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/* implements the unicode (as opposed to string) version of the
built-in formatters for string, int, float. that is, the versions
of int.__float__, etc., that take and return unicode objects */
#include
"Python.h"
#include
"pycore_fileutils.h"
// _Py_GetLocaleconvNumeric()
#include
"pycore_long.h"
// _PyLong_FormatWriter()
#include
"pycore_unicodeobject.h"
// PyUnicode_MAX_CHAR_VALUE()
#include
<locale.h>
/* Raises an exception about an unknown presentation type for this
* type. */
static
void
unknown_presentation_type
(
Py_UCS4
presentation_type
,
const
char
*
type_name
)
{
/* %c might be out-of-range, hence the two cases. */
if
(
presentation_type
>
32
&&
presentation_type
<
128
)
PyErr_Format
(
PyExc_ValueError
,
"Unknown format code '%c' "
"for object of type '%.200s'"
,
(
char
)
presentation_type
,
type_name
);
else
PyErr_Format
(
PyExc_ValueError
,
"Unknown format code '\\x%x' "
"for object of type '%.200s'"
,
(
unsigned
int
)
presentation_type
,
type_name
);
}
static
void
invalid_thousands_separator_type
(
char
specifier
,
Py_UCS4
presentation_type
)
{
assert
(
specifier
==
','
||
specifier
==
'_'
);
if
(
presentation_type
>
32
&&
presentation_type
<
128
)
PyErr_Format
(
PyExc_ValueError
,
"Cannot specify '%c' with '%c'."
,
specifier
, (
char
)
presentation_type
);
else
PyErr_Format
(
PyExc_ValueError
,
"Cannot specify '%c' with '\\x%x'."
,
specifier
, (
unsigned
int
)
presentation_type
);
}
static
void
invalid_comma_and_underscore
(
void
)
{
PyErr_Format
(
PyExc_ValueError
,
"Cannot specify both ',' and '_'."
);
}
/*
get_integer consumes 0 or more decimal digit characters from an
input string, updates *result with the corresponding positive
integer, and returns the number of digits consumed.
returns -1 on error.
*/
static
int
get_integer
(
PyObject
*
str
,
Py_ssize_t
*
ppos
,
Py_ssize_t
end
,
Py_ssize_t
*
result
)
{
Py_ssize_t
accumulator
,
digitval
,
pos
=
*
ppos
;
int
numdigits
;
int
kind
=
PyUnicode_KIND
(
str
);
const
void
*
data
=
PyUnicode_DATA
(
str
);
accumulator
=
numdigits
=
0
;
for
(;
pos
<
end
;
pos
++
,
numdigits
++
) {
digitval
=
Py_UNICODE_TODECIMAL
(
PyUnicode_READ
(
kind
,
data
,
pos
));
if
(
digitval
<
0
)
break
;
/*
Detect possible overflow before it happens:
accumulator * 10 + digitval > PY_SSIZE_T_MAX if and only if
accumulator > (PY_SSIZE_T_MAX - digitval) / 10.
*/
if
(
accumulator
>
(
PY_SSIZE_T_MAX
-
digitval
) /
10
) {
PyErr_Format
(
PyExc_ValueError
,
"Too many decimal digits in format string"
);
*
ppos
=
pos
;
return
-1
;
}
accumulator
=
accumulator
*
10
+
digitval
;
}
*
ppos
=
pos
;
*
result
=
accumulator
;
return
numdigits
;
}
/************************************************************************/
/*********** standard format specifier parsing **************************/
/************************************************************************/
/* returns true if this character is a specifier alignment token */
Py_LOCAL_INLINE
(
int
)
is_alignment_token
(
Py_UCS4
c
)
{
switch
(
c
) {
case
'<'
:
case
'>'
:
case
'='
:
case
'^'
:
return
1
;
default
:
return
0
;
}
}
/* returns true if this character is a sign element */
Py_LOCAL_INLINE
(
int
)
is_sign_element
(
Py_UCS4
c
)
{
switch
(
c
) {
case
' '
:
case
'+'
:
case
'-'
:
return
1
;
default
:
return
0
;
}
}
/* Locale type codes. LT_NO_LOCALE must be zero. */
enum
LocaleType
{
LT_NO_LOCALE
=
0
,
LT_DEFAULT_LOCALE
=
','
,
LT_UNDERSCORE_LOCALE
=
'_'
,
LT_UNDER_FOUR_LOCALE
,
LT_CURRENT_LOCALE
};
typedef
struct
{
Py_UCS4
fill_char
;
Py_UCS4
align
;
int
alternate
;
int
no_neg_0
;
Py_UCS4
sign
;
Py_ssize_t
width
;
enum
LocaleType
thousands_separators
;
Py_ssize_t
precision
;
enum
LocaleType
frac_thousands_separator
;
Py_UCS4
type
;
}
InternalFormatSpec
;
/*
ptr points to the start of the format_spec, end points just past its end.
