Baz { ;useful for high iteration & magnification init: loop: final: #index = |#pixel|*#numiter/@Spread default: heading caption = "Resolution Control" endheading int param Spread default = 1 hint = "Increase exponentially (eg. 2, 4, 8) up to maximum iterations to spread gradient and increase resolution" endparam title = "Baz" } knot{ ;created using Bring It In from public domain image global: color A[94,72] 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float AA1 = 0.00392157 A[72,4]=A[67,5]=A[71,5]=A[68,6]=A[70,6]=A[76,13]=A[77,15]=A[47,20]=A[48,21]=A[49,22]=A[89,22]=A[50,23]=A[88,23]=A[21,26]=A[22,27]=A[23,28]=A[59,32]=A[79,32]=A[60,33]=A[11,34]=A[61,34]=A[11,37]=A[32,37]=A[33,38]=A[34,39]=A[46,41]=A[68,43]=A[70,43]=A[67,44]=A[71,44]=A[66,45]=A[72,45]=A[6,46]=A[65,46]=A[73,46]=A[43,48]=A[44,49]=A[45,50]=A[56,55]=A[16,56]=A[55,56]=A[17,57]=A[54,57]=A[32,59]=A[39,59]=A[45,66]=rgba(AA1,AA1,AA1,1) float AB1 = 0.00784314 A[81,11]=A[11,13]=A[24,29]=rgba(AB1,AB1,AB1,1) float AC1 = 0.0117647 A[13,11]=A[51,25]=A[88,26]=A[58,31]=A[82,33]=A[47,40]=A[82,57]=rgba(AC1,AC1,AC1,1) float AD1 = 0.0156863 A[34,11]=A[46,51]=A[11,58]=A[14,60]=rgba(AD1,AD1,AD1,1) float AE1 = 0.0196078 A[58,18]=A[80,31]=A[57,54]=A[12,55]=rgba(AE1,AE1,AE1,1) float AF1 = 0.0235294 A[50,4]=A[80,11]=rgba(AF1,AF1,AF1,1) float AG1 = 0.027451 A[46,30]=A[79,60]=rgba(AG1,AG1,AG1,1) float AH1 = 0.0352941 A[52,3]=A[38,37]=rgba(AH1,AH1,AH1,1) float AI1 = 0.0392157 A[12,11]=A[16,12]=A[31,13]=A[77,59]=A[33,60]=rgba(AI1,AI1,AI1,1) float AJ1 = 0.0431373 A[69,7]=A[60,11]=A[80,18]=A[69,42]=A[82,60]=rgba(AJ1,AJ1,AJ1,1) float AK1 = 0.0470588 A[91,41]=rgba(AK1,AK1,AK1,1) float AL1 = 0.0509804 A[82,15]=A[81,17]=A[91,30]=A[62,35]=A[83,36]=rgba(AL1,AL1,AL1,1) float AM1 = 0.054902 A[78,33]=A[31,36]=A[91,51]=rgba(AM1,AM1,AM1,1) float AN1 = 0.0627451 A[11,14]=A[24,42]=rgba(AN1,AN1,AN1,1) float AO1 = 0.0666667 A[44,44]=A[87,46]=A[42,68]=rgba(AO1,AO1,AO1,1) float AP1 = 0.0705882 A[29,24]=A[91,42]=A[3,51]=A[46,65]=A[73,68]=rgba(AP1,AP1,AP1,1) float AQ1 = 0.0745098 A[46,20]=A[42,24]=A[25,29]=A[13,31]=A[35,31]=A[49,44]=A[7,47]=A[74,47]=A[53,58]=rgba(AQ1,AQ1,AQ1,1) float AR1 = 0.0784314 A[40,14]=A[91,29]=A[64,47]=rgba(AR1,AR1,AR1,1) float AS1 = 0.0823529 A[91,20]=A[4,28]=A[90,29]=A[76,35]=A[76,57]=rgba(AS1,AS1,AS1,1) float AT1 = 0.0862745 A[32,12]=A[39,12]=A[32,15]=A[39,15]=A[33,16]=A[38,16]=A[26,21]=A[45,21]=A[91,21]=A[27,22]=A[44,22]=A[28,23]=A[43,23]=A[28,26]=A[27,27]=A[26,28]=A[48,29]=A[12,32]=A[34,32]=A[33,33]=A[32,34]=A[77,34]=A[23,43]=A[22,44]=A[21,45]=A[6,48]=A[65,48]=A[73,48]=A[5,49]=A[66,49]=A[72,49]=A[4,50]=A[67,50]=A[71,50]=A[70,51]=A[81,54]=A[60,55]=A[61,56]=A[77,56]=A[68,65]=A[67,66]=A[71,66]=A[72,67]=A[64,68]=A[30,69]=A[41,69]=A[63,69]=rgba(AT1,AT1,AT1,1) float AU1 = 0.0901961 A[29,25]=A[20,46]=A[68,51]=A[70,65]=rgba(AU1,AU1,AU1,1) float AV1 = 0.0941176 A[55,36]=A[12,39]=rgba(AV1,AV1,AV1,1) float AW1 = 0.0980392 A[41,3]=A[43,4]=A[14,40]=A[59,54]=A[52,69]=A[53,69]=rgba(AW1,AW1,AW1,1) float AX1 = 0.101961 A[44,27]=A[18,58]=A[50,67]=rgba(AX1,AX1,AX1,1) float AY1 = 0.105882 A[56,11]=A[25,20]=A[91,22]=A[91,23]=A[91,24]=A[91,25]=A[91,26]=A[91,27]=A[91,28]=A[91,43]=A[91,44]=A[91,45]=A[91,46]=A[91,47]=A[91,48]=A[91,49]=A[91,50]=A[79,54]=A[11,57]=A[38,60]=A[20,69]=rgba(AY1,AY1,AY1,1) float AZ1 = 0.109804 A[30,3]=A[63,3]=A[42,69]=A[64,69]=A[73,69]=rgba(AZ1,AZ1,AZ1,1) float BA1 = 0.113725 A[28,4]=A[28,67]=rgba(BA1,BA1,BA1,1) float BB1 = 0.117647 A[65,4]=rgba(BB1,BB1,BB1,1) float BC1 = 0.121569 A[14,11]=A[29,69]=A[31,69]=rgba(BC1,BC1,BC1,1) float BD1 = 0.12549 A[91,31]=A[47,32]=A[51,69]=rgba(BD1,BD1,BD1,1) float BE1 = 0.129412 A[31,35]=A[91,40]=A[21,69]=A[22,69]=A[23,69]=A[24,69]=A[25,69]=A[26,69]=A[27,69]=A[28,69]=A[43,69]=A[44,69]=A[45,69]=A[46,69]=A[47,69]=A[48,69]=A[49,69]=A[50,69]=A[65,69]=A[66,69]=A[67,69]=A[68,69]=A[69,69]=A[70,69]=A[71,69]=A[72,69]=rgba(BE1,BE1,BE1,1) float BF1 = 0.133333 A[53,13]=A[78,55]=rgba(BF1,BF1,BF1,1) float BG1 = 0.137255 A[58,61]=rgba(BG1,BG1,BG1,1) float BH1 = 0.145098 A[90,42]=A[1,70]=rgba(BH1,BH1,BH1,1) float BI1 = 0.14902 A[1,1]=A[55,35]=A[83,35]=A[15,39]=rgba(BI1,BI1,BI1,1) float BJ1 = 0.152941 A[20,3]=A[62,57]=rgba(BJ1,BJ1,BJ1,1) float BK1 = 0.156863 A[31,14]=rgba(BK1,BK1,BK1,1) float BL1 = 0.160784 A[49,5]=A[34,17]=A[37,17]=A[38,34]=A[54,59]=rgba(BL1,BL1,BL1,1) float BM1 = 0.164706 A[48,42]=A[69,52]=A[52,68]=rgba(BM1,BM1,BM1,1) float BN1 = 0.168627 A[35,61]=A[69,64]=rgba(BN1,BN1,BN1,1) float BO1 = 0.172549 A[79,11]=rgba(BO1,BO1,BO1,1) float BP1 = 0.176471 A[13,18]=A[3,20]=A[82,56]=rgba(BP1,BP1,BP1,1) float BQ1 = 0.180392 A[24,7]=A[38,11]=A[77,12]=rgba(BQ1,BQ1,BQ1,1) float BR1 = 0.188235 A[7,24]=A[74,24]=A[64,25]=A[18,36]=A[40,69]=rgba(BR1,BR1,BR1,1) float BS1 = 0.192157 A[35,18]=rgba(BS1,BS1,BS1,1) float BT1 = 0.196078 A[36,18]=A[50,45]=rgba(BT1,BT1,BT1,1) float BU1 = 0.2 A[82,11]=A[14,31]=A[36,31]=A[11,60]=rgba(BU1,BU1,BU1,1) float BV1 = 0.203922 A[64,24]=A[42,25]=A[4,43]=A[36,61]=rgba(BV1,BV1,BV1,1) float BW1 = 0.207843 A[18,13]=rgba(BW1,BW1,BW1,1) float BX1 = 0.211765 A[47,7]=A[49,28]=A[43,45]=A[90,51]=A[47,52]=rgba(BX1,BX1,BX1,1) float BY1 = 0.215686 A[15,60]=rgba(BY1,BY1,BY1,1) float BZ1 = 0.219608 A[53,14]=A[79,40]=A[25,42]=A[29,46]=A[74,69]=rgba(BZ1,BZ1,BZ1,1) float CA1 = 0.223529 A[21,4]=A[22,5]=A[23,6]=A[48,6]=A[54,15]=A[55,16]=A[68,20]=A[4,21]=A[67,21]=A[71,21]=A[5,22]=A[66,22]=A[72,22]=A[6,23]=A[65,23]=A[73,23]=A[65,26]=A[66,27]=A[67,28]=A[3,30]=A[17,37]=A[16,38]=A[37,39]=A[26,43]=A[27,44]=A[28,45]=A[51,46]=A[86,47]=A[87,48]=A[50,49]=A[88,49]=A[49,50]=A[89,50]=A[48,51]=A[80,53]=A[33,55]=A[38,55]=A[32,56]=A[39,56]=rgba(CA1,CA1,CA1,1) float CB1 = 0.227451 A[43,26]=A[51,48]=A[40,57]=rgba(CB1,CB1,CB1,1) float CC1 = 0.231373 A[47,39]=A[3,41]=A[34,54]=A[37,54]=rgba(CC1,CC1,CC1,1) float CD1 = 0.235294 A[70,20]=A[68,29]=A[37,32]=rgba(CD1,CD1,CD1,1) float CE1 = 0.239216 A[36,40]=A[42,46]=A[58,53]=A[62,59]=A[62,69]=rgba(CE1,CE1,CE1,1) float CF1 = 0.243137 A[54,12]=A[55,60]=rgba(CF1,CF1,CF1,1) float CG1 = 0.25098 A[91,52]=rgba(CG1,CG1,CG1,1) float CH1 = 0.254902 A[46,40]=rgba(CH1,CH1,CH1,1) float CI1 = 0.262745 A[11,33]=A[83,37]=A[11,38]=A[30,68]=A[92,70]=rgba(CI1,CI1,CI1,1) float CJ1 = 0.270588 A[92,1]=A[75,58]=rgba(CJ1,CJ1,CJ1,1) float CK1 = 0.27451 A[5,27]=A[45,29]=A[31,57]=rgba(CK1,CK1,CK1,1) float CL1 = 0.278431 A[13,53]=rgba(CL1,CL1,CL1,1) float CM1 = 0.282353 A[93,1]=A[33,11]=A[57,40]=rgba(CM1,CM1,CM1,1) float CN1 = 0.286275 A[15,32]=A[78,39]=A[89,43]=A[93,70]=rgba(CN1,CN1,CN1,1) float CO1 = 0.290196 A[27,5]=A[44,5]=A[56,17]=A[43,67]=rgba(CO1,CO1,CO1,1) float CP1 = 0.294118 A[63,13]=A[19,24]=A[17,59]=A[61,60]=rgba(CP1,CP1,CP1,1) float CQ1 = 0.298039 