Files
hwr2023_a/GDP/D3D9/Mesh.cpp
T
david 589d0933f4 add input
add time
2025-09-24 15:37:58 +02:00

209 lines
5.9 KiB
C++

#include "Mesh.h"
#include "Utilities.h"
#include "Vertex.h"
#include <DirectXMath.h>
using namespace DirectX;
UINT Mesh::init(IDirect3DDevice9* pD3DDevice)
{
UINT error = 0;
error = createVertexBuffer(pD3DDevice);
CheckError(error);
error = createIndexBuffer(pD3DDevice);
CheckError(error);
// identity matrix
XMMATRIX identityMatrix = XMMatrixIdentity();
XMFLOAT4X4 worldMatrix;
XMStoreFloat4x4(&worldMatrix, identityMatrix);
D3DMATRIX* pWorldMatrix = reinterpret_cast<D3DMATRIX*>(&worldMatrix);
_worldMatrix = *pWorldMatrix;
return 0;
}
void Mesh::update(FLOAT dt)
{
static FLOAT x = 0.0f;
static FLOAT y = 0.0f;
static FLOAT z = 0.0f;
static FLOAT pitch = XM_PIDIV4;
static FLOAT yaw = 0.0f;
static FLOAT roll = XM_PIDIV4;
static FLOAT scale = 1.0f;
yaw += 1.0f * dt;
FLOAT move = 1.0f * dt;
if (GetAsyncKeyState(VK_LEFT) & 0x8000) x -= move;
if (GetAsyncKeyState(VK_RIGHT) & 0x8000) x += move;
if (GetAsyncKeyState(VK_DOWN) & 0x8000) y -= move;
if (GetAsyncKeyState(VK_UP) & 0x8000) y += move;
if (GetAsyncKeyState('Q') & 0x8000) z -= move;
if (GetAsyncKeyState('E') & 0x8000) z += move;
XMMATRIX translationMatrix = XMMatrixTranslation(x, y, z);
XMMATRIX rotationMatrix = XMMatrixRotationRollPitchYaw(pitch, yaw, roll);
XMMATRIX scaleMatrix = XMMatrixScaling(scale, scale, scale);
XMStoreFloat4x4(reinterpret_cast<XMFLOAT4X4*>(&_worldMatrix), scaleMatrix * rotationMatrix * translationMatrix);
}
void Mesh::render(IDirect3DDevice9* pD3DDevice)
{
// 1. set mesh data
pD3DDevice->SetStreamSource(0, _pVertexBuffer, 0, _vertexStride);
pD3DDevice->SetFVF(FVF);
pD3DDevice->SetIndices(_pIndexBuffer);
pD3DDevice->SetTransform(D3DTS_WORLD, &_worldMatrix);
// 2. draw call
//pD3DDevice->DrawPrimitive(D3DPT_TRIANGLELIST, 0, _vertexCount / 3);
//pD3DDevice->DrawPrimitive(D3DPT_TRIANGLESTRIP, 0, _vertexCount - 2);
//pD3DDevice->DrawPrimitive(D3DPT_TRIANGLEFAN, 0, _vertexCount - 2);
pD3DDevice->DrawIndexedPrimitive(D3DPT_TRIANGLELIST, 0, 0, _vertexCount, 0, _indexCount / 3);
}
void Mesh::deInit()
{
safeRelease(_pIndexBuffer);
safeRelease(_pVertexBuffer);
}
UINT Mesh::createVertexBuffer(IDirect3DDevice9* pD3DDevice)
{
// 1. define mesh structure
_vertexCount = 8;
_vertexStride = sizeof(Vertex);
// 2. create vertex buffer WITHOUT data
HRESULT hr = pD3DDevice->CreateVertexBuffer(
_vertexCount * _vertexStride, // vertex buffer byte length
D3DUSAGE_WRITEONLY, // vertex buffer access mode
FVF, // FVF - Flexible Vertex Format
D3DPOOL_MANAGED, // video memory management
&_pVertexBuffer,
nullptr // not used anymore
);
CheckFailed(hr, 300);
// 3. fill vertex buffer with data
Vertex* pVertices = nullptr;