fills in format with the parsed information.
returns 1 on success, 0 on failure.
if failure, sets the exception
*/
static
int
parse_internal_render_format_spec
(
PyObject
*
obj
,
PyObject
*
format_spec
,
Py_ssize_t
start
,
Py_ssize_t
end
,
InternalFormatSpec
*
format
,
char
default_type
,
char
default_align
)
{
Py_ssize_t
pos
=
start
;
int
kind
=
PyUnicode_KIND
(
format_spec
);
const
void
*
data
=
PyUnicode_DATA
(
format_spec
);
/* end-pos is used throughout this code to specify the length of
the input string */
#define
READ_spec
(
index
) PyUnicode_READ(kind, data, index)
Py_ssize_t
consumed
;
int
align_specified
=
0
;
int
fill_char_specified
=
0
;
format
->
fill_char
=
' '
;
format
->
align
=
default_align
;
format
->
alternate
=
0
;
format
->
no_neg_0
=
0
;
format
->
sign
=
'\0'
;
format
->
width
=
-1
;
format
->
thousands_separators
=
LT_NO_LOCALE
;
format
->
frac_thousands_separator
=
LT_NO_LOCALE
;
format
->
precision
=
-1
;
format
->
type
=
default_type
;
/* If the second char is an alignment token,
then parse the fill char */
if
(
end
-
pos
>=
2
&&
is_alignment_token
(
READ_spec
(
pos
+
1
))) {
format
->
align
=
READ_spec
(
pos
+
1
);
format
->
fill_char
=
READ_spec
(
pos
);
fill_char_specified
=
1
;
align_specified
=
1
;
pos
+=
2
;
}
else
if
(
end
-
pos
>=
1
&&
is_alignment_token
(
READ_spec
(
pos
))) {
format
->
align
=
READ_spec
(
pos
);
align_specified
=
1
;
++
pos
;
}
/* Parse the various sign options */
if
(
end
-
pos
>=
1
&&
is_sign_element
(
READ_spec
(
pos
))) {
format
->
sign
=
READ_spec
(
pos
);
++
pos
;
}
/* If the next character is z, request coercion of negative 0.
Applies only to floats. */
if
(
end
-
pos
>=
1
&&
READ_spec
(
pos
)
==
'z'
) {
format
->
no_neg_0
=
1
;
++
pos
;
}
/* If the next character is #, we're in alternate mode. This only
applies to integers. */
if
(
end
-
pos
>=
1
&&
READ_spec
(
pos
)
==
'#'
) {
format
->
alternate
=
1
;
++
pos
;
}
/* The special case for 0-padding (backwards compat) */
if
(!
fill_char_specified
&&
end
-
pos
>=
1
&&
READ_spec
(
pos
)
==
'0'
) {
format
->
fill_char
=
'0'
;
if
(!
align_specified
&&
default_align
==
'>'
) {
format
->
align
=
'='
;
}
++
pos
;
}
consumed
=
get_integer
(
format_spec
,
&
pos
,
end
,
&
format
->
width
);
if
(
consumed
==
-1
)
/* Overflow error. Exception already set. */
return
0
;
/* If consumed is 0, we didn't consume any characters for the
width. In that case, reset the width to -1, because
get_integer() will have set it to zero. -1 is how we record
that the width wasn't specified. */
if
(
consumed
==
0
)
format
->
width
=
-1
;
/* Comma signifies add thousands separators */
if
(
end
-
pos
&&
READ_spec
(
pos
)
==
','
) {
format
->
thousands_separators
=
LT_DEFAULT_LOCALE
;
++
pos
;
}
/* Underscore signifies add thousands separators */
if
(
end
-
pos
&&
READ_spec
(
pos
)
==
'_'
) {
if
(
format
->
thousands_separators
!=
LT_NO_LOCALE
) {
invalid_comma_and_underscore
();
return
0
;
}
format
->
thousands_separators
=
LT_UNDERSCORE_LOCALE
;
++
pos
;
}
if
(
end
-
pos
&&
READ_spec
(
pos
)
==
','
) {
if
(
format
->
thousands_separators
==
LT_UNDERSCORE_LOCALE
) {
invalid_comma_and_underscore
();
return
0
;
}
}
/* Parse field precision */
if
(
end
-
pos
&&
READ_spec
(
pos
)
==
'.'
