m_apm_compare
extern int m_apm_compare(M_APM, M_APM);
{return m_apm_compare(cval(),m.cval())==0;}
{return m_apm_compare(cval(),m.cval())!=0;}
{return m_apm_compare(cval(),m.cval())<0;}
{return m_apm_compare(cval(),m.cval())<=0;}
{return m_apm_compare(cval(),m.cval())>0;}
{return m_apm_compare(cval(),m.cval())>=0;}
if ((icompare = m_apm_compare(M_work1, M_work2)) == 0)
if ((icompare = m_apm_compare(M_div_worka, M_div_workb)) == 0)
if (m_apm_compare(M_div_tmp7, M_div_worka) == 1)
kk = m_apm_compare(b, tmp1);
if (m_apm_compare(xx, M_last_xx_input) == 0)
if (m_apm_compare(aa, tmp9) == 1) /* > PI */
if (m_apm_compare(aa, tmp9) == -1) /* < -PI */
ii = m_apm_compare(tmp0, MM_One);
if (m_apm_compare(tmp0, MM_0_85) == 1) /* check if > 0.85 */
ii = m_apm_compare(tmp0, MM_One);
if (m_apm_compare(tmp0, MM_0_85) == 1) /* check if > 0.85 */
if (m_apm_compare(minput, MM_One) <= 0)
if (m_apm_compare(tmp1, MM_Two) <= 0)
ii = m_apm_compare(tmp1, MM_One);
ii = m_apm_compare(aa, MM_One);