Add better debug cycle diagnostics API
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9b4072f5bc
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1c1ee6b5e3
@ -959,41 +959,56 @@ extern "C" void DTR_Update(PlatformRenderBuffer *const platformRenderBuffer,
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DTR_DEBUG_EP_TIMED_FUNCTION();
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if (!memory->isInit)
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{
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DebugTestStrToF32Converter();
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DTR_DEBUG_EP_TIMED_BLOCK("DTR_Update Memory Initialisation");
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DTRAsset_InitGlobalState();
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memory->isInit = true;
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memory->context = DqnMemStack_Push(&memory->mainStack, sizeof(DTRState));
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memory->isInit = (memory->context) ? true : false;
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if (!memory->isInit) return;
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state = (DTRState *)memory->context;
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////////////////////////////////////////////////////////////////////////
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// Init Memory Stacks
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////////////////////////////////////////////////////////////////////////
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DqnMemStack *const assetStack = &memory->assetStack;
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DqnMemStack *const tempStack = &memory->tempStack;
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DQN_ASSERT(memory->context);
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state = (DTRState *)memory->context;
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////////////////////////////////////////////////////////////////////////
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// Init Assets
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////////////////////////////////////////////////////////////////////////
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DTRAsset_InitGlobalState();
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DTRAsset_LoadFontToBitmap(input->api, &memory->mainStack, tempStack, &state->font,
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"Roboto-bold.ttf", DqnV2i_2i(256, 256), DqnV2i_2i(' ', '~'), 12);
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DTRAsset_LoadBitmap(input->api, assetStack,
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tempStack, &state->bitmap, "tree00.bmp");
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if (DTR_DEBUG)
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{
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DTRBitmap test = {};
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DqnTempMemStack tmp = DqnMemStack_BeginTempRegion(&memory->tempStack);
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DTRAsset_LoadBitmap(input->api, assetStack, &memory->tempStack, &test, "byte_read_check.bmp");
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DqnMemStack_EndTempRegion(tmp);
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}
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if (DTRAsset_LoadWavefrontObj(input->api, assetStack, &state->mesh, "african_head.obj"))
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{
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DTRAsset_LoadBitmap(input->api, assetStack, tempStack, &state->mesh.tex,
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"african_head_diffuse.tga");
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}
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DTRDebug_TestMeshFaceAndVertexParser(&state->mesh);
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////////////////////////////////////////////////////////////////////////
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// Init Debug
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////////////////////////////////////////////////////////////////////////
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if (DTR_DEBUG)
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{
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DebugTestStrToF32Converter();
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DTRDebug_TestMeshFaceAndVertexParser(&state->mesh);
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DqnTempMemStack tmp = DqnMemStack_BeginTempRegion(&memory->tempStack);
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DTRBitmap test = {};
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DTRAsset_LoadBitmap(input->api, assetStack, &memory->tempStack, &test, "byte_read_check.bmp");
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DqnMemStack_EndTempRegion(tmp);
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}
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}
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DqnTempMemStack transMemTmpRegion = DqnMemStack_BeginTempRegion(&memory->tempStack);
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DqnTempMemStack tempStackMemRegion = DqnMemStack_BeginTempRegion(&memory->tempStack);
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size_t debugSize = DQN_MEGABYTE(1);
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u8 *debugMemory = (u8 *)DqnMemStack_Push(&memory->tempStack, debugSize);
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DqnMemStack_InitWithFixedMem(&globalDebug.memStack, debugMemory, debugSize);
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DTRDebug_BeginCycleCount("DTR_Update", DTRDebugCycleCount_DTR_Update);
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DTRRenderBuffer renderBuffer = {};