A[52,47]=A[41,58]=A[63,58]=A[54,69]=A[56,70]=A[60,70]=rgba(CQ1,CQ1,CQ1,1) float CR1 = 0.301961 A[2,30]=A[75,36]=A[34,70]=A[38,70]=rgba(CR1,CR1,CR1,1) float CS1 = 0.305882 A[2,20]=A[2,41]=rgba(CS1,CS1,CS1,1) float CT1 = 0.309804 A[69,19]=A[78,60]=A[47,64]=rgba(CT1,CT1,CT1,1) float CU1 = 0.313725 A[91,39]=A[33,70]=A[61,70]=rgba(CU1,CU1,CU1,1) float CV1 = 0.317647 A[11,15]=A[35,53]=A[57,61]=A[37,70]=A[55,70]=A[75,70]=rgba(CV1,CV1,CV1,1) float CW1 = 0.32549 A[91,32]=A[2,40]=A[2,51]=A[19,70]=A[39,70]=rgba(CW1,CW1,CW1,1) float CX1 = 0.333333 A[93,2]=A[55,37]=A[45,42]=A[24,52]=A[18,70]=A[32,70]=A[57,70]=rgba(CX1,CX1,CX1,1) float CY1 = 0.337255 A[93,3]=A[93,4]=A[93,5]=A[93,6]=A[93,7]=A[93,8]=A[93,9]=A[93,10]=A[93,11]=A[93,12]=A[93,13]=A[93,14]=A[93,15]=A[93,16]=A[12,17]=A[93,17]=A[89,28]=A[93,35]=A[93,54]=A[93,55]=A[93,56]=A[93,57]=A[93,58]=A[93,59]=A[93,60]=A[93,61]=A[93,62]=A[93,63]=A[93,64]=A[93,65]=A[93,66]=A[93,67]=A[93,68]=A[93,69]=A[54,70]=rgba(CY1,CY1,CY1,1) float CZ1 = 0.341176 A[93,18]=A[93,36]=A[36,53]=A[93,53]=A[59,61]=A[27,66]=A[49,66]=rgba(CZ1,CZ1,CZ1,1) float DA1 = 0.345098 A[15,17]=A[93,19]=A[93,20]=A[93,21]=A[93,22]=A[93,23]=A[93,24]=A[93,25]=A[93,26]=A[93,27]=A[93,28]=A[2,29]=A[93,29]=A[93,30]=A[2,31]=A[93,31]=A[93,32]=A[93,33]=A[93,34]=A[93,37]=A[93,38]=A[93,39]=A[93,40]=A[93,41]=A[2,42]=A[93,42]=A[93,43]=A[93,44]=A[93,45]=A[93,46]=A[93,47]=A[93,48]=A[93,49]=A[93,50]=A[93,51]=A[93,52]=A[59,70]=A[62,70]=rgba(DA1,DA1,DA1,1) float DB1 = 0.34902 A[55,34]=A[2,52]=A[32,69]=A[74,70]=rgba(DB1,DB1,DB1,1) float DC1 = 0.352941 A[2,21]=A[2,22]=A[2,23]=A[2,24]=A[2,25]=A[2,26]=A[2,27]=A[2,28]=A[2,43]=A[2,44]=A[2,45]=A[2,46]=A[2,47]=A[2,48]=A[2,49]=A[2,50]=A[40,70]=rgba(DC1,DC1,DC1,1) float DD1 = 0.356863 A[18,35]=rgba(DD1,DD1,DD1,1) float DE1 = 0.360784 A[25,7]=A[1,17]=A[1,36]=A[1,68]=A[31,70]=A[35,70]=rgba(DE1,DE1,DE1,1) float DF1 = 0.364706 A[1,3]=A[1,4]=A[1,5]=A[1,6]=A[1,7]=A[1,8]=A[1,9]=A[1,10]=A[1,11]=A[11,11]=A[1,12]=A[1,13]=A[1,14]=A[18,14]=A[1,15]=A[1,16]=A[47,33]=A[25,52]=A[1,54]=A[1,55]=A[1,56]=A[1,57]=A[1,58]=A[1,59]=A[1,60]=A[1,61]=A[1,62]=A[1,63]=A[1,64]=A[1,65]=A[1,66]=A[1,67]=A[3,70]=A[4,70]=A[5,70]=A[6,70]=A[7,70]=A[8,70]=A[9,70]=A[10,70]=A[11,70]=A[12,70]=A[13,70]=A[14,70]=A[15,70]=A[16,70]=A[17,70]=A[20,70]=A[36,70]=A[41,70]=A[53,70]=A[58,70]=A[63,70]=A[76,70]=A[77,70]=A[78,70]=A[79,70]=A[80,70]=A[81,70]=A[82,70]=A[83,70]=A[84,70]=A[85,70]=A[86,70]=A[87,70]=A[88,70]=A[89,70]=A[90,70]=rgba(DF1,DF1,DF1,1) float DG1 = 0.368627 A[7,25]=A[74,25]=A[46,31]=A[58,41]=A[80,41]=A[30,47]=A[24,64]=A[21,70]=A[22,70]=A[23,70]=A[24,70]=A[25,70]=A[26,70]=A[27,70]=A[28,70]=A[29,70]=A[30,70]=A[42,70]=A[43,70]=A[44,70]=A[45,70]=A[46,70]=A[47,70]=A[48,70]=A[49,70]=A[50,70]=A[51,70]=A[52,70]=A[64,70]=A[65,70]=A[66,70]=A[67,70]=A[68,70]=A[69,70]=A[70,70]=A[71,70]=A[72,70]=A[73,70]=rgba(DG1,DG1,DG1,1) float DH1 = 0.372549 A[15,11]=A[91,19]=A[10,36]=A[91,70]=rgba(DH1,DH1,DH1,1) float DI1 = 0.376471 A[82,16]=A[1,18]=A[14,18]=A[1,35]=A[1,37]=rgba(DI1,DI1,DI1,1) float DJ1 = 0.384314 A[53,3]=A[62,12]=A[50,27]=A[1,53]=A[20,68]=rgba(DJ1,DJ1,DJ1,1) float DK1 = 0.388235 A[57,18]=A[81,31]=A[38,38]=A[5,44]=A[19,47]=A[2,70]=rgba(DK1,DK1,DK1,1) float DL1 = 0.392157 A[1,34]=A[11,56]=A[40,59]=rgba(DL1,DL1,DL1,1) float DM1 = 0.396078 A[1,38]=rgba(DM1,DM1,DM1,1) float DN1 = 0.4 A[26,6]=A[45,6]=A[17,15]=A[16,16]=A[61,16]=A[23,20]=A[22,21]=A[21,22]=A[6,26]=A[73,26]=A[72,27]=A[71,28]=A[70,29]=A[16,33]=A[17,34]=A[61,38]=A[77,38]=A[60,39]=A[82,39]=A[20,48]=A[21,49]=A[28,49]=A[22,50]=A[27,50]=A[26,51]=A[12,54]=A[23,65]=A[22,66]=A[21,67]=rgba(DN1,DN1,DN1,1) float DO1 = 0.403922 A[20,23]=A[2,32]=A[56,32]=A[83,34]=A[76,37]=A[56,39]=A[23,51]=A[26,65]=A[48,65]=rgba(DO1,DO1,DO1,1) float DP1 = 0.407843 A[57,31]=A[1,33]=A[10,35]=A[19,69]=rgba(DP1,DP1,DP1,1) float DQ1 = 0.411765 A[59,40]=A[81,40]=A[29,48]=A[39,69]=rgba(DQ1,DQ1,DQ1,1) float DR1 = 0.415686 A[1,19]=A[1,32]=A[1,39]=A[1,69]=rgba(DR1,DR1,DR1,1) float DS1 = 0.419608 A[41,13]=A[2,19]=A[24,19]=A[24,30]=A[69,30]=rgba(DS1,DS1,DS1,1) float DT1 = 0.423529 A[2,39]=rgba(DT1,DT1,DT1,1) float DU1 = 0.427451 A[1,31]=A[1,40]=A[1,52]=rgba(DU1,DU1,DU1,1) float DV1 = 0.431373 A[2,0]=A[3,0]=A[4,0]=A[5,0]=A[6,0]=A[7,0]=A[8,0]=A[9,0]=A[10,0]=A[11,0]=A[12,0]=A[13,0]=A[14,0]=A[15,0]=A[16,0]=A[17,0]=A[18,0]=A[19,0]=A[20,0]=A[21,0]=A[22,0]=A[23,0]=A[24,0]=A[25,0]=A[26,0]=A[27,0]=A[28,0]=A[29,0]=A[30,0]=A[31,0]=A[32,0]=A[33,0]=A[34,0]=A[35,0]=A[36,0]=A[37,0]=A[38,0]=A[39,0]=A[40,0]=A[41,0]=A[42,0]=A[43,0]=A[44,0]=A[45,0]=A[46,0]=A[47,0]=A[48,0]=A[49,0]=A[50,0]=A[51,0]=A[52,0]=A[53,0]=A[54,0]=A[55,0]=A[56,0]=A[57,0]=A[58,0]=A[59,0]=A[60,0]=A[61,0]=A[62,0]=A[63,0]=A[64,0]=A[65,0]=A[66,0]=A[67,0]=A[68,0]=A[69,0]=A[70,0]=A[71,0]=A[72,0]=A[73,0]=A[74,0]=A[75,0]=A[76,0]=A[77,0]=A[78,0]=A[79,0]=A[80,0]=A[81,0]=A[82,0]=A[83,0]=A[84,0]=A[85,0]=A[86,0]=A[87,0]=A[88,0]=A[89,0]=A[90,0]=A[91,0]=A[0,1]=A[0,2]=A[40,3]=A[0,70]=rgba(DV1,DV1,DV1,1) float DW1 = 0.435294 A[1,20]=A[1,21]=A[1,22]=A[1,23]=A[1,24]=A[1,25]=A[1,26]=A[1,27]=A[1,28]=A[1,29]=A[1,30]=A[1,41]=A[1,42]=A[1,43]=A[1,44]=A[1,45]=A[1,46]=A[1,47]=A[1,48]=A[1,49]=A[1,50]=A[1,51]=A[0,69]=A[2,71]=rgba(DW1,DW1,DW1,1) float DX1 = 0.439216 A[0,3]=A[0,4]=A[0,5]=A[66,5]=A[0,6]=A[0,7]=A[0,8]=A[0,9]=A[0,10]=A[0,11]=A[0,12]=A[0,13]=A[0,14]=A[0,15]=A[0,16]=A[0,17]=A[0,18]=A[0,19]=A[0,20]=A[0,21]=A[0,22]=A[0,23]=A[0,24]=A[86,24]=A[0,25]=A[0,26]=A[0,27]=A[0,28]=A[0,29]=A[0,30]=A[0,31]=A[0,32]=A[0,33]=A[0,34]=A[0,35]=A[0,36]=A[0,37]=A[0,38]=A[0,39]=A[0,40]=A[0,41]=A[0,42]=A[0,43]=A[0,44]=A[0,45]=A[0,46]=A[0,47]=A[0,48]=A[0,49]=A[0,50]=A[0,51]=A[0,52]=A[0,53]=A[0,54]=A[0,55]=A[0,56]=A[0,57]=A[0,58]=A[0,59]=A[0,60]=A[0,61]=A[0,62]=A[0,63]=A[0,64]=A[0,65]=A[0,66]=A[0,67]=A[65,67]=A[0,68]=A[3,71]=A[4,71]=A[5,71]=A[6,71]=A[7,71]=A[8,71]=A[9,71]=A[10,71]=A[11,71]=A[12,71]=A[13,71]=A[14,71]=A[15,71]=A[16,71]=A[17,71]=A[35,71]=A[36,71]=A[58,71]=A[59,71]=A[76,71]=A[77,71]=A[78,71]=A[79,71]=A[80,71]=A[81,71]=A[82,71]=A[83,71]=A[84,71]=A[85,71]=A[86,71]=A[87,71]=A[88,71]=A[89,71]=A[90,71]=A[91,71]=rgba(DX1,DX1,DX1,1) float DY1 = 0.443137 A[1,2]=A[18,71]=A[37,71]=A[57,71]=A[75,71]=rgba(DY1,DY1,DY1,1) float DZ1 = 0.447059 A[19,71]=A[20,71]=A[21,71]=A[22,71]=A[23,71]=A[24,71]=A[25,71]=A[26,71]=A[27,71]=A[28,71]=A[29,71]=A[30,71]=A[31,71]=A[32,71]=A[33,71]=A[34,71]=A[38,71]=A[39,71]=A[40,71]=A[41,71]=A[42,71]=A[43,71]=A[44,71]=A[45,71]=A[46,71]=A[47,71]=A[48,71]=A[49,71]=A[50,71]=A[51,71]=A[52,71]=A[53,71]=A[54,71]=A[55,71]=A[56,71]=A[60,71]=A[61,71]=A[62,71]=A[63,71]=A[64,71]=A[65,71]=A[66,71]=A[67,71]=A[68,71]=A[69,71]=A[70,71]=A[71,71]=A[72,71]=A[73,71]=A[74,71]=rgba(DZ1,DZ1,DZ1,1) float EA1 = 0.45098 