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1 ;; Itanium2 DFA descriptions for insn scheduling and bundling.
2 ;; Copyright (C) 2002, 2004, 2005, 2007, 2008, 2011
3 ;; Free Software Foundation, Inc.
4 ;; Contributed by Vladimir Makarov <vmakarov@redhat.com>.
5 ;;
6 ;; This file is part of GCC.
7 ;;
8 ;; GCC is free software; you can redistribute it and/or modify
9 ;; it under the terms of the GNU General Public License as published by
10 ;; the Free Software Foundation; either version 3, or (at your option)
11 ;; any later version.
12 ;;
13 ;; GCC is distributed in the hope that it will be useful,
14 ;; but WITHOUT ANY WARRANTY; without even the implied warranty of
15 ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 ;; GNU General Public License for more details.
17 ;;
18 ;; You should have received a copy of the GNU General Public License
19 ;; along with GCC; see the file COPYING3. If not see
20 ;; <http://www.gnu.org/licenses/>. */
21 ;;
22
23 /* This is description of pipeline hazards based on DFA. The
24 following constructions can be used for this:
25
26 o define_cpu_unit string [string]) describes a cpu functional unit
27 (separated by comma).
28
29 1st operand: Names of cpu function units.
30 2nd operand: Name of automaton (see comments for
31 DEFINE_AUTOMATON).
32
33 All define_reservations and define_cpu_units should have unique
34 names which cannot be "nothing".
35
36 o (exclusion_set string string) means that each CPU function unit
37 in the first string cannot be reserved simultaneously with each
38 unit whose name is in the second string and vise versa. CPU
39 units in the string are separated by commas. For example, it is
40 useful for description CPU with fully pipelined floating point
41 functional unit which can execute simultaneously only single
42 floating point insns or only double floating point insns.
43
44 o (presence_set string string) means that each CPU function unit in
45 the first string cannot be reserved unless at least one of
46 pattern of units whose names are in the second string is
47 reserved. This is an asymmetric relation. CPU units or unit
48 patterns in the strings are separated by commas. Pattern is one
49 unit name or unit names separated by white-spaces.
50
51 For example, it is useful for description that slot1 is reserved
52 after slot0 reservation for a VLIW processor. We could describe
53 it by the following construction
54
55 (presence_set "slot1" "slot0")
56
57 Or slot1 is reserved only after slot0 and unit b0 reservation.
58 In this case we could write
59
60 (presence_set "slot1" "slot0 b0")
61
62 All CPU functional units in a set should belong to the same
63 automaton.
64
65 o (final_presence_set string string) is analogous to
66 `presence_set'. The difference between them is when checking is
67 done. When an instruction is issued in given automaton state
68 reflecting all current and planned unit reservations, the
69 automaton state is changed. The first state is a source state,
70 the second one is a result state. Checking for `presence_set' is
71 done on the source state reservation, checking for
72 `final_presence_set' is done on the result reservation. This
73 construction is useful to describe a reservation which is
74 actually two subsequent reservations. For example, if we use
75
76 (presence_set "slot1" "slot0")
77
78 the following insn will be never issued (because slot1 requires
79 slot0 which is absent in the source state).
80
81 (define_reservation "insn_and_nop" "slot0 + slot1")
82
83 but it can be issued if we use analogous `final_presence_set'.
84
85 o (absence_set string string) means that each CPU function unit in
86 the first string can be reserved only if each pattern of units
87 whose names are in the second string is not reserved. This is an
88 asymmetric relation (actually exclusion set is analogous to this
89 one but it is symmetric). CPU units or unit patterns in the
90 string are separated by commas. Pattern is one unit name or unit
91 names separated by white-spaces.
92
93 For example, it is useful for description that slot0 cannot be
94 reserved after slot1 or slot2 reservation for a VLIW processor.
95 We could describe it by the following construction
96
97 (absence_set "slot2" "slot0, slot1")
98
99 Or slot2 cannot be reserved if slot0 and unit b0 are reserved or
100 slot1 and unit b1 are reserved . In this case we could write
101
102 (absence_set "slot2" "slot0 b0, slot1 b1")
103
104 All CPU functional units in a set should to belong the same
105 automaton.
106
107 o (final_absence_set string string) is analogous to `absence_set' but
108 checking is done on the result (state) reservation. See comments
109 for final_presence_set.
110
111 o (define_bypass number out_insn_names in_insn_names) names bypass with
112 given latency (the first number) from insns given by the first
113 string (see define_insn_reservation) into insns given by the
114 second string. Insn names in the strings are separated by
115 commas.
116
117 o (define_automaton string) describes names of an automaton
118 generated and used for pipeline hazards recognition. The names
119 are separated by comma. Actually it is possibly to generate the
120 single automaton but unfortunately it can be very large. If we
121 use more one automata, the summary size of the automata usually
122 is less than the single one. The automaton name is used in
123 define_cpu_unit. All automata should have unique names.
124
125 o (automata_option string) describes option for generation of
126 automata. Currently there are the following options:
127
128 o "no-minimization" which makes no minimization of automata.
129 This is only worth to do when we are debugging the description
130 and need to look more accurately at reservations of states.
131
132 o "ndfa" which makes automata with nondeterministic reservation
133 by insns.
134
135 o (define_reservation string string) names reservation (the first
136 string) of cpu functional units (the 2nd string). Sometimes unit
137 reservations for different insns contain common parts. In such
138 case, you describe common part and use one its name (the 1st
139 parameter) in regular expression in define_insn_reservation. All
140 define_reservations, define results and define_cpu_units should
141 have unique names which cannot be "nothing".
142
143 o (define_insn_reservation name default_latency condition regexpr)
144 describes reservation of cpu functional units (the 3nd operand)
145 for instruction which is selected by the condition (the 2nd
146 parameter). The first parameter is used for output of debugging
147 information. The reservations are described by a regular
148 expression according the following syntax:
149
150 regexp = regexp "," oneof
151 | oneof
152
153 oneof = oneof "|" allof
154 | allof
155
156 allof = allof "+" repeat
157 | repeat
158
159 repeat = element "*" number
160 | element
161
162 element = cpu_function_name
163 | reservation_name
164 | result_name
165 | "nothing"
166 | "(" regexp ")"
167
168 1. "," is used for describing start of the next cycle in
169 reservation.
170
171 2. "|" is used for describing the reservation described by the
172 first regular expression *or* the reservation described by
173 the second regular expression *or* etc.
174
175 3. "+" is used for describing the reservation described by the
176 first regular expression *and* the reservation described by
177 the second regular expression *and* etc.
178
179 4. "*" is used for convenience and simply means sequence in
180 which the regular expression are repeated NUMBER times with
181 cycle advancing (see ",").
182
183 5. cpu function unit name which means reservation.
184
185 6. reservation name -- see define_reservation.
186
187 7. string "nothing" means no units reservation.
188
189 */
190
191 (define_automaton "two")
192
193 ;; All possible combinations of bundles/syllables
194 (define_cpu_unit "2_0m.ii, 2_0m.mi, 2_0m.fi, 2_0m.mf, 2_0b.bb, 2_0m.bb,\
195 2_0m.ib, 2_0m.mb, 2_0m.fb, 2_0m.lx" "two")
196 (define_cpu_unit "2_0mi.i, 2_0mm.i, 2_0mf.i, 2_0mm.f, 2_0bb.b, 2_0mb.b,\
197 2_0mi.b, 2_0mm.b, 2_0mf.b, 2_0mlx." "two")
198 (define_cpu_unit "2_0mii., 2_0mmi., 2_0mfi., 2_0mmf., 2_0bbb., 2_0mbb.,\
199 2_0mib., 2_0mmb., 2_0mfb." "two")
200
201 (define_cpu_unit "2_1m.ii, 2_1m.mi, 2_1m.fi, 2_1m.mf, 2_1b.bb, 2_1m.bb,\
202 2_1m.ib, 2_1m.mb, 2_1m.fb, 2_1m.lx" "two")
203 (define_cpu_unit "2_1mi.i, 2_1mm.i, 2_1mf.i, 2_1mm.f, 2_1bb.b, 2_1mb.b,\
204 2_1mi.b, 2_1mm.b, 2_1mf.b, 2_1mlx." "two")
205 (define_cpu_unit "2_1mii., 2_1mmi., 2_1mfi., 2_1mmf., 2_1bbb., 2_1mbb.,\
206 2_1mib., 2_1mmb., 2_1mfb." "two")
207
208 ;; Slot 1
209 (exclusion_set "2_0m.ii" "2_0m.mi, 2_0m.fi, 2_0m.mf, 2_0b.bb, 2_0m.bb,\
210 2_0m.ib, 2_0m.mb, 2_0m.fb, 2_0m.lx")
211 (exclusion_set "2_0m.mi" "2_0m.fi, 2_0m.mf, 2_0b.bb, 2_0m.bb, 2_0m.ib,\
212 2_0m.mb, 2_0m.fb, 2_0m.lx")
213 (exclusion_set "2_0m.fi" "2_0m.mf, 2_0b.bb, 2_0m.bb, 2_0m.ib, 2_0m.mb,\
214 2_0m.fb, 2_0m.lx")
215 (exclusion_set "2_0m.mf" "2_0b.bb, 2_0m.bb, 2_0m.ib, 2_0m.mb, 2_0m.fb,\
216 2_0m.lx")
217 (exclusion_set "2_0b.bb" "2_0m.bb, 2_0m.ib, 2_0m.mb, 2_0m.fb, 2_0m.lx")
218 (exclusion_set "2_0m.bb" "2_0m.ib, 2_0m.mb, 2_0m.fb, 2_0m.lx")
219 (exclusion_set "2_0m.ib" "2_0m.mb, 2_0m.fb, 2_0m.lx")
220 (exclusion_set "2_0m.mb" "2_0m.fb, 2_0m.lx")
221 (exclusion_set "2_0m.fb" "2_0m.lx")
222
223 ;; Slot 2
224 (exclusion_set "2_0mi.i" "2_0mm.i, 2_0mf.i, 2_0mm.f, 2_0bb.b, 2_0mb.b,\
225 2_0mi.b, 2_0mm.b, 2_0mf.b, 2_0mlx.")
226 (exclusion_set "2_0mm.i" "2_0mf.i, 2_0mm.f, 2_0bb.b, 2_0mb.b,\
227 2_0mi.b, 2_0mm.b, 2_0mf.b, 2_0mlx.")
228 (exclusion_set "2_0mf.i" "2_0mm.f, 2_0bb.b, 2_0mb.b, 2_0mi.b, 2_0mm.b,\
229 2_0mf.b, 2_0mlx.")
230 (exclusion_set "2_0mm.f" "2_0bb.b, 2_0mb.b, 2_0mi.b, 2_0mm.b, 2_0mf.b,\
231 2_0mlx.")
232 (exclusion_set "2_0bb.b" "2_0mb.b, 2_0mi.b, 2_0mm.b, 2_0mf.b, 2_0mlx.")
233 (exclusion_set "2_0mb.b" "2_0mi.b, 2_0mm.b, 2_0mf.b, 2_0mlx.")
234 (exclusion_set "2_0mi.b" "2_0mm.b, 2_0mf.b, 2_0mlx.")
235 (exclusion_set "2_0mm.b" "2_0mf.b, 2_0mlx.")
236 (exclusion_set "2_0mf.b" "2_0mlx.")
237
238 ;; Slot 3
239 (exclusion_set "2_0mii." "2_0mmi., 2_0mfi., 2_0mmf., 2_0bbb., 2_0mbb.,\
240 2_0mib., 2_0mmb., 2_0mfb., 2_0mlx.")
241 (exclusion_set "2_0mmi." "2_0mfi., 2_0mmf., 2_0bbb., 2_0mbb.,\
242 2_0mib., 2_0mmb., 2_0mfb., 2_0mlx.")
243 (exclusion_set "2_0mfi." "2_0mmf., 2_0bbb., 2_0mbb., 2_0mib., 2_0mmb.,\
244 2_0mfb., 2_0mlx.")
245 (exclusion_set "2_0mmf." "2_0bbb., 2_0mbb., 2_0mib., 2_0mmb., 2_0mfb.,\
246 2_0mlx.")
247 (exclusion_set "2_0bbb." "2_0mbb., 2_0mib., 2_0mmb., 2_0mfb., 2_0mlx.")
248 (exclusion_set "2_0mbb." "2_0mib., 2_0mmb., 2_0mfb., 2_0mlx.")
249 (exclusion_set "2_0mib." "2_0mmb., 2_0mfb., 2_0mlx.")
250 (exclusion_set "2_0mmb." "2_0mfb., 2_0mlx.")
251 (exclusion_set "2_0mfb." "2_0mlx.")
252
253 ;; Slot 4
254 (exclusion_set "2_1m.ii" "2_1m.mi, 2_1m.fi, 2_1m.mf, 2_1b.bb, 2_1m.bb,\
255 2_1m.ib, 2_1m.mb, 2_1m.fb, 2_1m.lx")
256 (exclusion_set "2_1m.mi" "2_1m.fi, 2_1m.mf, 2_1b.bb, 2_1m.bb, 2_1m.ib,\
257 2_1m.mb, 2_1m.fb, 2_1m.lx")
258 (exclusion_set "2_1m.fi" "2_1m.mf, 2_1b.bb, 2_1m.bb, 2_1m.ib, 2_1m.mb,\
259 2_1m.fb, 2_1m.lx")
260 (exclusion_set "2_1m.mf" "2_1b.bb, 2_1m.bb, 2_1m.ib, 2_1m.mb, 2_1m.fb,\
261 2_1m.lx")
262 (exclusion_set "2_1b.bb" "2_1m.bb, 2_1m.ib, 2_1m.mb, 2_1m.fb, 2_1m.lx")
263 (exclusion_set "2_1m.bb" "2_1m.ib, 2_1m.mb, 2_1m.fb, 2_1m.lx")
264 (exclusion_set "2_1m.ib" "2_1m.mb, 2_1m.fb, 2_1m.lx")
265 (exclusion_set "2_1m.mb" "2_1m.fb, 2_1m.lx")
266 (exclusion_set "2_1m.fb" "2_1m.lx")
267
268 ;; Slot 5
269 (exclusion_set "2_1mi.i" "2_1mm.i, 2_1mf.i, 2_1mm.f, 2_1bb.b, 2_1mb.b,\
270 2_1mi.b, 2_1mm.b, 2_1mf.b, 2_1mlx.")
271 (exclusion_set "2_1mm.i" "2_1mf.i, 2_1mm.f, 2_1bb.b, 2_1mb.b,\
272 2_1mi.b, 2_1mm.b, 2_1mf.b, 2_1mlx.")
273 (exclusion_set "2_1mf.i" "2_1mm.f, 2_1bb.b, 2_1mb.b, 2_1mi.b, 2_1mm.b,\
274 2_1mf.b, 2_1mlx.")
275 (exclusion_set "2_1mm.f" "2_1bb.b, 2_1mb.b, 2_1mi.b, 2_1mm.b, 2_1mf.b,\
276 2_1mlx.")
277 (exclusion_set "2_1bb.b" "2_1mb.b, 2_1mi.b, 2_1mm.b, 2_1mf.b, 2_1mlx.")
278 (exclusion_set "2_1mb.b" "2_1mi.b, 2_1mm.b, 2_1mf.b, 2_1mlx.")
