I'm hoping that as Swift evolves over time, it will slowly become that sort of language. Right now it's pretty hard to write any real-world code in Swift that doesn't work with the Cocoa frameworks, and the Cocoa frameworks are typed in an objective-c-compatible way (even if new frameworks are written in Swift they'll need to maintain obj-c compatibility), which means you don't get the strong typing that's necessary for this property. Pure Swift code has the potential to behave like this, although you probably need to avoid the ImplicitlyUnwrappedOptional feature (the ! suffix on types), which of course primarily exists for ease of obj-c integration anyway.
I'm bringing up Swift because, with Apple's backing, it's very quickly becoming a "mainstream" language. I put that in quotes because it is only usable with iOS and OS X programming (for now at least), but iOS is large enough that obj-c should be considered a mainstream language despite the fact that almost nobody outside of iOS/OS X uses it, and therefore as Swift supplants obj-c it becomes appropriate to call it mainstream.
Regarding parallelism, I've been in love with Rust for a long time now, and one of the biggest reasons is because Rust makes parallelism safe. As an iOS/OS X programmer by trade, I think thread safety is far and away the biggest elephant in the room. Despite the fact that we've known that multithreading is the future for years, and despite the wonderful Grand Central Dispatch library on iOS/OS X, most programmers still think in a single-threaded mindset and don't even consider how their code should operate if invoked on a separate thread. This was one of my bugaboos with Go back when I was using that language (which was from the day it was announced right up until I discovered Rust, though admittedly my usage was in hobby projects and nothing serious).
I applaud the fact that Go has a data race detector now, which I used to finally uncover a lurking data race that plagued one of my programs for months (and which was ultimately caused by the Go library using two goroutines where I expected one, and therefore data which I expected to be on a single goroutine was actually mutated from two goroutines simultaneously). But I think Rust is absolute proof that a modern language can be designed such that data races are prohibited at compile-time without sacrificing any language flexibility.