) {
++
pos
;
consumed
=
get_integer
(
format_spec
,
&
pos
,
end
,
&
format
->
precision
);
if
(
consumed
==
-1
)
/* Overflow error. Exception already set. */
return
0
;
if
(
end
-
pos
&&
READ_spec
(
pos
)
==
','
) {
if
(
consumed
==
0
) {
format
->
precision
=
-1
;
}
format
->
frac_thousands_separator
=
LT_DEFAULT_LOCALE
;
++
pos
;
++
consumed
;
}
if
(
end
-
pos
&&
READ_spec
(
pos
)
==
'_'
) {
if
(
format
->
frac_thousands_separator
!=
LT_NO_LOCALE
) {
invalid_comma_and_underscore
();
return
0
;
}
if
(
consumed
==
0
) {
format
->
precision
=
-1
;
}
format
->
frac_thousands_separator
=
LT_UNDERSCORE_LOCALE
;
++
pos
;
++
consumed
;
}
if
(
end
-
pos
&&
READ_spec
(
pos
)
==
','
) {
if
(
format
->
frac_thousands_separator
==
LT_UNDERSCORE_LOCALE
) {
invalid_comma_and_underscore
();
return
0
;
}
}
/* Not having a precision or underscore/comma after a dot
is an error. */
if
(
consumed
==
0
) {
PyErr_Format
(
PyExc_ValueError
,
"Format specifier missing precision"
);
return
0
;
}
}
/* Finally, parse the type field. */
if
(
end
-
pos
>
1
) {
/* More than one char remains, so this is an invalid format
specifier. */
/* Create a temporary object that contains the format spec we're
operating on. It's format_spec[start:end] (in Python syntax). */
PyObject
*
actual_format_spec
=
PyUnicode_FromKindAndData
(
kind
,
(
char
*
)
data
+
kind
*
start
,
end
-
start
);
if
(
actual_format_spec
!=
NULL
) {
PyErr_Format
(
PyExc_ValueError
,
"Invalid format specifier '%U' for object of type '%.200s'"
,
actual_format_spec
,
Py_TYPE
(
obj
)
->
tp_name
);
Py_DECREF
(
actual_format_spec
);
}
return
0
;
}
if
(
end
-
pos
==
1
) {
format
->
type
=
READ_spec
(
pos
);
++
pos
;
}
/* Do as much validating as we can, just by looking at the format
specifier. Do not take into account what type of formatting
we're doing (int, float, string). */
if
(
format
->
thousands_separators
) {
switch
(
format
->
type
) {
case
'd'
:
case
'e'
:
case
'f'
:
case
'g'
:
case
'E'
:
case
'G'
:
case
'%'
:
case
'F'
:
case
'\0'
:
/* These are allowed. See PEP 378.*/
break
;
case
'b'
:
case
'o'
:
case
'x'
:
case
'X'
:
/* Underscores are allowed in bin/oct/hex. See PEP 515. */
if
(
format
->
thousands_separators
==
LT_UNDERSCORE_LOCALE
) {
/* Every four digits, not every three, in bin/oct/hex. */
format
->
thousands_separators
=
LT_UNDER_FOUR_LOCALE
;
break
;
}
_Py_FALLTHROUGH
;
default
:
invalid_thousands_separator_type
(
format
->
thousands_separators
,
format
->
type
);
return
0
;
}
}
if
(
format
->
type
==
'n'
&&
format
->
frac_thousands_separator
!=
LT_NO_LOCALE
)
{
invalid_thousands_separator_type
(
format
->
frac_thousands_separator
,
format
->
type
);
return
0
;
}
assert
(
format
->
align
<=
127
);
assert
(
format
->
sign
<=
127
);
return
1
;
}
/* Calculate the padding needed. */
static
void
calc_padding
(
Py_ssize_t
nchars
,
Py_ssize_t
width
,
Py_UCS4
align
,
Py_ssize_t
*
n_lpadding
,
Py_ssize_t
*
n_rpadding
,
Py_ssize_t
*
n_total
)
{
if
(
width
>=
0
) {
if
(
nchars
>
width
)
*
n_total
=
nchars
;
else
*
n_total
=
width
;
}
else
{
/* not specified, use all of the chars and no more */
*
n_total
=
nchars
;
}
/* Figure out how much leading space we need, based on the
aligning */
if
(
align
==
'>'
)
*
n_lpadding
=
*
n_total
-
nchars
;
else
if
(
align
==
'^'
)
*
n_lpadding
=
(
*
n_total
-
nchars
) /
2
;
else
if
(
align
==
'<'
||
align
==
'='
)
*
n_lpadding
=
0
;
else
{
/* We should never have an unspecified alignment. */
Py_UNREACHABLE
();
}
*
n_rpadding
=
*
n_total
-
nchars
-
*
n_lpadding
;
}
/* Do the padding, and return a pointer to where the caller-supplied
content goes. */
static
int
fill_padding
(
_PyUnicodeWriter
*
writer
,
Py_ssize_t
nchars
,
Py_UCS4
fill_char
