+ moved lexer to class
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3 changed files with 1010 additions and 1101 deletions
1339
src/json.hpp
1339
src/json.hpp
File diff suppressed because it is too large
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@ -14,6 +14,7 @@
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#include <type_traits>
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#include <utility>
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#include <vector>
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#include <cmath>
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/*!
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- ObjectType trick from http://stackoverflow.com/a/9860911
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@ -2384,9 +2385,9 @@ class basic_json
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// parser //
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////////////
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class parser
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class lexer
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{
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private:
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public:
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/// token types for the parser
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enum class token_type
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{
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@ -2406,238 +2407,40 @@ class basic_json
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end_of_input
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};
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/// the type of a lexer character
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using lexer_char_t = unsigned char;
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public:
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/// constructor for strings
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inline parser(const std::string& s) : buffer(s)
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inline lexer(const char* s) : m_content(s)
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{
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// set buffer for RE2C
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m_cursor = reinterpret_cast<const lexer_char_t*>(buffer.c_str());
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// set a pointer past the end of the buffer
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m_limit = m_cursor + buffer.size();
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// read first token
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get_token();
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m_start = m_cursor = m_content;
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m_limit = m_content + strlen(m_content);
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}
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/// a parser reading from an input stream
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inline parser(std::istream& _is)
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inline lexer() = default;
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/*!max:re2c */
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inline token_type scan()
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{
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while (_is)
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{
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std::string input_line;
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std::getline(_is, input_line);
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buffer += input_line;
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}
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// set buffer for RE2C
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m_cursor = reinterpret_cast<const lexer_char_t*>(buffer.c_str());
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// set a pointer past the end of the buffer
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m_limit = m_cursor + buffer.size();
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// read first token
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get_token();
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}
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inline basic_json parse()
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{
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switch (last_token)
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{
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case (token_type::begin_object):
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{
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// explicitly set result to object to cope with {}
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basic_json result(value_t::object);
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// read next token
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get_token();
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// closing } -> we are done
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if (last_token == token_type::end_object)
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{
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return result;
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}
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// otherwise: parse key-value pairs
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do
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{
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// store key
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expect_new(token_type::value_string);
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const auto key = get_string();
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// parse separator (:)
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get_token();
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expect_new(token_type::name_separator);
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// parse value
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get_token();
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result[key] = parse();
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// read next character
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get_token();
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}
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while (last_token == token_type::value_separator
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and get_token() == last_token);
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// closing }
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expect_new(token_type::end_object);
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return result;
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}
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case (token_type::begin_array):
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{
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// explicitly set result to object to cope with []
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basic_json result(value_t::array);
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// read next token
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get_token();
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// closing ] -> we are done
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if (last_token == token_type::end_array)
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{
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return result;
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}
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// otherwise: parse values
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do
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{
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// parse value
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result.push_back(parse());
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// read next character
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get_token();
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}
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while (last_token == token_type::value_separator
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and get_token() == last_token);
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// closing ]
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expect_new(token_type::end_array);
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return result;
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}
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case (token_type::literal_null):
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{
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return basic_json(nullptr);
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}
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case (token_type::value_string):
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{
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return basic_json(get_string());
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}
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case (token_type::literal_true):
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{
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return basic_json(true);
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}
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case (token_type::literal_false):
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{
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return basic_json(false);
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}
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case (token_type::value_number):
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{
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// The pointer m_begin points to the beginning of the
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// parsed number. We pass this pointer to std::strtod which
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// sets endptr to the first character past the converted
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// number. If this pointer is not the same as m_cursor,
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// then either more or less characters have been used
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// during the comparison. This can happen for inputs like
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// "01" which will be treated like number 0 followed by
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// number 1.
