// Library = EvoApprox8b // Circuit = mul8_410 // Area (180) = 5960 // Delay (180) = 3.880 // Power (180) = 2594.10 // Area (45) = 434 // Delay (45) = 1.400 // Power (45) = 225.00 // Nodes = 99 // HD = 318672 // MAE = 186.89563 // MSE = 54876.71094 // MRE = 4.56 % // WCE = 920 // WCRE = 100 % // EP = 97.8 % module mul8_410(A, B, O); input [7:0] A; input [7:0] B; output [15:0] O; wire [2031:0] N; assign N[0] = A[0]; assign N[1] = A[0]; assign N[2] = A[1]; assign N[3] = A[1]; assign N[4] = A[2]; assign N[5] = A[2]; assign N[6] = A[3]; assign N[7] = A[3]; assign N[8] = A[4]; assign N[9] = A[4]; assign N[10] = A[5]; assign N[11] = A[5]; assign N[12] = A[6]; assign N[13] = A[6]; assign N[14] = A[7]; assign N[15] = A[7]; assign N[16] = B[0]; assign N[17] = B[0]; assign N[18] = B[1]; assign N[19] = B[1]; assign N[20] = B[2]; assign N[21] = B[2]; assign N[22] = B[3]; assign N[23] = B[3]; assign N[24] = B[4]; assign N[25] = B[4]; assign N[26] = B[5]; assign N[27] = B[5]; assign N[28] = B[6]; assign N[29] = B[6]; assign N[30] = B[7]; assign N[31] = B[7]; PDKGENNAND3X1 n32(.A(N[18]), .B(N[12]), .C(N[0]), .Y(N[32])); assign N[33] = N[32]; PDKGENMUX2X1 n34(.A(N[18]), .B(N[16]), .S(N[22]), .Y(N[34])); PDKGENNOR3X1 n38(.A(N[22]), .B(N[34]), .C(N[2]), .Y(N[38])); assign N[39] = N[38]; PDKGENHAX1 n40(.A(N[18]), .B(N[39]), .YS(N[40]), .YC(N[41])); PDKGENNPDKGENOR2X1 n42(.A(N[33]), .B(N[24]), .Y(N[42])); PDKGENBUFX2 n46(.A(N[26]), .Y(N[46])); PDKGENNAND3X1 n48(.A(N[46]), .B(N[14]), .C(N[6]), .Y(N[48])); assign N[49] = N[48]; PDKGENOR2X1 n50(.A(N[41]), .B(N[32]), .Y(N[50])); assign N[51] = N[50]; PDKGENNPDKGENOR2X1 n54(.A(N[33]), .B(N[42]), .Y(N[54])); PDKGENBUFX2 n56(.A(N[33]), .Y(N[56])); assign N[57] = N[56]; PDKGENINVX1 n60(.A(N[49]), .Y(N[60])); assign N[61] = N[60]; PDKGENNPDKGENOR2X1 n72(.A(N[49]), .B(N[46]), .Y(N[72])); assign N[73] = N[72]; PDKGENBUFX2 n76(.A(N[61]), .Y(N[76])); assign N[77] = N[76]; PDKGENAND2X1 n82(.A(N[39]), .B(N[76]), .Y(N[82])); assign N[83] = N[82]; PDKGENNPDKGENOR2X1 n96(.A(N[57]), .B(N[14]), .Y(N[96])); assign N[97] = N[96]; PDKGENHAX1 n120(.A(N[97]), .B(N[54]), .YS(N[120]), .YC(N[121])); PDKGENAOI21X1 n146(.A(N[83]), .B(N[51]), .C(N[121]), .Y(N[146])); PDKGENBUFX2 n224(.A(N[73]), .Y(N[224])); assign N[225] = N[224]; PDKGENMUX2X1 