A[92,0]=A[47,19]=A[48,30]=rgba(EA1,EA1,EA1,1) float EB1 = 0.454902 A[2,1]=A[3,1]=A[4,1]=A[5,1]=A[6,1]=A[7,1]=A[8,1]=A[9,1]=A[10,1]=A[11,1]=A[12,1]=A[13,1]=A[14,1]=A[15,1]=A[16,1]=A[17,1]=A[18,1]=A[35,1]=A[36,1]=A[58,1]=A[77,1]=A[78,1]=A[79,1]=A[80,1]=A[81,1]=A[82,1]=A[83,1]=A[84,1]=A[85,1]=A[86,1]=A[87,1]=A[88,1]=A[89,1]=A[90,1]=A[61,11]=A[17,12]=A[62,15]=A[60,17]=A[62,37]=A[88,44]=A[15,54]=A[34,61]=A[92,71]=rgba(EB1,EB1,EB1,1) float EC1 = 0.458824 A[57,1]=A[59,1]=A[76,1]=A[46,7]=A[82,32]=rgba(EC1,EC1,EC1,1) float ED1 = 0.462745 A[91,1]=A[75,13]=rgba(ED1,ED1,ED1,1) float EE1 = 0.470588 A[1,0]=A[34,1]=A[37,1]=A[75,14]=A[90,30]=A[1,71]=rgba(EE1,EE1,EE1,1) float EF1 = 0.47451 A[2,33]=A[83,59]=A[55,69]=rgba(EF1,EF1,EF1,1) float EG1 = 0.478431 A[19,1]=A[74,3]=rgba(EG1,EG1,EG1,1) float EH1 = 0.482353 A[33,1]=A[38,1]=A[55,1]=A[56,1]=A[60,1]=A[61,1]=A[75,1]=A[25,64]=A[41,68]=rgba(EH1,EH1,EH1,1) float EI1 = 0.486275 A[39,1]=A[51,4]=A[52,25]=A[63,68]=rgba(EI1,EI1,EI1,1) float EJ1 = 0.490196 A[32,1]=A[54,1]=A[62,1]=A[47,38]=rgba(EJ1,EJ1,EJ1,1) float EK1 = 0.494118 A[31,1]=A[74,1]=rgba(EK1,EK1,EK1,1) float EL1 = 0.498039 A[20,1]=A[40,1]=A[53,1]=rgba(EL1,EL1,EL1,1) float EM1 = 0.501961 A[21,1]=A[22,1]=A[23,1]=A[24,1]=A[25,1]=A[26,1]=A[27,1]=A[28,1]=A[29,1]=A[30,1]=A[41,1]=A[42,1]=A[43,1]=A[44,1]=A[45,1]=A[46,1]=A[47,1]=A[48,1]=A[49,1]=A[50,1]=A[51,1]=A[52,1]=A[63,1]=A[64,1]=A[65,1]=A[66,1]=A[67,1]=A[68,1]=A[69,1]=A[70,1]=A[71,1]=A[72,1]=A[73,1]=A[58,10]=A[91,38]=A[37,61]=A[44,66]=rgba(EM1,EM1,EM1,1) float EN1 = 0.505882 A[78,17]=A[14,53]=A[76,59]=rgba(EN1,EN1,EN1,1) float EO1 = 0.509804 A[53,2]=A[46,52]=rgba(EO1,EO1,EO1,1) float EP1 = 0.513725 A[55,11]=rgba(EP1,EP1,EP1,1) float EQ1 = 0.517647 A[47,35]=A[47,36]=rgba(EQ1,EQ1,EQ1,1) float ER1 = 0.521569 A[47,34]=A[31,59]=A[33,69]=A[61,69]=rgba(ER1,ER1,ER1,1) float ES1 = 0.52549 A[40,2]=A[47,37]=rgba(ES1,ES1,ES1,1) float ET1 = 0.529412 A[31,3]=A[78,11]=A[13,30]=A[35,30]=A[46,39]=A[30,58]=rgba(ET1,ET1,ET1,1) float EU1 = 0.533333 A[31,2]=A[58,19]=A[80,30]=A[90,41]=rgba(EU1,EU1,EU1,1) float EV1 = 0.537255 A[20,2]=A[30,2]=A[63,2]=A[41,24]=A[92,37]=rgba(EV1,EV1,EV1,1) float EW1 = 0.541176 A[41,2]=A[30,36]=rgba(EW1,EW1,EW1,1) float EX1 = 0.545098 A[74,2]=A[30,25]=A[92,34]=A[13,61]=rgba(EX1,EX1,EX1,1) float EY1 = 0.54902 A[52,2]=A[88,27]=A[91,33]=A[92,33]=rgba(EY1,EY1,EY1,1) float EZ1 = 0.552941 A[35,10]=A[36,10]=A[51,26]=A[92,38]=rgba(EZ1,EZ1,EZ1,1) float FA1 = 0.556863 A[83,13]=A[63,14]=A[25,19]=A[19,25]=A[14,41]=rgba(FA1,FA1,FA1,1) float FB1 = 0.560784 A[62,2]=A[73,2]=A[86,25]=A[82,55]=rgba(FB1,FB1,FB1,1) float FC1 = 0.564706 A[29,2]=A[42,2]=A[54,2]=A[64,2]=A[92,19]=A[13,41]=A[49,43]=A[92,53]=A[51,67]=rgba(FC1,FC1,FC1,1) float FD1 = 0.568627 A[21,2]=A[22,2]=A[23,2]=A[24,2]=A[25,2]=A[26,2]=A[27,2]=A[28,2]=A[43,2]=A[44,2]=A[45,2]=A[46,2]=A[47,2]=A[48,2]=A[49,2]=A[50,2]=A[51,2]=A[65,2]=A[66,2]=A[67,2]=A[68,2]=A[69,2]=A[70,2]=A[71,2]=A[72,2]=A[63,36]=rgba(FD1,FD1,FD1,1) float FE1 = 0.572549 A[92,18]=A[52,24]=rgba(FE1,FE1,FE1,1) float FF1 = 0.576471 A[92,32]=rgba(FF1,FF1,FF1,1) float FG1 = 0.580392 A[90,20]=A[92,39]=A[92,52]=rgba(FG1,FG1,FG1,1) float FH1 = 0.584314 A[32,2]=A[7,46]=A[74,46]=A[53,57]=rgba(FH1,FH1,FH1,1) float FI1 = 0.592157 A[79,18]=A[92,36]=A[35,41]=A[64,46]=A[41,47]=rgba(FI1,FI1,FI1,1) float FJ1 = 0.596078 A[70,7]=A[30,14]=A[46,32]=A[63,35]=A[68,42]=A[83,58]=A[80,61]=A[81,61]=A[53,68]=rgba(FJ1,FJ1,FJ1,1) float FK1 = 0.6 A[77,16]=A[59,31]=A[92,31]=A[92,40]=A[6,45]=A[42,48]=A[16,55]=A[18,57]=A[12,61]=rgba(FK1,FK1,FK1,1) float FL1 = 0.603922 A[92,3]=A[73,4]=A[72,5]=A[67,6]=A[71,6]=A[76,15]=A[36,19]=A[48,20]=A[49,21]=A[89,21]=A[50,22]=A[88,22]=A[51,23]=A[87,23]=A[20,26]=A[87,26]=A[21,27]=A[22,28]=A[60,32]=A[61,33]=A[2,38]=A[32,38]=A[33,39]=A[34,40]=A[67,43]=A[71,43]=A[66,44]=A[72,44]=A[65,45]=A[73,45]=A[43,49]=A[44,50]=A[45,51]=A[56,54]=A[55,55]=A[17,56]=A[54,56]=A[32,60]=rgba(FL1,FL1,FL1,1) float FM1 = 0.607843 A[92,4]=A[92,5]=A[92,6]=A[92,7]=A[92,8]=A[92,9]=A[92,10]=A[92,11]=A[92,12]=A[92,13]=A[52,14]=A[92,14]=A[92,15]=A[92,16]=A[92,20]=A[23,29]=A[58,30]=A[92,35]=A[39,36]=A[92,54]=A[92,55]=A[92,56]=A[92,57]=A[92,58]=A[92,59]=A[92,60]=A[92,61]=A[92,62]=A[92,63]=A[92,64]=A[92,65]=A[92,66]=A[92,67]=A[92,68]=rgba(FM1,FM1,FM1,1) float FN1 = 0.611765 A[39,2]=A[29,4]=A[42,4]=A[64,4]=A[68,7]=A[23,9]=A[22,10]=A[21,11]=A[20,12]=A[73,15]=A[72,16]=A[92,17]=A[37,20]=A[38,21]=A[60,21]=A[92,21]=A[39,22]=A[61,22]=A[92,22]=A[40,23]=A[92,23]=A[92,24]=A[92,25]=A[9,26]=A[76,26]=A[92,26]=A[10,27]=A[32,27]=A[92,27]=A[11,28]=A[33,28]=A[92,28]=A[12,29]=A[34,29]=A[92,29]=A[92,30]=A[67,32]=A[66,33]=A[65,34]=A[25,41]=A[48,41]=A[92,41]=A[70,42]=A[92,42]=A[60,43]=A[82,43]=A[92,43]=A[61,44]=A[83,44]=A[92,44]=A[17,45]=A[84,45]=A[92,45]=A[92,46]=A[92,47]=A[92,48]=A[32,49]=A[54,49]=A[92,49]=A[33,50]=A[55,50]=A[92,50]=A[34,51]=A[56,51]=A[44,55]=A[66,55]=A[43,56]=A[65,56]=A[28,60]=A[27,61]=A[26,62]=rgba(FN1,FN1,FN1,1) float FO1 = 0.615686 A[59,18]=A[59,20]=A[63,24]=A[77,27]=A[44,28]=A[79,29]=A[79,31]=A[2,34]=A[83,38]=A[44,43]=A[92,51]=A[45,54]=A[67,54]=A[39,60]=A[45,65]=rgba(FO1,FO1,FO1,1) float FP1 = 0.619608 A[91,37]=A[59,42]=A[81,42]=A[16,44]=A[87,45]=A[29,59]=A[38,69]=rgba(FP1,FP1,FP1,1) float FQ1 = 0.623529 A[62,3]=A[24,8]=A[38,33]=A[56,61]=rgba(FQ1,FQ1,FQ1,1) float FR1 = 0.627451 A[55,2]=A[19,13]=A[81,18]=A[91,34]=rgba(FR1,FR1,FR1,1) float FS1 = 0.631373 A[33,2]=A[38,2]=A[61,2]=A[8,25]=A[75,25]=A[68,31]=A[78,32]=A[62,34]=A[19,46]=A[56,69]=A[60,69]=rgba(FS1,FS1,FS1,1) float FT1 = 0.635294 A[31,37]=A[53,48]=A[42,57]=rgba(FT1,FT1,FT1,1) float FU1 = 0.639216 A[75,2]=A[70,18]=A[3,40]=A[64,57]=rgba(FU1,FU1,FU1,1) float FV1 = 0.643137 A[56,2]=A[60,2]=A[34,69]=rgba(FV1,FV1,FV1,1) float FW1 = 0.647059 A[83,12]=A[62,23]=A[78,28]=A[85,46]=A[35,52]=A[57,53]=A[25,63]=rgba(FW1,FW1,FW1,1) float FX1 = 0.65098 A[54,3]=A[74,14]=A[71,17]=A[18,46]=A[57,52]=rgba(FX1,FX1,FX1,1) float FY1 = 0.654902 A[19,2]=A[57,10]=A[59,10]=rgba(FY1,FY1,FY1,1) float FZ1 = 0.658824 A[31,26]=A[62,45]=rgba(FZ1,FZ1,FZ1,1) float GA1 = 0.662745 A[69,8]=A[80,19]=A[46,38]=A[69,41]=A[31,48]=A[66,66]=A[92,69]=rgba(GA1,GA1,GA1,1) float GB1 = 0.666667 A[93,0]=A[4,29]=A[39,35]=A[75,35]=A[46,64]=A[93,71]=rgba(GB1,GB1,GB1,1) float GC1 = 0.670588 A[45,9]=A[44,10]=A[67,10]=A[43,11]=A[66,11]=A[40,12]=A[65,12]=A[29,15]=A[51,15]=A[28,16]=A[50,16]=A[46,19]=A[82,21]=A[83,22]=A[17,23]=A[84,23]=A[54,26]=A[55,27]=A[56,28]=A[22,32]=A[21,33]=A[20,34]=A[73,37]=A[28,38]=A[72,38]=A[27,39]=A[71,39]=A[26,40]=A[37,43]=A[38,44]=A[39,45]=A[41,46]=A[9,48]=A[76,48]=A[10,49]=A[11,50]=A[12,51]=A[3,52]=A[22,55]=A[21,56]=A[51,59]=A[50,60]=A[73,60]=A[49,61]=A[72,61]=A[48,62]=A[71,62]=rgba(GC1,GC1,GC1,1) float GD1 = 0.67451 A[68,9]=A[81,20]=A[16,22]=A[23,31]=A[29,37]=A[70,40]=A[77,49]=A[20,57]=rgba(GD1,GD1,GD1,1) float GE1 = 0.678431 A[42,12]=A[14,19]=A[23,54]=A[74,59]=rgba(GE1,GE1,GE1,1) float GF1 = 0.682353 A[57,29]=A[36,41]=A[19,58]=A[75,69]=rgba(GF1,GF1,GF1,1) float GG1 = 0.686275 A[8,47]=A[75,47]=A[24,53]=A[91,53]=A[52,58]=A[31,68]=rgba(GG1,GG1,GG1,1) float GH1 = 0.690196 A[92,2]=A[3,31]=A[64,35]=A[36,42]=A[15,43]=A[40,46]=rgba(GH1,GH1,GH1,1) float GI1 = 0.694118 A[37,69]=rgba(GI1,GI1,GI1,1) float GJ1 = 0.698039 A[27,17]=A[49,17]=A[86,46]=A[2,53]=rgba(GJ1,GJ1,GJ1,1) float GK1 = 0.701961 A[25,18]=A[15,20]=A[19,35]=A[78,51]=A[79,52]=A[70,63]=rgba(GK1,GK1,GK1,1) float GL1 = 0.705882 A[46,33]=A[14,42]=A[63,46]=A[46,53]=A[81,53]=rgba(GL1,GL1,GL1,1) float GM1 = 0.709804 A[29,67]=rgba(GM1,GM1,GM1,1) float GN1 = 0.713725 A[32,3]=A[46,8]=A[76,12]=A[53,25]=rgba(GN1,GN1,GN1,1) float GO1 = 0.717647 A[64,13]=A[18,24]=A[74,36]=A[12,40]=A[68,53]=A[16,60]=A[47,63]=rgba(GO1,GO1,GO1,1) float GP1 = 0.721569 A[47,18]=A[85,24]=A[55,33]=A[46,35]=A[46,36]=A[13,52]=A[60,61]=rgba(GP1,GP1,GP1,1) float GQ1 = 0.72549 A[11,16]=A[91,18]=A[25,30]=A[55,38]=A[83,60]=rgba(GQ1,GQ1,GQ1,1) float GR1 = 0.729412 A[41,14]=A[46,34]=A[46,37]=rgba(GR1,GR1,GR1,1) float GS1 = 0.733333 A[37,10]=A[83,14]=A[30,24]=rgba(GS1,GS1,GS1,1) float GT1 = 0.737255 A[10,37]=rgba(GT1,GT1,GT1,1) float GU1 = 0.741176 A[34,2]=A[37,2]=A[31,12]=A[2,35]=A[4,42]=A[18,69]=A[57,69]=rgba(GU1,GU1,GU1,1) float GV1 = 0.745098 A[30,13]=A[52,13]=A[2,37]=A[24,41]=rgba(GV1,GV1,GV1,1) float GW1 = 0.74902 A[26,17]=A[48,17]=A[2,18]=A[75,57]=A[91,69]=rgba(GW1,GW1,GW1,1) float GX1 = 0.752941 A[15,21]=A[57,30]=A[78,50]=rgba(GX1,GX1,GX1,1) float GY1 = 0.756863 A[0,0]=A[27,16]=A[49,16]=A[40,45]=A[9,49]=A[76,49]=A[79,51]=A[20,56]=A[51,60]=A[0,71]=rgba(GY1,GY1,GY1,1) float GZ1 = 0.760784 A[50,5]=A[67,9]=A[45,10]=A[66,10]=A[44,11]=A[65,11]=A[43,12]=A[28,15]=A[50,15]=A[26,18]=A[48,18]=A[82,20]=A[16,21]=A[83,21]=A[17,22]=A[84,22]=A[85,23]=A[53,26]=A[54,27]=A[55,28]=A[56,29]=A[23,32]=A[22,33]=A[21,34]=A[28,37]=A[27,38]=A[73,38]=A[26,39]=A[72,39]=A[71,40]=A[37,42]=A[38,43]=A[39,44]=A[10,50]=A[77,50]=A[11,51]=A[22,54]=A[21,55]=A[73,59]=A[72,60]=A[50,61]=A[71,61]=A[49,62]=A[70,62]=A[74,68]=rgba(GZ1,GZ1,GZ1,1) float HA1 = 0.764706 A[19,3]=A[91,3]=A[10,13]=A[14,20]=A[91,36]=A[68,52]=A[70,52]=A[68,64]=rgba(HA1,HA1,HA1,1) float HB1 = 0.768627 A[81,10]=A[18,23]=A[74,37]=A[48,63]=A[70,64]=rgba(HB1,HB1,HB1,1) float HC1 = 0.772549 A[64,12]=A[29,14]=A[51,14]=A[68,30]=A[20,35]=A[63,47]=A[64,48]=A[12,52]=rgba(HC1,HC1,HC1,1) float HD1 = 0.776471 A[48,31]=A[77,33]=A[25,40]=A[15,42]=A[19,57]=rgba(HD1,HD1,HD1,1) float HE1 = 0.780392 A[46,9]=A[13,10]=A[39,11]=A[40,15]=A[32,16]=A[39,16]=A[26,20]=A[45,20]=A[27,21]=A[44,21]=A[28,22]=A[43,22]=A[29,23]=A[28,27]=A[27,28]=A[26,29]=A[33,32]=A[32,33]=A[10,34]=A[76,34]=A[23,42]=A[22,43]=A[21,44]=A[20,45]=A[6,49]=A[65,49]=A[73,49]=A[5,50]=A[66,50]=A[72,50]=A[4,51]=A[67,51]=A[71,51]=A[60,54]=A[61,55]=A[76,56]=A[67,65]=A[71,65]=A[72,66]=A[73,67]=rgba(HE1,HE1,HE1,1) float HF1 = 0.784314 A[68,8]=A[34,10]=A[33,17]=A[38,17]=A[81,19]=A[29,26]=A[29,36]=A[70,41]=A[8,48]=A[75,48]=A[52,59]=A[14,61]=rgba(HF1,HF1,HF1,1) float HG1 = 0.788235 A[42,23]=A[12,31]=A[34,31]=A[7,48]=A[74,48]=A[77,55]=A[53,59]=A[69,63]=A[59,69]=rgba(HG1,HG1,HG1,1) float HH1 = 0.792157 A[32,11]=A[13,19]=A[31,34]=A[30,35]=A[15,40]=A[78,54]=A[62,56]=rgba(HH1,HH1,HH1,1) float HI1 = 0.796078 A[42,13]=A[31,15]=A[45,41]=A[74,58]=rgba(HI1,HI1,HI1,1) float HJ1 = 0.8 A[24,31]=A[11,32]=A[11,39]=A[69,53]=rgba(HJ1,HJ1,HJ1,1) float HK1 = 0.803922 A[80,52]=rgba(HK1,HK1,HK1,1) float HL1 = 0.807843 A[2,3]=A[39,3]=A[3,19]=A[50,44]=rgba(HL1,HL1,HL1,1) float HM1 = 0.811765 A[52,48]=A[41,57]=A[63,57]=A[10,58]=A[10,59]=rgba(HM1,HM1,HM1,1) float HN1 = 0.815686 A[90,40]=rgba(HN1,HN1,HN1,1) float HO1 = 0.819608 A[80,10]=A[16,11]=A[91,35]=A[77,60]=A[33,61]=rgba(HO1,HO1,HO1,1) float HP1 = 0.823529 A[91,2]=A[91,5]=A[91,6]=A[91,7]=A[91,8]=A[91,9]=A[91,10]=A[91,11]=A[10,12]=A[91,12]=A[91,13]=A[91,14]=A[91,15]=A[91,16]=A[90,31]=A[91,55]=A[91,56]=A[91,57]=A[91,58]=A[91,59]=A[91,60]=A[91,61]=A[91,62]=A[91,63]=A[91,64]=A[91,65]=A[91,66]=A[91,67]=A[2,69]=rgba(HP1,HP1,HP1,1) float HQ1 = 0.827451 A[23,53]=rgba(HQ1,HQ1,HQ1,1) float HR1 = 0.831373 A[91,4]=A[62,46]=A[79,53]=A[91,54]=A[79,61]=rgba(HR1,HR1,HR1,1) float HS1 = 0.835294 A[60,10]=A[45,30]=A[83,33]=A[59,53]=A[82,61]=A[42,67]=rgba(HS1,HS1,HS1,1) float HT1 = 0.839216 A[57,2]=A[59,2]=A[76,2]=A[43,5]=A[91,17]=A[11,55]=A[91,68]=A[35,69]=rgba(HT1,HT1,HT1,1) float HU1 = 0.843137 A[83,57]=rgba(HU1,HU1,HU1,1) float HV1 = 0.847059 A[5,28]=rgba(HV1,HV1,HV1,1) float HW1 = 0.85098 A[3,2]=A[4,2]=A[5,2]=A[6,2]=A[7,2]=A[8,2]=A[9,2]=A[10,2]=A[11,2]=A[12,2]=A[13,2]=A[14,2]=A[15,2]=A[16,2]=A[17,2]=A[18,2]=A[35,2]=A[36,2]=A[58,2]=A[77,2]=A[78,2]=A[79,2]=A[80,2]=A[81,2]=A[82,2]=A[83,2]=A[84,2]=A[85,2]=A[86,2]=A[87,2]=A[88,2]=A[89,2]=A[90,2]=A[2,5]=A[2,6]=A[2,7]=A[2,8]=A[2,9]=A[2,10]=A[2,11]=A[2,12]=A[2,13]=A[2,14]=A[2,15]=A[2,16]=A[82,17]=A[70,19]=A[2,55]=A[2,56]=A[2,57]=A[2,58]=A[2,59]=A[30,59]=A[2,60]=A[2,61]=A[2,62]=A[2,63]=A[2,64]=A[2,65]=A[2,66]=A[2,67]=A[3,69]=A[4,69]=A[5,69]=A[6,69]=A[7,69]=A[8,69]=A[9,69]=A[10,69]=A[11,69]=A[12,69]=A[13,69]=A[14,69]=A[15,69]=A[16,69]=A[17,69]=A[36,69]=A[58,69]=A[76,69]=A[77,69]=A[78,69]=A[79,69]=A[80,69]=A[81,69]=A[82,69]=A[83,69]=A[84,69]=A[85,69]=A[86,69]=A[87,69]=A[88,69]=A[89,69]=A[90,69]=rgba(HW1,HW1,HW1,1) float HX1 = 0.854902 A[2,4]=A[31,25]=A[49,29]=A[43,44]=A[68,54]=rgba(HX1,HX1,HX1,1) float HY1 = 0.858824 A[55,3]=A[64,34]=rgba(HY1,HY1,HY1,1) float HZ1 = 0.862745 A[75,3]=A[20,11]=A[32,26]=A[77,26]=A[18,45]=A[61,45]=A[2,54]=A[45,55]=A[67,55]=A[29,60]=A[2,68]=rgba(HZ1,HZ1,HZ1,1) float IA1 = 0.866667 A[22,9]=A[21,10]=A[74,15]=A[73,16]=A[2,17]=A[72,17]=A[60,20]=A[37,21]=A[61,21]=A[38,22]=A[62,22]=A[39,23]=A[9,25]=A[41,25]=A[76,25]=A[10,26]=A[11,27]=A[33,27]=A[12,28]=A[34,28]=A[78,29]=A[67,31]=A[66,32]=A[65,33]=A[16,43]=A[59,43]=A[81,43]=A[17,44]=A[60,44]=A[82,44]=A[83,45]=A[84,46]=A[54,48]=A[31,49]=A[55,49]=A[32,50]=A[56,50]=A[33,51]=A[57,51]=A[44,56]=A[66,56]=A[43,57]=A[65,57]=A[28,61]=A[27,62]=A[40,68]=rgba(IA1,IA1,IA1,1) float IB1 = 0.870588 A[33,3]=A[38,3]=A[61,3]=A[12,10]=A[14,30]=A[36,30]=A[19,36]=A[26,63]=rgba(IB1,IB1,IB1,1) float IC1 = 0.87451 A[56,3]=A[60,3]=A[19,12]=A[36,20]=A[46,54]=A[18,59]=rgba(IC1,IC1,IC1,1) float ID1 = 0.878431 A[40,24]=A[63,25]=rgba(ID1,ID1,ID1,1) float IE1 = 0.882353 A[35,19]=A[8,24]=A[75,24]=A[2,36]=A[34,52]=A[50,66]=rgba(IE1,IE1,IE1,1) float IF1 = 0.886275 A[2,2]=A[28,5]=A[23,8]=A[13,29]=A[35,29]=A[57,41]=A[30,46]=A[30,48]=A[28,66]=rgba(IF1,IF1,IF1,1) float IG1 = 