libostd/octa/string.h

377 lines
9.4 KiB
C++

/* String for OctaSTD.
*
* This file is part of OctaSTD. See COPYING.md for futher information.
*/
#ifndef OCTA_STRING_H
#define OCTA_STRING_H
#include <stdio.h>
#include <stddef.h>
#include "octa/utility.h"
#include "octa/range.h"
#include "octa/vector.h"
namespace octa {
static constexpr octa::Size npos = -1;
template<typename T, typename A = octa::Allocator<T>>
class StringBase {
octa::Vector<T> p_buf;
void terminate() {
if (p_buf.empty() || (p_buf.back() != '\0')) p_buf.push('\0');
}
public:
using Size = octa::Size;
using Difference = octa::Ptrdiff;
using Value = T;
using Reference = T &;
using ConstReference = const T &;
using Pointer = T *;
using ConstPointer = const T *;
using Range = octa::PointerRange<T>;
using ConstRange = octa::PointerRange<const T>;
using Allocator = A;
StringBase(const A &a = A()): p_buf(1, '\0', a) {}
StringBase(const StringBase &s): p_buf(s.p_buf) {}
StringBase(const StringBase &s, const A &a):
p_buf(s.p_buf, a) {}
StringBase(StringBase &&s): p_buf(octa::move(s.p_buf)) {}
StringBase(StringBase &&s, const A &a):
p_buf(octa::move(s.p_buf), a) {}
StringBase(const StringBase &s, octa::Size pos, octa::Size len = npos,
const A &a = A()):
p_buf(s.p_buf.each().slice(pos,
(len == npos) ? s.p_buf.size() : (pos + len)), a) {
terminate();
}
/* TODO: traits for utf-16/utf-32 string lengths, for now assume char */
StringBase(const T *v, const A &a = A()):
p_buf(ConstRange(v, strlen(v) + 1), a) {}
template<typename R> StringBase(R range, const A &a = A()):
p_buf(range, a) {
terminate();
}
void clear() { p_buf.clear(); }
StringBase<T> &operator=(const StringBase &v) {
p_buf.operator=(v);
return *this;
}
StringBase<T> &operator=(StringBase &&v) {
p_buf.operator=(octa::move(v));
return *this;
}
StringBase<T> &operator=(const T *v) {
p_buf = ConstRange(v, strlen(v) + 1);
return *this;
}
void resize(octa::Size n, T v = T()) {
p_buf.pop();
p_buf.resize(n, v);
terminate();
}
void reserve(octa::Size n) {
p_buf.reserve(n + 1);
}
T &operator[](octa::Size i) { return p_buf[i]; }
const T &operator[](octa::Size i) const { return p_buf[i]; }
T &at(octa::Size i) { return p_buf[i]; }
const T &at(octa::Size i) const { return p_buf[i]; }
T &front() { return p_buf[0]; }
const T &front() const { return p_buf[0]; };
T &back() { return p_buf[size() - 1]; }
const T &back() const { return p_buf[size() - 1]; }
T *data() { return p_buf.data(); }
const T *data() const { return p_buf.data(); }
octa::Size size() const {
return p_buf.size() - 1;
}
octa::Size capacity() const {
return p_buf.capacity() - 1;
}
bool empty() const { return (size() == 0); }
void push(T v) {
p_buf.back() = v;
p_buf.push('\0');
}
StringBase<T> &append(const StringBase &s) {
p_buf.pop();
p_buf.insert_range(p_buf.size(), s.p_buf.each());
return *this;
}
StringBase<T> &append(const StringBase &s, octa::Size idx, octa::Size len) {
p_buf.pop();
p_buf.insert_range(p_buf.size(), Range(&s[idx],
(len == npos) ? (s.size() - idx) : len));
terminate();
return *this;
}
StringBase<T> &append(const T *s) {
p_buf.pop();
p_buf.insert_range(p_buf.size(), ConstRange(s,
strlen(s) + 1));
return *this;
}
StringBase<T> &append(octa::Size n, T c) {
p_buf.pop();
for (octa::Size i = 0; i < n; ++i) p_buf.push(c);
p_buf.push('\0');
return *this;
}
template<typename R>
StringBase<T> &append_range(R range) {
p_buf.pop();
p_buf.insert_range(p_buf.size(), range);
terminate();
return *this;
}
StringBase<T> &operator+=(const StringBase &s) {
return append(s);
}
StringBase<T> &operator+=(const T *s) {
return append(s);
}
StringBase<T> &operator+=(T c) {
p_buf.pop();
p_buf.push(c);
p_buf.push('\0');
return *this;
}
Range each() {
return Range(p_buf.data(), size());
}
ConstRange each() const {
return ConstRange(p_buf.data(), size());
}
void swap(StringBase &v) {
p_buf.swap(v);
}
};
using String = StringBase<char>;
template<typename T, typename F>
String concat(const T v, const String &sep, F func) {
String ret;
auto range = octa::each(v);
if (range.empty()) return octa::move(ret);
for (;;) {
ret += func(range.front());
