/* ============================================================================== This file is part of the JUCE library - "Jules' Utility Class Extensions" Copyright 2004-11 by Raw Material Software Ltd. ------------------------------------------------------------------------------ JUCE can be redistributed and/or modified under the terms of the GNU General Public License (Version 2), as published by the Free Software Foundation. A copy of the license is included in the JUCE distribution, or can be found online at www.gnu.org/licenses. JUCE is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. ------------------------------------------------------------------------------ To release a closed-source product which uses JUCE, commercial licenses are available: visit www.rawmaterialsoftware.com/juce for more information. ============================================================================== */ #ifndef __JUCE_DRAGGABLE3DORIENTATION_JUCEHEADER__ #define __JUCE_DRAGGABLE3DORIENTATION_JUCEHEADER__ #include "juce_Quaternion.h" //============================================================================== /** Stores a 3D orientation, which can be rotated by dragging with the mouse. */ class Draggable3DOrientation { public: typedef Vector3D VectorType; /** Creates a Draggable3DOrientation, initially set up to be aligned along the X axis. */ Draggable3DOrientation (float objectRadius = 0.5f) noexcept : radius (jmax (0.1f, objectRadius)), quaternion (VectorType::xAxis(), 0) { } /** Resets the orientation, specifying the axis to align it along. */ void reset (const VectorType& axis) noexcept { quaternion = QuaternionType (axis, 0); } /** Sets the viewport area within which mouse-drag positions will occur. You'll need to set this rectangle before calling mouseDown. The centre of the rectangle is assumed to be the centre of the object that will be rotated, and the size of the rectangle will be used to scale the object radius - see setRadius(). */ void setViewport (const Rectangle& newArea) noexcept { area = newArea; } /** Sets the size of the rotated object, as a proportion of the viewport's size. @see setViewport */ void setRadius (float newRadius) noexcept { radius = jmax (0.1f, newRadius); } /** Begins a mouse-drag operation. You must call this before any calls to mouseDrag(). The position that is supplied will be treated as being relative to the centre of the rectangle passed to setViewport(). */ template void mouseDown (const Point& mousePos) noexcept { lastMouse = mousePosToProportion (mousePos.toFloat()); } /** Continues a mouse-drag operation. After calling mouseDown() to begin a drag sequence, you can call this method to continue it. */ template void mouseDrag (const Point& mousePos) noexcept { const VectorType oldPos (projectOnSphere (lastMouse)); lastMouse = mousePosToProportion (mousePos.toFloat()); const VectorType newPos (projectOnSphere (lastMouse)); quaternion *= rotationFromMove (oldPos, newPos); } /** Returns the matrix that should be used to apply the current orientation. @see applyToOpenGLMatrix */ Matrix3D getRotationMatrix() const noexcept { return quaternion.getRotationMatrix(); } #if JUCE_USE_OPENGL_FIXED_FUNCTION /** Applies this rotation to the active OpenGL context's matrix. */ void applyToOpenGLMatrix() const noexcept { getRotationMatrix().applyToOpenGL(); } #endif private: typedef Quaternion QuaternionType; Rectangle area; float radius; QuaternionType quaternion; Point lastMouse; Point mousePosToProportion (const Point& mousePos) const noexcept { const int scale = (jmin (area.getWidth(), area.getHeight()) / 2); // You must call setViewport() to give this object a valid window size before // calling any of the mouse input methods! jassert (scale > 0); return Point ((mousePos.x - area.getCentreX()) / scale, (area.getCentreY() - mousePos.y) / scale); } VectorType projectOnSphere (const Point& pos) const noexcept { const GLfloat radiusSquared = radius * radius; const GLfloat xySquared = pos.x * pos.x + pos.y * pos.y; return VectorType (pos.x, pos.y, xySquared < radiusSquared * 0.5f ? std::sqrt (radiusSquared - xySquared) : (radiusSquared / (2.0f * std::sqrt (xySquared)))); } QuaternionType rotationFromMove (const VectorType& from, const VectorType& to) const noexcept { VectorType rotationAxis (to ^ from); if (rotationAxis.lengthIsBelowEpsilon()) rotationAxis = VectorType::xAxis(); const GLfloat d = jlimit (-1.0f, 1.0f, (from - to).length() / (2.0f * radius)); return QuaternionType::fromAngle (2.0f * std::asin (d), rotationAxis); } }; #endif // __JUCE_DRAGGABLE3DORIENTATION_JUCEHEADER__