ConvertToFraction
ConvertToFraction(10)));
fV_NL = fMultiply(fV_NL, ConvertToFraction(1000));
fRange = fMultiply(fRange, ConvertToFraction(-1));
ConvertToFraction(uPow(-1, getASICProfilingInfo->ucSM_A0_sign)));
ConvertToFraction(uPow(-1, getASICProfilingInfo->ucSM_A1_sign)));
ConvertToFraction(uPow(-1, getASICProfilingInfo->ucSM_A2_sign)));
ConvertToFraction(uPow(-1, getASICProfilingInfo->ucSM_A3_sign)));
ConvertToFraction(uPow(-1, getASICProfilingInfo->ucSM_A4_sign)));
ConvertToFraction(uPow(-1, getASICProfilingInfo->ucSM_A5_sign)));
ConvertToFraction(uPow(-1, getASICProfilingInfo->ucSM_A6_sign)));
ConvertToFraction(uPow(-1, getASICProfilingInfo->ucSM_A7_sign)));
fMargin_RO_a = ConvertToFraction(le32_to_cpu(getASICProfilingInfo->ulMargin_RO_a));
fMargin_RO_b = ConvertToFraction(le32_to_cpu(getASICProfilingInfo->ulMargin_RO_b));
fMargin_RO_c = ConvertToFraction(le32_to_cpu(getASICProfilingInfo->ulMargin_RO_c));
fMargin_fixed = ConvertToFraction(le32_to_cpu(getASICProfilingInfo->ulMargin_fixed));
fMargin_DC_sigma = fDivide(fMargin_DC_sigma, ConvertToFraction(1000));
fCACm_fused = fDivide(fCACm_fused, ConvertToFraction(100));
fCACb_fused = fDivide(fCACb_fused, ConvertToFraction(100));
fKt_Beta_fused = fDivide(fKt_Beta_fused, ConvertToFraction(100));
fKv_m_fused = fNegate(fDivide(fKv_m_fused, ConvertToFraction(100)));
fKv_b_fused = fDivide(fKv_b_fused, ConvertToFraction(10));
le32_to_cpu(getASICProfilingInfo->ulMaxVddc), 1000), ConvertToFraction(4));
le32_to_cpu(getASICProfilingInfo->ulLeakageVoltage), 1000), ConvertToFraction(4));
le32_to_cpu(getASICProfilingInfo->ulMinVddc), 1000), ConvertToFraction(4));
fDivide(fMargin_DC_sigma, ConvertToFraction(1000)));
fInt fPositiveOne = ConvertToFraction(1);
fInt fZERO = ConvertToFraction(0);
fInt fNegativeOne = ConvertToFraction(-1);
fInt solution = ConvertToFraction(0); /*Starting off with baseline of 0 */
fInt f_CONSTANT_NEG13 = ConvertToFraction(-13);
fInt f_CONSTANT1 = ConvertToFraction(1);
fInt CONSTANT_NEGONE = ConvertToFraction(-1);
return ConvertToFraction(X);
fValue = fDivide(ConvertToFraction(X * uPow(-1, bNEGATED)), ConvertToFraction(factor));
fZERO = ConvertToFraction(0);
fInt fZERO = ConvertToFraction(0);
twoShifted = ConvertToFraction(2);
x_new = ConvertToFraction(seed);
f_CONSTANT100 = ConvertToFraction(100);
f_CONSTANT10 = ConvertToFraction(10);
temp = fMultiply(ConvertToFraction(4), A); /* root = 4*A */
root_first = fDivide(root_first, ConvertToFraction(2)); /* [b +- Sqrt(b^2 - 4AC)]/[2] */
root_second = fDivide(root_second, ConvertToFraction(2)); /* [b +- Sqrt(b^2 - 4AC)]/[2] */
static fInt ConvertToFraction(int); /* Use this to convert an INT to a FINT */