Fix sign-conversion warnings in headers
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1d2d479afa
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e4edc84101
@ -250,7 +250,7 @@ struct chrono_formatter {
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void write(int value, int width) {
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typedef typename int_traits<int>::main_type main_type;
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main_type n = to_unsigned(value);
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int num_digits = static_cast<int>(internal::count_digits(n));
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int num_digits = internal::count_digits(n);
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if (width > num_digits)
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out = std::fill_n(out, width - num_digits, '0');
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out = format_decimal<char_type>(out, n, num_digits);
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@ -172,7 +172,7 @@ void format_error_code(internal::buffer &out, int error_code,
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abs_value = 0 - abs_value;
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++error_code_size;
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}
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error_code_size += internal::count_digits(abs_value);
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error_code_size += static_cast<size_t>(internal::count_digits(abs_value));
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writer w(out);
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if (message.size() <= inline_buffer_size - error_code_size) {
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w.write(message);
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@ -739,7 +739,7 @@ FMT_FUNC typename std::enable_if<sizeof(Double) == sizeof(uint64_t), bool>::type
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// hi (p1 in Grisu) contains the most significant digits of scaled_upper.
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// hi = floor(upper / one).
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uint32_t hi = static_cast<uint32_t>(upper.f >> -one.e);
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int exp = static_cast<int>(count_digits(hi)); // kappa in Grisu.
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int exp = count_digits(hi); // kappa in Grisu.
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gen_digits_params params = process_specs(specs, cached_exp + exp, buf);
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fp_value.normalize();
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fp scaled_value = fp_value * cached_pow;
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@ -763,16 +763,16 @@ typedef basic_data<> data;
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#ifdef FMT_BUILTIN_CLZLL
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// Returns the number of decimal digits in n. Leading zeros are not counted
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// except for n == 0 in which case count_digits returns 1.
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inline unsigned count_digits(uint64_t n) {
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inline int count_digits(uint64_t n) {
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// Based on http://graphics.stanford.edu/~seander/bithacks.html#IntegerLog10
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// and the benchmark https://github.com/localvoid/cxx-benchmark-count-digits.
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int t = (64 - FMT_BUILTIN_CLZLL(n | 1)) * 1233 >> 12;
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return to_unsigned(t) - (n < data::ZERO_OR_POWERS_OF_10_64[t]) + 1;
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return t - (n < data::ZERO_OR_POWERS_OF_10_64[t]) + 1;
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}
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#else
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// Fallback version of count_digits used when __builtin_clz is not available.
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inline unsigned count_digits(uint64_t n) {
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unsigned count = 1;
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inline int count_digits(uint64_t n) {
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int count = 1;
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for (;;) {
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// Integer division is slow so do it for a group of four digits instead
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// of for every digit. The idea comes from the talk by Alexandrescu
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@ -893,9 +893,9 @@ class decimal_formatter_null : public decimal_formatter {
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#ifdef FMT_BUILTIN_CLZ
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// Optional version of count_digits for better performance on 32-bit platforms.
