Defined in header <cstddef> | ||
---|---|---|
Defined in header <cstdio> | ||
Defined in header <cstdlib> | ||
Defined in header <cstring> | ||
Defined in header <ctime> | ||
Defined in header <cwchar> | ||
typedef /*implementation-defined*/ size_t; |
std::size_t
is the unsigned integer type of the result of the sizeof
operator as well as the sizeof...
operator and the alignof
operator (since C++11).
std::size_t
can store the maximum size of a theoretically possible object of any type (including array). A type whose size cannot be represented by std::size_t
is ill-formed (since C++14) On many platforms (an exception is systems with segmented addressing) std::size_t
can safely store the value of any non-member pointer, in which case it is synonymous with std::uintptr_t
.
std::size_t
is commonly used for array indexing and loop counting. Programs that use other types, such as unsigned int
, for array indexing may fail on, e.g. 64-bit systems when the index exceeds UINT_MAX
or if it relies on 32-bit modular arithmetic.
When indexing C++ containers, such as std::string
, std::vector
, etc, the appropriate type is the member typedef size_type
provided by such containers. It is usually defined as a synonym for std::size_t
.
#include <cstddef> #include <iostream> #include <array> int main() { std::array<std::size_t,10> a; for (std::size_t i = 0; i != a.size(); ++i) a[i] = i; for (std::size_t i = a.size()-1; i < a.size(); --i) std::cout << a[i] << " "; }
Output:
9 8 7 6 5 4 3 2 1 0
signed integer type returned when subtracting two pointers (typedef) |
|
byte offset from the beginning of a standard-layout type to specified member (function macro) |
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