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// conversion
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char* endptr;
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const auto float_val = std::strtod(reinterpret_cast<const char*>(m_begin), &endptr);
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// check if strtod read beyond the end of the lexem
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if (reinterpret_cast<const lexer_char_t*>(endptr) != m_cursor)
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{
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throw std::invalid_argument(std::string("parse error - ") +
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reinterpret_cast<const char*>(m_begin) + " is not a number");
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}
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// check if conversion loses precision
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const auto int_val = static_cast<int>(float_val);
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if (float_val == int_val)
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{
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// we basic_json not lose precision -> return int
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return basic_json(int_val);
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}
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else
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{
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// we would lose precision -> returnfloat
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return basic_json(float_val);
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}
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}
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default:
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{
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std::string error_msg = "parse error - unexpected \'";
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error_msg += static_cast<char>(m_begin[0]);
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error_msg += "\' (";
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error_msg += token_type_name(last_token) + ")";
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throw std::invalid_argument(error_msg);
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}
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}
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}
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private:
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/*!
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This function implements a scanner for JSON. It is specified using
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regular expressions that try to follow RFC 7159 and ECMA-404 as close
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as possible. These regular expressions are then translated into a
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deterministic finite automaton (DFA) by the tool RE2C. As a result, the
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translated code for this function consists of a large block of code
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with goto jumps.
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@return the class of the next token read from the buffer
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@todo Unicode support needs to be checked.
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*/
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inline token_type get_token()
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{
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// needed by RE2C
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const lexer_char_t* marker = nullptr;
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// set up RE2C
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#define YYFILL(n)
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/*!re2c
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re2c:labelprefix = "json_parser_";
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re2c:yyfill:enable = 0;
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re2c:define:YYCURSOR = m_cursor;
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re2c:define:YYCTYPE = lexer_char_t;
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re2c:define:YYMARKER = marker;
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re2c:indent:string = " ";
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re2c:define:YYLIMIT = m_limit;
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*/
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json_parser_lexer_start:
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// set current to the begin of the buffer
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m_begin = m_cursor;
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if (m_begin == m_limit)
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{
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return last_token = token_type::end_of_input;
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}
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/*!re2c
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// whitespace
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ws = [ \t\n\r]*;
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ws { goto json_parser_lexer_start; }
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re2c:define:YYCTYPE = char;
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re2c:define:YYCTXMARKER = m_ctxmarker;
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re2c:define:YYMARKER = m_marker;
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re2c:indent:top = 1;
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re2c:yyfill:enable = 0;
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// structural characters
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"[" { return last_token = token_type::begin_array; }
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"]" { return last_token = token_type::end_array; }
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"{" { return last_token = token_type::begin_object; }
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"}" { return last_token = token_type::end_object; }
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"," { return last_token = token_type::value_separator; }
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":" { return last_token = token_type::name_separator; }
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"[" { return token_type::begin_array; }
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"]" { return token_type::end_array; }
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"{" { return token_type::begin_object; }
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"}" { return token_type::end_object; }
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"," { return token_type::value_separator; }
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":" { return token_type::name_separator; }
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// literal names