279 (exclusion_set "2_1mi.b" "2_1mm.b, 2_1mf.b, 2_1mlx.")
280 (exclusion_set "2_1mm.b" "2_1mf.b, 2_1mlx.")
281 (exclusion_set "2_1mf.b" "2_1mlx.")
282
283 ;; Slot 6
284 (exclusion_set "2_1mii." "2_1mmi., 2_1mfi., 2_1mmf., 2_1bbb., 2_1mbb.,\
285 2_1mib., 2_1mmb., 2_1mfb., 2_1mlx.")
286 (exclusion_set "2_1mmi." "2_1mfi., 2_1mmf., 2_1bbb., 2_1mbb.,\
287 2_1mib., 2_1mmb., 2_1mfb., 2_1mlx.")
288 (exclusion_set "2_1mfi." "2_1mmf., 2_1bbb., 2_1mbb., 2_1mib., 2_1mmb.,\
289 2_1mfb., 2_1mlx.")
290 (exclusion_set "2_1mmf." "2_1bbb., 2_1mbb., 2_1mib., 2_1mmb., 2_1mfb.,\
291 2_1mlx.")
292 (exclusion_set "2_1bbb." "2_1mbb., 2_1mib., 2_1mmb., 2_1mfb., 2_1mlx.")
293 (exclusion_set "2_1mbb." "2_1mib., 2_1mmb., 2_1mfb., 2_1mlx.")
294 (exclusion_set "2_1mib." "2_1mmb., 2_1mfb., 2_1mlx.")
295 (exclusion_set "2_1mmb." "2_1mfb., 2_1mlx.")
296 (exclusion_set "2_1mfb." "2_1mlx.")
297
298 (final_presence_set "2_0mi.i" "2_0m.ii")
299 (final_presence_set "2_0mii." "2_0mi.i")
300 (final_presence_set "2_1mi.i" "2_1m.ii")
301 (final_presence_set "2_1mii." "2_1mi.i")
302
303 (final_presence_set "2_0mm.i" "2_0m.mi")
304 (final_presence_set "2_0mmi." "2_0mm.i")
305 (final_presence_set "2_1mm.i" "2_1m.mi")
306 (final_presence_set "2_1mmi." "2_1mm.i")
307
308 (final_presence_set "2_0mf.i" "2_0m.fi")
309 (final_presence_set "2_0mfi." "2_0mf.i")
310 (final_presence_set "2_1mf.i" "2_1m.fi")
311 (final_presence_set "2_1mfi." "2_1mf.i")
312
313 (final_presence_set "2_0mm.f" "2_0m.mf")
314 (final_presence_set "2_0mmf." "2_0mm.f")
315 (final_presence_set "2_1mm.f" "2_1m.mf")
316 (final_presence_set "2_1mmf." "2_1mm.f")
317
318 (final_presence_set "2_0bb.b" "2_0b.bb")
319 (final_presence_set "2_0bbb." "2_0bb.b")
320 (final_presence_set "2_1bb.b" "2_1b.bb")
321 (final_presence_set "2_1bbb." "2_1bb.b")
322
323 (final_presence_set "2_0mb.b" "2_0m.bb")
324 (final_presence_set "2_0mbb." "2_0mb.b")
325 (final_presence_set "2_1mb.b" "2_1m.bb")
326 (final_presence_set "2_1mbb." "2_1mb.b")
327
328 (final_presence_set "2_0mi.b" "2_0m.ib")
329 (final_presence_set "2_0mib." "2_0mi.b")
330 (final_presence_set "2_1mi.b" "2_1m.ib")
331 (final_presence_set "2_1mib." "2_1mi.b")
332
333 (final_presence_set "2_0mm.b" "2_0m.mb")
334 (final_presence_set "2_0mmb." "2_0mm.b")
335 (final_presence_set "2_1mm.b" "2_1m.mb")
336 (final_presence_set "2_1mmb." "2_1mm.b")
337
338 (final_presence_set "2_0mf.b" "2_0m.fb")
339 (final_presence_set "2_0mfb." "2_0mf.b")
340 (final_presence_set "2_1mf.b" "2_1m.fb")
341 (final_presence_set "2_1mfb." "2_1mf.b")
342
343 (final_presence_set "2_0mlx." "2_0m.lx")
344 (final_presence_set "2_1mlx." "2_1m.lx")
345
346 ;; The following reflects the dual issue bundle types table.
347 ;; We could place all possible combinations here because impossible
348 ;; combinations would go away by the subsequent constrains.
349 (final_presence_set
350 "2_1m.lx"
351 "2_0mmi.,2_0mfi.,2_0mmf.,2_0mib.,2_0mmb.,2_0mfb.,2_0mlx.")
352 (final_presence_set "2_1b.bb" "2_0mii.,2_0mmi.,2_0mfi.,2_0mmf.,2_0mlx.")
353 (final_presence_set
354 "2_1m.ii,2_1m.mi,2_1m.fi,2_1m.mf,2_1m.bb,2_1m.ib,2_1m.mb,2_1m.fb"
355 "2_0mii.,2_0mmi.,2_0mfi.,2_0mmf.,2_0mib.,2_0mmb.,2_0mfb.,2_0mlx.")
356
357 ;; Ports/units (nb means nop.b insn issued into given port):
358 (define_cpu_unit
359 "2_um0, 2_um1, 2_um2, 2_um3, 2_ui0, 2_ui1, 2_uf0, 2_uf1,\
360 2_ub0, 2_ub1, 2_ub2, 2_unb0, 2_unb1, 2_unb2" "two")
361
362 (exclusion_set "2_ub0" "2_unb0")
363 (exclusion_set "2_ub1" "2_unb1")
364 (exclusion_set "2_ub2" "2_unb2")
365
366 ;; The following rules are used to decrease number of alternatives.
367 ;; They are consequences of Itanium2 microarchitecture. They also
368 ;; describe the following rules mentioned in Itanium2
369 ;; microarchitecture: rules mentioned in Itanium2 microarchitecture:
370 ;; o "BBB/MBB: Always splits issue after either of these bundles".
371 ;; o "MIB BBB: Split issue after the first bundle in this pair".
372 (exclusion_set
373 "2_0b.bb,2_0bb.b,2_0bbb.,2_0m.bb,2_0mb.b,2_0mbb."
374 "2_1m.ii,2_1m.mi,2_1m.fi,2_1m.mf,2_1b.bb,2_1m.bb,\
375 2_1m.ib,2_1m.mb,2_1m.fb,2_1m.lx")
376 (exclusion_set "2_0m.ib,2_0mi.b,2_0mib." "2_1b.bb")
377
378 ;;; "MIB/MFB/MMB: Splits issue after any of these bundles unless the
379 ;;; B-slot contains a nop.b or a brp instruction".
380 ;;; "The B in an MIB/MFB/MMB bundle disperses to B0 if it is a brp or
381 ;;; nop.b, otherwise it disperses to B2".
382 (final_absence_set
383 "2_1m.ii, 2_1m.mi, 2_1m.fi, 2_1m.mf, 2_1b.bb, 2_1m.bb,\
384 2_1m.ib, 2_1m.mb, 2_1m.fb, 2_1m.lx"
385 "2_0mib. 2_ub2, 2_0mfb. 2_ub2, 2_0mmb. 2_ub2")
386
387 ;; This is necessary to start new processor cycle when we meet stop bit.
388 (define_cpu_unit "2_stop" "two")
389 (final_absence_set
390 "2_0m.ii,2_0mi.i,2_0mii.,2_0m.mi,2_0mm.i,2_0mmi.,2_0m.fi,2_0mf.i,2_0mfi.,\
391 2_0m.mf,2_0mm.f,2_0mmf.,2_0b.bb,2_0bb.b,2_0bbb.,2_0m.bb,2_0mb.b,2_0mbb.,\
392 2_0m.ib,2_0mi.b,2_0mib.,2_0m.mb,2_0mm.b,2_0mmb.,2_0m.fb,2_0mf.b,2_0mfb.,\
393 2_0m.lx,2_0mlx., \
394 2_1m.ii,2_1mi.i,2_1mii.,2_1m.mi,2_1mm.i,2_1mmi.,2_1m.fi,2_1mf.i,2_1mfi.,\
395 2_1m.mf,2_1mm.f,2_1mmf.,2_1b.bb,2_1bb.b,2_1bbb.,2_1m.bb,2_1mb.b,2_1mbb.,\
396 2_1m.ib,2_1mi.b,2_1mib.,2_1m.mb,2_1mm.b,2_1mmb.,2_1m.fb,2_1mf.b,2_1mfb.,\
397 2_1m.lx,2_1mlx."
398 "2_stop")
399
400 ;; The issue logic can reorder M slot insns between different subtypes
401 ;; but cannot reorder insn within the same subtypes. The following
402 ;; constraint is enough to describe this.
403 (final_presence_set "2_um1" "2_um0")
404 (final_presence_set "2_um3" "2_um2")
405
406 ;; The insn in the 1st I slot of the two bundle issue group will issue
407 ;; to I0. The second I slot insn will issue to I1.
408 (final_presence_set "2_ui1" "2_ui0")
409
410 ;; For exceptions of I insns:
411 (define_cpu_unit "2_only_ui0" "two")
412 (final_absence_set "2_only_ui0" "2_ui1")
413
414 ;; Insns
415
416 (define_reservation "2_M0"
417 "(2_0m.ii|2_0m.mi|2_0m.fi|2_0m.mf|2_0m.bb|2_0m.ib|2_0m.mb|2_0m.fb|2_0m.lx\
418 |2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx\
419 |2_0mm.i|2_0mm.f|2_0mm.b|2_1mm.i|2_1mm.f|2_1mm.b)\
420 +(2_um0|2_um1|2_um2|2_um3)")
421
422 (define_reservation "2_M1"
423 "(2_0mii.+(2_ui0|2_ui1)|2_0mmi.+2_ui0|2_0mfi.+2_ui0|2_0mmf.+2_uf0\
424 |2_0mib.+2_unb0|2_0mfb.+2_unb0|2_0mmb.+2_unb0)\
425 +(2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx)\
426 +(2_um0|2_um1|2_um2|2_um3)")
427
428 (define_reservation "2_M" "2_M0|2_M1")
429
430 (define_reservation "2_M0_only_um0"
431 "(2_0m.ii|2_0m.mi|2_0m.fi|2_0m.mf|2_0m.bb|2_0m.ib|2_0m.mb|2_0m.fb|2_0m.lx\
432 |2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx\
433 |2_0mm.i|2_0mm.f|2_0mm.b|2_1mm.i|2_1mm.f|2_1mm.b)\
434 +2_um0")
435
436 (define_reservation "2_M1_only_um0"
437 "(2_0mii.+(2_ui0|2_ui1)|2_0mmi.+2_ui0|2_0mfi.+2_ui0|2_0mmf.+2_uf0\
438 |2_0mib.+2_unb0|2_0mfb.+2_unb0|2_0mmb.+2_unb0)\
439 +(2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx)\
440 +2_um0")
441
442 (define_reservation "2_M_only_um0" "2_M0_only_um0|2_M1_only_um0")
443
444 (define_reservation "2_M0_only_um2"
445 "(2_0m.ii|2_0m.mi|2_0m.fi|2_0m.mf|2_0m.bb|2_0m.ib|2_0m.mb|2_0m.fb|2_0m.lx\
446 |2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx\
447 |2_0mm.i|2_0mm.f|2_0mm.b|2_1mm.i|2_1mm.f|2_1mm.b)\
448 +2_um2")
449
450 (define_reservation "2_M1_only_um2"
451 "(2_0mii.+(2_ui0|2_ui1)|2_0mmi.+2_ui0|2_0mfi.+2_ui0|2_0mmf.+2_uf0\
452 |2_0mib.+2_unb0|2_0mfb.+2_unb0|2_0mmb.+2_unb0)\
453 +(2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx)\
454 +2_um2")
455
456 (define_reservation "2_M_only_um2" "2_M0_only_um2|2_M1_only_um2")
457
458 (define_reservation "2_M0_only_um23"
459 "(2_0m.ii|2_0m.mi|2_0m.fi|2_0m.mf|2_0m.bb|2_0m.ib|2_0m.mb|2_0m.fb|2_0m.lx\
460 |2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx\
461 |2_0mm.i|2_0mm.f|2_0mm.b|2_1mm.i|2_1mm.f|2_1mm.b)\
462 +(2_um2|2_um3)")
463
464 (define_reservation "2_M1_only_um23"
465 "(2_0mii.+(2_ui0|2_ui1)|2_0mmi.+2_ui0|2_0mfi.+2_ui0|2_0mmf.+2_uf0\
466 |2_0mib.+2_unb0|2_0mfb.+2_unb0|2_0mmb.+2_unb0)\
467 +(2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx)\
468 +(2_um2|2_um3)")
469
470 (define_reservation "2_M_only_um23" "2_M0_only_um23|2_M1_only_um23")
471
472 (define_reservation "2_M0_only_um01"
473 "(2_0m.ii|2_0m.mi|2_0m.fi|2_0m.mf|2_0m.bb|2_0m.ib|2_0m.mb|2_0m.fb|2_0m.lx\
474 |2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx\
475 |2_0mm.i|2_0mm.f|2_0mm.b|2_1mm.i|2_1mm.f|2_1mm.b)\
476 +(2_um0|2_um1)")
477
478 (define_reservation "2_M1_only_um01"
479 "(2_0mii.+(2_ui0|2_ui1)|2_0mmi.+2_ui0|2_0mfi.+2_ui0|2_0mmf.+2_uf0\
480 |2_0mib.+2_unb0|2_0mfb.+2_unb0|2_0mmb.+2_unb0)\
481 +(2_1m.ii|2_1m.mi|2_1m.fi|2_1m.mf|2_1m.bb|2_1m.ib|2_1m.mb|2_1m.fb|2_1m.lx)\
482 +(2_um0|2_um1)")
483
484 (define_reservation "2_M_only_um01" "2_M0_only_um01|2_M1_only_um01")
485
486 ;; I instruction is dispersed to the lowest numbered I unit
487 ;; not already in use. Remember about possible splitting.
488 (define_reservation "2_I0"
489 "2_0mi.i+2_ui0|2_0mii.+(2_ui0|2_ui1)|2_0mmi.+2_ui0\
490 |2_0mfi.+2_ui0|2_0mi.b+2_ui0|(2_1mi.i|2_1mi.b)+(2_ui0|2_ui1)\
491 |(2_1mii.|2_1mmi.|2_1mfi.)+(2_ui0|2_ui1)")
492
493 (define_reservation "2_I1"
494 "2_0m.ii+(2_um0|2_um1|2_um2|2_um3)+2_0mi.i+2_ui0\
495 |2_0mm.i+(2_um0|2_um1|2_um2|2_um3)+2_0mmi.+2_ui0\
496 |2_0mf.i+2_uf0+2_0mfi.+2_ui0\
497 |2_0m.ib+(2_um0|2_um1|2_um2|2_um3)+2_0mi.b+2_ui0\
498 |(2_1m.ii+2_1mi.i|2_1m.ib+2_1mi.b)+(2_um0|2_um1|2_um2|2_um3)+(2_ui0|2_ui1)\
499 |2_1mm.i+(2_um0|2_um1|2_um2|2_um3)+2_1mmi.+(2_ui0|2_ui1)\
500 |2_1mf.i+2_uf1+2_1mfi.+(2_ui0|2_ui1)")
501
502 (define_reservation "2_I" "2_I0|2_I1")
503
504 ;; "An F slot in the 1st bundle disperses to F0".
