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#=============================================================================================================================================================
#------------------------------------------------------- GF 0.18um MCU DRC RULE DECK (GEOMETRY RULES) --------------------------------------------------------
#=============================================================================================================================================================
require 'time'
require "logger"
exec_start_time = Time.now
logger = Logger.new(STDOUT)
logger.formatter = proc do |severity, datetime, progname, msg|
"#{datetime}: Memory Usage (" + `pmap #{Process.pid} | tail -1`[10,40].strip + ") : #{msg}
"
end
#================================================
#----------------- FILE SETUP -------------------
#================================================
# optional for a batch launch : klayout -b -r gf180mcu.drc -rd input=design.gds -rd report=gf180mcu_main.lyrdb
logger.info("Starting running GF180MCU Klayout DRC runset on %s" % [$input])
if $input
if $topcell
source($input, $topcell)
else
source($input)
end
end
logger.info("Loading database to memory is complete.")
if $report
logger.info("GF180MCU Klayout DRC runset output at: %s" % [$report])
report("DRC Run Report at", $report)
else
logger.info("GF180MCU Klayout DRC runset output at default location." % [File.join(File.dirname(RBA::CellView::active.filename), "gf180_drc.lyrdb").path])
report("DRC Run Report at", File.join(File.dirname(RBA::CellView::active.filename), "gf180_drc.lyrdb"))
end
if $thr
logger.info("Number of threads to use %s" % [$thr])
threads($thr)
else
logger.info("Number of threads to use 16")
threads(16)
end
# === TILING MODE ===
if $run_mode == "tiling"
# use a tile size of 1mm - not used in deep mode-
# tiles(500.um)
# use a tile border of 10 micron:
# tile_borders(10.um)
tiles(1000)
logger.info("Tiling mode is enabled.")
elsif $run_mode == "deep"
#=== HIER MODE ===
deep
logger.info("deep mode is enabled.")
elsif $run_mode == "flat"
#=== FLAT MODE ===
flat
logger.info("flat mode is enabled.")
else
#=== FLAT MODE ===
flat
logger.info("flat mode is enabled.")
end # run_mode
#================================================
#------------- LAYERS DEFINITIONS ---------------
#================================================
v5_xtor = polygons(112, 1 )
dualgate = polygons(55 , 0 )
poly2 = polygons(30 , 0 )
nplus = polygons(32 , 0 )
pplus = polygons(31 , 0 )
comp = polygons(22 , 0 )
comp = polygons(22 , 0 )
dnwell = polygons(12 , 0 )
nwell = polygons(21 , 0 )
lvpwell = polygons(204, 0 )
dualgate = polygons(55 , 0 )
poly2 = polygons(30 , 0 )
nplus = polygons(32 , 0 )
pplus = polygons(31 , 0 )
sab = polygons(49 , 0 )
esd = polygons(24 , 0 )
contact = polygons(33 , 0 )
metal1 = polygons(34 , 0 )
via1 = polygons(35 , 0 )
metal2 = polygons(36 , 0 )
via2 = polygons(38 , 0 )
metal3 = polygons(42 , 0 )
via3 = polygons(40 , 0 )
metal4 = polygons(46 , 0 )
via4 = polygons(41 , 0 )
metal5 = polygons(81 , 0 )
via5 = polygons(82 , 0 )
metaltop = polygons(53 , 0 )
pad = polygons(37 , 0 )
resistor = polygons(62 , 0 )
fhres = polygons(227, 0 )
fusetop = polygons(75 , 0 )
fusewindow_d = polygons(96 , 1 )
polyfuse = polygons(220, 0 )
mvsd = polygons(210, 0 )
mvpsd = polygons(11 , 39)
nat = polygons(5 , 0 )
comp_dummy = polygons(22 , 4 )
poly2_dummy = polygons(30 , 4 )
metal1_dummy = polygons(34 , 4 )
metal2_dummy = polygons(36 , 4 )
metal3_dummy = polygons(42 , 4 )
metal4_dummy = polygons(46 , 4 )
metal5_dummy = polygons(81 , 4 )
metaltop_dummy = polygons(53 , 4 )
comp_label = polygons(22 , 10)
poly2_label = polygons(30 , 10)
metal1_label = polygons(34 , 10)
metal2_label = polygons(36 , 10)
metal3_label = polygons(42 , 10)
metal4_label = polygons(46 , 10)
metal5_label = polygons(81 , 10)
metaltop_label = polygons(53 , 10)
metal1_slot = polygons(34 , 3 )
metal2_slot = polygons(36 , 3 )
metal3_slot = polygons(42 , 3 )
metal4_slot = polygons(46 , 3 )
metal5_slot = polygons(81 , 3 )
metaltop_slot = polygons(53 , 3 )
ubmpperi = polygons(183, 0 )
ubmparray = polygons(184, 0 )
ubmeplate = polygons(185, 0 )
schottky_diode = polygons(241, 0 )
zener = polygons(178, 0 )
res_mk = polygons(110, 5 )
opc_drc = polygons(124, 5 )
ndmy = polygons(111, 5 )
pmndmy = polygons(152, 5 )
v5_xtor = polygons(112, 1 )
cap_mk = polygons(117, 5 )
mos_cap_mk = polygons(166, 5 )
ind_mk = polygons(151, 5 )
diode_mk = polygons(115, 5 )
drc_bjt = polygons(127, 5 )
lvs_bjt = polygons(118, 5 )
mim_l_mk = polygons(117, 10)
latchup_mk = polygons(137, 5 )
guard_ring_mk = polygons(167, 5 )
otp_mk = polygons(173, 5 )
mtpmark = polygons(122, 5 )
neo_ee_mk = polygons(88 , 17)
sramcore = polygons(108, 5 )
lvs_rf = polygons(100, 5 )
lvs_drain = polygons(100, 7 )
ind_mk = polygons(151, 5 )
hvpolyrs = polygons(123, 5 )
lvs_io = polygons(119, 5 )
probe_mk = polygons(13 , 17)
esd_mk = polygons(24 , 5 )
lvs_source = polygons(100, 8 )
well_diode_mk = polygons(153, 51)
ldmos_xtor = polygons(226, 0 )
plfuse = polygons(125, 5 )
efuse_mk = polygons(80 , 5 )
mcell_feol_mk = polygons(11 , 17)
ymtp_mk = polygons(86 , 17)
dev_wf_mk = polygons(128, 17)
metal1_blk = polygons(34 , 5 )
metal2_blk = polygons(36 , 5 )
metal3_blk = polygons(42 , 5 )
metal4_blk = polygons(46 , 5 )
metal5_blk = polygons(81 , 5 )
metalt_blk = polygons(53 , 5 )
pr_bndry = polygons(0 , 0 )
mdiode = polygons(116, 5 )
metal1_res = polygons(110, 11)
metal2_res = polygons(110, 12)
metal3_res = polygons(110, 13)
metal4_res = polygons(110, 14)
metal5_res = polygons(110, 15)
metal6_res = polygons(110, 16)
border = polygons(63 , 0 )
logger.info("Starting deriving base layers.")
