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448 lines
No EOL
16 KiB
C++
448 lines
No EOL
16 KiB
C++
/*
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LICENSE
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-------
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Copyright 2005-2013 Nullsoft, Inc.
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All rights reserved.
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Redistribution and use in source and binary forms, with or without modification,
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are permitted provided that the following conditions are met:
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* Redistributions of source code must retain the above copyright notice,
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this list of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright notice,
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this list of conditions and the following disclaimer in the documentation
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and/or other materials provided with the distribution.
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* Neither the name of Nullsoft nor the names of its contributors may be used to
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endorse or promote products derived from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
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IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
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FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
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CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
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IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
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OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#ifndef _MILKDROP_STATE_
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#define _MILKDROP_STATE_ 1
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#include <memory.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include "gstring.h"
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#include "texmgr.h"
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#include <d3dx9math.h> // for D3DXVECTOR3
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//#include "evallib/eval.h"
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#include "ns-eel2/ns-eel.h"
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#include "md_defines.h"
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// flags for CState::RecompileExpressions():
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#define RECOMPILE_PRESET_CODE 1
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#define RECOMPILE_WAVE_CODE 2
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#define RECOMPILE_SHAPE_CODE 4
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#define NUM_Q_VAR 32
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#define NUM_T_VAR 8
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#define MAX_BIGSTRING_LEN 32768
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class CBlendableFloat
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{
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public:
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CBlendableFloat();
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~CBlendableFloat();
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float operator = (float f) {
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val = f;
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m_bBlending = false;
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return val;
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};
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float operator *= (float f) {
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val *= f;
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m_bBlending = false;
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return val;
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};
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float operator /= (float f) {
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val /= f;
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m_bBlending = false;
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return val;
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};
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float operator -= (float f) {
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val -= f;
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m_bBlending = false;
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return val;
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};
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float operator += (float f) {
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val += f;
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m_bBlending = false;
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return val;
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};
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float eval(float fTime); // call this from animation code. if fTime < 0, it will return unblended 'val'.
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void StartBlendFrom(CBlendableFloat *f_from, float fAnimTime, float fDuration);
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protected:
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float val;
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bool m_bBlending;
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float m_fBlendStartTime;
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float m_fBlendDuration;
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float m_fBlendFrom;
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};
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class CShape
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{
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public:
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int Import(FILE* f, const wchar_t* szFile, int i);
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int Export(FILE* f, const wchar_t* szFile, int i);
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int enabled;
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int sides;
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int additive;
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int thickOutline;
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int textured;
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int instances;
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float x,y,rad,ang;
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float r,g,b,a;
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float r2,g2,b2,a2;
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float border_r,border_g,border_b,border_a;
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float tex_ang, tex_zoom;
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char m_szInit[MAX_BIGSTRING_LEN]; // note: only executed once -> don't need to save codehandle
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char m_szPerFrame[MAX_BIGSTRING_LEN];
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//char m_szPerPoint[MAX_BIGSTRING_LEN];
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NSEEL_CODEHANDLE m_pf_codehandle;
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//int m_pp_codehandle;
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// for per-frame expression evaluation:
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NSEEL_VMCTX m_pf_eel;
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double *var_pf_time, *var_pf_fps;
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double *var_pf_frame;
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double *var_pf_progress;
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//double *var_pf_q1, *var_pf_q2, *var_pf_q3, *var_pf_q4, *var_pf_q5, *var_pf_q6, *var_pf_q7, *var_pf_q8;
