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author | Indrajith K L | 2022-12-03 17:00:20 +0530 |
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committer | Indrajith K L | 2022-12-03 17:00:20 +0530 |
commit | f5c4671bfbad96bf346bd7e9a21fc4317b4959df (patch) | |
tree | 2764fc62da58f2ba8da7ed341643fc359873142f /musikcube_win32_with_milkdrop2_0.98.1/plugins/Milkdrop2/presets/Krash & Rovastar - The Devil Is In The Details.milk | |
download | cli-tools-windows-f5c4671bfbad96bf346bd7e9a21fc4317b4959df.tar.gz cli-tools-windows-f5c4671bfbad96bf346bd7e9a21fc4317b4959df.tar.bz2 cli-tools-windows-f5c4671bfbad96bf346bd7e9a21fc4317b4959df.zip |
Diffstat (limited to 'musikcube_win32_with_milkdrop2_0.98.1/plugins/Milkdrop2/presets/Krash & Rovastar - The Devil Is In The Details.milk')
-rw-r--r-- | musikcube_win32_with_milkdrop2_0.98.1/plugins/Milkdrop2/presets/Krash & Rovastar - The Devil Is In The Details.milk | 101 |
1 files changed, 101 insertions, 0 deletions
diff --git a/musikcube_win32_with_milkdrop2_0.98.1/plugins/Milkdrop2/presets/Krash & Rovastar - The Devil Is In The Details.milk b/musikcube_win32_with_milkdrop2_0.98.1/plugins/Milkdrop2/presets/Krash & Rovastar - The Devil Is In The Details.milk new file mode 100644 index 0000000..9715746 --- /dev/null +++ b/musikcube_win32_with_milkdrop2_0.98.1/plugins/Milkdrop2/presets/Krash & Rovastar - The Devil Is In The Details.milk @@ -0,0 +1,101 @@ +[preset00] +fRating=3.000000 +fGammaAdj=2.993998 +fDecay=1.000000 +fVideoEchoZoom=1.000000 +fVideoEchoAlpha=0.500000 +nVideoEchoOrientation=1 +nWaveMode=0 +bAdditiveWaves=0 +bWaveDots=0 +bWaveThick=0 +bModWaveAlphaByVolume=0 +bMaximizeWaveColor=1 +bTexWrap=0 +bDarkenCenter=0 +bRedBlueStereo=0 +bBrighten=0 +bDarken=0 +bSolarize=0 +bInvert=0 +fWaveAlpha=1.000000 +fWaveScale=0.334693 +fWaveSmoothing=0.750000 +fWaveParam=-0.219900 +fModWaveAlphaStart=0.750000 +fModWaveAlphaEnd=0.950000 +fWarpAnimSpeed=1.000000 +fWarpScale=1.000000 +fZoomExponent=1.000000 +fShader=1.000000 +zoom=0.999900 +rot=0.100000 +cx=0.500000 +cy=0.500000 +dx=0.000000 +dy=0.000000 +warp=1.000000 +sx=1.000000 +sy=1.000000 +wave_r=0.500000 +wave_g=0.500000 +wave_b=0.500000 +wave_x=0.500000 +wave_y=0.500000 +ob_size=0.010000 +ob_r=0.000000 +ob_g=0.000000 +ob_b=0.000000 +ob_a=1.000000 +ib_size=0.005000 +ib_r=0.400000 +ib_g=0.000000 +ib_b=0.000000 +ib_a=1.000000 +nMotionVectorsX=64.000000 +nMotionVectorsY=48.000000 +mv_dx=0.000000 +mv_dy=0.000000 +mv_l=0.000000 +mv_r=0.000000 +mv_g=0.700000 +mv_b=1.000000 +mv_a=0.000000 +per_frame_1=warp=0; +per_frame_2=wave_r = wave_r + 0.45*(0.5*sin(time*0.701)+ 0.3*cos(time*0.438)); +per_frame_3=wave_b = wave_b - 0.4*(0.5*sin(time*4.782)+0.5*cos(time*0.722)); +per_frame_4=wave_g = wave_g + 0.4*sin(time*1.931); +per_frame_5=vol = 0.167*(bass+mid); +per_frame_6=xamptarg = if(equal(frame%15,0),min(0.5*vol*bass_att,0.5),xamptarg); +per_frame_7=xamp = xamp + 0.5*(xamptarg-xamp); +per_frame_8=xdir = if(above(abs(xpos),xamp),-sign(xpos),if(below(abs(xspeed),0.1),2*above(xpos,0)-1,xdir)); +per_frame_9=xspeed = xspeed + xdir*xamp - xpos - xspeed*0.055*below(abs(xpos),xamp); +per_frame_10=xpos = xpos + 0.001*xspeed; +per_frame_11=wave_x = 1.25*xpos + 0.5; +per_frame_12=yamptarg = if(equal(frame%15,0),min(0.3*vol*treb_att,0.5),yamptarg); +per_frame_13=yamp = yamp + 0.5*(yamptarg-yamp); +per_frame_14=ydir = if(above(abs(ypos),yamp),-sign(ypos),if(below(abs(yspeed),0.1),2*above(ypos,0)-1,ydir)); +per_frame_15=yspeed = yspeed + ydir*yamp - ypos - yspeed*0.055*below(abs(ypos),yamp); +per_frame_16=ypos = ypos + 0.001*yspeed; +per_frame_17=wave_y = 1.25*ypos + 0.5; +per_frame_18=q2=1.1*xpos +0.25*ypos + 0.5; +per_frame_19=q1=1.1*ypos +0.25*xpos + 0.5; +per_frame_20=ib_r = 0.3+xpos; +per_frame_21=ib_b = 0.06*bass; +per_frame_22=ib_g = 0.25+ypos; +per_frame_23=q3 = 10+8*(0.6*sin(0.423*time) + 0.4*sin(0.253*time)); +per_frame_24=q4 = 1/q3; +per_frame_25=q5 = 0.5*sign(xpos); +per_frame_26=q6 = 0.5*sign(ypos); +per_frame_27=monitor = rot; +per_pixel_1=cx = ((0&(x*q3-q5))+q5)*q4; +per_pixel_2=cy = ((0&(y*q3-q6))+q6)*q4; +per_pixel_3=newx = q1-x; +per_pixel_4=newy = q2-y; +per_pixel_5=newrad = sqrt((newx)*(newx)+0.5625*(newy)*(newy))*2; +per_pixel_6=newzoom = pow(1.05 + 0.03*newrad, pow(0.01+sin(newrad*newrad), newrad*2-1)); +per_pixel_7=dx = (newx)*newzoom - newx; +per_pixel_8=dy = (newy)*newzoom - newy; +per_pixel_9=dx =dx*0.1; +per_pixel_10=dy=dy*0.1; +per_pixel_11=rot = 2*newrad*(0.5*(0.5-rad)+0.1); |