,
Py_ssize_t
n_lpadding
,
Py_ssize_t
n_rpadding
)
{
Py_ssize_t
pos
;
/* Pad on left. */
if
(
n_lpadding
) {
pos
=
writer
->
pos
;
_PyUnicode_FastFill
(
writer
->
buffer
,
pos
,
n_lpadding
,
fill_char
);
}
/* Pad on right. */
if
(
n_rpadding
) {
pos
=
writer
->
pos
+
nchars
+
n_lpadding
;
_PyUnicode_FastFill
(
writer
->
buffer
,
pos
,
n_rpadding
,
fill_char
);
}
/* Pointer to the user content. */
writer
->
pos
+=
n_lpadding
;
return
0
;
}
/************************************************************************/
/*********** common routines for numeric formatting *********************/
/************************************************************************/
/* Locale info needed for formatting integers and the part of floats
before and including the decimal. Note that locales only support
8-bit chars, not unicode. */
typedef
struct
{
PyObject
*
decimal_point
;
PyObject
*
thousands_sep
;
PyObject
*
frac_thousands_sep
;
const
char
*
grouping
;
char
*
grouping_buffer
;
}
LocaleInfo
;
#define
LocaleInfo_STATIC_INIT
{0, 0, 0, 0}
/* describes the layout for an integer, see the comment in
calc_number_widths() for details */
typedef
struct
{
Py_ssize_t
n_lpadding
;
Py_ssize_t
n_prefix
;
Py_ssize_t
n_spadding
;
Py_ssize_t
n_rpadding
;
char
sign
;
Py_ssize_t
n_sign
;
/* number of digits needed for sign (0/1) */
Py_ssize_t
n_grouped_digits
;
/* Space taken up by the digits, including
any grouping chars. */
Py_ssize_t
n_decimal
;
/* 0 if only an integer */
Py_ssize_t
n_remainder
;
/* Digits in decimal and/or exponent part,
excluding the decimal itself, if
present. */
Py_ssize_t
n_frac
;
Py_ssize_t
n_grouped_frac_digits
;
/* These 2 are not the widths of fields, but are needed by
STRINGLIB_GROUPING. */
Py_ssize_t
n_digits
;
/* The number of digits before a decimal
or exponent. */
Py_ssize_t
n_min_width
;
/* The min_width we used when we computed
the n_grouped_digits width. */
}
NumberFieldWidths
;
/* Given a number of the form:
digits[remainder]
where ptr points to the start and end points to the end, find where
the integer part ends. This could be a decimal, an exponent, both,
or neither.
If a decimal point is present, set *has_decimal and increment
remainder beyond it.
Results are undefined (but shouldn't crash) for improperly
formatted strings.
*/
static
void
parse_number
(
PyObject
*
s
,
Py_ssize_t
pos
,
Py_ssize_t
end
,
Py_ssize_t
*
n_remainder
,
Py_ssize_t
*
n_frac
,
int
*
has_decimal
)
{
Py_ssize_t
frac
;
int
kind
=
PyUnicode_KIND
(
s
);
const
void
*
data
=
PyUnicode_DATA
(
s
);
while
(
pos
<
end
&&
Py_ISDIGIT
(
PyUnicode_READ
(
kind
,
data
,
pos
))) {
++
pos
;
}
frac
=
pos
;
/* Does remainder start with a decimal point? */
*
has_decimal
=
pos
<
end
&&
PyUnicode_READ
(
kind
,
data
,
frac
)
==
'.'
;
/* Skip the decimal point. */
if
(
*
has_decimal
) {
frac
++
;
pos
++
;
}
while
(
pos
<
end
&&
Py_ISDIGIT
(
PyUnicode_READ
(
kind
,
data
,
pos
))) {
++
pos
;
}
*
n_frac
=
pos
-
frac
;
*
n_remainder
=
end
-
pos
;
}
/* not all fields of format are used. for example, precision is
unused. should this take discrete params in order to be more clear
about what it does? or is passing a single format parameter easier
and more efficient enough to justify a little obfuscation?
Return -1 on error. */
static
Py_ssize_t
calc_number_widths
(
NumberFieldWidths
*
spec
,
Py_ssize_t
n_prefix
,
Py_UCS4
sign_char
,
Py_ssize_t
n_start
,
Py_ssize_t
n_end
,
Py_ssize_t
n_remainder
,
Py_ssize_t
n_frac
,
int
has_decimal
,
const
LocaleInfo
*
locale
,
const
InternalFormatSpec
*
format
,
Py_UCS4
*
maxchar
)
{
Py_ssize_t
n_non_digit_non_padding
;
Py_ssize_t
n_padding
;
spec
->
n_digits
=
n_end
-
n_start
-
n_frac
-
n_remainder
-
(
has_decimal
?
