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construct/include/ircd/js/function.h
Jason Volk 6b5bab0871 ircd::js: Convert all JS type wrappers into templates and typedef on requsted GC.
Templates are now in the namespace basic:: i.e `basic::value<>`
Typedefs are in ircd::js:: matching the original non-template types.

Ex. stack-duration type in template form is: `basic::value<lifetime::stack>`
Ex. stack-duration type in typedef form is `value`
Ex. heap-duration type in template form is: `basic::value<lifetime::heap>`
Ex. heap-duration type in typedef form is: `heap_value`
2016-11-13 16:32:39 -08:00

204 lines
5 KiB
C++

/*
* Copyright (C) 2016 Charybdis Development Team
* Copyright (C) 2016 Jason Volk <jason@zemos.net>
*
* Permission to use, copy, modify, and/or distribute this software for any
* purpose with or without fee is hereby granted, provided that the above
* copyright notice and this permission notice is present in all copies.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
* DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
* STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
* IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
* POSSIBILITY OF SUCH DAMAGE.
*/
#pragma once
#define HAVE_IRCD_JS_FUNCTION_H
namespace ircd {
namespace js {
string decompile(const JS::Handle<JSFunction *> &, const bool &pretty = false);
string display_name(const JSFunction &);
string name(const JSFunction &);
uint16_t arity(const JSFunction &f);
namespace basic {
template<lifetime L>
struct function
:root<JSFunction *, L>
{
operator JSObject *() const;
explicit operator script<L>() const;
explicit operator string<L>() const;
// js::value/js::object == lifetime::stack
js::value operator()(const js::object &, const JS::HandleValueArray &args) const;
js::value operator()(const js::object &) const;
// new function
function(JS::AutoObjectVector &stack,
const JS::CompileOptions &opts,
const char *const &name,
const std::vector<std::string> &args,
const std::string &src);
using root<JSFunction *, L>::root;
explicit function(const value<L> &);
function(JSFunction *const &);
function(JSFunction &);
};
} // namespace basic
using function = basic::function<lifetime::stack>;
using heap_function = basic::function<lifetime::heap>;
//
// Implementation
//
namespace basic {
template<lifetime L>
function<L>::function(JSFunction &func)
:function<L>::root::type{&func}
{
}
template<lifetime L>
function<L>::function(JSFunction *const &func)
:function<L>::root::type{func}
{
if(unlikely(!this->get()))
throw internal_error("NULL function");
}
template<lifetime L>
function<L>::function(const value<L> &val)
:function<L>::root::type
{
JS_ValueToFunction(*cx, val)
}
{
if(!this->get())
throw type_error("value is not a function");
}
template<lifetime L>
function<L>::function(JS::AutoObjectVector &stack,
const JS::CompileOptions &opts,
const char *const &name,
const std::vector<std::string> &args,
const std::string &src)
:function<L>::root::type{}
{
std::vector<const char *> argp(args.size());
std::transform(begin(args), end(args), begin(argp), []
(const std::string &arg)
{
return arg.data();
});
if(!JS::CompileFunction(*cx,
stack,
opts,
name,
argp.size(),
&argp.front(),
src.data(),
src.size(),
&(*this)))
{
throw syntax_error("Failed to compile function");
}
}
template<lifetime L>
js::value
function<L>::operator()(const js::object &that)
const
{
return this->operator()(that, JS::HandleValueArray::empty());
}
template<lifetime L>
js::value
function<L>::operator()(const js::object &that,
const JS::HandleValueArray &args)
const
{
js::value ret;
if(!JS_CallFunction(*cx, that, *this, args, &ret))
throw jserror(jserror::pending);
return ret;
}
template<lifetime L>
function<L>::operator string<L>()
const
{
return decompile(*this, true);
}
template<lifetime L>
function<L>::operator script<L>()
const
{
return JS_GetFunctionScript(*cx, *this);
}
template<lifetime L>
function<L>::operator JSObject *()
const
{
const auto ret(JS_GetFunctionObject(this->get()));
if(unlikely(!ret))
throw type_error("function cannot cast to Object");
return ret;
}
} // namespace basic
inline uint16_t
arity(const JSFunction &f)
{
return JS_GetFunctionArity(const_cast<JSFunction *>(&f));
}
inline string
name(const JSFunction &f)
{
const auto ret(JS_GetFunctionId(const_cast<JSFunction *>(&f)));
return ret? string(ret) : string("<unnamed>");
}
inline string
display_name(const JSFunction &f)
{
const auto ret(JS_GetFunctionDisplayId(const_cast<JSFunction *>(&f)));
return ret? string(ret) : string("<anonymous>");
}
inline string
decompile(const JS::Handle<JSFunction *> &f,
const bool &pretty)
{
uint flags(0);
flags |= pretty? 0 : JS_DONT_PRETTY_PRINT;
return JS_DecompileFunction(*cx, f, flags);
}
} // namespace js
} // namespace ircd