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//double *var_pf_t1, *var_pf_t2, *var_pf_t3, *var_pf_t4, *var_pf_t5, *var_pf_t6, *var_pf_t7, *var_pf_t8;
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double* var_pf_q[NUM_Q_VAR];
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double* var_pf_t[NUM_T_VAR];
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double *var_pf_bass, *var_pf_mid, *var_pf_treb, *var_pf_bass_att, *var_pf_mid_att, *var_pf_treb_att;
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double *var_pf_r, *var_pf_g, *var_pf_b, *var_pf_a;
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double *var_pf_r2, *var_pf_g2, *var_pf_b2, *var_pf_a2;
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double *var_pf_border_r, *var_pf_border_g, *var_pf_border_b, *var_pf_border_a;
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double *var_pf_x, *var_pf_y, *var_pf_rad, *var_pf_ang;
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double *var_pf_sides, *var_pf_textured, *var_pf_additive, *var_pf_thick, *var_pf_instances, *var_pf_instance;
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double *var_pf_tex_zoom, *var_pf_tex_ang;
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// for per-point expression evaluation:
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/*
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NSEEL_VMCTX m_pp_eel;
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double *var_pp_time, *var_pp_fps;
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double *var_pp_frame;
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double *var_pp_progress;
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double *var_pp_q1, *var_pp_q2, *var_pp_q3, *var_pp_q4, *var_pp_q5, *var_pp_q6, *var_pp_q7, *var_pp_q8;
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double *var_pp_t1, *var_pp_t2, *var_pp_t3, *var_pp_t4, *var_pp_t5, *var_pp_t6, *var_pp_t7, *var_pp_t8;
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double *var_pp_bass, *var_pp_mid, *var_pp_treb, *var_pp_bass_att, *var_pp_mid_att, *var_pp_treb_att;
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double *var_pp_r, *var_pp_g, *var_pp_b, *var_pp_a;
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double *var_pp_r2, *var_pp_g2, *var_pp_b2, *var_pp_a2;
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double *var_pp_border_r, *var_pp_border_g, *var_pp_border_b, *var_pp_border_a;
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double *var_pp_x, *var_pp_y, *var_pp_rad, *var_pp_ang, *var_pp_sides;
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*/
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double t_values_after_init_code[NUM_T_VAR];
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};
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class CWave
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{
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public:
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int Import(FILE* f, const wchar_t *szFile, int i);
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int Export(FILE* f, const wchar_t* szFile, int i);
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int enabled;
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int samples;
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int sep;
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float scaling;
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float smoothing;
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float x,y,r,g,b,a;
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int bSpectrum;
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int bUseDots;
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int bDrawThick;
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int bAdditive;
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char m_szInit[MAX_BIGSTRING_LEN]; // note: only executed once -> don't need to save codehandle
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char m_szPerFrame[MAX_BIGSTRING_LEN];
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char m_szPerPoint[MAX_BIGSTRING_LEN];
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NSEEL_CODEHANDLE m_pf_codehandle;
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NSEEL_CODEHANDLE m_pp_codehandle;
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// for per-frame expression evaluation:
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NSEEL_VMCTX m_pf_eel;
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double *var_pf_time, *var_pf_fps;
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double *var_pf_frame;
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double *var_pf_progress;
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//double *var_pf_q1, *var_pf_q2, *var_pf_q3, *var_pf_q4, *var_pf_q5, *var_pf_q6, *var_pf_q7, *var_pf_q8;
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//double *var_pf_t1, *var_pf_t2, *var_pf_t3, *var_pf_t4, *var_pf_t5, *var_pf_t6, *var_pf_t7, *var_pf_t8;
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double* var_pf_q[NUM_Q_VAR];
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double* var_pf_t[NUM_T_VAR];
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double *var_pf_bass, *var_pf_mid, *var_pf_treb, *var_pf_bass_att, *var_pf_mid_att, *var_pf_treb_att;
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double *var_pf_r, *var_pf_g, *var_pf_b, *var_pf_a;
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double *var_pf_samples;
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// for per-point expression evaluation:
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NSEEL_VMCTX m_pp_eel;
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double *var_pp_time, *var_pp_fps;
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double *var_pp_frame;
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double *var_pp_progress;
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//double *var_pp_q1, *var_pp_q2, *var_pp_q3, *var_pp_q4, *var_pp_q5, *var_pp_q6, *var_pp_q7, *var_pp_q8;
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//double *var_pp_t1, *var_pp_t2, *var_pp_t3, *var_pp_t4, *var_pp_t5, *var_pp_t6, *var_pp_t7, *var_pp_t8;
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double* var_pp_q[NUM_Q_VAR];
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double* var_pp_t[NUM_T_VAR];
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double *var_pp_bass, *var_pp_mid, *var_pp_treb, *var_pp_bass_att, *var_pp_mid_att, *var_pp_treb_att;
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double *var_pp_sample, *var_pp_value1, *var_pp_value2;
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double *var_pp_x, *var_pp_y, *var_pp_r, *var_pp_g, *var_pp_b, *var_pp_a;
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double t_values_after_init_code[NUM_T_VAR];
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};
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typedef struct
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{
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int type;
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int in_var;
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int out_var;
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float constant;
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float min;
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float max;
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float in_scale;
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float amp; // for sine functions
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float freq; // for sine functions
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float freq2; // for sine functions
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float phase; // for sine functions
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float phase2; // for sine functions
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} td_modifier;
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//#define MAX_EVALS 8
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#define INVALID_PRESET_DESC L"<no description>" // this should contain invalid filename chars, so there is never a conflict...
