rtc_currd 317 src/simh/sim_timer.c static int32 rtc_currd[SIM_NTIMERS+1] = { 0 }; /* current delay */ rtc_currd 394 src/simh/sim_timer.c if (rtc_currd[tmr]) rtc_currd 395 src/simh/sim_timer.c time = rtc_currd[tmr]; rtc_currd 410 src/simh/sim_timer.c rtc_currd[tmr] = time; rtc_currd 441 src/simh/sim_timer.c rtc_currd[tmr] = (int32)(sim_timer_inst_per_sec()/ticksper); rtc_currd 451 src/simh/sim_timer.c return rtc_currd[tmr]; /* return now avoiding counting catchup tick in calibration */ rtc_currd 541 src/simh/sim_timer.c (unsigned long)rtc_currd[tmr]); rtc_currd 869 src/simh/sim_timer.c sim_activate (sim_clock_unit[tmr], rtc_currd[tmr]); rtc_currd 880 src/simh/sim_timer.c _sim_activate (cptr, accum*rtc_currd[tmr]); rtc_currd 898 src/simh/sim_timer.c inst_per_sec = ((double)rtc_currd[sim_calb_tmr])*rtc_hz[sim_calb_tmr]; rtc_currd 900 src/simh/sim_timer.c inst_per_sec = ((double)rtc_currd[sim_calb_tmr])*sim_int_clk_tps;