Here is a clever trick to enable hash autovivification in ruby (taken from facets):

  # File lib/core/facets/hash/autonew.rb, line 19
  def self.autonew(*args)
    leet = lambda { |hsh, key| hsh[key] = new( &leet ) }

Although it works (of course), I find it really frustrating that I can't figure out how this two liner does what it does.

leet is put as a default value. So that then just accessing h['new_key'] somehow brings it up and creates 'new_key' => {}

Now, I'd expect h['new_key'] returning default value object as opposed to evaluating it. That is, 'new_key' => {} is not automatically created. So how does leet actually get called? Especially with two parameters?

3 Answers 3


The standard new method for Hash accepts a block. This block is called in the event of trying to access a key in the Hash which does not exist. The block is passed the Hash itself and the key that was requested (the two parameters) and should return the value that should be returned for the requested key.

You will notice that the leet lambda does 2 things. It returns a new Hash with leet itself as the block for handling defaults. This is the behaviour which allows autonew to work for Hashes of arbitrary depth. It also assigns this new Hash to hsh[key] so that next time you request the same key you will get the existing Hash rather than a new one being created.

  • 1
    Indeed it is. This, in particular, will teach me to never again refer to RubyBook (comes with a standard ruby windows distribution), since it failed to mention that tiny irrelevant fact about blocks and new.
    – artemave
    Oct 1, 2009 at 13:54

It's also worth noting that this code can be made into a one-liner as follows:

def self.autonew(*args)
  new(*args){|hsh, key| hsh[key] = Hash.new(&hsh.default_proc) }

The call to Hash#default_proc returns the proc that was used to create the parent, so we have a nice recursive setup here.

I talk about a similar case to this on my blog.


Alternatively, you might consider my xkeys gem. It's a module that you can use to extend arrays or hashes to facilitate nested access.

If you look for something that doesn't exist yet, you get a nil value (or another value or an exception if you prefer) without creating anything by looking. It can also append to the end of arrays.

You can opt to autovivify either hashes or arrays for integer keys (but just once for the entire structure).

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