Earlier quoted context omitted.
The most common definition of memory safe is literally "cannot segfault" (unless invoking some explicitly unsafe operation - which is not the case here unless you think the "go" keyword should be unsafe).
The definition has to do with certain classes of spatial and temporal memory errors. Ie., the ability to access memory outside the bounds of an array would be an example of a spatial memory error. Use-after-free would be an example of a temporal one. The violation occurs if the program keeps running after having violated a memory safety property. If the program terminates, then it can still be memory safe in the defi…
I don't know what you're trying to say here. C would also be memory-safe if the program just simply stopped after violating memory safety, but it doesn't necessarily do that, so it's not memory safe. And neither is Go.