555 lines
21 KiB
C++
Executable File
555 lines
21 KiB
C++
Executable File
/**********************************************************************
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*<
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FILE: render.h
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DESCRIPTION:
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CREATED BY: Dan Silva
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HISTORY:
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*> Copyright (c) 1994, All Rights Reserved.
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**********************************************************************/
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#ifndef __RENDER__H
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#define __RENDER__H
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// includes
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#include "sfx.h"
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#define FIELD_EVEN 0
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#define FIELD_ODD 1
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// Render Types RB: I didn't want to include render.h in MAXAPI.H...
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#ifndef _REND_TYPE_DEFINED
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#define _REND_TYPE_DEFINED
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enum RendType
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{
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RENDTYPE_NORMAL,
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RENDTYPE_REGION,
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RENDTYPE_BLOWUP,
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RENDTYPE_SELECT,
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RENDTYPE_REGIONCROP,
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// The following 2 types are to NOT be passed into plugin renderers. There purpose is for passing to
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// the function Interface::OpenCurRenderer, which converts them into RENDTYPE_REGION and RENDTYPE_REGIONCROP, resp.
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RENDTYPE_REGION_SEL, // do a region render using the bounding rectangle of the selection
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RENDTYPE_CROP_SEL // do a crop render using the bounding rectangle of the selection
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};
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#endif
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class DefaultLight
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{
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public:
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LightState ls;
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Matrix3 tm;
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};
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class ViewParams : public BaseInterfaceServer {
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public:
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Matrix3 prevAffineTM; // world space to camera space transform 2 ticks previous
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Matrix3 affineTM; // world space to camera space transform
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int projType; // PROJ_PERSPECTIVE or PROJ_PARALLEL
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float hither,yon;
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float distance; // to view plane
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// Parallel projection params
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float zoom; // Zoom factor
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// Perspective params
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float fov; // field of view
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float nearRange; // for fog effects
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float farRange; // for fog effects
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// Generic expansion function
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virtual INT_PTR Execute(int cmd, ULONG_PTR arg1=0, ULONG_PTR arg2=0, ULONG_PTR arg3=0) { return 0; }
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};
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// Common renderer parameters
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/*
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class Atmospheric;
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class IRenderElement;
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*/
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class RadiosityEffect;
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class ToneOperator;
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#ifdef DESIGN_VER
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// Even if rendering to another device (i.e., Printer) is supported in the renderer,
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// render to a preview window instead if it is supported. This goes in the extraFlags
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// field of RendParams.
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#define RENDER_REDIRECT_TO_WINDOW (1L << 1)
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#endif
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// This removes a fix made for R3 that cleaned up the edges of shadows where objects intersect-- DS 8/28/00
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// This goes in the extraFlags field of RendParams.
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#define RENDER_R25SHADOWS (1L << 2)
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// Tell the renderer to hide frozen objects
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// This goes in the extraFlags field of RendParams.
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#define RENDER_HIDE_FROZEN (1L << 3)
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// These parameters are passed to the renderer when the renderer is opend.
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class RendParams
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{
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private:
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IRenderElementMgr *mpIRenderElementMgr; // The render element manager, may be NULL -- declared in maxsdk/include/RenderElements.h
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public:
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enum RenderMode
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{
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RM_Default, // normal rendering mode
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RM_IReshade, // render is being used for interactive reshading
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};
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RendType rendType; // normal, region, blowup, selection
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BOOL isNetRender; // is this a render on a network slave?
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BOOL fieldRender;
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int fieldOrder; // 0->even, 1-> odd
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TimeValue frameDur; // duration of one frame
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BOOL colorCheck;
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int vidCorrectMethod; // 0->FLAG, 1->SCALE_LUMA 2->SCALE_SAT
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int ntscPAL; // 0 ->NTSC, 1 ->PAL
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BOOL superBlack; // impose superBlack minimum intensity?
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int sbThresh; // value used for superBlack
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BOOL rendHidden; // render hidden objects?
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BOOL force2Side; // force two-sided rendering?
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BOOL inMtlEdit; // rendering in the mtl editor?