0.890196 A[47,8]=A[59,19]=A[79,30]=A[79,41]=rgba(IG1,IG1,IG1,1) float IH1 = 0.894118 A[70,17]=A[85,47]=A[62,68]=rgba(IH1,IH1,IH1,1) float II1 = 0.898039 A[52,4]=A[56,10]=A[39,37]=A[3,39]=A[52,46]=A[58,52]=A[90,52]=A[47,53]=A[41,59]=A[63,59]=A[38,61]=A[64,67]=rgba(II1,II1,II1,1) float IJ1 = 0.901961 A[34,3]=A[37,3]=A[65,5]=A[49,6]=A[53,12]=A[34,18]=A[68,19]=A[43,27]=A[78,27]=A[48,40]=A[82,54]=A[54,60]=rgba(IJ1,IJ1,IJ1,1) float IK1 = 0.905882 A[83,11]=A[3,32]=A[58,42]=A[80,42]=A[89,42]=A[86,48]=rgba(IK1,IK1,IK1,1) float IL1 = 0.909804 A[69,18]=A[62,24]=A[89,29]=A[16,39]=A[53,47]=A[42,58]=A[64,58]=rgba(IL1,IL1,IL1,1) float IM1 = 0.913725 A[20,4]=A[21,5]=A[22,6]=A[48,7]=A[54,16]=A[55,17]=A[37,18]=A[4,20]=A[67,20]=A[71,20]=A[5,21]=A[66,21]=A[72,21]=A[6,22]=A[65,22]=A[73,22]=A[7,23]=A[74,23]=A[42,26]=A[64,26]=A[65,27]=A[66,28]=A[67,29]=A[15,31]=A[37,31]=A[3,33]=A[18,37]=A[17,38]=A[38,39]=A[78,40]=A[27,43]=A[28,44]=A[29,45]=A[42,45]=A[51,45]=A[51,49]=A[87,49]=A[50,50]=A[88,50]=A[49,51]=A[89,51]=A[48,52]=A[33,54]=A[38,54]=A[32,55]=A[39,55]=A[31,56]=A[40,56]=A[11,61]=rgba(IM1,IM1,IM1,1) float IN1 = 0.917647 A[53,15]=A[37,40]=rgba(IN1,IN1,IN1,1) float IO1 = 0.921569 A[12,18]=A[26,42]=A[62,60]=rgba(IO1,IO1,IO1,1) float IP1 = 0.92549 A[64,23]=rgba(IP1,IP1,IP1,1) float IQ1 = 0.929412 A[57,3]=A[59,3]=A[76,3]=A[23,7]=rgba(IQ1,IQ1,IQ1,1) float IR1 = 0.933333 A[3,3]=A[4,3]=A[5,3]=A[6,3]=A[7,3]=A[8,3]=A[9,3]=A[10,3]=A[11,3]=A[12,3]=A[13,3]=A[14,3]=A[15,3]=A[16,3]=A[17,3]=A[18,3]=A[35,3]=A[36,3]=A[58,3]=A[77,3]=A[78,3]=A[79,3]=A[80,3]=A[81,3]=A[82,3]=A[83,3]=A[84,3]=A[85,3]=A[86,3]=A[87,3]=A[88,3]=A[89,3]=A[90,3]=A[83,15]=A[71,18]=rgba(IR1,IR1,IR1,1) float IS1 = 0.937255 A[71,16]=A[31,27]=A[50,28]=A[59,41]=A[81,41]=A[5,43]=A[62,44]=A[31,47]=A[37,53]=A[75,59]=rgba(IS1,IS1,IS1,1) float IT1 = 0.941176 A[61,23]=A[77,28]=A[79,28]=A[84,36]=A[16,45]=A[85,45]=A[32,48]=A[53,49]=A[42,56]=A[64,56]=A[54,68]=rgba(IT1,IT1,IT1,1) float IU1 = 0.945098 A[23,10]=A[22,11]=A[21,12]=A[20,13]=A[10,14]=A[73,14]=A[72,15]=A[38,20]=A[39,21]=A[59,21]=A[40,22]=A[60,22]=A[9,27]=A[76,27]=A[10,28]=A[32,28]=A[11,29]=A[33,29]=A[68,32]=A[67,33]=A[66,34]=A[65,35]=A[60,42]=A[82,42]=A[61,43]=A[83,43]=A[84,44]=A[17,46]=A[33,49]=A[34,50]=A[54,50]=A[55,51]=A[56,52]=A[44,54]=A[66,54]=A[43,55]=A[65,55]=A[28,59]=A[27,60]=A[26,61]=A[25,62]=rgba(IU1,IU1,IU1,1) float IV1 = 0.94902 A[35,51]=rgba(IV1,IV1,IV1,1) float IW1 = 0.952941 A[24,9]=A[54,36]=A[15,44]=A[67,53]=rgba(IW1,IW1,IW1,1) float IX1 = 0.956863 A[14,10]=A[8,26]=A[75,26]=A[3,34]=A[3,38]=A[12,53]=A[34,53]=A[45,53]=A[29,58]=rgba(IX1,IX1,IX1,1) float IY1 = 0.960784 A[41,4]=A[19,14]=A[58,20]=A[63,23]=A[80,29]=A[58,62]=rgba(IY1,IY1,IY1,1) float IZ1 = 0.964706 A[30,4]=A[63,4]=A[38,10]=A[77,11]=A[37,19]=A[39,34]=A[52,67]=rgba(IZ1,IZ1,IZ1,1) float JA1 = 0.968627 A[25,8]=A[54,35]=A[84,35]=A[30,57]=A[32,68]=rgba(JA1,JA1,JA1,1) float JB1 = 0.972549 A[79,10]=A[74,13]=A[41,23]=A[48,32]=A[18,47]=A[36,52]=A[25,53]=A[10,57]=A[35,62]=rgba(JB1,JB1,JB1,1) float JC1 = 0.976471 A[82,10]=A[54,11]=A[57,19]=A[12,30]=A[34,30]=A[81,30]=A[69,31]=A[38,32]=A[55,61]=A[24,63]=A[19,68]=rgba(JC1,JC1,JC1,1) float JD1 = 0.980392 A[3,35]=A[3,37]=A[36,62]=rgba(JD1,JD1,JD1,1) float JE1 = 0.984314 A[18,12]=A[49,42]=A[24,54]=A[83,56]=A[10,60]=A[15,61]=rgba(JE1,JE1,JE1,1) float JF1 = 0.988235 A[90,32]=A[10,33]=A[90,39]=A[45,40]=A[63,45]=A[3,53]=A[39,68]=rgba(JF1,JF1,JF1,1) float JG1 = 0.992157 A[27,6]=A[44,6]=A[42,11]=A[29,16]=A[62,16]=A[15,18]=A[56,18]=A[15,22]=A[16,23]=A[44,29]=A[70,30]=A[82,31]=A[29,38]=A[62,38]=A[83,39]=A[14,43]=A[88,43]=A[19,48]=A[77,48]=A[78,49]=A[78,52]=A[23,55]=A[74,60]=A[43,66]=rgba(JG1,JG1,JG1,1) float JH1 = 0.996078 A[44,9]=A[11,10]=A[43,10]=A[68,10]=A[67,11]=A[41,12]=A[63,12]=A[66,12]=A[65,13]=A[51,16]=A[11,17]=A[16,17]=A[25,17]=A[28,17]=A[47,17]=A[50,17]=A[23,19]=A[81,21]=A[82,22]=A[19,23]=A[83,23]=A[17,24]=A[84,24]=A[54,25]=A[55,26]=A[56,27]=A[57,28]=A[22,31]=A[16,32]=A[21,32]=A[55,32]=A[20,33]=A[64,36]=A[73,36]=A[72,37]=A[75,37]=A[84,37]=A[10,38]=A[71,38]=A[90,38]=A[28,39]=A[55,39]=A[70,39]=A[77,39]=A[27,40]=A[56,40]=A[4,41]=A[36,43]=A[37,44]=A[38,45]=A[39,46]=A[9,47]=A[76,47]=A[10,48]=A[11,49]=A[29,49]=A[12,50]=A[13,51]=A[15,53]=A[22,56]=A[21,57]=A[51,58]=A[50,59]=A[49,60]=A[48,61]=A[73,61]=A[47,62]=A[72,62]=A[71,63]=rgba(JH1,JH1,JH1,1) 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int imageWidth = 94 int imageHeight = 72 int iwm1 = imageWidth - 1 int ihm1 = imageHeight - 1 complex imageCenter = iwm1/2.0 + flip(ihm1/2.0) float rSqr = (@myWidth*@myWidth)/4.0 float rToP = (@myWidth/2.0)^@tP if @imageAspectRatio < 1.0 rSqr = rSqr*@imageAspectRatio*@imageAspectRatio endif color myWhite = rgba(1,1,1,1) complex ilog = 1/log(@myPower) float logp = log(log(@myBailout)) if @convolFilter color B[94,72] float kernel[9] if @convolType == 0 ; custom kernel[0] = @NorthEast kernel[1] = @North kernel[2] = @NorthWest kernel[3] = @East kernel[4] = @Middle kernel[5] = @West kernel[6] = @SouthEast kernel[7] = @South kernel[8] = @SouthWest elseif @convolType == 1 ; smooth filtering kernel[0] = 1.0 kernel[1] = 2.0 kernel[2] = 1.0 kernel[3] = 2.0 kernel[4] = 4.0 kernel[5] = 2.0 kernel[6] = 1.0 kernel[7] = 2.0 kernel[8] = 1.0 elseif @convolType == 2 ; edge detection kernel[0] = 1.0 kernel[1] = 1.0 kernel[2] = 1.0 kernel[3] = 1.0 kernel[4] = -8.0 kernel[5] = 1.0 kernel[6] = 1.0 kernel[7] = 1.0 kernel[8] = 1.0 elseif @convolType == 3 || @convolType == 9; sharpen or unsharpen kernel[0] = 1.0 kernel[1] = 1.0 kernel[2] = 1.0 kernel[3] = 1.0 kernel[4] = -7.0 kernel[5] = 1.0 kernel[6] = 1.0 kernel[7] = 1.0 kernel[8] = 1.0 elseif @convolType == 4 ; edge detect 2 kernel[0] = 1.0 kernel[1] = 2.0 kernel[2] = 1.0 kernel[3] = 2.0 kernel[4] = -12.0 kernel[5] = 2.0 kernel[6] = 1.0 kernel[7] = 2.0 kernel[8] = 1.0 elseif @convolType == 5 ; X Slope kernel[0] = -1.0 kernel[1] = 0.0 kernel[2] = 1.0 kernel[3] = -1.0 kernel[4] = 0.0 kernel[5] = 1.0 kernel[6] = -1.0 kernel[7] = 0.0 kernel[8] = 1.0 elseif @convolType == 6 ; Y Slope kernel[0] = 1.0 kernel[1] = 1.0 kernel[2] = 1.0 kernel[3] = 0.0 kernel[4] = 0.0 kernel[5] = 0.0 kernel[6] = -1.0 kernel[7] = -1.0 kernel[8] = -1.0 elseif @convolType == 7 ; Soften kernel[0] = 1.0 kernel[1] = 1.0 kernel[2] = 1.0 kernel[3] = 1.0 kernel[4] = 1.0 kernel[5] = 1.0 kernel[6] = 1.0 kernel[7] = 1.0 kernel[8] = 1.0 else kernel[0] = -2.0 kernel[1] = -1.0 kernel[2] = 0.0 kernel[3] = -1.0 kernel[4] = 1.0 kernel[5] = 1.0 kernel[6] = 0.0 kernel[7] = 1.0 kernel[8] = 2.0 endif float mySum = 0.0 ; take care of edge pixels first mySum = kernel[4] + kernel[5] + kernel[7] + kernel[8] B[0,0] = A[0,0]*kernel[4] + A[0,1]*kernel[5] + A[1,0]*kernel[7] + A[1,1]*kernel[8] if