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alu_w16_9ops_sky130_1000mhz/flow/drc_deck_patched.lydrc ADDED
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1
+ <?xml version="1.0" encoding="utf-8"?>
2
+ <klayout-macro>
3
+ <description/>
4
+ <version/>
5
+ <category>drc</category>
6
+ <prolog/>
7
+ <epilog/>
8
+ <doc/>
9
+ <autorun>false</autorun>
10
+ <autorun-early>false</autorun-early>
11
+ <shortcut/>
12
+ <show-in-menu>true</show-in-menu>
13
+ <group-name>drc_scripts</group-name>
14
+ <menu-path>tools_menu.drc.end</menu-path>
15
+ <interpreter>dsl</interpreter>
16
+ <dsl-interpreter-name>drc-dsl-xml</dsl-interpreter-name>
17
+ <text>#
18
+ # DRC for SKY130 according to :
19
+ # https://skywater-pdk.readthedocs.io/en/latest/rules/periphery.html
20
+ # https://skywater-pdk.readthedocs.io/en/latest/rules/layers.html
21
+ #
22
+ # Distributed under GNU GPLv3: https://www.gnu.org/licenses/
23
+ #
24
+ # History :
25
+ # 2020-10-04 : v1.0 : initial release
26
+ #
27
+ ##########################################################################################
28
+
29
+ # optionnal for a batch launch : klayout -b -rd in_gds=my_layout.gds -rd report_file=6_drc_count.rpt -r drc_sky130.drc
30
+ if $in_gds
31
+ source($in_gds, $topcell)
32
+ end
33
+
34
+ if $report_file
35
+ report("SKY130 DRC runset", $report_file)
36
+ else
37
+ report("SKY130 DRC runset", File.join(File.dirname(RBA::CellView::active.filename), "6_drc_count.rpt"))
38
+ end
39
+
40
+ AL = true # do not change
41
+ CU = false # do not change
42
+ # choose betwen only one of AL or CU back-end flow here :
43
+ backend_flow = AL
44
+
45
+ # enable / disable rule groups
46
+ FEOL = false # front-end-of-line checks
47
+ BEOL = true # back-end-of-line checks
48
+ OFFGRID = true # manufacturing grid/angle checks
49
+
50
+ # klayout setup
51
+ ########################
52
+ # use a tile size of 1mm - not used in deep mode-
53
+ tiles(1000.um)
54
+ # use a tile border of 10 micron:
55
+ tile_borders(1.um)
56
+ #no_borders
57
+
58
+ # hierachical
59
+ deep
60
+
61
+ # use 4 cpu cores
62
+ threads(4)
63
+ # if more inof is needed, set true
64
+ verbose(true)
65
+
66
+ # layers definitions
67
+ ########################
68
+
69
+ # all except purpose (datatype) 5 -- label and 44 -- via
70
+ li_wildcard = "67/0-4,6-43,45-*"
71
+ mcon_wildcard = "67/44"
72
+
73
+ m1_wildcard = "68/0-4,6-43,45-*"
74
+ via_wildcard = "68/44"
75
+
76
+ m2_wildcard = "69/0-4,6-43,45-*"
77
+ via2_wildcard = "69/44"
78
+
79
+ m3_wildcard = "70/0-4,6-43,45-*"
80
+ via3_wildcard = "70/44"
81
+
82
+ m4_wildcard = "71/0-4,6-43,45-*"
83
+ via4_wildcard = "71/44"
84
+
85
+ m5_wildcard = "72/0-4,6-43,45-*"
86
+
87
+ diff = input(65, 20)
88
+ tap = polygons(65, 44)
89
+ nwell = polygons(64, 20)
90
+ dnwell = polygons(64, 18)
91
+ pwbm = polygons(19, 44)
92
+ pwde = polygons(124, 20)
93
+ natfet = polygons(124, 21)
94
+ hvtr = polygons(18, 20)
95
+ hvtp = polygons(78, 44)
96
+ ldntm = polygons(11, 44)
97
+ hvi = polygons(75, 20)
98
+ tunm = polygons(80, 20)
99
+ lvtn = polygons(125, 44)
100
+ poly = polygons(66, 20)
101
+ hvntm = polygons(125, 20)
102
+ nsdm = polygons(93, 44)
103
+ psdm = polygons(94, 20)
104
+ rpm = polygons(86, 20)
105
+ urpm = polygons(79, 20)
106
+ npc = polygons(95, 20)
107
+ licon = polygons(66, 44)
108
+
109
+ li = polygons(li_wildcard)
110
+ mcon = polygons(mcon_wildcard)
111
+
112
+ m1 = polygons(m1_wildcard)
113
+ via = polygons(via_wildcard)
114
+
115
+ m2 = polygons(m2_wildcard)
116
+ via2 = polygons(via2_wildcard)
117
+
118
+ m3 = polygons(m3_wildcard)
119
+ via3 = polygons(via3_wildcard)
120
+
121
+ m4 = polygons(m4_wildcard)
122
+ via4 = polygons(via4_wildcard)
123
+
124
+ m5 = polygons(m5_wildcard)
125
+
126
+ pad = polygons(76, 20)
127
+ nsm = polygons(61, 20)
128
+ capm = polygons(89, 44)
129
+ cap2m = polygons(97, 44)
130
+ vhvi = polygons(74, 21)
131
+ uhvi = polygons(74, 22)
132
+ npn = polygons(82, 20)
133
+ inductor = polygons(82, 24)
134
+ vpp = polygons(82, 64)
135
+ pnp = polygons(82, 44)
136
+ lvs_prune = polygons(84, 44)
137
+ ncm = polygons(92, 44)
138
+ padcenter = polygons(81, 20)
139
+ mf = polygons(76, 44)
140
+ areaid_sl = polygons(81, 1)
141
+ areaid_ce = polygons(81, 2)
142
+ areaid_fe = polygons(81, 3)
143
+ areaid_sc = polygons(81, 4)
144
+ areaid_sf = polygons(81, 6)
145
+ areaid_sw = polygons(81, 7)
146
+ areaid_sr = polygons(81, 8)
147
+ areaid_mt = polygons(81, 10)
148
+ areaid_dt = polygons(81, 11)
149
+ areaid_ft = polygons(81, 12)
150
+ areaid_ww = polygons(81, 13)
151
+ areaid_ld = polygons(81, 14)
152
+ areaid_ns = polygons(81, 15)
153
+ areaid_ij = polygons(81, 17)
154
+ areaid_zr = polygons(81, 18)
155
+ areaid_ed = polygons(81, 19)
156
+ areaid_de = polygons(81, 23)
157
+ areaid_rd = polygons(81, 24)
158
+ areaid_dn = polygons(81, 50)
159
+ areaid_cr = polygons(81, 51)
160
+ areaid_cd = polygons(81, 52)
161
+ areaid_st = polygons(81, 53)
162
+ areaid_op = polygons(81, 54)
163
+ areaid_en = polygons(81, 57)
164
+ areaid_en20 = polygons(81, 58)
165
+ areaid_le = polygons(81, 60)
166
+ areaid_hl = polygons(81, 63)
167
+ areaid_sd = polygons(81, 70)
168
+ areaid_po = polygons(81, 81)
169
+ areaid_it = polygons(81, 84)
170
+ areaid_et = polygons(81, 101)
171
+ areaid_lvt = polygons(81, 108)
172
+ areaid_re = polygons(81, 125)
173
+ areaid_ag = polygons(81, 79)
174
+ poly_rs = polygons(66, 13)
175
+ diff_rs = polygons(65, 13)
176
+ pwell_rs = polygons(64, 13)
177
+ li_rs = polygons(67, 13)
178
+ cfom = polygons(22, 20)
179
+
180
+
181
+ # Define a new custom function that selects polygons by their number of holes:
182
+ # It will return a new layer containing those polygons with min to max holes.
183
+ # max can be nil to omit the upper limit.
184
+ class DRC::DRCLayer
185
+ def with_holes(min, max)
186
+ new_data = RBA::Region::new
187
+ self.data.each do |p|
188
+ if p.holes &gt;= (min || 0) &amp;&amp; (!max || p.holes &lt;= max)
189
+ new_data.insert(p)
190
+ end
191
+ end
192
+ DRC::DRCLayer::new(@engine, new_data)
193
+ end
194
+ end
195
+
196
+ # DRC section
197
+ ########################
198
+ info("DRC section")
199
+
200
+ if FEOL
201
+ info("FEOL section")
202
+ gate = diff &amp; poly
203
+
204
+ # dnwell
205
+ dnwell.width(3.0, euclidian).output("dnwell.2", "dnwell.2 : min. dnwell width : 3.0um")
206
+ dnwell.not(uhvi).not(areaid_po).isolated(6.3, euclidian).output("dnwell.3", "dnwell.3 : min. dnwell spacing : 6.3um")
207
+ dnwell.and(pnp).output("dnwell.4", "dnwell.4 : dnwell must not overlap pnp")
208
+ dnwell.and(psdm).edges.not(psdm.edges).output("dnwell.5", "p+ must not straddle dnwell")
209
+ # dnwell.6 rue not coded
210
+
211
+ # nwell
212
+ nwell.width(0.84, euclidian).output("nwell.1", "nwell.1 : min. nwell width : 0.84um")
213
+ nwell.isolated(1.27, euclidian).output("nwell.2a", "nwell.2a : min. nwell spacing (merged if less) : 1.27um")
214
+ # rule nwell.4 is suitable for digital cells
215
+ #nwell.not(uhvi).not(areaid_en20).not_interacting(tap.and(licon).and(li)).output("nwell.4", "nwell4 : all nwell exempt inside uhvi must contain a n+tap")
216
+ nwell.enclosing(dnwell.not(uhvi).not(areaid_po), 0.4, euclidian).output("nwell.5", "nwell.5 : min. nwell enclosing dnwell exempt unside uhvi : 0.4um")
217
+ dnwell.enclosing(nwell.not(uhvi), 1.03, euclidian).output("nwell.6", "nwell.6 : min. dnwell enclosing nwell exempt unside uhvi : 1.03um")
218
+ dnwell.separation(nwell, 4.5, euclidian).output("nwell.7", "nwell.7 : min. dnwell separation nwell : 4.5um")
219
+
220
+ # pwbm
221
+ pwbm.not(uhvi).output("pwbm", "pwbm must be inside uhvi")
222
+ dnwell.and(uhvi).edges.not(pwbm).output("pwbm.4", "pwbm.4 : dnwell inside uhvi must be enclosed by pwbm")
223
+
224
+ # pwde
225
+ pwde.not(pwbm).output("pwdem.3", "pwdem.3 : pwde must be inside pwbm")
226
+ pwde.not(uhvi).output("pwdem.4", "pwdem.4 : pwde must be inside uhvi")
227
+ pwde.not(dnwell).output("pwdem.5", "pwdem.5 : pwde must be inside dnwell")
228
+
229
+ # hvtp
230
+ #hvtp.not(nwell).output("hvtp", "hvtp must inside nwell")
231
+ hvtp.width(0.38, euclidian).output("hvtp.1", "hvtp.1 : min. hvtp width : 0.38um")
232
+ hvtp.isolated(0.38, euclidian).output("hvtp.2", "hvtp.2 : min. hvtp spacing : 0.38um")
233
+ hvtp.enclosing(gate.and(psdm), 0.18, euclidian).output("hvtp.3", "hvtp.3 : min. hvtp enclosure of pfet gate : 0.18um")
234
+ hvtp.separation(gate.and(psdm), 0.18, euclidian).output("hvtp.4", "hvtp.4 : min. hvtp spacing pfet gate: 0.18um")
235
+ hvtp.with_area(0..0.265).output("hvtp.5", "hvtp.5 : min. hvtp area : 0.265um²")
236
+
237
+ # hvtr
238
+ hvtr.width(0.38, euclidian).output("hvtr.1", "hvtr.1 : min. hvtr width : 0.38um")
239
+ hvtr.isolated(0.38, euclidian).output("hvtr.2", "hvtr.2 : min. hvtr spacing : 0.38um")
240
+
241
+ # lvtn
242
+ lvtn.width(0.38, euclidian).output("lvtn.1", "lvtn.1 : min. lvtn width : 0.38um")
243
+ lvtn.isolated(0.38, euclidian).output("lvtn.2", "lvtn.2 : min. lvtn spacing : 0.38um")
244
+ lvtn.separation(diff.and(poly).not(uhvi), 0.18, euclidian).output("lvtn.3a", "lvtn.3a : min. lvtn spacing to gate : 0.18um")
245
+ lvtn.separation(diff.and(nwell).not(poly), 0.235, projection).output("lvtn.3b", "lvtn.3b : min. lvtn spacing to pfet s/d : 0.18um")
246
+ lvtn.enclosing(gate.not(uhvi), 0.18, euclidian).output("lvtn.4b", "lvtn.4b : min. lvtn enclosing to gate : 0.18um")
247
+ lvtn.separation(hvtp, 0.38, euclidian).output("lvtn.9", "lvtn.9 : min. lvtn spacing hvtp : 0.38um")
248
+ nwell.not_interacting(gate.and(nwell.not(hvi).not(areaid_ce))).enclosing(lvtn.not(uhvi), 0.18, euclidian).polygons.without_area(0).output("lvtn.4b", "lvtn.4b : min. lvtn enclosure of gate : 0.18um")
249
+ lvtn.separation(nwell.inside(areaid_ce), 0.38, euclidian).output("lvtn.12", "lvtn.12 : min. lvtn spacing nwell inside areaid.ce : 0.38um")
250
+ lvtn.with_area(0..0.265).output("lvtn.13", "lvtn.13 : min. lvtn area : 0.265um²")
251
+
252
+ # ncm
253
+ ncm.and(tap.and(nwell).or(diff.not(nwell))).output("ncm.x.3", "ncm.x.3 : ncm must not overlap n+diff")
254
+ ncm.width(0.38, euclidian).output("ncm.1", "ncm.1 : min. ncm width : 0.38um")
255
+ ncm.isolated(0.38, euclidian).output("ncm.2", "ncm.2 : min. ncm spacing manual merge if smaller : 0.38um")
256
+ ncm.enclosing(diff.and(nwell), 0.18, euclidian).output("ncm.3", "ncm.3 : min. ncm enclosure of p+diff : 0.18um")
257
+ ncm.separation(lvtn.and(diff), 0.23, euclidian).output("ncm.5", "ncm.5 : min. ncm spacing lvtn diff : 0.23um")
258
+ ncm.separation(diff.not(nwell), 0.2, euclidian).output("ncm.6", "ncm.6 : min. ncm spacing nfet : 0.2um")
259
+ ncm.with_area(0..0.265).output("ncm.7", "ncm.13 : min. ncm area : 0.265um²")
260
+
261
+ # diff-tap
262
+ difftap = diff + tap
263
+ difftap.width(0.15, euclidian).output("difftap.1", "difftap.1 : min. difftap width : 0.15um")
264
+ not_in_cell1 = layout(source.cell_obj).select("s8cell_ee_plus_sseln_a", "-s8cell_ee_plus_sseln_b", "-s8cell_ee_plus_sselp_a", "-s8cell_ee_plus_sselp_b" , "-s8fpls_pl8", "-s8fpls_rdrv4" , "-s8fpls_rdrv4f", "-s8fpls_rdrv8")
265
+ not_in_cell1_diff = not_in_cell1.input(65, 20)
266
+ not_in_cell1_diff.not(areaid_sc).not(poly).edges.and(gate.edges).with_length(0,0.42).output("difftap.2", "difftap.2: min. gate (exempt areaid.sc) width : 0.42um")
267
+ diff.and(areaid_sc).not(poly).edges.and(gate.edges).with_length(0,0.36).output("difftap.2", "difftap.2: min. gate inside areaid.sc width : 0.36um")
268
+ difftap.isolated(0.27, euclidian).output("difftap.3", "difftap.3 : min. difftap spacing : 0.27um")
269
+ tap.edges.and(diff.edges).with_length(0,0.29).output("difftap.4", "difftap.4 : min. tap bound by diffusion : 0.29um")
270
+ tap.edges.and(diff.edges).space(0.4, projection).output("difftap.5", "difftap.5 : min. tap bound by 2 diffusions : 0.4um")
271
+ (tap.edges.and(diff.edges)).extended(0.01, 0.01, 0, 0, false).not(tap.and(diff)).and(diff.or(tap)).output("difftap.6", "difftap.6 : diff and tap not allowed to extend beyong their abutting ege")
272
+ tap.edges.not_interacting(diff.edges).separation(diff.edges, 0.13, euclidian).output("difftap.7", "difftap.7 : min. diff/tap spacing to non-coincident diff edge : 0.13um")
273
+ diff.edges.not_interacting(tap.edges).separation(tap.edges, 0.13, euclidian).output("difftap.7", "difftap.7 : min. diff/tap spacing to non-coincident tap edge : 0.13um")
274
+ nwell.enclosing(diff.not(uhvi).and(psdm), 0.18, euclidian).output("difftap.8", "difftap.8 : min. p+diff enclosure by nwell : 0.18um")
275
+ diff.not(uhvi).and(nsdm).separation(nwell, 0.34, euclidian).output("difftap.9", "difftap.9 : min. n+diff spacing to nwell : 0.34um")
276
+ nwell.enclosing(tap.not(uhvi).and(nsdm), 0.18, euclidian).output("difftap.10", "difftap.10 : min. n+tap enclosure by nwell : 0.18um")
277
+ tap.not(uhvi).and(psdm).separation(nwell, 0.13, euclidian).output("difftap.11", "difftap.11 : min. p+tap spacing to nwell : 0.13um")
278
+
279
+ # tunm
280
+ tunm.width(0.41, euclidian).output("tunm.1", "tunm.1 : min. tunm width : 0.41um")
281
+ tunm.isolated(0.5, euclidian).output("tunm.2", "tunm.2 : min. tunm spacing : 0.5um")
282
+ tunm.enclosing(gate, 0.095, euclidian).output("tunm.3", "tunm.3 : min. tunm beyond gate : 0.095um")
283
+ tunm.separation(gate.not_interacting(tunm), 0.095, euclidian).output("tunm.4", "tunm.4 : min. tunm spacing to gate outside tunm: 0.095um")
284
+ gate.and(tunm).edges.not(gate.edges).output("tunm.5", "tunm.5 : gate must not straddle tunm")
285
+ tunm.not(dnwell).output("tunm.6a", "tunm.6a : tunm not allowed outside dnwell")
286
+ tunm.with_area(0..0.672).output("tunm.7", "tunm.7 : min. tunm area : 0.672um²")
287
+
288
+ # poly
289
+ poly.width(0.15, euclidian).output("poly.1a", "poly.1a : min. poly width : 0.15um")
290
+ poly.not(diff).edges.and(gate.and(lvtn).edges).space(0.35, euclidian).output("poly.1b", "poly.1b: min. lvtn gate width : 0.35um")
291
+ poly.isolated(0.21, euclidian).output("poly.2", "poly.2 : min. poly spacing : 0.21um")
292
+ poly.and(rpm.or(urpm).or(poly_rs)).width(0.33, euclidian).output("poly.3", "poly.3 : min. poly resistor width : 0.33um")
293
+ poly.not(gate).separation(diff, 0.075, projection).polygons.without_area(0).output("poly.4", "poly.4 : min. poly on field spacing to diff : 0.075um")
294
+ poly.not(gate).separation(tap, 0.055, euclidian).output("poly.5", "poly.5 : min. poly on field spacing to tap : 0.055um")
295
+ gate.separation(tap, 0.3, projection).polygons.and(diff).output("poly.6", "poly.6 : min. gate spacing to tap : 0.3um")
296
+ diff.enclosing(gate, 0.25, projection).polygons.without_area(0).output("poly.7", "poly.7 : min. source/drain length : 0.25um")
297
+ poly.enclosing(gate, 0.13, projection).polygons.without_area(0).output("poly.8", "poly.8 : min. poly extention gate (endcap) : 0.13um")
298
+ poly.and(rpm.or(urpm).or(poly_rs)).separation(poly.or(difftap), 0.48, euclidian).polygons.without_area(0).output("poly.9", "poly.9 : min. poly resistor space to poly or diff/tap : 0.48um")
299
+ diff.merged.edges.end_segments(0.01).and(poly).output("poly.10", "poly.10 : poly must not overlap diff corner")
300
+ gate.with_angle(0 .. 90).output("poly.11", "poly.11 : non 90 degree angle gate")
301
+ not_in_cell3 = layout(source.cell_obj).select("s8fgvr_n_fg2")
302
+ not_in_cell3_poly = not_in_cell3.input(66, 20)
303
+ not_in_cell3_poly.not(hvi).not(nwell.not(hvi)).and(tap).output("poly.12", "poly.12 : poly must not overlap tap")
304
+ poly.and(diff_rs).output("poly.15", "poly.15 : poly must not overlap diff resistor")
305
+
306
+ # rpm
307
+ rpm.width(1.27, euclidian).output("rpm.1a", "rpm.1a : min. rpm width : 1.27um")
308
+ rpm.isolated(0.84, euclidian).output("rpm.2", "rpm.2 : min. rpm spacing : 0.84um")
309
+ rpm.enclosing(poly.and(poly_rs).and(psdm), 0.2, euclidian).output("rpm.3", "rpm.3 : min. rpm enclosure of poly resistor : 0.2um")
310
+ psdm.enclosing(poly.and(poly_rs).and(rpm), 0.11, euclidian).output("rpm.4", "rpm.4 : min. psdm enclosure of poly resistor : 0.11um")
311
+ npc.enclosing(poly.and(poly_rs).and(rpm), 0.095, euclidian).output("rpm.5", "rpm.5 : min. npc enclosure of poly resistor : 0.095um")
312
+ rpm.separation(nsdm, 0.2, euclidian).output("rpm.6", "rpm.6 : min. rpm spacing nsdm: 0.2um")
313
+ rpm.separation(poly, 0.2, euclidian).output("rpm.7", "rpm.7 : min. rpm spacing poly: 0.2um")
314
+ rpm.and(poly).edges.not(poly.edges).output("rpm.8", "rpm.8 : poly must not straddle rpm")
315
+ poly.and(poly_rs).and(rpm).separation(hvntm, 0.185, euclidian).output("rpm.9", "rpm.9 : min. poly resistor spacing hvntm: 0.185um")
316
+ rpm.and(pwbm).output("rpm.10", "rpm.107 : min. rpm spacing pwbm: na")
317
+
318
+ # varac
319
+ varac = poly &amp; tap &amp; (nwell - hvi) - areaid_ce
320
+ tap.not(poly).edges.and(varac.edges).space(0.18, euclidian).output("varac.1", "varac.1: min. varac channel length : 0.18um")
321
+ tap.and(poly).edges.and(varac.edges).space(1.0, euclidian).output("varac.2", "varac.2: min. varac channel wdth : 1.0um")
322
+ varac.separation(hvtp, 0.18, euclidian).output("varac.3", "varac.3: min. varac channel space to hvtp : 0.18um")
323
+ varac.separation(licon.and(tap), 0.25, euclidian).output("varac.4", "varac.4: min. varac channel space to licon on tap : 0.25um")
324
+ nwell.enclosing(poly.overlapping(varac), 0.15, euclidian).output("varac.5", "varac.5: min. nwell enclosure of poly overlapping varac channel : 0.15um")
325
+ tap.overlapping(varac).separation(difftap, 0.27, euclidian).polygons.without_area(0).output("varac.6", "varac.6: min. varac channel tap space to difftap : 0.27um")
326
+ nwell.overlapping(varac).and(diff.and(nwell)).output("varac.7", "varac.7: nwell overlapping varac channel must not overlap p+diff")
327
+
328
+ # photo
329
+ photodiode = dnwell &amp; areaid_po
330