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#define STATE_GENERAL 1 // and postproc (old presets) or blur, etc. (new presets)
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#define STATE_MOTION 2 // and equations
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#define STATE_WAVE 4 // waves, shapes, motion vectors
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#define STATE_WARP 8
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#define STATE_COMP 16
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#define STATE_ALL (32-1)
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#define CUR_MILKDROP_PRESET_VERSION 201
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// 200: milkdrop 2
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// 201: instead of just 1 variable for shader version, it tracks 2 (comp and warp) separately.
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class CState
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{
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public:
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CState();
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~CState();
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void Default(DWORD ApplyFlags=STATE_ALL);
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void Randomize(int nMode);
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void StartBlendFrom(CState *s_from, float fAnimTime, float fTimespan);
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bool Import(const wchar_t *szIniFile, float fTime, CState* pOldState, DWORD ApplyFlags=STATE_ALL);
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bool Export(const wchar_t *szIniFile);
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void RecompileExpressions(int flags=0xFFFFFFFF, int bReInit=1);
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void GenDefaultWarpShader();
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void GenDefaultCompShader();
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wchar_t m_szDesc[512]; // this is just the filename, without a path or extension.
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//char m_szSection[256];
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int m_nMinPSVersion; // the min of the warp & comp values...
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int m_nMaxPSVersion; // the max of the warp & comp values...
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int m_nWarpPSVersion; // 0 = milkdrop 1 era (no PS), 2 = ps_2_0, 3 = ps_3_0
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int m_nCompPSVersion; // 0 = milkdrop 1 era (no PS), 2 = ps_2_0, 3 = ps_3_0
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float m_fRating; // 0..5
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// post-processing:
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CBlendableFloat m_fGammaAdj; // +0 -> +1.0 (double), +2.0 (triple)...
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CBlendableFloat m_fVideoEchoZoom;
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CBlendableFloat m_fVideoEchoAlpha;
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float m_fVideoEchoAlphaOld;
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int m_nVideoEchoOrientation;
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int m_nVideoEchoOrientationOld;
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// fps-dependant:
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CBlendableFloat m_fDecay; // 1.0 = none, 0.95 = heavy decay
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// other:
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int m_nWaveMode;
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int m_nOldWaveMode;
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bool m_bAdditiveWaves;
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CBlendableFloat m_fWaveAlpha;
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CBlendableFloat m_fWaveScale;
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CBlendableFloat m_fWaveSmoothing;
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bool m_bWaveDots;
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bool m_bWaveThick;
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CBlendableFloat m_fWaveParam; // -1..1; 0 is normal
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bool m_bModWaveAlphaByVolume;
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CBlendableFloat m_fModWaveAlphaStart; // when relative volume hits this level, alpha -> 0
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CBlendableFloat m_fModWaveAlphaEnd; // when relative volume hits this level, alpha -> 1
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float m_fWarpAnimSpeed; // 1.0 = normal, 2.0 = double, 0.5 = half, etc.
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CBlendableFloat m_fWarpScale;
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CBlendableFloat m_fZoomExponent;
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CBlendableFloat m_fShader; // 0 = no color shader, 1 = full color shader
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bool m_bMaximizeWaveColor;
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bool m_bTexWrap;
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bool m_bDarkenCenter;
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bool m_bRedBlueStereo;
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bool m_bBrighten;
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bool m_bDarken;
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bool m_bSolarize;
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bool m_bInvert;
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/*
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bool m_bPlates;
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int m_nPlates;
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CBlendableFloat m_fPlateAlpha; // 0 = off, 0.1 = barely visible, 1.0 = solid
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CBlendableFloat m_fPlateR;
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CBlendableFloat m_fPlateG;
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CBlendableFloat m_fPlateB;
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CBlendableFloat m_fPlateWidth; // 1.0=normal, 2.0=double, etc.
