perhaps introducing that step was confusing. For clarity, I've edited my post to make my question bold.
May
28
comment Computing nearest vertex neighbors in a DAG completed by transitive-closure
Yes, that's the problem! The graph includes all edges which can be inferred by it's transitive closure.
May
28
revised Computing nearest vertex neighbors in a DAG completed by transitive-closure
deleted 18 characters in body
May
28
revised Computing nearest vertex neighbors in a DAG completed by transitive-closure
added other necessary contraint
May
25
revised Computing nearest vertex neighbors in a DAG completed by transitive-closure
fixed alg description: edge, not path
May
25
revised Computing nearest vertex neighbors in a DAG completed by transitive-closure
tidied code & question
May
25
revised Computing nearest vertex neighbors in a DAG completed by transitive-closure
changes to alg, still wondering if it is correct/efficient
May
25
revised Computing nearest vertex neighbors in a DAG completed by transitive-closure
added a suggestion
May
25
revised Computing nearest vertex neighbors in a DAG completed by transitive-closure
made question clearer
May
25
asked Computing nearest vertex neighbors in a DAG completed by transitive-closure
May
23
reviewed Reject suggested edit on positioning jpanel at the bottom
May
23
reviewed Approve suggested edit on “auth_client_using_bad_version_title” is translated here but not found in default locale