+ photodiode.edges.without_length(3.0).output("photo.2", "photo.2 : minimum/maximum width of photodiode : 3.0um")
331
+ photodiode.isolated(5.0, euclidian).output("photo.3", "photo.3 : mini. photodiode spacing : 5.0um")
332
+ photodiode.separation(dnwell, 5.3, euclidian).output("photo.4", "photo.4 : mini. photodiode spacing to dnwell : 5.3um")
333
+ areaid_po.not(dnwell).output("photo.5.6", "photo.5.6 : photodiode edges must coincide areaid.po and enclosed by dnwell")
334
+ photodiode.not(tap.not(nwell).holes).output("photo.7", "photo.7 : photodiode must be enclosed by p+tap ring")
335
+ photodiode.and(nwell).edges.without_length(0.84).output("photo.8", "photo.8 : minimum/maximum width of nwell inside photodiode : 0.84um")
336
+ areaid_po.edges.and(photodiode.and(nwell).sized(1.08)).without_length(12.0).output("photo.9", "photo.9 : minimum/maximum enclosure of nwell by photodiode : 1.08um")
337
+ photodiode.and(tap).edges.without_length(0.41).output("photo.10", "photo.10 : minimum/maximum width of tap inside photodiode : 0.41um")
338
+
339
+ # npc
340
+ npc.width(0.27, euclidian).output("npc.1", "npc.1 : min. npc width : 0.27um")
341
+ npc.isolated(0.27, euclidian).output("npc.2", "npc.2 : min. npc spacing, should be mnually merge if less : 0.27um")
342
+ npc.separation(gate, 0.09, euclidian).output("npc.4", "npc.4 : min. npc spacing to gate : 0.09um")
343
+
344
+ # nsdm/psdm
345
+ npsdm = nsdm + psdm
346
+ nsdm.width(0.38, euclidian).output("nsdm.1", "nsdm.1 : min. nsdm width : 0.38um")
347
+ psdm.width(0.38, euclidian).output("psdm.1", "psdm.1 : min. psdm width : 0.38um")
348
+ nsdm.isolated(0.38, euclidian).output("n/psdm.1", "n/psdm.1 : min. nsdm spacing, should be mnually merge if less : 0.38um")
349
+ psdm.isolated(0.38, euclidian).output("n/psdm.1", "n/psdm.1 : min. psdm spacing, should be mnually merge if less : 0.38um")
350
+ npsdm.enclosing(diff, 0.125, euclidian).polygons.not(tap.sized(0.125)).output("n/psdm.5a", "n/psdm.5a : min. n/psdm enclosure diff except butting edge : 0.125um")
351
+ npsdm.enclosing(tap, 0.125, euclidian).polygons.not(diff.sized(0.125)).output("n/psdm.5b", "n/psdm.5b : min. n/psdm enclosure tap except butting edge : 0.125um")
352
+ tap.edges.and(diff.edges).not(npsdm).output("n/psdm.6", "n/psdm.6 : min. n/psdm enclosure of butting edge : 0.0um")
353
+ nsdm.and(difftap).separation(psdm.and(difftap), 0.13, euclidian).polygons.without_area(0).output("n/psdm.7", "n/psdm.7 : min. nsdm diff spacing to psdm diff except butting edge : 0.13um")
354
+ diff.and((nsdm.and(nwell)).or(psdm.not(nwell))).output("n/psdm.8", "n/psdm.8 : diff should be the opposite type of well/substrate underneath")
355
+ tap.and((nsdm.not(nwell)).or(psdm.and(nwell))).output("n/psdm.8", "n/psdm.8 : tap should be the same type of well/substrate underneath")
356
+ tap.and(diff).without_area(0).output("tap and diff", "tap and diff must not overlap")
357
+ nsdm.with_area(0..0.265).output("n/psdm.10a", "n/psdm.10a : min. nsdm area : 0.265um²")
358
+ psdm.with_area(0..0.265).output("n/psdm.10b", "n/psdm.10b : min. psdm area : 0.265um²")
359
+
360
+ # licon
361
+ licon.not(poly.interacting(poly_rs).and(rpm)).edges.without_length(0.17).output("licon.1", "licon.1 : minimum/maximum width of licon : 0.17um")
362
+ licon.and(poly.interacting(poly_rs).and(rpm)).not_interacting((licon.and(poly.interacting(poly_rs).and(rpm)).edges.with_length(0.19)).or(licon.and(poly.interacting(poly_rs).and(rpm)).edges.with_length(2.0))).output("licon.1b/c", "licon.1b/c : minimum/maximum width/length of licon inside poly resistor : 2.0/0.19um")
363
+ licon.isolated(0.17, euclidian).output("licon.2", "licon.2 : min. licon spacing : 0.17um")
364
+ licon.and(poly.interacting(poly_rs).and(rpm)).edges.with_length(0.19).space(0.35, euclidian).output("licon.2b", "licon.2b : min. licon 0.19um edge on resistor spacing : 0.35um")
365
+ licon.interacting(licon.and(poly.interacting(poly_rs).and(rpm)).edges.with_length(2.0)).separation(licon.and(poly.interacting(poly_rs).and(rpm)), 0.51, euclidian).output("licon.2c", "licon.2c : min. licon 2.0um edge on resistor spacing : 0.51um")
366
+ licon.and(poly.interacting(poly_rs).and(rpm)).separation(licon.not(poly.interacting(poly_rs).and(rpm)), 0.51, euclidian).output("licon.2d", "licon.2d : min. licon on resistor spacing other licon : 0.51um")
367
+ # rule licon.3 not coded
368
+ licon.not(li).not(poly.or(diff).or(tap)).output("licon.4", "licon.4 : min. licon must overlap li and (poly or tap or diff) ")
369
+ diff.enclosing(licon, 0.04, euclidian).output("licon.5", "licon.5 : min. diff enclosure of licon : 0.04um")
370
+ tap.edges.and(diff.edges).separation(licon.and(tap).edges, 0.06, euclidian).output("licon.6", "licon.6 : min. abutting edge spacing to licon tap : 0.06um")
371
+ licon_edges_with_less_enclosure_tap = tap.enclosing(licon, 0.12, projection).second_edges
372
+ opposite1 = (licon.edges - licon_edges_with_less_enclosure_tap).width(0.17 + 1.dbu, projection).polygons
373
+ licon.not_interacting(opposite1).output("licon.7", "licon.7 : min. tap enclosure of licon by one of 2 opposite edges : 0.12um")
374
+ poly.enclosing(licon, 0.05, euclidian).output("licon.8", "licon.8 : min. poly enclosure of licon : 0.05um")
375
+ licon008 = licon.interacting(poly.enclosing(licon, 0.08, euclidian).polygons)
376
+ licon_edges_with_less_enclosure_poly = poly.enclosing(licon, 0.08, projection).second_edges
377
+ opposite2 = (licon.edges - licon_edges_with_less_enclosure_poly).width(0.17 + 1.dbu, projection).polygons
378
+ licon008.not_interacting(opposite2).output("licon.8a", "licon.8a : min. poly enclosure of licon by one of 2 opposite edges : 0.08um")
379
+ # rule licon.9 not coded
380
+ licon.and(tap.and(nwell.not(hvi))).separation(varac, 0.25, euclidian).output("licon.10", "licon.10 : min. licon spacing to varac channel : 0.25um")
381
+ not_in_cell4 = layout(source.cell_obj).select("-s8fs_gwdlvx4", "-s8fs_gwdlvx8", "-s8fs_hvrsw_x4", "-s8fs_hvrsw8", "-s8fs_hvrsw264", "-s8fs_hvrsw520", "-s8fs_rdecdrv", "-s8fs_rdec8”, “s8fs_rdec32", "-s8fs_rdec264", "-s8fs_rdec520")
382
+ not_in_cell4_licon = not_in_cell4.input(66, 44)
383
+ not_in_cell4_licon.and(diff.or(tap)).separation(gate.not(areaid_sc), 0.055, euclidian).output("licon.11", "licon.11 : min. licon spacing to gate : 0.055um")
384
+ licon.and(diff.or(tap)).separation(gate.and(areaid_sc), 0.05, euclidian).output("licon.11a", "licon.11a : min. licon spacing to gate inside areaid.sc : 0.05um")
385
+ in_cell4 = layout(source.cell_obj).select("+s8fs_gwdlvx4", "+s8fs_gwdlvx8", "+s8fs_hvrsw_x4", "+s8fs_hvrsw8", "+s8fs_hvrsw264", "+s8fs_hvrsw520")
386
+ in_cell4_licon = in_cell4.input(66, 44)
387
+ in_cell4_licon.and(diff.or(tap)).separation(gate, 0.04, euclidian).output("licon.11c", "licon.11c : min. licon spacing to gate for specific cells: 0.04um")
388
+ # rules 11.b , 11.d not coded
389
+ diff.interacting(gate).not(diff.interacting(gate).width(5.7, euclidian).polygons).output("licon.12", "licon.12 : max. sd width without licon : 5.7um")
390
+ licon.and(diff.or(tap)).separation(npc, 0.09, euclidian).output("licon.13", "licon.13 : min. difftap licon spacing to npc : 0.09um")
391
+ licon.and(poly).separation(diff.or(tap), 0.19, euclidian).output("licon.14", "licon.14 : min. poly licon spacing to difftap : 0.19um")
392
+ npc.enclosing(licon.and(poly), 0.1, euclidian).output("licon.15", "licon.15 : min. npc enclosure of poly-licon : 0.1um")
393
+ # rule licon.16 not applicable for the diff for the nmos of a nand gates or the pmos of a nor gates
394
+ #diff.not(gate).not_interacting(licon).output("licon.16", "licon.16 : diff must enclose one licon")
395
+ tap.not(uhvi).not_interacting(licon).output("licon.16", "licon.16 : tap must enclose one licon")
396
+ poly.and(tap).edges.not(tap.edges).output("licon.17", "licon.17 : tap must not straddle poly")
397
+ npc.not_interacting(licon.and(poly)).output("licon.18", "licon.18 : npc mut enclosed one poly-licon")
398
+
399
+ # vpp
400
+ vpp.width(1.43, euclidian).output("vpp.1", "vpp.1 : min. vpp width : 1.43um")
401
+ # rules 1.b, 1.c not coded
402
+ vpp.and(poly.or(difftap)).output("vpp.3", "vpp.3 : vpp must not overlapp poly or diff or tap")
403
+ vpp.and(nwell).edges.not(vpp.edges).output("vpp.4", "vpp.4 : vpp must not straddle nwell")
404
+ vpp.and(dnwell).edges.not(vpp.edges).output("vpp.4", "vpp.4 : vpp must not straddle dnwell")
405
+ vpp.and(poly.or(li).or(m1).or(m2)).separation(poly.or(li).or(m1).or(m2), 1.5, euclidian).polygons.with_area(2.25,nil).output("vpp.5", "vpp.5 : min. vpp spacing to poly or li or m1 or m2 : 1.5um")
406
+ vpp.with_area(0..area(vpp.and(m3))*0.25).output("vpp.5a", "vpp.5a : max. m3 density in vpp : 0.25")
407
+ vpp.with_area(0..area(vpp.and(m4))*0.3).output("vpp.5b", "vpp.5b : max. m4 density in vpp : 0.3")
408
+ vpp.with_area(0..area(vpp.and(m5))*0.4).output("vpp.5c", "vpp.5c : max. m5 density in vpp : 0.4")
409
+ nwell.enclosing(vpp, 1.5, euclidian).output("vpp.8", "vpp.8 : nwell enclosure of vpp : 1.5")
410
+ vpp.separation(nwell, 1.5, euclidian).polygons.without_area(0).output("vpp.9", "vpp.9 : vpp spacing to nwell : 1.5")
411
+ # rule vpp.10 not coded
412
+ # rule vpp.11 not coded because moscap is not defined properly by any gds layer
413
+ # rules vpp.12a, 12b, 12c not coded because specific to one cell
414
+ if backend_flow = CU
415
+ m1.separation(vpp.and(m1), 0.16, euclidian).polygons.without_area(0).output("vpp.13", "vpp.13 : m1 spacing to m1inside vpp : 0.16")
416
+ end
417
+
418
+ # CAPM
419
+ capm.width(1.0, euclidian).output("capm.1", "capm.1 : min. capm width : 1.0um")
420
+ capm.isolated(0.84, euclidian).output("capm.2a", "capm.2a : min. capm spacing : 0.84um")
421
+ m2.interacting(capm).isolated(1.2, euclidian).output("capm.2b", "capm.2b : min. capm spacing : 1.2um")
422
+ m2.enclosing(capm, 0.14, euclidian).output("capm.3", "capm.3 : min. m2 enclosure of capm : 0.14um")
423
+ capm.enclosing(via2, 0.14, euclidian).output("capm.4", "capm.4 : min. capm enclosure of via2 : 0.14um")
424
+ capm.separation(via2, 0.14, euclidian).output("capm.5", "capm.5 : min. capm spacing to via2 : 0.14um")
425
+ capm.sized(-20.0).sized(20.0).output("capm.6", "capm.6 : max. capm lenght/width : 20um")
426
+ capm.with_angle(0 .. 90).output("capm.7", "capm.7 : capm not rectangle")
427
+ capm.separation(via, 0.14, euclidian).polygons.without_area(0).output("capm.8", "capm.8 : min. capm spacing to via : 0.14um")
428
+ capm.and(nwell).edges.not(capm.edges).output("capm.10", "capm.10 : capm must not straddle nwell")
429
+ capm.and(diff).edges.not(capm.edges).output("capm.10", "capm.10 : capm must not straddle diff")
430
+ capm.and(tap).edges.not(capm.edges).output("capm.10", "capm.10 : capm must not straddle tap")
431
+ capm.and(poly).edges.not(capm.edges).output("capm.10", "capm.10 : capm must not straddle poly")
432
+ capm.and(li).edges.not(capm.edges).output("capm.10", "capm.10 : capm must not straddle li")
433
+ capm.and(m1).edges.not(capm.edges).output("capm.10", "capm.10 : capm must not straddle m1")
434
+ capm.separation(m2.not_interacting(capm), 0.14, euclidian).output("capm.11", "capm.11 : min. capm spacing to m2 not overlapping capm : 0.5um")
435
+
436
+ end #FEOL
437
+
438
+ if BEOL
439
+ info("BEOL section")
440
+
441
+ # li
442
+ not_in_cell5 = source.select("-s8rf2_xcmvpp_hd5_*")
443
+ not_in_cell5_li = not_in_cell5.polygons(li_wildcard)
444
+ not_in_cell5_li.width(0.17, euclidian).output("li.1", "li.1 : min. li width : 0.17um")
445
+
446
+ in_cell5_li = li - not_in_cell5_li
447
+ in_cell5_li.width(0.14, euclidian).output("li.1a", "li.1a : min. li width for the cells s8rf2_xcmvpp_hd5_* : 0.14um")
448
+
449
+ # rule li.2 not coded
450
+
451
+ not_in_cell5_li.space(0.17, euclidian).output("li.3", "li.3 : min. li spacing : 0.17um")
452
+ in_cell5_li.space(0.14, euclidian).output("li.3a", "li.3a : min. li spacing for the cells s8rf2_xcmvpp_hd5_* : 0.14um")
453
+ licon08 = licon.interacting(li.enclosing(licon, 0.08, euclidian).polygons)
454
+ licon_edges_with_less_enclosure_li = li.enclosing(licon, 0.08, projection).second_edges
455
+ opposite3 = (licon.edges - licon_edges_with_less_enclosure_li).width(0.17 + 1.dbu, projection).polygons
456
+ licon08.not_interacting(opposite3).output("li.5", "li.5 : min. li enclosure of licon of 2 opposite edges : 0.08um")
457
+ li.with_area(0..0.0561).output("li.6", "li.6 : min. li area : 0.0561um²")
458
+
459
+ # ct
460
+ mcon.edges.without_length(0.17).output("ct.1", "ct.1 : minimum/maximum width of mcon : 0.17um")
461
+ mcon.space(0.19, euclidian).output("ct.2", "ct.2 : min. mcon spacing : 0.19um")
462
+ # rule ct.3 not coded
463
+ mcon.not(li).output("ct.4", "ct.4 : mcon should covered by li")
464
+ if backend_flow = CU
465
+ li.interacting(li.and(m1).not(mcon).with_holes(1,10)).enclosing(mcon, 0.2, euclidian).output("ct.irdrop.1", "ct.irdrop.1 : min. li enclsoure of 1..10 mcon : 0.2um")
466
+ li.interacting(li.and(m1).not(mcon).with_holes(11,100)).enclosing(mcon, 0.3, euclidian).output("ct.irdrop.2", "ct.irdrop.2 : min. li enclsoure of 11..100 mcon : 0.3um")
467
+ end
468
+
469
+ # m1
470
+ m1.width(0.14, euclidian).output("m1.1", "m1.1 : min. m1 width : 0.14um")
471
+
472
+ huge_m1 = m1.sized(-1.5).sized(1.5)
473
+ non_huge_m1 = m1 - huge_m1
474
+
475
+ non_huge_m1.space(0.14, euclidian).output("m1.2", "m1.2 : min. m1 spacing : 0.14um")
476
+
477
+ (huge_m1.separation(non_huge_m1, 0.28, euclidian) + huge_m1.space(0.28, euclidian)).output("m1.3ab", "m1.3ab : min. 3um.m1 spacing m1 : 0.28um")
478
+
479
+ not_in_cell6 = layout(source.cell_obj).select("-s8cell_ee_plus_sseln_a", "-s8cell_ee_plus_sseln_b", "-s8cell_ee_plus_sselp_a", "-s8cell_ee_plus_sselp_b", "-s8fpls_pl8", "-s8fs_cmux4_fm")
480
+ not_in_cell6_m1 = not_in_cell6.input(m1_wildcard)
481
+ not_in_cell6_m1.enclosing(mcon, 0.03, euclidian).output("m1.4", "m1.4 : min. m1 enclosure of mcon : 0.03um")
482
+ in_cell6 = layout(source.cell_obj).select("+s8cell_ee_plus_sseln_a", "+s8cell_ee_plus_sseln_b", "+s8cell_ee_plus_sselp_a", "+s8cell_ee_plus_sselp_b", "+s8fpls_pl8", "+s8fs_cmux4_fm")
483
+ in_cell6_m1 = in_cell6.input(m1_wildcard)
484
+ in_cell6_m1.enclosing(mcon, 0.005, euclidian).output("m1.4a", "m1.4a : min. m1 enclosure of mcon for specific cells : 0.005um")
485
+ m1.with_area(0..0.083).output("m1.6", "m1.6 : min. m1 area : 0.083um²")
486
+ m1.holes.with_area(0..0.14).output("m1.7", "m1.7 : min. m1 holes area : 0.14um²")
487
+ if backend_flow = AL
488
+ mcon06 = mcon.interacting(poly.enclosing(m1, 0.06, euclidian).polygons)
489
+ mcon_edges_with_less_enclosure_m1 = m1.enclosing(mcon, 0.06, projection).second_edges
490
+ opposite4 = (mcon.edges - mcon_edges_with_less_enclosure_m1).width(0.17 + 1.dbu, projection).polygons
491
+ mcon06.not_interacting(opposite4).output("m1.5", "m1.5 : min. m1 enclosure of mcon of 2 opposite edges : 0.06um")
492
+ # rule m1.pd.1, rule m1.pd.2a, rule m1.pd.2b not coded
493
+ end
494
+ if bakend_flow = CU
495
+ m1.sized(-2.0).sized(2.0).output("m1.11", "m1.11 : max. m1 width after slotting : 4.0um")
496
+ # rule m1.12 not coded because inconsistent with m1.11
497
+ # rule m1.13, m1.14, m1.14a not coded : see : https://www.klayout.de/forum/discussion/comment/6759
498
+ end
499
+
500
+ # via
501
+ #rule via.3 not coded
502
+ via.not(m1).output("via.4c.5c", "via.4c.5c : m1 must enclose all via")
503
+ if backend_flow = AL
504
+ via.not(areaid_mt).edges.without_length(0.15).output("via.1a", "via.1a : minimum/maximum width of via : 0.15um")
505
+ via.and(areaid_mt).not_interacting((via.and(areaid_mt).edges.without_length(0.15)).or(via.and(areaid_mt).edges.without_length(0.23)).or(via.and(areaid_mt).edges.without_length(0.28))).output("via.1b", "via.1b : minimum/maximum width of via in areaid.mt: 0.15um or 0.23um or 0.28um")
506
+ via.isolated(0.17, euclidian).output("via.2", "via.2 : min. via spacing : 0.17um")
507
+ m1.enclosing(via.not_interacting(via.edges.without_length(0.15)), 0.055, euclidian).output("via.4a", "via.4a : min. m1 enclosure of 0.15um via : 0.055um")
508
+ m1.enclosing(via.not_interacting(via.edges.without_length(0.23)), 0.03, euclidian).output("via.4b", "via.4b : min. m1 enclosure of 0.23um via : 0.03um")
509
+ via1_edges_with_less_enclosure_m1 = m1.enclosing(via.not_interacting(via.edges.without_length(0.15)), 0.085, projection).second_edges
510
+ opposite5 = (via.not_interacting(via.edges.without_length(0.15)).edges - via1_edges_with_less_enclosure_m1).width(0.15 + 1.dbu, projection).polygons
511
+ via.not_interacting(via.edges.without_length(0.15)).not_interacting(opposite5).output("via1.5a", "via1.5a : min. m1 enclosure of 0.15um via of 2 opposite edges : 0.085um")
512
+ via2_edges_with_less_enclosure_m1 = m1.enclosing(via.not_interacting(via.edges.without_length(0.23)), 0.06, projection).second_edges
513
+ opposite6 = (via.not_interacting(via.edges.without_length(0.23)).edges - via2_edges_with_less_enclosure_m1).width(0.23 + 1.dbu, projection).polygons
514
+ via.not_interacting(via.edges.without_length(0.23)).not_interacting(opposite6).output("via1.5b", "via1.5b : min. m1 enclosure of 0.23um via of 2 opposite edges : 0.06um")
515
+ end
516
+ if backend_flow = CU
517
+ via.not(areaid_mt).edges.without_length(0.18).output("via.11", "via.11 : minimum/maximum width of via : 0.18um")
518
+ via.isolated(0.13, euclidian).output("via.12", "via.12 : min. via spacing : 0.13um")
519
+ # rule via.13 not coded because not understandable
520
+ via1_edges_with_less_enclosure_m1 = m1.enclosing(via, 0.04, projection).second_edges
521
+ opposite5 = (via.edges - via1_edges_with_less_enclosure_m1).width(0.18 + 1.dbu, projection).polygons
522
+ via.not_interacting(opposite5).output("via1.14", "via1.14 : min. m1 enclosure of 0.04um via of 2 opposite edges : 0.04um")
