parent
dc68842db4
commit
83331bc7e5
32
src/GPU.cpp
32
src/GPU.cpp
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@ -71,7 +71,9 @@ u32 VRAMMap_TexPal[8];
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u32 VRAMMap_ARM7[2];
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u32 Framebuffer[256*192*2];
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u32* Framebuffer;
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int FBScale;
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int FBScreenStride;
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GPU2D* GPU2D_A;
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GPU2D* GPU2D_B;
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@ -83,6 +85,9 @@ bool Init()
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GPU2D_B = new GPU2D(1);
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if (!GPU3D::Init()) return false;
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//SetFramebufferScale(1);
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SetFramebufferScale(2);
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return true;
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}
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@ -91,6 +96,8 @@ void DeInit()
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delete GPU2D_A;
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delete GPU2D_B;
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GPU3D::DeInit();
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if (Framebuffer) delete[] Framebuffer;
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}
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void Reset()
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@ -147,13 +154,13 @@ void Reset()
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GPU2D_B->Reset();
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GPU3D::Reset();
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GPU2D_A->SetFramebuffer(&Framebuffer[256*192]);
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GPU2D_B->SetFramebuffer(&Framebuffer[256*0]);
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GPU2D_A->SetFramebuffer(&Framebuffer[FBScreenStride]);
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GPU2D_B->SetFramebuffer(&Framebuffer[0]);
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}
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void Stop()
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{
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memset(Framebuffer, 0, 256*192*2*4);
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memset(Framebuffer, 0, FBScreenStride*2*sizeof(u32));
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}
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void DoSavestate(Savestate* file)
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@ -208,6 +215,15 @@ void DoSavestate(Savestate* file)
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GPU3D::DoSavestate(file);
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}
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void SetFramebufferScale(int scale)
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{
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FBScale = scale;
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FBScreenStride = (256*scale) * (192*scale);
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if (Framebuffer) delete[] Framebuffer;
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Framebuffer = new u32[FBScreenStride * 2];
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}
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// VRAM mapping notes
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//
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@ -668,13 +684,13 @@ void SetPowerCnt(u32 val)
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if (val & (1<<15))
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{
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GPU2D_A->SetFramebuffer(&Framebuffer[256*0]);
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GPU2D_B->SetFramebuffer(&Framebuffer[256*192]);
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GPU2D_A->SetFramebuffer(&Framebuffer[0]);
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GPU2D_B->SetFramebuffer(&Framebuffer[FBScreenStride]);
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}
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else
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{
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GPU2D_A->SetFramebuffer(&Framebuffer[256*192]);
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GPU2D_B->SetFramebuffer(&Framebuffer[256*0]);
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GPU2D_A->SetFramebuffer(&Framebuffer[FBScreenStride]);
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GPU2D_B->SetFramebuffer(&Framebuffer[0]);
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}
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}
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@ -61,7 +61,7 @@ extern u32 VRAMMap_Texture[4];
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extern u32 VRAMMap_TexPal[8];
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extern u32 VRAMMap_ARM7[2];
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extern u32 Framebuffer[256*192*2];
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extern u32* Framebuffer;
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extern GPU2D* GPU2D_A;
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extern GPU2D* GPU2D_B;
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@ -74,6 +74,8 @@ void Stop();
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void DoSavestate(Savestate* file);
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void SetFramebufferScale(int scale);
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void MapVRAM_AB(u32 bank, u8 cnt);
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void MapVRAM_CD(u32 bank, u8 cnt);
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@ -551,7 +551,7 @@ void GPU2D::Write32(u32 addr, u32 val)
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void GPU2D::DrawScanline(u32 line)
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{
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u32* dst = &Framebuffer[256*line];
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u32* dst = &Framebuffer[256*4*line];
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u32 mode1gfx[256];
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// request each 3D scanline in advance
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@ -725,6 +725,17 @@ void GPU2D::DrawScanline(u32 line)
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dst[i] = c | ((c & 0x00C0C0C0) >> 6) | 0xFF000000;
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}
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// hax
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for (int i = 255; i >= 0; i--)