mySum != 0.0 B[0,0] = B[0,0]/mySum endif mySum = kernel[0] + kernel[1] + kernel[3] + kernel[4] B[93,71] = A[93,71]*kernel[4] + A[92,71]*kernel[1] + A[93,70]*kernel[3] + A[92,70]*kernel[0] if mySum != 0.0 B[93,71] = B[93,71]/mySum endif mySum = kernel[1] + kernel[2] + kernel[4] + kernel[5] B[93,0] = A[93,0]*kernel[4] + A[93,1]*kernel[5] + A[92,0]*kernel[1] + A[92,1]*kernel[2] if mySum != 0.0 B[93,0] = B[93,0]/mySum endif mySum = kernel[3] + kernel[4] + kernel[6] + kernel[7] B[0,71] = A[0,71]*kernel[4] + A[0,70]*kernel[3] + A[1,71]*kernel[7] + A[1,70]*kernel[6] if mySum != 0.0 B[0,71] = B[0,71]/mySum endif ; now do whole rows int i = 0 int j = 1 mySum = kernel[3] + kernel[4] + kernel[5] + kernel[6] + kernel[7] + kernel[8] while j < 71 B[0,j] = A[0,j]*kernel[4] + A[0,j-1]*kernel[3] + A[0,j+1]*kernel[5] +\ A[1,j]*kernel[7] + A[1,j-1]*kernel[6] + A[1,j+1]*kernel[8] if mySum != 0 B[0,j] = B[0,j]/mySum endif j = j + 1 endwhile j = 1 mySum = kernel[0] + kernel[1] + kernel[2] + kernel[3] + kernel[4] + kernel[5] while j < 71 B[93,j] = A[93,j]*kernel[4] + A[93,j-1]*kernel[3] + A[93,j+1]*kernel[5] +\ A[92,j]*kernel[1] + A[92,j-1]*kernel[0] + A[92,j+1]*kernel[2] if mySum != 0 B[93,j] = B[93,j]/mySum endif j = j + 1 endwhile i = 1 mySum = kernel[1] + kernel[2] + kernel[4] + kernel[5] + kernel[7] + kernel[8] while i < 93 B[i,0] = A[i,0]*kernel[4] + A[i-1,0]*kernel[1] + A[i+1,0]*kernel[7] +\ A[i,1]*kernel[5] + A[i-1,1]*kernel[2] + A[i+1,1]*kernel[8] if mySum != 0 B[i,0] = B[i,0]/mySum endif i = i + 1 endwhile i = 1 mySum = kernel[0]+kernel[1] + kernel[3] + kernel[4] + kernel[6] + kernel[7] while i < 93 B[i,71] = A[i,71]*kernel[4] + A[i-1,71]*kernel[1] + A[i+1,71]*kernel[7] +\ A[i,70]*kernel[3] + A[i-1,70]*kernel[0] + A[i+1,70]*kernel[6] if mySum != 0.0 B[i,71] = B[i,71]/mySum endif i = i + 1 endwhile ; now do inside pixels i = 0 mySum = 0.0 while i < 9 mySum = mySum + kernel[i] i = i + 1 endwhile i = 1 j = 1 while i < 93 j = 1 while j < 71 B[i,j] = A[i-1,j-1]*kernel[0] + A[i-1,j]*kernel[1] + A[i-1,j+1]*kernel[2] +\ A[i,j-1]*kernel[3] + A[i,j]*kernel[4] + A[i,j+1]*kernel[5] +\ A[i+1,j-1]*kernel[6] + A[i+1,j]*kernel[7] + A[i+1,j+1]*kernel[8] if mySum != 0.0 B[i,j] = B[i,j]/mySum endif j = j + 1 endwhile i = i + 1 endwhile if @convolTrans == 0 ; opaque i = 0 j = 0 while i < 94 j = 0 while j < 72 B[i,j] = rgba(red(B[i,j]), green(B[i,j]), blue(B[i,j]), 1.0) j = j + 1 endwhile i = i + 1 endwhile elseif @convolTrans == 2 i = 0 j = 0 while i < 94 j = 0 while j < 72 B[i,j] = rgba(red(B[i,j]), green(B[i,j]), blue(B[i,j]), lum(B[i,j])) j = j + 1 endwhile i = i + 1 endwhile endif if @convolType != 9 A = B else i = 0 j = 0 while i < 94 j = 0 while j < 72 A[i,j] = compose(A[i,j], blend(B[i,j]*@unsharpDeg, mergesubtraction(A[i,j], B[i,j]*@unsharpDeg), alpha(A[i,j])), 1.0) j = j + 1 endwhile i = i + 1 endwhile endif endif complex rotValue = exp(flip(@myRotation/180.0*#pi)) init: complex minZ = (1.0E20, 1.0E20) complex maxZ = (0,0) complex firstZ = rotValue*(#pixel - @myCenter) complex lastZ = rotValue*(#pixel - @myCenter) complex avgZ = 0.0 int totalPts = 0 bool found = false bool first = true int iterCount = 1 complex iterArray[#maxiter+1] int iterIndex=0 loop: complex newZ = rotValue*(#z - @myCenter) bool foundNow = false if @colorMethod == 0 minZ = newZ elseif @colorMethod == 1 if iterCount >= @startIter if @trapShape == 0 foundNow = ((abs(real(newZ)) <= @myWidth/2.0) && (abs(imag(newZ)) <= @myWidth*@imageAspectRatio/2.0)) elseif @trapShape == 1 foundNow = (| newZ | <= rSqr) else float myX = real(newZ)/@tA float myY = imag(newZ)/@tB/@imageAspectRatio foundNow = myX^@tP + myY^@tP <= rToP endif endif iterCount = iterCount + 1 if foundNow found = true if |newZ| <= | minZ | minZ = newZ endif if |newZ| >= | maxZ | maxZ = newZ endif if first firstZ = newZ first = false endif lastZ = newZ avgZ = avgZ + newZ totalPts = totalPts + 1 endif elseif @colorMethod == 2 iterArray[iterIndex] = #z iterIndex = iterIndex + 1 endif final: float XIndex = 0.0 float YIndex = 0.0 complex ZToUse = (0,0) color current=@myBaseColor if @colorMethod == 0 ZToUse = minZ elseif @colorMethod == 1 if @colorBy == 0 ZToUse = minZ elseif @colorBy == 1 ZToUse = maxZ elseif @colorBy == 2 ZToUse = firstZ elseif @colorBy == 3 ZToUse = lastZ else if totalPts != 0 ZToUse = avgZ/totalPts endif endif elseif @colorMethod == 2 iterArray[iterIndex] = #z iterIndex = iterIndex - @oldIters if iterIndex < 0 iterIndex = 0 endif ZToUse = iterArray[iterIndex] complex zCalc = #z if @changeStyle && @oldIters > 0 zCalc = ZToUse endif float f = real(ilog*logp - ilog*log(log(cabs(zCalc)))) float d = atan2(ZToUse) if (d < 0) d = d + #pi * 2 endif d = d / (#pi * 2) d = d + @ciliaSkew*f d = d - floor(d) if (@ciliaMode == 0) if (d < 0.5) d = d * (f+1) else d = (d-0.5) * (f+1) - f/2 + 0.5 endif d = abs(1-d*2) elseif (@ciliaMode == 1) float d1 = abs(1-d*2) float d2 = abs(1-(d*real(2.0)-floor(d*real(2.0)))*2) d = d1 + f*(d2-d1) elseif (@ciliaMode == 2) float d1 = cos(d*#pi*2)*0.5 + 0.5 float d2 = cos(d*#pi*2*real(2.0))*0.5 + 0.5 d = d1 + f*(d2-d1) elseif (@ciliaMode == 3) d = ((0.25-sqr(d-0.5)) * (0.25-sqr(f-0.5))) * 16 elseif (@ciliaMode == 4) float d1 = 1 - abs(d-0.5)*2 float d2 = 1 - abs(f-0.5)*2 if (d1 < d2) d = d1 else d = d2 endif elseif (@ciliaMode == 5) d = 0.5 - abs(d - 0.5) if (f < 2.0/3.0) d = d + f*0.75 d = abs(1-d*2) else if (d < f*0.75-0.5) d = f*3-2-d*4 else d = 1-(0.5-d)/(1-f*0.75) endif endif endif d = d % 1.0 if d < 0.0 d = d + 1.0 endif f = f % 1.0 if f < 0.0 f = f + 1.0 endif d = d - 0.5 f = f - 0.5 if @ciliaReverse ZToUse = d + flip(f) else ZToUse = f + flip(d) endif endif bool useBaseColor=false if @colorMethod == 0 XIndex = (real(ZToUse)/@myWidth*iwm1 + real(imageCenter))%iwm1 if XIndex < 0 XIndex = XIndex + iwm1 endif YIndex = (-imag(ZToUse)/(@myWidth*@imageAspectRatio)*ihm1 + imag(imageCenter))%ihm1 if YIndex < 0 YIndex = YIndex + ihm1 endif elseif @colorMethod == 1 if found if @trapShape == 0 XIndex = real(ZToUse)/@myWidth*iwm1 + real(imageCenter) YIndex = -imag(ZToUse)/(@myWidth*@imageAspectRatio)*ihm1 + imag(imageCenter) elseif @trapShape == 1 XIndex = real(ZToUse)/@myWidth*iwm1 + real(imageCenter) YIndex = -imag(ZToUse)/@myWidth*iwm1 + imag(imageCenter) else XIndex = real(ZToUse)/@tA/@myWidth*iwm1 + real(imageCenter) YIndex = -imag(ZToUse)/@tB/(@myWidth*@imageAspectRatio)*ihm1 + imag(imageCenter) endif else useBaseColor = true endif elseif @colorMethod == 2 XIndex = real(ZToUse)*iwm1 + real(imageCenter) YIndex = -imag(ZToUse)*ihm1 + imag(imageCenter) endif if !useBaseColor if XIndex >= 0 && XIndex < imageWidth && YIndex >= 0 && YIndex < imageHeight int xi = floor(XIndex) int yi = floor(YIndex) color