523
+ # rules via.irdrop.1, via.irdrop.2, via.irdrop.3, via.irdrop.4 not coded because not understandable
524
+ end
525
+
526
+ # m2
527
+ m2.width(0.14, euclidian).output("m2.1", "m2.1 : min. m2 width : 0.14um")
528
+
529
+ huge_m2 = m2.sized(-1.5).sized(1.5)
530
+ non_huge_m2 = m2 - huge_m2
531
+
532
+ non_huge_m2.space(0.14, euclidian).output("m2.2", "m2.2 : min. m2 spacing : 0.14um")
533
+
534
+ (huge_m2.separation(non_huge_m2, 0.28, euclidian) + huge_m2.space(0.28, euclidian)).output("m2.3ab", "m2.3ab : min. 3um.m2 spacing m2 : 0.28um")
535
+
536
+ # rule m2.3c not coded
537
+ m2.with_area(0..0.0676).output("m2.6", "m2.6 : min. m2 area : 0.0676um²")
538
+ m2.holes.with_area(0..0.14).output("m2.7", "m2.7 : min. m2 holes area : 0.14um²")
539
+ via.not(m2).output("m2.via", "m2.via : m2 must enclose via")
540
+ if backend_flow = AL
541
+ m2.enclosing(via, 0.055, euclidian).output("m2.4", "m2.4 : min. m2 enclosure of via : 0.055um")
542
+ via_edges_with_less_enclosure_m2 = m2.enclosing(via, 0.085, projection).second_edges
543
+ opposite7 = (via.edges - via_edges_with_less_enclosure_m2).width(0.2 + 1.dbu, projection).polygons
544
+ via.not_interacting(opposite7).output("m2.5", "m2.5 : min. m2 enclosure of via of 2 opposite edges : 0.085um")
545
+ # rule m2.pd.1, rule m2.pd.2a, rule m2.pd.2b not coded
546
+ end
547
+ if bakend_flow = CU
548
+ m2.sized(-2.0).sized(2.0).output("m2.11", "m2.11 : max. m2 width after slotting : 4.0um")
549
+ # rule m2.12 not coded because inconsistent with m2.11
550
+ # rule m2.13, m2.14, m2.14a not coded : see : https://www.klayout.de/forum/discussion/comment/6759
551
+ end
552
+
553
+ # via2
554
+ #rule via233 not coded
555
+ via2.not(m2).output("via2", "via2 : m2 must enclose all via2")
556
+ if backend_flow = AL
557
+ via2.not(areaid_mt).edges.without_length(0.2).output("via2.1a", "via2.1a : minimum/maximum width of via2 : 0.2um")
558
+ via2.and(areaid_mt).not_interacting((via2.and(areaid_mt).edges.without_length(0.2)).or(via2.and(areaid_mt).edges.without_length(1.2)).or(via2.and(areaid_mt).edges.without_length(1.5))).output("via2.1b", "via2.1b : minimum/maximum width of via2 in areaid.mt: 0.2um or 1.2um or 1.5um")
559
+ via2.isolated(0.2, euclidian).output("via2.2", "via2.2 : min. via2 spacing : 0.2um")
560
+ m2.enclosing(via2, 0.04, euclidian).output("via2.4", "via2.4 : min. m2 enclosure of via2 : 0.04um")
561
+ m2.enclosing(via2.not_interacting(via2.edges.without_length(1.5)), 0.14, euclidian).output("via2.4a", "via2.4a : min. m2 enclosure of 1.5um via2 : 0.14um")
562
+ via2_edges_with_less_enclosure_m2 = m2.enclosing(via2, 0.085, projection).second_edges
563
+ opposite8 = (via2.edges - via2_edges_with_less_enclosure_m2).width(0.2 + 1.dbu, projection).polygons
564
+ via2.not_interacting(opposite8).output("via2.5", "via2.5 : min. m2 enclosure of via2 of 2 opposite edges : 0.085um")
565
+ end
566
+ if backend_flow = CU
567
+ via2.edges.without_length(0.21).output("via2.11", "via2.11 : minimum/maximum width of via2 : 0.21um")
568
+ via2.isolated(0.18, euclidian).output("via2.12", "via2.12 : min. via2 spacing : 0.18um")
569
+ # rule via2.13 not coded because not understandable, or not clear
570
+ m2.enclosing(via2, 0.035, euclidian).output("via2.14", "via2.14 : min. m2 enclosure of via2 : 0.035um")
571
+ # rules via2.irdrop.1, via2.irdrop.2, via2.irdrop.3, via2.irdrop.4 not coded because not understandable
572
+ end
573
+
574
+ # m3
575
+ m3.width(0.3, euclidian).output("m3.1", "m3.1 : min. m3 width : 0.3um")
576
+
577
+ huge_m3 = m3.sized(-1.5).sized(1.5)
578
+ non_huge_m3 = m3 - huge_m3
579
+
580
+ non_huge_m3.space(0.3, euclidian).output("m3.2", "m3.2 : min. m3 spacing : 0.3um")
581
+
582
+ (huge_m3.separation(non_huge_m3, 0.4, euclidian) + huge_m3.space(0.4, euclidian)).output("m3.3ab", "m3.3ab : min. 3um.m3 spacing m3 : 0.4um")
583
+
584
+ # rule m3.3c not coded
585
+ m3.with_area(0..0.24).output("m3.6", "m3.6 : min. m3 area : 0.24um²")
586
+ via2.not(m3).output("m3.via2", "m3.via2 : m3 must enclose via2")
587
+ if backend_flow = AL
588
+ m3.enclosing(via2, 0.065, euclidian).output("m3.4", "m3.4 : min. m3 enclosure of via2 : 0.065um")
589
+ via2_edges_with_less_enclosure_m3 = m3.enclosing(via2, 0.085, projection).second_edges
590
+ # m3.5 N/A
591
+ # opposite9 = (via2.edges - via2_edges_with_less_enclosure_m3).width(0.3 + 1.dbu, projection).polygons
592
+ # via2.not_interacting(opposite9).output("m3.5", "m3.5 : min. m3 enclosure of via2 of 2 opposite edges : 0.085um")
593
+ # rule m3.pd.1, rule m3.pd.2a, rule m3.pd.2b not coded
594
+ end
595
+ if bakend_flow = CU
596
+ m3.holes.with_area(0..0.2).output("m3.7", "m3.7 : min. m3 holes area : 0.2um²")
597
+ m3.sized(-2.0).sized(2.0).output("m3.11", "m3.11 : max. m3 width after slotting : 4.0um")
598
+ # rule m3.12 not coded because inconsistent with m3.11
599
+ # rule m3.13, m3.14, m3.14a not coded : see : https://www.klayout.de/forum/discussion/comment/6759
600
+ end
601
+
602
+ # via3
603
+ #rule via3.3 not coded
604
+ via3.not(m3).output("via3", "via3 : m3 must enclose all via3")
605
+ if backend_flow = AL
606
+ via3.not(areaid_mt).edges.without_length(0.2).output("via3.1a", "via3.1a : minimum/maximum width of via3 : 0.2um")
607
+ via3.and(areaid_mt).not_interacting((via3.and(areaid_mt).edges.without_length(0.2)).or(via3.and(areaid_mt).edges.without_length(0.8))).output("via3.1a", "via3.1a : minimum/maximum width of via3 in areaid.mt: 0.2um or 0.8um")
608
+ via3.isolated(0.2, euclidian).output("via3.2", "via3.2 : min. via3 spacing : 0.2um")
609
+ m3.enclosing(via3, 0.06, euclidian).output("via3.4", "via3.4 : min. m3 enclosure of via3 : 0.06um")
610
+ via3_edges_with_less_enclosure_m3 = m3.enclosing(via3, 0.09, projection).second_edges
611
+ opposite10 = (via3.edges - via3_edges_with_less_enclosure_m3).width(0.2 + 1.dbu, projection).polygons
612
+ via3.not_interacting(opposite10).output("via3.5", "via3.5 : min. m2 enclosure of via3 of 2 opposite edges : 0.09um")
613
+ end
614
+ if backend_flow = CU
615
+ via3.edges.without_length(0.21).output("via3.11", "via3.11 : minimum/maximum width of via3 : 0.21um")
616
+ via3.isolated(0.18, euclidian).output("via3.12", "via3.12 : min. via3 spacing : 0.18um")
617
+ m3.enclosing(via3, 0.055, euclidian).output("via3.13", "via3.13 : min. m3 enclosure of via3 : 0.055um")
618
+ # rule via3.14 not coded because not understandable, or not clear
619
+ # rules via3.irdrop.1, via3.irdrop.2, via3.irdrop.3, via3.irdrop.4 not coded because not understandable
620
+ end
621
+
622
+ # m4
623
+ m4.width(0.3, euclidian).output("m4.1", "m4.1 : min. m4 width : 0.3um")
624
+
625
+ huge_m4 = m4.sized(-1.5).sized(1.5)
626
+ non_huge_m4 = m4 - huge_m4
627
+
628
+ non_huge_m4.space(0.3, euclidian).output("m4.2", "m4.2 : min. m4 spacing : 0.3um")
629
+
630
+ (huge_m4.separation(non_huge_m4, 0.4, euclidian) + huge_m4.space(0.4, euclidian)).output("m4.5ab", "m4.5ab : min. 3um.m4 spacing m4 : 0.4um")
631
+
632
+ m4.with_area(0..0.24).output("m4.4", "m4.4 : min. m4 area : 0.24um²")
633
+ via3.not(m4).output("m4.via3", "m4.via3 : m4 must enclose via3")
634
+ if backend_flow = AL
635
+ m4.enclosing(via3, 0.065, euclidian).output("m4.3", "m4.3 : min. m4 enclosure of via3 : 0.065um")
636
+ # m4.5 doesn't exist
637
+ # via3_edges_with_less_enclosure_m4 = m4.enclosing(via2, 0.085, projection).second_edges
638
+ # opposite9 = (via3.edges - via3_edges_with_less_enclosure_m4).width(0.3 + 1.dbu, projection).polygons
639
+ # via3.not_interacting(opposite9).output("m4.5", "m4.5 : min. m4 enclosure of via3 of 2 opposite edges : 0.085um")
640
+ # rule m4.pd.1, rule m4.pd.2a, rule m4.pd.2b not coded
641
+ end
642
+ if bakend_flow = CU
643
+ m4.holes.with_area(0..0.2).output("m4.7", "m4.7 : min. m4 holes area : 0.2um²")
644
+ m4.sized(-5.0).sized(5.0).output("m4.11", "m4.11 : max. m4 width after slotting : 10.0um")
645
+ # rule m4.12 not coded because inconsistent with m4.11
646
+ # rule m4.13, m4.14, m4.14a not coded : see : https://www.klayout.de/forum/discussion/comment/6759
647
+ m4.enclosing(via3, 0.06, euclidian).output("m4.15", "m4.15 : min. m4 enclosure of via3 : 0.06um")
648
+ end
649
+
650
+ # via4
651
+ via4.edges.without_length(0.8).output("via4.1a", "via4.1a : minimum/maximum width of via4 : 0.8um")
652
+ via4.isolated(0.8, euclidian).output("via4.2", "via4.2 : min. via4 spacing : 0.8um")
653
+ #rule via4.3 not coded
654
+ m4.enclosing(via4, 0.19, euclidian).output("via4.4", "via4.4 : min. m4 enclosure of via4 : 0.19um")
655
+ via4.not(m4).output("via4", "via4 : m4 must enclose all via4")
656
+ if backend_flow = CU
657
+ # rules via4.irdrop.1, via4.irdrop.2, via4.irdrop.3, via4.irdrop.4 not coded because not understandable
658
+ end
659
+
660
+ # m5
661
+ m5.width(1.6, euclidian).output("m5.1", "m5.1 : min. m5 width : 1.6um")
662
+
663
+ m5.space(1.6, euclidian).output("m5.2", "m5.2 : min. m5 spacing : 1.6um")
664
+
665
+ via4.not(m5).output("m5.via4", "m5.via4 : m5 must enclose via4")
666
+ m5.enclosing(via4, 0.31, euclidian).output("m5.3", "m4.3 : min. m5 enclosure of via4 : 0.31um")
667
+
668
+ # nsm
669
+ nsm.width(3.0, euclidian).output("nsm.1", "nsm.1 : min. nsm width : 3.0um")
670
+ nsm.isolated(4.0, euclidian).output("nsm.2", "nsm.2 : min. nsm spacing : 4.0um")
671
+ nsm.enclosing(diff, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of diff : 3.0um")
672
+ nsm.enclosing(tap, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of tap : 3.0um")
673
+ nsm.enclosing(poly, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of poly : 3.0um")
674
+ nsm.enclosing(li, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of li : 3.0um")
675
+ nsm.enclosing(m1, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of m1 : 3.0um")
676
+ nsm.enclosing(m2, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of m2 : 3.0um")
677
+ nsm.enclosing(m3, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of m3 : 3.0um")
678
+ nsm.enclosing(m4, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of m4 : 3.0um")
679
+ nsm.enclosing(m5, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of m5 : 3.0um")
680
+ nsm.enclosing(cfom, 3.0, euclidian).output("nsm.4", "nsm.4 : min. nsm enclosure of cfom : 3.0um")
681
+ if backend_flow = AL
682
+ nsm.separation(diff, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to diff : 1.0um")
683
+ nsm.separation(tap, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to tap : 1.0um")
684
+ nsm.separation(poly, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to poly : 1.0um")
685
+ nsm.separation(li, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to li : 1.0um")
686
+ nsm.separation(m1, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to m1 : 1.0um")
687
+ nsm.separation(m2, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to m2 : 1.0um")
688
+ nsm.separation(m3, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to m3 : 1.0um")
689
+ nsm.separation(m4, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to m4 : 1.0um")
690
+ nsm.separation(m5, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to m5 : 1.0um")
691
+ nsm.separation(cfom, 1.0, euclidian).output("nsm.3", "nsm.3 : min. nsm spacing to cfom : 1.0um")
692
+ end
693
+
694
+ # pad
695
+ pad.isolated(1.27, euclidian).output("pad.2", "pad.2 : min. pad spacing : 1.27um")
696
+
697
+ end #BEOL
698
+
699
+ if FEOL
700
+ info("FEOL section")
701
+
702
+ # mf
703
+ mf.not_interacting(mf.edges.without_length(0.8)).output("mf.1", "mf.1 : minimum/maximum width of fuse : 0.8um")
704
+ mf.not_interacting(mf.edges.without_length(7.2)).output("mf.2", "mf.2 : minimum/maximum length of fuse : 7.2um")
705
+ mf.isolated(1.96, euclidian).output("mf.3", "mf.3 : min. fuse center spacing : 2.76um")
706
+ # fuses need more clarification on fuse_shield, fuse layers ...
707
+
708
+ # hvi
709
+ hvi.width(0.6, euclidian).output("hvi.1", "hvi.1 : min. hvi width : 0.6um")
710
+ hvi.isolated(0.7, euclidian).output("hvi.2", "hvi.2 : min. hvi spacing, merge if less : 0.7um")
711
+ hvi.and(tunm).output("hvi.4", "hvi.4 : hvi must not overlapp tunm")
712
+ hvi.and(nwell).separation(nwell, 2.0, euclidian).output("hvnwell.8", "hvnwelli.8 : min. hvnwel spacing to nwell : 2.0")
713
+ areaid_hl.not(hvi).output("hvnwel.9", "hvnwell.9 : hvi must overlapp hvnwell")
714
+ # rule hvnell.10 not coded
715
+ diff.not(psdm.and(diff_rs)).and(hvi).width(0.29, euclidian).output("hvdifftap.14", "hvdifftap.14 : min. diff inside hvi width : 0.29um")
716
+ diff.and(psdm.and(diff_rs)).and(hvi).width(0.15, euclidian).output("hvdifftap.14a", "hvdifftap.14a : min. p+diff resistor inside hvi width : 0.15um")
717
+ diff.and(hvi).isolated(0.3, euclidian).output("hvdifftap.15a", "hvdifftap.15a : min. diff inside hvi spacing : 0.3um")
718
+ diff.and(hvi).and(nsdm).separation(diff.and(hvi).and(psdm), 0.37, euclidian).polygons.without_area(0).output("hvdifftap.15b", "hvdifftap.15b : min. n+diff inside hvi spacing to p+diff inside hvi except abutting: 0.37um")
719
+ tap.and(hvi).edges.and(diff).without_length(0.7).output("hvdifftap.16", "hvdifftap.16 : min. tap inside hvi abuttng diff : 0.7um")
720
+ hvi.and(nwell).enclosing(diff, 0.33, euclidian).output("hvdifftap.17", "hvdifftap.17 : min. hvnwell enclosure of p+diff : 0.33um")
721
+ hvi.and(nwell).separation(diff, 0.43, euclidian).output("hvdifftap.18", "hvdifftap.18 : min. hvnwell spacing to n+diff : 0.43um")
722
+ hvi.and(nwell).enclosing(tap, 0.33, euclidian).output("hvdifftap.19", "hvdifftap.19 : min. hvnwell enclosure of n+tap : 0.33um")
723
+ hvi.and(nwell).separation(tap, 0.43, euclidian).output("hvdifftap.20", "hvdifftap.20 : min. hvnwell spacing to p+tap : 0.43um")
724
+ hvi.and(diff).edges.not(diff.edges).output("hvdifftap.21", "hvdifftap.21 : diff must not straddle hvi")
725
+ hvi.and(tap).edges.not(tap.edges).output("hvdifftap.21", "hvdifftap.21 : tap must not straddle hvi")
726
+ hvi.enclosing(difftap, 0.18, euclidian).output("hvdifftap.22", "hvdifftap.22 : min. hvi enclosure of diff or tap : 0.18um")
727
+ hvi.separation(difftap, 0.18, euclidian).output("hvdifftap.23", "hvdifftap.23 : min. hvi spacing to diff or tap : 0.18um")
728
+ hvi.and(diff).not(nwell).separation(nwell, 0.43, euclidian).output("hvdifftap.24", "hvdifftap.24 : min. hv n+diff spacing to nwell : 0.43um")
729
+ diff.and(hvi).not(nwell).isolated(1.07, euclidian).polygons.and(tap).output("hvdifftap.25", "hvdifftap.25 : min. n+diff inside hvi spacing accros p+tap : 1.07um")
730
+ diff.not(poly).edges.and(gate.and(hvi).edges).space(0.35, euclidian).output("hvpoly.13", "hvpoly.13: min. hvi gate length : 0.5um")
731
+ hvi.and(poly).edges.not(poly.edges).output("hvpoly.14", "hvpoly.14 : poly must not straddle hvi")
732
+
733
+ # hvntm
734
+ hvntm.width(0.7, euclidian).output("hvntm.1", "hvntm.1 : min. hvntm width : 0.7um")
735
+ hvntm.isolated(0.7, euclidian).output("hvntm.2", "hvntm.2 : min. hvntm spacing : 0.7um")
736
+ hvntm.enclosing(diff.and(nwell).and(hvi), 0.185, euclidian).output("hvntm.3", "hvntm.3 : min. hvntm enclosure of hv n+diff : 0.185um")
737
+ hvntm.separation(diff.not(nwell).not(hvi), 0.185, euclidian).output("hvntm.4", "hvntm.4 : min. hvntm spacing to n+diff : 0.185um")
738
+ hvntm.separation(diff.and(nwell).not(hvi), 0.185, euclidian).output("hvntm.5", "hvntm.5 : min. hvntm spacing to p+diff : 0.185um")
739
+ hvntm.separation(tap.not(nwell).not(hvi), 0.185, euclidian).polygons.without_area(0).output("hvntm.6a", "hvntm.6a : min. hvntm spacing to p+tap : 0.185um")
740
+ hvntm.and(areaid_ce).output("hvntm.9", "hvntm.9 : hvntm must not overlapp areaid.ce")
741
+
742
+ # denmos
743
+ poly.not_interacting(pwde).interacting(areaid_en).width(1.055, projection).output("denmos.1", "denmos.1 : min. de_nfet gate width : 1.055um")
744
+ diff.not_interacting(pwde).enclosing(poly.interacting(areaid_en), 0.28, projection).polygons.without_area(0).output("denmos.2", "denmos.2 : min. de_nfet source ouside poly width : 0.28um")
745
+ diff.not_interacting(pwde).and(poly.interacting(areaid_en)).width(0.925, projection).output("denmos.3", "denmos.3 : min. de_nfet source inside poly width : 0.925um")
746
+ diff.not_interacting(pwde).interacting(areaid_en).not_interacting(poly).width(0.17, euclidian).output("denmos.4", "denmos.4 : min. de_nfet drain width : 0.17um")
747
+ nwell.not_interacting(pwde).and(poly.interacting(areaid_en)).width(0.225, projection).polygons.or(nwell.and(poly.interacting(areaid_en)).sized(-0.1125).sized(0.1125)).output("denmos.5", "denmos.5 : min. de_nfet source inside nwell width : 0.225m")
748
+ diff.not_interacting(pwde).interacting(areaid_en).not_interacting(poly).separation(diff.interacting(poly.interacting(areaid_en)), 1.585, projection).output("denmos.6", "denmos.6 : min. de_nfet source spacing to drain : 1.585um")
749
+ nwell.not_interacting(pwde).and(poly.and(diff).interacting(areaid_en)).edges.without_length(5.0, nil).output("denmos.7", "denmos.7 : min. de_nfet channel width : 5.0um")
750
+ diff.not_interacting(pwde).interacting(areaid_en).not_interacting(poly).edges.without_angle(45).without_angle(135).without_angle(225).without_angle(315).output("denmos.8", "denmos.8 : 90deg. not allowed for de_nfet drain")
751
+ nwell.not_interacting(pwde).interacting(areaid_en).edges.without_angle(45).without_angle(135).without_angle(225).without_angle(315).output("denmos.9a", "denmos.9a : 90deg. not allowed for de_nfet nwell")
752
+ nwell.not_interacting(pwde).interacting(areaid_en).edges.with_angle(45).without_length(0.607..0.609).output("denmos.9a", "denmos.9a : 45deg. bevels of de_nfet nwell should be 0.43um from corners")
753
+ nwell.not_interacting(pwde).interacting(areaid_en).edges.with_angle(135).without_length(0.607..0.609).output("denmos.9a", "denmos.9a : 45deg. bevels of de_nfet nwell should be 0.43um from corners")