#================================================
#------------- LAYERS DERIVATIONS ---------------
#================================================
ncomp = comp & nplus
pcomp = comp & pplus
tgate = poly2 & comp
ngate = nplus & tgate
pgate = pplus & tgate
#================================================
#------------------ SWITCHES --------------------
#================================================
logger.info("Evaluate switches.")
# FEOL
if $feol == "false"
FEOL = $feol
logger.info("FEOL is disabled.")
else
FEOL = "true"
logger.info("FEOL is enabled.")
end # FEOL
# BEOL
if $beol == "false"
BEOL = $beol
logger.info("BEOL is disabled.")
else
BEOL = "true"
logger.info("BEOL is enabled.")
end # BEOL
# connectivity rules
if $conn_drc == "true"
CONNECTIVITY_RULES = $conn_drc
logger.info("connectivity rules are enabled.")
else
CONNECTIVITY_RULES = false
logger.info("connectivity rules are disabled.")
end # connectivity rules
# METAL_TOP
if $metal_top
METAL_TOP = $metal_top
else
METAL_TOP = "9K"
end # METAL_TOP
logger.info("METAL_TOP Selected is %s" % [METAL_TOP])
# METAL_LEVEL
if $metal_level
METAL_LEVEL = $metal_level
else
METAL_LEVEL = "6LM"
end # METAL_LEVEL
logger.info("METAL_STACK Selected is %s" % [METAL_LEVEL])
# WEDGE
if $wedge == "false"
WEDGE = $wedge
else
WEDGE = "true"
end # WEDGE
logger.info("Wedge enabled %s" % [WEDGE])
# BALL
if $ball == "false"
BALL = $ball
else
BALL = "true"
end # BALL
logger.info("Ball enabled %s" % [BALL])
# GOLD
if $gold == "false"
GOLD = $gold
else
GOLD = "true"
end # GOLD
logger.info("Gold enabled %s" % [GOLD])
if $mim_option
MIM_OPTION = $mim_option
else
MIM_OPTION = "Nan"
end
logger.info("MIM Option selected %s" % [MIM_OPTION])
# OFFGRID
if $offgrid == "false"
OFFGRID = false
else
OFFGRID = true
end # OFFGRID
logger.info("Offgrid enabled %s" % [OFFGRID])
#================================================
#-----------------GEOMETRY RULES-----------------
#================================================
if OFFGRID
logger.info("OFFGRID-ANGLES section")
logger.info("Executing rule comp_OFFGRID")
comp.ongrid(0.005).output("comp_OFFGRID", "OFFGRID : OFFGRID vertex on comp")
comp.with_angle(0 .. 45).output("comp_angle", "ACUTE : non 45 degree angle comp")
logger.info("Executing rule dnwell_OFFGRID")
dnwell.ongrid(0.005).output("dnwell_OFFGRID", "OFFGRID : OFFGRID vertex on dnwell")
dnwell.with_angle(0 .. 45).output("dnwell_angle", "ACUTE : non 45 degree angle dnwell")
logger.info("Executing rule nwell_OFFGRID")
nwell.ongrid(0.005).output("nwell_OFFGRID", "OFFGRID : OFFGRID vertex on nwell")
nwell.with_angle(0 .. 45).output("nwell_angle", "ACUTE : non 45 degree angle nwell")
logger.info("Executing rule lvpwell_OFFGRID")
lvpwell.ongrid(0.005).output("lvpwell_OFFGRID", "OFFGRID : OFFGRID vertex on lvpwell")
lvpwell.with_angle(0 .. 45).output("lvpwell_angle", "ACUTE : non 45 degree angle lvpwell")
logger.info("Executing rule dualgate_OFFGRID")
dualgate.ongrid(0.005).output("dualgate_OFFGRID", "OFFGRID : OFFGRID vertex on dualgate")
dualgate.with_angle(0 .. 45).output("dualgate_angle", "ACUTE : non 45 degree angle dualgate")
logger.info("Executing rule poly2_OFFGRID")
poly2.ongrid(0.005).output("poly2_OFFGRID", "OFFGRID : OFFGRID vertex on poly2")
poly2.with_angle(0 .. 45).output("poly2_angle", "ACUTE : non 45 degree angle poly2")
logger.info("Executing rule nplus_OFFGRID")
nplus.ongrid(0.005).output("nplus_OFFGRID", "OFFGRID : OFFGRID vertex on nplus")
nplus.with_angle(0 .. 45).output("nplus_angle", "ACUTE : non 45 degree angle nplus")
logger.info("Executing rule pplus_OFFGRID")
pplus.ongrid(0.005).output("pplus_OFFGRID", "OFFGRID : OFFGRID vertex on pplus")
pplus.with_angle(0 .. 45).output("pplus_angle", "ACUTE : non 45 degree angle pplus")
logger.info("Executing rule sab_OFFGRID")
sab.ongrid(0.005).output("sab_OFFGRID", "OFFGRID : OFFGRID vertex on sab")