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float mtlEditTile; // if in mtl editor, scale tiling by this value
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BOOL mtlEditAA; // if in mtl editor, antialias?
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BOOL multiThread; // for testing only
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BOOL useEnvironAlpha; // use alpha from the environment map.
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BOOL dontAntialiasBG; // Don't antialias against background (for video games)
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BOOL useDisplacement; // Apply displacment mapping
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bool useRadiosity; // Include radiosity in rendering
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bool computeRadiosity; // Compute radiosity before rendering
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Texmap *envMap; // The environment map, may be NULL
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Atmospheric *atmos; // The atmosphere effects, may be NULL.
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Effect *effect; // The postprocessing effects, may be NULL.
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RadiosityEffect* pRadiosity; // The radiosity effect
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ToneOperator* pToneOp; // The tone operator, may be NULL
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TimeValue firstFrame; // The first frame that will be rendered
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int scanBandHeight; // height of a scan band (default scanline renderer)
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ULONG extraFlags; // for expansion
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int width,height; // image width,height.
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BOOL filterBG; // filter background
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BOOL alphaOutOnAdditive;// produce alpha on additive transparency
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RendParams()
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{
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rendType = RENDTYPE_NORMAL;
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isNetRender = FALSE;
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fieldRender = FALSE;
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fieldOrder = 0;
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frameDur = 0;
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colorCheck = 0;
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vidCorrectMethod = 0;
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ntscPAL = 0;
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superBlack = 0;
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sbThresh = 0;
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rendHidden = 0;
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force2Side = 0;
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inMtlEdit = 0;
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mtlEditTile = 0;
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mtlEditAA = 0;
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multiThread = 0;
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useEnvironAlpha = 0;
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dontAntialiasBG = 0;
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useDisplacement = 0;
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useRadiosity = true;
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computeRadiosity = true;
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envMap = NULL;
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atmos = NULL;
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mpIRenderElementMgr = NULL;
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effect = NULL;
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pRadiosity = NULL;
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pToneOp = NULL;
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firstFrame = 0;
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scanBandHeight = 0;
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extraFlags = 0;
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width=height = 0;
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filterBG = 0;
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}
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RenderMode GetRenderMode() { return RM_Default; } // mjm - 06.08.00
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void SetRenderElementMgr(IRenderElementMgr *pIRenderElementMgr) { mpIRenderElementMgr = pIRenderElementMgr; } // mjm - 06.30.00
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IRenderElementMgr *GetRenderElementMgr() { return mpIRenderElementMgr; } // mjm - 06.30.00
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// Generic expansion function
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virtual INT_PTR Execute(int cmd, ULONG_PTR arg1=0, ULONG_PTR arg2=0, ULONG_PTR arg3=0) { return 0; }
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};
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// These are passed to the renderer on every frame
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class FrameRendParams : public BaseInterfaceServer {
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public:
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Color ambient;
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Color background;
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Color globalLightLevel;
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float frameDuration; // duration of one frame, in current frames
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float relSubFrameDuration; // relative fraction of frameDuration used by subframe.
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// boundaries of the region for render region or crop (device coords).
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int regxmin,regxmax;
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int regymin,regymax;
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// parameters for render blowup.
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Point2 blowupCenter;
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Point2 blowupFactor;
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FrameRendParams() { frameDuration = 1.0f; relSubFrameDuration = 1.0f; }
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// Generic expansion function
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virtual INT_PTR Execute(int cmd, ULONG_PTR arg1=0, ULONG_PTR arg2=0, ULONG_PTR arg3=0) { return 0; }
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};
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// Since this dialog is modless and non-interactive, as the user changes
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// parameters in the dialog, the renderer does not need to update it's
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// state. When the user is through, they may choose 'OK' or 'Cancel'.
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//
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// If the user OKs the dialog, AcceptParams() will be called, at which time the
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// renderer can read the parameter out of the UI and modify its state.
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//
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// If RejectParams() is called, typically the renderer will not have to do anything
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// since it has not yet modify its state, but if for some reason it has, it
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// should restore its state.