754
+ diff.not_interacting(pwde).interacting(areaid_en).not_interacting(poly).edges.with_angle(45).without_length(0.7..0.71).output("denmos.9b", "denmos.9b : 45deg. bevels of de_nfet drain should be 0.05um from corners")
755
+ diff.not_interacting(pwde).interacting(areaid_en).not_interacting(poly).edges.with_angle(135).without_length(0.7..0.71).output("denmos.9b", "denmos.9b : 45deg. bevels of de_nfet drain should be 0.05um from corners")
756
+ nwell.not_interacting(pwde).enclosing(diff.interacting(areaid_en).not_interacting(poly), 0.66, euclidian).output("denmos.10", "denmos.10 : min. nwell enclosure of de_nfet drain : 0.66um")
757
+ nwell.not_interacting(pwde).interacting(areaid_en).separation(tap.not(nwell), 0.86, euclidian).output("denmos.11", "denmos.11 : min. de_nfet nwell spacing to tap : 0.86um")
758
+ nwell.not_interacting(pwde).interacting(areaid_en).isolated(2.4, euclidian).output("denmos.12", "denmos.12 : min. de_nfet nwell : 2.4um")
759
+ nsdm.not_interacting(pwde).enclosing(diff.interacting(areaid_en).interacting(poly), 0.13, euclidian).output("denmos.13", "denmos.13 : min. nsdm enclosure of de_nfet source : 0.13um")
760
+
761
+ # depmos
762
+ poly.interacting(pwde).interacting(areaid_en).width(1.05, projection).output("depmos.1", "depmos.1 : min. de_pfet gate width : 1.05um")
763
+ diff.interacting(pwde).enclosing(poly.interacting(areaid_en), 0.28, projection).polygons.without_area(0).output("depmos.2", "depmos.2 : min. de_pfet source ouside poly width : 0.28um")
764
+ diff.interacting(pwde).and(poly.interacting(areaid_en)).width(0.92, projection).output("depmos.3", "depmos.3 : min. de_pfet source inside poly width : 0.92um")
765
+ diff.interacting(pwde).interacting(areaid_en).not_interacting(poly).width(0.17, euclidian).output("depmos.4", "depmos.4 : min. de_pfet drain width : 0.17um")
766
+ pwde.not(nwell).and(poly.interacting(areaid_en)).width(0.26, projection).polygons.or(pwde.not(nwell).and(poly.interacting(areaid_en)).sized(-0.13).sized(0.13)).output("depmos.5", "depmos.5 : min. de_pfet source inside nwell width : 0.26m")
767
+ diff.interacting(pwde).interacting(areaid_en).not_interacting(poly).separation(diff.interacting(poly.interacting(areaid_en)), 1.19, projection).output("depmos.6", "depmos.6 : min. de_pfet source spacing to drain : 1.19um")
768
+ nwell.interacting(pwde).and(poly.and(diff).interacting(areaid_en)).edges.without_length(5.0, nil).output("depmos.7", "depmos.7 : min. de_pfet channel width : 5.0um")
769
+ diff.interacting(pwde).interacting(areaid_en).not_interacting(poly).edges.without_angle(45).without_angle(135).without_angle(225).without_angle(315).output("depmos.8", "depmos.8 : 90deg. not allowed for de_pfet drain")
770
+ pwde.not(nwell).interacting(areaid_en).edges.without_angle(45).without_angle(135).without_angle(225).without_angle(315).output("depmos.9a", "depmos.9a : 90deg. not allowed for de_pfet pwell")
771
+ pwde.not(nwell).interacting(areaid_en).edges.with_angle(45).without_length(0.607..0.609).output("depmos.9a", "depmos.9a : 45deg. bevels of de_pfet pwell should be 0.43um from corners")
772
+ pwde.not(nwell).interacting(areaid_en).edges.with_angle(135).without_length(0.607..0.609).output("depmos.9a", "depmos.9a : 45deg. bevels of de_pfet pwell should be 0.43um from corners")
773
+ diff.interacting(pwde).interacting(areaid_en).not_interacting(poly).edges.with_angle(45).without_length(0.7..0.71).output("depmos.9b", "depmos.9b : 45deg. bevels of de_pfet drain should be 0.05um from corners")
774
+ diff.interacting(pwde).interacting(areaid_en).not_interacting(poly).edges.with_angle(135).without_length(0.7..0.71).output("depmos.9b", "depmos.9b : 45deg. bevels of de_pfet drain should be 0.05um from corners")
775
+ nwell.interacting(pwde).separation(diff.interacting(areaid_en).not_interacting(poly), 0.86, euclidian).output("depmos.10", "depmos.10 : min. pwell enclosure of de_pfet drain : 0.86um")
776
+ pwde.not(nwell).interacting(areaid_en).separation(tap.and(nwell), 0.66, euclidian).output("depmos.11", "depmos.11 : min. de_pfet pwell spacing to tap : 0.66um")
777
+ psdm.interacting(pwde).enclosing(diff.interacting(areaid_en).interacting(poly), 0.13, euclidian).output("depmos.12", "depmos.12 : min. psdm enclosure of de_pfet source : 0.13um")
778
+
779
+ # extd
780
+ areaid_en.and(difftap).edges.not(difftap.edges).output("extd.1", "extd.1 : difftap must not straddle areaid.en")
781
+ difftap.interacting(areaid_en).not(poly).with_area(0).output("extd.2", "extd.2 : poly must not overlapp entirely difftap in areaid.en")
782
+ # rules extd.4, extd.5, extd.6, extd.7 not coded because specific to some cells
783
+
784
+ # vhvi
785
+ # rules vhvi.vhv.1, vhvi.vhv.2, vhvi.vhv.3, vhvi.vhv.4, vhvi.vhv.5, vhvi.vhv.6 not coded
786
+ vhvi.width(0.02, euclidian).output("vhvi.1", "vhvi.1 : min. vhvi width : 0.02um")
787
+ vhvi.and(areaid_ce).output("vhvi.2", "vhvi.2 : vhvi must not overlap areaid.ce")
788
+ vhvi.and(hvi).output("vhvi.3", "vhvi.3 : vhvi must not overlap hvi")
789
+ # rules vhvi.4, vhvi.6 not coded
790
+ vhvi.and(diff).edges.not(diff.edges).output("vhvi.5", "vhvi.5 : vhvi must not straddle diff")
791
+ vhvi.and(tap).edges.not(tap.edges).output("vhvi.5", "vhvi.5 : vhvi must not straddle tap")
792
+ vhvi.and(poly).edges.not(poly.edges).output("vhvi.7", "vhvi.7 : vhvi must not straddle poly")
793
+
794
+ nwell.and(vhvi).separation(nwell, 2.5, euclidian).output("hv.nwell.1", "hv.nwell.1 : min. vhvi nwell spacing to nwell : 2.5um")
795
+ diff.and(vhvi).isolated(0.3, euclidian).output("hv.diff.1", "hv.diff.1 : min. vhvi diff spacing : 0.3um")
796
+ nwell.interacting(diff.and(vhvi)).separation(diff.not(nwell), 0.43, euclidian).output("hv.diff.2", "hv.diff.2 : min. vhvi nwell spacing n+diff : 0.43um")
797
+ diff.and(vhvi).not(nwell).separation(nwell, 0.55, euclidian).output("hv.diff.3a", "hv.diff.3a : min. vhvi n+diff spacing nwell : 0.55um")
798
+ # rule hv.diff.3b not coded
799
+ poly.and(vhvi).not(diff).separation(diff, 0.3, euclidian).polygons.without_area(0).output("hv.poly.2", "hv.poly.2 : min. vhvi poly spacing to diff : 0.3um")
800
+ poly.and(vhvi).not(diff).separation(nwell, 0.55, euclidian).polygons.without_area(0).output("hv.poly.3", "hv.poly.3 : min. vhvi poly spacing to nwell : 0.55um")
801
+ nwell.enclosing(poly.and(vhvi).not(diff), 0.3, euclidian).polygons.without_area(0).output("hv.poly.4", "hv.poly.4 : min. nwell enclosure of vhvi poly : 0.3um")
802
+ #poly.and(vhvi).enclosing(diff.interacting(areaid_en), 0.16, projection).polygons.without_area(0).output("hv.poly.6", "hv.poly.6 : min. poly enclosure of hvfet gate : 0.16um")
803
+ # rule hv.poly.7 not coded
804
+
805
+ # uhvi
806
+ uhvi.and(diff).edges.not(diff.edges).output("uhvi.1", "uhvi.1 : diff must not straddle uhvi")
807
+ uhvi.and(tap).edges.not(tap.edges).output("uhvi.1", "uhvi.1 : tap must not straddle uhvi")
808
+ uhvi.and(poly).edges.not(poly.edges).output("uhvi.2", "uhvi.2 : poly must not straddle uhvi")
809
+ pwbm.not(uhvi).output("uhvi.3", "uhvi.3 : uhvi must not enclose pwbm")
810
+ uhvi.and(dnwell).edges.not(dnwell.edges).output("uhvi.4", "uhvi.4 : dnwell must not straddle uhvi")
811
+ areaid_en20.not(uhvi).output("uhvi.5", "uhvi.5 : uhvi must not enclose areaid.en20")
812
+ #dnwell.not(uhvi).output("uhvi.6", "uhvi.6 : uhvi must not enclose dnwell")
813
+ natfet.not(uhvi).output("uhvi.7", "uhvi.7 : uhvi must not enclose natfet")
814
+
815
+ # pwell_res
816
+ pwell_rs.width(2.65).output("pwres.2", "pwres.2 : min. pwell resistor width : 2.65um")
817
+ pwell_rs.sized(-2.65).sized(2.65).output("pwres.2", "pwres.2 : max. pwell resistor width : 2.65um")
818
+ pwell_rs.interacting(pwell_rs.edges.with_length(2.651,26.499)).output("pwres.3", "pwres.3 : min. pwell resistor length : 26.5um")
819
+ pwell_rs.interacting(pwell_rs.edges.with_length(265.0, nil)).output("pwres.4", "pwres.4 : max. pwell resistor length : 265um")
820
+ tap.interacting(pwell_rs).separation(nwell, 0.22, euclidian).output("pwres.5", "pwres.5 : min. pwell resistor tap spacing to nwell : 0.22um")
821
+ tap.interacting(pwell_rs).and(tap.sized(0.22).and(nwell)).output("pwres.5", "pwres.5 : max. pwell resistor tap spacing to nwell : 0.22um")
822
+ tap.interacting(pwell_rs).width(0.53).output("pwres.6", "pwres.6 : min. width of tap inside pwell resistor : 0.53um")
823
+ tap.interacting(pwell_rs).sized(-0.265).sized(0.265).output("pwres.6", "pwres.6 : max. width of tap inside pwell resistor : 0.53um")
824
+ # rules pwres.7a, pwres.7b not coded
825
+ pwell_rs.and(diff).output("pwres.8", "pwres.8 : diff not allowed inside pwell resistor")
826
+ pwell_rs.and(poly).output("pwres.8", "pwres.8 : poly not allowed inside pwell resistor")
827
+ # rules pwres.9, pwres.10 not coded
828
+
829
+ # rf_diode
830
+ areaid_re.with_angle(0 .. 90).output("rfdiode.1", "rfdiode.1 : non 90 degree angle areaid.re")
831
+ areaid_re.not(nwell).or(nwell.interacting(areaid_re).not(areaid_re)).output("rfdiode.2", "rfdiode.2 : areaid.re must coincide rf nwell diode")
832
+ # rule rfdiode.3 not coded
833
+
834
+ end #FEOL
835
+
836
+ if OFFGRID
837
+ info("OFFGRID-ANGLES section")
838
+
839
+ dnwell.ongrid(0.005).output("dnwell_OFFGRID", "x.1b : OFFGRID vertex on dnwell")
840
+ dnwell.with_angle(0 .. 45).output("dnwell_angle", "x.3a : non 45 degree angle dnwell")
841
+ nwell.ongrid(0.005).output("nwell_OFFGRID", "x.1b : OFFGRID vertex on nwell")
842
+ nwell.with_angle(0 .. 45).output("nwell_angle", "x.3a : non 45 degree angle nwell")
843
+ pwbm.ongrid(0.005).output("pwbm_OFFGRID", "x.1b : OFFGRID vertex on pwbm")
844
+ pwbm.with_angle(0 .. 45).output("pwbm_angle", "x.3a : non 45 degree angle pwbm")
845
+ pwde.ongrid(0.005).output("pwde_OFFGRID", "x.1b : OFFGRID vertex on pwde")
846
+ pwde.with_angle(0 .. 45).output("pwde_angle", "x.3a : non 45 degree angle pwde")
847
+ hvtp.ongrid(0.005).output("hvtp_OFFGRID", "x.1b : OFFGRID vertex on hvtp")
848
+ hvtp.with_angle(0 .. 45).output("hvtp_angle", "x.3a : non 45 degree angle hvtp")
849
+ hvtr.ongrid(0.005).output("hvtr_OFFGRID", "x.1b : OFFGRID vertex on hvtr")
850
+ hvtr.with_angle(0 .. 45).output("hvtr_angle", "x.3a : non 45 degree angle hvtr")
851
+ lvtn.ongrid(0.005).output("lvtn_OFFGRID", "x.1b : OFFGRID vertex on lvtn")
852
+ lvtn.with_angle(0 .. 45).output("lvtn_angle", "x.3a : non 45 degree angle lvtn")
853
+ ncm.ongrid(0.005).output("ncm_OFFGRID", "x.1b : OFFGRID vertex on ncm")
854
+ ncm.with_angle(0 .. 45).output("ncm_angle", "x.3a : non 45 degree angle ncm")
855
+ diff.ongrid(0.005).output("diff_OFFGRID", "x.1b : OFFGRID vertex on diff")
856
+ tap.ongrid(0.005).output("tap_OFFGRID", "x.1b : OFFGRID vertex on tap")
857
+ diff.not(areaid_en.and(uhvi)).with_angle(0 .. 90).output("diff_angle", "x.2 : non 90 degree angle diff")
858
+ diff.and(areaid_en.and(uhvi)).with_angle(0 .. 45).output("diff_angle", "x.2c : non 45 degree angle diff")
859
+ tap.not(areaid_en.and(uhvi)).with_angle(0 .. 90).output("tap_angle", "x.2 : non 90 degree angle tap")
860
+ tap.and(areaid_en.and(uhvi)).with_angle(0 .. 45).output("tap_angle", "x.2c : non 45 degree angle tap")
861
+ tunm.ongrid(0.005).output("tunm_OFFGRID", "x.1b : OFFGRID vertex on tunm")
862
+ tunm.with_angle(0 .. 45).output("tunm_angle", "x.3a : non 45 degree angle tunm")
863
+ poly.ongrid(0.005).output("poly_OFFGRID", "x.1b : OFFGRID vertex on poly")
864
+ poly.with_angle(0 .. 90).output("poly_angle", "x.2 : non 90 degree angle poly")
865
+ rpm.ongrid(0.005).output("rpm_OFFGRID", "x.1b : OFFGRID vertex on rpm")
866
+ rpm.with_angle(0 .. 45).output("rpm_angle", "x.3a : non 45 degree angle rpm")
867
+ npc.ongrid(0.005).output("npc_OFFGRID", "x.1b : OFFGRID vertex on npc")
868
+ npc.with_angle(0 .. 45).output("npc_angle", "x.3a : non 45 degree angle npc")
869
+ nsdm.ongrid(0.005).output("nsdm_OFFGRID", "x.1b : OFFGRID vertex on nsdm")
870
+ nsdm.with_angle(0 .. 45).output("nsdm_angle", "x.3a : non 45 degree angle nsdm")
871
+ psdm.ongrid(0.005).output("psdm_OFFGRID", "x.1b : OFFGRID vertex on psdm")
872
+ psdm.with_angle(0 .. 45).output("psdm_angle", "x.3a : non 45 degree angle psdm")
873
+ licon.ongrid(0.005).output("licon_OFFGRID", "x.1b : OFFGRID vertex on licon")
874
+ licon.with_angle(0 .. 90).output("licon_angle", "x.2 : non 90 degree angle licon")
875
+ li.ongrid(0.005).output("li_OFFGRID", "x.1b : OFFGRID vertex on li")
876
+ li.with_angle(0 .. 45).output("li_angle", "x.3a : non 45 degree angle li")
877
+ mcon.ongrid(0.005).output("ct_OFFGRID", "x.1b : OFFGRID vertex on mcon")
878
+ mcon.with_angle(0 .. 90).output("ct_angle", "x.2 : non 90 degree angle mcon")
879
+ vpp.ongrid(0.005).output("vpp_OFFGRID", "x.1b : OFFGRID vertex on vpp")
880
+ vpp.with_angle(0 .. 45).output("vpp_angle", "x.3a : non 45 degree angle vpp")
881
+ m1.ongrid(0.005).output("m1_OFFGRID", "x.1b : OFFGRID vertex on m1")
882
+ m1.with_angle(0 .. 45).output("m1_angle", "x.3a : non 45 degree angle m1")
883
+ via.ongrid(0.005).output("via_OFFGRID", "x.1b : OFFGRID vertex on via")
884
+ via.with_angle(0 .. 90).output("via_angle", "x.2 : non 90 degree angle via")
885
+ m2.ongrid(0.005).output("m2_OFFGRID", "x.1b : OFFGRID vertex on m2")
886
+ m2.with_angle(0 .. 45).output("m2_angle", "x.3a : non 45 degree angle m2")
887
+ via2.ongrid(0.005).output("via2_OFFGRID", "x.1b : OFFGRID vertex on via2")
888
+ via2.with_angle(0 .. 90).output("via2_angle", "x.2 : non 90 degree angle via2")
889
+ m3.ongrid(0.005).output("m3_OFFGRID", "x.1b : OFFGRID vertex on m3")
890
+ m3.with_angle(0 .. 45).output("m3_angle", "x.3a : non 45 degree angle m3")
891
+ via3.ongrid(0.005).output("via3_OFFGRID", "x.1b : OFFGRID vertex on via3")
892
+ via3.with_angle(0 .. 90).output("via3_angle", "x.2 : non 90 degree angle via3")
893
+ nsm.ongrid(0.005).output("nsm_OFFGRID", "x.1b : OFFGRID vertex on nsm")
894
+ nsm.with_angle(0 .. 45).output("nsm_angle", "x.3a : non 45 degree angle nsm")
895
+ m4.ongrid(0.005).output("m4_OFFGRID", "x.1b : OFFGRID vertex on m4")
896
+ m4.with_angle(0 .. 45).output("m4_angle", "x.3a : non 45 degree angle m4")
897
+ via4.ongrid(0.005).output("via4_OFFGRID", "x.1b : OFFGRID vertex on via4")
898
+ via4.with_angle(0 .. 90).output("via4_angle", "x.2 : non 90 degree angle via4")
899
+ m5.ongrid(0.005).output("m5_OFFGRID", "x.1b : OFFGRID vertex on m5")
900
+ m5.with_angle(0 .. 45).output("m5_angle", "x.3a : non 45 degree angle m5")
901
+ pad.ongrid(0.005).output("pad_OFFGRID", "x.1b : OFFGRID vertex on pad")
902
+ pad.with_angle(0 .. 45).output("pad_angle", "x.3a : non 45 degree angle pad")
903
+ mf.ongrid(0.005).output("mf_OFFGRID", "x.1b : OFFGRID vertex on mf")
904
+ mf.with_angle(0 .. 90).output("mf_angle", "x.2 : non 90 degree angle mf")
905
+ hvi.ongrid(0.005).output("hvi_OFFGRID", "x.1b : OFFGRID vertex on hvi")
906
+ hvi.with_angle(0 .. 45).output("hvi_angle", "x.3a : non 45 degree angle hvi")
907
+ hvntm.ongrid(0.005).output("hvntm_OFFGRID", "x.1b : OFFGRID vertex on hvntm")
908
+ hvntm.with_angle(0 .. 45).output("hvntm_angle", "x.3a : non 45 degree angle hvntm")
909
+ vhvi.ongrid(0.005).output("vhvi_OFFGRID", "x.1b : OFFGRID vertex on vhvi")
910
+ vhvi.with_angle(0 .. 45).output("vhvi_angle", "x.3a : non 45 degree angle vhvi")
911
+ uhvi.ongrid(0.005).output("uhvi_OFFGRID", "x.1b : OFFGRID vertex on uhvi")
912
+ uhvi.with_angle(0 .. 45).output("uhvi_angle", "x.3a : non 45 degree angle uhvi")
913
+ pwell_rs.ongrid(0.005).output("pwell_rs_OFFGRID", "x.1b : OFFGRID vertex on pwell_rs")
914
+ pwell_rs.with_angle(0 .. 45).output("pwell_rs_angle", "x.3a : non 45 degree angle pwell_rs")
915
+ areaid_re.ongrid(0.005).output("areaid_re_OFFGRID", "x.1b : OFFGRID vertex on areaid.re")
916
+
917
+ end #OFFGRID</text>
918
+ </klayout-macro>
alu_w16_9ops_sky130_1000mhz/flow/drc_report.rpt ADDED
@@ -0,0 +1,892 @@
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1
+ <?xml version="1.0" encoding="utf-8"?>
2
+ <report-database>
3
+ <description>SKY130 DRC runset</description>
4
+ <original-file/>
5
+ <generator>drc: script='/tmp/datagen_output/alu_w16_9ops_sky130_1000mhz/flow/drc_deck_patched.lydrc'</generator>
6
+ <top-cell>alu_w16_9ops</top-cell>
7
+ <tags>
8
+ </tags>
9
+ <categories>
10
+ <category>
11
+ <name>li.1</name>
12
+ <description>li.1 : min. li width : 0.17um</description>
13
+ <categories>
14
+ </categories>
15
+ </category>
16
+ <category>
17
+ <name>li.1a</name>
18
+ <description>li.1a : min. li width for the cells s8rf2_xcmvpp_hd5_* : 0.14um</description>
19
+ <categories>
20
+ </categories>
21
+ </category>
22
+ <category>
23
+ <name>li.3</name>
24
+ <description>li.3 : min. li spacing : 0.17um</description>
25
+ <categories>
26
+ </categories>
27
+ </category>
28
+ <category>
29
+ <name>li.3a</name>
30
+ <description>li.3a : min. li spacing for the cells s8rf2_xcmvpp_hd5_* : 0.14um</description>
31
+ <categories>
32
+ </categories>
33
+ </category>
34
+ <category>
35
+ <name>li.5</name>
36
+ <description>li.5 : min. li enclosure of licon of 2 opposite edges : 0.08um</description>
37
+ <categories>
38
+ </categories>
39
+ </category>
40
+ <category>
41
+ <name>li.6</name>
42
+ <description>li.6 : min. li area : 0.0561um²</description>
43
+ <categories>
44
+ </categories>
45
+ </category>
46
+ <category>
47
+ <name>ct.1</name>
48
+ <description>ct.1 : minimum/maximum width of mcon : 0.17um</description>
49
+ <categories>
50
+ </categories>
51
+ </category>
52
+ <category>
53
+ <name>ct.2</name>
54
+ <description>ct.2 : min. mcon spacing : 0.19um</description>
55
+ <categories>
56
+ </categories>
57
+ </category>
58
+ <category>
59
+ <name>ct.4</name>
60
+ <description>ct.4 : mcon should covered by li</description>
61
+ <categories>
62
+ </categories>
63
+ </category>
64
+ <category>
65
