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Top Forums Programming -Warray-bounds option to GCC compiler Post 303013090 by bakunin on Wednesday 14th of February 2018 05:46:52 PM
Old 02-14-2018
Quote:
Originally Posted by milhan
What exactly is the -Warray-bounds option to the GCC compiler supposed to warn about?
I am not sure about how basic you need an explanation because the man page is pretty self-explanatory. So just give me some feedback if this doesn't make you get it:

Consider a "normal" variable first: a variable is of a certain data type and hence represents a certain amount of (allocated) memory somewhere in RAM. I.e. when you write a declaration like:

Code:
int myvar

then the compiler sets aside a certain amount of bytes (depends on how "int" is defined, but nowadays usually 4 bytes ^= 32 bits) and you can address this 4-byte space by using the name "myvar".

Now arrays: arrays are basically lists of elements where each element is a variable like above. If you i.e. create an array of 7 elements of the type int the compiler will set aside the same 4 bytes as above - not once but seven times. These seven 4-byte-spaces will be placed one after the other. If you now adress the third element with some operation the compiler "knows" that the elements are 4-byte-blocks and therefore will translate that to byte 9-12 following the base address.

So far so good, but what would happen if you would request the eighth element, hmm? If the compiler doesn't "remember" that your element only has seven elements it would eventually give you the content of byte 29-32 - which holds some other data! What would happen if you'd requested the -2nd element? You might get data which aren't even part of the program (but maybe some OS data!).

These method of accessing array elements which don't even exist have been used historically to get access to memory parts the program would normally not have access to. Modern OSes have all sorts of security measures to make this impossible, but you can still accidentally access (and hence modify) your own program in memory for some probably unwanted effects.

To avoid this there is bounds checking: basically it is the complier making sure whatever array elements you access are being defined before.

I hope this helps.

bakunin
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stack_inbounds(3C)					   Standard C Library Functions 					stack_inbounds(3C)

NAME
stack_inbounds - determine if address is within stack boundaries SYNOPSIS
#include <ucontext.h> int stack_inbounds(void *addr); DESCRIPTION
The stack_inbounds() function returns a boolean value indicating whether the address specified by addr is within the boundaries of the stack of the calling thread. The address is compared to the stack boundary information returned by a call to stack_getbounds(3C). RETURN VALUES
The stack_inbounds() function returns 0 to indicate that addr is not within the current stack bounds, or a non-zero value to indicate that addr is within the stack bounds. ERRORS
No errors are defined. ATTRIBUTES
See attributes(5) for descriptions of the following attributes: +-----------------------------+-----------------------------+ | ATTRIBUTE TYPE | ATTRIBUTE VALUE | +-----------------------------+-----------------------------+ |Interface Stability |Evolving | +-----------------------------+-----------------------------+ |MT-Level |Async-Signal-Safe | +-----------------------------+-----------------------------+ SEE ALSO
stack_getbounds(3C), attributes(5) SunOS 5.11 18 Jul 2002 stack_inbounds(3C)
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