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CBlendableFloat m_fPlateLength; // 1.0=normal, 2.0=double, etc.
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float m_fPlateSpeed; // 1.0=normal, 2.0=double, etc.
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bool m_bPlatesAdditive;
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*/
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// map controls:
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CBlendableFloat m_fZoom;
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CBlendableFloat m_fRot;
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CBlendableFloat m_fRotCX;
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CBlendableFloat m_fRotCY;
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CBlendableFloat m_fXPush;
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CBlendableFloat m_fYPush;
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CBlendableFloat m_fWarpAmount;
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CBlendableFloat m_fStretchX;
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CBlendableFloat m_fStretchY;
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CBlendableFloat m_fWaveR;
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CBlendableFloat m_fWaveG;
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CBlendableFloat m_fWaveB;
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CBlendableFloat m_fWaveX;
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CBlendableFloat m_fWaveY;
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CBlendableFloat m_fOuterBorderSize;
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CBlendableFloat m_fOuterBorderR;
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CBlendableFloat m_fOuterBorderG;
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CBlendableFloat m_fOuterBorderB;
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CBlendableFloat m_fOuterBorderA;
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CBlendableFloat m_fInnerBorderSize;
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CBlendableFloat m_fInnerBorderR;
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CBlendableFloat m_fInnerBorderG;
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CBlendableFloat m_fInnerBorderB;
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CBlendableFloat m_fInnerBorderA;
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CBlendableFloat m_fMvX;
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CBlendableFloat m_fMvY;
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CBlendableFloat m_fMvDX;
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CBlendableFloat m_fMvDY;
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CBlendableFloat m_fMvL;
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CBlendableFloat m_fMvR;
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CBlendableFloat m_fMvG;
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CBlendableFloat m_fMvB;
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CBlendableFloat m_fMvA;
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CBlendableFloat m_fBlur1Min;
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CBlendableFloat m_fBlur2Min;
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CBlendableFloat m_fBlur3Min;
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CBlendableFloat m_fBlur1Max;
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CBlendableFloat m_fBlur2Max;
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CBlendableFloat m_fBlur3Max;
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CBlendableFloat m_fBlur1EdgeDarken;
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CShape m_shape[MAX_CUSTOM_SHAPES];
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CWave m_wave[MAX_CUSTOM_WAVES];
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// some random stuff for driving shaders:
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void RandomizePresetVars();
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D3DXVECTOR4 m_rand_preset; // 4 random floats (0..1); randomized @ preset load; fed to pixel shaders. --FIXME (blending)
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D3DXVECTOR3 m_xlate[20];
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D3DXVECTOR3 m_rot_base[20];
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D3DXVECTOR3 m_rot_speed[20];
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//COscillator m_waveR;
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//COscillator m_waveG;
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//COscillator m_waveB;
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//COscillator m_wavePosX; // 0 = centered
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//COscillator m_wavePosY; // 0 = centered
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// for arbitrary function evaluation:
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NSEEL_CODEHANDLE m_pf_codehandle;
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NSEEL_CODEHANDLE m_pp_codehandle;
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char m_szPerFrameInit[MAX_BIGSTRING_LEN];
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char m_szPerFrameExpr[MAX_BIGSTRING_LEN];
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char m_szPerPixelExpr[MAX_BIGSTRING_LEN];
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char m_szWarpShadersText[MAX_BIGSTRING_LEN]; // pixel shader code
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char m_szCompShadersText[MAX_BIGSTRING_LEN]; // pixel shader code
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void FreeVarsAndCode(bool bFree = true);
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void RegisterBuiltInVariables(int flags);
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void StripLinefeedCharsAndComments(char *src, char *dest);
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bool m_bBlending;
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float m_fBlendStartTime;
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float m_fBlendDuration;
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float m_fBlendProgress; // 0..1; updated every frame based on StartTime and Duration.