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renderBuffer.width = platformRenderBuffer->width;
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@ -1006,7 +1021,6 @@ extern "C" void DTR_Update(PlatformRenderBuffer *const platformRenderBuffer,
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zBufferSize * sizeof(*renderBuffer.zBuffer));
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for (u32 i = 0; i < zBufferSize; i++) renderBuffer.zBuffer[i] = DQN_F32_MIN;
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////////////////////////////////////////////////////////////////////////////
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// Update and Render
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////////////////////////////////////////////////////////////////////////////
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@ -1034,15 +1048,22 @@ extern "C" void DTR_Update(PlatformRenderBuffer *const platformRenderBuffer,
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DTRRenderTransform rotatingXform = DTRRender_DefaultTriangleTransform();
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rotatingXform.rotation = rotation;
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DTRRender_Triangle(&renderBuffer, t0[0], t0[1], t0[2], colorRed);
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DTRRender_Triangle(&renderBuffer, t1[0], t1[1], t1[2], colorRed);
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DTRRender_Triangle(&renderBuffer, t3[0], t3[1], t3[2], colorRed, rotatingXform);
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DTRRender_Triangle(&renderBuffer, t2[0], t2[1], t2[2], colorRed);
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DTRRender_Triangle(&renderBuffer, t4[0], t4[1], t4[2], colorRed);
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DTRRender_Triangle(&renderBuffer, t5[0], t5[1], t5[2], colorRed);
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if (0)
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{
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DTRDebug_BeginCycleCount("DTR_Update_RenderPrimitiveTriangles",
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DTRDebugCycleCount_DTR_Update_RenderPrimitiveTriangles);
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DTRRender_Triangle(&renderBuffer, t0[0], t0[1], t0[2], colorRed);
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DTRRender_Triangle(&renderBuffer, t1[0], t1[1], t1[2], colorRed);
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DTRRender_Triangle(&renderBuffer, t3[0], t3[1], t3[2], colorRed, rotatingXform);
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DTRRender_Triangle(&renderBuffer, t2[0], t2[1], t2[2], colorRed);
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DTRRender_Triangle(&renderBuffer, t4[0], t4[1], t4[2], colorRed);
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DTRRender_Triangle(&renderBuffer, t5[0], t5[1], t5[2], colorRed);
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DTRDebug_EndCycleCount(DTRDebugCycleCount_DTR_Update_RenderPrimitiveTriangles);
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}
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if (1)
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{
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DTRDebug_BeginCycleCount("DTR_Update_RenderModel", DTRDebugCycleCount_DTR_Update_RenderModel);
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////////////////////////////////////////////////////////////////////////
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// Draw Loaded Model
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////////////////////////////////////////////////////////////////////////
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@ -1052,6 +1073,7 @@ extern "C" void DTR_Update(PlatformRenderBuffer *const platformRenderBuffer,
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DqnV3 modelP = DqnV3_3f(renderBuffer.width * 0.5f, renderBuffer.height * 0.5f, 0);
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DTRRender_Mesh(&renderBuffer, mesh, modelP, MODEL_SCALE, LIGHT);
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DTRDebug_EndCycleCount(DTRDebugCycleCount_DTR_Update_RenderModel);
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}
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}
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@ -1083,14 +1105,12 @@ extern "C" void DTR_Update(PlatformRenderBuffer *const platformRenderBuffer,
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#else
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// CompAssignment(renderBuffer, input, memory);
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#endif
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DTRDebug_EndCycleCount(DTRDebugCycleCount_DTR_Update);
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DTRDebug_Update(state, &renderBuffer, input, memory);
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DqnMemStack_EndTempRegion(tempStackMemRegion);
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////////////////////////////////////////////////////////////////////////////
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// End Update
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////////////////////////////////////////////////////////////////////////////
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DqnMemStack_EndTempRegion(transMemTmpRegion);
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DqnMemStack_ClearCurrBlock(&memory->tempStack, true);
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for (i32 i = 0; i < DQN_ARRAY_COUNT(memory->stacks); i++)
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DQN_ASSERT(memory->stacks[i].tempStackCount == 0);
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}
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@ -115,22 +115,30 @@ void DTRDebug_PushText(const char *const formatStr, ...)
