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203 lines
6.8 KiB
203 lines
6.8 KiB
/*==LICENSE==* |
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CyanWorlds.com Engine - MMOG client, server and tools |
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Copyright (C) 2011 Cyan Worlds, Inc. |
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This program is free software: you can redistribute it and/or modify |
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it under the terms of the GNU General Public License as published by |
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the Free Software Foundation, either version 3 of the License, or |
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(at your option) any later version. |
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This program is distributed in the hope that it will be useful, |
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but WITHOUT ANY WARRANTY; without even the implied warranty of |
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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GNU General Public License for more details. |
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You should have received a copy of the GNU General Public License |
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along with this program. If not, see <http://www.gnu.org/licenses/>. |
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You can contact Cyan Worlds, Inc. by email legal@cyan.com |
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or by snail mail at: |
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Cyan Worlds, Inc. |
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14617 N Newport Hwy |
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Mead, WA 99021 |
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*==LICENSE==*/ |
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#ifndef pyWaveSet_h |
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#define pyWaveSet_h |
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#include "pyKey.h" |
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#include "pyGeometry3.h" |
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#include "pyColor.h" |
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#include <python.h> |
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#include "pyGlueHelpers.h" |
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////////////////////////////////////////////////////////////////////// |
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// |
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// pyWaveSet - a wrapper class to provide interface to wave sets |
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// |
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////////////////////////////////////////////////////////////////////// |
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/* |
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// Getters and Setters for Python twiddling |
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// |
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// First a way to set new values. The secs parameter says how long to take |
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// blending to the new value from the current value. |
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// |
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// Skipping the shore parameters, because they are never used. |
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// Now a way to get current values. See the accompanying Setter for notes on |
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// what the parameter means. |
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// |
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*/ |
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class pyWaveSet |
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{ |
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private: |
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plKey fWaterKey; |
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protected: |
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pyWaveSet(): fWaterKey(nil) {} // for python glue only, do NOT call |
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pyWaveSet(plKey key); |
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pyWaveSet(pyKey& key); |
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public: |
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// required functions for PyObject interoperability |
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PYTHON_CLASS_NEW_FRIEND(ptWaveSet); |
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static PyObject *New(plKey key); |
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static PyObject *New(pyKey& key); |
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PYTHON_CLASS_CHECK_DEFINITION; // returns true if the PyObject is a pyWaveSet object |
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PYTHON_CLASS_CONVERT_FROM_DEFINITION(pyWaveSet); // converts a PyObject to a pyWaveSet (throws error if not correct type) |
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static void AddPlasmaClasses(PyObject *m); |
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void setKey(pyKey& key) {fWaterKey = key.getKey();} // for python glue only, do NOT call |
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// ============================================================================== |
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// Set functions |
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// ============================================================================== |
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// Geometric wave parameters. These are all safe to twiddle at any time or speed. |
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// The new settings take effect as new waves are spawned. |
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void SetGeoMaxLength(hsScalar s, hsScalar secs=0); |
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void SetGeoMinLength(hsScalar s, hsScalar secs=0); |
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void SetGeoAmpOverLen(hsScalar s, hsScalar secs=0); |
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void SetGeoChop(hsScalar s, hsScalar secs=0); |
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void SetGeoAngleDev(hsScalar s, hsScalar secs=0); |
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// Texture wave parameters. Safe to twiddle any time or speed. |
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// The new settings take effect as new waves are spawned. |
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void SetTexMaxLength(hsScalar s, hsScalar secs=0); |
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void SetTexMinLength(hsScalar s, hsScalar secs=0); |
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void SetTexAmpOverLen(hsScalar s, hsScalar secs=0); |
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void SetTexChop(hsScalar s, hsScalar secs=0); |
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void SetTexAngleDev(hsScalar s, hsScalar secs=0); |
