fSubtract
fSubtract(fSM_A7, fRO_fused)))));
fEVV_V = fSubtract(fV_max, fStepSize);
fSubtract(fSM_A7, fRO_fused)))));
fVDDC_base = fSubtract(fRO_fused,
fSubtract(fMargin_RO_c,
fSubtract(fSM_A3, fMultiply(fSM_A1, fSclk))));
repeat = fSubtract(fVDDC_base,
fDC_SCLK = fSubtract(fRO_fused,
fSubtract(fRO_DC_margin,
fSubtract(fSM_A3,
fSigma_DC = fSubtract(fSclk, fDC_SCLK);
exponent = fSubtract(exponent, GetScaledFraction(k_array[i], 10000));
f_decoded_value = fSubtract(fDivide(f_bit_max_value, f_fuse_value), f_CONSTANT1);
y = fSubtract(test, C); /*y = f(x) = x^2 - C; */
x_new = fSubtract(x_old, F_divide_Fprime);
temp = fSubtract(fGetSquare(B), temp); /* root = b^2 - 4AC */
root_first = fSubtract(fNegate(B), temp); /* b - Sqrt(b^2 - 4AC) */
static fInt fSubtract (fInt A, fInt B); /* Returns A-B - Sometimes easier than Adding negative numbers */