x1 = A[xi,yi] color x2 = x1 color x3 = x1 color x4 = x1 if XIndex < iwm1 x2 = A[xi + 1, yi] if YIndex < ihm1 x3 = A[xi, yi + 1] x4 = A[xi + 1, yi + 1] else x4 = x2 endif elseif YIndex < ihm1 x3 = A[xi, yi+1] x4 = x3 endif XIndex=XIndex-xi color blend1 = blend(x1, x2, XIndex) color blend2 = blend(x3, x4, XIndex) color blend3 = blend(blend1, blend2, YIndex - yi) current = blend3 if @invertColor current = compose(current, blend(myWhite, mergedifference(current, myWhite), alpha(current)), @invertOpacity) endif if @createMask if @maskTransparency == 0 current = hsla(0.0, 0.0, lum(current), 1.0) elseif @maskTransparency == 1 current = hsla(0.0, 0.0, lum(current), alpha(current)) else current = hsla(0.0, 0.0, lum(current), lum(current)) endif endif if @topDown current = compose(@myBaseColor, blend(current, @trapmergemode(@myBaseColor, current), alpha(@myBaseColor)), @trapmergeopacity) else current = compose(current, blend(@myBaseColor, @trapmergemode(current, @myBaseColor), alpha(current)), @trapmergeopacity) endif endif elseif @useSolid #solid = true endif #color = current default: heading caption = "Method Choices" endheading param colorMethod caption = "Coloring Method" enum = "Tiling " "Trap " "Cilia " default = 1 hint = "Determines coloring method used." endparam param myCenter caption = "Picture Center" default = (0,0) hint = "Center of picture in fractal units" visible = @colorMethod <= 1 endparam param myWidth caption = "Picture Width" default = 2.0 hint = "Width of picture in pixel units." visible = @colorMethod <= 1 endparam param imageAspectRatio caption = "Image Aspect Ratio" default = 0.765957 hint = "Change this to stretch the picture." visible = @colorMethod <= 1 endparam param trapShape caption = "Trap Shape" enum = "rectangle " "circle " "General " default = 0 hint = "Determines shape of picture drawn." visible = @colorMethod == 1 endparam param tP caption = "Power" default = 2.0 hint = "Changes power used in general equation" visible = @colorMethod == 1 && @trapShape == 2 endparam param tA caption = "A" default = 1.0 hint = "X Axis Parameter in general equation" visible = @colorMethod == 1 && @trapShape == 2 endparam param tB caption = "B" default = 1.0 hint = "Y Axis Parameter in general equation" visible = @colorMethod == 1 && @trapShape == 2 endparam param startIter caption = "Start Iteration" default = 1 hint = "Only trap points starting with this iteration." visible = @colorMethod == 1 endparam param startIter caption = "Start Iteration" default = 1 hint = "Only trap points starting with this iteration." visible = @colorMethod == 1 endparam param myPower caption = "Formula Power" default = 2.0 hint = "Should be the same as the power of the formula." visible = @colorMethod == 2 endparam param myBailout caption = "Formula Bailout" default = 128.0 hint = "Should be the same as the formula of the bailout." visible = @colorMethod == 2 endparam param ciliaMode caption = "Cilia Mode" enum = "sawtooth " "interpolated " "sine waves " "cells " "bricks " "diamonds " default = 0 hint = "Determines pattern of the cilia." visible = @colorMethod == 2 endparam param ciliaSkew caption = "Cilia Skew" default = 0.0 hint = "Cilia Skew amount" visible = @colorMethod == 2 endparam param oldIters caption = "Older iterations" default = 0 hint = "How many older iterations to use" visible = @colorMethod == 2 endparam param changeStyle caption = "Change Style?" default = false hint = "Slightly different calculations when old iterations > 0" visible = @colorMethod == 2 && @oldIters > 0 endparam param ciliaReverse caption = "Reverse?" default = true hint = "Reverses x and y used to determine pixel" visible = @colorMethod == 2 endparam param colorBy caption = "Color By..." enum = "Minimum Z " "Maximum Z " "First Z " "Last Z " "Average Z " default = 0 hint = "Which variable is used to determine pixel color." visible = @colorMethod == 1 endparam heading caption = "Color Parameters" endheading color param myBaseColor caption = "Base Color" default = rgba(0,0,0,1) hint = "Picture is merged with this base color" endparam color func trapmergemode caption = "Color Merge Mode" default = mergenormal() hint = "Determines how the picture's colors are merged with the base color" endfunc param topDown caption = "Top Down" default = true hint = "If on, the picture is merged on top of the base color." endparam param trapmergeopacity caption = "Trap Merge Opacity" default = 1.0 hint = "Sets the opacity of the trap shape." endparam param useSolid caption = "Use Solid For Outside?" default = false hint = "If true, the color outside the picture is set to the chosen solid color." endparam heading caption = "Effects" endheading param invertColor caption = "Invert Color" default = false hint = "Has the effect of subtracting each pixel from pure white." endparam param invertOpacity caption = "Invert Opacity" default = 1.0 hint = "Each pixel is subtracted from a white color having this opacity" visible = @invertColor endparam param createMask caption = "Create Mask" default = false hint = "Turns image into grayscale image with opacity linked to luminance." endparam param maskTransparency caption = "Mask Transparency" enum = "None " "original " "luminance " default = 0 hint = "Determines transparency used for mask." visible = @createMask endparam param convolFilter caption = "Basic Filtering" default = false hint = "If on, image is put through some basic filtering before any other effects." endparam param convolType caption = "Filter Type" enum = "Custom " "Smoothing " "Edge Detect " "Sharpen " "Edge Detect 2 " "X Slope " "Y Slope " "Soften " "Emboss " "Unsharpen " default = 1 hint = "Type of Filter" visible = @convolFilter endparam param unsharpDeg caption = "Unsharpening Amount" default = 0.5 hint = "Choose 1.0 for more unsharpening, 0 for none." visible = @convolFilter && @convolType == 9 min = 0.0 max = 1.0 endparam param NorthEast caption = "NE" default = 1.0 hint = "Upper left of kernel." visible = @convolType == 0 && @convolFilter endparam param North caption = "N" default = 1.0 hint = "Upper middle of kernel." visible = @convolType == 0 && @convolFilter endparam param NorthWest caption = "NW" default = 1.0 hint = "Upper right of kernel." visible = @convolType == 0 && @convolFilter endparam param East caption = "E" default = 1.0 hint = "Middle East of kernel." visible = @convolType == 0 && @convolFilter endparam param Middle caption = "Center" default = 1.0 hint = "Middle Center of kernel." visible = @convolType == 0 && @convolFilter endparam param West caption = "W" default = 1.0 hint = "Middle west of kernel." visible = @convolType == 0 && @convolFilter endparam param SouthEast caption = "SE" default = 1.0 hint = "lower left of kernel." visible = @convolType == 0 && @convolFilter endparam param South caption = "S" default = 1.0 hint = "lower middle of kernel." visible = @convolType == 0 && @convolFilter endparam param SouthWest caption = "SW" default = 1.0 hint = "lower right of kernel." visible = @convolType == 0 && @convolFilter endparam param convolTrans caption = "Filter Transparency" enum = "Opaque " "Filter " "Luminance " default = 0 hint = "Determines final transparency of each pixel in the filtered image.