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inline unsigned count_digits(uint32_t n) {
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inline int count_digits(uint32_t n) {
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int t = (32 - FMT_BUILTIN_CLZ(n | 1)) * 1233 >> 12;
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return to_unsigned(t) - (n < data::ZERO_OR_POWERS_OF_10_32[t]) + 1;
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return t - (n < data::ZERO_OR_POWERS_OF_10_32[t]) + 1;
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}
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#endif
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@ -1006,7 +1006,7 @@ inline Char *format_uint(Char *buffer, UInt value, int num_digits,
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do {
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const char *digits = upper ? "0123456789ABCDEF" : "0123456789abcdef";
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unsigned digit = (value & ((1 << BASE_BITS) - 1));
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*--buffer = static_cast<Char>(BASE_BITS < 4 ? '0' + digit : digits[digit]);
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*--buffer = static_cast<Char>(BASE_BITS < 4 ? static_cast<char>('0' + digit) : digits[digit]);
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} while ((value >>= BASE_BITS) != 0);
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return end;
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}
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@ -1961,7 +1961,9 @@ FMT_CONSTEXPR bool find(Ptr first, Ptr last, T value, Ptr &out) {
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template <>
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inline bool find<false, char>(
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const char *first, const char *last, char value, const char *&out) {
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out = static_cast<const char*>(std::memchr(first, value, last - first));
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const std::ptrdiff_t length = last - first;
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FMT_ASSERT(length >= 0, "invalid input range");
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out = static_cast<const char*>(std::memchr(first, value, static_cast<size_t>(length)));
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return out != FMT_NULL;
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}
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@ -2041,10 +2043,11 @@ FMT_CONSTEXPR const typename ParseContext::char_type *
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template <typename Char, typename ErrorHandler, typename... Args>
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class format_string_checker {
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enum { INVALID_ARG_ID = 0xffffffffu };
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public:
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explicit FMT_CONSTEXPR format_string_checker(
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basic_string_view<Char> format_str, ErrorHandler eh)
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: arg_id_(-1), context_(format_str, eh),
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: arg_id_(INVALID_ARG_ID), context_(format_str, eh),
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parse_funcs_{&parse_format_specs<Args, parse_context_type>...} {}
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FMT_CONSTEXPR void on_text(const Char *, const Char *) {}
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@ -2064,7 +2067,7 @@ class format_string_checker {
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FMT_CONSTEXPR const Char *on_format_specs(const Char *begin, const Char *) {
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context_.advance_to(begin);
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return to_unsigned(arg_id_) < NUM_ARGS ?
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return arg_id_ < NUM_ARGS ?
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parse_funcs_[arg_id_](context_) : begin;
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}
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@ -2077,14 +2080,14 @@ class format_string_checker {
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enum { NUM_ARGS = sizeof...(Args) };
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FMT_CONSTEXPR void check_arg_id() {
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if (internal::to_unsigned(arg_id_) >= NUM_ARGS)
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if (arg_id_ >= NUM_ARGS)
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context_.on_error("argument index out of range");
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}
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// Format specifier parsing function.
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typedef const Char *(*parse_func)(parse_context_type &);
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int arg_id_;
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unsigned arg_id_;
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parse_context_type context_;
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parse_func parse_funcs_[NUM_ARGS > 0 ? NUM_ARGS : 1];
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};
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@ -2287,9 +2290,9 @@ class basic_writer {
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// <left-padding><prefix><numeric-padding><digits><right-padding>
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// where <digits> are written by f(it).
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template <typename Spec, typename F>
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void write_int(unsigned num_digits, string_view prefix,
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void write_int(int num_digits, string_view prefix,
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const Spec &spec, F f) {
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std::size_t size = prefix.size() + num_digits;
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std::size_t size = prefix.size() + static_cast<size_t>(num_digits);
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char_type fill = static_cast<char_type>(spec.fill());
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std::size_t padding = 0;
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if (spec.align() == ALIGN_NUMERIC) {
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@ -2297,9 +2300,9 @@ class basic_writer {
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padding = spec.width() - size;
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size = spec.width();
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}
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} else if (spec.precision > static_cast<int>(num_digits)) {
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} else if (spec.precision > num_digits) {
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size = prefix.size() + internal::to_unsigned(spec.precision);
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padding = internal::to_unsigned(spec.precision) - num_digits;
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padding = internal::to_unsigned(spec.precision - num_digits);
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fill = static_cast<char_type>('0');
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}
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align_spec as = spec;
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@ -2316,8 +2319,8 @@ class basic_writer {
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bool is_negative = internal::is_negative(value);
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if (is_negative)
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abs_value = 0 - abs_value;
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unsigned num_digits = internal::count_digits(abs_value);
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auto &&it = reserve((is_negative ? 1 : 0) + num_digits);
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int num_digits = internal::count_digits(abs_value);
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auto &&it = reserve((is_negative ? 1 : 0) + static_cast<size_t>(num_digits));
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if (is_negative)
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*it++ = static_cast<char_type>('-');
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it = internal::format_decimal<char_type>(it, abs_value, num_digits);
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@ -2338,9 +2341,9 @@ class basic_writer {
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// Counts the number of digits in abs_value. BITS = log2(radix).
