mirror of https://github.com/PCSX2/pcsx2.git
232 lines
4.8 KiB
C++
232 lines
4.8 KiB
C++
/*
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* Copyright (C) 2007-2009 Gabest
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* http://www.gabest.org
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*
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* This Program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2, or (at your option)
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* any later version.
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*
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* This Program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with GNU Make; see the file COPYING. If not, write to
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* the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
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* http://www.gnu.org/copyleft/gpl.html
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*
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*/
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#pragma once
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#include "GSdx.h"
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#include "GSWnd.h"
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#include "GSState.h"
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#include "GSVertexList.h"
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#include "GSSettingsDlg.h"
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#include "GSCapture.h"
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class GSRenderer : public GSState
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{
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GSCapture m_capture;
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string m_snapshot;
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int m_shader;
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bool Merge(int field);
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protected:
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int m_interlace;
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int m_aspectratio;
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int m_filter;
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bool m_vsync;
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bool m_nativeres;
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bool m_aa1;
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bool m_blur;
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virtual void ResetDevice() {}
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virtual GSTexture* GetOutput(int i) = 0;
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public:
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GSWnd m_wnd;
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GSDevice* m_dev;
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bool m_psrr;
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int s_n;
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bool s_dump;
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bool s_save;
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bool s_savez;
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public:
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GSRenderer(uint8* base, bool mt, void (*irq)(), GSDevice* dev, bool psrr = true);
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virtual ~GSRenderer();
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virtual bool Create(const string& title);
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virtual void VSync(int field);
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virtual bool MakeSnapshot(const string& path);
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virtual void KeyEvent(GSKeyEventData* e);
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virtual void MinMaxUV(int w, int h, GSVector4i& r)
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{
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r = GSVector4i(0, 0, w, h);
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}
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virtual bool CanUpscale()
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{
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return !m_nativeres;
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}
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};
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template<class Vertex> class GSRendererT : public GSRenderer
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{
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protected:
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Vertex* m_vertices;
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int m_count;
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int m_maxcount;
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GSVertexList<Vertex> m_vl;
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void Reset()
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{
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m_count = 0;
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m_vl.RemoveAll();
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__super::Reset();
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}
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void ResetPrim()
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{
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m_vl.RemoveAll();
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}
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void FlushPrim()
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{
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if(m_count > 0)
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{
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/*
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TRACE(_T("[%d] Draw f %05x (%d) z %05x (%d %d %d %d) t %05x %05x (%d)\n"),
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(int)m_perfmon.GetFrame(),
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(int)m_context->FRAME.Block(),
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(int)m_context->FRAME.PSM,
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(int)m_context->ZBUF.Block(),
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(int)m_context->ZBUF.PSM,
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m_context->TEST.ZTE,
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m_context->TEST.ZTST,
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m_context->ZBUF.ZMSK,
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PRIM->TME ? (int)m_context->TEX0.TBP0 : 0xfffff,
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PRIM->TME && m_context->TEX0.PSM > PSM_PSMCT16S ? (int)m_context->TEX0.CBP : 0xfffff,
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PRIM->TME ? (int)m_context->TEX0.PSM : 0xff);
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*/
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if(GSUtil::EncodePSM(m_context->FRAME.PSM) != 3 && GSUtil::EncodePSM(m_context->ZBUF.PSM) != 3)
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{
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// FIXME: berserk fpsm = 27 (8H)
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Draw();
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}
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m_count = 0;
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}
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}
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void GrowVertexBuffer()
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{
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m_maxcount = max(10000, m_maxcount * 3/2);
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m_vertices = (Vertex*)_aligned_realloc(m_vertices, sizeof(Vertex) * m_maxcount, 16);
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m_maxcount -= 100;
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}
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template<uint32 prim> __forceinline Vertex* DrawingKick(bool skip, int& count)
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{
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switch(prim)
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{
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case GS_POINTLIST: count = 1; break;
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case GS_LINELIST: count = 2; break;
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case GS_LINESTRIP: count = 2; break;
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case GS_TRIANGLELIST: count = 3; break;
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case GS_TRIANGLESTRIP: count = 3; break;
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case GS_TRIANGLEFAN: count = 3; break;
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case GS_SPRITE: count = 2; break;
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case GS_INVALID: count = 1; break;
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default: __assume(0);
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}
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if(m_vl.GetCount() < count)
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{
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return NULL;
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}
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if(m_count >= m_maxcount)
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{
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GrowVertexBuffer();
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}
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Vertex* v = &m_vertices[m_count];
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switch(prim)
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{
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case GS_POINTLIST:
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m_vl.GetAt(0, v[0]);
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m_vl.RemoveAll();
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break;
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case GS_LINELIST:
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m_vl.GetAt(0, v[0]);
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m_vl.GetAt(1, v[1]);
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m_vl.RemoveAll();
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break;
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case GS_LINESTRIP:
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m_vl.GetAt(0, v[0]);
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m_vl.GetAt(1, v[1]);
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m_vl.RemoveAt(0, 1);
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break;
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case GS_TRIANGLELIST:
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m_vl.GetAt(0, v[0]);
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m_vl.GetAt(1, v[1]);
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m_vl.GetAt(2, v[2]);
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m_vl.RemoveAll();
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break;
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case GS_TRIANGLESTRIP:
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m_vl.GetAt(0, v[0]);
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m_vl.GetAt(1, v[1]);
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m_vl.GetAt(2, v[2]);
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m_vl.RemoveAt(0, 2);
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break;
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case GS_TRIANGLEFAN:
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m_vl.GetAt(0, v[0]);
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m_vl.GetAt(1, v[1]);
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m_vl.GetAt(2, v[2]);
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m_vl.RemoveAt(1, 1);
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break;
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case GS_SPRITE:
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m_vl.GetAt(0, v[0]);
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m_vl.GetAt(1, v[1]);
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m_vl.RemoveAll();
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break;
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case GS_INVALID:
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ASSERT(0);
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m_vl.RemoveAll();
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return NULL;
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default:
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__assume(0);
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}
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return !skip ? v : NULL;
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}
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virtual void Draw() = 0;
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public:
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GSRendererT(uint8* base, bool mt, void (*irq)(), GSDevice* dev, bool psrr = true)
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: GSRenderer(base, mt, irq, dev, psrr)
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, m_count(0)
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, m_maxcount(0)
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, m_vertices(NULL)
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{
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}
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virtual ~GSRendererT()
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{
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if(m_vertices) _aligned_free(m_vertices);
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}
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};
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