sab.with_angle(0 .. 45).output("sab_angle", "ACUTE : non 45 degree angle sab")
logger.info("Executing rule esd_OFFGRID")
esd.ongrid(0.005).output("esd_OFFGRID", "OFFGRID : OFFGRID vertex on esd")
esd.with_angle(0 .. 45).output("esd_angle", "ACUTE : non 45 degree angle esd")
logger.info("Executing rule contact_OFFGRID")
contact.ongrid(0.005).output("contact_OFFGRID", "OFFGRID : OFFGRID vertex on contact")
contact.with_angle(0 .. 45).output("contact_angle", "ACUTE : non 45 degree angle contact")
logger.info("Executing rule metal1_OFFGRID")
metal1.ongrid(0.005).output("metal1_OFFGRID", "OFFGRID : OFFGRID vertex on metal1")
metal1.with_angle(0 .. 45).output("metal1_angle", "ACUTE : non 45 degree angle metal1")
logger.info("Executing rule via1_OFFGRID")
via1.ongrid(0.005).output("via1_OFFGRID", "OFFGRID : OFFGRID vertex on via1")
via1.with_angle(0 .. 45).output("via1_angle", "ACUTE : non 45 degree angle via1")
logger.info("Executing rule metal2_OFFGRID")
metal2.ongrid(0.005).output("metal2_OFFGRID", "OFFGRID : OFFGRID vertex on metal2")
metal2.with_angle(0 .. 45).output("metal2_angle", "ACUTE : non 45 degree angle metal2")
logger.info("Executing rule via2_OFFGRID")
via2.ongrid(0.005).output("via2_OFFGRID", "OFFGRID : OFFGRID vertex on via2")
via2.with_angle(0 .. 45).output("via2_angle", "ACUTE : non 45 degree angle via2")
logger.info("Executing rule metal3_OFFGRID")
metal3.ongrid(0.005).output("metal3_OFFGRID", "OFFGRID : OFFGRID vertex on metal3")
metal3.with_angle(0 .. 45).output("metal3_angle", "ACUTE : non 45 degree angle metal3")
logger.info("Executing rule via3_OFFGRID")
via3.ongrid(0.005).output("via3_OFFGRID", "OFFGRID : OFFGRID vertex on via3")
via3.with_angle(0 .. 45).output("via3_angle", "ACUTE : non 45 degree angle via3")
logger.info("Executing rule metal4_OFFGRID")
metal4.ongrid(0.005).output("metal4_OFFGRID", "OFFGRID : OFFGRID vertex on metal4")
metal4.with_angle(0 .. 45).output("metal4_angle", "ACUTE : non 45 degree angle metal4")
logger.info("Executing rule via4_OFFGRID")
via4.ongrid(0.005).output("via4_OFFGRID", "OFFGRID : OFFGRID vertex on via4")
via4.with_angle(0 .. 45).output("via4_angle", "ACUTE : non 45 degree angle via4")
logger.info("Executing rule metal5_OFFGRID")
metal5.ongrid(0.005).output("metal5_OFFGRID", "OFFGRID : OFFGRID vertex on metal5")
metal5.with_angle(0 .. 45).output("metal5_angle", "ACUTE : non 45 degree angle metal5")
logger.info("Executing rule via5_OFFGRID")
via5.ongrid(0.005).output("via5_OFFGRID", "OFFGRID : OFFGRID vertex on via5")
via5.with_angle(0 .. 45).output("via5_angle", "ACUTE : non 45 degree angle via5")
logger.info("Executing rule metaltop_OFFGRID")
metaltop.ongrid(0.005).output("metaltop_OFFGRID", "OFFGRID : OFFGRID vertex on metaltop")
metaltop.with_angle(0 .. 45).output("metaltop_angle", "ACUTE : non 45 degree angle metaltop")
logger.info("Executing rule pad_OFFGRID")
pad.ongrid(0.005).output("pad_OFFGRID", "OFFGRID : OFFGRID vertex on pad")
pad.with_angle(0 .. 45).output("pad_angle", "ACUTE : non 45 degree angle pad")
logger.info("Executing rule resistor_OFFGRID")
resistor.ongrid(0.005).output("resistor_OFFGRID", "OFFGRID : OFFGRID vertex on resistor")
resistor.with_angle(0 .. 45).output("resistor_angle", "ACUTE : non 45 degree angle resistor")
logger.info("Executing rule fhres_OFFGRID")
fhres.ongrid(0.005).output("fhres_OFFGRID", "OFFGRID : OFFGRID vertex on fhres")
fhres.with_angle(0 .. 45).output("fhres_angle", "ACUTE : non 45 degree angle fhres")
logger.info("Executing rule fusetop_OFFGRID")
fusetop.ongrid(0.005).output("fusetop_OFFGRID", "OFFGRID : OFFGRID vertex on fusetop")
fusetop.with_angle(0 .. 45).output("fusetop_angle", "ACUTE : non 45 degree angle fusetop")
logger.info("Executing rule fusewindow_d_OFFGRID")
fusewindow_d.ongrid(0.005).output("fusewindow_d_OFFGRID", "OFFGRID : OFFGRID vertex on fusewindow_d")