+ <name>m1.1</name>
66
+ <description>m1.1 : min. m1 width : 0.14um</description>
67
+ <categories>
68
+ </categories>
69
+ </category>
70
+ <category>
71
+ <name>m1.2</name>
72
+ <description>m1.2 : min. m1 spacing : 0.14um</description>
73
+ <categories>
74
+ </categories>
75
+ </category>
76
+ <category>
77
+ <name>m1.3ab</name>
78
+ <description>m1.3ab : min. 3um.m1 spacing m1 : 0.28um</description>
79
+ <categories>
80
+ </categories>
81
+ </category>
82
+ <category>
83
+ <name>m1.4</name>
84
+ <description>m1.4 : min. m1 enclosure of mcon : 0.03um</description>
85
+ <categories>
86
+ </categories>
87
+ </category>
88
+ <category>
89
+ <name>m1.4a</name>
90
+ <description>m1.4a : min. m1 enclosure of mcon for specific cells : 0.005um</description>
91
+ <categories>
92
+ </categories>
93
+ </category>
94
+ <category>
95
+ <name>m1.6</name>
96
+ <description>m1.6 : min. m1 area : 0.083um²</description>
97
+ <categories>
98
+ </categories>
99
+ </category>
100
+ <category>
101
+ <name>m1.7</name>
102
+ <description>m1.7 : min. m1 holes area : 0.14um²</description>
103
+ <categories>
104
+ </categories>
105
+ </category>
106
+ <category>
107
+ <name>m1.5</name>
108
+ <description>m1.5 : min. m1 enclosure of mcon of 2 opposite edges : 0.06um</description>
109
+ <categories>
110
+ </categories>
111
+ </category>
112
+ <category>
113
+ <name>via.4c.5c</name>
114
+ <description>via.4c.5c : m1 must enclose all via</description>
115
+ <categories>
116
+ </categories>
117
+ </category>
118
+ <category>
119
+ <name>via.1a</name>
120
+ <description>via.1a : minimum/maximum width of via : 0.15um</description>
121
+ <categories>
122
+ </categories>
123
+ </category>
124
+ <category>
125
+ <name>via.1b</name>
126
+ <description>via.1b : minimum/maximum width of via in areaid.mt: 0.15um or 0.23um or 0.28um</description>
127
+ <categories>
128
+ </categories>
129
+ </category>
130
+ <category>
131
+ <name>via.2</name>
132
+ <description>via.2 : min. via spacing : 0.17um</description>
133
+ <categories>
134
+ </categories>
135
+ </category>
136
+ <category>
137
+ <name>via.4a</name>
138
+ <description>via.4a : min. m1 enclosure of 0.15um via : 0.055um</description>
139
+ <categories>
140
+ </categories>
141
+ </category>
142
+ <category>
143
+ <name>via.4b</name>
144
+ <description>via.4b : min. m1 enclosure of 0.23um via : 0.03um</description>
145
+ <categories>
146
+ </categories>
147
+ </category>
148
+ <category>
149
+ <name>via1.5a</name>
150
+ <description>via1.5a : min. m1 enclosure of 0.15um via of 2 opposite edges : 0.085um</description>
151
+ <categories>
152
+ </categories>
153
+ </category>
154
+ <category>
155
+ <name>via1.5b</name>
156
+ <description>via1.5b : min. m1 enclosure of 0.23um via of 2 opposite edges : 0.06um</description>
157
+ <categories>
158
+ </categories>
159
+ </category>
160
+ <category>
161
+ <name>m2.1</name>
162
+ <description>m2.1 : min. m2 width : 0.14um</description>
163
+ <categories>
164
+ </categories>
165
+ </category>
166
+ <category>
167
+ <name>m2.2</name>
168
+ <description>m2.2 : min. m2 spacing : 0.14um</description>
169
+ <categories>
170
+ </categories>
171
+ </category>
172
+ <category>
173
+ <name>m2.3ab</name>
174
+ <description>m2.3ab : min. 3um.m2 spacing m2 : 0.28um</description>
175
+ <categories>
176
+ </categories>
177
+ </category>
178
+ <category>
179
+ <name>m2.6</name>
180
+ <description>m2.6 : min. m2 area : 0.0676um²</description>
181
+ <categories>
182
+ </categories>
183
+ </category>
184
+ <category>
185
+ <name>m2.7</name>
186
+ <description>m2.7 : min. m2 holes area : 0.14um²</description>
187
+ <categories>
188
+ </categories>
189
+ </category>
190
+ <category>
191
+ <name>m2.via</name>
192
+ <description>m2.via : m2 must enclose via</description>
193
+ <categories>
194
+ </categories>
195
+ </category>
196
+ <category>
197
+ <name>m2.4</name>
198
+ <description>m2.4 : min. m2 enclosure of via : 0.055um</description>
199
+ <categories>
200
+ </categories>
201
+ </category>
202
+ <category>
203
+ <name>m2.5</name>
204
+ <description>m2.5 : min. m2 enclosure of via of 2 opposite edges : 0.085um</description>
205
+ <categories>
206
+ </categories>
207
+ </category>
208
+ <category>
209
+ <name>via2</name>
210
+ <description>via2 : m2 must enclose all via2</description>
211
+ <categories>
212
+ </categories>
213
+ </category>
214
+ <category>
215
+ <name>via2.1a</name>
216
+ <description>via2.1a : minimum/maximum width of via2 : 0.2um</description>
217
+ <categories>
218
+ </categories>
219
+ </category>
220
+ <category>
221
+ <name>via2.1b</name>
222
+ <description>via2.1b : minimum/maximum width of via2 in areaid.mt: 0.2um or 1.2um or 1.5um</description>
223
+ <categories>
224
+ </categories>
225
+ </category>
226
+ <category>
227
+ <name>via2.2</name>
228
+ <description>via2.2 : min. via2 spacing : 0.2um</description>
229
+ <categories>
230
+ </categories>
231
+ </category>
232
+ <category>
233
+ <name>via2.4</name>
234
+ <description>via2.4 : min. m2 enclosure of via2 : 0.04um</description>
235
+ <categories>
236
+ </categories>
237
+ </category>
238
+ <category>
239
+ <name>via2.4a</name>
240
+ <description>via2.4a : min. m2 enclosure of 1.5um via2 : 0.14um</description>
241
+ <categories>
242
+ </categories>
243
+ </category>
244
+ <category>
245
+ <name>via2.5</name>
246
+ <description>via2.5 : min. m2 enclosure of via2 of 2 opposite edges : 0.085um</description>
247
+ <categories>
248
+ </categories>
249
+ </category>
250
+ <category>
251
+ <name>m3.1</name>
252
+ <description>m3.1 : min. m3 width : 0.3um</description>
253
+ <categories>
254
+ </categories>
255
+ </category>
256
+ <category>
257
+ <name>m3.2</name>
258
+ <description>m3.2 : min. m3 spacing : 0.3um</description>
259
+ <categories>
260
+ </categories>
261
+ </category>
262
+ <category>
263
+ <name>m3.3ab</name>
264
+ <description>m3.3ab : min. 3um.m3 spacing m3 : 0.4um</description>
265
+ <categories>
266
+ </categories>
267
+ </category>
268
+ <category>
269
+ <name>m3.6</name>
270
+ <description>m3.6 : min. m3 area : 0.24um²</description>
271
+ <categories>
272
+ </categories>
273
+ </category>
274
+ <category>
275
+ <name>m3.via2</name>
276
+ <description>m3.via2 : m3 must enclose via2</description>
277
+ <categories>
278
+ </categories>
279
+ </category>
280
+ <category>
281
+ <name>m3.4</name>
282
+ <description>m3.4 : min. m3 enclosure of via2 : 0.065um</description>
283
+ <categories>
284
+ </categories>
285
+ </category>
286
+ <category>
287
+ <name>via3</name>
288
+ <description>via3 : m3 must enclose all via3</description>
289
+ <categories>
290
+ </categories>
291
+ </category>
292
+ <category>
293
+ <name>via3.1a</name>
294
+ <description>via3.1a : minimum/maximum width of via3 in areaid.mt: 0.2um or 0.8um</description>
295
+ <categories>
296
+ </categories>
297
+ </category>
298
+ <category>
299
+ <name>via3.2</name>
300
+ <description>via3.2 : min. via3 spacing : 0.2um</description>
301
+ <categories>
302
+ </categories>
303
+ </category>
304
+ <category>
305
+ <name>via3.4</name>
306
+ <description>via3.4 : min. m3 enclosure of via3 : 0.06um</description>
307
+ <categories>
308
+ </categories>
309
+ </category>
310
+ <category>
311
+ <name>via3.5</name>
312
+ <description>via3.5 : min. m2 enclosure of via3 of 2 opposite edges : 0.09um</description>
313
+ <categories>
314
+ </categories>
315
+ </category>
316
+ <category>
317
+ <name>m4.1</name>
318
+ <description>m4.1 : min. m4 width : 0.3um</description>
319
+ <categories>
320
+ </categories>
321
+ </category>
322
+ <category>
323
+ <name>m4.2</name>
324
+ <description>m4.2 : min. m4 spacing : 0.3um</description>
325
+ <categories>
326
+ </categories>
327
+ </category>
328
+ <category>
329
+ <name>m4.5ab</name>
330
+ <description>m4.5ab : min. 3um.m4 spacing m4 : 0.4um</description>
331
+ <categories>
332
+ </categories>
333
+ </category>
334
+ <category>
335
+ <name>m4.4</name>
336
+ <description>m4.4 : min. m4 area : 0.24um²</description>
337
+ <categories>
338
+ </categories>
339
+ </category>
340
+ <category>
341
+ <name>m4.via3</name>
342
+ <description>m4.via3 : m4 must enclose via3</description>
343
+ <categories>
344
+ </categories>
345
+ </category>
346
+ <category>
347
+ <name>m4.3</name>
348
+ <description>m4.3 : min. m4 enclosure of via3 : 0.065um</description>
349
+ <categories>
350
+ </categories>
351
+ </category>
352
+ <category>
353
+ <name>via4.1a</name>
354
+ <description>via4.1a : minimum/maximum width of via4 : 0.8um</description>
355
+ <categories>
356
+ </categories>
357
+ </category>
358
+ <category>
359
+ <name>via4.2</name>
360
+ <description>via4.2 : min. via4 spacing : 0.8um</description>
361
+ <categories>
362
+ </categories>
363
+ </category>
364
+ <category>
365
+ <name>via4.4</name>
366
+ <description>via4.4 : min. m4 enclosure of via4 : 0.19um</description>
367
+ <categories>
368
+ </categories>
369
+ </category>
370
+ <category>
371
+ <name>via4</name>
372
+ <description>via4 : m4 must enclose all via4</description>
373
+ <categories>
374
+ </categories>
375
+ </category>
376
+ <category>
377
+ <name>m5.1</name>
378
+ <description>m5.1 : min. m5 width : 1.6um</description>
379
+ <categories>
380
+ </categories>
381
+ </category>
382
+ <category>
383
+ <name>m5.2</name>
384
+ <description>m5.2 : min. m5 spacing : 1.6um</description>
385
+ <categories>
386
+ </categories>
387
+ </category>
388
+ <category>
389
+ <name>m5.via4</name>
390
+ <description>m5.via4 : m5 must enclose via4</description>
391
+ <categories>
392
+ </categories>
393
+ </category>
394
+ <category>
395
+ <name>m5.3</name>
396
+ <description>m4.3 : min. m5 enclosure of via4 : 0.31um</description>
397
+ <categories>
398
+ </categories>
399
+ </category>
400
+ <category>
401
+ <name>nsm.1</name>
402
+ <description>nsm.1 : min. nsm width : 3.0um</description>
403
+ <categories>
404
+ </categories>
405
+ </category>
406
+ <category>
407
+ <name>nsm.2</name>
408
+ <description>nsm.2 : min. nsm spacing : 4.0um</description>
409
+ <categories>
410
+ </categories>
411
+ </category>
412
+ <category>
413
+ <name>nsm.4</name>
414
+ <description>nsm.4 : min. nsm enclosure of cfom : 3.0um</description>
415
+ <categories>
416
+ </categories>
417
+ </category>
418
+ <category>
419
+ <name>nsm.3</name>
420
+ <description>nsm.3 : min. nsm spacing to cfom : 1.0um</description>
421
+ <categories>
422
+ </categories>
423
+ </category>
424
+ <category>
425
+ <name>pad.2</name>
426
+ <description>pad.2 : min. pad spacing : 1.27um</description>
427
+ <categories>
428
+ </categories>
429
+ </category>
430
+ <category>
431
+ <name>dnwell_OFFGRID</name>
432
+ <description>x.1b : OFFGRID vertex on dnwell</description>
433
+ <categories>
434
+ </categories>
435
+ </category>
436
+ <category>
437
+ <name>dnwell_angle</name>
438
+ <description>x.3a : non 45 degree angle dnwell</description>
439
+ <categories>
440
+ </categories>
441
+ </category>
442
+ <category>
443
+ <name>nwell_OFFGRID</name>
444
+ <description>x.1b : OFFGRID vertex on nwell</description>
445
+ <categories>
446
+ </categories>
447
+ </category>
448
+ <category>
449
+ <name>nwell_angle</name>
450
+ <description>x.3a : non 45 degree angle nwell</description>
451
+ <categories>
452
+ </categories>
453
+ </category>
454
+ <category>
455
+ <name>pwbm_OFFGRID</name>
456
+ <description>x.1b : OFFGRID vertex on pwbm</description>
457
+ <categories>
458
+ </categories>
459
+ </category>
460
+ <category>
461
+ <name>pwbm_angle</name>
462
+ <description>x.3a : non 45 degree angle pwbm</description>
463
+ <categories>
464
+ </categories>
465
+ </category>
466
+ <category>
467
+ <name>pwde_OFFGRID</name>
468
+ <description>x.1b : OFFGRID vertex on pwde</description>
469
+ <categories>
470
+ </categories>
471
+ </category>
472
+ <category>
473
+ <name>pwde_angle</name>
474
+ <description>x.3a : non 45 degree angle pwde</description>
475
+ <categories>
476
+ </categories>
477
+ </category>
478
+ <category>
479
+ <name>hvtp_OFFGRID</name>
480
+ <description>x.1b : OFFGRID vertex on hvtp</description>
481
+ <categories>
482
+ </categories>
483
+ </category>
484
+ <category>
485
+ <name>hvtp_angle</name>
486
+ <description>x.3a : non 45 degree angle hvtp</description>
487
+ <categories>
488
+ </categories>
489
+ </category>
490
+ <category>
491
+ <name>hvtr_OFFGRID</name>
492
+ <description>x.1b : OFFGRID vertex on hvtr</description>
493
+ <categories>
494
+ </categories>
495
+ </category>
496
+ <category>
497
+ <name>hvtr_angle</name>
498
+ <description>x.3a : non 45 degree angle hvtr</description>
499
+ <categories>
500
+ </categories>
501
+ </category>
502
+ <category>
503
+ <name>lvtn_OFFGRID</name>
504
+ <description>x.1b : OFFGRID vertex on lvtn</description>
505
+ <categories>
506
+ </categories>
507
+ </category>
508
+ <category>
509
+ <name>lvtn_angle</name>
510
+ <description>x.3a : non 45 degree angle lvtn</description>
511
+ <categories>
512
+ </categories>
513
+ </category>
514
+ <category>
515
+ <name>ncm_OFFGRID</name>
516
+ <description>x.1b : OFFGRID vertex on ncm</description>
517
+ <categories>
518
+ </categories>
519
+ </category>
520
+ <category>
521
+ <name>ncm_angle</name>
522
+ <description>x.3a : non 45 degree angle ncm</description>
523
+ <categories>
524
+ </categories>
525
+ </category>
526
+ <category>
527
+ <name>diff_OFFGRID</name>
528
+ <description>x.1b : OFFGRID vertex on diff</description>
529
+ <categories>
530
+ </categories>
531
+ </category>
532
+ <category>
533
+ <name>tap_OFFGRID</name>
534
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+ wire _052_;
57
+ wire _053_;
58
+ wire _054_;
59
+ wire _055_;
60
+ wire _056_;
61
+ wire _057_;
62
+ wire _058_;
63
+ wire _059_;
64
+ wire _060_;
65
+ wire _061_;
66
+ wire _062_;
67
+ wire _063_;
68
+ wire _064_;
69
+ wire _065_;
70
+ wire _066_;
71
+ wire _067_;
72
+ wire _068_;
73
+ wire _069_;
74
+ wire _070_;
75
+ wire _071_;
76
+ wire _072_;
77
+ wire _073_;
78
+ wire _074_;
79
+ wire _075_;
80
+ wire _076_;
81
+ wire _077_;
82
+ wire _078_;
83
+ wire _079_;
84
+ wire _080_;
85
+ wire _081_;
86
+ wire _082_;
87
+ wire _083_;
88
+ wire _084_;
89
+ wire _085_;
90
+ wire _086_;
91
+ wire _087_;
92
+ wire _088_;
93
+ wire _089_;
94
+ wire _090_;
95
+ wire _091_;
96
+ wire _092_;
97
+ wire _093_;
98
+ wire _094_;
99
+ wire _095_;
100
+ wire _096_;
101
+ wire _097_;
102
+ wire _098_;
103
+ wire _099_;
104
+ wire _100_;
105
+ wire _101_;
106
+ wire _102_;
107
+ wire _103_;
108
+ wire _104_;
109
+ wire _105_;
110
+ wire _106_;
111
+ wire _107_;
112
+ wire _108_;
113
+ wire _109_;
114
+ wire _110_;
115
+ wire _111_;
116
+ wire _112_;
117
+ wire _113_;
118
+ wire _114_;
119
+ wire _115_;
120
+ wire _116_;
121
+ wire _117_;
122
+ wire _118_;
123
+ wire _119_;
124
+ wire _120_;
125
+ wire _121_;
126
+ wire _122_;
127
+ wire _123_;
128
+ wire _124_;
129
+ wire _125_;
130
+ wire _126_;
131
+ wire _127_;
132
+ wire _128_;
133
+ wire _129_;
134
+ wire _130_;
135
+ wire _131_;
136
+ wire _132_;
137
+ wire _133_;
138
+ wire _134_;
139
+ wire _135_;
140
+ wire _136_;
141
+ wire _137_;
142
+ wire _138_;
143
+ wire _139_;
144
+ wire _140_;
145
+ wire _141_;
146
+ wire _142_;
147
+ wire _143_;
148
+ wire _144_;
149
+ wire _145_;
150
+ wire _146_;
151
+ wire _147_;
152
+ wire _148_;
153
+ wire _149_;
154
+ wire _150_;
155
+ wire _151_;
156
+ wire _152_;
157
+ wire _153_;
158
+ wire _154_;
159
+ wire _155_;
160
+ wire _156_;
161
+ wire _157_;
162
+ wire _158_;
163
+ wire _159_;
164
+ wire _160_;
165
+ wire _161_;
166
+ wire _162_;
167
+ wire _163_;
168
+ wire _164_;
169
+ wire _165_;
170
+ wire _166_;
171
+ wire _167_;
172
+ wire _168_;
173
+ wire _169_;
174
+ wire _170_;
175
+ wire _171_;
176
+ wire _172_;
177
+ wire _173_;
178
+ wire _174_;
179
+ wire _175_;
180
+ wire _176_;
181
+ wire _177_;
182
+ wire _178_;
183
+ wire _179_;
184
+ wire _180_;
185
+ wire _181_;
186
+ wire _182_;
187
+ wire _183_;
188
+ wire _184_;
189
+ wire _185_;
190
+ wire _186_;
191
+ wire _187_;
192
+ wire _188_;
193
+ wire _189_;
194
+ wire _190_;
195
+ wire _191_;
196
+ wire _192_;
197
+ wire _193_;
198
+ wire _194_;
199
+ wire _195_;
200
+ wire _196_;
201
+ wire _197_;
202
+ wire _198_;
203
+ wire _199_;
204
+ wire _200_;
205
+ wire _201_;
206
+ wire _202_;
207
+ wire _203_;
208
+ wire _204_;
209
+ wire _205_;
210
+ wire _206_;
211
+ wire _207_;
212
+ wire _208_;
213
+ wire _209_;
214
+ wire _210_;
215
+ wire _211_;
216
+ wire _212_;
217
+ wire _213_;
218
+ wire _214_;
219
+ wire _215_;
220
+ wire _216_;
221
+ wire _217_;
222
+ wire _218_;
223
+ wire _219_;
224
+ wire _220_;
225
+ wire _221_;
226
+ wire _222_;
227
+ wire _223_;
228
+ wire _224_;
229
+ wire _225_;
230
+ wire _226_;
231
+ wire _227_;
232
+ wire _228_;
233
+ wire _229_;
234
+ wire _230_;
235
+ wire _231_;
236
+ wire _232_;
237
+ wire _233_;
238
+ wire _234_;
239
+ wire _235_;
240
+ wire _236_;
241
+ wire _237_;
242
+ wire _238_;
243
+ wire _239_;
244
+ wire _240_;
245
+ wire _241_;
246
+ wire _242_;
247
+ wire _243_;
248
+ wire _244_;
249
+ wire _245_;
250
+ wire _246_;
251
+ wire _247_;
252
+ wire _248_;
253
+ wire _249_;
254
+ wire _250_;
255
+ wire _251_;
256
+ wire _252_;
257
+ wire _253_;
258
+ wire _254_;
259
+ wire _255_;
260
+ wire _256_;
261
+ wire _257_;
262
+ wire _258_;
263
+ wire _259_;
264
+ wire _260_;
265
+ wire _261_;
266
+ wire _262_;
267
+ wire _263_;
268
+ wire _264_;
269
+ wire _265_;
270
+ wire _266_;
271
+ wire _267_;
272
+ wire _268_;
273
+ wire _269_;
274
+ wire _270_;
275
+ wire _271_;
276
+ wire _272_;
277
+ wire _273_;
278
+ wire _274_;
279
+ wire _275_;
280
+ wire _276_;
281
+ wire _277_;
282
+ wire _278_;
283
+ wire _279_;
284
+ wire _280_;
285
+ wire _281_;
286
+ wire _282_;
287
+ wire _283_;
288
+ wire _284_;