hr = _pVertexBuffer->Lock(0, 0, reinterpret_cast<void**>(&pVertices), 0);
CheckFailed(hr, 310);
// triangle
//pVertices[0] = Vertex(0.0f, 0.5f, 0.0f);
//pVertices[1] = Vertex(0.5f, -0.5f, 0.0f);
//pVertices[2] = Vertex(-0.5f, -0.5f, 0.0f);
// quad with trianglelist WITHOUT index buffer
//// triangle 1
//pVertices[0] = Vertex(-0.5f, 0.5f, 0.0f);
//pVertices[1] = Vertex(0.5f, 0.5f, 0.0f);
//pVertices[2] = Vertex(0.5f, -0.5f, 0.0f);
//// triangle 2
//pVertices[3] = Vertex(-0.5f, 0.5f, 0.0f);
//pVertices[4] = Vertex(0.5f, -0.5f, 0.0f);
//pVertices[5] = Vertex(-0.5f, -0.5f, 0.0f);
// quad with trianglestrip
//pVertices[0] = Vertex(-0.5f, 0.5f, 0.0f);
//pVertices[1] = Vertex(0.5f, 0.5f, 0.0f);
//pVertices[2] = Vertex(-0.5f, -0.5f, 0.0f);
//pVertices[3] = Vertex(0.5f, -0.5f, 0.0f);
//// quad with trianglefan
//// quad with trianglelist & index buffer
//pVertices[0] = Vertex(-0.5f, 0.5f, 0.0f);
//pVertices[1] = Vertex(0.5f, 0.5f, 0.0f);
//pVertices[2] = Vertex(0.5f, -0.5f, 0.0f);
//pVertices[3] = Vertex(-0.5f, -0.5f, 0.0f);
// cube
// front
pVertices[0] = Vertex(-0.5f, 0.5f, -0.5f);
pVertices[1] = Vertex(0.5f, 0.5f, -0.5f);
pVertices[2] = Vertex(0.5f, -0.5f, -0.5f);
pVertices[3] = Vertex(-0.5f, -0.5f, -0.5f);
// back
pVertices[4] = Vertex(0.5f, 0.5f, 0.5f);
pVertices[5] = Vertex(-0.5f, 0.5f, 0.5f);
pVertices[6] = Vertex(-0.5f, -0.5f, 0.5f);
pVertices[7] = Vertex(0.5f, -0.5f, 0.5f);
hr = _pVertexBuffer->Unlock();
CheckFailed(hr, 320);
pVertices = nullptr;
return 0;
}
UINT Mesh::createIndexBuffer(IDirect3DDevice9* pD3DDevice)
{
_indexCount = 36; // triangle * 3
HRESULT hr = pD3DDevice->CreateIndexBuffer(
_indexCount * sizeof(WORD),
D3DUSAGE_WRITEONLY,
D3DFMT_INDEX16,
D3DPOOL_MANAGED,
&_pIndexBuffer,
nullptr
);
CheckFailed(hr, 330);
WORD* pIndices = nullptr;
hr = _pIndexBuffer->Lock(0, 0, reinterpret_cast<void**>(&pIndices), 0);
CheckFailed(hr, 340);
//// quad
//// triangle 1
//pIndices[0] = 0; pIndices[1] = 1; pIndices[2] = 2;
//// triangle 2
//pIndices[3] = 0; pIndices[4] = 2; pIndices[5] = 3;
// cube
// front
pIndices[0] = 0; pIndices[1] = 1; pIndices[2] = 2;
pIndices[3] = 0; pIndices[4] = 2; pIndices[5] = 3;
// back
pIndices[6] = 4; pIndices[7] = 5; pIndices[8] = 6;
pIndices[9] = 4; pIndices[10] = 6; pIndices[11] = 7;
// left
pIndices[12] = 5; pIndices[13] = 0; pIndices[14] = 3;
pIndices[15] = 5; pIndices[16] = 3; pIndices[17] = 6;
// right
pIndices[18] = 1; pIndices[19] = 4; pIndices[20] = 7;
pIndices[21] = 1; pIndices[22] = 7; pIndices[23] = 2;
// top
pIndices[24] = 5; pIndices[25] = 4; pIndices[26] = 1;
pIndices[27] = 5; pIndices[28] = 1; pIndices[29] = 0;
// bottom
pIndices[30] = 3; pIndices[31] = 2; pIndices[32] = 7;
pIndices[33] = 3; pIndices[34] = 7; pIndices[35] = 6;
hr = _pIndexBuffer->Unlock();
CheckFailed(hr, 350);
pIndices = nullptr;
return 0;
}