fusewindow_d.with_angle(0 .. 45).output("fusewindow_d_angle", "ACUTE : non 45 degree angle fusewindow_d")
logger.info("Executing rule polyfuse_OFFGRID")
polyfuse.ongrid(0.005).output("polyfuse_OFFGRID", "OFFGRID : OFFGRID vertex on polyfuse")
polyfuse.with_angle(0 .. 45).output("polyfuse_angle", "ACUTE : non 45 degree angle polyfuse")
logger.info("Executing rule mvsd_OFFGRID")
mvsd.ongrid(0.005).output("mvsd_OFFGRID", "OFFGRID : OFFGRID vertex on mvsd")
mvsd.with_angle(0 .. 45).output("mvsd_angle", "ACUTE : non 45 degree angle mvsd")
logger.info("Executing rule mvpsd_OFFGRID")
mvpsd.ongrid(0.005).output("mvpsd_OFFGRID", "OFFGRID : OFFGRID vertex on mvpsd")
mvpsd.with_angle(0 .. 45).output("mvpsd_angle", "ACUTE : non 45 degree angle mvpsd")
logger.info("Executing rule nat_OFFGRID")
nat.ongrid(0.005).output("nat_OFFGRID", "OFFGRID : OFFGRID vertex on nat")
nat.with_angle(0 .. 45).output("nat_angle", "ACUTE : non 45 degree angle nat")
logger.info("Executing rule comp_dummy_OFFGRID")
comp_dummy.ongrid(0.005).output("comp_dummy_OFFGRID", "OFFGRID : OFFGRID vertex on comp_dummy")
comp_dummy.with_angle(0 .. 45).output("comp_dummy_angle", "ACUTE : non 45 degree angle comp_dummy")
logger.info("Executing rule poly2_dummy_OFFGRID")
poly2_dummy.ongrid(0.005).output("poly2_dummy_OFFGRID", "OFFGRID : OFFGRID vertex on poly2_dummy")
poly2_dummy.with_angle(0 .. 45).output("poly2_dummy_angle", "ACUTE : non 45 degree angle poly2_dummy")
logger.info("Executing rule metal1_dummy_OFFGRID")
metal1_dummy.ongrid(0.005).output("metal1_dummy_OFFGRID", "OFFGRID : OFFGRID vertex on metal1_dummy")
metal1_dummy.with_angle(0 .. 45).output("metal1_dummy_angle", "ACUTE : non 45 degree angle metal1_dummy")
logger.info("Executing rule metal2_dummy_OFFGRID")
metal2_dummy.ongrid(0.005).output("metal2_dummy_OFFGRID", "OFFGRID : OFFGRID vertex on metal2_dummy")
metal2_dummy.with_angle(0 .. 45).output("metal2_dummy_angle", "ACUTE : non 45 degree angle metal2_dummy")
logger.info("Executing rule metal3_dummy_OFFGRID")
metal3_dummy.ongrid(0.005).output("metal3_dummy_OFFGRID", "OFFGRID : OFFGRID vertex on metal3_dummy")
metal3_dummy.with_angle(0 .. 45).output("metal3_dummy_angle", "ACUTE : non 45 degree angle metal3_dummy")
logger.info("Executing rule metal4_dummy_OFFGRID")
metal4_dummy.ongrid(0.005).output("metal4_dummy_OFFGRID", "OFFGRID : OFFGRID vertex on metal4_dummy")
metal4_dummy.with_angle(0 .. 45).output("metal4_dummy_angle", "ACUTE : non 45 degree angle metal4_dummy")
logger.info("Executing rule metal5_dummy_OFFGRID")
metal5_dummy.ongrid(0.005).output("metal5_dummy_OFFGRID", "OFFGRID : OFFGRID vertex on metal5_dummy")
metal5_dummy.with_angle(0 .. 45).output("metal5_dummy_angle", "ACUTE : non 45 degree angle metal5_dummy")
logger.info("Executing rule metaltop_dummy_OFFGRID")
metaltop_dummy.ongrid(0.005).output("metaltop_dummy_OFFGRID", "OFFGRID : OFFGRID vertex on metaltop_dummy")
metaltop_dummy.with_angle(0 .. 45).output("metaltop_dummy_angle", "ACUTE : non 45 degree angle metaltop_dummy")
logger.info("Executing rule comp_label_OFFGRID")
comp_label.ongrid(0.005).output("comp_label_OFFGRID", "OFFGRID : OFFGRID vertex on comp_label")
comp_label.with_angle(0 .. 45).output("comp_label_angle", "ACUTE : non 45 degree angle comp_label")
logger.info("Executing rule poly2_label_OFFGRID")
poly2_label.ongrid(0.005).output("poly2_label_OFFGRID", "OFFGRID : OFFGRID vertex on poly2_label")
poly2_label.with_angle(0 .. 45).output("poly2_label_angle", "ACUTE : non 45 degree angle poly2_label")
logger.info("Executing rule metal1_label_OFFGRID")
metal1_label.ongrid(0.005).output("metal1_label_OFFGRID", "OFFGRID : OFFGRID vertex on metal1_label")
metal1_label.with_angle(0 .. 45).output("metal1_label_angle", "ACUTE : non 45 degree angle metal1_label")
logger.info("Executing rule metal2_label_OFFGRID")
