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It took me a while to figure out why some cout output seem to disappear into the ether. The culprit:

std::cout<< "This line shows up just fine" << std::endl;
const char* some_string = a_function_that_returns_null();
if (some_string == 0)
    std::cout<< "Let's check the value of some_string: " << some_string << std::endl;

std::cout<< "This line and any cout output afterwards will not show up" << std::endl;

The output from the snippet above will be:

This line shows up just fine
Let's check the value of some_string:     

So feeding a NULL into cout will disable all output afterward. Why? And how to fix it?

This doesn't happen all the time - a co-worker with the same code gets all the expected output. And in case you wonder why I can't just prevent feeding NULL into cout with a if statement: I'm working in a large codebase, and don't know where else this happens! All I know is the cout statements I put never showed up.


More info:

a_function_that_returns_null() is actually getenv("HOST"). I checked on the commandline via echo $HOST that the HOST variable is empty. If I do export HOST= (bash flavor), the output are all there. I have no idea what the HOST variable contains initially nor what getenv returns initially when before I modify the HOST variable; all I know is (some_string == 0) is true.

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The reason it happens is because it seems to put cout into an error state. I haven't yet worked out whether it should do that or not. If you put std::cout.clear() in there, it seems to fix it. –  Benjamin Lindley Aug 11 '11 at 0:18
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@Benjamin: It's already UB to stream (char const*)0. [2003: 27.6.2.5.4/3] –  Lightness Races in Orbit Aug 11 '11 at 0:28
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@polyglot: No, you must stop doing this. That your stdlib works around the issue is pure chance and may change at any time. –  Lightness Races in Orbit Aug 11 '11 at 0:39
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@polyglot: No, I will not put that as an answer. Tomalak is right. –  Benjamin Lindley Aug 11 '11 at 0:43
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@polyglot: Trust me when I tell you that you are saving yourself both a tremendous amount of time and a tremendous amount of future work if you fix this properly rather than relying on some fortunate result of UB. This is not the sort of thing you take shortcuts with! –  Lightness Races in Orbit Aug 11 '11 at 0:44
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3 Answers

up vote 19 down vote accepted
const char* some_string = a_function_that_returns_null();

Do you mean that it literally returns a null pointer?

[2003: 27.6.2.5.4]:

template<class traits>
basic_ostream<char,traits>& operator<<(basic_ostream<char,traits>& out, const char* s);

3. Requires: s is non-null.

Then streaming some_string is Undefined Behaviour; you cannot dereference a pointer to get a string — even an empty one — if the pointer is not valid.


This doesn't happen all the time - a co-worker with the same code gets all the expected output

UB leads to unreliable symptoms. That you don't always get a crash can be slightly surprising because most modern OSs make a point of always SIGSEGVing when you try to dereference a null pointer.

However, from a C++ point of view, anything can happen; in your particular case, your standard library implementation may well be checking for a null pointer and setting an error flag on the stream instead of attempting to dereference the pointer. That is its prerogative.

(It's also probably why your subsequent stream operations are failing: attempting to write to a stream does nothing when there's an error flag set.)

For example, the libstdc++ that ships with GCC 4.6.0, despite naming s != 0 as a precondition, does do this:

00325       if (!__s)
00326     __out.setstate(ios_base::badbit);
00327       else

However, you must not rely on this behaviour; it could change at any time!


So, simply don't do this. Stream a valid, but empty, string if you really must.

And what's wrong with std::string?

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Great explanation! –  jweyrich Aug 11 '11 at 0:26
    
@jweyrich: Thanks! :) –  Lightness Races in Orbit Aug 11 '11 at 0:29
    
Now I didn't make that mess, so don't blame me :) I modified the question to contain some more information on a_function_that_returns_null(). Thanks for the extra information though! It's good to know why. –  polyglot Aug 11 '11 at 0:37
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@polyglot: Well, you did. You should have checked the result of your getenv("HOST") call before streaming it to cout. :) –  Lightness Races in Orbit Aug 11 '11 at 0:41
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(Oh dear lord the libstdc++ code looks horrific!) –  Lightness Races in Orbit Aug 11 '11 at 0:42
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I'm fairly sure that cout << (char*)NULL has undefined behavior. I'm afraid that "Don't do that" is the best advice I can offer.

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+1: And good advice it is too. –  Lightness Races in Orbit Aug 11 '11 at 0:34
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When you are trying to output const char*, the stream prints all the bytes until it reaches '\0'. It is leading to undefined behavior. For example, you could print some control symbols (i.e. '\n','\r' and so on) and get unpredictable result.

EDIT: Actually streaming of NULL pointer is enough to get UB. I'm not going to delete my answer due to useful comments.

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Dereferencing the null pointer, however, should result in a crash. –  Arafangion Aug 11 '11 at 0:18
    
@Arafangion: Dereferencing a null pointer results in undefined behavior. I agree that it should result in a crash, but there's no guarantee that it actually will. Some part of the system might be trying to do you a favor by handling the condition. –  Keith Thompson Aug 11 '11 at 0:20
    
@Keith: Possible, but unlikely, but I will agree that we should at least assume that it's always the case. –  Arafangion Aug 11 '11 at 0:21
    
@Arafangion: You may not rely on UB to crash the process. Anything can happen. You only get a crash if you're lucky. (That said, modern OS's do tend to reliably segfault on null pointer references >.<) –  Lightness Races in Orbit Aug 11 '11 at 0:21
    
@Arafangion: er, dereferences* :) –  Lightness Races in Orbit Aug 11 '11 at 0:30
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