Let's say my company uses 10.0.0.0/16. Now let's say I set up a VPN. Half my users will be on local networks that are also 10.0.x.x. Fail.
Even worse, let's say my company has two locations and both use 10.0.0.x and now we want to link them on a common network using a VPN or virtual Ethernet bridge. Have fun renumbering one of these two sites, or setting up abominations like internal two-way SNAT/DNAT.
The reason IPv6's address space is so huge is to allow relatively stateless assignment of addresses with extremely low probability of conflicts. An IPv6 address is basically a UUID. That's going to make lots of things easier and eliminate the need for a huge number of nasty hacks.
This is exactly why I use 172.16.104.0/21 as my home network range. Almost no one else does so it makes things really easy when I VPN home from a hotel somewhere.
This is the reason why I can't believe we're not all on IPv6 yet. You would think that the online advertising industry would have done everything in their power to push IPv6, at any cost. 90%+ of people on IPv6 will literally have a unique identifier FOR LIFE on every device they own. Marketers can now pinpoint down not just to an IP address that identifies a single NAT interface, but each individual device.
I hope that operating systems and/or routers will provide the option to rotate each IPv6 address on a routine basis. It would also be nice if ISPs would rotate the block that is handed out to each customer, but this is unlikely to happen. Every phone, every tablet, every PC, every thermostat, every door lock, every fridge... uniquely identifiable from the day it is hooked up to a network. :(
[0]: http://gcn.com/articles/2012/06/07/fbi-wants-ipv6-hard-to-tr...
It seems like Linux may be a mixed bag (by distro) w/r/t it being enabled as default. I could definitely see cheap embedded devices based on a current Linux distro not bothering to change defaults to enable it.
This is an issue when using SLAAC, yes, but a workaround ("Privacy Extensions") were developed years ago; cf. RFC4941 [0].
You can also assign static addresses or use DHCPv6 -- on your own networks, at least; you obviously can't control how your ISP decides to issue addresses.
See Comcast's presentation about their motivations: http://meetings.ripe.net/ripe-54/presentations/IPv6_manageme...