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rippled/include/xrpl/basics/StringUtilities.h

251 lines
6.3 KiB
C++

#pragma once
#include <xrpl/basics/Blob.h>
#include <boost/utility/string_view.hpp>
#include <array>
#include <concepts>
#include <cstddef>
#include <cstdint>
#include <optional>
#include <string>
#include <string_view>
#include <type_traits>
#include <utility>
namespace xrpl {
/**
* Format arbitrary binary data as an SQLite "blob literal".
*
* In SQLite, blob literals must be encoded when used in a query. Per
* https://sqlite.org/lang_expr.html#literal_values_constants_ they are
* encoded as string literals containing hexadecimal data and preceded
* by a single 'X' character.
*
* @param blob An arbitrary blob of binary data
* @return The input, encoded as a blob literal.
*/
std::string
sqlBlobLiteral(Blob const& blob);
namespace detail {
template <typename T>
concept SomeChar = std::same_as<std::remove_cvref_t<T>, int8_t> ||
std::same_as<std::remove_cvref_t<T>, char> || std::same_as<std::remove_cvref_t<T>, uint8_t>;
inline constexpr std::array<std::optional<int>, 256> const kDigitLookupTable = []() {
std::array<std::optional<int>, 256> t{};
for (int i = 0; i < 10; ++i)
t['0' + i] = i;
for (int i = 0; i < 6; ++i)
{
t['A' + i] = 10 + i;
t['a' + i] = 10 + i;
}
return t;
}();
inline std::optional<int>
hexCharToInt(SomeChar auto hexChar)
{
return kDigitLookupTable[static_cast<uint8_t>(hexChar)];
}
} // namespace detail
template <class Iterator>
std::optional<Blob>
strUnHex(std::size_t strSize, Iterator begin, Iterator end)
{
Blob out;
out.reserve((strSize + 1) / 2);
auto iter = begin;
if (strSize & 1)
{
auto const c = detail::hexCharToInt(*iter++);
if (!c.has_value())
return {};
out.push_back(static_cast<unsigned char>(*c));
}
while (iter != end)
{
auto const cHigh = detail::hexCharToInt(*iter++);
if (!cHigh.has_value())
return {};
auto const cLow = detail::hexCharToInt(*iter++);
if (!cLow.has_value())
return {};
out.push_back(static_cast<unsigned char>((*cHigh << 4) | *cLow));
}
return {std::move(out)};
}
inline std::optional<Blob>
strUnHex(std::string_view strSrc)
{
return strUnHex(strSrc.size(), strSrc.cbegin(), strSrc.cend());
}
struct ParsedUrl
{
explicit ParsedUrl() = default;
std::string scheme;
std::string username;
std::string password;
std::string domain;
std::optional<std::uint16_t> port;
std::string path;
bool
operator==(ParsedUrl const& other) const
{
return scheme == other.scheme && domain == other.domain && port == other.port &&
path == other.path;
}
};
bool
parseUrl(ParsedUrl& pUrl, std::string const& strUrl);
/**
* Remove leading and trailing ASCII whitespace.
*
* Whitespace is the fixed set " \t\n\v\f\r"; the current locale is not
* consulted, so the result depends only on the input.
*
* @param str The string to trim.
* @return @p str without leading or trailing whitespace.
*/
std::string
trimWhitespace(std::string str);
/**
* Fold ASCII upper case letters to lower case.
*
* Only 'A' through 'Z' are remapped; every other byte is left alone and the
* current locale is not consulted, so the result depends only on the input.
*
* @param str The string to fold.
* @return @p str with each ASCII upper case letter replaced by its lower case
* equivalent.
*/
std::string
toLower(std::string str);
std::optional<std::uint64_t>
toUInt64(std::string const& s);
/**
* Determines if the given string looks like a TOML-file hosting domain.
*
* Do not use this function to determine if a particular string is a valid
* domain, as this function may reject domains that are otherwise valid and
* doesn't check whether the TLD is valid.
*/
bool
isProperlyFormedTomlDomain(std::string_view domain);
/**
* Whether a view can be passed on as a C string.
*
* A reader given only data() stops at the first null, so the view must reach the
* terminating null. The test rebuilds the view from data() and compares: a view
* that stops earlier rebuilds longer, and so compares unequal.
*
* consteval because reading the byte after the view is only defined when @p str
* points into storage holding a null at or after its end, such as a string
* literal. An unterminated view is then a compile error, not an out-of-bounds
* read.
*
* @param str The view to test.
* @return Whether @p str is null-terminated. A view with no data is not.
*/
consteval bool
isNullTerminated(std::string_view str)
{
if (str.data() == nullptr)
return false;
// Reading past the view is the point, so the usual data() warning does not
// apply.
// NOLINTNEXTLINE(bugprone-suspicious-stringview-data-usage)
return std::string_view{str.data()} == str;
}
/**
* A string that is known to reach its terminating null.
*
* Converts to std::string_view, so it compares and hashes as one. Unlike a
* view, asCString() may be handed to a reader that expects a C string, such
* as json::StaticString.
*
* The only constructor is consteval and rejects a view that stops before the
* null, so the property holds by construction and no caller asserts it.
*/
class NullTerminatedView
{
public:
/**
* Build a view from one that reaches its terminating null.
*
* Explicit, so that a plain view cannot become a proof of termination by
* accident. The conversion the other way stays implicit.
*
* @param view The string to hold. Rejected at compile time if it stops
* before its terminating null, or has no data.
*/
explicit consteval NullTerminatedView(std::string_view view)
: data_(view.data()), size_(view.size())
{
if (!isNullTerminated(view))
throw "xrpl::NullTerminatedView : view does not reach a null";
}
constexpr
operator std::string_view() const noexcept
{
return view();
}
/**
* @return The string as a view.
*/
[[nodiscard]] constexpr std::string_view
view() const noexcept
{
return {data_, size_};
}
/**
* @return The string as a C string. Never null.
*/
[[nodiscard]] constexpr char const*
asCString() const noexcept
{
return data_;
}
private:
char const* data_;
std::size_t size_;
};
} // namespace xrpl