505 ;; "An F slot in the 2st bundle disperses to F1".
506 (define_reservation "2_F0"
507 "2_0mf.i+2_uf0|2_0mmf.+2_uf0|2_0mf.b+2_uf0\
508 |2_1mf.i+2_uf1|2_1mmf.+2_uf1|2_1mf.b+2_uf1")
509
510 (define_reservation "2_F1"
511 "(2_0m.fi+2_0mf.i|2_0mm.f+2_0mmf.|2_0m.fb+2_0mf.b)\
512 +(2_um0|2_um1|2_um2|2_um3)+2_uf0\
513 |(2_1m.fi+2_1mf.i|2_1mm.f+2_1mmf.|2_1m.fb+2_1mf.b)\
514 +(2_um0|2_um1|2_um2|2_um3)+2_uf1")
515
516 (define_reservation "2_F2"
517 "(2_0m.mf+2_0mm.f+2_0mmf.+2_uf0|2_1m.mf+2_1mm.f+2_1mmf.+2_uf1)\
518 +(2_um0|2_um1|2_um2|2_um3)+(2_um0|2_um1|2_um2|2_um3)\
519 |(2_0mii.+(2_ui0|2_ui1)|2_0mmi.+2_ui0|2_0mfi.+2_ui0\
520 |2_0mmf.+(2_um0|2_um1|2_um2|2_um3)\
521 |2_0mib.+2_unb0|2_0mmb.+2_unb0|2_0mfb.+2_unb0)\
522 +(2_1m.fi+2_1mf.i|2_1m.fb+2_1mf.b)+(2_um0|2_um1|2_um2|2_um3)+2_uf1")
523
524 (define_reservation "2_F" "2_F0|2_F1|2_F2")
525
526 ;;; "Each B slot in MBB or BBB bundle disperses to the corresponding B
527 ;;; unit. That is, a B slot in 1st position is dispersed to B0. In the
528 ;;; 2nd position it is dispersed to B2".
529 (define_reservation "2_NB"
530 "2_0b.bb+2_unb0|2_0bb.b+2_unb1|2_0bbb.+2_unb2\
531 |2_0mb.b+2_unb1|2_0mbb.+2_unb2|2_0mib.+2_unb0\
532 |2_0mmb.+2_unb0|2_0mfb.+2_unb0\
533 |2_1b.bb+2_unb0|2_1bb.b+2_unb1
534 |2_1bbb.+2_unb2|2_1mb.b+2_unb1|2_1mbb.+2_unb2\
535 |2_1mib.+2_unb0|2_1mmb.+2_unb0|2_1mfb.+2_unb0")
536
537 (define_reservation "2_B0"
538 "2_0b.bb+2_ub0|2_0bb.b+2_ub1|2_0bbb.+2_ub2\
539 |2_0mb.b+2_ub1|2_0mbb.+2_ub2|2_0mib.+2_ub2\
540 |2_0mfb.+2_ub2|2_1b.bb+2_ub0|2_1bb.b+2_ub1\
541 |2_1bbb.+2_ub2|2_1mb.b+2_ub1\
542 |2_1mib.+2_ub2|2_1mmb.+2_ub2|2_1mfb.+2_ub2")
543
544 (define_reservation "2_B1"
545 "2_0m.bb+(2_um0|2_um1|2_um2|2_um3)+2_0mb.b+2_ub1\
546 |2_0mi.b+2_ui0+2_0mib.+2_ub2\
547 |2_0mm.b+(2_um0|2_um1|2_um2|2_um3)+2_0mmb.+2_ub2\
548 |2_0mf.b+2_uf0+2_0mfb.+2_ub2\
549 |(2_0mii.+(2_ui0|2_ui1)|2_0mmi.+2_ui0|2_0mfi.+2_ui0|2_0mmf.+2_uf0)\
550 +2_1b.bb+2_ub0\
551 |2_1m.bb+(2_um0|2_um1|2_um2|2_um3)+2_1mb.b+2_ub1\
552 |2_1mi.b+(2_ui0|2_ui1)+2_1mib.+2_ub2\
553 |2_1mm.b+(2_um0|2_um1|2_um2|2_um3)+2_1mmb.+2_ub2\
554 |2_1mf.b+2_uf1+2_1mfb.+2_ub2")
555
556 (define_reservation "2_B" "2_B0|2_B1")
557
558 ;; MLX bunlde uses ports equivalent to MFI bundles.
559
560 ;; For the MLI template, the I slot insn is always assigned to port I0
561 ;; if it is in the first bundle or it is assigned to port I1 if it is in
562 ;; the second bundle.
563 (define_reservation "2_L0" "2_0mlx.+2_ui0+2_uf0|2_1mlx.+2_ui1+2_uf1")
564
565 (define_reservation "2_L1"
566 "2_0m.lx+(2_um0|2_um1|2_um2|2_um3)+2_0mlx.+2_ui0+2_uf0\
567 |2_1m.lx+(2_um0|2_um1|2_um2|2_um3)+2_1mlx.+2_ui1+2_uf1")
568
569 (define_reservation "2_L2"
570 "(2_0mii.+(2_ui0|2_ui1)|2_0mmi.+2_ui0|2_0mfi.+2_ui0|2_0mmf.+2_uf0\
571 |2_0mib.+2_unb0|2_0mmb.+2_unb0|2_0mfb.+2_unb0)
572 +2_1m.lx+(2_um0|2_um1|2_um2|2_um3)+2_1mlx.+2_ui1+2_uf1")
573
574 (define_reservation "2_L" "2_L0|2_L1|2_L2")
575
576 ;; Should we describe that A insn in I slot can be issued into M
577 ;; ports? I think it is not necessary because of multipass
578 ;; scheduling. For example, the multipass scheduling could use
579 ;; MMI-MMI instead of MII-MII where the two last I slots contain A
580 ;; insns (even if the case is complicated by use-def conflicts).
581 ;;
582 ;; In any case we could describe it as
583 ;; (define_cpu_unit "2_ui1_0pres,2_ui1_1pres,2_ui1_2pres,2_ui1_3pres" "two")
584 ;; (final_presence_set "2_ui1_0pres,2_ui1_1pres,2_ui1_2pres,2_ui1_3pres"
585 ;; "2_ui1")
586 ;; (define_reservation "b_A"
587 ;; "b_M|b_I\
588 ;; |(2_1mi.i|2_1mii.|2_1mmi.|2_1mfi.|2_1mi.b)+(2_um0|2_um1|2_um2|2_um3)\
589 ;; +(2_ui1_0pres|2_ui1_1pres|2_ui1_2pres|2_ui1_3pres)")
590
591 (define_reservation "2_A" "2_M|2_I")
592
593 ;; We assume that there is no insn issued on the same cycle as the
594 ;; unknown insn.
595 (define_cpu_unit "2_empty" "two")
596 (exclusion_set "2_empty"
597 "2_0m.ii,2_0m.mi,2_0m.fi,2_0m.mf,2_0b.bb,2_0m.bb,2_0m.ib,2_0m.mb,2_0m.fb,\
598 2_0m.lx")
599
600 (define_cpu_unit
601 "2_0m_bs, 2_0mi_bs, 2_0mm_bs, 2_0mf_bs, 2_0b_bs, 2_0bb_bs, 2_0mb_bs"
602 "two")
603 (define_cpu_unit
604 "2_1m_bs, 2_1mi_bs, 2_1mm_bs, 2_1mf_bs, 2_1b_bs, 2_1bb_bs, 2_1mb_bs"
605 "two")
606
607 (define_cpu_unit "2_m_cont, 2_mi_cont, 2_mm_cont, 2_mf_cont, 2_mb_cont,\
608 2_b_cont, 2_bb_cont" "two")
609
610 ;; For stop in the middle of the bundles.
611 (define_cpu_unit "2_m_stop, 2_m0_stop, 2_m1_stop, 2_0mmi_cont" "two")
612 (define_cpu_unit "2_mi_stop, 2_mi0_stop, 2_mi1_stop, 2_0mii_cont" "two")
613
614 (final_presence_set "2_0m_bs"
615 "2_0m.ii, 2_0m.mi, 2_0m.mf, 2_0m.fi, 2_0m.bb,\
616 2_0m.ib, 2_0m.fb, 2_0m.mb, 2_0m.lx")
617 (final_presence_set "2_1m_bs"
618 "2_1m.ii, 2_1m.mi, 2_1m.mf, 2_1m.fi, 2_1m.bb,\
619 2_1m.ib, 2_1m.fb, 2_1m.mb, 2_1m.lx")
620 (final_presence_set "2_0mi_bs" "2_0mi.i, 2_0mi.i")
621 (final_presence_set "2_1mi_bs" "2_1mi.i, 2_1mi.i")
622 (final_presence_set "2_0mm_bs" "2_0mm.i, 2_0mm.f, 2_0mm.b")
623 (final_presence_set "2_1mm_bs" "2_1mm.i, 2_1mm.f, 2_1mm.b")
624 (final_presence_set "2_0mf_bs" "2_0mf.i, 2_0mf.b")
625 (final_presence_set "2_1mf_bs" "2_1mf.i, 2_1mf.b")
626 (final_presence_set "2_0b_bs" "2_0b.bb")
627 (final_presence_set "2_1b_bs" "2_1b.bb")
628 (final_presence_set "2_0bb_bs" "2_0bb.b")
629 (final_presence_set "2_1bb_bs" "2_1bb.b")
630 (final_presence_set "2_0mb_bs" "2_0mb.b")
631 (final_presence_set "2_1mb_bs" "2_1mb.b")
632
633 (exclusion_set "2_0m_bs"
634 "2_0mi.i, 2_0mm.i, 2_0mm.f, 2_0mf.i, 2_0mb.b,\
635 2_0mi.b, 2_0mf.b, 2_0mm.b, 2_0mlx., 2_m0_stop")
636 (exclusion_set "2_1m_bs"
637 "2_1mi.i, 2_1mm.i, 2_1mm.f, 2_1mf.i, 2_1mb.b,\
638 2_1mi.b, 2_1mf.b, 2_1mm.b, 2_1mlx., 2_m1_stop")
639 (exclusion_set "2_0mi_bs" "2_0mii., 2_0mib., 2_mi0_stop")
640 (exclusion_set "2_1mi_bs" "2_1mii., 2_1mib., 2_mi1_stop")
641 (exclusion_set "2_0mm_bs" "2_0mmi., 2_0mmf., 2_0mmb.")
642 (exclusion_set "2_1mm_bs" "2_1mmi., 2_1mmf., 2_1mmb.")
643 (exclusion_set "2_0mf_bs" "2_0mfi., 2_0mfb.")
644 (exclusion_set "2_1mf_bs" "2_1mfi., 2_1mfb.")
645 (exclusion_set "2_0b_bs" "2_0bb.b")
646 (exclusion_set "2_1b_bs" "2_1bb.b")
647 (exclusion_set "2_0bb_bs" "2_0bbb.")
648 (exclusion_set "2_1bb_bs" "2_1bbb.")
649 (exclusion_set "2_0mb_bs" "2_0mbb.")
650 (exclusion_set "2_1mb_bs" "2_1mbb.")
651
652 (exclusion_set
653 "2_0m_bs, 2_0mi_bs, 2_0mm_bs, 2_0mf_bs, 2_0b_bs, 2_0bb_bs, 2_0mb_bs,
654 2_1m_bs, 2_1mi_bs, 2_1mm_bs, 2_1mf_bs, 2_1b_bs, 2_1bb_bs, 2_1mb_bs"
655 "2_stop")
656
657 (final_presence_set
658 "2_0mi.i, 2_0mm.i, 2_0mf.i, 2_0mm.f, 2_0mb.b,\
659 2_0mi.b, 2_0mm.b, 2_0mf.b, 2_0mlx."
660 "2_m_cont")
661 (final_presence_set "2_0mii., 2_0mib." "2_mi_cont")
662 (final_presence_set "2_0mmi., 2_0mmf., 2_0mmb." "2_mm_cont")
663 (final_presence_set "2_0mfi., 2_0mfb." "2_mf_cont")
664 (final_presence_set "2_0bb.b" "2_b_cont")
665 (final_presence_set "2_0bbb." "2_bb_cont")
666 (final_presence_set "2_0mbb." "2_mb_cont")
667
668 (exclusion_set
669 "2_0m.ii, 2_0m.mi, 2_0m.fi, 2_0m.mf, 2_0b.bb, 2_0m.bb,\
670 2_0m.ib, 2_0m.mb, 2_0m.fb, 2_0m.lx"
671 "2_m_cont, 2_mi_cont, 2_mm_cont, 2_mf_cont,\
672 2_mb_cont, 2_b_cont, 2_bb_cont")
673
674 (exclusion_set "2_empty"
675 "2_m_cont,2_mi_cont,2_mm_cont,2_mf_cont,\
676 2_mb_cont,2_b_cont,2_bb_cont")
677
678 ;; For m;mi bundle
679 (final_presence_set "2_m0_stop" "2_0m.mi")
680 (final_presence_set "2_0mm.i" "2_0mmi_cont")
681 (exclusion_set "2_0mmi_cont"
682 "2_0m.ii, 2_0m.mi, 2_0m.fi, 2_0m.mf, 2_0b.bb, 2_0m.bb,\
683 2_0m.ib, 2_0m.mb, 2_0m.fb, 2_0m.lx")
684 (exclusion_set "2_m0_stop" "2_0mm.i")
685 (final_presence_set "2_m1_stop" "2_1m.mi")
686 (exclusion_set "2_m1_stop" "2_1mm.i")
687 (final_presence_set "2_m_stop" "2_m0_stop, 2_m1_stop")
688
689 ;; For mi;i bundle
690 (final_presence_set "2_mi0_stop" "2_0mi.i")
691 (final_presence_set "2_0mii." "2_0mii_cont")
692 (exclusion_set "2_0mii_cont"
693 "2_0m.ii, 2_0m.mi, 2_0m.fi, 2_0m.mf, 2_0b.bb, 2_0m.bb,\
694 2_0m.ib, 2_0m.mb, 2_0m.fb, 2_0m.lx")
695 (exclusion_set "2_mi0_stop" "2_0mii.")
696 (final_presence_set "2_mi1_stop" "2_1mi.i")
697 (exclusion_set "2_mi1_stop" "2_1mii.")
698 (final_presence_set "2_mi_stop" "2_mi0_stop, 2_mi1_stop")
699
700 (final_absence_set
701 "2_0m.ii,2_0mi.i,2_0mii.,2_0m.mi,2_0mm.i,2_0mmi.,2_0m.fi,2_0mf.i,2_0mfi.,\
702 2_0m.mf,2_0mm.f,2_0mmf.,2_0b.bb,2_0bb.b,2_0bbb.,2_0m.bb,2_0mb.b,2_0mbb.,\
703 2_0m.ib,2_0mi.b,2_0mib.,2_0m.mb,2_0mm.b,2_0mmb.,2_0m.fb,2_0mf.b,2_0mfb.,\
704 2_0m.lx,2_0mlx., \
705 2_1m.ii,2_1mi.i,2_1mii.,2_1m.mi,2_1mm.i,2_1mmi.,2_1m.fi,2_1mf.i,2_1mfi.,\
706 2_1m.mf,2_1mm.f,2_1mmf.,2_1b.bb,2_1bb.b,2_1bbb.,2_1m.bb,2_1mb.b,2_1mbb.,\
707 2_1m.ib,2_1mi.b,2_1mib.,2_1m.mb,2_1mm.b,2_1mmb.,2_1m.fb,2_1mf.b,2_1mfb.,\
708 2_1m.lx,2_1mlx."