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"null" { return last_token = token_type::literal_null; }
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"true" { return last_token = token_type::literal_true; }
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"false" { return last_token = token_type::literal_false; }
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"null" { return token_type::literal_null; }
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"true" { return token_type::literal_true; }
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"false" { return token_type::literal_false; }
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// number
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decimal_point = [.];
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@ -2651,7 +2454,7 @@ json_parser_lexer_start:
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frac = decimal_point digit+;
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int = (zero|digit_1_9 digit*);
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number = minus? int frac? exp?;
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number { return last_token = token_type::value_number; }
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number { return token_type::value_number; }
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// string
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quotation_mark = [\"];
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@ -2660,58 +2463,16 @@ json_parser_lexer_start:
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escaped = escape ([\"\\/bfnrt] | [u][0-9a-fA-F]{4});
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char = unescaped | escaped;
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string = quotation_mark char* quotation_mark;
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string { return last_token = token_type::value_string; }
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string { return token_type::value_string; }
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// anything else is an error
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* { return last_token = token_type::parse_error; }
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// end of file
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'\000' { return token_type::end_of_input; }
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*/
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}
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inline static std::string token_type_name(token_type t)
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inline std::string get_string_value() const
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{
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switch (t)
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{
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case (token_type::uninitialized):
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return "<uninitialized>";
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case (token_type::literal_true):
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return "true literal";
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case (token_type::literal_false):
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return "false literal";
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case (token_type::literal_null):
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return "null literal";
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case (token_type::value_string):
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return "string literal";
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case (token_type::value_number):
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return "number literal";
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case (token_type::begin_array):
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return "[";
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case (token_type::begin_object):
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return "{";
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case (token_type::end_array):
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return "]";
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case (token_type::end_object):
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return "}";
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case (token_type::name_separator):
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return ":";
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case (token_type::value_separator):
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return ",";
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case (token_type::parse_error):
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return "<parse error>";
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case (token_type::end_of_input):
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return "<end of input>";
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}
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}
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inline void expect_new(token_type t)
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{
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if (t != last_token)
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{
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std::string error_msg = "parse error - unexpected \'";
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error_msg += static_cast<char>(m_begin[0]);
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error_msg += "\' (" + token_type_name(last_token);
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error_msg += "); expected " + token_type_name(t);
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throw std::invalid_argument(error_msg);
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}
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return std::string(m_start, static_cast<size_t>(m_cursor - m_start));
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}
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/*!
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@ -2727,23 +2488,266 @@ json_parser_lexer_start:
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*/
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inline std::string get_string() const
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{
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return std::string(
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reinterpret_cast<const char*>(m_begin + 1),
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static_cast<std::size_t>(m_cursor - m_begin - 2)
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);
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return std::string(m_start + 1, static_cast<size_t>(m_cursor - m_start - 2));
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}
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inline number_float_t get_number() const
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{
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// The pointer m_begin points to the beginning of the
