288 lines
8.1 KiB
C++
288 lines
8.1 KiB
C++
//--------------------------------------------------------------------------------------
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// File: Model.cpp
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//
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// THIS CODE AND INFORMATION IS PROVIDED "AS IS" WITHOUT WARRANTY OF
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// ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING BUT NOT LIMITED TO
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// THE IMPLIED WARRANTIES OF MERCHANTABILITY AND/OR FITNESS FOR A
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// PARTICULAR PURPOSE.
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//
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// Copyright (c) Microsoft Corporation. All rights reserved.
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//
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// http://go.microsoft.com/fwlink/?LinkId=248929
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//--------------------------------------------------------------------------------------
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#include "pch.h"
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#include "Model.h"
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#include "CommonStates.h"
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#include "DirectXHelpers.h"
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#include "Effects.h"
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#include "PlatformHelpers.h"
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using namespace DirectX;
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#ifndef _CPPRTTI
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#error Model requires RTTI
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#endif
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//--------------------------------------------------------------------------------------
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// ModelMeshPart
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//--------------------------------------------------------------------------------------
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ModelMeshPart::ModelMeshPart() :
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indexCount(0),
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startIndex(0),
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vertexOffset(0),
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vertexStride(0),
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primitiveType(D3D_PRIMITIVE_TOPOLOGY_TRIANGLELIST),
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indexFormat(DXGI_FORMAT_R16_UINT),
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isAlpha(false)
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{
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}
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ModelMeshPart::~ModelMeshPart()
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{
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}
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_Use_decl_annotations_
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void ModelMeshPart::Draw( ID3D11DeviceContext* deviceContext, IEffect* ieffect, ID3D11InputLayout* iinputLayout, std::function<void()> setCustomState ) const
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{
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deviceContext->IASetInputLayout( iinputLayout );
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auto vb = vertexBuffer.Get();
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UINT vbStride = vertexStride;
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UINT vbOffset = 0;
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deviceContext->IASetVertexBuffers( 0, 1, &vb, &vbStride, &vbOffset );
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// Note that if indexFormat is DXGI_FORMAT_R32_UINT, this model mesh part requires a Feature Level 9.2 or greater device
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deviceContext->IASetIndexBuffer( indexBuffer.Get(), indexFormat, 0 );
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assert( ieffect != 0 );
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ieffect->Apply( deviceContext );
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// Hook lets the caller replace our shaders or state settings with whatever else they see fit.
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if ( setCustomState )
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{
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setCustomState();
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}
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// Draw the primitive.
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deviceContext->IASetPrimitiveTopology( primitiveType );
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deviceContext->DrawIndexed( indexCount, startIndex, vertexOffset );
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}
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_Use_decl_annotations_
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void ModelMeshPart::CreateInputLayout( ID3D11Device* d3dDevice, IEffect* ieffect, ID3D11InputLayout** iinputLayout )
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{
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if ( !vbDecl || vbDecl->empty() )
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throw std::exception("Model mesh part missing vertex buffer input elements data");
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void const* shaderByteCode;
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size_t byteCodeLength;
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assert( ieffect != 0 );
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ieffect->GetVertexShaderBytecode(&shaderByteCode, &byteCodeLength);
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assert( d3dDevice != 0 );
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ThrowIfFailed(
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d3dDevice->CreateInputLayout(vbDecl->data(),
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static_cast<UINT>( vbDecl->size() ),
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shaderByteCode, byteCodeLength,
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iinputLayout )
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);
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}
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_Use_decl_annotations_
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void ModelMeshPart::ModifyEffect( ID3D11Device* d3dDevice, std::shared_ptr<IEffect>& ieffect, bool isalpha )
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{
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if ( !vbDecl || vbDecl->empty() )
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throw std::exception("Model mesh part missing vertex buffer input elements data");
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assert( ieffect != 0 );
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this->effect = ieffect;
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this->isAlpha = isalpha;
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void const* shaderByteCode;
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size_t byteCodeLength;
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effect->GetVertexShaderBytecode(&shaderByteCode, &byteCodeLength);
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assert( d3dDevice != 0 );
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ThrowIfFailed(
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d3dDevice->CreateInputLayout(vbDecl->data(),
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static_cast<UINT>( vbDecl->size() ),
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shaderByteCode, byteCodeLength,
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&inputLayout )
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);
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}
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//--------------------------------------------------------------------------------------
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// ModelMesh
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//--------------------------------------------------------------------------------------
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ModelMesh::ModelMesh() :
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ccw(true),
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pmalpha(true)
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{
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}
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ModelMesh::~ModelMesh()
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{
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}
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_Use_decl_annotations_
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void ModelMesh::PrepareForRendering( ID3D11DeviceContext* deviceContext, CommonStates& states, bool alpha, bool wireframe ) const
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{
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assert( deviceContext != 0 );
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// Set the blend and depth stencil state.