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// for once-per-frame expression evaluation: [although, these vars are also shared w/preset init expr eval]
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NSEEL_VMCTX m_pf_eel;
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double *var_pf_zoom, *var_pf_zoomexp, *var_pf_rot, *var_pf_warp, *var_pf_cx, *var_pf_cy, *var_pf_dx, *var_pf_dy, *var_pf_sx, *var_pf_sy;
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double *var_pf_time, *var_pf_fps;
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double *var_pf_bass, *var_pf_mid, *var_pf_treb, *var_pf_bass_att, *var_pf_mid_att, *var_pf_treb_att;
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double *var_pf_wave_a, *var_pf_wave_r, *var_pf_wave_g, *var_pf_wave_b, *var_pf_wave_x, *var_pf_wave_y, *var_pf_wave_mystery, *var_pf_wave_mode;
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double *var_pf_decay;
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double *var_pf_frame;
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//double *var_pf_q1, *var_pf_q2, *var_pf_q3, *var_pf_q4, *var_pf_q5, *var_pf_q6, *var_pf_q7, *var_pf_q8;
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double* var_pf_q[NUM_Q_VAR];
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double *var_pf_progress;
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double *var_pf_ob_size, *var_pf_ob_r, *var_pf_ob_g, *var_pf_ob_b, *var_pf_ob_a;
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double *var_pf_ib_size, *var_pf_ib_r, *var_pf_ib_g, *var_pf_ib_b, *var_pf_ib_a;
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double *var_pf_mv_x;
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double *var_pf_mv_y;
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double *var_pf_mv_dx;
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double *var_pf_mv_dy;
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double *var_pf_mv_l;
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double *var_pf_mv_r;
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double *var_pf_mv_g;
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double *var_pf_mv_b;
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double *var_pf_mv_a;
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double *var_pf_monitor;
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double *var_pf_echo_zoom, *var_pf_echo_alpha, *var_pf_echo_orient;
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// new in v1.04:
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double *var_pf_wave_usedots, *var_pf_wave_thick, *var_pf_wave_additive, *var_pf_wave_brighten;
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double *var_pf_darken_center, *var_pf_gamma, *var_pf_wrap;
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double *var_pf_invert, *var_pf_brighten, *var_pf_darken, *var_pf_solarize;
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double *var_pf_meshx, *var_pf_meshy;
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double *var_pf_pixelsx, *var_pf_pixelsy;
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double *var_pf_aspectx, *var_pf_aspecty;
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double *var_pf_blur1min;
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double *var_pf_blur2min;
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double *var_pf_blur3min;
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double *var_pf_blur1max;
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double *var_pf_blur2max;
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double *var_pf_blur3max;
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double *var_pf_blur1_edge_darken;
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// for per-vertex expression evaluation:
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NSEEL_VMCTX m_pv_eel;
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double *var_pv_zoom, *var_pv_zoomexp, *var_pv_rot, *var_pv_warp, *var_pv_cx, *var_pv_cy, *var_pv_dx, *var_pv_dy, *var_pv_sx, *var_pv_sy;
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double *var_pv_time, *var_pv_fps;
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double *var_pv_bass, *var_pv_mid, *var_pv_treb, *var_pv_bass_att, *var_pv_mid_att, *var_pv_treb_att;
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double *var_pv_x, *var_pv_y, *var_pv_rad, *var_pv_ang;
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double *var_pv_frame;
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//double *var_pv_q1, *var_pv_q2, *var_pv_q3, *var_pv_q4, *var_pv_q5, *var_pv_q6, *var_pv_q7, *var_pv_q8;
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double* var_pv_q[NUM_Q_VAR];
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double *var_pv_progress;
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double *var_pv_meshx, *var_pv_meshy;
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double *var_pv_pixelsx, *var_pv_pixelsy;
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double *var_pv_aspectx, *var_pv_aspecty;
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double q_values_after_init_code[NUM_Q_VAR];
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double monitor_after_init_code;
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float GetPresetStartTime() { return m_fPresetStartTime; }
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float m_fPresetStartTime;
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};
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#endif |