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// parsed number. We pass this pointer to std::strtod which
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// sets endptr to the first character past the converted
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// number. If this pointer is not the same as m_cursor,
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// then either more or less characters have been used
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// during the comparison. This can happen for inputs like
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// "01" which will be treated like number 0 followed by
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// number 1.
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// conversion
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char* endptr;
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const auto float_val = std::strtod(reinterpret_cast<const char*>(m_start), &endptr);
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// check if strtod read beyond the end of the lexem
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if (endptr != m_cursor)
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{
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std::cerr << get_string_value() << std::endl;
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return NAN;
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}
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else
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{
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return float_val;
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}
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}
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private:
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const char* m_content = nullptr;
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const char* m_start = nullptr;
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const char* m_cursor = nullptr;
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const char* m_limit = nullptr;
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const char* m_marker = nullptr;
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const char* m_ctxmarker = nullptr;
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};
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class parser
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{
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public:
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/// constructor for strings
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inline parser(const std::string& s) : m_buffer(s), m_lexer(m_buffer.c_str())
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{
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// read first token
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get_token();
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}
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/// a parser reading from an input stream
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inline parser(std::istream& _is)
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{
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while (_is)
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{
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std::string input_line;
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std::getline(_is, input_line);
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m_buffer += input_line;
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}
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// initializer lexer
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m_lexer = lexer(m_buffer.c_str());
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// read first token
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get_token();
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}
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inline basic_json parse()
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{
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switch (last_token)
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{
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case (lexer::token_type::begin_object):
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{
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// explicitly set result to object to cope with {}
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basic_json result(value_t::object);
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// read next token
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get_token();
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// closing } -> we are done
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if (last_token == lexer::token_type::end_object)
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{
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return result;
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}
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// otherwise: parse key-value pairs
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do
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{
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// store key
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expect(lexer::token_type::value_string);
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const auto key = m_lexer.get_string();
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// parse separator (:)
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get_token();
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expect(lexer::token_type::name_separator);
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// parse value
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get_token();
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result[key] = parse();
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// read next character
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get_token();
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}
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while (last_token == lexer::token_type::value_separator
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and get_token() == last_token);
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// closing }
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expect(lexer::token_type::end_object);
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return result;
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}
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case (lexer::token_type::begin_array):
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{
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// explicitly set result to object to cope with []
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basic_json result(value_t::array);
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// read next token
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get_token();
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// closing ] -> we are done
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if (last_token == lexer::token_type::end_array)