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}
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}
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void inline DTRDebug_BeginCycleCount(enum DTRDebugCycleCount tag)
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#pragma warning(push)
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#pragma warning(disable: 4127)
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void inline DTRDebug_BeginCycleCount(char *title, enum DTRDebugCycleCount tag)
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{
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if (DTR_DEBUG_PROFILING)
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if (DTR_DEBUG && DTR_DEBUG_PROFILING)
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{
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if (globalDTRPlatformFlags.canUseRdtsc)
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{
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DTRDebugCycles *const cycles = &globalDebug.cycles[tag];
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cycles->tmpStartCycles = __rdtsc();
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cycles->numInvokes++;
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if (!cycles->name)
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{
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cycles->name = (char *)DqnMemStack_Push(&globalDebug.memStack, 128 * sizeof(char));
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if (cycles->name) Dqn_sprintf(cycles->name, "%s", title);
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}
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}
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}
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}
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void inline DTRDebug_EndCycleCount(enum DTRDebugCycleCount tag)
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{
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if (DTR_DEBUG_PROFILING)
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if (DTR_DEBUG && DTR_DEBUG_PROFILING)
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{
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if (globalDTRPlatformFlags.canUseRdtsc)
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{
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@ -139,6 +147,7 @@ void inline DTRDebug_EndCycleCount(enum DTRDebugCycleCount tag)
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}
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}
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}
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#pragma warning(pop)
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FILE_SCOPE void PushMemStackText(const char *const name, const DqnMemStack *const stack)
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{
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@ -201,6 +210,7 @@ void DTRDebug_Update(DTRState *const state,
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PushMemStackText("MainStack", &memory->mainStack);
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PushMemStackText("TempStack", &memory->tempStack);
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PushMemStackText("AssetStack", &memory->assetStack);
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PushMemStackText("DebugStack", &debug->memStack);
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}
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DTRDebug_PushText("Mouse: %d, %d", input->mouse.x, input->mouse.y);
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@ -224,7 +234,12 @@ void DTRDebug_Update(DTRState *const state,
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u64 invocations = (cycles->numInvokes == 0) ? 1 : cycles->numInvokes;
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u64 avgCycles = cycles->totalCycles / invocations;
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DTRDebug_PushText("%d: %'lld avg cycles", i, avgCycles);
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if (avgCycles > 0)
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{
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DTRDebug_PushText("%d:%s: %'lld avg cycles", i, cycles->name, avgCycles);
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}
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cycles->name = NULL;
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// *cycles = emptyDebugCycles;
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}
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@ -43,10 +43,13 @@ enum DTRDebugCounter
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enum DTRDebugCycleCount
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{
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DTRDebugCycleCount_RenderTexturedTriangle_Rasterise,
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DTRDebugCycleCount_RenderTexturedTriangle_SampleTextureFunction,
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DTRDebugCycleCount_RenderTexturedTriangle_SampleTexture,
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DTRDebugCycleCount_RenderTriangle_Rasterise,
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DTRDebugCycleCount_DTR_Update,
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DTRDebugCycleCount_DTR_Update_RenderModel,
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DTRDebugCycleCount_DTR_Update_RenderPrimitiveTriangles,
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DTRDebugCycleCount_SIMD_TexturedTriangle,
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DTRDebugCycleCount_SIMD_TexturedTriangle_Rasterise,
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DTRDebugCycleCount_SIMD_TexturedTriangle_RasterisePixel,
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DTRDebugCycleCount_SIMD_TexturedTriangle_SampleTexture,
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DTRDebugCycleCount_Count,
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};
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@ -64,6 +67,7 @@ typedef struct DTRDebug
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struct DTRFont *font;
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struct DTRRenderBuffer *renderBuffer;
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struct PlatformInput *input;
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DqnMemStack memStack;