1
:
0
);
spec
->
n_lpadding
=
0
;
spec
->
n_prefix
=
n_prefix
;
spec
->
n_decimal
=
has_decimal
?
PyUnicode_GET_LENGTH
(
locale
->
decimal_point
) :
0
;
spec
->
n_remainder
=
n_remainder
;
spec
->
n_frac
=
n_frac
;
spec
->
n_spadding
=
0
;
spec
->
n_rpadding
=
0
;
spec
->
sign
=
'\0'
;
spec
->
n_sign
=
0
;
/* the output will look like:
| |
| <lpadding> <sign> <prefix> <spadding> <grouped_digits> <decimal> <remainder> <rpadding> |
| |
sign is computed from format->sign and the actual
sign of the number
prefix is given (it's for the '0x' prefix)
digits is already known
the total width is either given, or computed from the
actual digits
only one of lpadding, spadding, and rpadding can be non-zero,
and it's calculated from the width and other fields
*/
/* compute the various parts we're going to write */
switch
(
format
->
sign
) {
case
'+'
:
/* always put a + or - */
spec
->
n_sign
=
1
;
spec
->
sign
=
(
sign_char
==
'-'
?
'-'
:
'+'
);
break
;
case
' '
:
spec
->
n_sign
=
1
;
spec
->
sign
=
(
sign_char
==
'-'
?
'-'
:
' '
);
break
;
default
:
/* Not specified, or the default (-) */
if
(
sign_char
==
'-'
) {
spec
->
n_sign
=
1
;
spec
->
sign
=
'-'
;
}
}
if
(
spec
->
n_frac
==
0
) {
spec
->
n_grouped_frac_digits
=
0
;
}
else
{
Py_UCS4
grouping_maxchar
;
spec
->
n_grouped_frac_digits
=
_PyUnicode_InsertThousandsGrouping
(
NULL
,
0
,
NULL
,
0
,
spec
->
n_frac
,
spec
->
n_frac
,
locale
->
grouping
,
locale
->
frac_thousands_sep
,
&
grouping_maxchar
,
1
);
if
(
spec
->
n_grouped_frac_digits
==
-1
) {
return
-1
;
}
*
maxchar
=
Py_MAX
(
*
maxchar
,
grouping_maxchar
);
}
/* The number of chars used for non-digits and non-padding. */
n_non_digit_non_padding
=
spec
->
n_sign
+
spec
->
n_prefix
+
spec
->
n_decimal
+
+
spec
->
n_frac
+
spec
->
n_remainder
;
/* min_width can go negative, that's okay. format->width == -1 means
we don't care. */
if
(
format
->
fill_char
==
'0'
&&
format
->
align
==
'='
)
spec
->
n_min_width
=
(
format
->
width
-
n_non_digit_non_padding
+
spec
->
n_frac
-
spec
->
n_grouped_frac_digits
);
else
spec
->
n_min_width
=
0
;
if
(
spec
->
n_digits
==
0
)
/* This case only occurs when using 'c' formatting, we need
to special case it because the grouping code always wants
to have at least one character. */
spec
->
n_grouped_digits
=
0
;
else
{
Py_UCS4
grouping_maxchar
;
spec
->
n_grouped_digits
=
_PyUnicode_InsertThousandsGrouping
(
NULL
,
0
,
NULL
,
0
,
spec
->
n_digits
,
spec
->
n_min_width
,
locale
->
grouping
,
locale
->
thousands_sep
,
&
grouping_maxchar
,
0
);
if
(
spec
->
n_grouped_digits
==
-1
) {
return
-1
;
}
*
maxchar
=
Py_MAX
(
*
maxchar
,
grouping_maxchar
);
}
/* Given the desired width and the total of digit and non-digit
space we consume, see if we need any padding. format->width can
be negative (meaning no padding), but this code still works in
that case. */
n_padding
=
format
->
width
-
(
n_non_digit_non_padding
+
spec
->
n_grouped_digits
+
spec
->
n_grouped_frac_digits
-
spec
->
n_frac
);
if
(
n_padding
>
0
) {
/* Some padding is needed. Determine if it's left, space, or right. */
switch
(
format
->
align
) {
case
'<'
:
spec
->
n_rpadding
=
n_padding
;
break
;
case
'^'
:
spec
->
n_lpadding
=
n_padding
/
2
;
spec
->
n_rpadding
=
n_padding
-
spec
->
n_lpadding
;
break
;
case
'='
:
spec
->
n_spadding
=
n_padding
;
break
;
case
'>'
:
spec
->
n_lpadding
=
n_padding
;
break
;
default
:
/* Shouldn't get here */
Py_UNREACHABLE
();
}
}
if
(
spec
->
n_lpadding
||
spec
->
n_spadding
||
spec
->
n_rpadding
)
*
maxchar
=
Py_MAX
(
*
maxchar
,
format
->
fill_char
);
if
(
spec
->
n_decimal
)
*
maxchar
=
Py_MAX
(
*
maxchar
,
PyUnicode_MAX_CHAR_VALUE
(
locale
->
decimal_point
));
return
spec
->
n_lpadding
+
spec
->
n_sign
+
spec
->
n_prefix
+
spec
->
n_spadding
+
spec
->
n_grouped_digits
+
spec
->
n_decimal
+
spec
->
n_grouped_frac_digits
+
spec
->
n_remainder
+
spec
->
n_rpadding
;
}
/* Fill in the digit parts of a number's string representation,
as determined in calc_number_widths().
