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I have a simple sqlite3 table that looks like this:

Table: Part
Part    SuperPart
wk0Z    wk00
wk06    wk02
wk07    wk02
eZ01    eZ00
eZ02    eZ00
eZ03    eZ01
eZ04    eZ01

I need to run a recursive query to find all the pairs of a given SuperPart with all of its subParts. So let's say that I have eZ00. eZ00 is a superpart of eZ01 and eZ01 is a superpart of eZ03. The result must include not only the pairs (eZ00, eZ01) and (eZ01 and eZ03) but must also include the pair (eZ00, eZ03).

I know there are other ways of defining the table, but I have no choice here. I know i can use several unions if I know the depth of my tree, but I won't allways know how depth I want to go. It'd help to have something like WITH RECURSIVE or even just WITH (,,) AS x but for what I've searched, that's not possible in sqlite, right?

Is there a way to do this recursive query in sqlite3?

UPDATE:

When this question was made, SQLite didn't support recursive queries, but as stated by @lunicon, SQLite now supports recursive CTE since 3.8.3 sqlite.org/lang_with.html

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If anyone is looking for something to use with Android, WITH is only available from API Level 20 (Android L) using 3.8.4.3; if you want compatibility with lower APIs you'll have to go with johndpope's answer which is supported from API Level 8 (2.2) using 3.6.22. –  TWiStErRob Aug 5 at 9:32

3 Answers 3

up vote 16 down vote accepted

SQLite doesn't support recursive CTEs (or CTEs at all for that matter), there is no WITH in SQLite. Since you don't know how deep it goes, you can't use the standard JOIN trick to fake the recursive CTE. You have to do it the hard way and implement the recursion in your client code:

  • Grab the initial row and the sub-part IDs.
  • Grab the rows and sub-part IDs for the sub-parts.
  • Repeat until nothing comes back.

If you're lucky enough to be using SQLite 3.8.3 or higher then you do have access to recursive and non-recursive CTEs using WITH:

enter image description here

So now you can use the standard WITH RECURSIVE approach just like in all the other modern databases.

Thanks to lunicon for letting us know about this SQLite update.

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It makes sense, I was wondering if I could do it with pure sql. –  Eric Sep 17 '11 at 19:32
1  
@Eric: Sorry, not with SQLite. You could (of course) if WITH RECURSIVE was available and you could if SQLite had a procedure language. You might be able to define your own SQL functions in whatever language you're using outside SQLite. –  mu is too short Sep 17 '11 at 19:39
1  
@Eric: Right, thank you fellow Eric, I feeling like I'm talking to myself about fixing my own typo :) –  mu is too short Sep 19 '11 at 22:29
4  
Since 3.8.3 SQLite support recursive CTE! see examples sqlite.org/lang_with.html –  lunicon Feb 10 at 8:43
1  
@lunicon: Do you want to turn the comment into an answer? I'd certainly upvote it and maybe we could get Eric to come back and switch the accept. –  mu is too short Feb 10 at 8:50

In this SQLite Release 3.8.3 On 2014-02-03 has been added support for CTEs. Here is documentation WITH clause Example:

WITH RECURSIVE
cnt(x) AS (
 SELECT 1
 UNION ALL
 SELECT x+1 FROM cnt
  LIMIT 1000000
)
SELECT x FROM cnt;
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@Eric I haven't down voted your question, a was seeking for solution and when I have found it have decided to add answer. –  Lemberg Mar 6 at 16:47
    
All the examples shown work, but when I try to roll my own I get "no such column" errors. –  Michael Jun 17 at 3:30

there's a hack http://dje.me/2011/03/26/sqlite-data-trees.html

-- A method for storing and retrieving hierarchical data in sqlite3
-- by using a trigger and a temporary table.
-- I needed this but had trouble finding information on it.

-- This is for sqlite3, it mostly won't work on anything else, however 
-- most databases have better ways to do this anyway.

PRAGMA recursive_triggers = TRUE; -- This is not possible before 3.6.18

-- When creating the Node table either use a primary key or some other 
-- identifier which the child node can reference.

CREATE TABLE Node (id INTEGER PRIMARY KEY, parent INTEGER, 
    label VARCHAR(16));

INSERT INTO Node (parent, label) VALUES(NULL, "root");
INSERT INTO Node (parent, label) VALUES(1, "a");
INSERT INTO Node (parent, label) VALUES(2, "b");
INSERT INTO Node (parent, label) VALUES(3, "c1");
INSERT INTO Node (parent, label) VALUES(3, "c2");

-- Create the temp table, note that node is not a primary key
-- which insures the order of the results when Node records are
-- inserted out of order

CREATE TEMP TABLE Path (node INTEGER, parent INTEGER, 
    label VARCHAR(16));

CREATE TRIGGER find_path AFTER INSERT ON Path BEGIN
    INSERT INTO Path SELECT Node.* FROM Node WHERE 
        Node.id = new.parent;
END;


-- The flaw here is that label must be unique, so when creating
-- the table there must be a unique reference for selection
-- This insert sets off the trigger find_path

INSERT INTO Path SELECT * FROM Node WHERE label = "c2";

-- Return the hierarchy in order from "root" to "c2"
SELECT * FROM Path ORDER BY node ASC;

DROP TABLE Path; -- Important if you are staying connected


-- To test this run:
-- sqlite3 -init tree.sql tree.db
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