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DqnV4 displayColor;
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DqnV2 displayP;
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@ -80,7 +84,7 @@ void DTRDebug_TestMeshFaceAndVertexParser(struct DTRMesh *const mesh);
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void DTRDebug_DumpZBuffer (struct DTRRenderBuffer *const renderBuffer, struct DqnMemStack *const transMemStack);
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void DTRDebug_PushText (const char *const formatStr, ...);
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void DTRDebug_Update (struct DTRState *const state, struct DTRRenderBuffer *const renderBuffer, struct PlatformInput *const input, struct PlatformMemory *const memory);
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void inline DTRDebug_BeginCycleCount (enum DTRDebugCycleCount tag);
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void inline DTRDebug_BeginCycleCount (char *title, enum DTRDebugCycleCount tag);
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void inline DTRDebug_EndCycleCount (enum DTRDebugCycleCount tag);
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void inline DTRDebug_CounterIncrement (enum DTRDebugCounter tag);
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@ -1002,7 +1002,9 @@ FILE_SCOPE __m128 SIMD_SampleTextureForTriangle(DTRBitmap *const texture, const
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const DqnV2 uv2SubUv1, const DqnV2 uv3SubUv1,
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const __m128 barycentric)
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{
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DTRDebug_BeginCycleCount(DTRDebugCycleCount_RenderTexturedTriangle_SampleTextureFunction);
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DTRDebug_BeginCycleCount("SIMD_TexturedTriangle_SampleTexture",
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DTRDebugCycleCount_SIMD_TexturedTriangle_SampleTexture);
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LOCAL_PERSIST const __m128 INV255_4X = _mm_set_ps1(1.0f / 255.0f);
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const f32 barycentricP2 = ((f32 *)&barycentric)[1];
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@ -1033,7 +1035,7 @@ FILE_SCOPE __m128 SIMD_SampleTextureForTriangle(DTRBitmap *const texture, const
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(f32)((texel1 >> 0) & 0xFF));
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color = SIMD_SRGB255ToLinearSpace1(color);
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DTRDebug_EndCycleCount(DTRDebugCycleCount_RenderTexturedTriangle_SampleTextureFunction);
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DTRDebug_EndCycleCount(DTRDebugCycleCount_SIMD_TexturedTriangle_SampleTexture);
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return color;
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}
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@ -1043,6 +1045,7 @@ FILE_SCOPE void SIMD_TexturedTriangle(DTRRenderBuffer *const renderBuffer, DqnV3
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const DTRRenderTransform transform)
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{
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DTR_DEBUG_EP_TIMED_FUNCTION();
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DTRDebug_BeginCycleCount("SIMD_TexturedTriangle", DTRDebugCycleCount_SIMD_TexturedTriangle);
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////////////////////////////////////////////////////////////////////////////
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// Convert color
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////////////////////////////////////////////////////////////////////////////
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@ -1066,7 +1069,6 @@ FILE_SCOPE void SIMD_TexturedTriangle(DTRRenderBuffer *const renderBuffer, DqnV3
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p3.xy = pList[2];
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}
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DTRDebug_BeginCycleCount(DTRDebugCycleCount_RenderTexturedTriangle_Rasterise);
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DqnV2i max = DqnV2i_2f(DQN_MAX(DQN_MAX(p1.x, p2.x), p3.x),
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DQN_MAX(DQN_MAX(p1.y, p2.y), p3.y));
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DqnV2i min = DqnV2i_2f(DQN_MIN(DQN_MIN(p1.x, p2.x), p3.x),
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@ -1143,6 +1145,7 @@ FILE_SCOPE void SIMD_TexturedTriangle(DTRRenderBuffer *const renderBuffer, DqnV3
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////////////////////////////////////////////////////////////////////////////
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// Scan and Render
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////////////////////////////////////////////////////////////////////////////
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DTRDebug_BeginCycleCount("SIMD_TexturedTriangle_Rasterise", DTRDebugCycleCount_SIMD_TexturedTriangle_Rasterise);
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for (i32 bufferY = min.y; bufferY < max.y; bufferY += NUM_Y_PIXELS_TO_SIMD)
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{
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__m128 signedArea1 = signedAreaPixel1;
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@ -1151,6 +1154,8 @@ FILE_SCOPE void SIMD_TexturedTriangle(DTRRenderBuffer *const renderBuffer, DqnV3
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for (i32 bufferX = min.x; bufferX < max.x; bufferX += NUM_X_PIXELS_TO_SIMD)
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{
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DTRDebug_BeginCycleCount("SIMD_TexturedTriangle_RasterisePixel",
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DTRDebugCycleCount_SIMD_TexturedTriangle_RasterisePixel);
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// Rasterise buffer(X, Y) pixel
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{
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__m128 checkArea = signedArea1;
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@ -1179,6 +1184,7 @@ FILE_SCOPE void SIMD_TexturedTriangle(DTRRenderBuffer *const renderBuffer, DqnV3
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}
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signedArea1 = _mm_add_ps(signedArea1, signedAreaPixelDeltaX);
