/*** * This code is a part of EvoApproxLib library (ehw.fit.vutbr.cz/approxlib) distributed under The MIT License. * When used, please cite the following article(s): V. Mrazek, R. Hrbacek, Z. Vasicek and L. Sekanina, "EvoApprox8b: Library of approximate adders and multipliers for circuit design and benchmarking of approximation methods". Design, Automation & Test in Europe Conference & Exhibition (DATE), 2017, Lausanne, 2017, pp. 258-261. doi: 10.23919/DATE.2017.7926993 * This file contains a circuit from evoapprox8b dataset. Note that a new version of library was already published. ***/ #include #include /// Approximate function add8_280 /// Library = EvoApprox8b /// Circuit = add8_280 /// Area (180) = 992 /// Delay (180) = 0.850 /// Power (180) = 284.60 /// Area (45) = 66 /// Delay (45) = 0.350 /// Power (45) = 23.02 /// Nodes = 22 /// HD = 192640 /// MAE = 8.27344 /// MSE = 100.00000 /// MRE = 4.48 % /// WCE = 25 /// WCRE = 800 % /// EP = 96.6 % uint16_t add8_280(uint8_t a, uint8_t b) { uint16_t c = 0; uint8_t n4 = (a >> 2) & 0x1; uint8_t n6 = (a >> 3) & 0x1; uint8_t n8 = (a >> 4) & 0x1; uint8_t n10 = (a >> 5) & 0x1; uint8_t n12 = (a >> 6) & 0x1; uint8_t n14 = (a >> 7) & 0x1; uint8_t n22 = (b >> 3) & 0x1; uint8_t n24 = (b >> 4) & 0x1; uint8_t n26 = (b >> 5) & 0x1; uint8_t n28 = (b >> 6) & 0x1; uint8_t n30 = (b >> 7) & 0x1; uint8_t n43; uint8_t n44; uint8_t n47; uint8_t n69; uint8_t n78; uint8_t n79; uint8_t n86; uint8_t n87; uint8_t n96; uint8_t n97; uint8_t n134; uint8_t n137; uint8_t n145; uint8_t n146; uint8_t n152; uint8_t n162; uint8_t n180; uint8_t n226; uint8_t n244; uint8_t n254; uint8_t n273; uint8_t n394; uint8_t n404; uint8_t n412; uint8_t n413; uint8_t n422; n43 = n28 | n12; n44 = n28 | n12; n47 = n26 & n10; n69 = n8 & n24; n78 = n10 ^ n26; n79 = n10 & n26; n86 = n12 ^ n28; n87 = n12 & n28; n96 = n14 ^ n30; n97 = n14 & n30; n134 = n26 ^ n10; n137 = n134; n145 = ~n69; n146 = ~n145; n152 = n146; n162 = n43 & n47; n180 = n87 | n162; n226 = n137 & n152; n244 = n79 | n226; n254 = n44 & n226; n273 = n180 | n254; n394 = n78 ^ n152; n404 = n86 ^ n244; n412 = n96 ^ n273; n413 = n96 & n273; n422 = n97 | n413; c |= (n4 & 0x1) << 0; c |= (n24 & 0x1) << 1; c |= (n22 & 0x1) << 2; c |= (n145 & 0x1) << 3; c |= (n6 & 0x1) << 4; c |= (n394 & 0x1) << 5; c |= (n404 & 0x1) << 6; c |= (n412 & 0x1) << 7; c |= (n422 & 0x1) << 8; return c; }