tyrav2 init

This commit is contained in:
h4570
2022-07-17 10:21:35 +02:00
parent 44c1ee4fe8
commit c8b22ff331
249 changed files with 18187 additions and 0 deletions
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/*
# ______ ____ ___
# | \/ ____| |___|
# | | | \ | |
#-----------------------------------------------------------------------
# Copyright 2020, tyra - https://github.com/h4570/tyra
# Licenced under Apache License 2.0
# Sandro Sobczyński <sandro.sobczynski@gmail.com>
*/
#include <tamtypes.h>
#include "math/m4x4.hpp"
#include "renderer/3d/mesh/mesh.hpp"
namespace Tyra {
Mesh::Mesh(const MeshBuilderData& data) {
id = rand() % 1000000;
framesCount = data.framesCount;
TYRA_ASSERT(framesCount > 0, "Frames count must be greater than 0");
materialsCount = data.materialsCount;
TYRA_ASSERT(materialsCount > 0, "Materials count must be greater than 0");
frames = new MeshFrame*[framesCount];
for (u32 i = 0; i < framesCount; i++) {
frames[i] = new MeshFrame(data, i);
}
materials = new MeshMaterial*[materialsCount];
for (u32 i = 0; i < materialsCount; i++) {
materials[i] = new MeshMaterial(data, i);
}
translation.translate(Vec4(0.0F, 0.0F, 0.0F, 1.0F));
initMesh();
_isMother = true;
}
Mesh::Mesh(const Mesh& mesh) {
id = rand() % 1000000;
framesCount = mesh.framesCount;
materialsCount = mesh.materialsCount;
frames = new MeshFrame*[framesCount];
for (u32 i = 0; i < framesCount; i++) {
frames[i] = new MeshFrame(*mesh.frames[i]);
}
materials = new MeshMaterial*[materialsCount];
for (u32 i = 0; i < materialsCount; i++) {
materials[i] = new MeshMaterial(*mesh.materials[i]);
}
translation.translate(Vec4(0.0F, 0.0F, 0.0F, 1.0F));
initMesh();
_isMother = false;
}
Mesh::~Mesh() {
for (u32 i = 0; i < framesCount; i++) {
delete frames[i];
}
delete[] frames;
for (u32 i = 0; i < materialsCount; i++) {
delete materials[i];
delete[] materials;
}
}
M4x4 Mesh::getModelMatrix() const { return translation * rotation * scale; }
void Mesh::initMesh() {
animState.startFrame = 0;
animState.endFrame = 0;
animState.interpolation = 0.0F;
animState.animType = 0;
animState.currentFrame = 0;
animState.stayFrame = 0;
animState.isStayFrameSet = false;
animState.nextFrame = 0;
animState.speed = 0.1F;
}
void Mesh::playAnimation(const u32& t_startFrame, const u32& t_endFrame) {
TYRA_ASSERT(framesCount > 0,
"Cant play animation, because no mesh data was loaded!");
TYRA_ASSERT(framesCount != 1,
"Cant play animation, because this mesh have only one frame.");
TYRA_ASSERT(
t_endFrame < framesCount,
"End frame value is too high. Valid range: (0, getFramesCount()-1)");
animState.startFrame = t_startFrame;
animState.endFrame = t_endFrame;
if (animState.currentFrame == t_startFrame)
animState.nextFrame = t_endFrame;
else
animState.nextFrame = t_startFrame;
}
void Mesh::playAnimation(const u32& t_startFrame, const u32& t_endFrame,
const u32& t_stayFrame) {
TYRA_ASSERT(framesCount > 0,
"Cant play animation, because no mesh data was loaded!");
TYRA_ASSERT(framesCount != 1,
"Cant play animation, because this mesh have only one frame.");
TYRA_ASSERT(
t_endFrame < framesCount,
"End frame value is too high. Valid range: (0, getFramesCount()-1)");
animState.startFrame = t_startFrame;
animState.endFrame = t_endFrame;
animState.isStayFrameSet = true;
animState.stayFrame = t_stayFrame;
animState.nextFrame = t_startFrame;
}
void Mesh::animate() {
animState.interpolation += animState.speed;
if (animState.interpolation >= 1.0F) {
animState.interpolation = 0.0F;
animState.currentFrame = animState.nextFrame;
if (++animState.nextFrame > animState.endFrame) {
if (animState.isStayFrameSet) {
animState.isStayFrameSet = false;
animState.nextFrame = animState.stayFrame;
animState.startFrame = animState.stayFrame;
animState.endFrame = animState.stayFrame;
} else {
animState.nextFrame = animState.startFrame;
}
}
}
}
} // namespace Tyra