709 "2_m0_stop,2_m1_stop,2_mi0_stop,2_mi1_stop")
710
711 (define_insn_reservation "2_stop_bit" 0
712 (and (and (eq_attr "cpu" "itanium2")
713 (eq_attr "itanium_class" "stop_bit"))
714 (not (match_test "bundling_p")))
715 "2_stop|2_m0_stop|2_m1_stop|2_mi0_stop|2_mi1_stop")
716
717 (define_insn_reservation "2_br" 0
718 (and (and (eq_attr "cpu" "itanium2")
719 (eq_attr "itanium_class" "br"))
720 (not (match_test "bundling_p"))) "2_B")
721 (define_insn_reservation "2_scall" 0
722 (and (and (eq_attr "cpu" "itanium2")
723 (eq_attr "itanium_class" "scall"))
724 (not (match_test "bundling_p"))) "2_B")
725 (define_insn_reservation "2_fcmp" 2
726 (and (and (eq_attr "cpu" "itanium2")
727 (eq_attr "itanium_class" "fcmp"))
728 (not (match_test "bundling_p"))) "2_F")
729 (define_insn_reservation "2_fcvtfx" 4
730 (and (and (eq_attr "cpu" "itanium2")
731 (eq_attr "itanium_class" "fcvtfx"))
732 (not (match_test "bundling_p"))) "2_F")
733 (define_insn_reservation "2_fld" 6
734 (and (and (and (and (eq_attr "cpu" "itanium2")
735 (eq_attr "itanium_class" "fld"))
736 (eq_attr "data_speculative" "no"))
737 (eq_attr "check_load" "no"))
738 (not (match_test "bundling_p")))
739 "2_M")
740 (define_insn_reservation "2_flda" 6
741 (and (and (and (eq_attr "cpu" "itanium2")
742 (eq_attr "itanium_class" "fld"))
743 (eq_attr "data_speculative" "yes"))
744 (not (match_test "bundling_p")))
745 "2_M_only_um01")
746 (define_insn_reservation "2_fldc" 0
747 (and (and (and (eq_attr "cpu" "itanium2")
748 (eq_attr "itanium_class" "fld"))
749 (eq_attr "check_load" "yes"))
750 (not (match_test "bundling_p")))
751 "2_M_only_um01")
752
753 (define_insn_reservation "2_fldp" 6
754 (and (and (and (eq_attr "cpu" "itanium2")
755 (eq_attr "itanium_class" "fldp"))
756 (eq_attr "check_load" "no"))
757 (not (match_test "bundling_p")))
758 "2_M_only_um01")
759 (define_insn_reservation "2_fldpc" 0
760 (and (and (and (eq_attr "cpu" "itanium2")
761 (eq_attr "itanium_class" "fldp"))
762 (eq_attr "check_load" "yes"))
763 (not (match_test "bundling_p")))
764 "2_M_only_um01")
765
766 (define_insn_reservation "2_fmac" 4
767 (and (and (eq_attr "cpu" "itanium2")
768 (eq_attr "itanium_class" "fmac"))
769 (not (match_test "bundling_p"))) "2_F")
770 (define_insn_reservation "2_fmisc" 4
771 (and (and (eq_attr "cpu" "itanium2")
772 (eq_attr "itanium_class" "fmisc"))
773 (not (match_test "bundling_p"))) "2_F")
774
775 ;; There is only one insn `mov = ar.bsp' for frar_i:
776 ;; Latency time ???
777 (define_insn_reservation "2_frar_i" 13
778 (and (and (eq_attr "cpu" "itanium2")
779 (eq_attr "itanium_class" "frar_i"))
780 (not (match_test "bundling_p")))
781 "2_I+2_only_ui0")
782 ;; There is only two insns `mov = ar.unat' or `mov = ar.ccv' for frar_m:
783 ;; Latency time ???
784 (define_insn_reservation "2_frar_m" 6
785 (and (and (eq_attr "cpu" "itanium2")
786 (eq_attr "itanium_class" "frar_m"))
787 (not (match_test "bundling_p")))
788 "2_M_only_um2")
789 (define_insn_reservation "2_frbr" 2
790 (and (and (eq_attr "cpu" "itanium2")
791 (eq_attr "itanium_class" "frbr"))
792 (not (match_test "bundling_p")))
793 "2_I+2_only_ui0")
794 (define_insn_reservation "2_frfr" 5
795 (and (and (eq_attr "cpu" "itanium2")
796 (eq_attr "itanium_class" "frfr"))
797 (not (match_test "bundling_p")))
798 "2_M_only_um2")
799 (define_insn_reservation "2_frpr" 2
800 (and (and (eq_attr "cpu" "itanium2")
801 (eq_attr "itanium_class" "frpr"))
802 (not (match_test "bundling_p")))
803 "2_I+2_only_ui0")
804
805 (define_insn_reservation "2_ialu" 1
806 (and (and (eq_attr "cpu" "itanium2")
807 (eq_attr "itanium_class" "ialu"))
808 (not (match_test "bundling_p")))
809 "2_A")
810 (define_insn_reservation "2_icmp" 1
811 (and (and (eq_attr "cpu" "itanium2")
812 (eq_attr "itanium_class" "icmp"))
813 (not (match_test "bundling_p"))) "2_A")
814 (define_insn_reservation "2_ilog" 1
815 (and (and (eq_attr "cpu" "itanium2")
816 (eq_attr "itanium_class" "ilog"))
817 (not (match_test "bundling_p"))) "2_A")
818 (define_insn_reservation "2_mmalua" 2
819 (and (and (eq_attr "cpu" "itanium2")
820 (eq_attr "itanium_class" "mmalua"))
821 (not (match_test "bundling_p"))) "2_A")
822 ;; Latency time ???
823 (define_insn_reservation "2_ishf" 1
824 (and (and (eq_attr "cpu" "itanium2")
825 (eq_attr "itanium_class" "ishf"))
826 (not (match_test "bundling_p")))
827 "2_I+2_only_ui0")
828
829 (define_insn_reservation "2_ld" 1
830 (and (and (and (eq_attr "cpu" "itanium2")
831 (eq_attr "itanium_class" "ld"))
832 (eq_attr "check_load" "no"))
833 (not (match_test "bundling_p")))
834 "2_M_only_um01")
835 (define_insn_reservation "2_ldc" 0
836 (and (and (eq_attr "cpu" "itanium2")
837 (eq_attr "check_load" "yes"))
838 (not (match_test "bundling_p")))
839 "2_M_only_um01")
840
841 (define_insn_reservation "2_long_i" 1
842 (and (and (eq_attr "cpu" "itanium2")
843 (eq_attr "itanium_class" "long_i"))
844 (not (match_test "bundling_p"))) "2_L")
845
846 (define_insn_reservation "2_mmmul" 2
847 (and (and (eq_attr "cpu" "itanium2")
848 (eq_attr "itanium_class" "mmmul"))
849 (not (match_test "bundling_p")))
850 "2_I+2_only_ui0")
851 ;; Latency time ???
852 (define_insn_reservation "2_mmshf" 2
853 (and (and (eq_attr "cpu" "itanium2")
854 (eq_attr "itanium_class" "mmshf"))
855 (not (match_test "bundling_p"))) "2_I")
856 ;; Latency time ???
857 (define_insn_reservation "2_mmshfi" 1
858 (and (and (eq_attr "cpu" "itanium2")
859 (eq_attr "itanium_class" "mmshfi"))
860 (not (match_test "bundling_p"))) "2_I")
861
862 ;; Now we have only one insn (flushrs) of such class. We assume that flushrs
863 ;; is the 1st syllable of the bundle after stop bit.
864 (define_insn_reservation "2_rse_m" 0
865 (and (and (eq_attr "cpu" "itanium2")
866 (eq_attr "itanium_class" "rse_m"))
867 (not (match_test "bundling_p")))
868 "(2_0m.ii|2_0m.mi|2_0m.fi|2_0m.mf|2_0m.bb\
869 |2_0m.ib|2_0m.mb|2_0m.fb|2_0m.lx)+2_um0")
870 (define_insn_reservation "2_sem" 0
871 (and (and (eq_attr "cpu" "itanium2")
872 (eq_attr "itanium_class" "sem"))
873 (not (match_test "bundling_p")))
874 "2_M_only_um23")
875
876 (define_insn_reservation "2_stf" 1
877 (and (and (eq_attr "cpu" "itanium2")
878 (eq_attr "itanium_class" "stf"))
879 (not (match_test "bundling_p")))
880 "2_M_only_um23")
881 (define_insn_reservation "2_st" 1
882 (and (and (eq_attr "cpu" "itanium2")
883 (eq_attr "itanium_class" "st"))
884 (not (match_test "bundling_p")))
885 "2_M_only_um23")
886 (define_insn_reservation "2_syst_m0" 0
887 (and (and (eq_attr "cpu" "itanium2")
888 (eq_attr "itanium_class" "syst_m0"))
889 (not (match_test "bundling_p")))
890 "2_M_only_um2")
891 (define_insn_reservation "2_syst_m" 0
892 (and (and (eq_attr "cpu" "itanium2")
893 (eq_attr "itanium_class" "syst_m"))
894 (not (match_test "bundling_p")))
895 "2_M_only_um0")
896 ;; Reservation???
897 (define_insn_reservation "2_tbit" 1
898 (and (and (eq_attr "cpu" "itanium2")
899 (eq_attr "itanium_class" "tbit"))
900 (not (match_test "bundling_p")))
901 "2_I+2_only_ui0")
902
903 ;; There is only ony insn `mov ar.pfs =' for toar_i:
904 (define_insn_reservation "2_toar_i" 0
905 (and (and (eq_attr "cpu" "itanium2")
906 (eq_attr "itanium_class" "toar_i"))
907 (not (match_test "bundling_p")))
908 "2_I+2_only_ui0")
909 ;; There are only ony 2 insns `mov ar.ccv =' and `mov ar.unat =' for toar_m:
910 ;; Latency time ???
911 (define_insn_reservation "2_toar_m" 5
912 (and (and (eq_attr "cpu" "itanium2")
913 (eq_attr "itanium_class" "toar_m"))
914 (not (match_test "bundling_p")))
915 "2_M_only_um2")
916 ;; Latency time ???
917 (define_insn_reservation "2_tobr" 1
918 (and (and (eq_attr "cpu" "itanium2")
919 (eq_attr "itanium_class" "tobr"))
920 (not (match_test "bundling_p")))
921 "2_I+2_only_ui0")
922 (define_insn_reservation "2_tofr" 5
923 (and (and (eq_attr "cpu" "itanium2")
924 (eq_attr "itanium_class" "tofr"))
925 (not (match_test "bundling_p")))
926 "2_M_only_um23")
927 ;; Latency time ???
928 (define_insn_reservation "2_topr" 1
929 (and (and (eq_attr "cpu" "itanium2")
930 (eq_attr "itanium_class" "topr"))
931 (not (match_test "bundling_p")))
932 "2_I+2_only_ui0")
933
934 (define_insn_reservation "2_xmpy" 4
935 (and (and (eq_attr "cpu" "itanium2")
936 (eq_attr "itanium_class" "xmpy"))
937 (not (match_test "bundling_p"))) "2_F")
938 ;; Latency time ???
939 (define_insn_reservation "2_xtd" 1
940 (and (and (eq_attr "cpu" "itanium2")
941 (eq_attr "itanium_class" "xtd"))
942 (not (match_test "bundling_p"))) "2_I")
943
944 (define_insn_reservation "2_chk_s_i" 0
945 (and (and (eq_attr "cpu" "itanium2")
946 (eq_attr "itanium_class" "chk_s_i"))
947 (not (match_test "bundling_p")))
948 "2_I|2_M_only_um23")
949 (define_insn_reservation "2_chk_s_f" 0
950 (and (and (eq_attr "cpu" "itanium2")
951 (eq_attr "itanium_class" "chk_s_f"))
952 (not (match_test "bundling_p")))
953 "2_M_only_um23")
954 (define_insn_reservation "2_chk_a" 0
955 (and (and (eq_attr "cpu" "itanium2")
956 (eq_attr "itanium_class" "chk_a"))
957 (not (match_test "bundling_p")))
958 "2_M_only_um01")
959
960 (define_insn_reservation "2_lfetch" 0
961 (and (and (eq_attr "cpu" "itanium2")
962 (eq_attr "itanium_class" "lfetch"))
963 (not (match_test "bundling_p")))
964 "2_M_only_um01")
965
966 (define_insn_reservation "2_nop_m" 0
967 (and (and (eq_attr "cpu" "itanium2")
968 (eq_attr "itanium_class" "nop_m"))
969 (not (match_test "bundling_p"))) "2_M0")
970 (define_insn_reservation "2_nop_b" 0
971 (and (and (eq_attr "cpu" "itanium2")
972 (eq_attr "itanium_class" "nop_b"))
973 (not (match_test "bundling_p"))) "2_NB")
974 (define_insn_reservation "2_nop_i" 0
975 (and (and (eq_attr "cpu" "itanium2")
976 (eq_attr "itanium_class" "nop_i"))
977 (not (match_test "bundling_p"))) "2_I0")
978 (define_insn_reservation "2_nop_f" 0
979 (and (and (eq_attr "cpu" "itanium2")
980 (eq_attr "itanium_class" "nop_f"))
981 (not (match_test "bundling_p"))) "2_F0")
982 (define_insn_reservation "2_nop_x" 0
983 (and (and (eq_attr "cpu" "itanium2")
984 (eq_attr "itanium_class" "nop_x"))
985 (not (match_test "bundling_p"))) "2_L0")
986
987 (define_insn_reservation "2_unknown" 1
988 (and (and (eq_attr "cpu" "itanium2")
989 (eq_attr "itanium_class" "unknown"))
990 (not (match_test "bundling_p"))) "2_empty")
991
992 (define_insn_reservation "2_nop" 0
993 (and (and (eq_attr "cpu" "itanium2")
994 (eq_attr "itanium_class" "nop"))
995 (not (match_test "bundling_p")))
996 "2_M0|2_NB|2_I0|2_F0")
997
998 (define_insn_reservation "2_ignore" 0
999 (and (and (eq_attr "cpu" "itanium2")
1000 (eq_attr "itanium_class" "ignore"))
1001 (not (match_test "bundling_p"))) "nothing")
1002
1003 (define_cpu_unit "2_m_cont_only, 2_b_cont_only" "two")
1004 (define_cpu_unit "2_mi_cont_only, 2_mm_cont_only, 2_mf_cont_only" "two")
1005 (define_cpu_unit "2_mb_cont_only, 2_bb_cont_only" "two")
1006
1007 (final_presence_set "2_m_cont_only" "2_m_cont")
1008 (exclusion_set "2_m_cont_only"
1009 "2_0mi.i, 2_0mm.i, 2_0mf.i, 2_0mm.f, 2_0mb.b,\
1010 2_0mi.b, 2_0mm.b, 2_0mf.b, 2_0mlx.")