289
+ wire _285_;
290
+ wire _286_;
291
+ wire _287_;
292
+ wire _288_;
293
+ wire _289_;
294
+ wire _290_;
295
+ wire _291_;
296
+ wire _292_;
297
+ wire _293_;
298
+ wire _294_;
299
+ wire _295_;
300
+ wire _296_;
301
+ wire _297_;
302
+ wire _298_;
303
+ wire _299_;
304
+ wire _300_;
305
+ wire _301_;
306
+ wire _302_;
307
+ wire _303_;
308
+ wire _304_;
309
+ wire _305_;
310
+ wire _306_;
311
+ wire _307_;
312
+ wire _308_;
313
+ wire _309_;
314
+ wire _310_;
315
+ wire _311_;
316
+ wire _312_;
317
+ wire _313_;
318
+ wire _314_;
319
+ wire _315_;
320
+ wire _316_;
321
+ wire _317_;
322
+ wire _318_;
323
+ wire _319_;
324
+ wire _320_;
325
+ wire _321_;
326
+ wire _322_;
327
+ wire _323_;
328
+ wire _324_;
329
+ wire _325_;
330
+ wire _326_;
331
+ wire _327_;
332
+ wire _328_;
333
+ wire _329_;
334
+ wire _330_;
335
+ wire _331_;
336
+ wire _332_;
337
+ wire _333_;
338
+ wire _334_;
339
+ wire _335_;
340
+ wire _336_;
341
+ wire _337_;
342
+ wire _338_;
343
+ wire _339_;
344
+ wire _340_;
345
+ wire _341_;
346
+ wire _342_;
347
+ wire _343_;
348
+ wire _344_;
349
+ wire _345_;
350
+ wire _346_;
351
+ wire _347_;
352
+ wire _348_;
353
+ wire _349_;
354
+ wire _350_;
355
+ wire _351_;
356
+ wire _352_;
357
+ wire _353_;
358
+ wire _354_;
359
+ wire _355_;
360
+ wire _356_;
361
+ wire _357_;
362
+ wire _358_;
363
+ wire _359_;
364
+ wire _360_;
365
+ wire _361_;
366
+ wire _362_;
367
+ wire _363_;
368
+ wire _364_;
369
+ wire _365_;
370
+ wire _366_;
371
+ wire _367_;
372
+ wire _368_;
373
+ wire _369_;
374
+ wire _370_;
375
+ wire _371_;
376
+ wire _372_;
377
+ wire _373_;
378
+ wire _374_;
379
+ wire _375_;
380
+ wire _376_;
381
+ wire _377_;
382
+ wire _378_;
383
+ wire _379_;
384
+ wire _380_;
385
+ wire _381_;
386
+ wire _382_;
387
+ wire _383_;
388
+ wire _384_;
389
+ wire _385_;
390
+ wire _386_;
391
+ wire _387_;
392
+ wire _388_;
393
+ wire _389_;
394
+ wire _390_;
395
+ wire _391_;
396
+ wire _392_;
397
+ wire _393_;
398
+ wire _394_;
399
+ wire _395_;
400
+ wire _396_;
401
+ wire _397_;
402
+ wire _398_;
403
+ wire _399_;
404
+ wire _400_;
405
+ wire _401_;
406
+ wire _402_;
407
+ wire _403_;
408
+ wire _404_;
409
+ wire _405_;
410
+ wire _406_;
411
+ wire _407_;
412
+ wire _408_;
413
+ wire _409_;
414
+ wire _410_;
415
+ wire _411_;
416
+ wire _412_;
417
+ wire _413_;
418
+ wire _414_;
419
+ input [15:0] a;
420
+ wire [15:0] a;
421
+ input [15:0] b;
422
+ wire [15:0] b;
423
+ output [15:0] result;
424
+ wire [15:0] result;
425
+ input [3:0] sel;
426
+ wire [3:0] sel;
427
+ sky130_fd_sc_hd__clkinv_1 _415_ (
428
+ .A(b[3]),
429
+ .Y(_368_)
430
+ );
431
+ sky130_fd_sc_hd__clkinv_1 _416_ (
432
+ .A(b[4]),
433
+ .Y(_369_)
434
+ );
435
+ sky130_fd_sc_hd__clkinv_1 _417_ (
436
+ .A(b[8]),
437
+ .Y(_370_)
438
+ );
439
+ sky130_fd_sc_hd__clkinv_1 _418_ (
440
+ .A(b[11]),
441
+ .Y(_371_)
442
+ );
443
+ sky130_fd_sc_hd__clkinv_1 _419_ (
444
+ .A(a[1]),
445
+ .Y(_372_)
446
+ );
447
+ sky130_fd_sc_hd__clkinv_1 _420_ (
448
+ .A(a[2]),
449
+ .Y(_373_)
450
+ );
451
+ sky130_fd_sc_hd__clkinv_1 _421_ (
452
+ .A(a[3]),
453
+ .Y(_374_)
454
+ );
455
+ sky130_fd_sc_hd__clkinv_1 _422_ (
456
+ .A(a[4]),
457
+ .Y(_375_)
458
+ );
459
+ sky130_fd_sc_hd__clkinv_1 _423_ (
460
+ .A(a[6]),
461
+ .Y(_376_)
462
+ );
463
+ sky130_fd_sc_hd__clkinv_1 _424_ (
464
+ .A(a[7]),
465
+ .Y(_377_)
466
+ );
467
+ sky130_fd_sc_hd__clkinv_1 _425_ (
468
+ .A(a[12]),
469
+ .Y(_378_)
470
+ );
471
+ sky130_fd_sc_hd__nand2_1 _426_ (
472
+ .A(b[15]),
473
+ .B(a[15]),
474
+ .Y(_379_)
475
+ );
476
+ sky130_fd_sc_hd__xor2_1 _427_ (
477
+ .A(b[15]),
478
+ .B(a[15]),
479
+ .X(_380_)
480
+ );
481
+ sky130_fd_sc_hd__xnor2_1 _428_ (
482
+ .A(b[15]),
483
+ .B(a[15]),
484
+ .Y(_381_)
485
+ );
486
+ sky130_fd_sc_hd__lpflow_isobufsrc_1 _429_ (
487
+ .A(a[14]),
488
+ .SLEEP(b[14]),
489
+ .X(_382_)
490
+ );
491
+ sky130_fd_sc_hd__nor2_1 _430_ (
492
+ .A(b[14]),
493
+ .B(a[14]),
494
+ .Y(_383_)
495
+ );
496
+ sky130_fd_sc_hd__nand2_1 _431_ (
497
+ .A(b[14]),
498
+ .B(a[14]),
499
+ .Y(_384_)
500
+ );
501
+ sky130_fd_sc_hd__nor2b_1 _432_ (
502
+ .A(_383_),
503
+ .B_N(_384_),
504
+ .Y(_385_)
505
+ );
506
+ sky130_fd_sc_hd__nand2b_1 _433_ (
507
+ .A_N(b[13]),
508
+ .B(a[13]),
509
+ .Y(_386_)
510
+ );
511
+ sky130_fd_sc_hd__lpflow_isobufsrc_1 _434_ (
512
+ .A(b[13]),
513
+ .SLEEP(a[13]),
514
+ .X(_387_)
515
+ );
516
+ sky130_fd_sc_hd__nand2_1 _435_ (
517
+ .A(b[12]),
518
+ .B(a[12]),
519
+ .Y(_388_)
520
+ );
521
+ sky130_fd_sc_hd__xor2_1 _436_ (
522
+ .A(b[12]),
523
+ .B(a[12]),
524
+ .X(_389_)
525
+ );
526
+ sky130_fd_sc_hd__nor2_1 _437_ (
527
+ .A(b[11]),
528
+ .B(a[11]),
529
+ .Y(_390_)
530
+ );
531
+ sky130_fd_sc_hd__and2_0 _438_ (
532
+ .A(b[11]),
533
+ .B(a[11]),
534
+ .X(_391_)
535
+ );
536
+ sky130_fd_sc_hd__nor2_1 _439_ (
537
+ .A(_390_),
538
+ .B(_391_),
539
+ .Y(_392_)
540
+ );
541
+ sky130_fd_sc_hd__lpflow_inputiso1p_1 _440_ (
542
+ .A(_390_),
543
+ .SLEEP(_391_),
544
+ .X(_393_)
545
+ );
546
+ sky130_fd_sc_hd__nand2_1 _441_ (
547
+ .A(b[10]),
548
+ .B(a[10]),
549
+ .Y(_394_)
550
+ );
551
+ sky130_fd_sc_hd__xor2_1 _442_ (
552
+ .A(b[10]),
553
+ .B(a[10]),
554
+ .X(_395_)
555
+ );
556
+ sky130_fd_sc_hd__lpflow_inputiso1p_1 _443_ (
557
+ .A(_392_),
558
+ .SLEEP(_395_),
559
+ .X(_396_)
560
+ );
561
+ sky130_fd_sc_hd__nand2b_1 _444_ (
562
+ .A_N(b[9]),
563
+ .B(a[9]),
564
+ .Y(_397_)
565
+ );
566
+ sky130_fd_sc_hd__nand2b_1 _445_ (
567
+ .A_N(b[10]),
568
+ .B(a[10]),
569
+ .Y(_398_)
570
+ );
571
+ sky130_fd_sc_hd__nor2_1 _446_ (
572
+ .A(_392_),
573
+ .B(_398_),
574
+ .Y(_399_)
575
+ );
576
+ sky130_fd_sc_hd__a21oi_1 _447_ (
577
+ .A1(_371_),
578
+ .A2(a[11]),
579
+ .B1(_399_),
580
+ .Y(_400_)
581
+ );
582
+ sky130_fd_sc_hd__o21ai_0 _448_ (
583
+ .A1(_396_),
584
+ .A2(_397_),
585
+ .B1(_400_),
586
+ .Y(_401_)
587
+ );
588
+ sky130_fd_sc_hd__and2_0 _449_ (
589
+ .A(b[8]),
590
+ .B(a[8]),
591
+ .X(_402_)
592
+ );
593
+ sky130_fd_sc_hd__xnor2_1 _450_ (
594
+ .A(b[8]),
595
+ .B(a[8]),
596
+ .Y(_403_)
597
+ );
598
+ sky130_fd_sc_hd__nor2_1 _451_ (
599
+ .A(b[7]),
600
+ .B(a[7]),
601
+ .Y(_404_)
602
+ );
603
+ sky130_fd_sc_hd__nand2_1 _452_ (
604
+ .A(b[7]),
605
+ .B(a[7]),
606
+ .Y(_405_)
607
+ );
608
+ sky130_fd_sc_hd__nand2b_1 _453_ (
609
+ .A_N(_404_),
610
+ .B(_405_),
611
+ .Y(_406_)
612
+ );
613
+ sky130_fd_sc_hd__nor2_1 _454_ (
614
+ .A(b[6]),
615
+ .B(_376_),
616
+ .Y(_407_)
617
+ );
618
+ sky130_fd_sc_hd__nand2b_1 _455_ (
619
+ .A_N(b[5]),
620
+ .B(a[5]),
621
+ .Y(_408_)
622
+ );
623
+ sky130_fd_sc_hd__nand2_1 _456_ (
624
+ .A(b[5]),
625
+ .B(a[5]),
626
+ .Y(_409_)
627
+ );
628
+ sky130_fd_sc_hd__xor2_1 _457_ (
629
+ .A(b[5]),
630
+ .B(a[5]),
631
+ .X(_410_)
632
+ );
633
+ sky130_fd_sc_hd__xnor2_1 _458_ (
634
+ .A(b[5]),
635
+ .B(a[5]),
636
+ .Y(_411_)
637
+ );
638
+ sky130_fd_sc_hd__nand2_1 _459_ (
639
+ .A(_369_),
640
+ .B(a[4]),
641
+ .Y(_412_)
642
+ );
643
+ sky130_fd_sc_hd__nand2_1 _460_ (
644
+ .A(b[4]),
645
+ .B(a[4]),
646
+ .Y(_413_)
647
+ );
648
+ sky130_fd_sc_hd__xnor2_1 _461_ (
649
+ .A(b[4]),
650
+ .B(a[4]),
651
+ .Y(_414_)
652
+ );
653
+ sky130_fd_sc_hd__nand2_1 _462_ (
654
+ .A(b[3]),
655
+ .B(_374_),
656
+ .Y(_000_)
657
+ );
658
+ sky130_fd_sc_hd__nand2b_1 _463_ (
659
+ .A_N(b[2]),
660
+ .B(a[2]),
661
+ .Y(_001_)
662
+ );
663
+ sky130_fd_sc_hd__nor2_1 _464_ (
664
+ .A(b[2]),
665
+ .B(a[2]),
666
+ .Y(_002_)
667
+ );
668
+ sky130_fd_sc_hd__nand2_1 _465_ (
669
+ .A(b[2]),
670
+ .B(a[2]),
671
+ .Y(_003_)
672
+ );
673
+ sky130_fd_sc_hd__nor2b_1 _466_ (
674
+ .A(_002_),
675
+ .B_N(_003_),
676
+ .Y(_004_)
677
+ );
678
+ sky130_fd_sc_hd__lpflow_isobufsrc_1 _467_ (
679
+ .A(a[1]),
680
+ .SLEEP(b[1]),
681
+ .X(_005_)
682
+ );
683
+ sky130_fd_sc_hd__nand2_1 _468_ (
684
+ .A(b[1]),
685
+ .B(a[1]),
686
+ .Y(_006_)
687
+ );
688
+ sky130_fd_sc_hd__xnor2_1 _469_ (
689
+ .A(b[1]),
690
+ .B(a[1]),
691
+ .Y(_007_)
692
+ );
693
+ sky130_fd_sc_hd__nand2b_1 _470_ (
694
+ .A_N(b[0]),
695
+ .B(a[0]),
696
+ .Y(_008_)
697
+ );
698
+ sky130_fd_sc_hd__nand2_1 _471_ (
699
+ .A(b[0]),
700
+ .B(a[0]),
701
+ .Y(_009_)
702
+ );
703
+ sky130_fd_sc_hd__xnor2_1 _472_ (
704
+ .A(b[0]),
705
+ .B(a[0]),
706
+ .Y(_010_)
707
+ );
708
+ sky130_fd_sc_hd__nand2b_1 _473_ (
709
+ .A_N(a[0]),
710
+ .B(b[0]),
711
+ .Y(_011_)
712
+ );
713
+ sky130_fd_sc_hd__nand2_1 _474_ (
714
+ .A(_007_),
715
+ .B(_011_),
716
+ .Y(_012_)
717
+ );
718
+ sky130_fd_sc_hd__a21oi_1 _475_ (
719
+ .A1(_007_),
720
+ .A2(_011_),
721
+ .B1(_005_),
722
+ .Y(_013_)
723
+ );
724
+ sky130_fd_sc_hd__lpflow_inputiso1p_1 _476_ (
725
+ .A(_004_),
726
+ .SLEEP(_013_),
727
+ .X(_014_)
728
+ );
729
+ sky130_fd_sc_hd__nand2_1 _477_ (
730
+ .A(_001_),
731
+ .B(_014_),
732
+ .Y(_015_)
733
+ );
734
+ sky130_fd_sc_hd__o221ai_1 _478_ (
735
+ .A1(b[3]),
736
+ .A2(_374_),
737
+ .B1(_004_),
738
+ .B2(_013_),
739
+ .C1(_001_),
740
+ .Y(_016_)
741
+ );
742
+ sky130_fd_sc_hd__nand3_1 _479_ (
743
+ .A(_414_),
744
+ .B(_000_),
745
+ .C(_016_),
746
+ .Y(_017_)
747
+ );
748
+ sky130_fd_sc_hd__nand2_1 _480_ (
749
+ .A(_412_),
750
+ .B(_017_),
751
+ .Y(_018_)
752
+ );
753
+ sky130_fd_sc_hd__nand2_1 _481_ (
754
+ .A(_411_),
755
+ .B(_018_),
756
+ .Y(_019_)
757
+ );
758
+ sky130_fd_sc_hd__o21ai_0 _482_ (
759
+ .A1(_410_),
760
+ .A2(_412_),
761
+ .B1(_408_),
762
+ .Y(_020_)
763
+ );
764
+ sky130_fd_sc_hd__a41oi_1 _483_ (
765
+ .A1(_411_),
766
+ .A2(_414_),
767
+ .A3(_000_),
768
+ .A4(_016_),
769
+ .B1(_020_),
770
+ .Y(_021_)
771
+ );
772
+ sky130_fd_sc_hd__nand2_1 _484_ (
773
+ .A(b[6]),
774
+ .B(a[6]),
775
+ .Y(_022_)
776
+ );
777
+ sky130_fd_sc_hd__xnor2_1 _485_ (
778
+ .A(b[6]),
779
+ .B(a[6]),
780
+ .Y(_023_)
781
+ );
782
+ sky130_fd_sc_hd__maj3_1 _486_ (
783
+ .A(b[6]),
784
+ .B(_376_),
785
+ .C(_021_),
786
+ .X(_024_)
787
+ );
788
+ sky130_fd_sc_hd__nand2_1 _487_ (
789
+ .A(_406_),
790
+ .B(_407_),
791
+ .Y(_025_)
792
+ );
793
+ sky130_fd_sc_hd__nand2_1 _488_ (
794
+ .A(_406_),
795
+ .B(_023_),
796
+ .Y(_026_)
797
+ );
798
+ sky130_fd_sc_hd__o221ai_1 _489_ (
799
+ .A1(b[7]),
800
+ .A2(_377_),
801
+ .B1(_021_),
802
+ .B2(_026_),
803
+ .C1(_025_),
804
+ .Y(_027_)
805
+ );
806
+ sky130_fd_sc_hd__and2_0 _490_ (
807
+ .A(_403_),
808
+ .B(_027_),
809
+ .X(_028_)
810
+ );
811
+ sky130_fd_sc_hd__maj3_1 _491_ (
812
+ .A(_370_),
813
+ .B(a[8]),
814
+ .C(_027_),
815
+ .X(_029_)
816
+ );
817
+ sky130_fd_sc_hd__lpflow_inputiso1p_1 _492_ (
818
+ .A(b[9]),
819
+ .SLEEP(a[9]),
820
+ .X(_030_)
821
+ );
822
+ sky130_fd_sc_hd__and2_0 _493_ (
823
+ .A(b[9]),
824
+ .B(a[9]),
825
+ .X(_031_)
826
+ );
827
+ sky130_fd_sc_hd__nand2_1 _494_ (
828
+ .A(b[9]),
829
+ .B(a[9]),
830
+ .Y(_032_)
831
+ );
832
+ sky130_fd_sc_hd__nand2_1 _495_ (
833
+ .A(_030_),
834
+ .B(_032_),
835
+ .Y(_033_)
836
+ );
837
+ sky130_fd_sc_hd__nand2_1 _496_ (
838
+ .A(_029_),
839
+ .B(_033_),
840
+ .Y(_034_)
841
+ );
842
+ sky130_fd_sc_hd__a21oi_1 _497_ (
843
+ .A1(_030_),
844
+ .A2(_032_),
845
+ .B1(_396_),
846
+ .Y(_035_)
847
+ );
848
+ sky130_fd_sc_hd__a21oi_1 _498_ (
849
+ .A1(_029_),
850
+ .A2(_035_),
851
+ .B1(_401_),
852
+ .Y(_036_)
853
+ );
854
+ sky130_fd_sc_hd__maj3_1 _499_ (
855
+ .A(b[12]),
856
+ .B(_378_),
857
+ .C(_036_),
858
+ .X(_037_)
859
+ );
860
+ sky130_fd_sc_hd__a21oi_1 _500_ (
861
+ .A1(_386_),
862
+ .A2(_037_),
863
+ .B1(_387_),
864
+ .Y(_038_)
865
+ );
866
+ sky130_fd_sc_hd__nor2b_1 _501_ (
867
+ .A(_385_),
868
+ .B_N(_038_),
869
+ .Y(_039_)
870
+ );
871
+ sky130_fd_sc_hd__nor3_1 _502_ (
872
+ .A(_380_),
873
+ .B(_382_),
874
+ .C(_039_),
875
+ .Y(_040_)
876
+ );
877
+ sky130_fd_sc_hd__a21oi_1 _503_ (
878
+ .A1(a[15]),
879
+ .A2(_379_),
880
+ .B1(_040_),
881
+ .Y(_041_)
882
+ );
883
+ sky130_fd_sc_hd__lpflow_isobufsrc_1 _504_ (
884
+ .A(sel[2]),
885
+ .SLEEP(sel[3]),
886
+ .X(_042_)
887
+ );
888
+ sky130_fd_sc_hd__nand2b_1 _505_ (
889
+ .A_N(sel[3]),
890
+ .B(sel[2]),
891
+ .Y(_043_)
892
+ );
893
+ sky130_fd_sc_hd__nand3_1 _506_ (
894
+ .A(sel[0]),
895
+ .B(sel[1]),
896
+ .C(_042_),
897
+ .Y(_044_)
898
+ );
899
+ sky130_fd_sc_hd__nand2b_1 _507_ (
900
+ .A_N(sel[0]),
901
+ .B(sel[1]),
902
+ .Y(_045_)
903
+ );
904
+ sky130_fd_sc_hd__nor2_1 _508_ (
905
+ .A(_043_),
906
+ .B(_045_),
907
+ .Y(_046_)
908
+ );
909
+ sky130_fd_sc_hd__or3_1 _509_ (
910
+ .A(b[2]),
911
+ .B(_043_),
912
+ .C(_045_),
913
+ .X(_047_)
914
+ );
915
+ sky130_fd_sc_hd__mux2_1 _510_ (
916
+ .A0(a[8]),
917
+ .A1(a[9]),
918
+ .S(b[0]),
919
+ .X(_048_)
920
+ );
921
+ sky130_fd_sc_hd__lpflow_isobufsrc_1 _511_ (
922
+ .A(a[10]),
923
+ .SLEEP(b[0]),
924
+ .X(_049_)
925
+ );
926
+ sky130_fd_sc_hd__nand2_1 _512_ (
927
+ .A(b[0]),
928
+ .B(a[11]),
929
+ .Y(_050_)
930
+ );
931
+ sky130_fd_sc_hd__a21oi_1 _513_ (
932
+ .A1(b[0]),
933
+ .A2(a[11]),
934
+ .B1(_049_),
935
+ .Y(_051_)
936
+ );
937
+ sky130_fd_sc_hd__nand2_1 _514_ (
938
+ .A(b[1]),
939
+ .B(_051_),
940
+ .Y(_052_)
941
+ );
942
+ sky130_fd_sc_hd__o21ai_0 _515_ (
943
+ .A1(b[1]),
944
+ .A2(_048_),
945
+ .B1(_052_),
946
+ .Y(_053_)
947
+ );
948
+ sky130_fd_sc_hd__nand2_1 _516_ (
949
+ .A(b[2]),
950
+ .B(_046_),
951
+ .Y(_054_)
952
+ );
953
+ sky130_fd_sc_hd__nand2b_1 _517_ (
954
+ .A_N(b[0]),
955
+ .B(a[12]),
956
+ .Y(_055_)
957
+ );
958
+ sky130_fd_sc_hd__nand2_1 _518_ (
959
+ .A(b[0]),
960
+ .B(a[13]),
961
+ .Y(_056_)
962
+ );
963
+ sky130_fd_sc_hd__nand2_1 _519_ (
964
+ .A(_055_),
965
+ .B(_056_),
966
+ .Y(_057_)
967
+ );
968
+ sky130_fd_sc_hd__nand2b_1 _520_ (
969
+ .A_N(b[0]),
970
+ .B(a[14]),
971
+ .Y(_058_)
972
+ );
973
+ sky130_fd_sc_hd__a21boi_0 _521_ (
974
+ .A1(b[0]),
975
+ .A2(a[15]),
976
+ .B1_N(_058_),
977
+ .Y(_059_)
978
+ );
979
+ sky130_fd_sc_hd__nand2_1 _522_ (
980
+ .A(b[1]),
981
+ .B(_059_),
982
+ .Y(_060_)
983
+ );
984
+ sky130_fd_sc_hd__o21ai_0 _523_ (
985
+ .A1(b[1]),
986
+ .A2(_057_),
987
+ .B1(_060_),
988
+ .Y(_061_)
989
+ );
990
+ sky130_fd_sc_hd__o22a_1 _524_ (
991
+ .A1(_047_),
992
+ .A2(_053_),
993
+ .B1(_054_),
994
+ .B2(_061_),
995
+ .X(_062_)
996
+ );
997
+ sky130_fd_sc_hd__nand2_1 _525_ (
998
+ .A(b[0]),
999
+ .B(a[5]),
1000
+ .Y(_063_)
1001
+ );
1002
+ sky130_fd_sc_hd__o21ai_0 _526_ (
1003
+ .A1(b[0]),
1004
+ .A2(_375_),
1005
+ .B1(_063_),
1006
+ .Y(_064_)
1007
+ );
1008
+ sky130_fd_sc_hd__mux2i_1 _527_ (
1009
+ .A0(a[6]),
1010
+ .A1(a[7]),
1011
+ .S(b[0]),
1012
+ .Y(_065_)
1013
+ );
1014
+ sky130_fd_sc_hd__nand2_1 _528_ (
1015
+ .A(b[1]),
1016
+ .B(_065_),
1017
+ .Y(_066_)
1018
+ );
1019
+ sky130_fd_sc_hd__o21ai_0 _529_ (
1020
+ .A1(b[1]),
1021
+ .A2(_064_),
1022
+ .B1(_066_),
1023
+ .Y(_067_)
1024
+ );
1025
+ sky130_fd_sc_hd__nand2_1 _530_ (
1026
+ .A(b[0]),
1027
+ .B(a[1]),
1028
+ .Y(_068_)
1029
+ );
1030
+ sky130_fd_sc_hd__nand2_1 _531_ (
1031
+ .A(_008_),
1032
+ .B(_068_),
1033
+ .Y(_069_)
1034
+ );
1035
+ sky130_fd_sc_hd__mux2i_1 _532_ (
1036
+ .A0(a[2]),
1037
+ .A1(a[3]),
1038
+ .S(b[0]),
1039
+ .Y(_070_)
1040
+ );
1041
+ sky130_fd_sc_hd__nor2_1 _533_ (
1042
+ .A(b[1]),
1043
+ .B(_069_),
1044
+ .Y(_071_)
1045
+ );
1046
+ sky130_fd_sc_hd__a211oi_1 _534_ (
1047
+ .A1(b[1]),
1048
+ .A2(_070_),
1049
+ .B1(_071_),
1050
+ .C1(_047_),
1051
+ .Y(_072_)
1052
+ );
1053
+ sky130_fd_sc_hd__nand2_1 _535_ (
1054
+ .A(sel[0]),
1055
+ .B(_042_),
1056
+ .Y(_073_)
1057
+ );
1058
+ sky130_fd_sc_hd__nor2_1 _536_ (
1059
+ .A(sel[1]),
1060
+ .B(_073_),
1061
+ .Y(_074_)
1062
+ );
1063
+ sky130_fd_sc_hd__nor3_1 _537_ (
1064
+ .A(sel[1]),
1065
+ .B(b[2]),
1066
+ .C(_073_),
1067
+ .Y(_075_)
1068
+ );
1069
+ sky130_fd_sc_hd__or3_1 _538_ (
1070
+ .A(sel[1]),
1071
+ .B(b[2]),
1072
+ .C(_073_),
1073
+ .X(_076_)
1074
+ );
1075
+ sky130_fd_sc_hd__nor3_1 _539_ (
1076
+ .A(b[1]),
1077
+ .B(_008_),
1078
+ .C(_076_),
1079
+ .Y(_077_)
1080
+ );
1081
+ sky130_fd_sc_hd__nor3_1 _540_ (
1082
+ .A(_368_),
1083
+ .B(_043_),
1084
+ .C(_045_),
1085
+ .Y(_078_)
1086
+ );
1087
+ sky130_fd_sc_hd__nand2_1 _541_ (
1088
+ .A(b[3]),
1089
+ .B(_046_),
1090
+ .Y(_079_)
1091
+ );
1092
+ sky130_fd_sc_hd__o21ai_0 _542_ (
1093
+ .A1(_054_),
1094
+ .A2(_067_),
1095
+ .B1(_079_),
1096
+ .Y(_080_)
1097
+ );
1098
+ sky130_fd_sc_hd__nor3_1 _543_ (
1099
+ .A(_072_),
1100
+ .B(_077_),
1101
+ .C(_080_),
1102
+ .Y(_081_)
1103
+ );
1104
+ sky130_fd_sc_hd__a211oi_1 _544_ (
1105
+ .A1(b[3]),
1106
+ .A2(_062_),
1107
+ .B1(_081_),
1108
+ .C1(b[4]),
1109
+ .Y(_082_)
1110
+ );
1111
+ sky130_fd_sc_hd__nor2_1 _545_ (
1112
+ .A(sel[0]),
1113
+ .B(sel[1]),
1114
+ .Y(_083_)
1115
+ );
1116
+ sky130_fd_sc_hd__nor3_1 _546_ (
1117
+ .A(sel[0]),
1118
+ .B(sel[1]),
1119
+ .C(_043_),
1120
+ .Y(_084_)
1121
+ );
1122
+ sky130_fd_sc_hd__nand2_1 _547_ (
1123
+ .A(_042_),
1124
+ .B(_083_),
1125
+ .Y(_085_)
1126
+ );
1127
+ sky130_fd_sc_hd__nor2_1 _548_ (
1128
+ .A(sel[3]),
1129
+ .B(sel[2]),
1130
+ .Y(_086_)
1131
+ );
1132
+ sky130_fd_sc_hd__nor3_1 _549_ (
1133
+ .A(sel[3]),
1134
+ .B(sel[1]),
1135
+ .C(sel[2]),
1136
+ .Y(_087_)
1137
+ );
1138
+ sky130_fd_sc_hd__nand2b_1 _550_ (
1139
+ .A_N(_045_),
1140
+ .B(_086_),
1141
+ .Y(_088_)
1142
+ );
1143
+ sky130_fd_sc_hd__clkinv_1 _551_ (
1144
+ .A(_088_),
1145
+ .Y(_089_)
1146
+ );
1147
+ sky130_fd_sc_hd__and3_1 _552_ (
1148
+ .A(sel[0]),
1149
+ .B(sel[1]),
1150
+ .C(_086_),
1151
+ .X(_090_)
1152
+ );
1153
+ sky130_fd_sc_hd__nand3_1 _553_ (
1154
+ .A(sel[0]),
1155
+ .B(sel[1]),
1156
+ .C(_086_),
1157
+ .Y(_091_)
1158
+ );
1159
+ sky130_fd_sc_hd__o21ai_0 _554_ (
1160
+ .A1(_084_),
1161
+ .A2(_087_),
1162
+ .B1(_009_),
1163
+ .Y(_092_)
1164
+ );
1165
+ sky130_fd_sc_hd__nand2_1 _555_ (
1166
+ .A(_091_),
1167
+ .B(_092_),
1168
+ .Y(_093_)
1169
+ );
1170
+ sky130_fd_sc_hd__o21ai_0 _556_ (
1171
+ .A1(b[0]),
1172
+ .A2(a[0]),
1173
+ .B1(_093_),
1174
+ .Y(_094_)
1175
+ );
1176
+ sky130_fd_sc_hd__o21ai_0 _557_ (
1177
+ .A1(_009_),
1178
+ .A2(_088_),
1179
+ .B1(_094_),
1180
+ .Y(_095_)
1181
+ );
1182
+ sky130_fd_sc_hd__nor2_1 _558_ (
1183
+ .A(b[13]),
1184
+ .B(a[13]),
1185
+ .Y(_096_)
1186
+ );
1187
+ sky130_fd_sc_hd__and2_0 _559_ (
