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json_language.cc
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json_language.cc
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// A Bison parser, made by GNU Bison 3.7.5.
// Skeleton implementation for Bison LALR(1) parsers in C++
// Copyright (C) 2002-2015, 2018-2021 Free Software Foundation, Inc.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
// You should have received a copy of the GNU General Public License
// along with this program. If not, see <http://www.gnu.org/licenses/>.
// As a special exception, you may create a larger work that contains
// part or all of the Bison parser skeleton and distribute that work
// under terms of your choice, so long as that work isn't itself a
// parser generator using the skeleton or a modified version thereof
// as a parser skeleton. Alternatively, if you modify or redistribute
// the parser skeleton itself, you may (at your option) remove this
// special exception, which will cause the skeleton and the resulting
// Bison output files to be licensed under the GNU General Public
// License without this special exception.
// This special exception was added by the Free Software Foundation in
// version 2.2 of Bison.
// DO NOT RELY ON FEATURES THAT ARE NOT DOCUMENTED in the manual,
// especially those whose name start with YY_ or yy_. They are
// private implementation details that can be changed or removed.
#include "json_language.hh"
// Unqualified %code blocks.
#line 23 "json_language.yy"
yy::parser::symbol_type kk_lex(scanner &l);
template<>
json::json(std::initializer_list<json> t): ptr( new data<array>(t) ) { name = typeid(array).name(); }
template<>
json::json(bool t): ptr( new data<boolean>(t) ) { name = typeid(boolean).name(); }
std::string json::get_string() {
if (this->is<const char *>()) {
return std::string(this->get<const char *>());
} else {
return this->get<std::string>();
}
}
std::string json::toString(bool hex)
{
if (this->is_array()) {
std::string str = "[";
auto v = this->get_array();
for (auto i = 0; i < v.size(); i++) {
str = str.append(v.at(i).toString(hex));
if (i < v.size() - 1) {
str = str.append(",");
}
}
return str.append("]");
}
if (this->is_double()) {
return std::to_string(this->get_double());
}
if (this->is_float()) {
return std::to_string(this->get_float());
}
if (this->is_int()) {
return std::to_string(this->get_int());
}
if (this->is_long()) {
return std::to_string(this->get_long());
}
if (this->is_string()) {
std::string p{};
for (auto c : this->get_string()) {
if (c == '"') {
p = p.append(1, '\\');
}
p = p.append(1, c);
}
return std::string("\"").append(p).append("\"");
}
if (this->is_null()) {
return "null";
}
if (this->is_infinity()) {
if (this->get_infinity().neg) {
return "-Infinity";
} else {
return "Infinity";
}
}
if (this->is_nan()) {
return "NaN";
}
if (this->is_hex()) {
if (hex) {
return this->get_hex().raw_value;
} else {
return std::to_string(this->get_hex().value);
}
}
if (this->is_bool()) {
if (this->get_bool().yes) {
return "true";
} else {
return "false";
}
}
if (this->is_object()) {
auto i = 0;
auto m = this->get_object();
std::string str = "{";
for (auto begin = m.begin(); begin != m.end(); begin++, i++) {
str = str.append("\"").append(begin->first).append("\":");
str = str.append(begin->second.toString(hex));
if (i < m.size() -1) {
str = str.append(",");
}
}
return str.append("}");
}
return "";
}
json fromJson(const std::string &str)
{
scanner l(str);
yy::parser parse(l);
parse();
return l.result;
}
namespace yy {
auto yylex(scanner &l) -> parser::symbol_type {
return kk_lex(l);
}
auto parser::error(const location_type& loc, const std::string &msg) -> void {
auto message = "Unknown token appears in [line:column]:\n --> " + std::to_string(loc.end.line) + ":" + std::to_string(loc.end.column) + " | ";
std::string buf;
std::string::size_type pos;
if (l.limit== l.start - 1) {
buf = msg;
pos = std::string::npos;
} else {
buf = std::string(l.start, (l.limit-l.start > 300) ? l.start+300 : l.limit);
pos = buf.find_first_of('\n', 0);
}
if (pos == std::string::npos) {
message += buf;
} else {
message += buf.substr(0, pos);
}
throw message;
}
}
#line 188 "json_language.cc"
#ifndef YY_
# if defined YYENABLE_NLS && YYENABLE_NLS
# if ENABLE_NLS
# include <libintl.h> // FIXME: INFRINGES ON USER NAME SPACE.
# define YY_(msgid) dgettext ("bison-runtime", msgid)
# endif
# endif
# ifndef YY_
# define YY_(msgid) msgid
# endif
#endif
// Whether we are compiled with exception support.
