2f524481c1
git-svn-id: https://sfml.svn.sourceforge.net/svnroot/sfml/trunk@1002 4e206d99-4929-0410-ac5d-dfc041789085
286 lines
8.8 KiB
C++
286 lines
8.8 KiB
C++
////////////////////////////////////////////////////////////
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//
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// RubySFML - Ruby extension for the SFML library
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// Copyright (C) 2007 Sean O'Neil and Laurent Gomila
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// (sean.p.oneil@gmail.com and laurent.gom@gmail.com)
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//
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// This software is provided 'as-is', without any express or implied warranty.
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// In no event will the authors be held liable for any damages arising from the use of this software.
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//
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// Permission is granted to anyone to use this software for any purpose,
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// including commercial applications, and to alter it and redistribute it freely,
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// subject to the following restrictions:
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//
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// 1. The origin of this software must not be misrepresented;
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// you must not claim that you wrote the original software.
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// If you use this software in a product, an acknowledgment
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// in the product documentation would be appreciated but is not required.
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//
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// 2. Altered source versions must be plainly marked as such,
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// and must not be misrepresented as being the original software.
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//
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// 3. This notice may not be removed or altered from any source distribution.
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//
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////////////////////////////////////////////////////////////
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#include <SFML/Graphics.hpp>
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#include "RubySFML.h"
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#include <math.h>
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#ifdef _MSC_VER
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#define COSF cosf
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#define SINF sinf
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#else
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#define COSF cos
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#define SINF sin
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#endif
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using namespace sf;
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#define PI 3.14159265f
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// Wrapper for Drawable that calls the Ruby version of virtual methods in case a Ruby class derives from this one
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class rDrawable : public Drawable {
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protected:
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VALUE m_vSelf, m_vClass;
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ID m_idRender;
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bool m_bRender;
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virtual void Render(const RenderWindow &Window) const {
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// If this method is overridden in Ruby, call it
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if(m_bRender) {
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VALUE vWindow = Data_Wrap_Struct(g_cRenderWindow, 0, 0, (void*)&Window);
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VALUE vRet = rb_funcall(m_vSelf, m_idRender, 1, vWindow);
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} else // else raise error (pure virtual method)
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rb_raise(rb_eRuntimeError, "Pure virtual method Drawable::Render() called, but not defined.");
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}
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public:
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// Call as soon as you get a Ruby VALUE pointing to this object
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void rInit(VALUE vSelf) {
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// Need these for rb_funcall
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m_vSelf = vSelf;
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m_vClass = CLASS_OF(m_vSelf);
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// Initialize members for Render() virtual method
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m_idRender = rb_intern("render");
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m_bRender = rb_method_boundp(m_vClass, m_idRender, 0) == Qtrue;
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}
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};
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VALUE g_cDrawable;
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void Drawable_free(void *p) { delete (Drawable *)p; }
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VALUE Drawable_new(int argc, VALUE *argv, VALUE vClass) {
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rDrawable *ptr = new rDrawable();
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VALUE tData = Data_Wrap_Struct(vClass, 0, Drawable_free, ptr);
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ptr->rInit(tData);
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rb_obj_call_init(tData, argc, argv);
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return tData;
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}
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static VALUE Drawable_initialize(int argc, VALUE *argv, VALUE vSelf) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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if(argc == 0) {
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// Nothing to initialize
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} else if(argc >= 1 && argc <= 5 && (argc < 5 || IS(argv[4], g_cColor))) {
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if(argc >= 1)
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pSelf->SetLeft((float)NUM2DBL(argv[0]));
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if(argc >= 2)
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pSelf->SetTop((float)NUM2DBL(argv[1]));
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if(argc >= 3) {
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if(ISNUM(argv[2])) {
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float f = (float)NUM2DBL(argv[2]);
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pSelf->SetScale(f, f);
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} else if(IS(argv[2], rb_cArray)) {
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float x = (float)NUM2DBL(rb_ary_entry(argv[2], 0));
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float y = (float)NUM2DBL(rb_ary_entry(argv[2], 1));
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pSelf->SetScale(x, y);
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}
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}
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if(argc >= 4)
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pSelf->SetRotation((float)NUM2DBL(argv[3]));
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if(argc >= 5)
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pSelf->SetColor(*(Color *)DATA_PTR(argv[4]));
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} else
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rb_raise(rb_eTypeError, "wrong argument type(s)");
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return vSelf;
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}
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static VALUE Drawable_to_s(VALUE vSelf) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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char szBuffer[256];
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sprintf(szBuffer, "Left=%f, Top=%f, Scale=[%f,%f], Rotation=%f", pSelf->GetLeft(), pSelf->GetTop(), pSelf->GetScaleX(), pSelf->GetScaleX(), pSelf->GetRotation());
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return rb_str_new2(szBuffer);
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}
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static VALUE Drawable_set_left(VALUE vSelf, VALUE vLeft) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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pSelf->SetLeft((float)NUM2DBL(vLeft));