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class RendParamDlg {
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public:
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virtual void AcceptParams()=0;
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virtual void RejectParams() {}
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virtual void DeleteThis()=0;
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};
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// Flag bits for DoMaterialBrowseDlg()
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#define BROWSE_MATSONLY (1<<0)
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#define BROWSE_MAPSONLY (1<<1)
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#define BROWSE_INCNONE (1<<2) // Include 'None' as an option
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#define BROWSE_INSTANCEONLY (1<<3) // Only allow instances, no copy
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#define BROWSE_TO_MEDIT_SLOT (1<<4) // browsing to medit slot
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// passed to SetPickMode. This is a callback that gets called as
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// the user tries to pick objects in the scene.
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class RendPickProc
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{
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public:
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// Called when the user picks something.
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// return TRUE to end the pick mode.
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virtual BOOL Pick(INode *node)=0;
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// Return TRUE if this is an acceptable hit, FALSE otherwise.
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virtual BOOL Filter(INode *node)=0;
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// These are called as the mode is entered and exited
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virtual void EnterMode() {}
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virtual void ExitMode() {}
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// Provides two cursor, 1 when over a pickable object and 1 when not.
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virtual HCURSOR GetDefCursor() {return NULL;}
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virtual HCURSOR GetHitCursor() {return NULL;}
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// Return TRUE to allow the user to pick more than one thing.
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// In this case the Pick method may be called more than once.
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virtual BOOL AllowMultiSelect() {return FALSE;}
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};
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// This is the interface given to a renderer when it needs to display its parameters
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// It is also given to atmospheric effects to display thier parameters.
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class IRendParams : public InterfaceServer
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{
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public:
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// The current position of the frame slider
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virtual TimeValue GetTime()=0;
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// Register a callback object that will get called every time the
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// user changes the frame slider.
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virtual void RegisterTimeChangeCallback(TimeChangeCallback *tc)=0;
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virtual void UnRegisterTimeChangeCallback(TimeChangeCallback *tc)=0;
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// Brings up the material browse dialog allowing the user to select a material.
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// newMat will be set to TRUE if the material is new OR cloned.
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// Cancel will be set to TRUE if the user cancels the dialog.
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// The material returned will be NULL if the user selects 'None'
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virtual MtlBase *DoMaterialBrowseDlg(HWND hParent,DWORD flags,BOOL &newMat,BOOL &cancel)=0;
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// Adds rollup pages to the render params dialog. Returns the window
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// handle of the dialog that makes up the page.
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virtual HWND AddRollupPage(HINSTANCE hInst, TCHAR *dlgTemplate,
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DLGPROC dlgProc, TCHAR *title, LPARAM param=0, DWORD flags=0, int category = ROLLUP_CAT_STANDARD)=0;
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virtual HWND AddRollupPage(HINSTANCE hInst, DLGTEMPLATE *dlgTemplate,
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DLGPROC dlgProc, TCHAR *title, LPARAM param=0, DWORD flags=0, int category = ROLLUP_CAT_STANDARD)=0;
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// Removes a rollup page and destroys it.
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virtual void DeleteRollupPage(HWND hRollup)=0;
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// When the user mouses down in dead area, the plug-in should pass
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// mouse messages to this function which will pass them on to the rollup.
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virtual void RollupMouseMessage(HWND hDlg, UINT message, WPARAM wParam, LPARAM lParam)=0;
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// This will set the command mode to a standard pick mode.
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// The callback implements hit testing and a method that is
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// called when the user actually picks an item.
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virtual void SetPickMode(RendPickProc *proc)=0;
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// If a plug-in is finished editing its parameters it should not
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// leave the user in a pick mode. This will flush out any pick modes
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// in the command stack.
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virtual void EndPickMode()=0;
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// When a plugin has a Texmap, clicking on the button
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// associated with that map should cause this routine
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// to be called.
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virtual void PutMtlToMtlEditor(MtlBase *mb)=0;
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// This is for use only by the scanline renderer.