1011
1012 (final_presence_set "2_b_cont_only" "2_b_cont")
1013 (exclusion_set "2_b_cont_only" "2_0bb.b")
1014
1015 (final_presence_set "2_mi_cont_only" "2_mi_cont")
1016 (exclusion_set "2_mi_cont_only" "2_0mii., 2_0mib.")
1017
1018 (final_presence_set "2_mm_cont_only" "2_mm_cont")
1019 (exclusion_set "2_mm_cont_only" "2_0mmi., 2_0mmf., 2_0mmb.")
1020
1021 (final_presence_set "2_mf_cont_only" "2_mf_cont")
1022 (exclusion_set "2_mf_cont_only" "2_0mfi., 2_0mfb.")
1023
1024 (final_presence_set "2_mb_cont_only" "2_mb_cont")
1025 (exclusion_set "2_mb_cont_only" "2_0mbb.")
1026
1027 (final_presence_set "2_bb_cont_only" "2_bb_cont")
1028 (exclusion_set "2_bb_cont_only" "2_0bbb.")
1029
1030 (define_insn_reservation "2_pre_cycle" 0
1031 (and (and (eq_attr "cpu" "itanium2")
1032 (eq_attr "itanium_class" "pre_cycle"))
1033 (not (match_test "bundling_p")))
1034 "nothing")
1035
1036 ;;(define_insn_reservation "2_pre_cycle" 0
1037 ;; (and (and (eq_attr "cpu" "itanium2")
1038 ;; (eq_attr "itanium_class" "pre_cycle"))
1039 ;; (not (match_test "bundling_p")))
1040 ;; "(2_0m_bs, 2_m_cont) \
1041 ;; | (2_0mi_bs, (2_mi_cont|nothing)) \
1042 ;; | (2_0mm_bs, 2_mm_cont) \
1043 ;; | (2_0mf_bs, (2_mf_cont|nothing)) \
1044 ;; | (2_0b_bs, (2_b_cont|nothing)) \
1045 ;; | (2_0bb_bs, (2_bb_cont|nothing)) \
1046 ;; | (2_0mb_bs, (2_mb_cont|nothing)) \
1047 ;; | (2_1m_bs, 2_m_cont) \
1048 ;; | (2_1mi_bs, (2_mi_cont|nothing)) \
1049 ;; | (2_1mm_bs, 2_mm_cont) \
1050 ;; | (2_1mf_bs, (2_mf_cont|nothing)) \
1051 ;; | (2_1b_bs, (2_b_cont|nothing)) \
1052 ;; | (2_1bb_bs, (2_bb_cont|nothing)) \
1053 ;; | (2_1mb_bs, (2_mb_cont|nothing)) \
1054 ;; | (2_m_cont_only, (2_m_cont|nothing)) \
1055 ;; | (2_b_cont_only, (2_b_cont|nothing)) \
1056 ;; | (2_mi_cont_only, (2_mi_cont|nothing)) \
1057 ;; | (2_mm_cont_only, (2_mm_cont|nothing)) \
1058 ;; | (2_mf_cont_only, (2_mf_cont|nothing)) \
1059 ;; | (2_mb_cont_only, (2_mb_cont|nothing)) \
1060 ;; | (2_bb_cont_only, (2_bb_cont|nothing)) \
1061 ;; | (2_m_stop, (2_0mmi_cont|nothing)) \
1062 ;; | (2_mi_stop, (2_0mii_cont|nothing))")
1063
1064 ;; Bypasses:
1065
1066 (define_bypass 1 "2_fcmp" "2_br,2_scall")
1067 (define_bypass 0 "2_icmp" "2_br,2_scall")
1068 (define_bypass 0 "2_tbit" "2_br,2_scall")
1069 (define_bypass 2 "2_ld" "2_ld" "ia64_ld_address_bypass_p")
1070 (define_bypass 2 "2_ld" "2_st" "ia64_st_address_bypass_p")
1071 (define_bypass 2 "2_ld,2_ldc" "2_mmalua,2_mmmul,2_mmshf")
1072 (define_bypass 3 "2_ilog" "2_mmalua,2_mmmul,2_mmshf")
1073 (define_bypass 3 "2_ialu" "2_mmalua,2_mmmul,2_mmshf")
1074 (define_bypass 3 "2_mmalua,2_mmmul,2_mmshf" "2_ialu,2_ilog,2_ishf,2_st,2_ld,2_ldc")
1075 (define_bypass 6 "2_tofr" "2_frfr,2_stf")
1076
1077 ;; We don't use here fcmp because scall may be predicated.
1078 (define_bypass 0 "2_fcvtfx,2_fld,2_flda,2_fldc,2_fmac,2_fmisc,2_frar_i,2_frar_m,\
1079 2_frbr,2_frfr,2_frpr,2_ialu,2_ilog,2_ishf,2_ld,2_ldc,2_long_i,\
1080 2_mmalua,2_mmmul,2_mmshf,2_mmshfi,2_toar_m,2_tobr,2_tofr,\
1081 2_xmpy,2_xtd"
1082 "2_br,2_scall")
1083
1084 (define_bypass 0 "2_unknown,2_ignore,2_stop_bit,2_br,2_fcmp,2_fcvtfx,2_fld,2_flda,2_fldc,\
1085 2_fmac,2_fmisc,2_frar_i,2_frar_m,2_frbr,2_frfr,2_frpr,\
1086 2_ialu,2_icmp,2_ilog,2_ishf,2_ld,2_ldc,2_chk_s_i,2_chk_s_f,2_chk_a,2_long_i,\
1087 2_mmalua,2_mmmul,2_mmshf,2_mmshfi,2_nop,2_nop_b,2_nop_f,\
1088 2_nop_i,2_nop_m,2_nop_x,2_rse_m,2_scall,2_sem,2_stf,2_st,\
1089 2_syst_m0,2_syst_m,2_tbit,2_toar_i,2_toar_m,2_tobr,2_tofr,\
1090 2_topr,2_xmpy,2_xtd,2_lfetch" "2_ignore")
1091
1092
1093 \f
1094 ;; Bundling
1095
1096 (define_automaton "twob")
1097
1098 ;; Pseudo units for quicker searching for position in two packet window. */
1099 (define_query_cpu_unit "2_1,2_2,2_3,2_4,2_5,2_6" "twob")
1100
1101 ;; All possible combinations of bundles/syllables
1102 (define_cpu_unit
1103 "2b_0m.ii, 2b_0m.mi, 2b_0m.fi, 2b_0m.mf, 2b_0b.bb, 2b_0m.bb,\
1104 2b_0m.ib, 2b_0m.mb, 2b_0m.fb, 2b_0m.lx" "twob")
1105 (define_cpu_unit
1106 "2b_0mi.i, 2b_0mm.i, 2b_0mf.i, 2b_0mm.f, 2b_0bb.b, 2b_0mb.b,\
1107 2b_0mi.b, 2b_0mm.b, 2b_0mf.b" "twob")
1108 (define_query_cpu_unit
1109 "2b_0mii., 2b_0mmi., 2b_0mfi., 2b_0mmf., 2b_0bbb., 2b_0mbb.,\
1110 2b_0mib., 2b_0mmb., 2b_0mfb., 2b_0mlx." "twob")
1111
1112 (define_cpu_unit
1113 "2b_1m.ii, 2b_1m.mi, 2b_1m.fi, 2b_1m.mf, 2b_1b.bb, 2b_1m.bb,\
1114 2b_1m.ib, 2b_1m.mb, 2b_1m.fb, 2b_1m.lx" "twob")
1115 (define_cpu_unit
1116 "2b_1mi.i, 2b_1mm.i, 2b_1mf.i, 2b_1mm.f, 2b_1bb.b, 2b_1mb.b,\
1117 2b_1mi.b, 2b_1mm.b, 2b_1mf.b" "twob")
1118 (define_query_cpu_unit
1119 "2b_1mii., 2b_1mmi., 2b_1mfi., 2b_1mmf., 2b_1bbb., 2b_1mbb.,\
1120 2b_1mib., 2b_1mmb., 2b_1mfb., 2b_1mlx." "twob")
1121
1122 ;; Slot 1
1123 (exclusion_set "2b_0m.ii"
1124 "2b_0m.mi, 2b_0m.fi, 2b_0m.mf, 2b_0b.bb, 2b_0m.bb,\
1125 2b_0m.ib, 2b_0m.mb, 2b_0m.fb, 2b_0m.lx")
1126 (exclusion_set "2b_0m.mi"
1127 "2b_0m.fi, 2b_0m.mf, 2b_0b.bb, 2b_0m.bb, 2b_0m.ib,\
1128 2b_0m.mb, 2b_0m.fb, 2b_0m.lx")
1129 (exclusion_set "2b_0m.fi"
1130 "2b_0m.mf, 2b_0b.bb, 2b_0m.bb, 2b_0m.ib, 2b_0m.mb, 2b_0m.fb, 2b_0m.lx")
1131 (exclusion_set "2b_0m.mf"
1132 "2b_0b.bb, 2b_0m.bb, 2b_0m.ib, 2b_0m.mb, 2b_0m.fb, 2b_0m.lx")
1133 (exclusion_set "2b_0b.bb" "2b_0m.bb, 2b_0m.ib, 2b_0m.mb, 2b_0m.fb, 2b_0m.lx")
1134 (exclusion_set "2b_0m.bb" "2b_0m.ib, 2b_0m.mb, 2b_0m.fb, 2b_0m.lx")
1135 (exclusion_set "2b_0m.ib" "2b_0m.mb, 2b_0m.fb, 2b_0m.lx")
1136 (exclusion_set "2b_0m.mb" "2b_0m.fb, 2b_0m.lx")
1137 (exclusion_set "2b_0m.fb" "2b_0m.lx")
1138
1139 ;; Slot 2
1140 (exclusion_set "2b_0mi.i"
1141 "2b_0mm.i, 2b_0mf.i, 2b_0mm.f, 2b_0bb.b, 2b_0mb.b,\
1142 2b_0mi.b, 2b_0mm.b, 2b_0mf.b, 2b_0mlx.")
1143 (exclusion_set "2b_0mm.i"
1144 "2b_0mf.i, 2b_0mm.f, 2b_0bb.b, 2b_0mb.b,\
1145 2b_0mi.b, 2b_0mm.b, 2b_0mf.b, 2b_0mlx.")
1146 (exclusion_set "2b_0mf.i"
1147 "2b_0mm.f, 2b_0bb.b, 2b_0mb.b, 2b_0mi.b, 2b_0mm.b, 2b_0mf.b, 2b_0mlx.")
1148 (exclusion_set "2b_0mm.f"
1149 "2b_0bb.b, 2b_0mb.b, 2b_0mi.b, 2b_0mm.b, 2b_0mf.b, 2b_0mlx.")
1150 (exclusion_set "2b_0bb.b" "2b_0mb.b, 2b_0mi.b, 2b_0mm.b, 2b_0mf.b, 2b_0mlx.")
1151 (exclusion_set "2b_0mb.b" "2b_0mi.b, 2b_0mm.b, 2b_0mf.b, 2b_0mlx.")
1152 (exclusion_set "2b_0mi.b" "2b_0mm.b, 2b_0mf.b, 2b_0mlx.")
1153 (exclusion_set "2b_0mm.b" "2b_0mf.b, 2b_0mlx.")
1154 (exclusion_set "2b_0mf.b" "2b_0mlx.")
1155
1156 ;; Slot 3
1157 (exclusion_set "2b_0mii."
1158 "2b_0mmi., 2b_0mfi., 2b_0mmf., 2b_0bbb., 2b_0mbb.,\
1159 2b_0mib., 2b_0mmb., 2b_0mfb., 2b_0mlx.")
1160 (exclusion_set "2b_0mmi."
1161 "2b_0mfi., 2b_0mmf., 2b_0bbb., 2b_0mbb.,\
1162 2b_0mib., 2b_0mmb., 2b_0mfb., 2b_0mlx.")
1163 (exclusion_set "2b_0mfi."
1164 "2b_0mmf., 2b_0bbb., 2b_0mbb., 2b_0mib., 2b_0mmb., 2b_0mfb., 2b_0mlx.")
1165 (exclusion_set "2b_0mmf."
1166 "2b_0bbb., 2b_0mbb., 2b_0mib., 2b_0mmb., 2b_0mfb., 2b_0mlx.")
1167 (exclusion_set "2b_0bbb." "2b_0mbb., 2b_0mib., 2b_0mmb., 2b_0mfb., 2b_0mlx.")
1168 (exclusion_set "2b_0mbb." "2b_0mib., 2b_0mmb., 2b_0mfb., 2b_0mlx.")
1169 (exclusion_set "2b_0mib." "2b_0mmb., 2b_0mfb., 2b_0mlx.")
1170 (exclusion_set "2b_0mmb." "2b_0mfb., 2b_0mlx.")
1171 (exclusion_set "2b_0mfb." "2b_0mlx.")
1172
1173 ;; Slot 4
1174 (exclusion_set "2b_1m.ii"
1175 "2b_1m.mi, 2b_1m.fi, 2b_1m.mf, 2b_1b.bb, 2b_1m.bb,\
1176 2b_1m.ib, 2b_1m.mb, 2b_1m.fb, 2b_1m.lx")
1177 (exclusion_set "2b_1m.mi"
1178 "2b_1m.fi, 2b_1m.mf, 2b_1b.bb, 2b_1m.bb, 2b_1m.ib,\
1179 2b_1m.mb, 2b_1m.fb, 2b_1m.lx")
1180 (exclusion_set "2b_1m.fi"
1181 "2b_1m.mf, 2b_1b.bb, 2b_1m.bb, 2b_1m.ib, 2b_1m.mb, 2b_1m.fb, 2b_1m.lx")
1182 (exclusion_set "2b_1m.mf"
1183 "2b_1b.bb, 2b_1m.bb, 2b_1m.ib, 2b_1m.mb, 2b_1m.fb, 2b_1m.lx")
1184 (exclusion_set "2b_1b.bb" "2b_1m.bb, 2b_1m.ib, 2b_1m.mb, 2b_1m.fb, 2b_1m.lx")
1185 (exclusion_set "2b_1m.bb" "2b_1m.ib, 2b_1m.mb, 2b_1m.fb, 2b_1m.lx")
1186 (exclusion_set "2b_1m.ib" "2b_1m.mb, 2b_1m.fb, 2b_1m.lx")
1187 (exclusion_set "2b_1m.mb" "2b_1m.fb, 2b_1m.lx")
1188 (exclusion_set "2b_1m.fb" "2b_1m.lx")
1189
1190 ;; Slot 5
1191 (exclusion_set "2b_1mi.i"
1192 "2b_1mm.i, 2b_1mf.i, 2b_1mm.f, 2b_1bb.b, 2b_1mb.b,\
1193 2b_1mi.b, 2b_1mm.b, 2b_1mf.b, 2b_1mlx.")