n242(.A(N[121]), .B(N[146]), .S(N[225]), .Y(N[242])); assign N[243] = N[242]; PDKGENAND2X1 n264(.A(N[12]), .B(N[18]), .Y(N[264])); PDKGENAND2X1 n282(.A(N[14]), .B(N[18]), .Y(N[282])); PDKGENBUFX2 n376(.A(N[41]), .Y(N[376])); assign N[377] = N[376]; PDKGENHAX1 n398(.A(N[77]), .B(N[264]), .YS(N[398]), .YC(N[399])); PDKGENHAX1 n414(.A(N[399]), .B(N[282]), .YS(N[414]), .YC(N[415])); PDKGENAND2X1 n498(.A(N[8]), .B(N[20]), .Y(N[498])); PDKGENAND2X1 n514(.A(N[10]), .B(N[20]), .Y(N[514])); PDKGENAND2X1 n532(.A(N[12]), .B(N[20]), .Y(N[532])); PDKGENAND2X1 n548(.A(N[14]), .B(N[20]), .Y(N[548])); PDKGENOR2X1 n632(.A(N[377]), .B(N[498]), .Y(N[632])); assign N[633] = N[632]; PDKGENOR2X1 n648(.A(N[398]), .B(N[514]), .Y(N[648])); PDKGENHAX1 n664(.A(N[414]), .B(N[532]), .YS(N[664]), .YC(N[665])); PDKGENFAX1 n682(.A(N[415]), .B(N[548]), .C(N[665]), .YS(N[682]), .YC(N[683])); PDKGENAND2X1 n748(.A(N[6]), .B(N[22]), .Y(N[748])); assign N[749] = N[748]; PDKGENAND2X1 n764(.A(N[8]), .B(N[22]), .Y(N[764])); PDKGENAND2X1 n782(.A(N[10]), .B(N[22]), .Y(N[782])); PDKGENAND2X1 n798(.A(N[12]), .B(N[22]), .Y(N[798])); PDKGENAND2X1 n814(.A(N[14]), .B(N[22]), .Y(N[814])); PDKGENAND2X1 n882(.A(N[632]), .B(N[748]), .Y(N[882])); PDKGENHAX1 n898(.A(N[648]), .B(N[764]), .YS(N[898]), .YC(N[899])); PDKGENFAX1 n914(.A(N[664]), .B(N[782]), .C(N[899]), .YS(N[914]), .YC(N[915])); PDKGENFAX1 n932(.A(N[682]), .B(N[798]), .C(N[915]), .YS(N[932]), .YC(N[933])); PDKGENFAX1 n948(.A(N[683]), .B(N[814]), .C(N[933]), .YS(N[948]), .YC(N[949])); PDKGENAND2X1 n998(.A(N[4]), .B(N[24]), .Y(N[998])); PDKGENAND2X1 n1014(.A(N[6]), .B(N[24]), .Y(N[1014])); PDKGENAND2X1 n1032(.A(N[8]), .B(N[24]), .Y(N[1032])); PDKGENAND2X1 n1048(.A(N[10]), .B(N[24]), .Y(N[1048])); PDKGENAND2X1 n1064(.A(N[12]), .B(N[24]), .Y(N[1064])); PDKGENAND2X1 n1082(.A(N[14]), .B(N[24]), .Y(N[1082])); PDKGENHAX1 n1132(.A(N[882]), .B(N[998]), .YS(N[1132]), .YC(N[1133])); PDKGENFAX1 n1148(.A(N[898]), .B(N[1014]), .C(N[1133]), .YS(N[1148]), .YC(N[1149])); PDKGENFAX1 n1164(.A(N[914]), .B(N[1032]), .C(N[1149]), .YS(N[1164]), .YC(N[1165])); PDKGENFAX1 n1182(.A(N[932]), .B(N[1048]), .C(N[1165]), .YS(N[1182]), .YC(N[1183])); PDKGENFAX1 n1198(.A(N[948]), .B(N[1064]), .C(N[1183]), .YS(N[1198]), .YC(N[1199])); PDKGENFAX1 