1188
+ .A(b[13]),
1189
+ .B(a[13]),
1190
+ .X(_097_)
1191
+ );
1192
+ sky130_fd_sc_hd__nor2_1 _560_ (
1193
+ .A(_096_),
1194
+ .B(_097_),
1195
+ .Y(_098_)
1196
+ );
1197
+ sky130_fd_sc_hd__nor4_1 _561_ (
1198
+ .A(_380_),
1199
+ .B(_385_),
1200
+ .C(_389_),
1201
+ .D(_098_),
1202
+ .Y(_099_)
1203
+ );
1204
+ sky130_fd_sc_hd__nand3_1 _562_ (
1205
+ .A(_403_),
1206
+ .B(_035_),
1207
+ .C(_099_),
1208
+ .Y(_100_)
1209
+ );
1210
+ sky130_fd_sc_hd__nor2_1 _563_ (
1211
+ .A(b[3]),
1212
+ .B(a[3]),
1213
+ .Y(_101_)
1214
+ );
1215
+ sky130_fd_sc_hd__nand2_1 _564_ (
1216
+ .A(b[3]),
1217
+ .B(a[3]),
1218
+ .Y(_102_)
1219
+ );
1220
+ sky130_fd_sc_hd__nor2b_1 _565_ (
1221
+ .A(_101_),
1222
+ .B_N(_102_),
1223
+ .Y(_103_)
1224
+ );
1225
+ sky130_fd_sc_hd__nor3_1 _566_ (
1226
+ .A(_410_),
1227
+ .B(_004_),
1228
+ .C(_026_),
1229
+ .Y(_104_)
1230
+ );
1231
+ sky130_fd_sc_hd__nand3_1 _567_ (
1232
+ .A(sel[3]),
1233
+ .B(_010_),
1234
+ .C(_083_),
1235
+ .Y(_105_)
1236
+ );
1237
+ sky130_fd_sc_hd__nor2_1 _568_ (
1238
+ .A(sel[2]),
1239
+ .B(_105_),
1240
+ .Y(_106_)
1241
+ );
1242
+ sky130_fd_sc_hd__nand4_1 _569_ (
1243
+ .A(_414_),
1244
+ .B(_007_),
1245
+ .C(_104_),
1246
+ .D(_106_),
1247
+ .Y(_107_)
1248
+ );
1249
+ sky130_fd_sc_hd__nor3_1 _570_ (
1250
+ .A(_100_),
1251
+ .B(_103_),
1252
+ .C(_107_),
1253
+ .Y(_108_)
1254
+ );
1255
+ sky130_fd_sc_hd__nor3_1 _571_ (
1256
+ .A(_082_),
1257
+ .B(_095_),
1258
+ .C(_108_),
1259
+ .Y(_109_)
1260
+ );
1261
+ sky130_fd_sc_hd__o21ai_0 _572_ (
1262
+ .A1(_041_),
1263
+ .A2(_044_),
1264
+ .B1(_109_),
1265
+ .Y(result[0])
1266
+ );
1267
+ sky130_fd_sc_hd__nor2_1 _573_ (
1268
+ .A(_007_),
1269
+ .B(_011_),
1270
+ .Y(_110_)
1271
+ );
1272
+ sky130_fd_sc_hd__and2_0 _574_ (
1273
+ .A(sel[0]),
1274
+ .B(_087_),
1275
+ .X(_111_)
1276
+ );
1277
+ sky130_fd_sc_hd__nand2_1 _575_ (
1278
+ .A(sel[0]),
1279
+ .B(_087_),
1280
+ .Y(_112_)
1281
+ );
1282
+ sky130_fd_sc_hd__nand2_1 _576_ (
1283
+ .A(_012_),
1284
+ .B(_111_),
1285
+ .Y(_113_)
1286
+ );
1287
+ sky130_fd_sc_hd__nor4_1 _577_ (
1288
+ .A(sel[3]),
1289
+ .B(sel[0]),
1290
+ .C(sel[1]),
1291
+ .D(sel[2]),
1292
+ .Y(_114_)
1293
+ );
1294
+ sky130_fd_sc_hd__nand2_1 _578_ (
1295
+ .A(_083_),
1296
+ .B(_086_),
1297
+ .Y(_115_)
1298
+ );
1299
+ sky130_fd_sc_hd__o21ai_0 _579_ (
1300
+ .A1(b[1]),
1301
+ .A2(a[1]),
1302
+ .B1(_090_),
1303
+ .Y(_116_)
1304
+ );
1305
+ sky130_fd_sc_hd__nor2_1 _580_ (
1306
+ .A(_006_),
1307
+ .B(_088_),
1308
+ .Y(_117_)
1309
+ );
1310
+ sky130_fd_sc_hd__o21ai_0 _581_ (
1311
+ .A1(_007_),
1312
+ .A2(_085_),
1313
+ .B1(_116_),
1314
+ .Y(_118_)
1315
+ );
1316
+ sky130_fd_sc_hd__xnor2_1 _582_ (
1317
+ .A(_007_),
1318
+ .B(_009_),
1319
+ .Y(_119_)
1320
+ );
1321
+ sky130_fd_sc_hd__o22ai_1 _583_ (
1322
+ .A1(_110_),
1323
+ .A2(_113_),
1324
+ .B1(_115_),
1325
+ .B2(_119_),
1326
+ .Y(_120_)
1327
+ );
1328
+ sky130_fd_sc_hd__lpflow_isobufsrc_1 _584_ (
1329
+ .A(a[5]),
1330
+ .SLEEP(b[0]),
1331
+ .X(_121_)
1332
+ );
1333
+ sky130_fd_sc_hd__a21oi_1 _585_ (
1334
+ .A1(b[0]),
1335
+ .A2(a[6]),
1336
+ .B1(_121_),
1337
+ .Y(_122_)
1338
+ );
1339
+ sky130_fd_sc_hd__clkinv_1 _586_ (
1340
+ .A(_122_),
1341
+ .Y(_123_)
1342
+ );
1343
+ sky130_fd_sc_hd__nor2_1 _587_ (
1344
+ .A(b[1]),
1345
+ .B(_122_),
1346
+ .Y(_124_)
1347
+ );
1348
+ sky130_fd_sc_hd__nor2_1 _588_ (
1349
+ .A(b[0]),
1350
+ .B(_377_),
1351
+ .Y(_125_)
1352
+ );
1353
+ sky130_fd_sc_hd__nand2_1 _589_ (
1354
+ .A(b[0]),
1355
+ .B(a[8]),
1356
+ .Y(_126_)
1357
+ );
1358
+ sky130_fd_sc_hd__o21ai_0 _590_ (
1359
+ .A1(b[0]),
1360
+ .A2(_377_),
1361
+ .B1(_126_),
1362
+ .Y(_127_)
1363
+ );
1364
+ sky130_fd_sc_hd__a21oi_1 _591_ (
1365
+ .A1(b[1]),
1366
+ .A2(_127_),
1367
+ .B1(_124_),
1368
+ .Y(_128_)
1369
+ );
1370
+ sky130_fd_sc_hd__nand2_1 _592_ (
1371
+ .A(b[0]),
1372
+ .B(a[2]),
1373
+ .Y(_129_)
1374
+ );
1375
+ sky130_fd_sc_hd__o21ai_0 _593_ (
1376
+ .A1(b[0]),
1377
+ .A2(_372_),
1378
+ .B1(_129_),
1379
+ .Y(_130_)
1380
+ );
1381
+ sky130_fd_sc_hd__mux2i_1 _594_ (
1382
+ .A0(a[3]),
1383
+ .A1(a[4]),
1384
+ .S(b[0]),
1385
+ .Y(_131_)
1386
+ );
1387
+ sky130_fd_sc_hd__a21oi_1 _595_ (
1388
+ .A1(b[1]),
1389
+ .A2(_131_),
1390
+ .B1(_047_),
1391
+ .Y(_132_)
1392
+ );
1393
+ sky130_fd_sc_hd__o21ai_0 _596_ (
1394
+ .A1(b[1]),
1395
+ .A2(_130_),
1396
+ .B1(_132_),
1397
+ .Y(_133_)
1398
+ );
1399
+ sky130_fd_sc_hd__mux2i_1 _597_ (
1400
+ .A0(a[1]),
1401
+ .A1(a[0]),
1402
+ .S(b[0]),
1403
+ .Y(_134_)
1404
+ );
1405
+ sky130_fd_sc_hd__nor2_1 _598_ (
1406
+ .A(b[1]),
1407
+ .B(_134_),
1408
+ .Y(_135_)
1409
+ );
1410
+ sky130_fd_sc_hd__nand2_1 _599_ (
1411
+ .A(_075_),
1412
+ .B(_135_),
1413
+ .Y(_136_)
1414
+ );
1415
+ sky130_fd_sc_hd__o21ai_0 _600_ (
1416
+ .A1(_054_),
1417
+ .A2(_128_),
1418
+ .B1(_079_),
1419
+ .Y(_137_)
1420
+ );
1421
+ sky130_fd_sc_hd__a21oi_1 _601_ (
1422
+ .A1(_075_),
1423
+ .A2(_135_),
1424
+ .B1(_137_),
1425
+ .Y(_138_)
1426
+ );
1427
+ sky130_fd_sc_hd__nand2b_1 _602_ (
1428
+ .A_N(b[0]),
1429
+ .B(a[9]),
1430
+ .Y(_139_)
1431
+ );
1432
+ sky130_fd_sc_hd__nand2_1 _603_ (
1433
+ .A(b[0]),
1434
+ .B(a[10]),
1435
+ .Y(_140_)
1436
+ );
1437
+ sky130_fd_sc_hd__nand2_1 _604_ (
1438
+ .A(_139_),
1439
+ .B(_140_),
1440
+ .Y(_141_)
1441
+ );
1442
+ sky130_fd_sc_hd__lpflow_isobufsrc_1 _605_ (
1443
+ .A(a[11]),
1444
+ .SLEEP(b[0]),
1445
+ .X(_142_)
1446
+ );
1447
+ sky130_fd_sc_hd__a21oi_1 _606_ (
1448
+ .A1(b[0]),
1449
+ .A2(a[12]),
1450
+ .B1(_142_),
1451
+ .Y(_143_)
1452
+ );
1453
+ sky130_fd_sc_hd__nand2_1 _607_ (
1454
+ .A(b[1]),
1455
+ .B(_143_),
1456
+ .Y(_144_)
1457
+ );
1458
+ sky130_fd_sc_hd__o21ai_0 _608_ (
1459
+ .A1(b[1]),
1460
+ .A2(_141_),
1461
+ .B1(_144_),
1462
+ .Y(_145_)
1463
+ );
1464
+ sky130_fd_sc_hd__mux2_1 _609_ (
1465
+ .A0(a[13]),
1466
+ .A1(a[14]),
1467
+ .S(b[0]),
1468
+ .X(_146_)
1469
+ );
1470
+ sky130_fd_sc_hd__nand2b_1 _610_ (
1471
+ .A_N(b[0]),
1472
+ .B(a[15]),
1473
+ .Y(_147_)
1474
+ );
1475
+ sky130_fd_sc_hd__nand2_1 _611_ (
1476
+ .A(b[1]),
1477
+ .B(_147_),
1478
+ .Y(_148_)
1479
+ );
1480
+ sky130_fd_sc_hd__o21ai_0 _612_ (
1481
+ .A1(b[1]),
1482
+ .A2(_146_),
1483
+ .B1(_148_),
1484
+ .Y(_149_)
1485
+ );
1486
+ sky130_fd_sc_hd__o22ai_1 _613_ (
1487
+ .A1(_047_),
1488
+ .A2(_145_),
1489
+ .B1(_149_),
1490
+ .B2(_054_),
1491
+ .Y(_150_)
1492
+ );
1493
+ sky130_fd_sc_hd__clkinv_1 _614_ (
1494
+ .A(_150_),
1495
+ .Y(_151_)
1496
+ );
1497
+ sky130_fd_sc_hd__a221oi_1 _615_ (
1498
+ .A1(_133_),
1499
+ .A2(_138_),
1500
+ .B1(_151_),
1501
+ .B2(b[3]),
1502
+ .C1(b[4]),
1503
+ .Y(_152_)
1504
+ );
1505
+ sky130_fd_sc_hd__or4_1 _616_ (
1506
+ .A(_117_),
1507
+ .B(_118_),
1508
+ .C(_120_),
1509
+ .D(_152_),
1510
+ .X(result[1])
1511
+ );
1512
+ sky130_fd_sc_hd__o21ai_0 _617_ (
1513
+ .A1(b[0]),
1514
+ .A2(_373_),
1515
+ .B1(_068_),
1516
+ .Y(_153_)
1517
+ );
1518
+ sky130_fd_sc_hd__nand2_1 _618_ (
1519
+ .A(b[1]),
1520
+ .B(_008_),
1521
+ .Y(_154_)
1522
+ );
1523
+ sky130_fd_sc_hd__o21ai_0 _619_ (
1524
+ .A1(b[1]),
1525
+ .A2(_153_),
1526
+ .B1(_154_),
1527
+ .Y(_155_)
1528
+ );
1529
+ sky130_fd_sc_hd__nor2_1 _620_ (
1530
+ .A(b[1]),
1531
+ .B(_070_),
1532
+ .Y(_156_)
1533
+ );
1534
+ sky130_fd_sc_hd__a21oi_1 _621_ (
1535
+ .A1(b[1]),
1536
+ .A2(_064_),
1537
+ .B1(_156_),
1538
+ .Y(_157_)
1539
+ );
1540
+ sky130_fd_sc_hd__nor2_1 _622_ (
1541
+ .A(b[1]),
1542
+ .B(_065_),
1543
+ .Y(_158_)
1544
+ );
1545
+ sky130_fd_sc_hd__a21oi_1 _623_ (
1546
+ .A1(b[1]),
1547
+ .A2(_048_),
1548
+ .B1(_158_),
1549
+ .Y(_159_)
1550
+ );
1551
+ sky130_fd_sc_hd__o22ai_1 _624_ (
1552
+ .A1(_076_),
1553
+ .A2(_155_),
1554
+ .B1(_157_),
1555
+ .B2(_047_),
1556
+ .Y(_160_)
1557
+ );
1558
+ sky130_fd_sc_hd__o21ai_0 _625_ (
1559
+ .A1(_054_),
1560
+ .A2(_159_),
1561
+ .B1(_079_),
1562
+ .Y(_161_)
1563
+ );
1564
+ sky130_fd_sc_hd__nor2_1 _626_ (
1565
+ .A(b[1]),
1566
+ .B(_051_),
1567
+ .Y(_162_)
1568
+ );
1569
+ sky130_fd_sc_hd__a21oi_1 _627_ (
1570
+ .A1(b[1]),
1571
+ .A2(_057_),
1572
+ .B1(_162_),
1573
+ .Y(_163_)
1574
+ );
1575
+ sky130_fd_sc_hd__o32a_1 _628_ (
1576
+ .A1(b[1]),
1577
+ .A2(_054_),
1578
+ .A3(_059_),
1579
+ .B1(_163_),
1580
+ .B2(_047_),
1581
+ .X(_164_)
1582
+ );
1583
+ sky130_fd_sc_hd__a21oi_1 _629_ (
1584
+ .A1(b[3]),
1585
+ .A2(_164_),
1586
+ .B1(b[4]),
1587
+ .Y(_165_)
1588
+ );
1589
+ sky130_fd_sc_hd__o21ai_0 _630_ (
1590
+ .A1(_160_),
1591
+ .A2(_161_),
1592
+ .B1(_165_),
1593
+ .Y(_166_)
1594
+ );
1595
+ sky130_fd_sc_hd__nand2_1 _631_ (
1596
+ .A(_004_),
1597
+ .B(_013_),
1598
+ .Y(_167_)
1599
+ );
1600
+ sky130_fd_sc_hd__nand3_1 _632_ (
1601
+ .A(_014_),
1602
+ .B(_111_),
1603
+ .C(_167_),
1604
+ .Y(_168_)
1605
+ );
1606
+ sky130_fd_sc_hd__o21ai_0 _633_ (
1607
+ .A1(_007_),
1608
+ .A2(_009_),
1609
+ .B1(_006_),
1610
+ .Y(_169_)
1611
+ );
1612
+ sky130_fd_sc_hd__lpflow_inputiso1p_1 _634_ (
1613
+ .A(_004_),
1614
+ .SLEEP(_169_),
1615
+ .X(_170_)
1616
+ );
1617
+ sky130_fd_sc_hd__nand2_1 _635_ (
1618
+ .A(_004_),
1619
+ .B(_169_),
1620
+ .Y(_171_)
1621
+ );
1622
+ sky130_fd_sc_hd__nand2_1 _636_ (
1623
+ .A(_004_),
1624
+ .B(_084_),
1625
+ .Y(_172_)
1626
+ );
1627
+ sky130_fd_sc_hd__o221ai_1 _637_ (
1628
+ .A1(_003_),
1629
+ .A2(_088_),
1630
+ .B1(_091_),
1631
+ .B2(_002_),
1632
+ .C1(_172_),
1633
+ .Y(_173_)
1634
+ );
1635
+ sky130_fd_sc_hd__a31oi_1 _638_ (
1636
+ .A1(_114_),
1637
+ .A2(_170_),
1638
+ .A3(_171_),
1639
+ .B1(_173_),
1640
+ .Y(_174_)
1641
+ );
1642
+ sky130_fd_sc_hd__nand3_1 _639_ (
1643
+ .A(_166_),
1644
+ .B(_168_),
1645
+ .C(_174_),
1646
+ .Y(result[2])
1647
+ );
1648
+ sky130_fd_sc_hd__xor2_1 _640_ (
1649
+ .A(_015_),
1650
+ .B(_103_),
1651
+ .X(_175_)
1652
+ );
1653
+ sky130_fd_sc_hd__nand2_1 _641_ (
1654
+ .A(_003_),
1655
+ .B(_171_),
1656
+ .Y(_176_)
1657
+ );
1658
+ sky130_fd_sc_hd__o21ai_0 _642_ (
1659
+ .A1(_115_),
1660
+ .A2(_176_),
1661
+ .B1(_085_),
1662
+ .Y(_177_)
1663
+ );
1664
+ sky130_fd_sc_hd__nand3_1 _643_ (
1665
+ .A(b[1]),
1666
+ .B(_139_),
1667
+ .C(_140_),
1668
+ .Y(_178_)
1669
+ );
1670
+ sky130_fd_sc_hd__o21ai_0 _644_ (
1671
+ .A1(b[1]),
1672
+ .A2(_127_),
1673
+ .B1(_178_),
1674
+ .Y(_179_)
1675
+ );
1676
+ sky130_fd_sc_hd__nand2_1 _645_ (
1677
+ .A(b[2]),
1678
+ .B(_179_),
1679
+ .Y(_180_)
1680
+ );
1681
+ sky130_fd_sc_hd__a21oi_1 _646_ (
1682
+ .A1(b[1]),
1683
+ .A2(_123_),
1684
+ .B1(b[2]),
1685
+ .Y(_181_)
1686
+ );
1687
+ sky130_fd_sc_hd__o21ai_0 _647_ (
1688
+ .A1(b[1]),
1689
+ .A2(_131_),
1690
+ .B1(_181_),
1691
+ .Y(_182_)
1692
+ );
1693
+ sky130_fd_sc_hd__o21ai_0 _648_ (
1694
+ .A1(b[0]),
1695
+ .A2(_374_),
1696
+ .B1(_129_),
1697
+ .Y(_183_)
1698
+ );
1699
+ sky130_fd_sc_hd__nand2_1 _649_ (
1700
+ .A(b[1]),
1701
+ .B(_134_),
1702
+ .Y(_184_)
1703
+ );
1704
+ sky130_fd_sc_hd__o21ai_0 _650_ (
1705
+ .A1(b[1]),
1706
+ .A2(_183_),
1707
+ .B1(_184_),
1708
+ .Y(_185_)
1709
+ );
1710
+ sky130_fd_sc_hd__o21ai_0 _651_ (
1711
+ .A1(_076_),
1712
+ .A2(_185_),
1713
+ .B1(_079_),
1714
+ .Y(_186_)
1715
+ );
1716
+ sky130_fd_sc_hd__a31oi_1 _652_ (
1717
+ .A1(_046_),
1718
+ .A2(_180_),
1719
+ .A3(_182_),
1720
+ .B1(_186_),
1721
+ .Y(_187_)
1722
+ );
1723
+ sky130_fd_sc_hd__nor2_1 _653_ (
1724
+ .A(b[1]),
1725
+ .B(_143_),
1726
+ .Y(_188_)
1727
+ );
1728
+ sky130_fd_sc_hd__a21oi_1 _654_ (
1729
+ .A1(b[1]),
1730
+ .A2(_146_),
1731
+ .B1(_188_),
1732
+ .Y(_189_)
1733
+ );
1734
+ sky130_fd_sc_hd__o32a_1 _655_ (
1735
+ .A1(b[1]),
1736
+ .A2(_054_),
1737
+ .A3(_147_),
1738
+ .B1(_189_),
1739
+ .B2(_047_),
1740
+ .X(_190_)
1741
+ );
1742
+ sky130_fd_sc_hd__a21oi_1 _656_ (
1743
+ .A1(b[3]),
1744
+ .A2(_190_),
1745
+ .B1(_187_),
1746
+ .Y(_191_)
1747
+ );
1748
+ sky130_fd_sc_hd__nor2_1 _657_ (
1749
+ .A(_103_),
1750
+ .B(_115_),
1751
+ .Y(_192_)
1752
+ );
1753
+ sky130_fd_sc_hd__nand2_1 _658_ (
1754
+ .A(_176_),
1755
+ .B(_192_),
1756
+ .Y(_193_)
1757
+ );
1758
+ sky130_fd_sc_hd__o221ai_1 _659_ (
1759
+ .A1(_091_),
1760
+ .A2(_101_),
1761
+ .B1(_102_),
1762
+ .B2(_088_),
1763
+ .C1(_193_),
1764
+ .Y(_194_)
1765
+ );
1766
+ sky130_fd_sc_hd__a221oi_1 _660_ (
1767
+ .A1(_103_),
1768
+ .A2(_177_),
1769
+ .B1(_191_),
1770
+ .B2(_369_),
1771
+ .C1(_194_),
1772
+ .Y(_195_)
1773
+ );
1774
+ sky130_fd_sc_hd__o21ai_0 _661_ (
1775
+ .A1(_112_),
1776
+ .A2(_175_),
1777
+ .B1(_195_),
1778
+ .Y(result[3])
1779
+ );
1780
+ sky130_fd_sc_hd__a21oi_1 _662_ (
1781
+ .A1(_000_),
1782
+ .A2(_016_),
1783
+ .B1(_414_),
1784
+ .Y(_196_)
1785
+ );
1786
+ sky130_fd_sc_hd__nand2_1 _663_ (
1787
+ .A(_017_),
1788
+ .B(_111_),
1789
+ .Y(_197_)
1790
+ );
1791
+ sky130_fd_sc_hd__nor2_1 _664_ (
1792
+ .A(_196_),
1793
+ .B(_197_),
1794
+ .Y(_198_)
1795
+ );
1796
+ sky130_fd_sc_hd__a31oi_1 _665_ (
1797
+ .A1(_003_),
1798
+ .A2(_102_),
1799
+ .A3(_171_),
1800
+ .B1(_101_),
1801
+ .Y(_199_)
1802
+ );
1803
+ sky130_fd_sc_hd__a311o_1 _666_ (
1804
+ .A1(_003_),
1805
+ .A2(_102_),
1806
+ .A3(_171_),
1807
+ .B1(_101_),
1808
+ .C1(_414_),
1809
+ .X(_200_)
1810
+ );
1811
+ sky130_fd_sc_hd__xnor2_1 _667_ (
1812
+ .A(_414_),
1813
+ .B(_199_),
1814
+ .Y(_201_)
1815
+ );
1816
+ sky130_fd_sc_hd__mux2i_1 _668_ (
1817
+ .A0(a[4]),
1818
+ .A1(a[3]),
1819
+ .S(b[0]),
1820
+ .Y(_202_)
1821
+ );
1822
+ sky130_fd_sc_hd__nor2_1 _669_ (
1823
+ .A(b[1]),
1824
+ .B(_202_),
1825
+ .Y(_203_)
1826
+ );
1827
+ sky130_fd_sc_hd__a21oi_1 _670_ (
1828
+ .A1(b[1]),
1829
+ .A2(_153_),
1830
+ .B1(_203_),
1831
+ .Y(_204_)
1832
+ );
1833
+ sky130_fd_sc_hd__and2_0 _671_ (
1834
+ .A(b[2]),
1835
+ .B(_074_),
1836
+ .X(_205_)
1837
+ );
1838
+ sky130_fd_sc_hd__nand2_1 _672_ (
1839
+ .A(b[2]),
1840
+ .B(_074_),
1841
+ .Y(_206_)
1842
+ );
1843
+ sky130_fd_sc_hd__o32ai_1 _673_ (
1844
+ .A1(b[1]),
1845
+ .A2(_008_),
1846
+ .A3(_206_),
1847
+ .B1(_204_),
1848
+ .B2(_076_),
1849
+ .Y(_207_)
1850
+ );
1851
+ sky130_fd_sc_hd__o221ai_1 _674_ (
1852
+ .A1(_053_),
1853
+ .A2(_054_),
1854
+ .B1(_067_),
1855
+ .B2(_047_),
1856
+ .C1(_079_),
1857
+ .Y(_208_)
1858
+ );
1859
+ sky130_fd_sc_hd__nor2_1 _675_ (
1860
+ .A(_207_),
1861
+ .B(_208_),
1862
+ .Y(_209_)
1863
+ );
1864
+ sky130_fd_sc_hd__nor2_1 _676_ (
1865
+ .A(_047_),
1866
+ .B(_061_),
1867
+ .Y(_210_)
1868
+ );
1869
+ sky130_fd_sc_hd__o21ai_0 _677_ (
1870
+ .A1(_368_),
1871
+ .A2(_210_),
1872
+ .B1(_369_),
1873
+ .Y(_211_)
1874
+ );
1875
+ sky130_fd_sc_hd__o21ai_0 _678_ (
1876
+ .A1(b[4]),
1877
+ .A2(a[4]),
1878
+ .B1(_090_),
1879
+ .Y(_212_)
1880
+ );
1881
+ sky130_fd_sc_hd__o221ai_1 _679_ (
1882
+ .A1(_414_),
1883
+ .A2(_085_),
1884
+ .B1(_088_),
1885
+ .B2(_413_),
1886
+ .C1(_212_),
1887
+ .Y(_213_)
1888
+ );
1889
+ sky130_fd_sc_hd__a211oi_1 _680_ (
1890
+ .A1(_114_),
1891
+ .A2(_201_),
1892
+ .B1(_213_),
1893
+ .C1(_198_),
1894
+ .Y(_214_)
1895
+ );
1896
+ sky130_fd_sc_hd__o21ai_0 _681_ (
1897
+ .A1(_209_),
1898
+ .A2(_211_),
1899
+ .B1(_214_),
1900
+ .Y(result[4])
1901
+ );
1902
+ sky130_fd_sc_hd__nand3_1 _682_ (
1903
+ .A(_410_),
1904
+ .B(_412_),
1905
+ .C(_017_),
1906
+ .Y(_215_)
1907
+ );
1908
+ sky130_fd_sc_hd__nand3_1 _683_ (
1909
+ .A(_019_),
1910
+ .B(_111_),
1911
+ .C(_215_),
1912
+ .Y(_216_)
1913
+ );
1914
+ sky130_fd_sc_hd__nand3_1 _684_ (
1915
+ .A(_411_),
1916
+ .B(_413_),
1917
+ .C(_200_),
1918
+ .Y(_217_)
1919
+ );
1920
+ sky130_fd_sc_hd__a21o_1 _685_ (
1921
+ .A1(_413_),
1922
+ .A2(_200_),
1923
+ .B1(_411_),
1924
+ .X(_218_)
1925
+ );
1926
+ sky130_fd_sc_hd__nand3_1 _686_ (
1927
+ .A(_114_),
1928
+ .B(_217_),
1929
+ .C(_218_),
1930
+ .Y(_219_)
1931
+ );
1932
+ sky130_fd_sc_hd__a21oi_1 _687_ (
1933
+ .A1(b[0]),
1934
+ .A2(a[4]),
1935
+ .B1(_121_),
1936
+ .Y(_220_)
1937
+ );
1938
+ sky130_fd_sc_hd__nand2_1 _688_ (
1939
+ .A(b[1]),
1940
+ .B(_183_),
1941
+ .Y(_221_)
1942
+ );
1943
+ sky130_fd_sc_hd__o21ai_0 _689_ (
1944
+ .A1(b[1]),
1945
+ .A2(_220_),
1946
+ .B1(_221_),
1947
+ .Y(_222_)
1948
+ );
1949
+ sky130_fd_sc_hd__a22oi_1 _690_ (
1950
+ .A1(_135_),
1951
+ .A2(_205_),
1952
+ .B1(_222_),
1953
+ .B2(_075_),
1954
+ .Y(_223_)
1955
+ );
1956
+ sky130_fd_sc_hd__o221ai_1 _691_ (
1957
+ .A1(_047_),
1958
+ .A2(_128_),
1959
+ .B1(_145_),
1960
+ .B2(_054_),
1961
+ .C1(_223_),
1962
+ .Y(_224_)
1963
+ );
1964
+ sky130_fd_sc_hd__o21ai_0 _692_ (
1965
+ .A1(_047_),
1966
+ .A2(_149_),
1967
+ .B1(b[3]),
1968
+ .Y(_225_)
1969
+ );
1970
+ sky130_fd_sc_hd__o211a_1 _693_ (
1971
+ .A1(_078_),
1972
+ .A2(_224_),
1973
+ .B1(_225_),
1974
+ .C1(_369_),
1975
+ .X(_226_)
1976
+ );
1977
+ sky130_fd_sc_hd__o21ai_0 _694_ (
1978
+ .A1(b[5]),
1979
+ .A2(a[5]),
1980
+ .B1(_090_),
1981
+ .Y(_227_)
1982
+ );
1983
+ sky130_fd_sc_hd__o221ai_1 _695_ (
1984
+ .A1(_411_),
1985
+ .A2(_085_),
1986
+ .B1(_088_),
1987
+ .B2(_409_),
1988
+ .C1(_227_),
1989
+ .Y(_228_)
1990
+ );
1991
+ sky130_fd_sc_hd__nor2_1 _696_ (
1992
+ .A(_226_),
1993
+ .B(_228_),
1994
+ .Y(_229_)
1995
+ );
1996
+ sky130_fd_sc_hd__nand3_1 _697_ (
1997
+ .A(_216_),
1998
+ .B(_219_),
1999
+ .C(_229_),
2000
+ .Y(result[5])
2001
+ );
2002
+ sky130_fd_sc_hd__xor2_1 _698_ (
2003
+ .A(_021_),
2004
+ .B(_023_),
2005
+ .X(_230_)
2006
+ );
2007
+ sky130_fd_sc_hd__a21o_1 _699_ (
2008
+ .A1(_409_),
2009
+ .A2(_218_),
2010
+ .B1(_023_),
2011
+ .X(_231_)
2012
+ );
2013
+ sky130_fd_sc_hd__nand2_1 _700_ (
2014
+ .A(_114_),
2015
+ .B(_231_),
2016
+ .Y(_232_)
2017
+ );
2018
+ sky130_fd_sc_hd__a31oi_1 _701_ (
2019
+ .A1(_409_),
2020
+ .A2(_023_),
2021
+ .A3(_218_),
2022
+ .B1(_232_),
2023
+ .Y(_233_)
2024
+ );
2025
+ sky130_fd_sc_hd__o21ai_0 _702_ (
2026
+ .A1(b[0]),
2027
+ .A2(_376_),
2028
+ .B1(_063_),
2029
+ .Y(_234_)
2030
+ );
2031
+ sky130_fd_sc_hd__nand2_1 _703_ (
2032
+ .A(b[1]),
2033
+ .B(_202_),
2034
+ .Y(_235_)
2035
+ );
2036
+ sky130_fd_sc_hd__o21ai_0 _704_ (
2037
+ .A1(b[1]),
2038
+ .A2(_234_),
2039
+ .B1(_235_),
2040
+ .Y(_236_)
2041
+ );
2042
+ sky130_fd_sc_hd__o22a_1 _705_ (
2043
+ .A1(_155_),
2044
+ .A2(_206_),
2045
+ .B1(_236_),
2046
+ .B2(_076_),
2047
+ .X(_237_)
2048
+ );
2049
+ sky130_fd_sc_hd__o221a_1 _706_ (
2050
+ .A1(_047_),
2051
+ .A2(_159_),