#ifndef YY_EXCEPTIONS
# if defined __GNUC__ && !defined __EXCEPTIONS
# define YY_EXCEPTIONS 0
# else
# define YY_EXCEPTIONS 1
# endif
#endif
#define YYRHSLOC(Rhs, K) ((Rhs)[K].location)
/* YYLLOC_DEFAULT -- Set CURRENT to span from RHS[1] to RHS[N].
If N is 0, then set CURRENT to the empty location which ends
the previous symbol: RHS[0] (always defined). */
# ifndef YYLLOC_DEFAULT
# define YYLLOC_DEFAULT(Current, Rhs, N) \
do \
if (N) \
{ \
(Current).begin = YYRHSLOC (Rhs, 1).begin; \
(Current).end = YYRHSLOC (Rhs, N).end; \
} \
else \
{ \
(Current).begin = (Current).end = YYRHSLOC (Rhs, 0).end; \
} \
while (false)
# endif
// Enable debugging if requested.
#if YYDEBUG
// A pseudo ostream that takes yydebug_ into account.
# define YYCDEBUG if (yydebug_) (*yycdebug_)
# define YY_SYMBOL_PRINT(Title, Symbol) \
do { \
if (yydebug_) \
{ \
*yycdebug_ << Title << ' '; \
yy_print_ (*yycdebug_, Symbol); \
*yycdebug_ << '\n'; \
} \
} while (false)
# define YY_REDUCE_PRINT(Rule) \
do { \
if (yydebug_) \
yy_reduce_print_ (Rule); \
} while (false)
# define YY_STACK_PRINT() \
do { \
if (yydebug_) \
yy_stack_print_ (); \
} while (false)
#else // !YYDEBUG
# define YYCDEBUG if (false) std::cerr
# define YY_SYMBOL_PRINT(Title, Symbol) YY_USE (Symbol)
# define YY_REDUCE_PRINT(Rule) static_cast<void> (0)
# define YY_STACK_PRINT() static_cast<void> (0)
#endif // !YYDEBUG
#define yyerrok (yyerrstatus_ = 0)
#define yyclearin (yyla.clear ())
#define YYACCEPT goto yyacceptlab
#define YYABORT goto yyabortlab
#define YYERROR goto yyerrorlab
#define YYRECOVERING() (!!yyerrstatus_)
namespace yy {
#line 280 "json_language.cc"
/// Build a parser object.
parser::parser (scanner &l_yyarg)
#if YYDEBUG
: yydebug_ (false),
yycdebug_ (&std::cerr),
#else
:
#endif
yy_lac_established_ (false),
l (l_yyarg)
{}
parser::~parser ()
{}
parser::syntax_error::~syntax_error () YY_NOEXCEPT YY_NOTHROW
{}
/*---------------.
| symbol kinds. |
`---------------*/
// by_state.