range.pop_front();
if (range.empty()) break;
ret += sep;
}
return octa::move(ret);
}
template<typename T>
String concat(const T &v, const String &sep = " ") {
String ret;
auto range = octa::each(v);
if (range.empty()) return octa::move(ret);
for (;;) {
ret += range.front();
range.pop_front();
if (range.empty()) break;
ret += sep;
}
return octa::move(ret);
}
template<typename T, typename F>
String concat(std::initializer_list<T> v, const String &sep, F func) {
return concat(octa::each(v), sep, func);
}
template<typename T>
String concat(std::initializer_list<T> v, const String &sep = " ") {
return concat(octa::each(v), sep);
}
namespace detail {
template<typename T>
struct ToStringTest {
template<typename U, String (U::*)() const> struct Test {};
template<typename U> static char test(Test<U, &U::to_string> *);
template<typename U> static int test(...);
static constexpr bool value = (sizeof(test<T>(0)) == sizeof(char));
};
}
template<typename T> struct ToString {
using Argument = T;
using Result = String;
template<typename U>
static String to_str(const U &v,
octa::EnableIf<octa::detail::ToStringTest<U>::value, bool> = true
) {
return v.to_string();
}
template<typename U>
static String to_str(const U &v,
octa::EnableIf<!octa::detail::ToStringTest<U>::value &&
!octa::IsScalar<U>::value, bool> = true
) {
String ret("{");
ret += concat(octa::each(v), ", ", ToString<octa::RangeReference<
decltype(octa::each(v))
>>());
ret += "}";
return octa::move(ret);
}
template<typename U>
static String to_str(const U &v,
octa::EnableIf<!octa::detail::ToStringTest<U>::value &&
octa::IsScalar<U>::value, bool> = true
) {
return ToString<U>()(v);
}
String operator()(const T &v) {
return octa::move(to_str<octa::RemoveCv<
octa::RemoveReference<T>
>>(v));
}
};
namespace detail {
template<typename T>
void str_printf(octa::Vector<char> *s, const char *fmt, T v) {
char buf[256];
int n = snprintf(buf, sizeof(buf), fmt, v);
s->clear();
s->reserve(n + 1);
if (n >= (int)sizeof(buf))
snprintf(s->data(), n + 1, fmt, v);
else if (n > 0)
memcpy(s->data(), buf, n + 1);
else {
n = 0;
*(s->data()) = '\0';
}
*(((octa::Size *)s) + 1) = n + 1;
}
}
template<> struct ToString<bool> {
using Argument = bool;
using Result = String;
String operator()(bool b) {
return b ? "true" : "false";
}
};
template<> struct ToString<char> {
using Argument = char;
using Result = String;
String operator()(char c) {
String ret;
ret.push(c);
return octa::move(ret);
}
};
#define OCTA_TOSTR_NUM(T, fmt) \
template<> struct ToString<T> { \
using Argument = T; \
using Result = String; \
String operator()(T v) { \
String ret; \
octa::detail::str_printf((octa::Vector<char> *)&ret, fmt, v); \
return octa::move(ret); \
} \
};
OCTA_TOSTR_NUM(int, "%d")
OCTA_TOSTR_NUM(int &, "%d")
OCTA_TOSTR_NUM(long, "%ld")
OCTA_TOSTR_NUM(float, "%f")
OCTA_TOSTR_NUM(double, "%f")
OCTA_TOSTR_NUM(octa::uint, "%u")
OCTA_TOSTR_NUM(octa::ulong, "%lu")
OCTA_TOSTR_NUM(octa::llong, "%lld")
OCTA_TOSTR_NUM(octa::ullong, "%llu")
OCTA_TOSTR_NUM(octa::ldouble, "%Lf")
#undef OCTA_TOSTR_NUM
template<typename T> struct ToString<T *> {
using Argument = T *;
using Result = String;
String operator()(Argument v) {
String ret;
octa::detail::str_printf((octa::Vector<char> *)&ret, "%p", v);
return octa::move(ret);
}
};
template<> struct ToString<String> {
using Argument = const String &;
using Result = String;
String operator()(Argument s) {
return s;
}
};
template<typename T, typename U> struct ToString<octa::Pair<T, U>> {
using Argument = const octa::Pair<T, U> &;
using Result = String;
String operator()(Argument v) {
String ret("{");
ret += ToString<octa::RemoveCv<octa::RemoveReference<T>>>()
(v.first);
ret += ", ";
ret += ToString<octa::RemoveCv<octa::RemoveReference<U>>>()
(v.second);
ret += "}";
return octa::move(ret);
}
};
template<typename T>
String to_string(const T &v) {
return octa::move(ToString<octa::RemoveCv<octa::RemoveReference<T>>>
()(v));
}
template<typename T>
String to_string(std::initializer_list<T> init) {
return octa::move(ToString<std::initializer_list<T>>()(init));
}
} /* namespace octa */
#endif