bio | website | |
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location | Kitchener ON | |
age | ||
visits | member for | 3 years, 3 months |
seen | Apr 6 at 15:14 | |
stats | profile views | 167 |
Jul 12 |
awarded | Popular Question |
Apr 27 |
awarded | Yearling |
Feb 15 |
awarded | Excavator |
Feb 15 |
comment |
Finding all paths in a directed graph with cycles
I would phrase the short version as follows. Consider your graph as a DFA with initial state your starting node and final state your ending node and give all your edges unique labels and use the set of labels as your alphabet. The language accepted by this DFA represents the set of all paths from your start node to your end node. You can, if you want, compute a regular expression for this language by using the McNaughton-Yamada algorithm. |
Feb 15 |
revised |
Finding all paths in a directed graph with cycles
The alphabet is over edges of the graph, not nodes. |
Feb 15 |
suggested | suggested edit on Finding all paths in a directed graph with cycles |
Jul 18 |
comment |
Combining lenses
You cannot combine lenes, or setters safely in such a way in general because there is no way to enforce that the two lens or setters do not overlap. |
Jul 18 |
comment |
Combining lenses
((_1 ~&~ _1) %~ ('y':)) . ((_1 ~&~ _1) %~ ('z':)) $ ("",()) === ("yyzz",()) while (_1 ~&~ _1) %~ (('y':) . ('z':)) $ ("",()) === ("yzyz",()) |
Jul 18 |
comment |
Combining lenses
(_1 ~&~ _1) does not satisfy the Setter (aka SEC) laws. |
Apr 27 |
awarded | Yearling |
Apr 22 |
comment |
What does “coalgebra” mean in the context of programming?
Given the stated question someone should provide an answer that mentions the laws required for a coalgebra for a comonad. I have no time for such an answer at the moment. |
Feb 22 |
awarded | Necromancer |
Dec 6 |
awarded | Guru |
Jun 24 |
answered | What is the Store comonad? |
Jun 19 |
comment |
Tying the Knot with a State monad
See also paste.lisp.org/display/36311 made by eq |
Jun 18 |
answered | Tying the Knot with a State monad |
Apr 27 |
awarded | Yearling |
Jan 19 |
awarded | Revival |
Dec 21 |
awarded | Good Answer |
Dec 8 |
awarded | Commentator |