Lines Matching refs:cycles

133   // How long a single burst takes, measured in command-clock cycles.
197 // Using the number of cycles that at least one bank is active here
252 // Idle energy in the active standby clock cycles
254 // Idle energy in the precharge standby clock cycles
256 // fast-exit active power-down cycles energy
258 // fast-exit precharged power-down cycles energy
260 // slow-exit active power-down cycles energy
262 // slow-exit precharged power-down cycles energy
265 // self-refresh cycles energy including a refresh per self-refresh entry
272 // background energy during active auto-refresh cycles in self-refresh
274 // background energy during precharged auto-refresh cycles in self-refresh
276 // background energy during active auto-refresh cycles in self-refresh exit
278 // background energy during precharged auto-refresh cycles in self-refresh exit
280 // self-refresh power-up cycles energy -- included
282 // active power-up cycles energy - same as active standby -- included
284 // precharged power-up cycles energy - same as precharged standby -- included
300 // Idle energy in the active standby clock cycles
302 // Idle energy in the precharge standby clock cycles
304 // fast-exit active power-down cycles energy
306 // fast-exit precharged power-down cycles energy
308 // slow-exit active power-down cycles energy
310 // slow-exit precharged power-down cycles energy
319 // background energy during active auto-refresh cycles in self-refresh
321 // background energy during precharged auto-refresh cycles in self-refresh
323 // background energy during active auto-refresh cycles in self-refresh exit
325 // background energy during precharged auto-refresh cycles in self-refresh exit
327 // self-refresh power-up cycles energy -- included
329 // active power-up cycles energy - same as active standby -- included
331 // precharged power-up cycles energy - same as precharged standby -- included
335 // auto-refresh energy during self-refresh cycles
338 // auto-refresh energy during self-refresh exit cycles
411 << endl << " #Auto-Refresh Active cycles during Self-Refresh Power-Up: " << c.spup_ref_act_cycles
415 << endl << " #Auto-Refresh Precharged cycles during Self-Refresh Power-Up: " << c.spup_ref_pre_cycles
426 << endl << " #Auto-Refresh Active cycles during Self-Refresh: " << c.sref_ref_act_cycles
429 << endl << " #Auto-Refresh Precharged cycles during Self-Refresh: " << c.sref_ref_pre_cycles
434 << endl << "Total Trace Length (clock cycles): " << total_cycles
456 << endl << " Slow-Exit Active Power-Down Energy during Auto-Refresh cycles in Self-Refresh: "<< nRanksDouble * energy.sref_ref_act_energy_banks[i] << eUnit
457 << endl << " Slow-Exit Precharged Power-Down Energy during Auto-Refresh cycles in Self-Refresh: " << nRanksDouble * energy.sref_ref_pre_energy_banks[i] << eUnit
459 << endl << " Active Stdby Energy during Auto-Refresh cycles in Self-Refresh Power-Up: "<< nRanksDouble * energy.spup_ref_act_energy_banks[i] << eUnit
460 << endl << " Precharge Stdby Energy during Auto-Refresh cycles in Self-Refresh Power-Up: "<< nRanksDouble * energy.spup_ref_pre_energy_banks[i] << eUnit
492 << endl << " Active Stdby Energy during Auto-Refresh cycles in Self-Refresh Power-Up: " << nRanksDouble * energy.spup_ref_act_energy << eUnit
496 << endl << " Precharge Stdby Energy during Auto-Refresh cycles in Self-Refresh Power-Up: " << nRanksDouble * energy.spup_ref_pre_energy << eUnit
502 << endl << " Slow-Exit Active Power-Down Energy during Auto-Refresh cycles in Self-Refresh: " << nRanksDouble * energy.sref_ref_act_energy << eUnit
505 << endl << " Slow-Exit Precharged Power-Down Energy during Auto-Refresh cycles in Self-Refresh: " << nRanksDouble * energy.sref_ref_pre_energy << eUnit
600 double MemoryPowerModel::calcIoTermEnergy(int64_t cycles, double period, double power, int64_t numBits) const
602 return static_cast<double>(cycles) * period * power * static_cast<double>(numBits);
606 double EnergyDomain::calcTivEnergy(int64_t cycles, double current) const
608 return static_cast<double>(cycles) * clkPeriod * current * voltage;