Return -1 on error, or 0 on success. */
static
int
fill_number
(
_PyUnicodeWriter
*
writer
,
const
NumberFieldWidths
*
spec
,
PyObject
*
digits
,
Py_ssize_t
d_start
,
PyObject
*
prefix
,
Py_ssize_t
p_start
,
Py_UCS4
fill_char
,
LocaleInfo
*
locale
,
int
toupper
)
{
/* Used to keep track of digits, decimal, and remainder. */
Py_ssize_t
d_pos
=
d_start
;
const
int
kind
=
writer
->
kind
;
const
void
*
data
=
writer
->
data
;
Py_ssize_t
r
;
if
(
spec
->
n_lpadding
) {
_PyUnicode_FastFill
(
writer
->
buffer
,
writer
->
pos
,
spec
->
n_lpadding
,
fill_char
);
writer
->
pos
+=
spec
->
n_lpadding
;
}
if
(
spec
->
n_sign
==
1
) {
PyUnicode_WRITE
(
kind
,
data
,
writer
->
pos
,
spec
->
sign
);
writer
->
pos
++
;
}
if
(
spec
->
n_prefix
) {
_PyUnicode_FastCopyCharacters
(
writer
->
buffer
,
writer
->
pos
,
prefix
,
p_start
,
spec
->
n_prefix
);
if
(
toupper
) {
Py_ssize_t
t
;
for
(
t
=
0
;
t
<
spec
->
n_prefix
;
t
++
) {
Py_UCS4
c
=
PyUnicode_READ
(
kind
,
data
,
writer
->
pos
+
t
);
c
=
Py_TOUPPER
(
c
);
assert
(
c
<=
127
);
PyUnicode_WRITE
(
kind
,
data
,
writer
->
pos
+
t
,
c
);
}
}
writer
->
pos
+=
spec
->
n_prefix
;
}
if
(
spec
->
n_spadding
) {
_PyUnicode_FastFill
(
writer
->
buffer
,
writer
->
pos
,
spec
->
n_spadding
,
fill_char
);
writer
->
pos
+=
spec
->
n_spadding
;
}
/* Only for type 'c' special case, it has no digits. */
if
(
spec
->
n_digits
!=
0
) {
/* Fill the digits with InsertThousandsGrouping. */
r
=
_PyUnicode_InsertThousandsGrouping
(
writer
,
spec
->
n_grouped_digits
,
digits
,
d_pos
,
spec
->
n_digits
,
spec
->
n_min_width
,
locale
->
grouping
,
locale
->
thousands_sep
,
NULL
,
0
);
if
(
r
==
-1
)
return
-1
;
assert
(
r
==
spec
->
n_grouped_digits
);
d_pos
+=
spec
->
n_digits
;
}
if
(
toupper
) {
Py_ssize_t
t
;
for
(
t
=
0
;
t
<
spec
->
n_grouped_digits
;
t
++
) {
Py_UCS4
c
=
PyUnicode_READ
(
kind
,
data
,
writer
->
pos
+
t
);
c
=
Py_TOUPPER
(
c
);
if
(
c
>
127
) {
PyErr_SetString
(
PyExc_SystemError
,
"non-ascii grouped digit"
);
return
-1
;
}
PyUnicode_WRITE
(
kind
,
data
,
writer
->
pos
+
t
,
c
);
}
}
writer
->
pos
+=
spec
->
n_grouped_digits
;
if
(
spec
->
n_decimal
) {
_PyUnicode_FastCopyCharacters
(
writer
->
buffer
,
writer
->
pos
,
locale
->
decimal_point
,
0
,
spec
->
n_decimal
);
writer
->
pos
+=
spec
->
n_decimal
;
d_pos
+=
1
;
}
if
(
spec
->
n_frac
) {
r
=
_PyUnicode_InsertThousandsGrouping
(
writer
,
spec
->
n_grouped_frac_digits
,
digits
,
d_pos
,
spec
->
n_frac
,
spec
->
n_frac
,
locale
->
grouping
,
locale
->
frac_thousands_sep
,
NULL
,
1
);
if
(
r
==
-1
) {
return
-1
;