1194 (exclusion_set "2b_1mm.i"
1195 "2b_1mf.i, 2b_1mm.f, 2b_1bb.b, 2b_1mb.b,\
1196 2b_1mi.b, 2b_1mm.b, 2b_1mf.b, 2b_1mlx.")
1197 (exclusion_set "2b_1mf.i"
1198 "2b_1mm.f, 2b_1bb.b, 2b_1mb.b, 2b_1mi.b, 2b_1mm.b, 2b_1mf.b, 2b_1mlx.")
1199 (exclusion_set "2b_1mm.f"
1200 "2b_1bb.b, 2b_1mb.b, 2b_1mi.b, 2b_1mm.b, 2b_1mf.b, 2b_1mlx.")
1201 (exclusion_set "2b_1bb.b" "2b_1mb.b, 2b_1mi.b, 2b_1mm.b, 2b_1mf.b, 2b_1mlx.")
1202 (exclusion_set "2b_1mb.b" "2b_1mi.b, 2b_1mm.b, 2b_1mf.b, 2b_1mlx.")
1203 (exclusion_set "2b_1mi.b" "2b_1mm.b, 2b_1mf.b, 2b_1mlx.")
1204 (exclusion_set "2b_1mm.b" "2b_1mf.b, 2b_1mlx.")
1205 (exclusion_set "2b_1mf.b" "2b_1mlx.")
1206
1207 ;; Slot 6
1208 (exclusion_set "2b_1mii."
1209 "2b_1mmi., 2b_1mfi., 2b_1mmf., 2b_1bbb., 2b_1mbb.,\
1210 2b_1mib., 2b_1mmb., 2b_1mfb., 2b_1mlx.")
1211 (exclusion_set "2b_1mmi."
1212 "2b_1mfi., 2b_1mmf., 2b_1bbb., 2b_1mbb.,\
1213 2b_1mib., 2b_1mmb., 2b_1mfb., 2b_1mlx.")
1214 (exclusion_set "2b_1mfi."
1215 "2b_1mmf., 2b_1bbb., 2b_1mbb., 2b_1mib., 2b_1mmb., 2b_1mfb., 2b_1mlx.")
1216 (exclusion_set "2b_1mmf."
1217 "2b_1bbb., 2b_1mbb., 2b_1mib., 2b_1mmb., 2b_1mfb., 2b_1mlx.")
1218 (exclusion_set "2b_1bbb." "2b_1mbb., 2b_1mib., 2b_1mmb., 2b_1mfb., 2b_1mlx.")
1219 (exclusion_set "2b_1mbb." "2b_1mib., 2b_1mmb., 2b_1mfb., 2b_1mlx.")
1220 (exclusion_set "2b_1mib." "2b_1mmb., 2b_1mfb., 2b_1mlx.")
1221 (exclusion_set "2b_1mmb." "2b_1mfb., 2b_1mlx.")
1222 (exclusion_set "2b_1mfb." "2b_1mlx.")
1223
1224 (final_presence_set "2b_0mi.i" "2b_0m.ii")
1225 (final_presence_set "2b_0mii." "2b_0mi.i")
1226 (final_presence_set "2b_1mi.i" "2b_1m.ii")
1227 (final_presence_set "2b_1mii." "2b_1mi.i")
1228
1229 (final_presence_set "2b_0mm.i" "2b_0m.mi")
1230 (final_presence_set "2b_0mmi." "2b_0mm.i")
1231 (final_presence_set "2b_1mm.i" "2b_1m.mi")
1232 (final_presence_set "2b_1mmi." "2b_1mm.i")
1233
1234 (final_presence_set "2b_0mf.i" "2b_0m.fi")
1235 (final_presence_set "2b_0mfi." "2b_0mf.i")
1236 (final_presence_set "2b_1mf.i" "2b_1m.fi")
1237 (final_presence_set "2b_1mfi." "2b_1mf.i")
1238
1239 (final_presence_set "2b_0mm.f" "2b_0m.mf")
1240 (final_presence_set "2b_0mmf." "2b_0mm.f")
1241 (final_presence_set "2b_1mm.f" "2b_1m.mf")
1242 (final_presence_set "2b_1mmf." "2b_1mm.f")
1243
1244 (final_presence_set "2b_0bb.b" "2b_0b.bb")
1245 (final_presence_set "2b_0bbb." "2b_0bb.b")
1246 (final_presence_set "2b_1bb.b" "2b_1b.bb")
1247 (final_presence_set "2b_1bbb." "2b_1bb.b")
1248
1249 (final_presence_set "2b_0mb.b" "2b_0m.bb")
1250 (final_presence_set "2b_0mbb." "2b_0mb.b")
1251 (final_presence_set "2b_1mb.b" "2b_1m.bb")
1252 (final_presence_set "2b_1mbb." "2b_1mb.b")
1253
1254 (final_presence_set "2b_0mi.b" "2b_0m.ib")
1255 (final_presence_set "2b_0mib." "2b_0mi.b")
1256 (final_presence_set "2b_1mi.b" "2b_1m.ib")
1257 (final_presence_set "2b_1mib." "2b_1mi.b")
1258
1259 (final_presence_set "2b_0mm.b" "2b_0m.mb")
1260 (final_presence_set "2b_0mmb." "2b_0mm.b")
1261 (final_presence_set "2b_1mm.b" "2b_1m.mb")
1262 (final_presence_set "2b_1mmb." "2b_1mm.b")
1263
1264 (final_presence_set "2b_0mf.b" "2b_0m.fb")
1265 (final_presence_set "2b_0mfb." "2b_0mf.b")
1266 (final_presence_set "2b_1mf.b" "2b_1m.fb")
1267 (final_presence_set "2b_1mfb." "2b_1mf.b")
1268
1269 (final_presence_set "2b_0mlx." "2b_0m.lx")
1270 (final_presence_set "2b_1mlx." "2b_1m.lx")
1271
1272 ;; See the corresponding comment in non-bundling section above.
1273 (final_presence_set
1274 "2b_1m.lx"
1275 "2b_0mmi.,2b_0mfi.,2b_0mmf.,2b_0mib.,2b_0mmb.,2b_0mfb.,2b_0mlx.")
1276 (final_presence_set "2b_1b.bb" "2b_0mii.,2b_0mmi.,2b_0mfi.,2b_0mmf.,2b_0mlx.")
1277 (final_presence_set
1278 "2b_1m.ii,2b_1m.mi,2b_1m.fi,2b_1m.mf,2b_1m.bb,2b_1m.ib,2b_1m.mb,2b_1m.fb"
1279 "2b_0mii.,2b_0mmi.,2b_0mfi.,2b_0mmf.,2b_0mib.,2b_0mmb.,2b_0mfb.,2b_0mlx.")
1280
1281 ;; Ports/units (nb means nop.b insn issued into given port):
1282 (define_cpu_unit
1283 "2b_um0, 2b_um1, 2b_um2, 2b_um3, 2b_ui0, 2b_ui1, 2b_uf0, 2b_uf1,\
1284 2b_ub0, 2b_ub1, 2b_ub2, 2b_unb0, 2b_unb1, 2b_unb2" "twob")
1285
1286 (exclusion_set "2b_ub0" "2b_unb0")
1287 (exclusion_set "2b_ub1" "2b_unb1")
1288 (exclusion_set "2b_ub2" "2b_unb2")
1289
1290 ;; The following rules are used to decrease number of alternatives.
1291 ;; They are consequences of Itanium2 microarchitecture. They also
1292 ;; describe the following rules mentioned in Itanium2
1293 ;; microarchitecture: rules mentioned in Itanium2 microarchitecture:
1294 ;; o "BBB/MBB: Always splits issue after either of these bundles".
1295 ;; o "MIB BBB: Split issue after the first bundle in this pair".
1296 (exclusion_set
1297 "2b_0b.bb,2b_0bb.b,2b_0bbb.,2b_0m.bb,2b_0mb.b,2b_0mbb."
1298 "2b_1m.ii,2b_1m.mi,2b_1m.fi,2b_1m.mf,2b_1b.bb,2b_1m.bb,\
1299 2b_1m.ib,2b_1m.mb,2b_1m.fb,2b_1m.lx")
1300 (exclusion_set "2b_0m.ib,2b_0mi.b,2b_0mib." "2b_1b.bb")
1301
1302 ;;; "MIB/MFB/MMB: Splits issue after any of these bundles unless the
1303 ;;; B-slot contains a nop.b or a brp instruction".
1304 ;;; "The B in an MIB/MFB/MMB bundle disperses to B0 if it is a brp or
1305 ;;; nop.b, otherwise it disperses to B2".
1306 (final_absence_set
1307 "2b_1m.ii, 2b_1m.mi, 2b_1m.fi, 2b_1m.mf, 2b_1b.bb, 2b_1m.bb,\
1308 2b_1m.ib, 2b_1m.mb, 2b_1m.fb, 2b_1m.lx"
1309 "2b_0mib. 2b_ub2, 2b_0mfb. 2b_ub2, 2b_0mmb. 2b_ub2")
1310
1311 ;; This is necessary to start new processor cycle when we meet stop bit.
1312 (define_cpu_unit "2b_stop" "twob")
1313 (final_absence_set
1314 "2b_0m.ii,2b_0mi.i,2b_0mii.,2b_0m.mi,2b_0mm.i,2b_0mmi.,\
1315 2b_0m.fi,2b_0mf.i,2b_0mfi.,\
1316 2b_0m.mf,2b_0mm.f,2b_0mmf.,2b_0b.bb,2b_0bb.b,2b_0bbb.,\
1317 2b_0m.bb,2b_0mb.b,2b_0mbb.,\
1318 2b_0m.ib,2b_0mi.b,2b_0mib.,2b_0m.mb,2b_0mm.b,2b_0mmb.,\
1319 2b_0m.fb,2b_0mf.b,2b_0mfb.,2b_0m.lx,2b_0mlx., \
1320 2b_1m.ii,2b_1mi.i,2b_1mii.,2b_1m.mi,2b_1mm.i,2b_1mmi.,\
1321 2b_1m.fi,2b_1mf.i,2b_1mfi.,\
1322 2b_1m.mf,2b_1mm.f,2b_1mmf.,2b_1b.bb,2b_1bb.b,2b_1bbb.,\
1323 2b_1m.bb,2b_1mb.b,2b_1mbb.,\
1324 2b_1m.ib,2b_1mi.b,2b_1mib.,2b_1m.mb,2b_1mm.b,2b_1mmb.,\
1325 2b_1m.fb,2b_1mf.b,2b_1mfb.,2b_1m.lx,2b_1mlx."
1326 "2b_stop")
1327
1328 ;; The issue logic can reorder M slot insns between different subtypes
1329 ;; but cannot reorder insn within the same subtypes. The following
1330 ;; constraint is enough to describe this.
1331 (final_presence_set "2b_um1" "2b_um0")
1332 (final_presence_set "2b_um3" "2b_um2")
1333
1334 ;; The insn in the 1st I slot of the two bundle issue group will issue
1335 ;; to I0. The second I slot insn will issue to I1.
1336 (final_presence_set "2b_ui1" "2b_ui0")
1337
1338 ;; For exceptions of I insns:
1339 (define_cpu_unit "2b_only_ui0" "twob")
1340 (final_absence_set "2b_only_ui0" "2b_ui1")
1341
1342 ;; Insns
1343
1344 (define_reservation "2b_M"
1345 "((2b_0m.ii|2b_0m.mi|2b_0m.fi|2b_0m.mf|2b_0m.bb\
1346 |2b_0m.ib|2b_0m.mb|2b_0m.fb|2b_0m.lx)+2_1\
1347 |(2b_1m.ii|2b_1m.mi|2b_1m.fi|2b_1m.mf|2b_1m.bb\
1348 |2b_1m.ib|2b_1m.mb|2b_1m.fb|2b_1m.lx)+2_4\
1349 |(2b_0mm.i|2b_0mm.f|2b_0mm.b)+2_2\
1350 |(2b_1mm.i|2b_1mm.f|2b_1mm.b)+2_5)\
1351 +(2b_um0|2b_um1|2b_um2|2b_um3)")
1352
1353 (define_reservation "2b_M_only_um0"
1354 "((2b_0m.ii|2b_0m.mi|2b_0m.fi|2b_0m.mf|2b_0m.bb\
1355 |2b_0m.ib|2b_0m.mb|2b_0m.fb|2b_0m.lx)+2_1\
1356 |(2b_1m.ii|2b_1m.mi|2b_1m.fi|2b_1m.mf|2b_1m.bb\
1357 |2b_1m.ib|2b_1m.mb|2b_1m.fb|2b_1m.lx)+2_4\
1358 |(2b_0mm.i|2b_0mm.f|2b_0mm.b)+2_2\
1359 |(2b_1mm.i|2b_1mm.f|2b_1mm.b)+2_5)\
1360 +2b_um0")
1361
1362 (define_reservation "2b_M_only_um2"
1363 "((2b_0m.ii|2b_0m.mi|2b_0m.fi|2b_0m.mf|2b_0m.bb\
1364 |2b_0m.ib|2b_0m.mb|2b_0m.fb|2b_0m.lx)+2_1\
1365 |(2b_1m.ii|2b_1m.mi|2b_1m.fi|2b_1m.mf|2b_1m.bb\
1366 |2b_1m.ib|2b_1m.mb|2b_1m.fb|2b_1m.lx)+2_4\
1367 |(2b_0mm.i|2b_0mm.f|2b_0mm.b)+2_2\
1368 |(2b_1mm.i|2b_1mm.f|2b_1mm.b)+2_5)\
1369 +2b_um2")
1370
1371 (define_reservation "2b_M_only_um01"
1372 "((2b_0m.ii|2b_0m.mi|2b_0m.fi|2b_0m.mf|2b_0m.bb\
1373 |2b_0m.ib|2b_0m.mb|2b_0m.fb|2b_0m.lx)+2_1\
1374 |(2b_1m.ii|2b_1m.mi|2b_1m.fi|2b_1m.mf|2b_1m.bb\
1375 |2b_1m.ib|2b_1m.mb|2b_1m.fb|2b_1m.lx)+2_4\
1376 |(2b_0mm.i|2b_0mm.f|2b_0mm.b)+2_2\
1377 |(2b_1mm.i|2b_1mm.f|2b_1mm.b)+2_5)\
1378 +(2b_um0|2b_um1)")
1379
1380 (define_reservation "2b_M_only_um23"
1381 "((2b_0m.ii|2b_0m.mi|2b_0m.fi|2b_0m.mf|2b_0m.bb\
1382 |2b_0m.ib|2b_0m.mb|2b_0m.fb|2b_0m.lx)+2_1\
1383 |(2b_1m.ii|2b_1m.mi|2b_1m.fi|2b_1m.mf|2b_1m.bb\
1384 |2b_1m.ib|2b_1m.mb|2b_1m.fb|2b_1m.lx)+2_4\
1385 |(2b_0mm.i|2b_0mm.f|2b_0mm.b)+2_2\
1386 |(2b_1mm.i|2b_1mm.f|2b_1mm.b)+2_5)\
1387 +(2b_um2|2b_um3)")
1388
1389 ;; I instruction is dispersed to the lowest numbered I unit
1390 ;; not already in use. Remember about possible splitting.