2052
+ .B1(_163_),
2053
+ .B2(_054_),
2054
+ .C1(_079_),
2055
+ .X(_238_)
2056
+ );
2057
+ sky130_fd_sc_hd__or3_1 _707_ (
2058
+ .A(b[1]),
2059
+ .B(_047_),
2060
+ .C(_059_),
2061
+ .X(_239_)
2062
+ );
2063
+ sky130_fd_sc_hd__a221oi_1 _708_ (
2064
+ .A1(_237_),
2065
+ .A2(_238_),
2066
+ .B1(_239_),
2067
+ .B2(b[3]),
2068
+ .C1(b[4]),
2069
+ .Y(_240_)
2070
+ );
2071
+ sky130_fd_sc_hd__o21ai_0 _709_ (
2072
+ .A1(b[6]),
2073
+ .A2(a[6]),
2074
+ .B1(_090_),
2075
+ .Y(_241_)
2076
+ );
2077
+ sky130_fd_sc_hd__o221ai_1 _710_ (
2078
+ .A1(_023_),
2079
+ .A2(_085_),
2080
+ .B1(_088_),
2081
+ .B2(_022_),
2082
+ .C1(_241_),
2083
+ .Y(_242_)
2084
+ );
2085
+ sky130_fd_sc_hd__nor3_1 _711_ (
2086
+ .A(_233_),
2087
+ .B(_240_),
2088
+ .C(_242_),
2089
+ .Y(_243_)
2090
+ );
2091
+ sky130_fd_sc_hd__o21ai_0 _712_ (
2092
+ .A1(_112_),
2093
+ .A2(_230_),
2094
+ .B1(_243_),
2095
+ .Y(result[6])
2096
+ );
2097
+ sky130_fd_sc_hd__xor2_1 _713_ (
2098
+ .A(_406_),
2099
+ .B(_024_),
2100
+ .X(_244_)
2101
+ );
2102
+ sky130_fd_sc_hd__nand2_1 _714_ (
2103
+ .A(_022_),
2104
+ .B(_231_),
2105
+ .Y(_245_)
2106
+ );
2107
+ sky130_fd_sc_hd__xnor2_1 _715_ (
2108
+ .A(_406_),
2109
+ .B(_245_),
2110
+ .Y(_246_)
2111
+ );
2112
+ sky130_fd_sc_hd__a21oi_1 _716_ (
2113
+ .A1(b[0]),
2114
+ .A2(a[6]),
2115
+ .B1(_125_),
2116
+ .Y(_247_)
2117
+ );
2118
+ sky130_fd_sc_hd__mux2_1 _717_ (
2119
+ .A0(_247_),
2120
+ .A1(_220_),
2121
+ .S(b[1]),
2122
+ .X(_248_)
2123
+ );
2124
+ sky130_fd_sc_hd__o22a_1 _718_ (
2125
+ .A1(_185_),
2126
+ .A2(_206_),
2127
+ .B1(_248_),
2128
+ .B2(_076_),
2129
+ .X(_249_)
2130
+ );
2131
+ sky130_fd_sc_hd__o221ai_1 _719_ (
2132
+ .A1(_047_),
2133
+ .A2(_179_),
2134
+ .B1(_189_),
2135
+ .B2(_054_),
2136
+ .C1(_249_),
2137
+ .Y(_250_)
2138
+ );
2139
+ sky130_fd_sc_hd__or3_1 _720_ (
2140
+ .A(b[1]),
2141
+ .B(_047_),
2142
+ .C(_147_),
2143
+ .X(_251_)
2144
+ );
2145
+ sky130_fd_sc_hd__a21oi_1 _721_ (
2146
+ .A1(b[3]),
2147
+ .A2(_251_),
2148
+ .B1(b[4]),
2149
+ .Y(_252_)
2150
+ );
2151
+ sky130_fd_sc_hd__o21ai_0 _722_ (
2152
+ .A1(_078_),
2153
+ .A2(_250_),
2154
+ .B1(_252_),
2155
+ .Y(_253_)
2156
+ );
2157
+ sky130_fd_sc_hd__o22a_1 _723_ (
2158
+ .A1(_405_),
2159
+ .A2(_088_),
2160
+ .B1(_091_),
2161
+ .B2(_404_),
2162
+ .X(_254_)
2163
+ );
2164
+ sky130_fd_sc_hd__o211ai_1 _724_ (
2165
+ .A1(_406_),
2166
+ .A2(_085_),
2167
+ .B1(_253_),
2168
+ .C1(_254_),
2169
+ .Y(_255_)
2170
+ );
2171
+ sky130_fd_sc_hd__a21oi_1 _725_ (
2172
+ .A1(_114_),
2173
+ .A2(_246_),
2174
+ .B1(_255_),
2175
+ .Y(_256_)
2176
+ );
2177
+ sky130_fd_sc_hd__o21ai_0 _726_ (
2178
+ .A1(_112_),
2179
+ .A2(_244_),
2180
+ .B1(_256_),
2181
+ .Y(result[7])
2182
+ );
2183
+ sky130_fd_sc_hd__nor2_1 _727_ (
2184
+ .A(_403_),
2185
+ .B(_027_),
2186
+ .Y(_257_)
2187
+ );
2188
+ sky130_fd_sc_hd__o21ai_0 _728_ (
2189
+ .A1(b[7]),
2190
+ .A2(a[7]),
2191
+ .B1(_245_),
2192
+ .Y(_258_)
2193
+ );
2194
+ sky130_fd_sc_hd__nand3_1 _729_ (
2195
+ .A(_403_),
2196
+ .B(_405_),
2197
+ .C(_258_),
2198
+ .Y(_259_)
2199
+ );
2200
+ sky130_fd_sc_hd__a311oi_1 _730_ (
2201
+ .A1(_405_),
2202
+ .A2(_022_),
2203
+ .A3(_231_),
2204
+ .B1(_404_),
2205
+ .C1(_403_),
2206
+ .Y(_260_)
2207
+ );
2208
+ sky130_fd_sc_hd__nor2_1 _731_ (
2209
+ .A(_115_),
2210
+ .B(_260_),
2211
+ .Y(_261_)
2212
+ );
2213
+ sky130_fd_sc_hd__mux2i_1 _732_ (
2214
+ .A0(a[8]),
2215
+ .A1(a[7]),
2216
+ .S(b[0]),
2217
+ .Y(_262_)
2218
+ );
2219
+ sky130_fd_sc_hd__nor2_1 _733_ (
2220
+ .A(b[1]),
2221
+ .B(_262_),
2222
+ .Y(_263_)
2223
+ );
2224
+ sky130_fd_sc_hd__a21oi_1 _734_ (
2225
+ .A1(b[1]),
2226
+ .A2(_234_),
2227
+ .B1(_263_),
2228
+ .Y(_264_)
2229
+ );
2230
+ sky130_fd_sc_hd__nor3_1 _735_ (
2231
+ .A(sel[1]),
2232
+ .B(_368_),
2233
+ .C(_073_),
2234
+ .Y(_265_)
2235
+ );
2236
+ sky130_fd_sc_hd__nand2_1 _736_ (
2237
+ .A(b[3]),
2238
+ .B(_074_),
2239
+ .Y(_266_)
2240
+ );
2241
+ sky130_fd_sc_hd__o221ai_1 _737_ (
2242
+ .A1(_204_),
2243
+ .A2(_206_),
2244
+ .B1(_264_),
2245
+ .B2(_076_),
2246
+ .C1(_062_),
2247
+ .Y(_267_)
2248
+ );
2249
+ sky130_fd_sc_hd__o221ai_1 _738_ (
2250
+ .A1(_368_),
2251
+ .A2(_077_),
2252
+ .B1(_265_),
2253
+ .B2(_267_),
2254
+ .C1(_369_),
2255
+ .Y(_268_)
2256
+ );
2257
+ sky130_fd_sc_hd__o21ai_0 _739_ (
2258
+ .A1(b[8]),
2259
+ .A2(a[8]),
2260
+ .B1(_090_),
2261
+ .Y(_269_)
2262
+ );
2263
+ sky130_fd_sc_hd__nand2_1 _740_ (
2264
+ .A(_402_),
2265
+ .B(_089_),
2266
+ .Y(_270_)
2267
+ );
2268
+ sky130_fd_sc_hd__o2111ai_1 _741_ (
2269
+ .A1(_403_),
2270
+ .A2(_085_),
2271
+ .B1(_268_),
2272
+ .C1(_269_),
2273
+ .D1(_270_),
2274
+ .Y(_271_)
2275
+ );
2276
+ sky130_fd_sc_hd__a21oi_1 _742_ (
2277
+ .A1(_259_),
2278
+ .A2(_261_),
2279
+ .B1(_271_),
2280
+ .Y(_272_)
2281
+ );
2282
+ sky130_fd_sc_hd__o31ai_1 _743_ (
2283
+ .A1(_028_),
2284
+ .A2(_112_),
2285
+ .A3(_257_),
2286
+ .B1(_272_),
2287
+ .Y(result[8])
2288
+ );
2289
+ sky130_fd_sc_hd__a21oi_1 _744_ (
2290
+ .A1(_029_),
2291
+ .A2(_033_),
2292
+ .B1(_112_),
2293
+ .Y(_273_)
2294
+ );
2295
+ sky130_fd_sc_hd__o21ai_0 _745_ (
2296
+ .A1(_029_),
2297
+ .A2(_033_),
2298
+ .B1(_273_),
2299
+ .Y(_274_)
2300
+ );
2301
+ sky130_fd_sc_hd__nor2_1 _746_ (
2302
+ .A(_402_),
2303
+ .B(_260_),
2304
+ .Y(_275_)
2305
+ );
2306
+ sky130_fd_sc_hd__xnor2_1 _747_ (
2307
+ .A(_033_),
2308
+ .B(_275_),
2309
+ .Y(_276_)
2310
+ );
2311
+ sky130_fd_sc_hd__nand2_1 _748_ (
2312
+ .A(_126_),
2313
+ .B(_139_),
2314
+ .Y(_277_)
2315
+ );
2316
+ sky130_fd_sc_hd__nand2_1 _749_ (
2317
+ .A(b[1]),
2318
+ .B(_247_),
2319
+ .Y(_278_)
2320
+ );
2321
+ sky130_fd_sc_hd__o21ai_0 _750_ (
2322
+ .A1(b[1]),
2323
+ .A2(_277_),
2324
+ .B1(_278_),
2325
+ .Y(_279_)
2326
+ );
2327
+ sky130_fd_sc_hd__o21ai_0 _751_ (
2328
+ .A1(_076_),
2329
+ .A2(_279_),
2330
+ .B1(_266_),
2331
+ .Y(_280_)
2332
+ );
2333
+ sky130_fd_sc_hd__a21oi_1 _752_ (
2334
+ .A1(_205_),
2335
+ .A2(_222_),
2336
+ .B1(_280_),
2337
+ .Y(_281_)
2338
+ );
2339
+ sky130_fd_sc_hd__a221oi_1 _753_ (
2340
+ .A1(b[3]),
2341
+ .A2(_136_),
2342
+ .B1(_151_),
2343
+ .B2(_281_),
2344
+ .C1(b[4]),
2345
+ .Y(_282_)
2346
+ );
2347
+ sky130_fd_sc_hd__o22ai_1 _754_ (
2348
+ .A1(_033_),
2349
+ .A2(_085_),
2350
+ .B1(_088_),
2351
+ .B2(_032_),
2352
+ .Y(_283_)
2353
+ );
2354
+ sky130_fd_sc_hd__a211oi_1 _755_ (
2355
+ .A1(_030_),
2356
+ .A2(_090_),
2357
+ .B1(_282_),
2358
+ .C1(_283_),
2359
+ .Y(_284_)
2360
+ );
2361
+ sky130_fd_sc_hd__o211ai_1 _756_ (
2362
+ .A1(_115_),
2363
+ .A2(_276_),
2364
+ .B1(_284_),
2365
+ .C1(_274_),
2366
+ .Y(result[9])
2367
+ );
2368
+ sky130_fd_sc_hd__nand3_1 _757_ (
2369
+ .A(_395_),
2370
+ .B(_397_),
2371
+ .C(_034_),
2372
+ .Y(_285_)
2373
+ );
2374
+ sky130_fd_sc_hd__a21o_1 _758_ (
2375
+ .A1(_397_),
2376
+ .A2(_034_),
2377
+ .B1(_395_),
2378
+ .X(_286_)
2379
+ );
2380
+ sky130_fd_sc_hd__nand2_1 _759_ (
2381
+ .A(_032_),
2382
+ .B(_275_),
2383
+ .Y(_287_)
2384
+ );
2385
+ sky130_fd_sc_hd__a21oi_1 _760_ (
2386
+ .A1(_030_),
2387
+ .A2(_287_),
2388
+ .B1(_395_),
2389
+ .Y(_288_)
2390
+ );
2391
+ sky130_fd_sc_hd__o311ai_0 _761_ (
2392
+ .A1(_402_),
2393
+ .A2(_031_),
2394
+ .A3(_260_),
2395
+ .B1(_030_),
2396
+ .C1(_395_),
2397
+ .Y(_289_)
2398
+ );
2399
+ sky130_fd_sc_hd__nand2_1 _762_ (
2400
+ .A(_114_),
2401
+ .B(_289_),
2402
+ .Y(_290_)
2403
+ );
2404
+ sky130_fd_sc_hd__a21oi_1 _763_ (
2405
+ .A1(b[0]),
2406
+ .A2(a[9]),
2407
+ .B1(_049_),
2408
+ .Y(_291_)
2409
+ );
2410
+ sky130_fd_sc_hd__mux2_1 _764_ (
2411
+ .A0(_291_),
2412
+ .A1(_262_),
2413
+ .S(b[1]),
2414
+ .X(_292_)
2415
+ );
2416
+ sky130_fd_sc_hd__o221ai_1 _765_ (
2417
+ .A1(_206_),
2418
+ .A2(_236_),
2419
+ .B1(_292_),
2420
+ .B2(_076_),
2421
+ .C1(_164_),
2422
+ .Y(_293_)
2423
+ );
2424
+ sky130_fd_sc_hd__o21ai_0 _766_ (
2425
+ .A1(_076_),
2426
+ .A2(_155_),
2427
+ .B1(b[3]),
2428
+ .Y(_294_)
2429
+ );
2430
+ sky130_fd_sc_hd__o211ai_1 _767_ (
2431
+ .A1(_265_),
2432
+ .A2(_293_),
2433
+ .B1(_294_),
2434
+ .C1(_369_),
2435
+ .Y(_295_)
2436
+ );
2437
+ sky130_fd_sc_hd__o21ai_0 _768_ (
2438
+ .A1(b[10]),
2439
+ .A2(a[10]),
2440
+ .B1(_090_),
2441
+ .Y(_296_)
2442
+ );
2443
+ sky130_fd_sc_hd__o21ai_0 _769_ (
2444
+ .A1(_394_),
2445
+ .A2(_088_),
2446
+ .B1(_296_),
2447
+ .Y(_297_)
2448
+ );
2449
+ sky130_fd_sc_hd__a21oi_1 _770_ (
2450
+ .A1(_395_),
2451
+ .A2(_084_),
2452
+ .B1(_297_),
2453
+ .Y(_298_)
2454
+ );
2455
+ sky130_fd_sc_hd__nand2_1 _771_ (
2456
+ .A(_295_),
2457
+ .B(_298_),
2458
+ .Y(_299_)
2459
+ );
2460
+ sky130_fd_sc_hd__a31oi_1 _772_ (
2461
+ .A1(_111_),
2462
+ .A2(_285_),
2463
+ .A3(_286_),
2464
+ .B1(_299_),
2465
+ .Y(_300_)
2466
+ );
2467
+ sky130_fd_sc_hd__o21ai_0 _773_ (
2468
+ .A1(_288_),
2469
+ .A2(_290_),
2470
+ .B1(_300_),
2471
+ .Y(result[10])
2472
+ );
2473
+ sky130_fd_sc_hd__nand2_1 _774_ (
2474
+ .A(_398_),
2475
+ .B(_286_),
2476
+ .Y(_301_)
2477
+ );
2478
+ sky130_fd_sc_hd__xnor2_1 _775_ (
2479
+ .A(_393_),
2480
+ .B(_301_),
2481
+ .Y(_302_)
2482
+ );
2483
+ sky130_fd_sc_hd__a21oi_1 _776_ (
2484
+ .A1(_394_),
2485
+ .A2(_289_),
2486
+ .B1(_393_),
2487
+ .Y(_303_)
2488
+ );
2489
+ sky130_fd_sc_hd__nand3_1 _777_ (
2490
+ .A(_393_),
2491
+ .B(_394_),
2492
+ .C(_289_),
2493
+ .Y(_304_)
2494
+ );
2495
+ sky130_fd_sc_hd__nor2_1 _778_ (
2496
+ .A(_115_),
2497
+ .B(_303_),
2498
+ .Y(_305_)
2499
+ );
2500
+ sky130_fd_sc_hd__a21oi_1 _779_ (
2501
+ .A1(b[0]),
2502
+ .A2(a[10]),
2503
+ .B1(_142_),
2504
+ .Y(_306_)
2505
+ );
2506
+ sky130_fd_sc_hd__nand2_1 _780_ (
2507
+ .A(b[1]),
2508
+ .B(_277_),
2509
+ .Y(_307_)
2510
+ );
2511
+ sky130_fd_sc_hd__o21ai_0 _781_ (
2512
+ .A1(b[1]),
2513
+ .A2(_306_),
2514
+ .B1(_307_),
2515
+ .Y(_308_)
2516
+ );
2517
+ sky130_fd_sc_hd__a21oi_1 _782_ (
2518
+ .A1(_075_),
2519
+ .A2(_308_),
2520
+ .B1(_265_),
2521
+ .Y(_309_)
2522
+ );
2523
+ sky130_fd_sc_hd__o211ai_1 _783_ (
2524
+ .A1(_206_),
2525
+ .A2(_248_),
2526
+ .B1(_309_),
2527
+ .C1(_190_),
2528
+ .Y(_310_)
2529
+ );
2530
+ sky130_fd_sc_hd__o21ai_0 _784_ (
2531
+ .A1(_076_),
2532
+ .A2(_185_),
2533
+ .B1(b[3]),
2534
+ .Y(_311_)
2535
+ );
2536
+ sky130_fd_sc_hd__nand2_1 _785_ (
2537
+ .A(_391_),
2538
+ .B(_089_),
2539
+ .Y(_312_)
2540
+ );
2541
+ sky130_fd_sc_hd__o22ai_1 _786_ (
2542
+ .A1(_393_),
2543
+ .A2(_085_),
2544
+ .B1(_091_),
2545
+ .B2(_390_),
2546
+ .Y(_313_)
2547
+ );
2548
+ sky130_fd_sc_hd__a31oi_1 _787_ (
2549
+ .A1(_369_),
2550
+ .A2(_310_),
2551
+ .A3(_311_),
2552
+ .B1(_313_),
2553
+ .Y(_314_)
2554
+ );
2555
+ sky130_fd_sc_hd__nand2_1 _788_ (
2556
+ .A(_312_),
2557
+ .B(_314_),
2558
+ .Y(_315_)
2559
+ );
2560
+ sky130_fd_sc_hd__a21oi_1 _789_ (
2561
+ .A1(_304_),
2562
+ .A2(_305_),
2563
+ .B1(_315_),
2564
+ .Y(_316_)
2565
+ );
2566
+ sky130_fd_sc_hd__o21ai_0 _790_ (
2567
+ .A1(_112_),
2568
+ .A2(_302_),
2569
+ .B1(_316_),
2570
+ .Y(result[11])
2571
+ );
2572
+ sky130_fd_sc_hd__nor3_1 _791_ (
2573
+ .A(_389_),
2574
+ .B(_391_),
2575
+ .C(_303_),
2576
+ .Y(_317_)
2577
+ );
2578
+ sky130_fd_sc_hd__o21ai_0 _792_ (
2579
+ .A1(_391_),
2580
+ .A2(_303_),
2581
+ .B1(_389_),
2582
+ .Y(_318_)
2583
+ );
2584
+ sky130_fd_sc_hd__nor2_1 _793_ (
2585
+ .A(_115_),
2586
+ .B(_317_),
2587
+ .Y(_319_)
2588
+ );
2589
+ sky130_fd_sc_hd__o21ai_0 _794_ (
2590
+ .A1(_389_),
2591
+ .A2(_036_),
2592
+ .B1(_111_),
2593
+ .Y(_320_)
2594
+ );
2595
+ sky130_fd_sc_hd__a21oi_1 _795_ (
2596
+ .A1(_389_),
2597
+ .A2(_036_),
2598
+ .B1(_320_),
2599
+ .Y(_321_)
2600
+ );
2601
+ sky130_fd_sc_hd__nand2_1 _796_ (
2602
+ .A(b[1]),
2603
+ .B(_291_),
2604
+ .Y(_322_)
2605
+ );
2606
+ sky130_fd_sc_hd__nand2_1 _797_ (
2607
+ .A(_050_),
2608
+ .B(_055_),
2609
+ .Y(_323_)
2610
+ );
2611
+ sky130_fd_sc_hd__o211ai_1 _798_ (
2612
+ .A1(b[1]),
2613
+ .A2(_323_),
2614
+ .B1(_322_),
2615
+ .C1(_075_),
2616
+ .Y(_324_)
2617
+ );
2618
+ sky130_fd_sc_hd__o21ai_0 _799_ (
2619
+ .A1(_206_),
2620
+ .A2(_264_),
2621
+ .B1(_324_),
2622
+ .Y(_325_)
2623
+ );
2624
+ sky130_fd_sc_hd__o32ai_1 _800_ (
2625
+ .A1(_210_),
2626
+ .A2(_265_),
2627
+ .A3(_325_),
2628
+ .B1(_207_),
2629
+ .B2(_368_),
2630
+ .Y(_326_)
2631
+ );
2632
+ sky130_fd_sc_hd__o21ai_0 _801_ (
2633
+ .A1(b[12]),
2634
+ .A2(a[12]),
2635
+ .B1(_090_),
2636
+ .Y(_327_)
2637
+ );
2638
+ sky130_fd_sc_hd__nor2_1 _802_ (
2639
+ .A(_388_),
2640
+ .B(_088_),
2641
+ .Y(_328_)
2642
+ );
2643
+ sky130_fd_sc_hd__a21oi_1 _803_ (
2644
+ .A1(_389_),
2645
+ .A2(_084_),
2646
+ .B1(_328_),
2647
+ .Y(_329_)
2648
+ );
2649
+ sky130_fd_sc_hd__o211ai_1 _804_ (
2650
+ .A1(b[4]),
2651
+ .A2(_326_),
2652
+ .B1(_327_),
2653
+ .C1(_329_),
2654
+ .Y(_330_)
2655
+ );
2656
+ sky130_fd_sc_hd__a211o_1 _805_ (
2657
+ .A1(_318_),
2658
+ .A2(_319_),
2659
+ .B1(_321_),
2660
+ .C1(_330_),
2661
+ .X(result[12])
2662
+ );
2663
+ sky130_fd_sc_hd__nand2_1 _806_ (
2664
+ .A(_388_),
2665
+ .B(_318_),
2666
+ .Y(_331_)
2667
+ );
2668
+ sky130_fd_sc_hd__a21boi_0 _807_ (
2669
+ .A1(_388_),
2670
+ .A2(_318_),
2671
+ .B1_N(_098_),
2672
+ .Y(_332_)
2673
+ );
2674
+ sky130_fd_sc_hd__o21ai_0 _808_ (
2675
+ .A1(_098_),
2676
+ .A2(_331_),
2677
+ .B1(_114_),
2678
+ .Y(_333_)
2679
+ );
2680
+ sky130_fd_sc_hd__xnor2_1 _809_ (
2681
+ .A(_037_),
2682
+ .B(_098_),
2683
+ .Y(_334_)
2684
+ );
2685
+ sky130_fd_sc_hd__mux2i_1 _810_ (
2686
+ .A0(a[13]),
2687
+ .A1(a[12]),
2688
+ .S(b[0]),
2689
+ .Y(_335_)
2690
+ );
2691
+ sky130_fd_sc_hd__lpflow_isobufsrc_1 _811_ (
2692
+ .A(_335_),
2693
+ .SLEEP(b[1]),
2694
+ .X(_336_)
2695
+ );
2696
+ sky130_fd_sc_hd__a211oi_1 _812_ (
2697
+ .A1(b[1]),
2698
+ .A2(_306_),
2699
+ .B1(_336_),
2700
+ .C1(_076_),
2701
+ .Y(_337_)
2702
+ );
2703
+ sky130_fd_sc_hd__o22ai_1 _813_ (
2704
+ .A1(_047_),
2705
+ .A2(_149_),
2706
+ .B1(_206_),
2707
+ .B2(_279_),
2708
+ .Y(_338_)
2709
+ );
2710
+ sky130_fd_sc_hd__nor3_1 _814_ (
2711
+ .A(_265_),
2712
+ .B(_337_),
2713
+ .C(_338_),
2714
+ .Y(_339_)
2715
+ );
2716
+ sky130_fd_sc_hd__a211oi_1 _815_ (
2717
+ .A1(b[3]),
2718
+ .A2(_223_),
2719
+ .B1(_339_),
2720
+ .C1(b[4]),
2721
+ .Y(_340_)
2722
+ );
2723
+ sky130_fd_sc_hd__nand2_1 _816_ (
2724
+ .A(_084_),
2725
+ .B(_098_),
2726
+ .Y(_341_)
2727
+ );
2728
+ sky130_fd_sc_hd__o21ai_0 _817_ (
2729
+ .A1(_091_),
2730
+ .A2(_096_),
2731
+ .B1(_341_),
2732
+ .Y(_342_)
2733
+ );
2734
+ sky130_fd_sc_hd__a211oi_1 _818_ (
2735
+ .A1(_089_),
2736
+ .A2(_097_),
2737
+ .B1(_340_),
2738
+ .C1(_342_),
2739
+ .Y(_343_)
2740
+ );
2741
+ sky130_fd_sc_hd__o221ai_1 _819_ (
2742
+ .A1(_332_),
2743
+ .A2(_333_),
2744
+ .B1(_334_),
2745
+ .B2(_112_),
2746
+ .C1(_343_),
2747
+ .Y(result[13])
2748
+ );
2749
+ sky130_fd_sc_hd__o21ai_0 _820_ (
2750
+ .A1(_097_),
2751
+ .A2(_332_),
2752
+ .B1(_385_),
2753
+ .Y(_344_)
2754
+ );
2755
+ sky130_fd_sc_hd__o31a_1 _821_ (
2756
+ .A1(_385_),
2757
+ .A2(_097_),
2758
+ .A3(_332_),
2759
+ .B1(_114_),
2760
+ .X(_345_)
2761
+ );
2762
+ sky130_fd_sc_hd__nand2_1 _822_ (
2763
+ .A(_344_),
2764
+ .B(_345_),
2765
+ .Y(_346_)
2766
+ );
2767
+ sky130_fd_sc_hd__lpflow_isobufsrc_1 _823_ (
2768
+ .A(_385_),
2769
+ .SLEEP(_038_),
2770
+ .X(_347_)
2771
+ );
2772
+ sky130_fd_sc_hd__a21oi_1 _824_ (
2773
+ .A1(_056_),
2774
+ .A2(_058_),
2775
+ .B1(b[1]),
2776
+ .Y(_348_)
2777
+ );
2778
+ sky130_fd_sc_hd__a21o_1 _825_ (
2779
+ .A1(b[1]),
2780
+ .A2(_323_),
2781
+ .B1(_348_),
2782
+ .X(_349_)
2783
+ );
2784
+ sky130_fd_sc_hd__o211ai_1 _826_ (
2785
+ .A1(_206_),
2786
+ .A2(_292_),
2787
+ .B1(_266_),
2788
+ .C1(_239_),
2789
+ .Y(_350_)
2790
+ );
2791
+ sky130_fd_sc_hd__a21oi_1 _827_ (
2792
+ .A1(_075_),
2793
+ .A2(_349_),
2794
+ .B1(_350_),
2795
+ .Y(_351_)
2796
+ );
2797
+ sky130_fd_sc_hd__a21oi_1 _828_ (
2798
+ .A1(b[3]),
2799
+ .A2(_237_),
2800
+ .B1(_351_),
2801
+ .Y(_352_)
2802
+ );
2803
+ sky130_fd_sc_hd__nand2_1 _829_ (
2804
+ .A(_385_),
2805
+ .B(_084_),
2806
+ .Y(_353_)
2807
+ );
2808
+ sky130_fd_sc_hd__o221ai_1 _830_ (
2809
+ .A1(_384_),
2810
+ .A2(_088_),
2811
+ .B1(_091_),
2812
+ .B2(_383_),
2813
+ .C1(_353_),
2814
+ .Y(_354_)
2815
+ );
2816
+ sky130_fd_sc_hd__a21oi_1 _831_ (
2817
+ .A1(_369_),
2818
+ .A2(_352_),
2819
+ .B1(_354_),
2820
+ .Y(_355_)
2821
+ );
2822
+ sky130_fd_sc_hd__o311ai_0 _832_ (
2823
+ .A1(_039_),
2824
+ .A2(_112_),
2825
+ .A3(_347_),
2826
+ .B1(_355_),
2827
+ .C1(_346_),
2828
+ .Y(result[14])
2829
+ );
2830
+ sky130_fd_sc_hd__a21oi_1 _833_ (
2831
+ .A1(_384_),
2832
+ .A2(_344_),
2833
+ .B1(_381_),
2834
+ .Y(_356_)
2835
+ );
2836
+ sky130_fd_sc_hd__and3_1 _834_ (
2837
+ .A(_381_),
2838
+ .B(_384_),
2839
+ .C(_344_),
2840
+ .X(_357_)
2841
+ );
2842
+ sky130_fd_sc_hd__o21a_1 _835_ (
2843
+ .A1(_382_),
2844
+ .A2(_039_),
2845
+ .B1(_380_),
2846
+ .X(_358_)
2847
+ );
2848
+ sky130_fd_sc_hd__o21a_1 _836_ (
2849
+ .A1(_040_),
2850
+ .A2(_358_),
2851
+ .B1(_111_),
2852
+ .X(_359_)
2853
+ );
2854
+ sky130_fd_sc_hd__nand2_1 _837_ (
2855
+ .A(b[3]),
2856
+ .B(_249_),
2857
+ .Y(_360_)
2858
+ );
2859
+ sky130_fd_sc_hd__a21oi_1 _838_ (
2860
+ .A1(b[0]),
2861
+ .A2(a[14]),
2862
+ .B1(b[1]),
2863
+ .Y(_361_)
2864
+ );
2865
+ sky130_fd_sc_hd__a22oi_1 _839_ (
2866
+ .A1(b[1]),
2867
+ .A2(_335_),
2868
+ .B1(_361_),
2869
+ .B2(_147_),
2870
+ .Y(_362_)
2871
+ );
2872
+ sky130_fd_sc_hd__a22oi_1 _840_ (
2873
+ .A1(_205_),
2874
+ .A2(_308_),
2875
+ .B1(_362_),
2876
+ .B2(_075_),
2877
+ .Y(_363_)
2878
+ );
2879
+ sky130_fd_sc_hd__a31oi_1 _841_ (
2880
+ .A1(_251_),
2881
+ .A2(_266_),
2882
+ .A3(_363_),
2883
+ .B1(b[4]),
2884
+ .Y(_364_)
2885
+ );
2886
+ sky130_fd_sc_hd__o21ai_0 _842_ (
2887
+ .A1(b[15]),
2888
+ .A2(a[15]),
2889
+ .B1(_090_),
2890
+ .Y(_365_)
2891
+ );
2892
+ sky130_fd_sc_hd__o221ai_1 _843_ (
2893
+ .A1(_381_),
2894
+ .A2(_085_),
2895
+ .B1(_088_),
2896
+ .B2(_379_),
2897
+ .C1(_365_),
2898
+ .Y(_366_)
2899
+ );
2900
+ sky130_fd_sc_hd__a211oi_1 _844_ (
2901
+ .A1(_360_),
2902
+ .A2(_364_),
2903
+ .B1(_366_),
2904
+ .C1(_359_),
2905
+ .Y(_367_)
2906
+ );
2907
+ sky130_fd_sc_hd__o31ai_1 _845_ (
2908
+ .A1(_115_),
2909
+ .A2(_356_),
2910
+ .A3(_357_),
2911
+ .B1(_367_),
2912
+ .Y(result[15])
2913
+ );
2914
+ endmodule