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template <unsigned BITS>
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unsigned count_digits() const {
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int count_digits() const {
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unsigned_type n = abs_value;
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unsigned num_digits = 0;
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int num_digits = 0;
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do {
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++num_digits;
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} while ((n >>= BITS) != 0);
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@ -2362,7 +2365,7 @@ class basic_writer {
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struct dec_writer {
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unsigned_type abs_value;
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unsigned num_digits;
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int num_digits;
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template <typename It>
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void operator()(It &&it) const {
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@ -2371,14 +2374,14 @@ class basic_writer {
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};
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void on_dec() {
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unsigned num_digits = internal::count_digits(abs_value);
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int num_digits = internal::count_digits(abs_value);
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writer.write_int(num_digits, get_prefix(), spec,
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dec_writer{abs_value, num_digits});
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}
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struct hex_writer {
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int_writer &self;
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unsigned num_digits;
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int num_digits;
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template <typename It>
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void operator()(It &&it) const {
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@ -2392,7 +2395,7 @@ class basic_writer {
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prefix[prefix_size++] = '0';
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prefix[prefix_size++] = static_cast<char>(spec.type);
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}
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unsigned num_digits = count_digits<4>();
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int num_digits = count_digits<4>();
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writer.write_int(num_digits, get_prefix(), spec,
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hex_writer{*this, num_digits});
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}
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@ -2400,7 +2403,7 @@ class basic_writer {
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template <int BITS>
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struct bin_writer {
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unsigned_type abs_value;
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unsigned num_digits;
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int num_digits;
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template <typename It>
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void operator()(It &&it) const {
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@ -2413,15 +2416,15 @@ class basic_writer {
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prefix[prefix_size++] = '0';
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prefix[prefix_size++] = static_cast<char>(spec.type);
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}
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unsigned num_digits = count_digits<1>();
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int num_digits = count_digits<1>();
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writer.write_int(num_digits, get_prefix(), spec,
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bin_writer<1>{abs_value, num_digits});
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}
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void on_oct() {
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unsigned num_digits = count_digits<3>();
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int num_digits = count_digits<3>();
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if (spec.has(HASH_FLAG) &&
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spec.precision <= static_cast<int>(num_digits)) {
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spec.precision <= num_digits) {
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// Octal prefix '0' is counted as a digit, so only add it if precision
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// is not greater than the number of digits.
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prefix[prefix_size++] = '0';
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@ -2434,7 +2437,7 @@ class basic_writer {
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struct num_writer {
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unsigned_type abs_value;
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unsigned size;
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int size;
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char_type sep;
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template <typename It>
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@ -2446,9 +2449,9 @@ class basic_writer {
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};
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void on_num() {
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unsigned num_digits = internal::count_digits(abs_value);
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int num_digits = internal::count_digits(abs_value);
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char_type sep = internal::thousands_sep<char_type>(writer.locale_);
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unsigned size = num_digits + SEP_SIZE * ((num_digits - 1) / 3);
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int size = num_digits + SEP_SIZE * ((num_digits - 1) / 3);
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writer.write_int(size, get_prefix(), spec,
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num_writer{abs_value, size, sep});
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}
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@ -2904,9 +2907,9 @@ inline void format_decimal(char *&buffer, T value) {
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*buffer++ = internal::data::DIGITS[index + 1];
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return;
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}
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unsigned num_digits = internal::count_digits(abs_value);
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int num_digits = internal::count_digits(abs_value);
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internal::format_decimal<char>(
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internal::make_checked(buffer, num_digits), abs_value, num_digits);
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internal::make_checked(buffer, static_cast<size_t>(num_digits)), abs_value, num_digits);
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buffer += num_digits;
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}
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