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virtual float GetMaxPixelSize() = 0;
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virtual INT_PTR Execute(int cmd, ULONG_PTR arg1=0, ULONG_PTR arg2=0, ULONG_PTR arg3=0) { return 0; }
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// JBW 12/1/98: get interface to rollup window interface
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virtual IRollupWindow* GetIRollup()=0;
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};
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//----------------------------------------------------------------
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// Render Instance flags
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#define INST_HIDE (1<<0) // instance is hidden
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#define INST_CLIP (1<<1) // clip instance: ray tracers should skip it
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#define INST_BLUR (1<<2) // secondary motion blur instance
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#define INST_RCV_SHADOWS (1<<3) // instance receives shadows
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#define INST_TM_NEGPARITY (1<<4) // mesh is inside-out: need to reverse normals on-the-fly
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#define INST_MTL_BYFACE (1<<5) //instance's object supports mtl-by-face interface ( chkmtlapi.h)
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class RenderInstance
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{
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public:
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ULONG flags;
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Mtl *mtl; // from inode, for convenience
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float wireSize; // Mtl wireframe size
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Mesh *mesh; // result of GetRenderMesh call
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float vis; // Object visibility
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int nodeID; // unique within scene during render- corresponds to ShadeContext::NodeID()
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int objMotBlurFrame; // Object motion blur sub frame (= NO_MOTBLUR for non-blurred objects)
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int objBlurID; // Blur instances for an object share a objBlurID value.
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Matrix3 objToWorld; // transforms object coords to world coords
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Matrix3 objToCam; // transforms object coords to cam coords
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Matrix3 normalObjToCam; // for transforming surface normals from obj to camera space
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Matrix3 camToObj; // transforms camera coords to object coords
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Box3 obBox; // Object space extents
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Point3 center; // Bounding sphere center (camera coords)
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float radsq; // square of bounding sphere's radius
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void SetFlag(ULONG f, BOOL b) { if (b) flags |= f; else flags &= ~f; }
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void SetFlag(ULONG f) { flags |= f; }
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void ClearFlag(ULONG f) { flags &= ~f; }
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BOOL TestFlag(ULONG f) { return flags&f?1:0; }
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BOOL Hidden() { return TestFlag(INST_HIDE); }
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BOOL IsClip() { return TestFlag(INST_CLIP); }
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virtual RenderInstance *Next()=0; // next in list
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virtual Interval MeshValidity()=0;
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virtual int NumLights()=0;
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virtual LightDesc *Light(int n)=0;
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virtual BOOL CastsShadowsFrom(const ObjLightDesc& lt)=0; // is lt shadowed by this instance?
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virtual INode *GetINode()=0; // get INode for instance
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virtual Object *GetEvalObject()=0; // evaluated object for instance
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virtual ULONG MtlRequirements(int mtlNum, int faceNum)=0; // node's mtl requirements. DS 3/31/00: added faceNum to support mtl-per-face objects
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virtual Point3 GetFaceNormal(int faceNum)=0; // geometric normal in camera coords
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virtual Point3 GetFaceVertNormal(int faceNum, int vertNum)=0; // camera coords
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virtual void GetFaceVertNormals(int faceNum, Point3 n[3])=0; // camera coords
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virtual Point3 GetCamVert(int vertnum)=0; // coord for vertex in camera coords
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virtual void GetObjVerts(int fnum, Point3 obp[3])=0; // vertices of face in object coords
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virtual void GetCamVerts(int fnum, Point3 cp[3])=0; // vertices of face in camera(view) coords
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// Generic expansion function
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virtual INT_PTR Execute(int cmd, ULONG_PTR arg1=0, ULONG_PTR arg2=0, ULONG_PTR arg3=0) { return 0; }
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// Material-by-face access
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// Objects can provide a material as a function of face number via the IChkMtlAPI interface (chkmtlapi.h).