1391 (define_reservation "2b_I"
1392 "2b_0mi.i+2_2+2b_ui0|2b_0mii.+2_3+(2b_ui0|2b_ui1)|2b_0mmi.+2_3+2b_ui0\
1393 |2b_0mfi.+2_3+2b_ui0|2b_0mi.b+2_2+2b_ui0\
1394 |(2b_1mi.i+2_5|2b_1mi.b+2_5)+(2b_ui0|2b_ui1)\
1395 |(2b_1mii.|2b_1mmi.|2b_1mfi.)+2_6+(2b_ui0|2b_ui1)")
1396
1397 ;; "An F slot in the 1st bundle disperses to F0".
1398 ;; "An F slot in the 2st bundle disperses to F1".
1399 (define_reservation "2b_F"
1400 "2b_0mf.i+2_2+2b_uf0|2b_0mmf.+2_3+2b_uf0|2b_0mf.b+2_2+2b_uf0\
1401 |2b_1mf.i+2_5+2b_uf1|2b_1mmf.+2_6+2b_uf1|2b_1mf.b+2_5+2b_uf1")
1402
1403 ;;; "Each B slot in MBB or BBB bundle disperses to the corresponding B
1404 ;;; unit. That is, a B slot in 1st position is dispersed to B0. In the
1405 ;;; 2nd position it is dispersed to B2".
1406 (define_reservation "2b_NB"
1407 "2b_0b.bb+2_1+2b_unb0|2b_0bb.b+2_2+2b_unb1|2b_0bbb.+2_3+2b_unb2\
1408 |2b_0mb.b+2_2+2b_unb1|2b_0mbb.+2_3+2b_unb2\
1409 |2b_0mib.+2_3+2b_unb0|2b_0mmb.+2_3+2b_unb0|2b_0mfb.+2_3+2b_unb0\
1410 |2b_1b.bb+2_4+2b_unb0|2b_1bb.b+2_5+2b_unb1\
1411 |2b_1bbb.+2_6+2b_unb2|2b_1mb.b+2_5+2b_unb1|2b_1mbb.+2_6+2b_unb2\
1412 |2b_1mib.+2_6+2b_unb0|2b_1mmb.+2_6+2b_unb0|2b_1mfb.+2_6+2b_unb0")
1413
1414 (define_reservation "2b_B"
1415 "2b_0b.bb+2_1+2b_ub0|2b_0bb.b+2_2+2b_ub1|2b_0bbb.+2_3+2b_ub2\
1416 |2b_0mb.b+2_2+2b_ub1|2b_0mbb.+2_3+2b_ub2|2b_0mib.+2_3+2b_ub2\
1417 |2b_0mfb.+2_3+2b_ub2|2b_1b.bb+2_4+2b_ub0|2b_1bb.b+2_5+2b_ub1\
1418 |2b_1bbb.+2_6+2b_ub2|2b_1mb.b+2_5+2b_ub1\
1419 |2b_1mib.+2_6+2b_ub2|2b_1mmb.+2_6+2b_ub2|2b_1mfb.+2_6+2b_ub2")
1420
1421 ;; For the MLI template, the I slot insn is always assigned to port I0
1422 ;; if it is in the first bundle or it is assigned to port I1 if it is in
1423 ;; the second bundle.
1424 (define_reservation "2b_L"
1425 "2b_0mlx.+2_3+2b_ui0+2b_uf0|2b_1mlx.+2_6+2b_ui1+2b_uf1")
1426
1427 ;; Should we describe that A insn in I slot can be issued into M
1428 ;; ports? I think it is not necessary because of multipass
1429 ;; scheduling. For example, the multipass scheduling could use
1430 ;; MMI-MMI instead of MII-MII where the two last I slots contain A
1431 ;; insns (even if the case is complicated by use-def conflicts).
1432 ;;
1433 ;; In any case we could describe it as
1434 ;; (define_cpu_unit "2b_ui1_0pres,2b_ui1_1pres,2b_ui1_2pres,2b_ui1_3pres"
1435 ;; "twob")
1436 ;; (final_presence_set "2b_ui1_0pres,2b_ui1_1pres,2b_ui1_2pres,2b_ui1_3pres"
1437 ;; "2b_ui1")
1438 ;; (define_reservation "b_A"
1439 ;; "b_M|b_I\
1440 ;; |(2b_1mi.i+2_5|2b_1mii.+2_6|2b_1mmi.+2_6|2b_1mfi.+2_6|2b_1mi.b+2_5)\
1441 ;; +(2b_um0|2b_um1|2b_um2|2b_um3)\
1442 ;; +(2b_ui1_0pres|2b_ui1_1pres|2b_ui1_2pres|2b_ui1_3pres)")
1443
1444 (define_reservation "2b_A" "2b_M|2b_I")
1445
1446 ;; We assume that there is no insn issued on the same cycle as the
1447 ;; unknown insn.
1448 (define_cpu_unit "2b_empty" "twob")
1449 (exclusion_set "2b_empty"
1450 "2b_0m.ii,2b_0m.mi,2b_0m.fi,2b_0m.mf,2b_0b.bb,2b_0m.bb,\
1451 2b_0m.ib,2b_0m.mb,2b_0m.fb,2b_0m.lx,2b_0mm.i")
1452
1453 (define_cpu_unit
1454 "2b_0m_bs, 2b_0mi_bs, 2b_0mm_bs, 2b_0mf_bs, 2b_0b_bs, 2b_0bb_bs, 2b_0mb_bs"
1455 "twob")
1456 (define_cpu_unit
1457 "2b_1m_bs, 2b_1mi_bs, 2b_1mm_bs, 2b_1mf_bs, 2b_1b_bs, 2b_1bb_bs, 2b_1mb_bs"
1458 "twob")
1459
1460 (define_cpu_unit "2b_m_cont, 2b_mi_cont, 2b_mm_cont, 2b_mf_cont, 2b_mb_cont,\
1461 2b_b_cont, 2b_bb_cont" "twob")
1462
1463 ;; For stop in the middle of the bundles.
1464 (define_cpu_unit "2b_m_stop, 2b_m0_stop, 2b_m1_stop, 2b_0mmi_cont" "twob")
1465 (define_cpu_unit "2b_mi_stop, 2b_mi0_stop, 2b_mi1_stop, 2b_0mii_cont" "twob")
1466
1467 (final_presence_set "2b_0m_bs"
1468 "2b_0m.ii, 2b_0m.mi, 2b_0m.mf, 2b_0m.fi, 2b_0m.bb,\
1469 2b_0m.ib, 2b_0m.fb, 2b_0m.mb, 2b_0m.lx")
1470 (final_presence_set "2b_1m_bs"
1471 "2b_1m.ii, 2b_1m.mi, 2b_1m.mf, 2b_1m.fi, 2b_1m.bb,\
1472 2b_1m.ib, 2b_1m.fb, 2b_1m.mb, 2b_1m.lx")
1473 (final_presence_set "2b_0mi_bs" "2b_0mi.i, 2b_0mi.i")
1474 (final_presence_set "2b_1mi_bs" "2b_1mi.i, 2b_1mi.i")
1475 (final_presence_set "2b_0mm_bs" "2b_0mm.i, 2b_0mm.f, 2b_0mm.b")
1476 (final_presence_set "2b_1mm_bs" "2b_1mm.i, 2b_1mm.f, 2b_1mm.b")
1477 (final_presence_set "2b_0mf_bs" "2b_0mf.i, 2b_0mf.b")
1478 (final_presence_set "2b_1mf_bs" "2b_1mf.i, 2b_1mf.b")
1479 (final_presence_set "2b_0b_bs" "2b_0b.bb")
1480 (final_presence_set "2b_1b_bs" "2b_1b.bb")
1481 (final_presence_set "2b_0bb_bs" "2b_0bb.b")
1482 (final_presence_set "2b_1bb_bs" "2b_1bb.b")
1483 (final_presence_set "2b_0mb_bs" "2b_0mb.b")
1484 (final_presence_set "2b_1mb_bs" "2b_1mb.b")
1485
1486 (exclusion_set "2b_0m_bs"
1487 "2b_0mi.i, 2b_0mm.i, 2b_0mm.f, 2b_0mf.i, 2b_0mb.b,\
1488 2b_0mi.b, 2b_0mf.b, 2b_0mm.b, 2b_0mlx., 2b_m0_stop")
1489 (exclusion_set "2b_1m_bs"
1490 "2b_1mi.i, 2b_1mm.i, 2b_1mm.f, 2b_1mf.i, 2b_1mb.b,\
1491 2b_1mi.b, 2b_1mf.b, 2b_1mm.b, 2b_1mlx., 2b_m1_stop")
1492 (exclusion_set "2b_0mi_bs" "2b_0mii., 2b_0mib., 2b_mi0_stop")
1493 (exclusion_set "2b_1mi_bs" "2b_1mii., 2b_1mib., 2b_mi1_stop")
1494 (exclusion_set "2b_0mm_bs" "2b_0mmi., 2b_0mmf., 2b_0mmb.")
1495 (exclusion_set "2b_1mm_bs" "2b_1mmi., 2b_1mmf., 2b_1mmb.")
1496 (exclusion_set "2b_0mf_bs" "2b_0mfi., 2b_0mfb.")
1497 (exclusion_set "2b_1mf_bs" "2b_1mfi., 2b_1mfb.")
1498 (exclusion_set "2b_0b_bs" "2b_0bb.b")
1499 (exclusion_set "2b_1b_bs" "2b_1bb.b")
1500 (exclusion_set "2b_0bb_bs" "2b_0bbb.")
1501 (exclusion_set "2b_1bb_bs" "2b_1bbb.")
1502 (exclusion_set "2b_0mb_bs" "2b_0mbb.")
1503 (exclusion_set "2b_1mb_bs" "2b_1mbb.")
1504
1505 (exclusion_set
1506 "2b_0m_bs, 2b_0mi_bs, 2b_0mm_bs, 2b_0mf_bs, 2b_0b_bs, 2b_0bb_bs, 2b_0mb_bs,
1507 2b_1m_bs, 2b_1mi_bs, 2b_1mm_bs, 2b_1mf_bs, 2b_1b_bs, 2b_1bb_bs, 2b_1mb_bs"
1508 "2b_stop")
1509
1510 (final_presence_set
1511 "2b_0mi.i, 2b_0mm.i, 2b_0mf.i, 2b_0mm.f, 2b_0mb.b,\
1512 2b_0mi.b, 2b_0mm.b, 2b_0mf.b, 2b_0mlx."
1513 "2b_m_cont")
1514 (final_presence_set "2b_0mii., 2b_0mib." "2b_mi_cont")
1515 (final_presence_set "2b_0mmi., 2b_0mmf., 2b_0mmb." "2b_mm_cont")
1516 (final_presence_set "2b_0mfi., 2b_0mfb." "2b_mf_cont")
1517 (final_presence_set "2b_0bb.b" "2b_b_cont")
1518 (final_presence_set "2b_0bbb." "2b_bb_cont")
1519 (final_presence_set "2b_0mbb." "2b_mb_cont")
1520
1521 (exclusion_set
1522 "2b_0m.ii, 2b_0m.mi, 2b_0m.fi, 2b_0m.mf, 2b_0b.bb, 2b_0m.bb,\
1523 2b_0m.ib, 2b_0m.mb, 2b_0m.fb, 2b_0m.lx"
1524 "2b_m_cont, 2b_mi_cont, 2b_mm_cont, 2b_mf_cont,\
1525 2b_mb_cont, 2b_b_cont, 2b_bb_cont")
1526
1527 (exclusion_set "2b_empty"
1528 "2b_m_cont,2b_mi_cont,2b_mm_cont,2b_mf_cont,\
1529 2b_mb_cont,2b_b_cont,2b_bb_cont")
1530
1531 ;; For m;mi bundle
1532 (final_presence_set "2b_m0_stop" "2b_0m.mi")
1533 (final_presence_set "2b_0mm.i" "2b_0mmi_cont")
1534 (exclusion_set "2b_0mmi_cont"
1535 "2b_0m.ii, 2b_0m.mi, 2b_0m.fi, 2b_0m.mf, 2b_0b.bb, 2b_0m.bb,\
1536 2b_0m.ib, 2b_0m.mb, 2b_0m.fb, 2b_0m.lx")
1537 (exclusion_set "2b_m0_stop" "2b_0mm.i")
1538 (final_presence_set "2b_m1_stop" "2b_1m.mi")
1539 (exclusion_set "2b_m1_stop" "2b_1mm.i")
1540 (final_presence_set "2b_m_stop" "2b_m0_stop, 2b_m1_stop")
1541
1542 ;; For mi;i bundle
1543 (final_presence_set "2b_mi0_stop" "2b_0mi.i")
1544 (final_presence_set "2b_0mii." "2b_0mii_cont")
1545 (exclusion_set "2b_0mii_cont"
1546 "2b_0m.ii, 2b_0m.mi, 2b_0m.fi, 2b_0m.mf, 2b_0b.bb, 2b_0m.bb,\
1547 2b_0m.ib, 2b_0m.mb, 2b_0m.fb, 2b_0m.lx")
1548 (exclusion_set "2b_mi0_stop" "2b_0mii.")
1549 (final_presence_set "2b_mi1_stop" "2b_1mi.i")
1550 (exclusion_set "2b_mi1_stop" "2b_1mii.")
1551 (final_presence_set "2b_mi_stop" "2b_mi0_stop, 2b_mi1_stop")
1552
1553 (final_absence_set
1554 "2b_0m.ii,2b_0mi.i,2b_0mii.,2b_0m.mi,2b_0mm.i,2b_0mmi.,\
1555 2b_0m.fi,2b_0mf.i,2b_0mfi.,2b_0m.mf,2b_0mm.f,2b_0mmf.,\
1556 2b_0b.bb,2b_0bb.b,2b_0bbb.,2b_0m.bb,2b_0mb.b,2b_0mbb.,\
1557 2b_0m.ib,2b_0mi.b,2b_0mib.,2b_0m.mb,2b_0mm.b,2b_0mmb.,\
1558 2b_0m.fb,2b_0mf.b,2b_0mfb.,2b_0m.lx,2b_0mlx., \
1559 2b_1m.ii,2b_1mi.i,2b_1mii.,2b_1m.mi,2b_1mm.i,2b_1mmi.,\
1560 2b_1m.fi,2b_1mf.i,2b_1mfi.,2b_1m.mf,2b_1mm.f,2b_1mmf.,\
1561 2b_1b.bb,2b_1bb.b,2b_1bbb.,2b_1m.bb,2b_1mb.b,2b_1mbb.,\
1562 2b_1m.ib,2b_1mi.b,2b_1mib.,2b_1m.mb,2b_1mm.b,2b_1mmb.,\
1563 2b_1m.fb,2b_1mf.b,2b_1mfb.,2b_1m.lx,2b_1mlx."