metal2_label.ongrid(0.005).output("metal2_label_OFFGRID", "OFFGRID : OFFGRID vertex on metal2_label")
metal2_label.with_angle(0 .. 45).output("metal2_label_angle", "ACUTE : non 45 degree angle metal2_label")
logger.info("Executing rule metal3_label_OFFGRID")
metal3_label.ongrid(0.005).output("metal3_label_OFFGRID", "OFFGRID : OFFGRID vertex on metal3_label")
metal3_label.with_angle(0 .. 45).output("metal3_label_angle", "ACUTE : non 45 degree angle metal3_label")
logger.info("Executing rule metal4_label_OFFGRID")
metal4_label.ongrid(0.005).output("metal4_label_OFFGRID", "OFFGRID : OFFGRID vertex on metal4_label")
metal4_label.with_angle(0 .. 45).output("metal4_label_angle", "ACUTE : non 45 degree angle metal4_label")
logger.info("Executing rule metal5_label_OFFGRID")
metal5_label.ongrid(0.005).output("metal5_label_OFFGRID", "OFFGRID : OFFGRID vertex on metal5_label")
metal5_label.with_angle(0 .. 45).output("metal5_label_angle", "ACUTE : non 45 degree angle metal5_label")
logger.info("Executing rule metaltop_label_OFFGRID")
metaltop_label.ongrid(0.005).output("metaltop_label_OFFGRID", "OFFGRID : OFFGRID vertex on metaltop_label")
metaltop_label.with_angle(0 .. 45).output("metaltop_label_angle", "ACUTE : non 45 degree angle metaltop_label")
logger.info("Executing rule metal1_slot_OFFGRID")
metal1_slot.ongrid(0.005).output("metal1_slot_OFFGRID", "OFFGRID : OFFGRID vertex on metal1_slot")
metal1_slot.with_angle(0 .. 45).output("metal1_slot_angle", "ACUTE : non 45 degree angle metal1_slot")
logger.info("Executing rule metal2_slot_OFFGRID")
metal2_slot.ongrid(0.005).output("metal2_slot_OFFGRID", "OFFGRID : OFFGRID vertex on metal2_slot")
metal2_slot.with_angle(0 .. 45).output("metal2_slot_angle", "ACUTE : non 45 degree angle metal2_slot")
logger.info("Executing rule metal3_slot_OFFGRID")
metal3_slot.ongrid(0.005).output("metal3_slot_OFFGRID", "OFFGRID : OFFGRID vertex on metal3_slot")
metal3_slot.with_angle(0 .. 45).output("metal3_slot_angle", "ACUTE : non 45 degree angle metal3_slot")
logger.info("Executing rule metal4_slot_OFFGRID")
metal4_slot.ongrid(0.005).output("metal4_slot_OFFGRID", "OFFGRID : OFFGRID vertex on metal4_slot")
metal4_slot.with_angle(0 .. 45).output("metal4_slot_angle", "ACUTE : non 45 degree angle metal4_slot")
logger.info("Executing rule metal5_slot_OFFGRID")
metal5_slot.ongrid(0.005).output("metal5_slot_OFFGRID", "OFFGRID : OFFGRID vertex on metal5_slot")
metal5_slot.with_angle(0 .. 45).output("metal5_slot_angle", "ACUTE : non 45 degree angle metal5_slot")
logger.info("Executing rule metaltop_slot_OFFGRID")
metaltop_slot.ongrid(0.005).output("metaltop_slot_OFFGRID", "OFFGRID : OFFGRID vertex on metaltop_slot")
metaltop_slot.with_angle(0 .. 45).output("metaltop_slot_angle", "ACUTE : non 45 degree angle metaltop_slot")
logger.info("Executing rule ubmpperi_OFFGRID")
ubmpperi.ongrid(0.005).output("ubmpperi_OFFGRID", "OFFGRID : OFFGRID vertex on ubmpperi")
ubmpperi.with_angle(0 .. 45).output("ubmpperi_angle", "ACUTE : non 45 degree angle ubmpperi")
logger.info("Executing rule ubmparray_OFFGRID")
ubmparray.ongrid(0.005).output("ubmparray_OFFGRID", "OFFGRID : OFFGRID vertex on ubmparray")
ubmparray.with_angle(0 .. 45).output("ubmparray_angle", "ACUTE : non 45 degree angle ubmparray")
logger.info("Executing rule ubmeplate_OFFGRID")
ubmeplate.ongrid(0.005).output("ubmeplate_OFFGRID", "OFFGRID : OFFGRID vertex on ubmeplate")
ubmeplate.with_angle(0 .. 45).output("ubmeplate_angle", "ACUTE : non 45 degree angle ubmeplate")
logger.info("Executing rule schottky_diode_OFFGRID")
schottky_diode.ongrid(0.005).output("schottky_diode_OFFGRID", "OFFGRID : OFFGRID vertex on schottky_diode")
schottky_diode.with_angle(0 .. 45).output("schottky_diode_angle", "ACUTE : non 45 degree angle schottky_diode")
logger.info("Executing rule zener_OFFGRID")