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// This method will return RenderInstance::mtl if flag INST_MTL_BYFACE is not set. If INST_MTL_BYFACE is
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// set it will return the proper by-face mtl. // DS 4/3/00
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virtual Mtl *GetMtl(int faceNum)=0;
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};
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//----------------------------------------------------------------
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// Values returned from Progress()
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#define RENDPROG_CONTINUE 1
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#define RENDPROG_ABORT 0
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// Values passed to SetCurField()
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#define FIELD_FIRST 0
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#define FIELD_SECOND 1
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#define FIELD_NONE -1
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// A callback passed in to the renderer
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class RendProgressCallback
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{
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public:
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virtual void SetTitle(const TCHAR *title)=0;
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virtual int Progress(int done, int total)=0;
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virtual void SetCurField(int which) {}
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virtual void SetSceneStats(int nlights, int nrayTraced, int nshadowed, int nobj, int nfaces) {}
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};
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// RB: my version of a renderer...
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class Renderer : public ReferenceTarget
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{
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public:
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// Reference/Animatable methods.
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// In addition, the renderer would need to implement ClassID() and DeleteThis()
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// Since a renderer will probably not itself have references, this implementation should do
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RefResult NotifyRefChanged(Interval changeInt, RefTargetHandle hTarget,
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PartID& partID, RefMessage message) {return REF_SUCCEED;}
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SClass_ID SuperClassID() {return RENDERER_CLASS_ID;}
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virtual int Open(
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INode *scene, // root node of scene to render
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INode *vnode, // view node (camera or light), or NULL
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ViewParams *viewPar,// view params for rendering ortho or user viewport
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RendParams &rp, // common renderer parameters
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HWND hwnd, // owner window, for messages
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DefaultLight* defaultLights=NULL, // Array of default lights if none in scene
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int numDefLights=0 // number of lights in defaultLights array
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)=0;
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//
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// Render a frame -- will use camera or view from open
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//
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virtual int Render(
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TimeValue t, // frame to render.
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Bitmap *tobm, // optional target bitmap
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FrameRendParams &frp, // Time dependent parameters
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HWND hwnd, // owner window
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RendProgressCallback *prog=NULL,
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ViewParams *viewPar=NULL // override viewPar given on Open.
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)=0;
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// apply render effects at the requested time value - should be called between Renderer::Open() and Renderer::Close()
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// this can be used during a multi-pass rendering, in order to apply the render effects to the final, blended bitmap.
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// 'updateDisplay' indicates that Bitmap's display should be refreshed by the renderer
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// return value indicats if effects were successfully applied.
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virtual bool ApplyRenderEffects(TimeValue t, Bitmap *pBitmap, bool updateDisplay=true) { return false; }
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virtual void Close( HWND hwnd )=0;
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// Adds rollup page(s) to renderer configure dialog
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// If prog==TRUE then the rollup page should just display the parameters
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// so the user has them for reference while rendering, they should not be editable.
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virtual RendParamDlg *CreateParamDialog(IRendParams *ir,BOOL prog=FALSE)=0;
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virtual void ResetParams()=0;
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virtual int GetAAFilterSupport(){ return 0; } // point sample, no reconstruction filter
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};
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class ShadowBuffer;
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class ShadowQuadTree;
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class RendContext
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{
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public:
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virtual int Progress(int done, int total) const { return 1; }
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virtual Color GlobalLightLevel() const = 0;
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};
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struct SubRendParams : public BaseInterfaceServer
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{
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RendType rendType;
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BOOL fieldRender;
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BOOL evenLines; // when field rendering
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BOOL doingMirror;
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BOOL doEnvMap; // do environment maps?
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int devWidth, devHeight;
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float devAspect;
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int xorg, yorg; // location on screen of upper left corner of output bitmap
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int xmin,xmax,ymin,ymax; // area of screen being rendered
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// parameters for render blowup.
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Point2 blowupCenter;
|
|
Point2 blowupFactor;
|
|
virtual INT_PTR Execute(int cmd, ULONG_PTR arg1=0, ULONG_PTR arg2=0, ULONG_PTR arg3=0) { return 0; }
|
|
};
|
|
|
|
// flags passed to RenderMapsContext::Render()
|
|
#define RENDMAP_SHOW_NODE 1 // *Dont* exclude this node from the render.
|
|
|
|
|
|
// A pointer to this data structure is passed to MtlBase::BuildMaps();
|
|
// when rendering reflection and refraction maps.