1564 "2b_m0_stop,2b_m1_stop,2b_mi0_stop,2b_mi1_stop")
1565
1566 (define_insn_reservation "2b_stop_bit" 0
1567 (and (and (eq_attr "cpu" "itanium2")
1568 (eq_attr "itanium_class" "stop_bit"))
1569 (match_test "bundling_p"))
1570 "2b_stop|2b_m0_stop|2b_m1_stop|2b_mi0_stop|2b_mi1_stop")
1571 (define_insn_reservation "2b_br" 0
1572 (and (and (eq_attr "cpu" "itanium2")
1573 (eq_attr "itanium_class" "br"))
1574 (match_test "bundling_p")) "2b_B")
1575 (define_insn_reservation "2b_scall" 0
1576 (and (and (eq_attr "cpu" "itanium2")
1577 (eq_attr "itanium_class" "scall"))
1578 (match_test "bundling_p")) "2b_B")
1579 (define_insn_reservation "2b_fcmp" 2
1580 (and (and (eq_attr "cpu" "itanium2")
1581 (eq_attr "itanium_class" "fcmp"))
1582 (match_test "bundling_p")) "2b_F")
1583 (define_insn_reservation "2b_fcvtfx" 4
1584 (and (and (eq_attr "cpu" "itanium2")
1585 (eq_attr "itanium_class" "fcvtfx"))
1586 (match_test "bundling_p")) "2b_F")
1587 (define_insn_reservation "2b_fld" 6
1588 (and (and (and (and (eq_attr "cpu" "itanium2")
1589 (eq_attr "itanium_class" "fld"))
1590 (eq_attr "data_speculative" "no"))
1591 (eq_attr "check_load" "no"))
1592 (match_test "bundling_p"))
1593 "2b_M")
1594 (define_insn_reservation "2b_flda" 6
1595 (and (and (and (eq_attr "cpu" "itanium2")
1596 (eq_attr "itanium_class" "fld"))
1597 (eq_attr "data_speculative" "yes"))
1598 (match_test "bundling_p"))
1599 "2b_M_only_um01")
1600 (define_insn_reservation "2b_fldc" 0
1601 (and (and (and (eq_attr "cpu" "itanium2")
1602 (eq_attr "itanium_class" "fld"))
1603 (eq_attr "check_load" "yes"))
1604 (match_test "bundling_p"))
1605 "2b_M_only_um01")
1606
1607 (define_insn_reservation "2b_fldp" 6
1608 (and (and (and (eq_attr "cpu" "itanium2")
1609 (eq_attr "itanium_class" "fldp"))
1610 (eq_attr "check_load" "no"))
1611 (match_test "bundling_p"))
1612 "2b_M_only_um01")
1613 (define_insn_reservation "2b_fldpc" 0
1614 (and (and (and (eq_attr "cpu" "itanium2")
1615 (eq_attr "itanium_class" "fldp"))
1616 (eq_attr "check_load" "yes"))
1617 (match_test "bundling_p"))
1618 "2b_M_only_um01")
1619
1620 (define_insn_reservation "2b_fmac" 4
1621 (and (and (eq_attr "cpu" "itanium2")
1622 (eq_attr "itanium_class" "fmac"))
1623 (match_test "bundling_p")) "2b_F")
1624 (define_insn_reservation "2b_fmisc" 4
1625 (and (and (eq_attr "cpu" "itanium2")
1626 (eq_attr "itanium_class" "fmisc"))
1627 (match_test "bundling_p")) "2b_F")
1628
1629 ;; Latency time ???
1630 (define_insn_reservation "2b_frar_i" 13
1631 (and (and (eq_attr "cpu" "itanium2")
1632 (eq_attr "itanium_class" "frar_i"))
1633 (match_test "bundling_p"))
1634 "2b_I+2b_only_ui0")
1635 ;; Latency time ???
1636 (define_insn_reservation "2b_frar_m" 6
1637 (and (and (eq_attr "cpu" "itanium2")
1638 (eq_attr "itanium_class" "frar_m"))
1639 (match_test "bundling_p"))
1640 "2b_M_only_um2")
1641 (define_insn_reservation "2b_frbr" 2
1642 (and (and (eq_attr "cpu" "itanium2")
1643 (eq_attr "itanium_class" "frbr"))
1644 (match_test "bundling_p"))
1645 "2b_I+2b_only_ui0")
1646 (define_insn_reservation "2b_frfr" 5
1647 (and (and (eq_attr "cpu" "itanium2")
1648 (eq_attr "itanium_class" "frfr"))
1649 (match_test "bundling_p"))
1650 "2b_M_only_um2")
1651 (define_insn_reservation "2b_frpr" 2
1652 (and (and (eq_attr "cpu" "itanium2")
1653 (eq_attr "itanium_class" "frpr"))
1654 (match_test "bundling_p"))
1655 "2b_I+2b_only_ui0")
1656
1657 (define_insn_reservation "2b_ialu" 1
1658 (and (and (eq_attr "cpu" "itanium2")
1659 (eq_attr "itanium_class" "ialu"))
1660 (match_test "bundling_p"))
1661 "2b_A")
1662 (define_insn_reservation "2b_icmp" 1
1663 (and (and (eq_attr "cpu" "itanium2")
1664 (eq_attr "itanium_class" "icmp"))
1665 (match_test "bundling_p")) "2b_A")
1666 (define_insn_reservation "2b_ilog" 1
1667 (and (and (eq_attr "cpu" "itanium2")
1668 (eq_attr "itanium_class" "ilog"))
1669 (match_test "bundling_p")) "2b_A")
1670 (define_insn_reservation "2b_mmalua" 2
1671 (and (and (eq_attr "cpu" "itanium2")
1672 (eq_attr "itanium_class" "mmalua"))
1673 (match_test "bundling_p")) "2b_A")
1674 ;; Latency time ???
1675 (define_insn_reservation "2b_ishf" 1
1676 (and (and (eq_attr "cpu" "itanium2")
1677 (eq_attr "itanium_class" "ishf"))
1678 (match_test "bundling_p"))
1679 "2b_I+2b_only_ui0")
1680
1681 (define_insn_reservation "2b_ld" 1
1682 (and (and (and (eq_attr "cpu" "itanium2")
1683 (eq_attr "itanium_class" "ld"))
1684 (eq_attr "check_load" "no"))
1685 (match_test "bundling_p"))
1686 "2b_M_only_um01")
1687 (define_insn_reservation "2b_ldc" 0
1688 (and (and (and (eq_attr "cpu" "itanium2")
1689 (eq_attr "itanium_class" "ld"))
1690 (eq_attr "check_load" "yes"))
1691 (match_test "bundling_p"))
1692 "2b_M_only_um01")
1693
1694 (define_insn_reservation "2b_long_i" 1
1695 (and (and (eq_attr "cpu" "itanium2")
1696 (eq_attr "itanium_class" "long_i"))
1697 (match_test "bundling_p")) "2b_L")
1698
1699 ;; Latency time ???
1700 (define_insn_reservation "2b_mmmul" 2
1701 (and (and (eq_attr "cpu" "itanium2")
1702 (eq_attr "itanium_class" "mmmul"))
1703 (match_test "bundling_p"))
1704 "2b_I+2b_only_ui0")
1705 ;; Latency time ???
1706 (define_insn_reservation "2b_mmshf" 2
1707 (and (and (eq_attr "cpu" "itanium2")
1708 (eq_attr "itanium_class" "mmshf"))
1709 (match_test "bundling_p")) "2b_I")
1710 ;; Latency time ???
1711 (define_insn_reservation "2b_mmshfi" 1
1712 (and (and (eq_attr "cpu" "itanium2")
1713 (eq_attr "itanium_class" "mmshfi"))
1714 (match_test "bundling_p")) "2b_I")
1715
1716 (define_insn_reservation "2b_rse_m" 0
1717 (and (and (eq_attr "cpu" "itanium2")
1718 (eq_attr "itanium_class" "rse_m"))
1719 (match_test "bundling_p"))
1720 "(2b_0m.ii|2b_0m.mi|2b_0m.fi|2b_0m.mf|2b_0m.bb\
1721 |2b_0m.ib|2b_0m.mb|2b_0m.fb|2b_0m.lx)+2_1+2b_um0")
1722 (define_insn_reservation "2b_sem" 0
1723 (and (and (eq_attr "cpu" "itanium2")
1724 (eq_attr "itanium_class" "sem"))
1725 (match_test "bundling_p"))
1726 "2b_M_only_um23")
1727
1728 (define_insn_reservation "2b_stf" 1
1729 (and (and (eq_attr "cpu" "itanium2")
1730 (eq_attr "itanium_class" "stf"))
1731 (match_test "bundling_p"))
1732 "2b_M_only_um23")
1733 (define_insn_reservation "2b_st" 1
1734 (and (and (eq_attr "cpu" "itanium2")
1735 (eq_attr "itanium_class" "st"))
1736 (match_test "bundling_p"))
1737 "2b_M_only_um23")
1738 (define_insn_reservation "2b_syst_m0" 0
1739 (and (and (eq_attr "cpu" "itanium2")
1740 (eq_attr "itanium_class" "syst_m0"))
1741 (match_test "bundling_p"))
1742 "2b_M_only_um2")
1743 (define_insn_reservation "2b_syst_m" 0
1744 (and (and (eq_attr "cpu" "itanium2")
1745 (eq_attr "itanium_class" "syst_m"))
1746 (match_test "bundling_p"))
1747 "2b_M_only_um0")
1748 ;; Reservation???
1749 (define_insn_reservation "2b_tbit" 1
1750 (and (and (eq_attr "cpu" "itanium2")
1751 (eq_attr "itanium_class" "tbit"))
1752 (match_test "bundling_p"))
1753 "2b_I+2b_only_ui0")
1754 (define_insn_reservation "2b_toar_i" 0
1755 (and (and (eq_attr "cpu" "itanium2")
1756 (eq_attr "itanium_class" "toar_i"))
1757 (match_test "bundling_p"))
1758 "2b_I+2b_only_ui0")
1759 ;; Latency time ???
1760 (define_insn_reservation "2b_toar_m" 5
1761 (and (and (eq_attr "cpu" "itanium2")
1762 (eq_attr "itanium_class" "toar_m"))
1763 (match_test "bundling_p"))
1764 "2b_M_only_um2")
1765 ;; Latency time ???
1766 (define_insn_reservation "2b_tobr" 1
1767 (and (and (eq_attr "cpu" "itanium2")
1768 (eq_attr "itanium_class" "tobr"))
1769 (match_test "bundling_p"))
1770 "2b_I+2b_only_ui0")
1771 (define_insn_reservation "2b_tofr" 5
1772 (and (and (eq_attr "cpu" "itanium2")
1773 (eq_attr "itanium_class" "tofr"))
1774 (match_test "bundling_p"))
1775 "2b_M_only_um23")
1776 ;; Latency time ???
1777 (define_insn_reservation "2b_topr" 1
1778 (and (and (eq_attr "cpu" "itanium2")
1779 (eq_attr "itanium_class" "topr"))
1780 (match_test "bundling_p"))
1781 "2b_I+2b_only_ui0")
1782
1783 (define_insn_reservation "2b_xmpy" 4
1784 (and (and (eq_attr "cpu" "itanium2")
1785 (eq_attr "itanium_class" "xmpy"))
1786 (match_test "bundling_p")) "2b_F")
1787 ;; Latency time ???
1788 (define_insn_reservation "2b_xtd" 1
1789 (and (and (eq_attr "cpu" "itanium2")
1790 (eq_attr "itanium_class" "xtd"))
1791 (match_test "bundling_p")) "2b_I")
1792
1793 (define_insn_reservation "2b_chk_s_i" 0
1794 (and (and (eq_attr "cpu" "itanium2")
1795 (eq_attr "itanium_class" "chk_s_i"))
1796 (match_test "bundling_p"))
1797 "2b_I|2b_M_only_um23")
1798 (define_insn_reservation "2b_chk_s_f" 0
1799 (and (and (eq_attr "cpu" "itanium2")
1800 (eq_attr "itanium_class" "chk_s_f"))
1801 (match_test "bundling_p"))
1802 "2b_M_only_um23")
1803 (define_insn_reservation "2b_chk_a" 0
1804 (and (and (eq_attr "cpu" "itanium2")
1805 (eq_attr "itanium_class" "chk_a"))
1806 (match_test "bundling_p"))
1807 "2b_M_only_um01")
1808
1809 (define_insn_reservation "2b_lfetch" 0
1810 (and (and (eq_attr "cpu" "itanium2")
1811 (eq_attr "itanium_class" "lfetch"))
1812 (match_test "bundling_p"))
1813 "2b_M_only_um01")
1814 (define_insn_reservation "2b_nop_m" 0
1815 (and (and (eq_attr "cpu" "itanium2")
1816 (eq_attr "itanium_class" "nop_m"))
1817 (match_test "bundling_p")) "2b_M")
1818 (define_insn_reservation "2b_nop_b" 0
1819 (and (and (eq_attr "cpu" "itanium2")
1820 (eq_attr "itanium_class" "nop_b"))
1821 (match_test "bundling_p")) "2b_NB")
1822 (define_insn_reservation "2b_nop_i" 0
1823 (and (and (eq_attr "cpu" "itanium2")
1824 (eq_attr "itanium_class" "nop_i"))
1825 (match_test "bundling_p")) "2b_I")
1826 (define_insn_reservation "2b_nop_f" 0
1827 (and (and (eq_attr "cpu" "itanium2")
1828 (eq_attr "itanium_class" "nop_f"))
1829 (match_test "bundling_p")) "2b_F")
1830 (define_insn_reservation "2b_nop_x" 0
1831 (and (and (eq_attr "cpu" "itanium2")
1832 (eq_attr "itanium_class" "nop_x"))
1833 (match_test "bundling_p")) "2b_L")
1834 (define_insn_reservation "2b_unknown" 1
1835 (and (and (eq_attr "cpu" "itanium2")
1836 (eq_attr "itanium_class" "unknown"))
1837 (match_test "bundling_p")) "2b_empty")
1838 (define_insn_reservation "2b_nop" 0
1839 (and (and (eq_attr "cpu" "itanium2")
1840 (eq_attr "itanium_class" "nop"))
1841 (match_test "bundling_p"))
1842 "2b_M|2b_NB|2b_I|2b_F")
1843 (define_insn_reservation "2b_ignore" 0
1844 (and (and (eq_attr "cpu" "itanium2")
1845 (eq_attr "itanium_class" "ignore"))
1846 (match_test "bundling_p")) "nothing")
1847
1848 (define_insn_reservation "2b_pre_cycle" 0
1849 (and (and (eq_attr "cpu" "itanium2")
1850 (eq_attr "itanium_class" "pre_cycle"))
1851 (match_test "bundling_p"))
1852 "(2b_0m_bs, 2b_m_cont) \
1853 | (2b_0mi_bs, 2b_mi_cont) \
1854 | (2b_0mm_bs, 2b_mm_cont) \
1855 | (2b_0mf_bs, 2b_mf_cont) \
1856 | (2b_0b_bs, 2b_b_cont) \
1857 | (2b_0bb_bs, 2b_bb_cont) \
1858 | (2b_0mb_bs, 2b_mb_cont) \
1859 | (2b_1m_bs, 2b_m_cont) \
1860 | (2b_1mi_bs, 2b_mi_cont) \
1861 | (2b_1mm_bs, 2b_mm_cont) \
1862 | (2b_1mf_bs, 2b_mf_cont) \
1863 | (2b_1b_bs, 2b_b_cont) \
1864 | (2b_1bb_bs, 2b_bb_cont) \
1865 | (2b_1mb_bs, 2b_mb_cont) \
1866 | (2b_m_stop, 2b_0mmi_cont) \
1867 | (2b_mi_stop, 2b_0mii_cont)")
1868