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Copy pathtotalPower.py
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executable file
·157 lines (128 loc) · 5.86 KB
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#!/usr/bin/python -O
import sys
import re
CYCLE_TIME = float(1) / 667000000
workload = sys.argv[1]
dram_size = []
dram_size += ['DRAM']
dram_size += ['64M']
dram_size += ['128M']
dram_size += ['256M']
dram_size += ['512M']
dram_size += ['1024M']
dram_size += ['2048M']
pattern = re.compile("([0-9]+)(\s*)([0-9\.]+)(\s*)([0-9\.]+)(\s*)([0-9\.]+)(\s*)([0-9\.]+)(\s*)([0-9\.]+)(\s*)([0-9\.]+)(\s*)([0-9\.]+)(\s*)([0-9\.]+)(\s*)([0-9\.]+)(\s*)([0-9\.]+)")
start_pattern = re.compile("Data for Full Simulation: ")
idle_energy_pattern = re.compile("Accumulated Idle Energy: ([0-9\.]+) mJ")
access_energy_pattern = re.compile("Accumulated Access Energy: ([0-9\.]+) mJ")
erase_energy_pattern = re.compile("Accumulated Erase Energy: ([0-9\.]+) mJ")
energy_pattern = re.compile("Total Energy: ([0-9\.]+) mJ")
idle_power_pattern = re.compile("Average Idle Power: ([0-9\.]+) mW")
access_power_pattern = re.compile("Average Access Power: ([0-9\.]+) mW")
erase_power_pattern = re.compile("Average Erase Power: ([0-9\.]+) mW")
power_pattern = re.compile("Average Power: ([0-9\.]+) mW")
# === initialization ===
total_cycle = 0
pure_dram_energy = 0
pure_background_energy = 0
pure_actpre_energy = 0
pure_burst_energy = 0
pure_refresh_energy = 0
pure_dram_power = 0
pure_background_power = 0
pure_actpre_power = 0
pure_burst_power = 0
pure_refresh_power = 0
dram_energy = 0
background_energy = 0
actpre_energy = 0
burst_energy = 0
refresh_energy = 0
dram_power = 0
background_power = 0
actpre_power = 0
burst_power = 0
refresh_power = 0
fout = open(workload + '.totalPower.dat', 'w')
# === main ===
for size in dram_size:
if size == "DRAM":
fin1 = open(workload + '_' + size + '/dramPower.dat', 'r')
for line in fin1:
p = pattern.match(line)
if p is not None:
pure_dram_energy += float(p.group(13))
pure_background_energy += float(p.group(15))
pure_actpre_energy += float(p.group(17))
pure_burst_energy += float(p.group(19))
pure_refresh_energy += float(p.group(21))
total_cycle = int(p.group(1))
pure_dram_power = pure_dram_energy / (total_cycle * CYCLE_TIME)
pure_background_power = pure_background_energy / (total_cycle * CYCLE_TIME)
pure_actpre_power = pure_actpre_energy / (total_cycle * CYCLE_TIME)
pure_burst_power = pure_burst_energy / (total_cycle * CYCLE_TIME)
pure_refresh_power = pure_refresh_energy / (total_cycle * CYCLE_TIME)
fin1.close()
else:
fin1 = open(workload + '_' + size + '/dramPower.dat', 'r')
dram_energy = 0
background_energy = 0
actpre_energy = 0
burst_energy = 0
refresh_energy = 0
dram_power = 0
background_power = 0
actpre_power = 0
burst_power = 0
refresh_power = 0
for line in fin1:
p = pattern.match(line)
if p is not None:
dram_energy += float(p.group(13))
background_energy += float(p.group(15))
actpre_energy += float(p.group(17))
burst_energy += float(p.group(19))
refresh_energy += float(p.group(21))
total_cycle = int(p.group(1))
dram_power = dram_energy / (total_cycle * CYCLE_TIME)
background_power = background_energy / (total_cycle * CYCLE_TIME)
actpre_power = actpre_energy / (total_cycle * CYCLE_TIME)
burst_power = burst_energy / (total_cycle * CYCLE_TIME)
refresh_power = refresh_energy / (total_cycle * CYCLE_TIME)
fin1.close()
fin2 = open(workload + '_' + size + '/NVDIMM.log', 'r')
flag = 0
for line in fin2:
s = start_pattern.match(line)
ie = idle_energy_pattern.match(line)
ae = access_energy_pattern.match(line)
ee = erase_energy_pattern.match(line)
e = energy_pattern.match(line)
ip = idle_power_pattern.match(line)
ap = access_power_pattern.match(line)
ep = erase_power_pattern.match(line)
p = power_pattern.match(line)
if s is not None: flag = 1
if flag == 1:
if ie is not None: idle_energy = float(ie.group(1))
elif ae is not None: access_energy = float(ae.group(1))
elif ee is not None: erase_energy = float(ee.group(1))
elif e is not None: energy = float(e.group(1))
elif ip is not None: idle_power = float(ip.group(1))
elif ap is not None: access_power = float(ap.group(1))
elif ep is not None: erase_power = float(ep.group(1))
elif p is not None:
power = float(p.group(1))
break
fin2.close()
total_energy = dram_energy + energy
total_power = dram_power + power
normalized_energy = total_energy / pure_dram_energy
normalized_power = total_power / pure_dram_power
dram_dynamic_energy = actpre_energy + burst_energy + refresh_energy
nv_dynamic_energy = access_energy + erase_energy
dram_dynamic_power = actpre_power + burst_power + refresh_power
nv_dynamic_power = access_power + erase_power
# print "%f\t%f\t%f\t%f\t%f\t%f" %(total_energy, dram_energy, energy, total_power, dram_power, power)
print >>fout, "%s\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f\t%f" %(size, total_energy, normalized_energy, dram_energy, energy, total_power, normalized_power, dram_power, power, background_energy, actpre_energy, burst_energy, refresh_energy, dram_dynamic_energy, idle_energy, access_energy, erase_energy, nv_dynamic_energy, background_power, actpre_power, burst_power, refresh_power, dram_dynamic_power, idle_power, access_power, erase_power, nv_dynamic_power)
fout.close()