zener.ongrid(0.005).output("zener_OFFGRID", "OFFGRID : OFFGRID vertex on zener")
zener.with_angle(0 .. 45).output("zener_angle", "ACUTE : non 45 degree angle zener")
logger.info("Executing rule res_mk_OFFGRID")
res_mk.ongrid(0.005).output("res_mk_OFFGRID", "OFFGRID : OFFGRID vertex on res_mk")
res_mk.with_angle(0 .. 45).output("res_mk_angle", "ACUTE : non 45 degree angle res_mk")
logger.info("Executing rule opc_drc_OFFGRID")
opc_drc.ongrid(0.005).output("opc_drc_OFFGRID", "OFFGRID : OFFGRID vertex on opc_drc")
opc_drc.with_angle(0 .. 45).output("opc_drc_angle", "ACUTE : non 45 degree angle opc_drc")
logger.info("Executing rule ndmy_OFFGRID")
ndmy.ongrid(0.005).output("ndmy_OFFGRID", "OFFGRID : OFFGRID vertex on ndmy")
ndmy.with_angle(0 .. 45).output("ndmy_angle", "ACUTE : non 45 degree angle ndmy")
logger.info("Executing rule pmndmy_OFFGRID")
pmndmy.ongrid(0.005).output("pmndmy_OFFGRID", "OFFGRID : OFFGRID vertex on pmndmy")
pmndmy.with_angle(0 .. 45).output("pmndmy_angle", "ACUTE : non 45 degree angle pmndmy")
logger.info("Executing rule v5_xtor_OFFGRID")
v5_xtor.ongrid(0.005).output("v5_xtor_OFFGRID", "OFFGRID : OFFGRID vertex on v5_xtor")
v5_xtor.with_angle(0 .. 45).output("v5_xtor_angle", "ACUTE : non 45 degree angle v5_xtor")
logger.info("Executing rule cap_mk_OFFGRID")
cap_mk.ongrid(0.005).output("cap_mk_OFFGRID", "OFFGRID : OFFGRID vertex on cap_mk")
cap_mk.with_angle(0 .. 45).output("cap_mk_angle", "ACUTE : non 45 degree angle cap_mk")
logger.info("Executing rule mos_cap_mk_OFFGRID")
mos_cap_mk.ongrid(0.005).output("mos_cap_mk_OFFGRID", "OFFGRID : OFFGRID vertex on mos_cap_mk")
mos_cap_mk.with_angle(0 .. 45).output("mos_cap_mk_angle", "ACUTE : non 45 degree angle mos_cap_mk")
logger.info("Executing rule ind_mk_OFFGRID")
ind_mk.ongrid(0.005).output("ind_mk_OFFGRID", "OFFGRID : OFFGRID vertex on ind_mk")
ind_mk.with_angle(0 .. 45).output("ind_mk_angle", "ACUTE : non 45 degree angle ind_mk")
logger.info("Executing rule diode_mk_OFFGRID")
diode_mk.ongrid(0.005).output("diode_mk_OFFGRID", "OFFGRID : OFFGRID vertex on diode_mk")
diode_mk.with_angle(0 .. 45).output("diode_mk_angle", "ACUTE : non 45 degree angle diode_mk")
logger.info("Executing rule drc_bjt_OFFGRID")
drc_bjt.ongrid(0.005).output("drc_bjt_OFFGRID", "OFFGRID : OFFGRID vertex on drc_bjt")
drc_bjt.with_angle(0 .. 45).output("drc_bjt_angle", "ACUTE : non 45 degree angle drc_bjt")
logger.info("Executing rule lvs_bjt_OFFGRID")
lvs_bjt.ongrid(0.005).output("lvs_bjt_OFFGRID", "OFFGRID : OFFGRID vertex on lvs_bjt")
lvs_bjt.with_angle(0 .. 45).output("lvs_bjt_angle", "ACUTE : non 45 degree angle lvs_bjt")
logger.info("Executing rule mim_l_mk_OFFGRID")
mim_l_mk.ongrid(0.005).output("mim_l_mk_OFFGRID", "OFFGRID : OFFGRID vertex on mim_l_mk")
mim_l_mk.with_angle(0 .. 45).output("mim_l_mk_angle", "ACUTE : non 45 degree angle mim_l_mk")
logger.info("Executing rule latchup_mk_OFFGRID")
latchup_mk.ongrid(0.005).output("latchup_mk_OFFGRID", "OFFGRID : OFFGRID vertex on latchup_mk")
latchup_mk.with_angle(0 .. 45).output("latchup_mk_angle", "ACUTE : non 45 degree angle latchup_mk")
logger.info("Executing rule guard_ring_mk_OFFGRID")
guard_ring_mk.ongrid(0.005).output("guard_ring_mk_OFFGRID", "OFFGRID : OFFGRID vertex on guard_ring_mk")
guard_ring_mk.with_angle(0 .. 45).output("guard_ring_mk_angle", "ACUTE : non 45 degree angle guard_ring_mk")
logger.info("Executing rule otp_mk_OFFGRID")
otp_mk.ongrid(0.005).output("otp_mk_OFFGRID", "OFFGRID : OFFGRID vertex on otp_mk")
otp_mk.with_angle(0 .. 45).output("otp_mk_angle", "ACUTE : non 45 degree angle otp_mk")
logger.info("Executing rule mtpmark_OFFGRID")
mtpmark.ongrid(0.005).output("mtpmark_OFFGRID", "OFFGRID : OFFGRID vertex on mtpmark")
mtpmark.with_angle(0 .. 45).output("mtpmark_angle", "ACUTE : non 45 degree angle mtpmark")
logger.info("Executing rule neo_ee_mk_OFFGRID")