parser::by_state::by_state () YY_NOEXCEPT
: state (empty_state)
{}
parser::by_state::by_state (const by_state& that) YY_NOEXCEPT
: state (that.state)
{}
void
parser::by_state::clear () YY_NOEXCEPT
{
state = empty_state;
}
void
parser::by_state::move (by_state& that)
{
state = that.state;
that.clear ();
}
parser::by_state::by_state (state_type s) YY_NOEXCEPT
: state (s)
{}
parser::symbol_kind_type
parser::by_state::kind () const YY_NOEXCEPT
{
if (state == empty_state)
return symbol_kind::S_YYEMPTY;
else
return YY_CAST (symbol_kind_type, yystos_[+state]);
}
parser::stack_symbol_type::stack_symbol_type ()
{}
parser::stack_symbol_type::stack_symbol_type (YY_RVREF (stack_symbol_type) that)
: super_type (YY_MOVE (that.state), YY_MOVE (that.location))
{
switch (that.kind ())
{
case symbol_kind::S_DOUBLE: // "double"
value.YY_MOVE_OR_COPY< double > (YY_MOVE (that.value));
break;
case symbol_kind::S_value: // value
value.YY_MOVE_OR_COPY< json > (YY_MOVE (that.value));
break;
case symbol_kind::S_array: // array
case symbol_kind::S_elements: // elements
value.YY_MOVE_OR_COPY< json::array > (YY_MOVE (that.value));
break;
case symbol_kind::S_BOOLEAN: // "boolean"
value.YY_MOVE_OR_COPY< json::boolean > (YY_MOVE (that.value));
break;
case symbol_kind::S_HEX: // "hex"
value.YY_MOVE_OR_COPY< json::hex > (YY_MOVE (that.value));
break;
case symbol_kind::S_INF: // "infinity"
value.YY_MOVE_OR_COPY< json::infinity > (YY_MOVE (that.value));
break;
case symbol_kind::S_NANN: // "nan"
value.YY_MOVE_OR_COPY< json::nan > (YY_MOVE (that.value));
break;
case symbol_kind::S_NUL: // "null"
value.YY_MOVE_OR_COPY< json::null > (YY_MOVE (that.value));
break;
case symbol_kind::S_object: // object
case symbol_kind::S_pairs: // pairs
value.YY_MOVE_OR_COPY< json::object > (YY_MOVE (that.value));
break;
case symbol_kind::S_INT: // "integer"
value.YY_MOVE_OR_COPY< long > (YY_MOVE (that.value));
break;
case symbol_kind::S_STRING: // "string"
case symbol_kind::S_LABEL: // "idetifier"
case symbol_kind::S_key: // key
value.YY_MOVE_OR_COPY< std::string > (YY_MOVE (that.value));
break;
default:
break;
}
#if 201103L <= YY_CPLUSPLUS
// that is emptied.
that.state = empty_state;
#endif
}
parser::stack_symbol_type::stack_symbol_type (state_type s, YY_MOVE_REF (symbol_type) that)
: super_type (s, YY_MOVE (that.location))
{
switch (that.kind ())
{
case symbol_kind::S_DOUBLE: // "double"
value.move< double > (YY_MOVE (that.value));
break;
case symbol_kind::S_value: // value
value.move< json > (YY_MOVE (that.value));
break;
case symbol_kind::S_array: // array
case symbol_kind::S_elements: // elements
value.move< json::array > (YY_MOVE (that.value));
break;
case symbol_kind::S_BOOLEAN: // "boolean"
value.move< json::boolean > (YY_MOVE (that.value));
break;
case symbol_kind::S_HEX: // "hex"
value.move< json::hex > (YY_MOVE (that.value));
break;
case symbol_kind::S_INF: // "infinity"
value.move< json::infinity > (YY_MOVE (that.value));
break;
case symbol_kind::S_NANN: // "nan"
value.move< json::nan > (YY_MOVE (that.value));
break;
case symbol_kind::S_NUL: // "null"
value.move< json::null > (YY_MOVE (that.value));
break;
case symbol_kind::S_object: // object
case symbol_kind::S_pairs: // pairs
value.move< json::object > (YY_MOVE (that.value));
break;
case symbol_kind::S_INT: // "integer"
value.move< long > (YY_MOVE (that.value));
break;
case symbol_kind::S_STRING: // "string"
case symbol_kind::S_LABEL: // "idetifier"
case symbol_kind::S_key: // key
value.move< std::string > (YY_MOVE (that.value));
break;
default:
break;
}
// that is emptied.
