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64 	longword	L_max, L_power;
117 L_power = 0;
123 L_power += L_temp * L_temp;
125 L_power <<= 1; /* from L_MULT */
127 /* Normalization of L_max and L_power
134 if (L_max >= L_power) {
139 temp = gsm_norm( L_power );
142 S = SASR( L_power << temp, 16 );
167 longword L_max, L_power;
252 L_power = 0;
258 L_power += L_temp * L_temp;
260 L_power <<= 1; /* from L_MULT */
262 /* Normalization of L_max and L_power
269 if (L_max >= L_power) {
274 temp = gsm_norm( L_power );
277 S = SASR( L_power << temp, 16 );
308 longword L_max, L_power;
432 L_power = 0;
438 L_power += L_temp * L_temp;
440 L_power <<= 1; /* from L_MULT */
442 /* Normalization of L_max and L_power
449 if (L_max >= L_power) {
454 temp = gsm_norm( L_power );
457 S = SASR( L_power << temp, 16 );
484 longword L_max, L_power;
597 L_power = 0;
603 L_power += L_temp * L_temp;
605 L_power <<= 1; /* from L_MULT */
607 /* Normalization of L_max and L_power
614 if (L_max >= L_power) {
619 temp = gsm_norm( L_power );
622 S = SASR( L_power << temp, 16 );
653 register float L_result, L_max, L_power;
690 L_power = 0;
693 L_power += f * f;
696 if (L_max >= L_power) {
705 lambda = L_max / L_power * 32768.;
725 register float L_max, L_power;
808 L_power = 0;
811 L_power += f * f;
814 if (L_max >= L_power) {
823 lambda = L_max / L_power * 32768.;