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ID3D11BlendState* blendState;
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ID3D11DepthStencilState* depthStencilState;
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if ( alpha )
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{
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if ( pmalpha )
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{
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blendState = states.AlphaBlend();
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depthStencilState = states.DepthRead();
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}
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else
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{
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blendState = states.NonPremultiplied();
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depthStencilState = states.DepthRead();
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}
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}
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else
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{
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blendState = states.Opaque();
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depthStencilState = states.DepthDefault();
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}
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deviceContext->OMSetBlendState(blendState, nullptr, 0xFFFFFFFF);
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deviceContext->OMSetDepthStencilState(depthStencilState, 0);
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// Set the rasterizer state.
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if ( wireframe )
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deviceContext->RSSetState( states.Wireframe() );
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else
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deviceContext->RSSetState( ccw ? states.CullCounterClockwise() : states.CullClockwise() );
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// Set sampler state.
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ID3D11SamplerState* samplers[] =
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{
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states.LinearWrap(),
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states.LinearWrap(),
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};
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deviceContext->PSSetSamplers( 0, 2, samplers );
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}
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_Use_decl_annotations_
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void XM_CALLCONV ModelMesh::Draw( ID3D11DeviceContext* deviceContext,
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FXMMATRIX world, CXMMATRIX view, CXMMATRIX projection,
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bool alpha,
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std::function<void()> setCustomState ) const
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{
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assert( deviceContext != 0 );
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for ( auto it = meshParts.cbegin(); it != meshParts.cend(); ++it )
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{
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auto part = (*it).get();
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assert( part != 0 );
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if ( part->isAlpha != alpha )
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{
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// Skip alpha parts when drawing opaque or skip opaque parts if drawing alpha
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continue;
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}
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auto imatrices = dynamic_cast<IEffectMatrices*>( part->effect.get() );
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if ( imatrices )
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{
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imatrices->SetWorld( world );
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imatrices->SetView( view );
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imatrices->SetProjection( projection );
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}
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part->Draw( deviceContext, part->effect.get(), part->inputLayout.Get(), setCustomState );
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}
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}
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//--------------------------------------------------------------------------------------
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// Model
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//--------------------------------------------------------------------------------------
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Model::~Model()
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{
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}
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_Use_decl_annotations_
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void XM_CALLCONV Model::Draw( ID3D11DeviceContext* deviceContext, CommonStates& states,
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FXMMATRIX world, CXMMATRIX view, CXMMATRIX projection,
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bool wireframe, std::function<void()> setCustomState ) const
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{
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assert( deviceContext != 0 );
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// Draw opaque parts
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for( auto it = meshes.cbegin(); it != meshes.cend(); ++it )
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{
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auto mesh = it->get();
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assert( mesh != 0 );
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mesh->PrepareForRendering( deviceContext, states, false, wireframe );
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mesh->Draw( deviceContext, world, view, projection, false, setCustomState );
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}
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// Draw alpha parts
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for( auto it = meshes.cbegin(); it != meshes.cend(); ++it )
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{
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auto mesh = it->get();
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assert( mesh != 0 );
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mesh->PrepareForRendering( deviceContext, states, true, wireframe );
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mesh->Draw( deviceContext, world, view, projection, true, setCustomState );
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}
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}
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void Model::UpdateEffects( _In_ std::function<void(IEffect*)> setEffect )
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{
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if ( mEffectCache.empty() )
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{
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// This cache ensures we only set each effect once (could be shared)
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for( auto mit = meshes.cbegin(); mit != meshes.cend(); ++mit )
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{
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auto mesh = mit->get();
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assert( mesh != 0 );
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for ( auto it = mesh->meshParts.cbegin(); it != mesh->meshParts.cend(); ++it )
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{
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if ( (*it)->effect != 0 )
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mEffectCache.insert( (*it)->effect.get() );
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}
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}
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}
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assert( setEffect != 0 );
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for( auto it = mEffectCache.begin(); it != mEffectCache.end(); ++it )
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{
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setEffect( *it );
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}
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}
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