qt5base-lts/examples/opengl/cube/mainwidget.cpp
Laszlo Agocs 611558d877 Modernize the OpenGL examples
Change them to use QOpenGLWidget and QOpenGLTexture.
Advocate also the usage of VBOs.

Hopeless examples, that rely on the fixed pipeline and will
not compile or work in ES and dynamic builds, are moved to
a "legacy" directory. The documentation pages for these are
removed. This long due change avoids the confusion newcomers
experience when trying to get started with Qt 5 and OpenGL.

hellowindow's behavior is changed to open a single window only
by default. The old default behavior, that opened three windows
on platforms that supported both MultipleWindows & ThreadedOpenGL,
can be requested by passing --multiple. --single is removed since it
is the default now. This plays much nicer with drivers that have
issues with threading.

In addition, say hello to hellogl2.

This is the old hellogl example updated to use QOpenGLWidget and
OpenGL 2. It also has a mainwindow with multiple (un)dockable widgets
containing the OpenGL widgets. This helps testing the behavior when
the top-level of the QOpenGLWidget changes and provides a very
important example of how to do proper resource management in this case.
(must use aboutToBeDestroyed() of the context, since the context goes
away and is replaced by a new one on every dock/undock)

As a bonus, the logo is now real 3D, no more orthographic nonsense.

Launch with --multisample to request 4x MSAA.

Launch with --coreprofile to request 3.2 Core. In this particular example
the shaders are present in both versions and there is a VAO so the application
is functional with core profile contexts.

Change-Id: Id780a80cb0708ef164cc172450ed74050f065596
Reviewed-by: Gunnar Sletta <gunnar.sletta@jollamobile.com>
2014-08-12 07:47:23 +02:00

213 lines
5.9 KiB
C++

/****************************************************************************
**
** Copyright (C) 2014 Digia Plc and/or its subsidiary(-ies).
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#include "mainwidget.h"
#include <QMouseEvent>
#include <math.h>
MainWidget::MainWidget(QWidget *parent) :
QOpenGLWidget(parent),
geometries(0),
texture(0),
angularSpeed(0)
{
}
MainWidget::~MainWidget()
{
// Make sure the context is current when deleting the texture
// and the buffers.
makeCurrent();
delete texture;
delete geometries;
doneCurrent();
}
//! [0]
void MainWidget::mousePressEvent(QMouseEvent *e)
{
// Save mouse press position
mousePressPosition = QVector2D(e->localPos());
}
void MainWidget::mouseReleaseEvent(QMouseEvent *e)
{
// Mouse release position - mouse press position
QVector2D diff = QVector2D(e->localPos()) - mousePressPosition;
// Rotation axis is perpendicular to the mouse position difference
// vector
QVector3D n = QVector3D(diff.y(), diff.x(), 0.0).normalized();
// Accelerate angular speed relative to the length of the mouse sweep
qreal acc = diff.length() / 100.0;
// Calculate new rotation axis as weighted sum
rotationAxis = (rotationAxis * angularSpeed + n * acc).normalized();
// Increase angular speed
angularSpeed += acc;
}
//! [0]
//! [1]
void MainWidget::timerEvent(QTimerEvent *)
{
// Decrease angular speed (friction)
angularSpeed *= 0.99;
// Stop rotation when speed goes below threshold
if (angularSpeed < 0.01) {
angularSpeed = 0.0;
} else {
// Update rotation
rotation = QQuaternion::fromAxisAndAngle(rotationAxis, angularSpeed) * rotation;
// Request an update
update();
}
}
//! [1]
void MainWidget::initializeGL()
{
initializeOpenGLFunctions();
glClearColor(0, 0, 0, 1);
initShaders();
initTextures();
//! [2]
// Enable depth buffer
glEnable(GL_DEPTH_TEST);
// Enable back face culling
glEnable(GL_CULL_FACE);
//! [2]
geometries = new GeometryEngine;
// Use QBasicTimer because its faster than QTimer
timer.start(12, this);
}
//! [3]
void MainWidget::initShaders()
{
// Compile vertex shader
if (!program.addShaderFromSourceFile(QOpenGLShader::Vertex, ":/vshader.glsl"))
close();
// Compile fragment shader
if (!program.addShaderFromSourceFile(QOpenGLShader::Fragment, ":/fshader.glsl"))
close();
// Link shader pipeline
if (!program.link())
close();
// Bind shader pipeline for use
if (!program.bind())
close();
}
//! [3]
//! [4]
void MainWidget::initTextures()
{
// Load cube.png image
texture = new QOpenGLTexture(QImage(":/cube.png").mirrored());
// Set nearest filtering mode for texture minification
texture->setMinificationFilter(QOpenGLTexture::Nearest);
// Set bilinear filtering mode for texture magnification
texture->setMagnificationFilter(QOpenGLTexture::Linear);
// Wrap texture coordinates by repeating
// f.ex. texture coordinate (1.1, 1.2) is same as (0.1, 0.2)
texture->setWrapMode(QOpenGLTexture::Repeat);
}
//! [4]
//! [5]
void MainWidget::resizeGL(int w, int h)
{
// Calculate aspect ratio
qreal aspect = qreal(w) / qreal(h ? h : 1);
// Set near plane to 3.0, far plane to 7.0, field of view 45 degrees
const qreal zNear = 3.0, zFar = 7.0, fov = 45.0;
// Reset projection
projection.setToIdentity();
// Set perspective projection
projection.perspective(fov, aspect, zNear, zFar);
}
//! [5]
void MainWidget::paintGL()
{
// Clear color and depth buffer
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
texture->bind();
//! [6]
// Calculate model view transformation
QMatrix4x4 matrix;
matrix.translate(0.0, 0.0, -5.0);
matrix.rotate(rotation);
// Set modelview-projection matrix
program.setUniformValue("mvp_matrix", projection * matrix);
//! [6]
// Use texture unit 0 which contains cube.png
program.setUniformValue("texture", 0);
// Draw cube geometry
geometries->drawCubeGeometry(&program);
}