}
assert
(
r
==
spec
->
n_grouped_frac_digits
);
d_pos
+=
spec
->
n_frac
;
writer
->
pos
+=
spec
->
n_grouped_frac_digits
;
}
if
(
spec
->
n_remainder
) {
_PyUnicode_FastCopyCharacters
(
writer
->
buffer
,
writer
->
pos
,
digits
,
d_pos
,
spec
->
n_remainder
);
writer
->
pos
+=
spec
->
n_remainder
;
/* d_pos += spec->n_remainder; */
}
if
(
spec
->
n_rpadding
) {
_PyUnicode_FastFill
(
writer
->
buffer
,
writer
->
pos
,
spec
->
n_rpadding
,
fill_char
);
writer
->
pos
+=
spec
->
n_rpadding
;
}
return
0
;
}
static
const
char
no_grouping
[
1
]
=
{
CHAR_MAX
};
/* Find the decimal point character(s?), thousands_separator(s?), and
grouping description, either for the current locale if type is
LT_CURRENT_LOCALE, a hard-coded locale if LT_DEFAULT_LOCALE or
LT_UNDERSCORE_LOCALE/LT_UNDER_FOUR_LOCALE, or none if LT_NO_LOCALE. */
static
int
get_locale_info
(
enum
LocaleType
type
,
enum
LocaleType
frac_type
,
LocaleInfo
*
locale_info
)
{
switch
(
type
) {
case
LT_CURRENT_LOCALE
: {
struct
lconv
*
lc
=
localeconv
();
if
(
_Py_GetLocaleconvNumeric
(
lc
,
&
locale_info
->
decimal_point
,
&
locale_info
->
thousands_sep
)
<
0
) {
return
-1
;
}
/* localeconv() grouping can become a dangling pointer or point
to a different string if another thread calls localeconv() during
the string formatting. Copy the string to avoid this risk. */
locale_info
->
grouping_buffer
=
_PyMem_Strdup
(
lc
->
grouping
);
if
(
locale_info
->
grouping_buffer
==
NULL
) {
PyErr_NoMemory
();
return
-1
;
}
locale_info
->
grouping
=
locale_info
->
grouping_buffer
;
break
;
}
case
LT_DEFAULT_LOCALE
:
case
LT_UNDERSCORE_LOCALE
:
case
LT_UNDER_FOUR_LOCALE
:
locale_info
->
decimal_point
=
PyUnicode_FromOrdinal
(
'.'
);
locale_info
->
thousands_sep
=
PyUnicode_FromOrdinal
(
type
==
LT_DEFAULT_LOCALE
?
','
:
'_'
);
if
(!
locale_info
->
decimal_point
||
!
locale_info
->
thousands_sep
)
return
-1
;
if
(
type
!=
LT_UNDER_FOUR_LOCALE
)
locale_info
->
grouping
=
"\3"
;
/* Group every 3 characters. The
(implicit) trailing 0 means repeat
infinitely. */
else
locale_info
->
grouping
=
"\4"
;
/* Bin/oct/hex group every four. */
break
;
case
LT_NO_LOCALE
:
locale_info
->
decimal_point
=
PyUnicode_FromOrdinal
(
'.'
);
locale_info
->
thousands_sep
=
Py_GetConstant
(
Py_CONSTANT_EMPTY_STR
);
if
(!
locale_info
->
decimal_point
||
!
locale_info
->
thousands_sep
)
return
-1
;
locale_info
->
grouping
=
no_grouping
;
break
;
}
if
(
frac_type
!=
LT_NO_LOCALE
) {
locale_info
->
frac_thousands_sep
=
PyUnicode_FromOrdinal
(
frac_type
==
LT_DEFAULT_LOCALE
?
','
:
'_'
);
if
(!
locale_info
->
frac_thousands_sep
) {
return
-1
;
}
if
(
locale_info
->
grouping
==
no_grouping
) {
locale_info
->
grouping
=
"\3"
;
}
}
else
{
locale_info
->
frac_thousands_sep
=
Py_GetConstant
(
Py_CONSTANT_EMPTY_STR
);
}
return
0
;
}
static
void
free_locale_info
(
LocaleInfo
*
locale_info
)
{
Py_XDECREF
(
locale_info
->
decimal_point
);
Py_XDECREF
(
locale_info
->
thousands_sep
);
Py_XDECREF
(
locale_info
->
frac_thousands_sep
);
PyMem_Free
(
locale_info
->
grouping_buffer
);
}
/************************************************************************/
/*********** string formatting ******************************************/
/************************************************************************/
static
int
format_string_internal
(
PyObject
*
value
,
const
InternalFormatSpec
*
format
,
_PyUnicodeWriter
*
writer
)
{
Py_ssize_t
lpad
;
Py_ssize_t
rpad
;
Py_ssize_t
total
;
Py_ssize_t
len
;
int
result
=
-1
;
Py_UCS4
maxchar
;
len
=
PyUnicode_GET_LENGTH
(
value
);
/* sign is not allowed on strings */
if
(
format
->
sign
!=
'\0'
) {
if
(
format
->
sign
==
' '
) {
PyErr_SetString
(
PyExc_ValueError
,
"Space not allowed in string format specifier"
);
}
else
{
PyErr_SetString
(
PyExc_ValueError
,
"Sign not allowed in string format specifier"
);
}
goto
done
;
}
/* negative 0 coercion is not allowed on strings */
if
(
format
->
no_neg_0
) {
PyErr_SetString
(
PyExc_ValueError
,
"Negative zero coercion (z) not allowed in string format "
"specifier"
);
goto
done
;
}
/* alternate is not allowed on strings */
if
(
format
->
alternate
) {
PyErr_SetString
(
PyExc_ValueError
,
"Alternate form (#) not allowed in string format "
"specifier"
);
goto
done
;
}
/* '=' alignment not allowed on strings */
if
(
format
->
align
==
'='
) {
PyErr_SetString
(
PyExc_ValueError
,
"'=' alignment not allowed "
"in string format specifier"
);
goto
done
;
}
if
((
format
->
width
==
-1
||
format
->
width
<=
len
)
&&
(
format
->
precision
==
-1
||
format
->
precision
>=
len
)) {
/* Fast path */
return
_PyUnicodeWriter_WriteStr
(
writer
,
value
);
}
/* if precision is specified, output no more that format.precision
characters */
if
(
format
->
precision
>=
0
&&
len
>=
format
->
precision
) {
len
=
format
->
precision
;
}
calc_padding
(
len
,
format
->
width
,
format
->
align
,
&
lpad
,
&
rpad
,
&
total
);
maxchar
=
writer
->
maxchar
;
if
(
lpad
!=
0
||
rpad
!=
0
)
maxchar
=
Py_MAX
(
maxchar
,
format
->
fill_char
);
if
(
PyUnicode_MAX_CHAR_VALUE
(
value
)
>
maxchar
) {
Py_UCS4
valmaxchar
=
_PyUnicode_FindMaxChar
(
value
,
0
,
len
);
maxchar
=
Py_MAX
(
maxchar
,
valmaxchar
);
}
/* allocate the resulting string */
if
(
_PyUnicodeWriter_Prepare
(
writer
,
total
,
maxchar
)
==
-1
)
goto
done
;
/* Write into that space. First the padding. */
result
=
fill_padding
(
writer
,
len
,
format
->
fill_char
,
lpad
,
rpad
);
if
(
result
==
-1
)
goto
done
;
/* Then the source string. */
if
(
len
) {
_PyUnicode_FastCopyCharacters
(
writer
->
buffer
,
writer
->
pos
,
value
,
0
,
len
);
}
writer
->
pos
+=
(
len
+
rpad
);
result
=
0
;
done
:
return
result
;
}
/************************************************************************/
/*********** long formatting ********************************************/
/************************************************************************/
static
int
format_long_internal
(
PyObject
*
value
,
const
InternalFormatSpec
*
format
,
_PyUnicodeWriter
*
writer
)
{
int
result
=
-1
;
Py_UCS4
maxchar
=
127
;
PyObject
*
tmp
=
NULL
;
Py_ssize_t
inumeric_chars
;
Py_UCS4
sign_char
=
'\0'
;
Py_ssize_t
n_digits
;
/* count of digits need from the computed
string */
Py_ssize_t
n_remainder
=
0
;
/* Used only for 'c' formatting, which
produces non-digits */
Py_ssize_t
n_prefix
=
0
;
/* Count of prefix chars, (e.g., '0x') */
Py_ssize_t
n_total
;
Py_ssize_t
prefix
=
0
;
NumberFieldWidths
spec
;
long
x
;
/* Locale settings, either from the actual locale or
from a hard-code pseudo-locale */
LocaleInfo
locale
=
LocaleInfo_STATIC_INIT
;
/* no precision allowed on integers */
if
(
format
->
precision
!=
-1
) {
PyErr_SetString
(
PyExc_ValueError
,
"Precision not allowed in integer format specifier"
);
goto
done
;
}
/* no negative zero coercion on integers */
if
(
format
->
no_neg_0
) {
PyErr_SetString
(
PyExc_ValueError
,
"Negative zero coercion (z) not allowed in integer"
" format specifier"
);
goto
done
;
}
/* special case for character formatting */
if
(
format
->
type
==
'c'
) {
/* error to specify a sign */
if
(
format
->
sign
!=
'\0'
) {
PyErr_SetString
(
PyExc_ValueError
,
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