std::string utf16toUTF8()

in androidLibs/fbjni/cxx/fbjni/detail/utf8.cpp [241:275]


std::string utf16toUTF8(const uint16_t* utf16String, size_t utf16StringLen) noexcept {
  if (!utf16String || utf16StringLen <= 0) {
    return "";
  }

  std::string utf8String(utf16toUTF8Length(utf16String, utf16StringLen), '\0');
  auto idx8 = utf8String.begin();
  auto idx16 = utf16String;
  auto utf16StringEnd = utf16String + utf16StringLen;
  while (idx16 < utf16StringEnd) {
    auto ch = *idx16++;
    if (ch < kUtf8OneByteBoundary) {
      *idx8++ = (ch & 0x7F);
    } else if (ch < kUtf8TwoBytesBoundary) {
      *idx8++ = 0b11000000 | (ch >> 6);
      *idx8++ = 0b10000000 | (ch & 0x3F);
    } else if (
        (ch >= kUtf16HighSubLowBoundary) && (ch < kUtf16HighSubHighBoundary) &&
        (idx16 < utf16StringEnd) &&
        (*idx16 >= kUtf16HighSubHighBoundary) && (*idx16 < kUtf16LowSubHighBoundary)) {
      auto ch2 = *idx16++;
      uint8_t trunc_byte = (((ch >> 6) & 0x0F) + 1);
      *idx8++ = 0b11110000 | (trunc_byte >> 2);
      *idx8++ = 0b10000000 | ((trunc_byte & 0x03) << 4) | ((ch >> 2) & 0x0F);
      *idx8++ = 0b10000000 | ((ch & 0x03) << 4) | ((ch2 >> 6) & 0x0F);
      *idx8++ = 0b10000000 | (ch2 & 0x3F);
    } else {
      *idx8++ = 0b11100000 | (ch >> 12);
      *idx8++ = 0b10000000 | ((ch >> 6) & 0x3F);
      *idx8++ = 0b10000000 | (ch & 0x3F);
    }
  }

  return utf8String;
}