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add8u_01R.c
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add8u_01R.c
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/***
* 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):
* This file contains a circuit from a sub-set of pareto optimal circuits with respect to the pwr and mse parameters
***/
// MAE% = 0.21 %
// MAE = 1.1
// WCE% = 0.59 %
// WCE = 3.0
// WCRE% = 100.00 %
// EP% = 75.00 %
// MRE% = 0.61 %
// MSE = 2.0
// PDK45_PWR = 0.023 mW
// PDK45_AREA = 52.6 um2
// PDK45_DELAY = 0.47 ns
#include <stdint.h>
#include <stdlib.h>
uint64_t add8u_01R(uint64_t a, uint64_t b) {
int wa[8];
int wb[8];
uint64_t y = 0;
wa[0] = (a >> 0) & 0x01;
wb[0] = (b >> 0) & 0x01;
wa[1] = (a >> 1) & 0x01;
wb[1] = (b >> 1) & 0x01;
wa[2] = (a >> 2) & 0x01;
wb[2] = (b >> 2) & 0x01;
wa[3] = (a >> 3) & 0x01;
wb[3] = (b >> 3) & 0x01;
wa[4] = (a >> 4) & 0x01;
wb[4] = (b >> 4) & 0x01;
wa[5] = (a >> 5) & 0x01;
wb[5] = (b >> 5) & 0x01;
wa[6] = (a >> 6) & 0x01;
wb[6] = (b >> 6) & 0x01;
wa[7] = (a >> 7) & 0x01;
wb[7] = (b >> 7) & 0x01;
int sig_18 = ~((int)0);
int sig_22 = wb[2] ^ wa[2];
int sig_24 = wa[2] & wb[2];
int sig_27 = sig_24;
int sig_28 = wa[3] ^ wb[3];
int sig_29 = wa[3] & wb[3];
int sig_30 = sig_28 & sig_27;
int sig_31 = sig_28 ^ sig_27;
int sig_32 = sig_29 | sig_30;
int sig_33 = wa[4] ^ wb[4];
int sig_34 = wa[4] & wb[4];
int sig_35 = sig_33 & sig_32;
int sig_36 = sig_33 ^ sig_32;
int sig_37 = sig_34 | sig_35;
int sig_38 = wa[5] ^ wb[5];
int sig_39 = wa[5] & wb[5];
int sig_40 = sig_38 & sig_37;
int sig_41 = sig_38 ^ sig_37;
int sig_42 = sig_39 | sig_40;
int sig_43 = wa[6] ^ wb[6];
int sig_44 = wa[6] & wb[6];
int sig_45 = sig_43 & sig_42;
int sig_46 = sig_43 ^ sig_42;
int sig_47 = sig_44 | sig_45;
int sig_48 = wa[7] ^ wb[7];
int sig_49 = wa[7] & wb[7];
int sig_50 = sig_48 & sig_47;
int sig_51 = sig_48 ^ sig_47;
int sig_52 = sig_49 | sig_50;
y |= (wb[1] & 0x01) << 0; // default output
y |= (sig_18 & 0x01) << 1; // default output
y |= (sig_22 & 0x01) << 2; // default output
y |= (sig_31 & 0x01) << 3; // default output
y |= (sig_36 & 0x01) << 4; // default output
y |= (sig_41 & 0x01) << 5; // default output
y |= (sig_46 & 0x01) << 6; // default output
y |= (sig_51 & 0x01) << 7; // default output
y |= (sig_52 & 0x01) << 8; // default output
return y;
}