n1214(.A(N[949]), .B(N[1082]), .C(N[1199]), .YS(N[1214]), .YC(N[1215])); PDKGENAND2X1 n1248(.A(N[2]), .B(N[26]), .Y(N[1248])); PDKGENAND2X1 n1264(.A(N[4]), .B(N[26]), .Y(N[1264])); PDKGENAND2X1 n1282(.A(N[6]), .B(N[26]), .Y(N[1282])); PDKGENAND2X1 n1298(.A(N[8]), .B(N[26]), .Y(N[1298])); PDKGENAND2X1 n1314(.A(N[10]), .B(N[26]), .Y(N[1314])); PDKGENAND2X1 n1332(.A(N[12]), .B(N[26]), .Y(N[1332])); PDKGENAND2X1 n1348(.A(N[14]), .B(N[26]), .Y(N[1348])); PDKGENOR2X1 n1382(.A(N[1132]), .B(N[1248]), .Y(N[1382])); PDKGENFAX1 n1398(.A(N[1148]), .B(N[1264]), .C(N[243]), .YS(N[1398]), .YC(N[1399])); PDKGENFAX1 n1414(.A(N[1164]), .B(N[1282]), .C(N[1399]), .YS(N[1414]), .YC(N[1415])); PDKGENFAX1 n1432(.A(N[1182]), .B(N[1298]), .C(N[1415]), .YS(N[1432]), .YC(N[1433])); PDKGENFAX1 n1448(.A(N[1198]), .B(N[1314]), .C(N[1433]), .YS(N[1448]), .YC(N[1449])); PDKGENFAX1 n1464(.A(N[1214]), .B(N[1332]), .C(N[1449]), .YS(N[1464]), .YC(N[1465])); PDKGENFAX1 n1482(.A(N[1215]), .B(N[1348]), .C(N[1465]), .YS(N[1482]), .YC(N[1483])); PDKGENAND2X1 n1514(.A(N[933]), .B(N[28]), .Y(N[1514])); PDKGENAND2X1 n1532(.A(N[4]), .B(N[28]), .Y(N[1532])); PDKGENAND2X1 n1548(.A(N[6]), .B(N[28]), .Y(N[1548])); PDKGENAND2X1 n1564(.A(N[8]), .B(N[28]), .Y(N[1564])); PDKGENAND2X1 n1582(.A(N[10]), .B(N[28]), .Y(N[1582])); PDKGENAND2X1 n1598(.A(N[12]), .B(N[28]), .Y(N[1598])); PDKGENAND2X1 n1614(.A(N[14]), .B(N[28]), .Y(N[1614])); PDKGENOR2X1 n1632(.A(N[1382]), .B(N[1414]), .Y(N[1632])); PDKGENHAX1 n1648(.A(N[1398]), .B(N[1514]), .YS(N[1648]), .YC(N[1649])); PDKGENFAX1 n1664(.A(N[1414]), .B(N[1532]), .C(N[1649]), .YS(N[1664]), .YC(N[1665])); PDKGENFAX1 n1682(.A(N[1432]), .B(N[1548]), .C(N[1665]), .YS(N[1682]), .YC(N[1683])); PDKGENFAX1 n1698(.A(N[1448]), .B(N[1564]), .C(N[1683]), .YS(N[1698]), .YC(N[1699])); PDKGENFAX1 n1714(.A(N[1464]), .B(N[1582]), .C(N[1699]), .YS(N[1714]), .YC(N[1715])); PDKGENFAX1 n1732(.A(N[1482]), .B(N[1598]), .C(N[1715]), .YS(N[1732]), .YC(N[1733])); PDKGENFAX1 n1748(.A(N[1483]), .B(N[1614]), .C(N[1733]), .YS(N[1748]), .YC(N[1749])); PDKGENAND2X1 n1764(.A(N[0]), .B(N[30]), .Y(N[1764])); PDKGENAND2X1 n1782(.A(N[2]), .B(N[30]), .Y(N[1782])); PDKGENAND2X1 n1798(.A(N[4]), .B(N[30]), .Y(N[1798])); PDKGENAND2X1 n1814(.A(N[6]), .B(N[30]), .Y(N[1814])); PDKGENAND2X1 n1832(.A(N[8]), .B(N[30]), .Y(N[1832])); PDKGENAND2X1 