neo_ee_mk.ongrid(0.005).output("neo_ee_mk_OFFGRID", "OFFGRID : OFFGRID vertex on neo_ee_mk")
neo_ee_mk.with_angle(0 .. 45).output("neo_ee_mk_angle", "ACUTE : non 45 degree angle neo_ee_mk")
logger.info("Executing rule sramcore_OFFGRID")
sramcore.ongrid(0.005).output("sramcore_OFFGRID", "OFFGRID : OFFGRID vertex on sramcore")
sramcore.with_angle(0 .. 45).output("sramcore_angle", "ACUTE : non 45 degree angle sramcore")
logger.info("Executing rule lvs_rf_OFFGRID")
lvs_rf.ongrid(0.005).output("lvs_rf_OFFGRID", "OFFGRID : OFFGRID vertex on lvs_rf")
lvs_rf.with_angle(0 .. 45).output("lvs_rf_angle", "ACUTE : non 45 degree angle lvs_rf")
logger.info("Executing rule lvs_drain_OFFGRID")
lvs_drain.ongrid(0.005).output("lvs_drain_OFFGRID", "OFFGRID : OFFGRID vertex on lvs_drain")
lvs_drain.with_angle(0 .. 45).output("lvs_drain_angle", "ACUTE : non 45 degree angle lvs_drain")
logger.info("Executing rule ind_mk_OFFGRID")
ind_mk.ongrid(0.005).output("ind_mk_OFFGRID", "OFFGRID : OFFGRID vertex on ind_mk")
ind_mk.with_angle(0 .. 45).output("ind_mk_angle", "ACUTE : non 45 degree angle ind_mk")
logger.info("Executing rule hvpolyrs_OFFGRID")
hvpolyrs.ongrid(0.005).output("hvpolyrs_OFFGRID", "OFFGRID : OFFGRID vertex on hvpolyrs")
hvpolyrs.with_angle(0 .. 45).output("hvpolyrs_angle", "ACUTE : non 45 degree angle hvpolyrs")
logger.info("Executing rule lvs_io_OFFGRID")
lvs_io.ongrid(0.005).output("lvs_io_OFFGRID", "OFFGRID : OFFGRID vertex on lvs_io")
lvs_io.with_angle(0 .. 45).output("lvs_io_angle", "ACUTE : non 45 degree angle lvs_io")
logger.info("Executing rule probe_mk_OFFGRID")
probe_mk.ongrid(0.005).output("probe_mk_OFFGRID", "OFFGRID : OFFGRID vertex on probe_mk")
probe_mk.with_angle(0 .. 45).output("probe_mk_angle", "ACUTE : non 45 degree angle probe_mk")
logger.info("Executing rule esd_mk_OFFGRID")
esd_mk.ongrid(0.005).output("esd_mk_OFFGRID", "OFFGRID : OFFGRID vertex on esd_mk")
esd_mk.with_angle(0 .. 45).output("esd_mk_angle", "ACUTE : non 45 degree angle esd_mk")
logger.info("Executing rule lvs_source_OFFGRID")
lvs_source.ongrid(0.005).output("lvs_source_OFFGRID", "OFFGRID : OFFGRID vertex on lvs_source")
lvs_source.with_angle(0 .. 45).output("lvs_source_angle", "ACUTE : non 45 degree angle lvs_source")
logger.info("Executing rule well_diode_mk_OFFGRID")
well_diode_mk.ongrid(0.005).output("well_diode_mk_OFFGRID", "OFFGRID : OFFGRID vertex on well_diode_mk")
well_diode_mk.with_angle(0 .. 45).output("well_diode_mk_angle", "ACUTE : non 45 degree angle well_diode_mk")
logger.info("Executing rule ldmos_xtor_OFFGRID")
ldmos_xtor.ongrid(0.005).output("ldmos_xtor_OFFGRID", "OFFGRID : OFFGRID vertex on ldmos_xtor")
ldmos_xtor.with_angle(0 .. 45).output("ldmos_xtor_angle", "ACUTE : non 45 degree angle ldmos_xtor")
logger.info("Executing rule plfuse_OFFGRID")
plfuse.ongrid(0.005).output("plfuse_OFFGRID", "OFFGRID : OFFGRID vertex on plfuse")
plfuse.with_angle(0 .. 45).output("plfuse_angle", "ACUTE : non 45 degree angle plfuse")
logger.info("Executing rule efuse_mk_OFFGRID")
efuse_mk.ongrid(0.005).output("efuse_mk_OFFGRID", "OFFGRID : OFFGRID vertex on efuse_mk")
efuse_mk.with_angle(0 .. 45).output("efuse_mk_angle", "ACUTE : non 45 degree angle efuse_mk")
logger.info("Executing rule mcell_feol_mk_OFFGRID")
mcell_feol_mk.ongrid(0.005).output("mcell_feol_mk_OFFGRID", "OFFGRID : OFFGRID vertex on mcell_feol_mk")
mcell_feol_mk.with_angle(0 .. 45).output("mcell_feol_mk_angle", "ACUTE : non 45 degree angle mcell_feol_mk")
logger.info("Executing rule ymtp_mk_OFFGRID")
ymtp_mk.ongrid(0.005).output("ymtp_mk_OFFGRID", "OFFGRID : OFFGRID vertex on ymtp_mk")
ymtp_mk.with_angle(0 .. 45).output("ymtp_mk_angle", "ACUTE : non 45 degree angle ymtp_mk")
logger.info("Executing rule dev_wf_mk_OFFGRID")
dev_wf_mk.ongrid(0.005).output("dev_wf_mk_OFFGRID", "OFFGRID : OFFGRID vertex on dev_wf_mk")
