.\" $NetBSD: strtol.3,v 1.40 2017/07/03 21:32:50 wiz Exp $
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.\" This code is derived from software contributed to Berkeley by
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.\" from: @(#)strtol.3 8.1 (Berkeley) 6/4/93
.\"
.Dd November 4, 2016
.Dt STRTOL 3
.Os
.Sh NAME
.Nm strtol ,
.Nm strtoll ,
.Nm strtoimax ,
.Nm strtoq
.Nd convert string value to a long, long long, intmax_t or quad_t integer
.Sh LIBRARY
.Lb libc
.Sh SYNOPSIS
.In stdlib.h
.In limits.h
.Ft long int
.Fn strtol "const char * restrict nptr" "char ** restrict endptr" "int base"
.Ft long long int
.Fn strtoll "const char * restrict nptr" "char ** restrict endptr" "int base"
.Pp
.In inttypes.h
.Ft intmax_t
.Fn strtoimax "const char * restrict nptr" "char ** restrict endptr" "int base"
.Pp
.In sys/types.h
.In stdlib.h
.In limits.h
.Ft quad_t
.Fn strtoq "const char * restrict nptr" "char ** restrict endptr" "int base"
.Sh DESCRIPTION
The
.Fn strtol
function
converts the string in
.Fa nptr
to a
.Ft long int
value.
The
.Fn strtoll
function
converts the string in
.Fa nptr
to a
.Ft long long int
value.
The
.Fn strtoimax
function
converts the string in
.Fa nptr
to an
.Ft intmax_t
value.
The
.Fn strtoq
function
converts the string in
.Fa nptr
to a
.Ft quad_t
value.
.Pp
The conversion is done according to the given
.Fa base ,
which must be between 2 and 36 inclusive,
or be the special value 0.
.Pp
The string may begin with an arbitrary amount of white space
(as determined by
.Xr isspace 3 )
followed by a single optional
.Ql +
or
.Ql -
sign.
If
.Fa base
is zero or 16,
the string may then include a
.Ql 0x
or
.Ql 0X
prefix,
and the number will be read in base 16; otherwise,
.\" if the
.\" .Fa base
.\" is zero or 2,
.\" the string may then include a
.\" .Ql 0b
.\" or
.\" .Ql 0B
.\" prefix,
.\" and the number will be read in base 2; otherwise,
a zero
.Fa base
is taken as 10 (decimal) unless the next character is
.Ql 0 ,
in which case it is taken as 8 (octal).
.Pp
The remainder of the string is converted to an appropriate value
in the obvious manner,
stopping at the first character which is not a valid digit in the given base.
(In bases above 10, the letter
.Ql A
in either upper or lower case
represents 10,
.Ql B
represents 11, and so forth, with
.Ql Z
representing 35.)
.Pp
If
.Fa endptr
is non-nil, the functions store the address of the first invalid character in
.Fa *endptr .
If there were no digits at all, however,
the functions store the original value of
.Fa nptr
in
.Fa *endptr .
(Thus, if
.Fa *nptr
is not
.Ql \e0
but
.Fa **endptr
is
.Ql \e0
on return, the entire string was valid.)
.Sh RETURN VALUES
The
.Fn strtol
function
returns the result of the conversion,
unless the value would underflow or overflow.
If an underflow occurs,
.Fn strtol
returns
.Dv LONG_MIN ,
.Fn strtoll
returns
.Dv LLONG_MIN ,
and
.Fn strtoimax
returns
.Dv INTMAX_MIN .
If an overflow occurs,
.Fn strtol
returns
.Dv LONG_MAX ,
.Fn strtoll
returns
.Dv LLONG_MAX ,
and
.Fn strtoimax
returns
.Dv INTMAX_MAX .
In these cases,
.Va errno
is set to
.Er ERANGE .
If the
.Fa base
argument is not supported then
.Va errno
is set to
.Er EINVAL
and the functions return 0.
.Pp
If no error occurs,
.Va errno
is left unchanged.
This behavior (which is unlike most library functions) is guaranteed
by the pertinent standards.
.Sh EXAMPLES
Because the return value of
.Fn strtol
cannot be used unambiguously to detect an error,
.Va errno
is left unchanged after a successful call.
To ensure that a string is a valid number (i.e., in range and containing no
trailing characters), clear
.Va errno
beforehand explicitly, then check it afterwards:
.Bd -literal -offset indent
char *ep;
long lval;
\&...
errno = 0;
lval = strtol(buf, &ep, 10);
if (ep == buf)
goto not_a_number;
if (*ep != '\e0')
goto trailing_garbage;
if (errno) {
assert(errno == ERANGE);
assert(lval == LONG_MAX || lval == LONG_MIN);
goto out_of_range;
}
.Ed
.Pp
This example will accept
.Dq 12
but not
.Dq 12foo
or
.Dq 12\en .
If trailing whitespace is acceptable, further checks must be done on
.Va *ep ;
alternately, use
.Xr sscanf 3 .
.Pp
If
.Fn strtol
is being used instead of
.Xr atoi 3 ,
error checking is further complicated because the desired return value is an
.Li int
rather than a
.Li long ;
however, on some architectures integers and long integers are the same size.
Thus the following is necessary:
.Bd -literal -offset indent
char *ep;
int ival;
long lval;
\&...
errno = 0;
lval = strtol(buf, &ep, 10);
if (ep == buf)
goto not_a_number;
if (*ep != '\e0')
goto trailing_garbage;
if (errno == ERANGE || lval < INT_MIN || INT_MAX < lval)
goto out_of_range;
assert(errno == 0);
assert(INT_MIN <= lval);
assert(lval <= INT_MAX);
ival = lval;
.Ed
.Sh ERRORS
.Bl -tag -width Er
.It Bq Er EINVAL
The
.Ar base
is not between 2 and 36 and does not contain the special value 0.
.It Bq Er ERANGE
The given string was out of range; the value converted has been clamped.
.El
.Sh SEE ALSO
.Xr atof 3 ,
.Xr atoi 3 ,
.Xr atol 3 ,
.Xr atoll 3 ,
.Xr strtod 3 ,
.Xr strtou 3 ,
.Xr strtoul 3 ,
.Xr strtoull 3 ,
.Xr strtoumax 3
.Sh STANDARDS
The
.Fn strtol
function
conforms to
.St -ansiC .
The
.Fn strtoll
and
.Fn strtoimax
functions conform to
.St -isoC-99 .
.Pp
The
.Fn strtoq
function is a
.Bx
legacy function equivalent to
.Fn strtoll
and should not be used in a new code.
.Sh BUGS
Ignores the current locale.