n1848(.A(N[10]), .B(N[30]), .Y(N[1848])); PDKGENAND2X1 n1864(.A(N[12]), .B(N[30]), .Y(N[1864])); PDKGENAND2X1 n1882(.A(N[14]), .B(N[30]), .Y(N[1882])); PDKGENOR2X1 n1898(.A(N[1648]), .B(N[1764]), .Y(N[1898])); PDKGENHAX1 n1914(.A(N[1664]), .B(N[1782]), .YS(N[1914]), .YC(N[1915])); PDKGENFAX1 n1932(.A(N[1682]), .B(N[1798]), .C(N[1915]), .YS(N[1932]), .YC(N[1933])); PDKGENFAX1 n1948(.A(N[1698]), .B(N[1814]), .C(N[1933]), .YS(N[1948]), .YC(N[1949])); PDKGENFAX1 n1964(.A(N[1714]), .B(N[1832]), .C(N[1949]), .YS(N[1964]), .YC(N[1965])); PDKGENFAX1 n1982(.A(N[1732]), .B(N[1848]), .C(N[1965]), .YS(N[1982]), .YC(N[1983])); PDKGENFAX1 n1998(.A(N[1748]), .B(N[1864]), .C(N[1983]), .YS(N[1998]), .YC(N[1999])); PDKGENFAX1 n2014(.A(N[1749]), .B(N[1882]), .C(N[1999]), .YS(N[2014]), .YC(N[2015])); assign O[0] = N[633]; assign O[1] = N[54]; assign O[2] = N[83]; assign O[3] = N[1632]; assign O[4] = N[749]; assign O[5] = N[1898]; assign O[6] = N[1632]; assign O[7] = N[1898]; assign O[8] = N[1914]; assign O[9] = N[1932]; assign O[10] = N[1948]; assign O[11] = N[1964]; assign O[12] = N[1982]; assign O[13] = N[1998]; assign O[14] = N[2014]; assign O[15] = N[2015]; endmodule /* mod */ module PDKGENAOI21X1( input A, input B, input C, output Y ); assign Y = ~((A & B) | C); endmodule /* mod */ module PDKGENFAX1( input A, input B, input C, output YS, output YC ); assign YS = (A ^ B) ^ C; assign YC = (A & B) | (B & C) | (A & C); endmodule /* mod */ module PDKGENMUX2X1( input A, input B, input S, output Y ); assign Y = (A & ~S) | (B & S); endmodule /* mod */ module PDKGENAND2X1(input A, input B, output Y ); assign Y = A & B; endmodule /* mod */ module PDKGENNOR3X1(input A, input B, input C, output Y ); assign Y = ~((A | B) | C); endmodule /* mod */ module PDKGENHAX1( input A, input B, output YS, output YC ); assign YS = A ^ B; assign YC = A & B; endmodule /* mod */ module PDKGENINVX1(input A, output Y ); assign Y = ~A; endmodule /* mod */ module PDKGENNPDKGENOR2X1(input A, input B, output Y ); assign Y = ~(A | B); endmodule /* mod */ module PDKGENNAND3X1(input A, input B, input C, output Y ); assign Y = ~((A & B) & C); endmodule /* mod */ module PDKGENBUFX2(input A, output Y ); assign Y = A; endmodule /* mod */ module PDKGENOR2X1(input A, input B, output Y ); assign Y = A | B; endmodule