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// The size in feet of one tile of the ripple texture. If you change this (I don't |
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// recommend it), you need to change it very slowly or it will look very stupid. |
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void SetRippleScale(hsScalar s, hsScalar secs=0); |
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// The direction the wind is blowing (waves will be more or less perpindicular to wind dir). |
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// Change somewhat slowly, like over 30 seconds. |
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void SetWindDir(const pyVector3& s, hsScalar secs=0); |
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// Change these gently, effect is immediate. |
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void SetSpecularNoise(hsScalar s, hsScalar secs=0); |
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void SetSpecularStart(hsScalar s, hsScalar secs=0); |
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void SetSpecularEnd(hsScalar s, hsScalar secs=0); |
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// Water Height is overriden if the ref object is animated. |
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void SetWaterHeight(hsScalar s, hsScalar secs=0); |
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// Water Offset and DepthFalloff are complicated, and not immediately interesting to animate. |
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void SetWaterOffset(const pyVector3& s, hsScalar secs=0); |
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void SetOpacOffset(hsScalar s, hsScalar secs=0); |
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void SetReflOffset(hsScalar s, hsScalar secs=0); |
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void SetWaveOffset(hsScalar s, hsScalar secs=0); |
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void SetDepthFalloff(const pyVector3& s, hsScalar secs=0); |
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void SetOpacFalloff(hsScalar s, hsScalar secs=0); |
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void SetReflFalloff(hsScalar s, hsScalar secs=0); |
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void SetWaveFalloff(hsScalar s, hsScalar secs=0); |
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// Max and Min Atten aren't very interesting, and will probably go away. |
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void SetMaxAtten(const pyVector3& s, hsScalar secs=0); |
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void SetMinAtten(const pyVector3& s, hsScalar secs=0); |
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// Water colors, adjust slowly, effect is immediate. |
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void SetWaterTint(pyColor& s, hsScalar secs=0); |
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void SetWaterOpacity(hsScalar s, hsScalar secs=0); |
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void SetSpecularTint(pyColor& s, hsScalar secs=0); |
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void SetSpecularMute(hsScalar s, hsScalar secs=0); |
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// The environment map is essentially projected onto a sphere. Moving the center of |
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// the sphere north will move the reflections north, changing the radius of the |
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// sphere effects parallax in the obvious way. |
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void SetEnvCenter(const pyPoint3& s, hsScalar secs=0); |
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void SetEnvRadius(hsScalar s, hsScalar secs=0); |
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// ============================================================================== |
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// Get functions |
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// ============================================================================== |
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hsScalar GetGeoMaxLength() const; |
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hsScalar GetGeoMinLength() const; |
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hsScalar GetGeoAmpOverLen() const; |
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hsScalar GetGeoChop() const; |
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hsScalar GetGeoAngleDev() const; |
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hsScalar GetTexMaxLength() const; |
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hsScalar GetTexMinLength() const; |
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hsScalar GetTexAmpOverLen() const; |
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hsScalar GetTexChop() const; |
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hsScalar GetTexAngleDev() const; |
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hsScalar GetRippleScale() const; |
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PyObject* GetWindDir() const; // returns pyVector3 |
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hsScalar GetSpecularNoise() const; |
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hsScalar GetSpecularStart() const; |
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hsScalar GetSpecularEnd() const; |
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hsScalar GetWaterHeight() const; |
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PyObject* GetWaterOffset() const; // returns pyVector3 |
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hsScalar GetOpacOffset() const; |
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hsScalar GetReflOffset() const; |
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hsScalar GetWaveOffset() const; |
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PyObject* GetDepthFalloff() const; // returns pyVector3 |
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hsScalar GetOpacFalloff() const; |
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hsScalar GetReflFalloff() const; |
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hsScalar GetWaveFalloff() const; |
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PyObject* GetMaxAtten() const; // returns pyVector3 |
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PyObject* GetMinAtten() const; // returns pyVector3 |
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PyObject* GetWaterTint() const; // returns pyColor |
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hsScalar GetWaterOpacity() const; |
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PyObject* GetSpecularTint() const; // returns pyColor |
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hsScalar GetSpecularMute() const; |
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PyObject* GetEnvCenter() const; // returns pyPoint3 |
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hsScalar GetEnvRadius() const; |
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}; |
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#endif // pyWaveSet_h
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