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return Qnil;
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}
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static VALUE Drawable_set_top(VALUE vSelf, VALUE vTop) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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pSelf->SetTop((float)NUM2DBL(vTop));
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return Qnil;
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}
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static VALUE Drawable_set_scale(VALUE vSelf, VALUE vScale) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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if(ISNUM(vScale)) {
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float f = (float)NUM2DBL(vScale);
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pSelf->SetScale(f, f);
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} else if(IS(vScale, rb_cArray)) {
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float x = (float)NUM2DBL(rb_ary_entry(vScale, 0));
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float y = (float)NUM2DBL(rb_ary_entry(vScale, 1));
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pSelf->SetScale(x, y);
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} else
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rb_raise(rb_eTypeError, "wrong argument type(s)");
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return Qnil;
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}
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static VALUE Drawable_set_rotation(VALUE vSelf, VALUE vRotation) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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pSelf->SetRotation((float)NUM2DBL(vRotation));
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return Qnil;
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}
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static VALUE Drawable_setRotationCenter(VALUE vSelf, VALUE vX, VALUE vY) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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pSelf->SetRotationCenter((float)NUM2DBL(vX), (float)NUM2DBL(vY));
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return Qnil;
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}
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static VALUE Drawable_set_color(VALUE vSelf, VALUE vColor) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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if(!IS(vColor, g_cColor))
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rb_raise(rb_eTypeError, "wrong argument type(s)");
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pSelf->SetColor(*(Color *)DATA_PTR(vColor));
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return Qnil;
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}
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static VALUE Drawable_get_left(VALUE vSelf) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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return rb_float_new(pSelf->GetLeft());
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}
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static VALUE Drawable_get_top(VALUE vSelf) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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return rb_float_new(pSelf->GetTop());
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}
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static VALUE Drawable_get_scale(VALUE vSelf) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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float x = pSelf->GetScaleX();
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float y = pSelf->GetScaleY();
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VALUE vArr = rb_ary_new();
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rb_ary_push(vArr, rb_float_new(x));
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rb_ary_push(vArr, rb_float_new(y));
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return vArr;
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}
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static VALUE Drawable_get_rotation(VALUE vSelf) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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return rb_float_new(pSelf->GetRotation());
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}
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static VALUE Drawable_get_upVector(VALUE vSelf) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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float f = (pSelf->GetRotation() + 90) * (PI/180.0f);
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VALUE v = rb_ary_new();
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rb_ary_push(v, rb_float_new(COSF(f)));
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rb_ary_push(v, rb_float_new(-SINF(f)));
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return v;
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}
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static VALUE Drawable_get_rightVector(VALUE vSelf) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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float f = pSelf->GetRotation() * (PI/180.0f);
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VALUE v = rb_ary_new();
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rb_ary_push(v, rb_float_new(COSF(f)));
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rb_ary_push(v, rb_float_new(-SINF(f)));
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return v;
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}
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static VALUE Drawable_get_color(VALUE vSelf) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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DECLARE_OBJ_VAR(Color, Color, pSelf->GetColor());
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return vColor;
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}
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static VALUE Drawable_setPosition(VALUE vSelf, float vX, float vY) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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pSelf->SetPosition((float)NUM2DBL(vX), (float)NUM2DBL(vY));
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return Qnil;
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}
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static VALUE Drawable_move(VALUE vSelf, float vX, float vY) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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pSelf->Move((float)NUM2DBL(vX), (float)NUM2DBL(vY));
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return Qnil;
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}
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static VALUE Drawable_rotate(VALUE vSelf, VALUE vRotate) {
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// Get C++ object pointer from vSelf
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Drawable *pSelf;
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Data_Get_Struct(vSelf, Drawable, pSelf);
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pSelf->Rotate((float)NUM2DBL(vRotate));
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return Qnil;
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}
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void Init_Drawable()
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{
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g_cDrawable = rb_define_class_under(g_vModule, "Drawable", rb_cObject);
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DEFINE_CLASS_METHOD(Drawable, new, -1);
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DEFINE_INSTANCE_METHOD(Drawable, initialize, -1);
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DEFINE_RW(Drawable, left);
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DEFINE_RW(Drawable, top);
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DEFINE_RW(Drawable, scale);
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DEFINE_RW(Drawable, color);
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DEFINE_RW(Drawable, rotation);
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DEFINE_GETTER(Drawable, upVector);
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DEFINE_GETTER(Drawable, rightVector);
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DEFINE_INSTANCE_METHOD(Drawable, to_s, 0);
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DEFINE_INSTANCE_METHOD(Drawable, setRotationCenter, 2);
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DEFINE_INSTANCE_METHOD(Drawable, setPosition, 2);
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DEFINE_INSTANCE_METHOD(Drawable, move, 2);
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DEFINE_INSTANCE_METHOD(Drawable, rotate, 1);
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}
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