dev_wf_mk.with_angle(0 .. 45).output("dev_wf_mk_angle", "ACUTE : non 45 degree angle dev_wf_mk")
logger.info("Executing rule metal1_blk_OFFGRID")
metal1_blk.ongrid(0.005).output("metal1_blk_OFFGRID", "OFFGRID : OFFGRID vertex on metal1_blk")
metal1_blk.with_angle(0 .. 45).output("metal1_blk_angle", "ACUTE : non 45 degree angle metal1_blk")
logger.info("Executing rule metal2_blk_OFFGRID")
metal2_blk.ongrid(0.005).output("metal2_blk_OFFGRID", "OFFGRID : OFFGRID vertex on metal2_blk")
metal2_blk.with_angle(0 .. 45).output("metal2_blk_angle", "ACUTE : non 45 degree angle metal2_blk")
logger.info("Executing rule metal3_blk_OFFGRID")
metal3_blk.ongrid(0.005).output("metal3_blk_OFFGRID", "OFFGRID : OFFGRID vertex on metal3_blk")
metal3_blk.with_angle(0 .. 45).output("metal3_blk_angle", "ACUTE : non 45 degree angle metal3_blk")
logger.info("Executing rule metal4_blk_OFFGRID")
metal4_blk.ongrid(0.005).output("metal4_blk_OFFGRID", "OFFGRID : OFFGRID vertex on metal4_blk")
metal4_blk.with_angle(0 .. 45).output("metal4_blk_angle", "ACUTE : non 45 degree angle metal4_blk")
logger.info("Executing rule metal5_blk_OFFGRID")
metal5_blk.ongrid(0.005).output("metal5_blk_OFFGRID", "OFFGRID : OFFGRID vertex on metal5_blk")
metal5_blk.with_angle(0 .. 45).output("metal5_blk_angle", "ACUTE : non 45 degree angle metal5_blk")
logger.info("Executing rule metalt_blk_OFFGRID")
metalt_blk.ongrid(0.005).output("metalt_blk_OFFGRID", "OFFGRID : OFFGRID vertex on metalt_blk")
metalt_blk.with_angle(0 .. 45).output("metalt_blk_angle", "ACUTE : non 45 degree angle metalt_blk")
logger.info("Executing rule pr_bndry_OFFGRID")
pr_bndry.ongrid(0.005).output("pr_bndry_OFFGRID", "OFFGRID : OFFGRID vertex on pr_bndry")
pr_bndry.with_angle(0 .. 45).output("pr_bndry_angle", "ACUTE : non 45 degree angle pr_bndry")
logger.info("Executing rule mdiode_OFFGRID")
mdiode.ongrid(0.005).output("mdiode_OFFGRID", "OFFGRID : OFFGRID vertex on mdiode")
mdiode.with_angle(0 .. 45).output("mdiode_angle", "ACUTE : non 45 degree angle mdiode")
logger.info("Executing rule metal1_res_OFFGRID")
metal1_res.ongrid(0.005).output("metal1_res_OFFGRID", "OFFGRID : OFFGRID vertex on metal1_res")
metal1_res.with_angle(0 .. 45).output("metal1_res_angle", "ACUTE : non 45 degree angle metal1_res")
logger.info("Executing rule metal2_res_OFFGRID")
metal2_res.ongrid(0.005).output("metal2_res_OFFGRID", "OFFGRID : OFFGRID vertex on metal2_res")
metal2_res.with_angle(0 .. 45).output("metal2_res_angle", "ACUTE : non 45 degree angle metal2_res")
logger.info("Executing rule metal3_res_OFFGRID")
metal3_res.ongrid(0.005).output("metal3_res_OFFGRID", "OFFGRID : OFFGRID vertex on metal3_res")
metal3_res.with_angle(0 .. 45).output("metal3_res_angle", "ACUTE : non 45 degree angle metal3_res")
logger.info("Executing rule metal4_res_OFFGRID")
metal4_res.ongrid(0.005).output("metal4_res_OFFGRID", "OFFGRID : OFFGRID vertex on metal4_res")
metal4_res.with_angle(0 .. 45).output("metal4_res_angle", "ACUTE : non 45 degree angle metal4_res")
logger.info("Executing rule metal5_res_OFFGRID")
metal5_res.ongrid(0.005).output("metal5_res_OFFGRID", "OFFGRID : OFFGRID vertex on metal5_res")
metal5_res.with_angle(0 .. 45).output("metal5_res_angle", "ACUTE : non 45 degree angle metal5_res")
logger.info("Executing rule metal6_res_OFFGRID")
metal6_res.ongrid(0.005).output("metal6_res_OFFGRID", "OFFGRID : OFFGRID vertex on metal6_res")
metal6_res.with_angle(0 .. 45).output("metal6_res_angle", "ACUTE : non 45 degree angle metal6_res")
logger.info("Executing rule border_OFFGRID")
border.ongrid(0.005).output("border_OFFGRID", "OFFGRID : OFFGRID vertex on border")
border.with_angle(0 .. 45).output("border_angle", "ACUTE : non 45 degree angle border")
end #OFFGRID-ANGLES
exec_end_time = Time.now
run_time = exec_end_time - exec_start_time
logger.info("DRC Run time %f seconds" % [run_time])