|
|
class RenderMapsContext
|
|
{
|
|
public:
|
|
virtual INode *GetNode()=0;
|
|
virtual int NodeRenderID()=0;
|
|
virtual void GetCurrentViewParams(ViewParams &vp)=0;
|
|
virtual void GetSubRendParams(SubRendParams &srp)=0;
|
|
virtual int SubMtlIndex()=0;
|
|
virtual void SetSubMtlIndex(int mindex)=0;
|
|
virtual void FindMtlPlane(float pl[4])=0;
|
|
virtual void FindMtlScreenBox(Rect &sbox, Matrix3* viewTM=NULL, int mtlIndex=-1)=0;
|
|
virtual Box3 CameraSpaceBoundingBox()=0;
|
|
virtual Box3 ObjectSpaceBoundingBox()=0;
|
|
virtual Matrix3 ObjectToWorldTM()=0;
|
|
virtual RenderGlobalContext *GetGlobalContext() { return NULL; }
|
|
// ClipPlanes is a pointer to an array of Point4's, each of which
|
|
// represents a clip plane. nClip Planes is the number of planes (up to 6);
|
|
// The planes are in View space.
|
|
virtual int Render(Bitmap *bm, ViewParams &vp, SubRendParams &srp, Point4 *clipPlanes=NULL, int nClipPlanes=0)=0;
|
|
virtual INT_PTR Execute(int cmd, ULONG_PTR arg1=0, ULONG_PTR arg2=0, ULONG_PTR arg3=0) { return 0; }
|
|
};
|
|
|
|
|
|
#define DONT_CLIP 1.0E38f
|
|
|
|
|
|
//--------------------------------------------------------------------------
|
|
// Interface into the default scanline renderer, Class_ID(SREND_CLASS_ID,0)
|
|
//---------------------------------------------------------------------------
|
|
class FilterKernel;
|
|
class IScanRenderer: public Renderer {
|
|
public:
|
|
virtual void SetAntialias(BOOL b) = 0;
|
|
virtual BOOL GetAntialias() = 0;
|
|
virtual void SetFilter(BOOL b) = 0;
|
|
virtual BOOL GetFilter() = 0;
|
|
virtual void SetShadows(BOOL b) = 0;
|
|
virtual BOOL GetShadows() = 0;
|
|
virtual void SetMapping(BOOL b) = 0;
|
|
virtual BOOL GetMapping() = 0;
|
|
virtual void SetForceWire(BOOL b) = 0;
|
|
virtual BOOL GetForceWire() = 0;
|
|
virtual void SetAutoReflect(BOOL b)=0;
|
|
virtual BOOL GetAutoReflect()=0;
|
|
virtual void SetObjMotBlur(BOOL b) = 0;
|
|
virtual BOOL GetObjMotBlur() = 0;
|
|
virtual void SetVelMotBlur(BOOL b) = 0;
|
|
virtual BOOL GetVelMotBlur() = 0;
|
|
|
|
// Obsolete, use setfiltersz. pixel sz = 1.0 for all filtering
|
|
virtual void SetPixelSize(float size) = 0;
|
|
|
|
virtual void SetAutoReflLevels(int n) = 0;
|
|
virtual void SetWireThickness(float t) = 0;
|
|
virtual void SetObjBlurDuration(float dur) = 0;
|
|
virtual void SetVelBlurDuration(float dur) = 0;
|
|
virtual void SetNBlurFrames(int n) = 0;
|
|
virtual void SetNBlurSamples(int n) = 0;
|
|
virtual void SetMaxRayDepth(int n) = 0;
|
|
virtual int GetMaxRayDepth() { return 7; }
|
|
|
|
virtual void SetAntiAliasFilter( FilterKernel * pKernel ) = 0;
|
|
virtual FilterKernel * GetAntiAliasFilter() = 0;
|
|
virtual void SetAntiAliasFilterSz(float size) = 0;
|
|
virtual float GetAntiAliasFilterSz() = 0;
|
|
|
|
virtual void SetPixelSamplerEnable( BOOL on ) = 0;
|
|
virtual BOOL GetPixelSamplerEnable() = 0;
|
|
};
|
|
|
|
|
|
#endif
|
|
|