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json_value.cpp
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json_value.cpp
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// Copyright (C) 2012 Anders Dalle Henning Dalvander
//
// Use, modification and distribution are subject to the Boost Software
// License, Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at
// http://www.boost.org/LICENSE_1_0.txt)
#include "json_value.h"
#include <algorithm>
#include <sstream>
#include <float.h>
#if defined(_MSC_VER)
# include <locale.h>
#else
# include <xlocale.h>
#endif
namespace
{
/// Helper for quoting strings.
void json_write_quoted_string(std::ostream& os, const std::string& str)
{
static const char* hex = "0123456789abcdef";
os << '"';
const char* begin = str.data();
const char* end = begin + str.size();
for (const char* p = begin; p != end;)
{
const char* e = std::find_if(p, end, adhd::json_value::need_escaping());
os.write(p, e - p);
p = e;
if (p != end)
{
switch (*p)
{
case '\"':
os << "\\\"";
break;
case '\\':
os << "\\\\";
break;
case '\b':
os << "\\b";
break;
case '\f':
os << "\\f";
break;
case '\n':
os << "\\n";
break;
case '\r':
os << "\\r";
break;
case '\t':
os << "\\t";
break;
default:
os << "\\u00" << hex[static_cast<unsigned char>(*p) >> 4] << hex[static_cast<unsigned char>(*p) & 0xfu];
break;
}
++p;
}
}
os << '"';
}
/// Helper for writing numbers.
void json_write_number(std::ostream& os, double d)
{
switch (_fpclass(d))
{
default:
assert(!"Unknown floating point classification.");
case _FPCLASS_SNAN: // signaling NaN
case _FPCLASS_QNAN: // quiet NaN
os << "null";
break;
case _FPCLASS_NINF: // negative infinity
os << "\"-inf\"";
break;
case _FPCLASS_PINF: // positive infinity
os << "\"+inf\"";
break;
case _FPCLASS_ND: // negative denormal
case _FPCLASS_NZ: // -0
case _FPCLASS_PZ: // +0
case _FPCLASS_PD: // positive denormal
os << "0";
break;
case _FPCLASS_NN: // negative normal
case _FPCLASS_PN: // positive normal
{
char buffer[100];
#if defined(_MSC_VER)
struct cached_locale
{
cached_locale() : c_locale(_create_locale(LC_ALL, "C")) {}
~cached_locale() { _free_locale(c_locale); }
const _locale_t c_locale;
};
static const cached_locale locale_cache;
const int ret = _sprintf_s_l(buffer, sizeof(buffer), "%.16g", locale_cache.c_locale, d);
#else
struct cached_locale
{
cached_locale() : c_locale(newlocale(LC_ALL_MASK, NULL, NULL)) {}
~cached_locale() { freelocale(c_locale); }
const locale_t c_locale;
};
static const cached_locale locale_cache;
const int ret = snprintf_l(buffer, sizeof(buffer), locale_cache.c_locale, "%.16g", d);
#endif
for (int i = 0; i < ret; ++i)
{
os << buffer[i];
}
}
break;
}
}
}
namespace adhd
{
json_parse_exception::~json_parse_exception()
{
}
/// Visitor for streaming a JSON value in a compact way.
struct json_writer
{
enum skip_state
{
skip_none,
skip_comma,
};
std::ostream& os;
skip_state skip;
explicit json_writer(std::ostream& os)
: os(os)
, skip(skip_comma)
{
}
void null_value()
{
os << "null";
}
void string_value(const std::string& val)
{
json_write_quoted_string(os, val);
}
void number_value(double val)
{
json_write_number(os, val);
}
void bool_value(bool val)
{
os << (val ? "true" : "false");
}
void begin_array()
{
os << '[';
skip = skip_comma;
}
void end_array()
{
os << ']';
skip = skip_none;
}
void begin_object()
{
os << '{';
skip = skip_comma;
}
void end_object()
{
os << '}';
skip = skip_none;
}
void begin_key()
{
if (skip == skip_comma)
skip = skip_none;
else
os << ',';
}
void end_key()
{
os << ':';
skip = skip_comma;
}
void begin_value()
{
if (skip == skip_comma)
skip = skip_none;
else
os << ',';
}
void end_value()
{
}
};
/// Visitor for streaming a JSON value in a pretty way, using newlines and indents.