\If Opaque = pixel is not transparent at all.\If Filter = transparency is combination of transparencies of pixels around it\If filter = Luminance, transparency is based on luminance value of pixel." visible = @convolFilter endparam param myRotation caption = "Rotation" default = 0.0 hint = "Rotates picture by this value (in degrees) independant of the rotation selected in the location tab." endparam title = "knot" } Direction(OUTSIDE) { init: l1=(0,0) l2=(0,0) l3=(0,0) l4=(0,0) int i=0 loop: i=i+1 if i>0 && i<5 l1=l2 l2=l3 l3=l4 l4=#z endif final: if |l4|<|l3| if |l1|<|l2| && |l2|<|l3| #color=gradient(0.05) elseif |l1|<|l2| && |l2|>|l3| #color=gradient(0.1) elseif |l1|>|l2| && |l2|>|l3| #color=gradient(0.15) elseif |l1|>|l2| && |l2|<|l3| #color=gradient(0.2) elseif |l1|==|l2| && |l2|==|l3| #color=gradient(0.25) else #color=gradient(0) endif endif if |l4|>|l3| if |l1|<|l2| && |l2|<|l3| #color=gradient(0.3) elseif |l1|<|l2| && |l2|>|l3| #color=gradient(0.35) elseif |l1|>|l2| && |l2|>|l3| #color=gradient(0.4) elseif |l1|>|l2| && |l2|<|l3| #color=gradient(0.45) elseif |l1|==|l2| && |l2|==|l3| #color=gradient(0.5) else #color=gradient(0) endif endif if |l4|==|l3| if |l1|<|l2| && |l2|<|l3| #color=gradient(0.55) elseif |l1|<|l2| && |l2|>|l3| #color=gradient(0.6) elseif |l1|>|l2| && |l2|>|l3| #color=gradient(0.65) elseif |l1|>|l2| && |l2|<|l3| #color=gradient(0.7) elseif |l1|==|l2| && |l2|==|l3| #color=gradient(0.75) else #color=gradient(0) endif endif default: title = "Direction" } Speckle8 { ;creates background/wallpaper - use with pixel formula init: float t=0 if @Method==0 t=trunc(((#x+@XOffset)+(#y+@YOffset))/@Magnifier) elseif @Method==1 t=trunc(((#x+@XOffset)-(#y+@YOffset))/@Magnifier) elseif @Method==2 t=trunc(((#x+@XOffset)*(#y+@YOffset))/@Magnifier) elseif @Method==3 t=trunc(((#x+@XOffset)/(#y+@YOffset))/@Magnifier) elseif @Method==4 t=trunc(((#x+@XOffset)%(#y+@YOffset))/@Magnifier) elseif @Method==5 t=trunc(|(#x+@XOffset)+flip((#y+@YOffset))|/@Magnifier) elseif @Method==6 t=trunc(cabs((#x+@XOffset)+flip((#y+@YOffset)))/@Magnifier) endif loop: final: #index=(t%@Modulus)/@Divisor default: title = "Speckle8" int param Modulus default=10 endparam int param Divisor default=10 endparam param Method enum="Add""Subtract""Multiply""Divide""Mod""|Complex|""cabs(Complex)" default=2 endparam int param Magnifier min=1 default=1 endparam int param XOffset default=0 endparam int param YOffset default=0 endparam heading caption="Also vary color density & transfer function" endheading } Speckly4U { ;creates background/wallpaper - use with pixel formula init: float t=0 float x=0 float m=1 float d=0 if @Method==0 t=trunc(((#x+@XOffset)+(#y+@YOffset))/@Magnifier) elseif @Method==1 t=trunc(((#x+@XOffset)-(#y+@YOffset))/@Magnifier) elseif @Method==2 t=trunc(((#x+@XOffset)*(#y+@YOffset))/@Magnifier) elseif @Method==3 t=trunc(((#x+@XOffset)/(#y+@YOffset))/@Magnifier) elseif @Method==4 t=trunc(((#x+@XOffset)%(#y+@YOffset))/@Magnifier) elseif @Method==5 t=trunc(|(#x+@XOffset)+flip((#y+@YOffset))|/@Magnifier) elseif @Method==6 t=trunc(cabs((#x+@XOffset)+flip((#y+@YOffset)))/@Magnifier) endif repeat repeat x=trunc(t/m) d=d+x%@modulus m=m*10 until x/m<10 t=d d=0 m=1 until t<10 loop: final: #index=t/10 default: title = "Speckly 4 U" int param Modulus caption="Modulus (2-10)" default=10 max=10 endparam param Method enum="Add""Subtract""Multiply""Divide""Mod""|Complex|""cabs(Complex)" default=2 endparam int param Magnifier min=1 default=1 endparam int param XOffset default=0 endparam int param YOffset default=0 endparam heading caption="Also vary color density & transfer function" endheading } TestTheWaters { init: int i=0 p=(0,0) loop: if @Loop==true && i<=@Iteration p=#z endif i=i+1 final: if@Loop==true #index=((|#pixel*p|)%@Modulus)/@Divisor else #index=((|#pixel*#z|)%@Modulus)/@Divisor endif default: title = "Test The Waters" int param Modulus default=10 endparam float param Divisor default=10 endparam int param Iteration visible=@Loop default=#maxiter min=0 endparam bool param Loop caption="Calculate loop values?" default=false endparam } YTrace { ;Intended as an alternative to Raytrace (spr.ucl) ;and Texture Raytrace (reb.ucl) init: p=recip(#pixel) q=recip(#z) loop: final: if #numiter>0 #index=log(exp(cabs(@f1(p*q)))/#numiter)/@divisor else #index=log(exp(cabs(@f1(p*q))))/@divisor endif default: title = "YTrace" param Divisor default=1 endparam func f1 default=sin() endfunc } Rhop { ;creates background/wallpaper - use with pixel formula init: float i=0 float t=0 if @Method==0 t=trunc(((#x+@XOffset)+(#y+@YOffset))/@Magnifier) elseif @Method==1 t=trunc(((#x+@XOffset)-(#y+@YOffset))/@Magnifier) elseif @Method==2 t=trunc(((#x+@XOffset)*(#y+@YOffset))/@Magnifier) elseif @Method==3 t=trunc(((#x+@XOffset)/(#y+@YOffset))/@Magnifier) elseif @Method==4 t=trunc(((#x+@XOffset)%(#y+@YOffset))/@Magnifier) elseif @Method==5 t=trunc(|(#x+@XOffset)+flip((#y+@YOffset))|/@Magnifier) elseif @Method==6 t=trunc(cabs((#x+@XOffset)+flip((#y+@YOffset)))/@Magnifier) endif float s=t repeat i=i+1 t=t^@Power%@Modulus t=t^@Power%@Modulus s=s^@Power%@Modulus until s==t loop: final: #index=i/10 default: title = "Rhop" param Method enum="Add""Subtract""Multiply""Divide""Mod""|Complex|""cabs(Complex)" default=2 endparam int param Modulus min=1 default=100 endparam int param Power default=2 endparam int param Magnifier min=1 default=1 endparam int param XOffset default=0 endparam int param YOffset default=0 endparam } Depths { init: float a[#width,#height] float y=#y float rcolor=y/#height int i=0 bool v=true if a[#x,#y]!=0 v=false else a[#x,#y]=rcolor endif loop: if v==true i=i+1 a[#x,#y+i]=rcolor endif final: #index=a[#x,#y] default: title = "Depths" } SpeedyGonzalez(OUTSIDE) { init: float speed=0 ; float oldspeed=0 a=#pixel loop: speed=cabs(@f1(#z/a)) final: #index=speed/10 default: func f1 default=log() endfunc title = "Speedy Gonzalez" } BiomorphDefinition { init: loop: final: if real(#z)<@scale || imag(#z)<@scale #index=|#z|/@scale else #solid=true endif default: title = "Biomorph Definition" int param scale default=10 endparam }