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{
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return result;
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}
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// otherwise: parse values
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do
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{
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// parse value
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result.push_back(parse());
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// read next character
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get_token();
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}
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while (last_token == lexer::token_type::value_separator
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and get_token() == last_token);
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// closing ]
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expect(lexer::token_type::end_array);
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return result;
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}
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case (lexer::token_type::literal_null):
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{
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return basic_json(nullptr);
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}
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case (lexer::token_type::value_string):
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{
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return basic_json(m_lexer.get_string());
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}
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case (lexer::token_type::literal_true):
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{
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return basic_json(true);
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}
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case (lexer::token_type::literal_false):
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{
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return basic_json(false);
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}
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case (lexer::token_type::value_number):
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{
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auto float_val = m_lexer.get_number();
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if (std::isnan(float_val))
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{
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throw std::invalid_argument(std::string("parse error - ") +
|
||||
m_lexer.get_string_value() + " is not a number");
|
||||
}
|
||||
|
||||
// check if conversion loses precision
|
||||
const auto int_val = static_cast<number_integer_t>(float_val);
|
||||
if (float_val == int_val)
|
||||
{
|
||||
// we basic_json not lose precision -> return int
|
||||
return basic_json(int_val);
|
||||
}
|
||||
else
|
||||
{
|
||||
// we would lose precision -> returnfloat
|
||||
return basic_json(float_val);
|
||||
}
|
||||
}
|
||||
|
||||
default:
|
||||
{
|
||||
std::string error_msg = "parse error - unexpected \'";
|
||||
error_msg += m_lexer.get_string_value();
|
||||
error_msg += "\' (";
|
||||
error_msg += token_type_name(last_token) + ")";
|
||||
throw std::invalid_argument(error_msg);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
private:
|
||||
/// get next token from lexer
|
||||
inline typename lexer::token_type get_token()
|
||||
{
|
||||
last_token = m_lexer.scan();
|
||||
return last_token;
|
||||
}
|
||||
|
||||
inline static std::string token_type_name(typename lexer::token_type t)
|
||||
{
|
||||
switch (t)
|
||||
{
|
||||
case (lexer::token_type::uninitialized):
|
||||
return "<uninitialized>";
|
||||
case (lexer::token_type::literal_true):
|
||||
return "true literal";
|
||||
case (lexer::token_type::literal_false):
|
||||
return "false literal";
|
||||
case (lexer::token_type::literal_null):
|
||||
return "null literal";
|
||||
case (lexer::token_type::value_string):
|
||||
return "string literal";
|
||||
case (lexer::token_type::value_number):
|
||||
return "number literal";
|
||||
case (lexer::token_type::begin_array):
|
||||
return "[";
|
||||
case (lexer::token_type::begin_object):
|
||||
return "{";
|
||||
case (lexer::token_type::end_array):
|
||||
return "]";
|
||||
case (lexer::token_type::end_object):
|
||||
return "}";
|
||||
case (lexer::token_type::name_separator):
|
||||
return ":";
|
||||
case (lexer::token_type::value_separator):
|
||||
return ",";
|
||||
case (lexer::token_type::parse_error):
|
||||
return "<parse error>";
|
||||
case (lexer::token_type::end_of_input):
|
||||
return "<end of input>";
|
||||
}
|
||||
}
|
||||
|
||||
inline void expect(typename lexer::token_type t) const
|
||||
{
|
||||
if (t != last_token)
|
||||
{
|
||||
std::string error_msg = "parse error - unexpected \'";
|
||||
error_msg += m_lexer.get_string_value();
|
||||
error_msg += "\' (" + token_type_name(last_token);
|
||||
error_msg += "); expected " + token_type_name(t);
|
||||
throw std::invalid_argument(error_msg);
|
||||
}
|
||||
}
|
||||
|
||||
private:
|
||||
/// the buffer
|
||||
std::string buffer;
|
||||
/// a pointer to the next character to read from the buffer
|
||||
const lexer_char_t* m_cursor = nullptr;
|
||||
/// a pointer past the last character of the buffer
|
||||
const lexer_char_t* m_limit = nullptr;
|
||||
/// a pointer to the beginning of the current token
|
||||
const lexer_char_t* m_begin = nullptr;
|
||||
std::string m_buffer;
|
||||
/// the type of the last read token
|
||||
token_type last_token = token_type::uninitialized;
|
||||
typename lexer::token_type last_token = lexer::token_type::uninitialized;
|
||||
lexer m_lexer;
|
||||
};
|
||||
};
|
||||
|
||||
|
|
110
test/unit.cpp
110
test/unit.cpp
|
@ -3892,27 +3892,43 @@ TEST_CASE("deserialization")
|
|||
{
|
||||
SECTION("string")
|
||||
{
|
||||
auto s = "[\"foo\",1,2,3,false,{\"one\":1}]";
|
||||
// auto s = "[\"foo\",1,2,3,false,{\"one\":1}]";
|
||||
// json j = json::parse(s);
|
||||
// CHECK(j == json({"foo", 1, 2, 3, false, {{"one", 1}}}));
|
||||
|
||||
auto s = "null";
|
||||
json j = json::parse(s);
|
||||
CHECK(j == json({"foo", 1, 2, 3, false, {{"one", 1}}}));
|
||||
CHECK(j == json());
|
||||
}
|
||||
|
||||
SECTION("operator<<")
|
||||
{
|
||||
// std::stringstream ss;
|
||||
// ss << "[\"foo\",1,2,3,false,{\"one\":1}]";
|
||||
// json j;
|
||||
// j << ss;
|
||||
// CHECK(j == json({"foo", 1, 2, 3, false, {{"one", 1}}}));
|
||||
|
||||
std::stringstream ss;
|
||||
ss << "[\"foo\",1,2,3,false,{\"one\":1}]";
|
||||
ss << "null";
|
||||
json j;
|
||||
j << ss;
|
||||
CHECK(j == json({"foo", 1, 2, 3, false, {{"one", 1}}}));
|
||||
CHECK(j == json());
|
||||
}
|
||||
|
||||
SECTION("operator>>")
|
||||
{
|
||||
// std::stringstream ss;
|
||||
// ss << "[\"foo\",1,2,3,false,{\"one\":1}]";
|
||||
// json j;
|
||||
// ss >> j;
|
||||
// CHECK(j == json({"foo", 1, 2, 3, false, {{"one", 1}}}));
|
||||
|
||||
std::stringstream ss;
|
||||
ss << "[\"foo\",1,2,3,false,{\"one\":1}]";
|
||||