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}
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DTRDebug_EndCycleCount(DTRDebugCycleCount_SIMD_TexturedTriangle_RasterisePixel);
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// Rasterise buffer(X + 1, Y) pixel
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{
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@ -1213,7 +1219,7 @@ FILE_SCOPE void SIMD_TexturedTriangle(DTRRenderBuffer *const renderBuffer, DqnV3
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signedAreaPixel1 = _mm_add_ps(signedAreaPixel1, signedAreaPixelDeltaY);
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signedAreaPixel2 = _mm_add_ps(signedAreaPixel2, signedAreaPixelDeltaY);
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}
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DTRDebug_EndCycleCount(DTRDebugCycleCount_RenderTexturedTriangle_Rasterise);
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DTRDebug_EndCycleCount(DTRDebugCycleCount_SIMD_TexturedTriangle_Rasterise);
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////////////////////////////////////////////////////////////////////////////
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// Debug
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@ -1254,6 +1260,7 @@ FILE_SCOPE void SIMD_TexturedTriangle(DTRRenderBuffer *const renderBuffer, DqnV3
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DTRRender_Rectangle(renderBuffer, p3.xy - DqnV2_1f(5), p3.xy + DqnV2_1f(5), purple);
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}
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}
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DTRDebug_EndCycleCount(DTRDebugCycleCount_SIMD_TexturedTriangle);
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}
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@ -1299,9 +1306,7 @@ void DTRRender_TexturedTriangle(DTRRenderBuffer *const renderBuffer, DqnV3 p1, D
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////////////////////////////////////////////////////////////////////////////
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// Scan and Render
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////////////////////////////////////////////////////////////////////////////
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DTRDebug_BeginCycleCount(DTRDebugCycleCount_RenderTexturedTriangle_Rasterise);
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RasteriseTexturedTriangle(renderBuffer, p1, p2, p3, uv1, uv2, uv3, texture, color);
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DTRDebug_EndCycleCount(DTRDebugCycleCount_RenderTexturedTriangle_Rasterise);
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////////////////////////////////////////////////////////////////////////////
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// Debug
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@ -1537,7 +1542,6 @@ void DTRRender_Triangle(DTRRenderBuffer *const renderBuffer, DqnV3 p1, DqnV3 p2,
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////////////////////////////////////////////////////////////////////////////
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// Scan and Render
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////////////////////////////////////////////////////////////////////////////
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DTRDebug_BeginCycleCount(DTRDebugCycleCount_RenderTriangle_Rasterise);
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const u32 zBufferPitch = renderBuffer->width;
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if (globalDTRPlatformFlags.canUseSSE2)
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{
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@ -1663,7 +1667,6 @@ void DTRRender_Triangle(DTRRenderBuffer *const renderBuffer, DqnV3 p1, DqnV3 p2,
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signedArea3 += signedArea3DeltaY;
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}
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}
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DTRDebug_EndCycleCount(DTRDebugCycleCount_RenderTriangle_Rasterise);
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////////////////////////////////////////////////////////////////////////////
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// Debug
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12
src/dqn.h
12
src/dqn.h
@ -1439,17 +1439,17 @@ DQN_FILE_SCOPE bool DqnMemStack_InitWithFixedMem(DqnMemStack *const stack,
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const u32 byteAlign)
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{
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if (!stack || !mem) return false;
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DQN_ASSERT(!stack->block);
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// TODO(doyle): Better logging
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if (memSize < sizeof(DqnMemStackBlock))
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DQN_ASSERT(DQN_INVALID_CODE_PATH);
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stack->block = (DqnMemStackBlock *)mem;
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stack->block->memory = mem + sizeof(DqnMemStackBlock);
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stack->block->used = 0;
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stack->block->size = memSize - sizeof(DqnMemStackBlock);
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stack->flags = (DqnMemStackFlag_IsFixedMemoryFromUser | DqnMemStackFlag_IsNotExpandable);
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stack->block = (DqnMemStackBlock *)mem;
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stack->block->memory = mem + sizeof(DqnMemStackBlock);
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stack->block->used = 0;
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stack->block->size = memSize - sizeof(DqnMemStackBlock);
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stack->block->prevBlock = NULL;
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stack->flags = (DqnMemStackFlag_IsFixedMemoryFromUser | DqnMemStackFlag_IsNotExpandable);
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const u32 DEFAULT_ALIGNMENT = 4;
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stack->tempStackCount = 0;
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