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{
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u32 c = dst[i];
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dst[i*2] = c;
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dst[i*2+1] = c;
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dst[i*2+512] = c;
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dst[i*2+513] = c;
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}
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}
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void GPU2D::VBlank()
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@ -95,7 +95,9 @@ bool SavestateLoaded;
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bool ScreenDrawInited = false;
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uiDrawBitmap* ScreenBitmap = NULL;
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u32 ScreenBuffer[256*384];
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u32* ScreenBuffer;
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int ScreenScale;
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int ScreenGap = 0;
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int ScreenLayout = 0;
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@ -396,6 +398,8 @@ int EmuThreadFunc(void* burp)
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uiGLMakeContextCurrent(GLContext);
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NDS::Init();
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ScreenBuffer = new u32[(256*ScreenScale) * (384*ScreenScale)];
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MainScreenPos[0] = 0;
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MainScreenPos[1] = 0;
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MainScreenPos[2] = 0;
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@ -550,7 +554,7 @@ int EmuThreadFunc(void* burp)
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}
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}
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memcpy(ScreenBuffer, GPU::Framebuffer, 256*384*4);
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memcpy(ScreenBuffer, GPU::Framebuffer, (256*ScreenScale)*(384*ScreenScale)*4);
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uiAreaQueueRedrawAll(MainDrawArea);
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// framerate limiter based off SDL2_gfx
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@ -616,6 +620,8 @@ int EmuThreadFunc(void* burp)
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if (joybuttons) delete[] joybuttons;
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delete[] ScreenBuffer;
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NDS::DeInit();
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Platform::LAN_DeInit();
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@ -625,16 +631,17 @@ int EmuThreadFunc(void* burp)
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void OnAreaDraw(uiAreaHandler* handler, uiArea* area, uiAreaDrawParams* params)
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{
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// TODO: recreate bitmap if screen scale changed
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if (!ScreenDrawInited)
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{
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ScreenDrawInited = true;
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ScreenBitmap = uiDrawNewBitmap(params->Context, 256, 384);
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ScreenBitmap = uiDrawNewBitmap(params->Context, 256*ScreenScale, 384*ScreenScale);
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}
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if (!ScreenBitmap) return;
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uiRect top = {0, 0, 256, 192};
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uiRect bot = {0, 192, 256, 192};
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uiRect top = {0, 0, 256*ScreenScale, 192*ScreenScale};
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uiRect bot = {0, 192*ScreenScale, 256*ScreenScale, 192*ScreenScale};
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uiDrawBitmapUpdate(ScreenBitmap, ScreenBuffer);
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@ -817,6 +824,9 @@ void SetupScreenRects(int width, int height)
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screenH = 192;
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}
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screenW *= ScreenScale;
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screenH *= ScreenScale;
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uiRect *topscreen, *bottomscreen;
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if (ScreenRotation == 1 || ScreenRotation == 2)
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{
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@ -1010,6 +1020,9 @@ void SetMinSize(int w, int h)
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int cw, ch;
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uiWindowContentSize(MainWindow, &cw, &ch);
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w *= ScreenScale;
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h *= ScreenScale;
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uiControlSetMinSize(uiControl(MainDrawArea), w, h);
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if ((cw < w) || (ch < h))
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{
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@ -1535,8 +1548,8 @@ void OnSetScreenSize(uiMenuItem* item, uiWindow* window, void* param)
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int factor = *(int*)param;
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bool isHori = (ScreenRotation == 1 || ScreenRotation == 3);
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int w = 256*factor;
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int h = 192*factor;
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int w = 256*factor * ScreenScale;
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int h = 192*factor * ScreenScale;
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if (ScreenLayout == 0) // natural
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{
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@ -1947,6 +1960,9 @@ int main(int argc, char** argv)
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WindowWidth = w;
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WindowHeight = h;
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//ScreenScale = 1;
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ScreenScale = 2; // HAW HAW HAW
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MainWindow = uiNewWindow("melonDS " MELONDS_VERSION, w, h, Config::WindowMaximized, 1, 1);
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uiWindowOnClosing(MainWindow, OnCloseWindow, NULL);
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