Earlier quoted context omitted.
> -Acceptance: "Just dont write UB." Just switch to a saner language. And before I get attacked for being a Rust shill, I meant Java :P The bar is so low it's floating near the center of the Earth.
> And before I get attacked for being a Rust shill, I meant Java :P If all you want is C but less insane then the obvious answer here is Zig.
Everything in C is undefined behavior
221–230 of 748 posts
Re: Everything in C is undefined behavior
#222I have never in my 20 years of writing C heard so much about undefined behavior as I have in the past 6 months on Hacker News. It has never entered the conversation. You write the code. If it doesn't work, you debug it and apply a fix or a workaround. Why does the idea of undefined behavior in C get to the front page so consistently?
2. You don't really appreciate the issue. Signed integer overflow is undefined. If you check for that overflow after the fact the compiler can, and demonstrably has pretended that the overflow can't happen and optimised away your overflow check.
You may not even come across that failure mode to know to 'fix' it. And good luck finding the issue unless you know about UB and what the compiler can and will do in such situations.
Re: Everything in C is undefined behavior
#223Earlier quoted context omitted.
Yes, there is a data race there. The value of a volatile can be changed by something outside the current thread. That’s what volatile means and why it exists. Edit: thread=thread of execution. I’m not making a point about thread safety within a program.
Not from the standard’s point of view. The traditional (in some circles) use of volatile for atomic variables was not sanctioned by the C11/C++11 thread model; if you want an atomic, write atomic, not volatile, or be aware of your dependency on a compiler (like MSVC) that explicitly amends the language definition so as to allow cross-thread access to volatile variables.
Re: Everything in C is undefined behavior
#224The problem of UB is not really that it may crash in some architecture. The real problem is that the compiler expects UB code to NOT happen, so if you write UB code anyway the compiler (and especially the optimizer) is allowed to translate that to anything that's convenient for its happy path. And sometimes that "anything" can be really unexpected (like removing big chunks of code).
Re: Everything in C is undefined behavior
#225Re: Everything in C is undefined behavior
#226Yes there is tons of surprising and weird UB in C, but this article doesn't do a great job of showcasing it. It barely scratches the surface. Here's a way weirder example: volatile int x = 5; printf("%d in hex is 0x%x.\n", x, x); This is totally fine if x is just an int, but the volatile makes it UB. Why? 5.1.2.4.1 says any volatile access - including just reading it - is a side effect. 6.5.1.2 says that unsequenced…
That said, your “common parlance” definition of “data race” is not the definition used by the C standard, so your last sentence is at best misleading in a discussion of standard C.
> The execution of a program contains a data race if it contains two conflicting actions in different threads, at least one of which is not atomic, and neither happens before the other. Any such data race results in undefined behavior.
(Here “conflicting” and “happens before” are defined in the preceding text.)
Re: Everything in C is undefined behavior
#227Yes there is tons of surprising and weird UB in C, but this article doesn't do a great job of showcasing it. It barely scratches the surface. Here's a way weirder example: volatile int x = 5; printf("%d in hex is 0x%x.\n", x, x); This is totally fine if x is just an int, but the volatile makes it UB. Why? 5.1.2.4.1 says any volatile access - including just reading it - is a side effect. 6.5.1.2 says that unsequenced…
Yes, there is a data race there. The value of a volatile can be changed by something outside the current thread. That’s what volatile means and why it exists. Edit: thread=thread of execution. I’m not making a point about thread safety within a program.
I'm also not convinced (yet) that the example really is UB: I agree reading a volatile is "a side effect" in some sense, and GP cited a paragraph that says just that. But GP doesn't clearly quote that it's a side effect on the object (or how a side effect on an object is defined). Reading an object doesn't mutate it after all.
But whatever language lawyer things, the code is obviously broken, with an obvious fix, so I'm not so interested in what its semantics should be. Here is the fix:
volatile int x;
// ...
int val = x; // volatile read
printf("%x %d\n", val, val);Re: Everything in C is undefined behavior
#228Earlier quoted context omitted.
Removing code paths that the programmer has explicitly laid out in the source code should be made a hard compile error unless the operation has been tagged with an attribute (anyone who wants to add the unsafe keyword to C? ). Another commenter suggested using LLMs, but I disagree. Having clangd emit warning squiggles for unchecked operations (like signed addition) would be a good start.
> Removing code paths that the programmer has explicitly laid out in the source code should be made a hard compile error unless the operation has been tagged with an attribute (anyone who wants to add the unsafe keyword to C? ). Dead code elimination is essential for performance, especially when using templates (this is basically what enables the fabled "zero cost abstraction" because complex template code may genera…
Not, that the compiler can also emit code paths before UB, as UB is a property of the whole program, not just of a single statement.
Re: Everything in C is undefined behavior
#229I have never in my 20 years of writing C heard so much about undefined behavior as I have in the past 6 months on Hacker News. It has never entered the conversation. You write the code. If it doesn't work, you debug it and apply a fix or a workaround. Why does the idea of undefined behavior in C get to the front page so consistently?
Re: Everything in C is undefined behavior
#230Earlier quoted context omitted.
What stage is the "just make the compiler define the undefined" stage? Unaligned access? Packed structs. Compiler will magically generate the correct code, as if it had always known how to do it right all along! Because it has, in fact, always known how to do it right. It just didn't. Strict aliasing? Union type punning. Literally documented to work in any compiler that matters, despite the holy C standard never sayi…
> What stage is the "just make the compiler define the undefined" stage? It can be left as implementation defined, which means that the compiler can't simply do arbitrary things, it needs to document what it would do. Take, for example, signed-integer overflow: currently a compiler can simply refuse to emit the code in one spot while emitting it in another spot in the same compilation unit! Making it IB means that th…
So we have the next best thing: builtins and flags. So long as those cover all the undefined behavior there is, we can live with it. Compiler gets to be "conformant" and we get to do useful things without the compiler folding the code into itself and inside out.