struct json_pretty_printer
{
enum skip_state
{
skip_none,
skip_comma_xor_newline,
skip_comma_and_newline,
};
std::ostream& os;
skip_state skip;
int indent_level;
const std::string indent;
json_pretty_printer(std::ostream& os, size_t indent_size)
: os(os)
, skip(skip_comma_and_newline)
, indent_level(0)
, indent(indent_size, ' ')
{
}
void newline()
{
os << '\n';
for (int i = 0; i < indent_level; ++i)
{
os << indent;
}
}
void null_value()
{
os << "null";
}
void string_value(const std::string& val)
{
json_write_quoted_string(os, val);
}
void number_value(double val)
{
json_write_number(os, val);
}
void bool_value(bool val)
{
os << (val ? "true" : "false");
}
void begin_array()
{
os << '[';
skip = skip_comma_xor_newline;
++indent_level;
}
void end_array()
{
--indent_level;
if (skip == skip_none)
{
newline();
}
os << ']';
skip = skip_none;
}
void begin_object()
{
os << '{';
skip = skip_comma_and_newline;
++indent_level;
}
void end_object()
{
--indent_level;
if (skip == skip_none)
{
newline();
}
os << '}';
skip = skip_none;
}
void begin_key()
{
if (skip == skip_none)
{
os << ',';
}
newline();
skip = skip_none;
}
void end_key()
{
os << ':';
os << ' ';
skip = skip_comma_and_newline;
}
void begin_value()
{
if (skip == skip_none)
{
os << ',';
newline();
}
else if (skip == skip_comma_xor_newline)
{
newline();
}
skip = skip_none;
}
void end_value()
{
}
};
const json_value json_value::null;
const std::string json_value::empty_string;
json_value::json_value(const json_value& rhs)
: vt(rhs.vt)
, vd(rhs.vd)
{
switch (vt)
{
case variant_type_string:
vd.s = new std::string(*vd.s);
break;
case variant_type_array:
vd.a = new variant_data::a_type(*vd.a);
break;
case variant_type_object:
vd.o = new variant_data::o_type(*vd.o);
break;
default:
break;
}
}
json_value::~json_value()
{
switch (vt)
{
case variant_type_string:
delete vd.s;
break;
case variant_type_array:
delete vd.a;
break;
case variant_type_object:
delete vd.o;
break;
default:
break;
}
}
bool json_value::operator==(const json_value& rhs) const
{
if (vt != rhs.vt)
return false;
switch (vt)
{
case variant_type_null:
return true;
case variant_type_string:
return *vd.s == *rhs.vd.s;
case variant_type_number:
return _isnan(vd.n) && _isnan(rhs.vd.n) || vd.n == rhs.vd.n;
case variant_type_bool:
return vd.b == rhs.vd.b;
case variant_type_array:
return *vd.a == *rhs.vd.a;
case variant_type_object:
return *vd.o == *rhs.vd.o;
default:
return true;
}
}
bool json_value::operator<(const json_value& rhs) const
{
if (vt < rhs.vt)
return true;
if (rhs.vt < vt)
return false;
switch (vt)
{
case variant_type_null:
return false;
case variant_type_string:
return *vd.s < *rhs.vd.s;
case variant_type_number:
return !_isnan(rhs.vd.n) && (_isnan(vd.n) || vd.n < rhs.vd.n);
case variant_type_bool:
return vd.b < rhs.vd.b;
case variant_type_array:
return *vd.a < *rhs.vd.a;
case variant_type_object:
return *vd.o < *rhs.vd.o;
default:
return false;
}
}
const json_value& json_value::get_child(size_t i) const
{
assert(is_null() || is_array());
if (!is_array())
{
return null;
}
if (i >= vd.a->size())
{
return null;
}
return (*vd.a)[i];
}
json_value& json_value::put_child(size_t i)
{
assert(is_null() || is_array());
if (!is_array())
{
json_value(json_array()).swap(*this);
}
if (i >= vd.a->size())
{
vd.a->resize(i + 1);
}
return (*vd.a)[i];
}
void json_value::set_length(size_t length)
{
assert(is_null() || is_array());
if (!is_array())
{
json_value(json_array()).swap(*this);
}
vd.a->resize(length);
}
const json_value& json_value::get_child(const std::string& name) const
{
assert(is_null() || is_object());
if (!is_object())
{
return null;
}
const variant_data::o_type::const_iterator i = vd.o->find(name);
if (i == vd.o->end())
{
return null;
}
return i->second;
}
json_value& json_value::put_child(const std::string& name)
{
assert(is_null() || is_object());
if (!is_object())
{
json_value(json_object()).swap(*this);
}
return vd.o->insert(std::make_pair(name, null)).first->second;
}
bool json_value::has_child(const std::string& name) const
{
if (!is_object())
{
return false;
}
return vd.o->find(name) != vd.o->end();
}
bool json_value::erase_child(const std::string& name)
{
assert(is_null() || is_object());
if (!is_object())
{
return false;
}
return vd.o->erase(name) != 0;
}
std::string json_value::to_pretty_string(size_t indent_size) const
{
std::ostringstream ss;
pretty_print(ss, indent_size);
return ss.str();
}
std::ostream& json_value::pretty_print(std::ostream& os, size_t indent_size) const
{
json_pretty_printer writer(os, indent_size);
accept(writer);
return os;
}
std::string json_value::to_string() const
{
std::ostringstream ss;
ss << *this;
return ss.str();
}
std::ostream& operator<<(std::ostream& os, const json_value& rhs)
{
json_writer writer(os);
rhs.accept(writer);
return os;
}
}