that.kind_ = symbol_kind::S_YYEMPTY;
}
#if YY_CPLUSPLUS < 201103L
parser::stack_symbol_type&
parser::stack_symbol_type::operator= (const stack_symbol_type& that)
{
state = that.state;
switch (that.kind ())
{
case symbol_kind::S_DOUBLE: // "double"
value.copy< double > (that.value);
break;
case symbol_kind::S_value: // value
value.copy< json > (that.value);
break;
case symbol_kind::S_array: // array
case symbol_kind::S_elements: // elements
value.copy< json::array > (that.value);
break;
case symbol_kind::S_BOOLEAN: // "boolean"
value.copy< json::boolean > (that.value);
break;
case symbol_kind::S_HEX: // "hex"
value.copy< json::hex > (that.value);
break;
case symbol_kind::S_INF: // "infinity"
value.copy< json::infinity > (that.value);
break;
case symbol_kind::S_NANN: // "nan"
value.copy< json::nan > (that.value);
break;
case symbol_kind::S_NUL: // "null"
value.copy< json::null > (that.value);
break;
case symbol_kind::S_object: // object
case symbol_kind::S_pairs: // pairs
value.copy< json::object > (that.value);
break;
case symbol_kind::S_INT: // "integer"
value.copy< long > (that.value);
break;
case symbol_kind::S_STRING: // "string"
case symbol_kind::S_LABEL: // "idetifier"
case symbol_kind::S_key: // key
value.copy< std::string > (that.value);
break;
default:
break;
}
location = that.location;
return *this;
}
parser::stack_symbol_type&
parser::stack_symbol_type::operator= (stack_symbol_type& that)
{
state = that.state;
switch (that.kind ())
{
case symbol_kind::S_DOUBLE: // "double"
value.move< double > (that.value);
break;
case symbol_kind::S_value: // value
value.move< json > (that.value);
break;
case symbol_kind::S_array: // array
case symbol_kind::S_elements: // elements
value.move< json::array > (that.value);
break;
case symbol_kind::S_BOOLEAN: // "boolean"
value.move< json::boolean > (that.value);
break;
case symbol_kind::S_HEX: // "hex"
value.move< json::hex > (that.value);
break;
case symbol_kind::S_INF: // "infinity"
value.move< json::infinity > (that.value);
break;
case symbol_kind::S_NANN: // "nan"
value.move< json::nan > (that.value);
break;
case symbol_kind::S_NUL: // "null"
value.move< json::null > (that.value);
break;
case symbol_kind::S_object: // object
case symbol_kind::S_pairs: // pairs
value.move< json::object > (that.value);
break;
case symbol_kind::S_INT: // "integer"
value.move< long > (that.value);
break;
case symbol_kind::S_STRING: // "string"
case symbol_kind::S_LABEL: // "idetifier"
case symbol_kind::S_key: // key
value.move< std::string > (that.value);
break;
default:
break;
}
location = that.location;
// that is emptied.
that.state = empty_state;
return *this;
}
#endif
template <typename Base>
void
parser::yy_destroy_ (const char* yymsg, basic_symbol<Base>& yysym) const
{
if (yymsg)
YY_SYMBOL_PRINT (yymsg, yysym);
}
#if YYDEBUG
template <typename Base>
void
parser::yy_print_ (std::ostream& yyo, const basic_symbol<Base>& yysym) const
{
std::ostream& yyoutput = yyo;
YY_USE (yyoutput);
if (yysym.empty ())
yyo << "empty symbol";
else
{
symbol_kind_type yykind = yysym.kind ();
yyo << (yykind < YYNTOKENS ? "token" : "nterm")
<< ' ' << yysym.name () << " ("
<< yysym.location << ": ";
YY_USE (yykind);
yyo << ')';
}
}
#endif
void
parser::yypush_ (const char* m, YY_MOVE_REF (stack_symbol_type) sym)
{
if (m)
YY_SYMBOL_PRINT (m, sym);
yystack_.push (YY_MOVE (sym));
}
void
parser::yypush_ (const char* m, state_type s, YY_MOVE_REF (symbol_type) sym)
{
#if 201103L <= YY_CPLUSPLUS
yypush_ (m, stack_symbol_type (s, std::move (sym)));
#else
stack_symbol_type ss (s, sym);
yypush_ (m, ss);
#endif
}
void
parser::yypop_ (int n)
{
yystack_.pop (n);
}
#if YYDEBUG
std::ostream&
parser::debug_stream () const
{
return *yycdebug_;
}
void
parser::set_debug_stream (std::ostream& o)
{
yycdebug_ = &o;
}
parser::debug_level_type
parser::debug_level () const
{
return yydebug_;
}
void
parser::set_debug_level (debug_level_type l)
{
yydebug_ = l;
}
#endif // YYDEBUG
parser::state_type
parser::yy_lr_goto_state_ (state_type yystate, int yysym)
{
int yyr = yypgoto_[yysym - YYNTOKENS] + yystate;
if (0 <= yyr && yyr <= yylast_ && yycheck_[yyr] == yystate)
return yytable_[yyr];
else
return yydefgoto_[yysym - YYNTOKENS];
}
bool
parser::yy_pact_value_is_default_ (int yyvalue)
{
return yyvalue == yypact_ninf_;
}
bool
parser::yy_table_value_is_error_ (int yyvalue)
{
return yyvalue == yytable_ninf_;
}
int
parser::operator() ()
{
return parse ();
}
int
parser::parse ()
{
int yyn;
/// Length of the RHS of the rule being reduced.
int yylen = 0;
// Error handling.
int yynerrs_ = 0;
int yyerrstatus_ = 0;
/// The lookahead symbol.
symbol_type yyla;
/// The locations where the error started and ended.
stack_symbol_type yyerror_range[3];
/// The return value of parse ().
int yyresult;
/// Discard the LAC context in case there still is one left from a
/// previous invocation.
yy_lac_discard_ ("init");
#if YY_EXCEPTIONS
try
#endif // YY_EXCEPTIONS
{
YYCDEBUG << "Starting parse\n";
/* Initialize the stack. The initial state will be set in
yynewstate, since the latter expects the semantical and the
location values to have been already stored, initialize these
stacks with a primary value. */
yystack_.clear ();
yypush_ (YY_NULLPTR, 0, YY_MOVE (yyla));
/*-----------------------------------------------.
| yynewstate -- push a new symbol on the stack. |
`-----------------------------------------------*/
yynewstate:
YYCDEBUG << "Entering state " << int (yystack_[0].state) << '\n';
YY_STACK_PRINT ();
// Accept?
if (yystack_[0].state == yyfinal_)
YYACCEPT;
goto yybackup;
/*-----------.
| yybackup. |
`-----------*/
yybackup:
// Try to take a decision without lookahead.
yyn = yypact_[+yystack_[0].state];
if (yy_pact_value_is_default_ (yyn))
goto yydefault;
// Read a lookahead token.
if (yyla.empty ())
{
YYCDEBUG << "Reading a token\n";
#if YY_EXCEPTIONS
try
#endif // YY_EXCEPTIONS
{
symbol_type yylookahead (yylex (l));
yyla.move (yylookahead);
}
#if YY_EXCEPTIONS
catch (const syntax_error& yyexc)
{
YYCDEBUG << "Caught exception: " << yyexc.what() << '\n';
error (yyexc);
goto yyerrlab1;
}
#endif // YY_EXCEPTIONS
}
YY_SYMBOL_PRINT ("Next token is", yyla);
if (yyla.kind () == symbol_kind::S_YYerror)
{
// The scanner already issued an error message, process directly
// to error recovery. But do not keep the error token as
// lookahead, it is too special and may lead us to an endless
// loop in error recovery. */
yyla.kind_ = symbol_kind::S_YYUNDEF;
goto yyerrlab1;
}
/* If the proper action on seeing token YYLA.TYPE is to reduce or
to detect an error, take that action. */
yyn += yyla.kind ();
if (yyn < 0 || yylast_ < yyn || yycheck_[yyn] != yyla.kind ())
{
if (!yy_lac_establish_ (yyla.kind ()))
goto yyerrlab;
goto yydefault;
}
// Reduce or error.
yyn = yytable_[yyn];
if (yyn <= 0)
{
if (yy_table_value_is_error_ (yyn))
goto yyerrlab;
if (!yy_lac_establish_ (yyla.kind ()))
goto yyerrlab;
yyn = -yyn;
goto yyreduce;
}
// Count tokens shifted since error; after three, turn off error status.
if (yyerrstatus_)
--yyerrstatus_;
// Shift the lookahead token.
yypush_ ("Shifting", state_type (yyn), YY_MOVE (yyla));
yy_lac_discard_ ("shift");
goto yynewstate;
/*-----------------------------------------------------------.
| yydefault -- do the default action for the current state. |
`-----------------------------------------------------------*/
yydefault:
yyn = yydefact_[+yystack_[0].state];
if (yyn == 0)
goto yyerrlab;
goto yyreduce;
/*-----------------------------.
| yyreduce -- do a reduction. |
`-----------------------------*/
yyreduce:
yylen = yyr2_[yyn];
{
stack_symbol_type yylhs;
yylhs.state = yy_lr_goto_state_ (yystack_[yylen].state, yyr1_[yyn]);
/* Variants are always initialized to an empty instance of the
correct type. The default '$$ = $1' action is NOT applied
when using variants. */
switch (yyr1_[yyn])
{
case symbol_kind::S_DOUBLE: // "double"
yylhs.value.emplace< double > ();
break;
case symbol_kind::S_value: // value
yylhs.value.emplace< json > ();
break;
case symbol_kind::S_array: // array
case symbol_kind::S_elements: // elements
yylhs.value.emplace< json::array > ();
break;
case symbol_kind::S_BOOLEAN: // "boolean"
yylhs.value.emplace< json::boolean > ();
break;
case symbol_kind::S_HEX: // "hex"
yylhs.value.emplace< json::hex > ();
break;
case symbol_kind::S_INF: // "infinity"
yylhs.value.emplace< json::infinity > ();
break;
case symbol_kind::S_NANN: // "nan"
yylhs.value.emplace< json::nan > ();
break;
case symbol_kind::S_NUL: // "null"
yylhs.value.emplace< json::null > ();
break;
case symbol_kind::S_object: // object
case symbol_kind::S_pairs: // pairs
yylhs.value.emplace< json::object > ();
break;
case symbol_kind::S_INT: // "integer"
yylhs.value.emplace< long > ();
break;
case symbol_kind::S_STRING: // "string"
case symbol_kind::S_LABEL: // "idetifier"
case symbol_kind::S_key: // key
yylhs.value.emplace< std::string > ();
break;
default:
break;
}
// Default location.
{
stack_type::slice range (yystack_, yylen);
YYLLOC_DEFAULT (yylhs.location, range, yylen);
yyerror_range[1].location = yylhs.location;
}
// Perform the reduction.
YY_REDUCE_PRINT (yyn);
#if YY_EXCEPTIONS
try
#endif // YY_EXCEPTIONS
{
switch (yyn)
{
case 2: // json: value YYEOF
#line 186 "json_language.yy"
{ l.result = yystack_[1].value.as < json > (); YYACCEPT; }
#line 925 "json_language.cc"
break;
case 3: // array: '[' elements array_end
#line 190 "json_language.yy"
{ yylhs.value.as < json::array > () = yystack_[1].value.as < json::array > (); }
#line 931 "json_language.cc"
break;
case 6: // elements: %empty
#line 200 "json_language.yy"
{ }
#line 937 "json_language.cc"
break;
case 7: // elements: value
#line 201 "json_language.yy"
{ yylhs.value.as < json::array > ().push_back(yystack_[0].value.as < json > ()); }
#line 943 "json_language.cc"
break;
case 8: // elements: elements ',' value
#line 202 "json_language.yy"
{ yystack_[2].value.as < json::array > ().push_back(yystack_[0].value.as < json > ()); yylhs.value.as < json::array > ()=yystack_[2].value.as < json::array > (); }
#line 949 "json_language.cc"
break;
case 9: // object: '{' pairs object_end
#line 206 "json_language.yy"
{ yylhs.value.as < json::object > () = yystack_[1].value.as < json::object > (); }
#line 955 "json_language.cc"
break;
case 12: // pairs: %empty
#line 215 "json_language.yy"
{ }
#line 961 "json_language.cc"
break;
case 13: // pairs: key ':' value
#line 216 "json_language.yy"
{ yylhs.value.as < json::object > ().insert({yystack_[2].value.as < std::string > (), yystack_[0].value.as < json > ()}); }
#line 967 "json_language.cc"
break;
case 14: // pairs: pairs ',' key ':' value
#line 217 "json_language.yy"
{ yystack_[4].value.as < json::object > ().insert({yystack_[2].value.as < std::string > (), yystack_[0].value.as < json > ()}); yylhs.value.as < json::object > () = yystack_[4].value.as < json::object > (); }
#line 973 "json_language.cc"
break;
case 15: // key: "string"
#line 222 "json_language.yy"
{ yylhs.value.as < std::string > () = yystack_[0].value.as < std::string > (); }
#line 979 "json_language.cc"
break;
case 16: // key: "idetifier"
#line 223 "json_language.yy"
{ yylhs.value.as < std::string > () = yystack_[0].value.as < std::string > (); }
#line 985 "json_language.cc"
break;
case 17: // value: "integer"
#line 227 "json_language.yy"
{ yylhs.value.as < json > () = yystack_[0].value.as < long > (); }
#line 991 "json_language.cc"
break;
case 18: // value: "hex"
#line 228 "json_language.yy"
{ yylhs.value.as < json > () = yystack_[0].value.as < json::hex > (); }
#line 997 "json_language.cc"
break;
case 19: // value: "boolean"
#line 229 "json_language.yy"