| 1 | /* stringlib: locale related helpers implementation */
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| 2 |
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| 3 | #ifndef STRINGLIB_LOCALEUTIL_H
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| 4 | #define STRINGLIB_LOCALEUTIL_H
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| 5 |
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| 6 | #include <locale.h>
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| 7 |
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| 8 | #define MAX(x, y) ((x) < (y) ? (y) : (x))
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| 9 | #define MIN(x, y) ((x) < (y) ? (x) : (y))
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| 10 |
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| 11 | typedef struct {
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| 12 | const char *grouping;
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| 13 | char previous;
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| 14 | Py_ssize_t i; /* Where we're currently pointing in grouping. */
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| 15 | } GroupGenerator;
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| 16 |
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| 17 | static void
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| 18 | _GroupGenerator_init(GroupGenerator *self, const char *grouping)
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| 19 | {
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| 20 | self->grouping = grouping;
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| 21 | self->i = 0;
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| 22 | self->previous = 0;
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| 23 | }
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| 24 |
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| 25 | /* Returns the next grouping, or 0 to signify end. */
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| 26 | static Py_ssize_t
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| 27 | _GroupGenerator_next(GroupGenerator *self)
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| 28 | {
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| 29 | /* Note that we don't really do much error checking here. If a
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| 30 | grouping string contains just CHAR_MAX, for example, then just
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| 31 | terminate the generator. That shouldn't happen, but at least we
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| 32 | fail gracefully. */
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| 33 | switch (self->grouping[self->i]) {
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| 34 | case 0:
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| 35 | return self->previous;
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| 36 | case CHAR_MAX:
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| 37 | /* Stop the generator. */
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| 38 | return 0;
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| 39 | default: {
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| 40 | char ch = self->grouping[self->i];
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| 41 | self->previous = ch;
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| 42 | self->i++;
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| 43 | return (Py_ssize_t)ch;
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| 44 | }
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| 45 | }
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| 46 | }
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| 47 |
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| 48 | /* Fill in some digits, leading zeros, and thousands separator. All
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| 49 | are optional, depending on when we're called. */
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| 50 | static void
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| 51 | fill(STRINGLIB_CHAR **digits_end, STRINGLIB_CHAR **buffer_end,
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| 52 | Py_ssize_t n_chars, Py_ssize_t n_zeros, const char* thousands_sep,
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| 53 | Py_ssize_t thousands_sep_len)
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| 54 | {
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| 55 | #if STRINGLIB_IS_UNICODE
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| 56 | Py_ssize_t i;
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| 57 | #endif
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| 58 |
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| 59 | if (thousands_sep) {
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| 60 | *buffer_end -= thousands_sep_len;
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| 61 |
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| 62 | /* Copy the thousands_sep chars into the buffer. */
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| 63 | #if STRINGLIB_IS_UNICODE
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| 64 | /* Convert from the char's of the thousands_sep from
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| 65 | the locale into unicode. */
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| 66 | for (i = 0; i < thousands_sep_len; ++i)
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| 67 | (*buffer_end)[i] = thousands_sep[i];
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| 68 | #else
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| 69 | /* No conversion, just memcpy the thousands_sep. */
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| 70 | memcpy(*buffer_end, thousands_sep, thousands_sep_len);
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| 71 | #endif
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| 72 | }
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| 73 |
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| 74 | *buffer_end -= n_chars;
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| 75 | *digits_end -= n_chars;
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| 76 | memcpy(*buffer_end, *digits_end, n_chars * sizeof(STRINGLIB_CHAR));
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| 77 |
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| 78 | *buffer_end -= n_zeros;
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| 79 | STRINGLIB_FILL(*buffer_end, '0', n_zeros);
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| 80 | }
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| 81 |
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| 82 | /**
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| 83 | * _Py_InsertThousandsGrouping:
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| 84 | * @buffer: A pointer to the start of a string.
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| 85 | * @n_buffer: Number of characters in @buffer.
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| 86 | * @digits: A pointer to the digits we're reading from. If count
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| 87 | * is non-NULL, this is unused.
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| 88 | * @n_digits: The number of digits in the string, in which we want
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| 89 | * to put the grouping chars.
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| 90 | * @min_width: The minimum width of the digits in the output string.
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| 91 | * Output will be zero-padded on the left to fill.
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| 92 | * @grouping: see definition in localeconv().
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| 93 | * @thousands_sep: see definition in localeconv().
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| 94 | *
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| 95 | * There are 2 modes: counting and filling. If @buffer is NULL,
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| 96 | * we are in counting mode, else filling mode.
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| 97 | * If counting, the required buffer size is returned.
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| 98 | * If filling, we know the buffer will be large enough, so we don't
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| 99 | * need to pass in the buffer size.
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| 100 | * Inserts thousand grouping characters (as defined by grouping and
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| 101 | * thousands_sep) into the string between buffer and buffer+n_digits.
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| 102 | *
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| 103 | * Return value: 0 on error, else 1. Note that no error can occur if
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| 104 | * count is non-NULL.
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| 105 | *
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| 106 | * This name won't be used, the includer of this file should define
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| 107 | * it to be the actual function name, based on unicode or string.
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| 108 | *
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| 109 | * As closely as possible, this code mimics the logic in decimal.py's
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| 110 | _insert_thousands_sep().
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| 111 | **/
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| 112 | Py_ssize_t
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| 113 | _Py_InsertThousandsGrouping(STRINGLIB_CHAR *buffer,
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| 114 | Py_ssize_t n_buffer,
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| 115 | STRINGLIB_CHAR *digits,
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| 116 | Py_ssize_t n_digits,
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| 117 | Py_ssize_t min_width,
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| 118 | const char *grouping,
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| 119 | const char *thousands_sep)
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| 120 | {
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| 121 | Py_ssize_t count = 0;
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| 122 | Py_ssize_t n_zeros;
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| 123 | int loop_broken = 0;
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| 124 | int use_separator = 0; /* First time through, don't append the
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| 125 | separator. They only go between
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| 126 | groups. */
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| 127 | STRINGLIB_CHAR *buffer_end = NULL;
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| 128 | STRINGLIB_CHAR *digits_end = NULL;
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| 129 | Py_ssize_t l;
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| 130 | Py_ssize_t n_chars;
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| 131 | Py_ssize_t thousands_sep_len = strlen(thousands_sep);
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| 132 | Py_ssize_t remaining = n_digits; /* Number of chars remaining to
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| 133 | be looked at */
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| 134 | /* A generator that returns all of the grouping widths, until it
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| 135 | returns 0. */
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| 136 | GroupGenerator groupgen;
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| 137 | _GroupGenerator_init(&groupgen, grouping);
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| 138 |
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| 139 | if (buffer) {
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| 140 | buffer_end = buffer + n_buffer;
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| 141 | digits_end = digits + n_digits;
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| 142 | }
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| 143 |
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| 144 | while ((l = _GroupGenerator_next(&groupgen)) > 0) {
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| 145 | l = MIN(l, MAX(MAX(remaining, min_width), 1));
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| 146 | n_zeros = MAX(0, l - remaining);
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| 147 | n_chars = MAX(0, MIN(remaining, l));
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| 148 |
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| 149 | /* Use n_zero zero's and n_chars chars */
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| 150 |
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| 151 | /* Count only, don't do anything. */
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| 152 | count += (use_separator ? thousands_sep_len : 0) + n_zeros + n_chars;
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| 153 |
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| 154 | if (buffer) {
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| 155 | /* Copy into the output buffer. */
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| 156 | fill(&digits_end, &buffer_end, n_chars, n_zeros,
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| 157 | use_separator ? thousands_sep : NULL, thousands_sep_len);
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| 158 | }
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| 159 |
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| 160 | /* Use a separator next time. */
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| 161 | use_separator = 1;
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| 162 |
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| 163 | remaining -= n_chars;
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| 164 | min_width -= l;
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| 165 |
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| 166 | if (remaining <= 0 && min_width <= 0) {
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| 167 | loop_broken = 1;
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| 168 | break;
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| 169 | }
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| 170 | min_width -= thousands_sep_len;
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| 171 | }
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| 172 | if (!loop_broken) {
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| 173 | /* We left the loop without using a break statement. */
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| 174 |
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| 175 | l = MAX(MAX(remaining, min_width), 1);
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| 176 | n_zeros = MAX(0, l - remaining);
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| 177 | n_chars = MAX(0, MIN(remaining, l));
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| 178 |
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| 179 | /* Use n_zero zero's and n_chars chars */
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| 180 | count += (use_separator ? thousands_sep_len : 0) + n_zeros + n_chars;
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| 181 | if (buffer) {
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| 182 | /* Copy into the output buffer. */
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| 183 | fill(&digits_end, &buffer_end, n_chars, n_zeros,
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| 184 | use_separator ? thousands_sep : NULL, thousands_sep_len);
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| 185 | }
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| 186 | }
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| 187 | return count;
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| 188 | }
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| 189 |
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| 190 | /**
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| 191 | * _Py_InsertThousandsGroupingLocale:
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| 192 | * @buffer: A pointer to the start of a string.
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| 193 | * @n_digits: The number of digits in the string, in which we want
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| 194 | * to put the grouping chars.
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| 195 | *
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| 196 | * Reads thee current locale and calls _Py_InsertThousandsGrouping().
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| 197 | **/
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| 198 | Py_ssize_t
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| 199 | _Py_InsertThousandsGroupingLocale(STRINGLIB_CHAR *buffer,
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| 200 | Py_ssize_t n_buffer,
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| 201 | STRINGLIB_CHAR *digits,
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| 202 | Py_ssize_t n_digits,
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| 203 | Py_ssize_t min_width)
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| 204 | {
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| 205 | struct lconv *locale_data = localeconv();
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| 206 | const char *grouping = locale_data->grouping;
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| 207 | const char *thousands_sep = locale_data->thousands_sep;
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| 208 |
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| 209 | return _Py_InsertThousandsGrouping(buffer, n_buffer, digits, n_digits,
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| 210 | min_width, grouping, thousands_sep);
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| 211 | }
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| 212 | #endif /* STRINGLIB_LOCALEUTIL_H */
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