ss << "null";
|
||||
json j;
|
||||
ss >> j;
|
||||
CHECK(j == json({"foo", 1, 2, 3, false, {{"one", 1}}}));
|
||||
CHECK(j == json());
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -3980,42 +3996,42 @@ TEST_CASE("parser class")
|
|||
{
|
||||
SECTION("structural characters")
|
||||
{
|
||||
CHECK(json::parser("[").last_token == json::parser::token_type::begin_array);
|
||||
CHECK(json::parser("]").last_token == json::parser::token_type::end_array);
|
||||
CHECK(json::parser("{").last_token == json::parser::token_type::begin_object);
|
||||
CHECK(json::parser("}").last_token == json::parser::token_type::end_object);
|
||||
CHECK(json::parser(",").last_token == json::parser::token_type::value_separator);
|
||||
CHECK(json::parser(":").last_token == json::parser::token_type::name_separator);
|
||||
CHECK(json::parser("[").last_token == json::lexer::token_type::begin_array);
|
||||
CHECK(json::parser("]").last_token == json::lexer::token_type::end_array);
|
||||
CHECK(json::parser("{").last_token == json::lexer::token_type::begin_object);
|
||||
CHECK(json::parser("}").last_token == json::lexer::token_type::end_object);
|
||||
CHECK(json::parser(",").last_token == json::lexer::token_type::value_separator);
|
||||
CHECK(json::parser(":").last_token == json::lexer::token_type::name_separator);
|
||||
}
|
||||
|
||||
SECTION("literal names")
|
||||
{
|
||||
CHECK(json::parser("null").last_token == json::parser::token_type::literal_null);
|
||||
CHECK(json::parser("true").last_token == json::parser::token_type::literal_true);
|
||||
CHECK(json::parser("false").last_token == json::parser::token_type::literal_false);
|
||||
CHECK(json::parser("null").last_token == json::lexer::token_type::literal_null);
|
||||
CHECK(json::parser("true").last_token == json::lexer::token_type::literal_true);
|
||||
CHECK(json::parser("false").last_token == json::lexer::token_type::literal_false);
|
||||
}
|
||||
|
||||
SECTION("numbers")
|
||||
{
|
||||
CHECK(json::parser("0").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("1").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("2").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("3").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("4").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("5").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("6").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("7").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("8").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("9").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("0").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("1").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("2").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("3").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("4").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("5").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("6").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("7").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("8").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("9").last_token == json::lexer::token_type::value_number);
|
||||
}
|
||||
|
||||
SECTION("whitespace")
|
||||
{
|
||||
CHECK(json::parser(" 0").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("\t0").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("\n0").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser("\r0").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser(" \t\n\r\n\t 0").last_token == json::parser::token_type::value_number);
|
||||
CHECK(json::parser(" 0").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("\t0").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("\n0").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser("\r0").last_token == json::lexer::token_type::value_number);
|
||||
CHECK(json::parser(" \t\n\r\n\t 0").last_token == json::lexer::token_type::value_number);
|
||||
}
|
||||
|
||||
/*
|
||||
|
@ -4049,7 +4065,7 @@ TEST_CASE("parser class")
|
|||
case ('9'):
|
||||
case ('"'):
|
||||
{
|
||||
CHECK(json::parser(s).last_token != json::parser::token_type::parse_error);
|
||||
CHECK(json::parser(s).last_token != json::lexer::token_type::parse_error);
|
||||
break;
|
||||
}
|
||||
|
||||
|
@ -4058,13 +4074,13 @@ TEST_CASE("parser class")
|
|||
case ('\n'):
|
||||
case ('\r'):
|
||||
{
|
||||
CHECK(json::parser(s).last_token == json::parser::token_type::end_of_input);
|
||||
CHECK(json::parser(s).last_token == json::lexer::token_type::end_of_input);
|
||||
break;
|
||||
}
|
||||
|
||||
default:
|
||||
{
|
||||
CHECK(json::parser(s).last_token == json::parser::token_type::parse_error);
|
||||
CHECK(json::parser(s).last_token == json::lexer::token_type::parse_error);
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
@ -4093,19 +4109,19 @@ TEST_CASE("parser class")
|
|||
|
||||
SECTION("token_type_name")
|
||||
{
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::uninitialized) == "<uninitialized>");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::literal_true) == "true literal");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::literal_false) == "false literal");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::literal_null) == "null literal");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::value_string) == "string literal");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::value_number) == "number literal");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::begin_array) == "[");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::begin_object) == "{");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::end_array) == "]");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::end_object) == "}");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::name_separator) == ":");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::value_separator) == ",");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::parse_error) == "<parse error>");
|
||||
CHECK(json::parser::token_type_name(json::parser::token_type::end_of_input) == "<end of input>");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::uninitialized) == "<uninitialized>");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::literal_true) == "true literal");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::literal_false) == "false literal");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::literal_null) == "null literal");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::value_string) == "string literal");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::value_number) == "number literal");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::begin_array) == "[");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::begin_object) == "{");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::end_array) == "]");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::end_object) == "}");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::name_separator) == ":");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::value_separator) == ",");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::parse_error) == "<parse error>");
|
||||
CHECK(json::parser::token_type_name(json::lexer::token_type::end_of_input) == "<end of input>");
|
||||
}
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue