* hppa.h (pa_opcodes): Add support for "b,gate".
[deliverable/binutils-gdb.git] / include / opcode / hppa.h
1 /* Table of opcodes for the PA-RISC.
2 Copyright (C) 1990, 1991, 1993, 1995, 1999 Free Software Foundation, Inc.
3
4 Contributed by the Center for Software Science at the
5 University of Utah (pa-gdb-bugs@cs.utah.edu).
6
7 This file is part of GAS, the GNU Assembler, and GDB, the GNU disassembler.
8
9 GAS/GDB is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 1, or (at your option)
12 any later version.
13
14 GAS/GDB is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with GAS or GDB; see the file COPYING. If not, write to
21 the Free Software Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
22
23 #if !defined(__STDC__) && !defined(const)
24 #define const
25 #endif
26
27 /*
28 * Structure of an opcode table entry.
29 */
30
31 /* There are two kinds of delay slot nullification: normal which is
32 * controled by the nullification bit, and conditional, which depends
33 * on the direction of the branch and its success or failure.
34 *
35 * NONE is unfortunately #defined in the hiux system include files.
36 * #undef it away.
37 */
38 #undef NONE
39 struct pa_opcode
40 {
41 const char *name;
42 unsigned long int match; /* Bits that must be set... */
43 unsigned long int mask; /* ... in these bits. */
44 char *args;
45 enum pa_arch arch;
46 char flags;
47 };
48
49 /* Enable/disable strict syntax checking. Not currently used, but will
50 be necessary for PA2.0 support in the future. */
51 #define FLAG_STRICT 0x1
52
53 /*
54 All hppa opcodes are 32 bits.
55
56 The match component is a mask saying which bits must match a
57 particular opcode in order for an instruction to be an instance
58 of that opcode.
59
60 The args component is a string containing one character for each operand of
61 the instruction. Characters used as a prefix allow any second character to
62 be used without conflicting with the main operand characters.
63
64 Bit positions in this description follow HP usage of lsb = 31,
65 "at" is lsb of field.
66
67 In the args field, the following characters must match exactly:
68
69 '+,() '
70
71 In the args field, the following characters are unused:
72
73 ' "# & - / 34 6789:;< > @'
74 ' BC JKLM XY [\] '
75 ' de h lm y { } '
76
77 Here are all the characters:
78
79 ' !"#$%&'()*+-,./0123456789:;<=>?@'
80 'ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_'
81 'abcdefghijklmnopqrstuvwxyz{|}~'
82
83 Kinds of operands:
84 x integer register field at 15.
85 b integer register field at 10.
86 t integer register field at 31.
87 a integer register field at 10 and 15 (for PERMH)
88 5 5 bit immediate at 15.
89 s 2 bit space specifier at 17.
90 S 3 bit space specifier at 18.
91 V 5 bit immediate value at 31
92 i 11 bit immediate value at 31
93 j 14 bit immediate value at 31
94 k 21 bit immediate value at 31
95 n nullification for branch instructions
96 N nullification for spop and copr instructions
97 w 12 bit branch displacement
98 W 17 bit branch displacement (PC relative)
99 z 17 bit branch displacement (just a number, not an address)
100
101 Also these:
102
103 . 2 bit shift amount at 25
104 * 4 bit shift amount at 25
105 p 5 bit shift count at 26 (to support the SHD instruction) encoded as
106 31-p
107 ~ 6 bit shift count at 20,22:26 encoded as 63-~.
108 P 5 bit bit position at 26
109 T 5 bit field length at 31 (encoded as 32-T)
110 A 13 bit immediate at 18 (to support the BREAK instruction)
111 ^ like b, but describes a control register
112 ! sar (cr11) register
113 D 26 bit immediate at 31 (to support the DIAG instruction)
114 $ 9 bit immediate at 28 (to support POPBTS)
115
116 v 3 bit Special Function Unit identifier at 25
117 O 20 bit Special Function Unit operation split between 15 bits at 20
118 and 5 bits at 31
119 o 15 bit Special Function Unit operation at 20
120 2 22 bit Special Function Unit operation split between 17 bits at 20
121 and 5 bits at 31
122 1 15 bit Special Function Unit operation split between 10 bits at 20
123 and 5 bits at 31
124 0 10 bit Special Function Unit operation split between 5 bits at 20
125 and 5 bits at 31
126 u 3 bit coprocessor unit identifier at 25
127 F Source Floating Point Operand Format Completer encoded 2 bits at 20
128 I Source Floating Point Operand Format Completer encoded 1 bits at 20
129 (for 0xe format FP instructions)
130 G Destination Floating Point Operand Format Completer encoded 2 bits at 18
131 H Floating Point Operand Format at 26 for 'fmpyadd' and 'fmpysub'
132 (very similar to 'F')
133
134 r 5 bit immediate value at 31 (for the break instruction)
135 (very similar to V above, except the value is unsigned instead of
136 low_sign_ext)
137 R 5 bit immediate value at 15 (for the ssm, rsm, probei instructions)
138 (same as r above, except the value is in a different location)
139 U 10 bit immediate value at 15 (for SSM, RSM on pa2.0)
140 Q 5 bit immediate value at 10 (a bit position specified in
141 the bb instruction. It's the same as r above, except the
142 value is in a different location)
143 Z %r1 -- implicit target of addil instruction.
144 g ,gate completer for new syntax branch
145
146 Completer operands all have 'c' as the prefix:
147
148 cx indexed load completer.
149 cm short load and store completer.
150 cs store bytes short completer.
151
152 cw read/write completer for PROBE
153 cW wide completer for MFCTL
154 cL local processor completer for cache control
155 cZ System Control Completer (to support LPA, LHA, etc.)
156
157 ci correction completer for DCOR
158 ca add completer
159 cy 32 bit add carry completer
160 cY 64 bit add carry completer
161 cv signed overflow trap completer
162 ct trap on condition completer for ADDI, SUB
163 cT trap on condition completer for UADDCM
164 cb 32 bit borrow completer for SUB
165 cB 64 bit borrow completer for SUB
166
167 ch left/right half completer
168 cH signed/unsigned saturation completer
169 cS signed/unsigned completer at 21
170 c* permutation completer
171
172 Condition operands all have '?' as the prefix:
173
174 ?f Floating point compare conditions (encoded as 5 bits at 31)
175
176 ?a add conditions
177 ?A 64 bit add conditions
178 ?@ add branch conditions followed by nullify
179 ?d non-negated add branch conditions
180 ?D negated add branch conditions
181 ?w wide mode non-negated add branch conditions
182 ?W wide mode negated add branch conditions
183
184 ?s compare/subtract conditions
185 ?S 64 bit compare/subtract conditions
186 ?t non-negated compare conditions
187 ?T negated compare conditions
188 ?r 64 bit non-negated compare conditions
189 ?R 64 bit negated compare conditions
190 ?Q 64 bit compare conditions for CMPIB instruction
191 ?n compare conditions followed by nullify
192
193 ?l logical conditions
194 ?L 64 bit logical conditions
195
196 ?b branch on bit conditions
197 ?B 64 bit branch on bit conditions
198
199 ?x shift/extract/deposit conditions
200 ?X 64 bit shift/extract/deposit conditions
201 ?y shift/extract/deposit conditions followed by nullify for conditional
202 branches
203
204 ?u unit conditions
205 ?U 64 bit unit conditions
206
207 Floating point registers all have 'f' as a prefix:
208
209 ft target register at 31
210 fT target register with L/R halves at 31
211 fa operand 1 register at 10
212 fA operand 1 register with L/R halves at 10
213 fX Same as fA, except prints a space before register during disasm
214 fb operand 2 register at 15
215 fB operand 2 register with L/R halves at 15
216 fC operand 3 register with L/R halves at 16:18,21:23
217
218 Float registers for fmpyadd and fmpysub:
219
220 fi mult operand 1 register at 10
221 fj mult operand 2 register at 15
222 fk mult target register at 20
223 fl add/sub operand register at 25
224 fm add/sub target register at 31
225
226 */
227
228
229 /* List of characters not to put a space after. Note that
230 "," is included, as the "spopN" operations use literal
231 commas in their completer sections. */
232 static const char *const completer_chars = ",CcY<>?!@+&U~FfGHINnOoZMadu|/=0123%e$m}";
233
234 /* The order of the opcodes in this table is significant:
235
236 * The assembler requires that all instances of the same mnemonic must be
237 consecutive. If they aren't, the assembler will bomb at runtime.
238
239 * The disassembler should not care about the order of the opcodes. */
240
241 static const struct pa_opcode pa_opcodes[] =
242 {
243
244
245 { "b", 0xe8002000, 0xfc00e000, "gnW,b", pa10, FLAG_STRICT},
246 { "b", 0xe8000000, 0xffe0e000, "nW", pa10}, /* bl foo,r0 */
247 { "ldi", 0x34000000, 0xffe0c000, "j,x", pa10}, /* ldo val(r0),r */
248 { "comib", 0x84000000, 0xfc000000, "?nn5,b,w", pa10}, /* comib{tf}*/
249 /* This entry is for the disassembler only. It will never be used by
250 assembler. */
251 { "comib", 0x8c000000, 0xfc000000, "?nn5,b,w", pa10}, /* comib{tf}*/
252 { "comb", 0x80000000, 0xfc000000, "?nnx,b,w", pa10}, /* comb{tf} */
253 /* This entry is for the disassembler only. It will never be used by
254 assembler. */
255 { "comb", 0x88000000, 0xfc000000, "?nnx,b,w", pa10}, /* comb{tf} */
256 { "addb", 0xa0000000, 0xfc000000, "?@nx,b,w", pa10}, /* addb{tf} */
257 /* This entry is for the disassembler only. It will never be used by
258 assembler. */
259 { "addb", 0xa8000000, 0xfc000000, "?@nx,b,w", pa10},
260 { "addib", 0xa4000000, 0xfc000000, "?@n5,b,w", pa10}, /* addib{tf}*/
261 /* This entry is for the disassembler only. It will never be used by
262 assembler. */
263 { "addib", 0xac000000, 0xfc000000, "?@n5,b,w", pa10}, /* addib{tf}*/
264 { "nop", 0x08000240, 0xffffffff, "", pa10}, /* or 0,0,0 */
265 { "copy", 0x08000240, 0xffe0ffe0, "x,t", pa10}, /* or r,0,t */
266 { "mtsar", 0x01601840, 0xffe0ffff, "x", pa10}, /* mtctl r,cr11 */
267
268 /* Loads and Stores for integer registers. */
269 { "ldd", 0x0c0000c0, 0xfc001fc0, "cxx(s,b),t", pa20, FLAG_STRICT},
270 { "ldd", 0x0c0000c0, 0xfc001fc0, "cxx(b),t", pa20, FLAG_STRICT},
271 { "ldd", 0x0c0010c0, 0xfc001fc0, "cm5(s,b),t", pa20, FLAG_STRICT},
272 { "ldd", 0x0c0010c0, 0xfc001fc0, "cm5(b),t", pa20, FLAG_STRICT},
273 { "ldw", 0x0c000080, 0xfc001fc0, "cxx(s,b),t", pa10, FLAG_STRICT},
274 { "ldw", 0x0c000080, 0xfc001fc0, "cxx(b),t", pa10, FLAG_STRICT},
275 { "ldw", 0x0c001080, 0xfc001fc0, "cm5(s,b),t", pa10, FLAG_STRICT},
276 { "ldw", 0x0c001080, 0xfc001fc0, "cm5(b),t", pa10, FLAG_STRICT},
277 { "ldw", 0x48000000, 0xfc000000, "j(s,b),x", pa10},
278 { "ldw", 0x48000000, 0xfc000000, "j(b),x", pa10},
279 { "ldh", 0x0c000040, 0xfc001fc0, "cxx(s,b),t", pa10, FLAG_STRICT},
280 { "ldh", 0x0c000040, 0xfc001fc0, "cxx(b),t", pa10, FLAG_STRICT},
281 { "ldh", 0x0c001040, 0xfc001fc0, "cm5(s,b),t", pa10, FLAG_STRICT},
282 { "ldh", 0x0c001040, 0xfc001fc0, "cm5(b),t", pa10, FLAG_STRICT},
283 { "ldh", 0x44000000, 0xfc000000, "j(s,b),x", pa10},
284 { "ldh", 0x44000000, 0xfc000000, "j(b),x", pa10},
285 { "ldb", 0x0c000000, 0xfc001fc0, "cxx(s,b),t", pa10, FLAG_STRICT},
286 { "ldb", 0x0c000000, 0xfc001fc0, "cxx(b),t", pa10, FLAG_STRICT},
287 { "ldb", 0x0c001000, 0xfc001fc0, "cm5(s,b),t", pa10, FLAG_STRICT},
288 { "ldb", 0x0c001000, 0xfc001fc0, "cm5(b),t", pa10, FLAG_STRICT},
289 { "ldb", 0x40000000, 0xfc000000, "j(s,b),x", pa10},
290 { "ldb", 0x40000000, 0xfc000000, "j(b),x", pa10},
291 { "std", 0x0c0012c0, 0xfc001fc0, "cmx,V(s,b)", pa20, FLAG_STRICT},
292 { "std", 0x0c0012c0, 0xfc001fc0, "cmx,V(b)", pa20, FLAG_STRICT},
293 { "stw", 0x0c001280, 0xfc001fc0, "cmx,V(s,b)", pa10, FLAG_STRICT},
294 { "stw", 0x0c001280, 0xfc001fc0, "cmx,V(b)", pa10, FLAG_STRICT},
295 { "stw", 0x68000000, 0xfc000000, "x,j(s,b)", pa10},
296 { "stw", 0x68000000, 0xfc000000, "x,j(b)", pa10},
297 { "sth", 0x0c001240, 0xfc001fc0, "cmx,V(s,b)", pa10, FLAG_STRICT},
298 { "sth", 0x0c001240, 0xfc001fc0, "cmx,V(b)", pa10, FLAG_STRICT},
299 { "sth", 0x64000000, 0xfc000000, "x,j(s,b)", pa10},
300 { "sth", 0x64000000, 0xfc000000, "x,j(b)", pa10},
301 { "stb", 0x0c001200, 0xfc001fc0, "cmx,V(s,b)", pa10, FLAG_STRICT},
302 { "stb", 0x0c001200, 0xfc001fc0, "cmx,V(b)", pa10, FLAG_STRICT},
303 { "stb", 0x60000000, 0xfc000000, "x,j(s,b)", pa10},
304 { "stb", 0x60000000, 0xfc000000, "x,j(b)", pa10},
305 { "ldwm", 0x4c000000, 0xfc000000, "j(s,b),x", pa10},
306 { "ldwm", 0x4c000000, 0xfc000000, "j(b),x", pa10},
307 { "stwm", 0x6c000000, 0xfc000000, "x,j(s,b)", pa10},
308 { "stwm", 0x6c000000, 0xfc000000, "x,j(b)", pa10},
309 { "ldwx", 0x0c000080, 0xfc001fc0, "cxx(s,b),t", pa10},
310 { "ldwx", 0x0c000080, 0xfc001fc0, "cxx(b),t", pa10},
311 { "ldhx", 0x0c000040, 0xfc001fc0, "cxx(s,b),t", pa10},
312 { "ldhx", 0x0c000040, 0xfc001fc0, "cxx(b),t", pa10},
313 { "ldbx", 0x0c000000, 0xfc001fc0, "cxx(s,b),t", pa10},
314 { "ldbx", 0x0c000000, 0xfc001fc0, "cxx(b),t", pa10},
315 { "ldwa", 0x0c000180, 0xfc00dfc0, "cxx(b),t", pa10, FLAG_STRICT},
316 { "ldwa", 0x0c001180, 0xfc00dfc0, "cm5(b),t", pa10, FLAG_STRICT},
317 { "ldcw", 0x0c0001c0, 0xfc001fc0, "cxx(s,b),t", pa10, FLAG_STRICT},
318 { "ldcw", 0x0c0001c0, 0xfc001fc0, "cxx(b),t", pa10, FLAG_STRICT},
319 { "ldcw", 0x0c0011c0, 0xfc001fc0, "cm5(s,b),t", pa10, FLAG_STRICT},
320 { "ldcw", 0x0c0011c0, 0xfc001fc0, "cm5(b),t", pa10, FLAG_STRICT},
321 { "stwa", 0x0c001380, 0xfc00dfc0, "cmx,V(b)", pa10, FLAG_STRICT},
322 { "stby", 0x0c001300, 0xfc001fc0, "csx,V(s,b)", pa10, FLAG_STRICT},
323 { "stby", 0x0c001300, 0xfc001fc0, "csx,V(b)", pa10, FLAG_STRICT},
324 { "ldda", 0x0c000100, 0xfc00dfc0, "cxx(b),t", pa20, FLAG_STRICT},
325 { "ldda", 0x0c001100, 0xfc00dfc0, "cm5(b),t", pa20, FLAG_STRICT},
326 { "ldcd", 0x0c000140, 0xfc001fc0, "cxx(s,b),t", pa20, FLAG_STRICT},
327 { "ldcd", 0x0c000140, 0xfc001fc0, "cxx(b),t", pa20, FLAG_STRICT},
328 { "ldcd", 0x0c001140, 0xfc001fc0, "cm5(s,b),t", pa20, FLAG_STRICT},
329 { "ldcd", 0x0c001140, 0xfc001fc0, "cm5(b),t", pa20, FLAG_STRICT},
330 { "stda", 0x0c0013c0, 0xfc001fc0, "cmx,V(s,b)", pa20, FLAG_STRICT},
331 { "stda", 0x0c0013c0, 0xfc001fc0, "cmx,V(b)", pa20, FLAG_STRICT},
332 { "ldwax", 0x0c000180, 0xfc00dfc0, "cxx(b),t", pa10},
333 { "ldcwx", 0x0c0001c0, 0xfc001fc0, "cxx(s,b),t", pa10},
334 { "ldcwx", 0x0c0001c0, 0xfc001fc0, "cxx(b),t", pa10},
335 { "ldws", 0x0c001080, 0xfc001fc0, "cm5(s,b),t", pa10},
336 { "ldws", 0x0c001080, 0xfc001fc0, "cm5(b),t", pa10},
337 { "ldhs", 0x0c001040, 0xfc001fc0, "cm5(s,b),t", pa10},
338 { "ldhs", 0x0c001040, 0xfc001fc0, "cm5(b),t", pa10},
339 { "ldbs", 0x0c001000, 0xfc001fc0, "cm5(s,b),t", pa10},
340 { "ldbs", 0x0c001000, 0xfc001fc0, "cm5(b),t", pa10},
341 { "ldwas", 0x0c001180, 0xfc00dfc0, "cm5(b),t", pa10},
342 { "ldcws", 0x0c0011c0, 0xfc001fc0, "cm5(s,b),t", pa10},
343 { "ldcws", 0x0c0011c0, 0xfc001fc0, "cm5(b),t", pa10},
344 { "stws", 0x0c001280, 0xfc001fc0, "cmx,V(s,b)", pa10},
345 { "stws", 0x0c001280, 0xfc001fc0, "cmx,V(b)", pa10},
346 { "sths", 0x0c001240, 0xfc001fc0, "cmx,V(s,b)", pa10},
347 { "sths", 0x0c001240, 0xfc001fc0, "cmx,V(b)", pa10},
348 { "stbs", 0x0c001200, 0xfc001fc0, "cmx,V(s,b)", pa10},
349 { "stbs", 0x0c001200, 0xfc001fc0, "cmx,V(b)", pa10},
350 { "stwas", 0x0c001380, 0xfc00dfc0, "cmx,V(b)", pa10},
351 { "stdby", 0x0c001340, 0xfc001fc0, "csx,V(s,b)", pa20, FLAG_STRICT},
352 { "stdby", 0x0c001340, 0xfc001fc0, "csx,V(b)", pa20, FLAG_STRICT},
353 { "stbys", 0x0c001300, 0xfc001fc0, "csx,V(s,b)", pa10},
354 { "stbys", 0x0c001300, 0xfc001fc0, "csx,V(b)", pa10},
355
356 /* Immediate instructions. */
357 { "ldo", 0x34000000, 0xfc00c000, "j(b),x", pa10},
358 { "ldil", 0x20000000, 0xfc000000, "k,b", pa10},
359 { "addil", 0x28000000, 0xfc000000, "k,b,Z", pa10},
360 { "addil", 0x28000000, 0xfc000000, "k,b", pa10},
361
362 /* Branching instructions. */
363 { "bl", 0xe8000000, 0xfc00e000, "nW,b", pa10},
364 { "gate", 0xe8002000, 0xfc00e000, "nW,b", pa10},
365 { "blr", 0xe8004000, 0xfc00e001, "nx,b", pa10},
366 { "bv", 0xe800c000, 0xfc00fffd, "nx(b)", pa10},
367 { "bv", 0xe800c000, 0xfc00fffd, "n(b)", pa10},
368 { "be", 0xe0000000, 0xfc000000, "nz(S,b)", pa10},
369 { "ble", 0xe4000000, 0xfc000000, "nz(S,b)", pa10},
370 { "movb", 0xc8000000, 0xfc000000, "?ynx,b,w", pa10},
371 { "movib", 0xcc000000, 0xfc000000, "?yn5,b,w", pa10},
372 { "combt", 0x80000000, 0xfc000000, "?tnx,b,w", pa10},
373 { "combf", 0x88000000, 0xfc000000, "?tnx,b,w", pa10},
374 { "comibt", 0x84000000, 0xfc000000, "?tn5,b,w", pa10},
375 { "comibf", 0x8c000000, 0xfc000000, "?tn5,b,w", pa10},
376 { "addbt", 0xa0000000, 0xfc000000, "?dnx,b,w", pa10},
377 { "addbf", 0xa8000000, 0xfc000000, "?dnx,b,w", pa10},
378 { "addibt", 0xa4000000, 0xfc000000, "?dn5,b,w", pa10},
379 { "addibf", 0xac000000, 0xfc000000, "?dn5,b,w", pa10},
380 { "bb", 0xc0006000, 0xffe06000, "?Bnx,!,w", pa20, FLAG_STRICT},
381 { "bb", 0xc4006000, 0xfc006000, "?Bnx,Q,w", pa20, FLAG_STRICT},
382 { "bb", 0xc0004000, 0xffe06000, "?bnx,!,w", pa10, FLAG_STRICT},
383 { "bb", 0xc4004000, 0xfc004000, "?bnx,Q,w", pa10},
384 { "bvb", 0xc0004000, 0xffe04000, "?bnx,w", pa10},
385 { "clrbts", 0xe8004005, 0xffffffff, "", pa20, FLAG_STRICT},
386 { "popbts", 0xe8004005, 0xfffff007, "$", pa20, FLAG_STRICT},
387 { "pushnom", 0xe8004001, 0xffffffff, "", pa20, FLAG_STRICT},
388 { "pushbts", 0xe8004001, 0xffe0ffff, "x", pa20, FLAG_STRICT},
389
390 /* Computation Instructions */
391
392 { "cmpclr", 0x080008a0, 0xfc000fe0, "?Sx,b,t", pa20, FLAG_STRICT},
393 { "cmpclr", 0x08000880, 0xfc000fe0, "?sx,b,t", pa10, FLAG_STRICT},
394 { "comclr", 0x08000880, 0xfc000fe0, "?sx,b,t", pa10},
395 { "or", 0x08000260, 0xfc000fe0, "?Lx,b,t", pa20, FLAG_STRICT},
396 { "or", 0x08000240, 0xfc000fe0, "?lx,b,t", pa10},
397 { "xor", 0x080002a0, 0xfc000fe0, "?Lx,b,t", pa20, FLAG_STRICT},
398 { "xor", 0x08000280, 0xfc000fe0, "?lx,b,t", pa10},
399 { "and", 0x08000220, 0xfc000fe0, "?Lx,b,t", pa20, FLAG_STRICT},
400 { "and", 0x08000200, 0xfc000fe0, "?lx,b,t", pa10},
401 { "andcm", 0x08000020, 0xfc000fe0, "?Lx,b,t", pa20, FLAG_STRICT},
402 { "andcm", 0x08000000, 0xfc000fe0, "?lx,b,t", pa10},
403 { "uxor", 0x080003a0, 0xfc000fe0, "?Ux,b,t", pa20, FLAG_STRICT},
404 { "uxor", 0x08000380, 0xfc000fe0, "?ux,b,t", pa10},
405 { "uaddcm", 0x080009a0, 0xfc000fa0, "cT?Ux,b,t", pa20, FLAG_STRICT},
406 { "uaddcm", 0x08000980, 0xfc000fa0, "cT?ux,b,t", pa10, FLAG_STRICT},
407 { "uaddcm", 0x08000980, 0xfc000fe0, "?ux,b,t", pa10},
408 { "uaddcmt", 0x080009c0, 0xfc000fe0, "?ux,b,t", pa10},
409 { "dcor", 0x08000ba0, 0xfc1f0fa0, "ci?Ub,t", pa20, FLAG_STRICT},
410 { "dcor", 0x08000b80, 0xfc1f0fa0, "ci?ub,t", pa10, FLAG_STRICT},
411 { "dcor", 0x08000b80, 0xfc1f0fe0, "?ub,t", pa10},
412 { "idcor", 0x08000bc0, 0xfc1f0fe0, "?ub,t", pa10},
413 { "addi", 0xb0000000, 0xfc000000, "ct?ai,b,x", pa10, FLAG_STRICT},
414 { "addi", 0xb4000000, 0xfc000000, "cv?ai,b,x", pa10, FLAG_STRICT},
415 { "addi", 0xb4000000, 0xfc000800, "?ai,b,x", pa10},
416 { "addio", 0xb4000800, 0xfc000800, "?ai,b,x", pa10},
417 { "addit", 0xb0000000, 0xfc000800, "?ai,b,x", pa10},
418 { "addito", 0xb0000800, 0xfc000800, "?ai,b,x", pa10},
419 { "add", 0x08000720, 0xfc0007e0, "cY?Ax,b,t", pa20, FLAG_STRICT},
420 { "add", 0x08000700, 0xfc0007e0, "cy?ax,b,t", pa10, FLAG_STRICT},
421 { "add", 0x08000220, 0xfc0003e0, "ca?Ax,b,t", pa20, FLAG_STRICT},
422 { "add", 0x08000200, 0xfc0003e0, "ca?ax,b,t", pa10, FLAG_STRICT},
423 { "add", 0x08000600, 0xfc000fe0, "?ax,b,t", pa10},
424 { "addl", 0x08000a00, 0xfc000fe0, "?ax,b,t", pa10},
425 { "addo", 0x08000e00, 0xfc000fe0, "?ax,b,t", pa10},
426 { "addc", 0x08000700, 0xfc000fe0, "?ax,b,t", pa10},
427 { "addco", 0x08000f00, 0xfc000fe0, "?ax,b,t", pa10},
428 { "sub", 0x080004e0, 0xfc0007e0, "ct?Sx,b,t", pa20, FLAG_STRICT},
429 { "sub", 0x080004c0, 0xfc0007e0, "ct?sx,b,t", pa10, FLAG_STRICT},
430 { "sub", 0x08000520, 0xfc0007e0, "cB?Sx,b,t", pa20, FLAG_STRICT},
431 { "sub", 0x08000500, 0xfc0007e0, "cb?sx,b,t", pa10, FLAG_STRICT},
432 { "sub", 0x08000420, 0xfc0007e0, "cv?Sx,b,t", pa20, FLAG_STRICT},
433 { "sub", 0x08000400, 0xfc0007e0, "cv?sx,b,t", pa10, FLAG_STRICT},
434 { "sub", 0x08000400, 0xfc000fe0, "?sx,b,t", pa10},
435 { "subo", 0x08000c00, 0xfc000fe0, "?sx,b,t", pa10},
436 { "subb", 0x08000500, 0xfc000fe0, "?sx,b,t", pa10},
437 { "subbo", 0x08000d00, 0xfc000fe0, "?sx,b,t", pa10},
438 { "subt", 0x080004c0, 0xfc000fe0, "?sx,b,t", pa10},
439 { "subto", 0x08000cc0, 0xfc000fe0, "?sx,b,t", pa10},
440 { "ds", 0x08000440, 0xfc000fe0, "?sx,b,t", pa10},
441 { "subi", 0x94000000, 0xfc000000, "cv?si,b,x", pa10, FLAG_STRICT},
442 { "subi", 0x94000000, 0xfc000800, "?si,b,x", pa10},
443 { "subio", 0x94000800, 0xfc000800, "?si,b,x", pa10},
444 { "cmpiclr", 0x90000800, 0xfc000800, "?Si,b,x", pa20, FLAG_STRICT},
445 { "cmpiclr", 0x90000000, 0xfc000800, "?si,b,x", pa10, FLAG_STRICT},
446 { "comiclr", 0x90000000, 0xfc000800, "?si,b,x", pa10},
447 { "shladd", 0x08000220, 0xfc000320, "ca?Ax,.,b,t", pa20, FLAG_STRICT},
448 { "shladd", 0x08000200, 0xfc000320, "ca?ax,.,b,t", pa10, FLAG_STRICT},
449 { "sh1add", 0x08000640, 0xfc000fe0, "?ax,b,t", pa10},
450 { "sh1addl", 0x08000a40, 0xfc000fe0, "?ax,b,t", pa10},
451 { "sh1addo", 0x08000e40, 0xfc000fe0, "?ax,b,t", pa10},
452 { "sh2add", 0x08000680, 0xfc000fe0, "?ax,b,t", pa10},
453 { "sh2addl", 0x08000a80, 0xfc000fe0, "?ax,b,t", pa10},
454 { "sh2addo", 0x08000e80, 0xfc000fe0, "?ax,b,t", pa10},
455 { "sh3add", 0x080006c0, 0xfc000fe0, "?ax,b,t", pa10},
456 { "sh3addl", 0x08000ac0, 0xfc000fe0, "?ax,b,t", pa10},
457 { "sh3addo", 0x08000ec0, 0xfc000fe0, "?ax,b,t", pa10},
458
459 /* Subword Operation Instructions */
460
461 { "hadd", 0x08000300, 0xfc00ff20, "cHx,b,t", pa20, FLAG_STRICT},
462 { "havg", 0x080002c0, 0xfc00ffe0, "x,b,t", pa20, FLAG_STRICT},
463 { "hshl", 0xf8008800, 0xffe0fc20, "x,*,t", pa20, FLAG_STRICT},
464 { "hshladd", 0x08000700, 0xfc00ff20, "x,.,b,t", pa20, FLAG_STRICT},
465 { "hshr", 0xf800c800, 0xfc1ff820, "cSb,*,t", pa20, FLAG_STRICT},
466 { "hshradd", 0x08000500, 0xfc00ff20, "x,.,b,t", pa20, FLAG_STRICT},
467 { "hsub", 0x08000100, 0xfc00ff20, "cHx,b,t", pa20, FLAG_STRICT},
468 { "mixh", 0xf8008400, 0xfc009fe0, "chx,b,t", pa20, FLAG_STRICT},
469 { "mixw", 0xf8008000, 0xfc009fe0, "chx,b,t", pa20, FLAG_STRICT},
470 { "permh", 0xf8000000, 0xfc009020, "c*a,t", pa20, FLAG_STRICT},
471
472
473 /* Extract and Deposit Instructions */
474
475 { "shrpd", 0xd0000200, 0xfc001fe0, "?Xx,b,!,t", pa20, FLAG_STRICT},
476 { "shrpd", 0xd0000400, 0xfc001400, "?Xx,b,~,t", pa20, FLAG_STRICT},
477 { "shrpw", 0xd0000000, 0xfc001fe0, "?xx,b,!,t", pa10, FLAG_STRICT},
478 { "shrpw", 0xd0000800, 0xfc001c00, "?xx,b,p,t", pa10, FLAG_STRICT},
479 { "vshd", 0xd0000000, 0xfc001fe0, "?xx,b,t", pa10},
480 { "shd", 0xd0000800, 0xfc001c00, "?xx,b,p,t", pa10},
481 { "extrd", 0xd0001200, 0xfc001ae0, "cS?Xb,!,%,x", pa20, FLAG_STRICT},
482 { "extrd", 0xd8000000, 0xfc000000, "cS?Xb,q,|,x", pa20, FLAG_STRICT},
483 { "extrw", 0xd0001000, 0xfc001be0, "cS?xb,!,T,x", pa10, FLAG_STRICT},
484 { "extrw", 0xd0001800, 0xfc001800, "cS?xb,P,T,x", pa10, FLAG_STRICT},
485 { "vextru", 0xd0001000, 0xfc001fe0, "?xb,T,x", pa10},
486 { "vextrs", 0xd0001400, 0xfc001fe0, "?xb,T,x", pa10},
487 { "extru", 0xd0001800, 0xfc001c00, "?xb,P,T,x", pa10},
488 { "extrs", 0xd0001c00, 0xfc001c00, "?xb,P,T,x", pa10},
489 { "depd", 0xd4000200, 0xfc001ae0, "cz?Xx,!,%,b", pa20, FLAG_STRICT},
490 { "depd", 0xf0000000, 0xfc000000, "cz?Xx,~,|,b", pa20, FLAG_STRICT},
491 { "depdi", 0xd4001200, 0xfc001ae0, "cz?X5,!,%,b", pa20, FLAG_STRICT},
492 { "depdi", 0xf4000000, 0xfc000000, "cz?X5,~,|,b", pa20, FLAG_STRICT},
493 { "depw", 0xd4000000, 0xfc001be0, "cz?xx,!,T,b", pa10, FLAG_STRICT},
494 { "depw", 0xd4000800, 0xfc001800, "cz?xx,p,T,b", pa10, FLAG_STRICT},
495 { "depwi", 0xd4001000, 0xfc001be0, "cz?x5,!,T,b", pa10, FLAG_STRICT},
496 { "depwi", 0xd4001800, 0xfc001800, "cz?x5,p,T,b", pa10, FLAG_STRICT},
497 { "zvdep", 0xd4000000, 0xfc001fe0, "?xx,T,b", pa10},
498 { "vdep", 0xd4000400, 0xfc001fe0, "?xx,T,b", pa10},
499 { "zdep", 0xd4000800, 0xfc001c00, "?xx,p,T,b", pa10},
500 { "dep", 0xd4000c00, 0xfc001c00, "?xx,p,T,b", pa10},
501 { "zvdepi", 0xd4001000, 0xfc001fe0, "?x5,T,b", pa10},
502 { "vdepi", 0xd4001400, 0xfc001fe0, "?x5,T,b", pa10},
503 { "zdepi", 0xd4001800, 0xfc001c00, "?x5,p,T,b", pa10},
504 { "depi", 0xd4001c00, 0xfc001c00, "?x5,p,T,b", pa10},
505
506 /* System Control Instructions */
507
508 { "break", 0x00000000, 0xfc001fe0, "r,A", pa10},
509 { "rfi", 0x00000c00, 0xffffff1f, "cr", pa10, FLAG_STRICT},
510 { "rfi", 0x00000c00, 0xffffffff, "", pa10},
511 { "rfir", 0x00000ca0, 0xffffffff, "", pa11},
512 { "ssm", 0x00000d60, 0xfc00ffe0, "U,t", pa20, FLAG_STRICT},
513 { "ssm", 0x00000d60, 0xffe0ffe0, "R,t", pa10},
514 { "rsm", 0x00000e60, 0xfc00ffe0, "U,t", pa20, FLAG_STRICT},
515 { "rsm", 0x00000e60, 0xffe0ffe0, "R,t", pa10},
516 { "mtsm", 0x00001860, 0xffe0ffff, "x", pa10},
517 { "ldsid", 0x000010a0, 0xfc1f3fe0, "(s,b),t", pa10},
518 { "ldsid", 0x000010a0, 0xfc1f3fe0, "(b),t", pa10},
519 { "mtsp", 0x00001820, 0xffe01fff, "x,S", pa10},
520 { "mtctl", 0x00001840, 0xfc00ffff, "x,^", pa10},
521 { "mtsarcm", 0x016018C0, 0xffe0ffff, "x", pa20, FLAG_STRICT},
522 { "mfia", 0x000014A0, 0xffffffe0, "t", pa20, FLAG_STRICT},
523 { "mfsp", 0x000004a0, 0xffff1fe0, "S,t", pa10},
524 { "mfctl", 0x016048a0, 0xffffffe0, "cW!,t", pa20, FLAG_STRICT},
525 { "mfctl", 0x000008a0, 0xfc1fffe0, "^,t", pa10},
526 { "sync", 0x00000400, 0xffffffff, "", pa10},
527 { "syncdma", 0x00100400, 0xffffffff, "", pa10},
528 { "probe", 0x04001180, 0xfc003fa0, "cw(s,b),x,t", pa10, FLAG_STRICT},
529 { "probe", 0x04001180, 0xfc003fa0, "cw(b),x,t", pa10, FLAG_STRICT},
530 { "probei", 0x04003180, 0xfc003fa0, "cw(s,b),R,t", pa10, FLAG_STRICT},
531 { "probei", 0x04003180, 0xfc003fa0, "cw(b),R,t", pa10, FLAG_STRICT},
532 { "prober", 0x04001180, 0xfc003fe0, "(s,b),x,t", pa10},
533 { "prober", 0x04001180, 0xfc003fe0, "(b),x,t", pa10},
534 { "proberi", 0x04003180, 0xfc003fe0, "(s,b),R,t", pa10},
535 { "proberi", 0x04003180, 0xfc003fe0, "(b),R,t", pa10},
536 { "probew", 0x040011c0, 0xfc003fe0, "(s,b),x,t", pa10},
537 { "probew", 0x040011c0, 0xfc003fe0, "(b),x,t", pa10},
538 { "probewi", 0x040031c0, 0xfc003fe0, "(s,b),R,t", pa10},
539 { "probewi", 0x040031c0, 0xfc003fe0, "(b),R,t", pa10},
540 { "lpa", 0x04001340, 0xfc003fc0, "cZx(s,b),t", pa10},
541 { "lpa", 0x04001340, 0xfc003fc0, "cZx(b),t", pa10},
542 { "lha", 0x04001300, 0xfc003fc0, "cZx(s,b),t", pa10},
543 { "lha", 0x04001300, 0xfc003fc0, "cZx(b),t", pa10},
544 { "lci", 0x04001300, 0xfc003fe0, "x(s,b),t", pa10},
545 { "lci", 0x04001300, 0xfc003fe0, "x(b),t", pa10},
546 { "pdtlb", 0x04001600, 0xfc003fdf, "cLcZx(s,b)", pa20, FLAG_STRICT},
547 { "pdtlb", 0x04001600, 0xfc003fdf, "cLcZx(b)", pa20, FLAG_STRICT},
548 { "pdtlb", 0x04001200, 0xfc003fdf, "cZx(s,b)", pa10},
549 { "pdtlb", 0x04001200, 0xfc003fdf, "cZx(b)", pa10},
550 { "pitlb", 0x04000600, 0xfc001fdf, "cLcZx(S,b)", pa20, FLAG_STRICT},
551 { "pitlb", 0x04000600, 0xfc001fdf, "cLcZx(b)", pa20, FLAG_STRICT},
552 { "pitlb", 0x04000200, 0xfc001fdf, "cZx(S,b)", pa10},
553 { "pitlb", 0x04000200, 0xfc001fdf, "cZx(b)", pa10},
554 { "pdtlbe", 0x04001240, 0xfc003fdf, "cZx(s,b)", pa10},
555 { "pdtlbe", 0x04001240, 0xfc003fdf, "cZx(b)", pa10},
556 { "pitlbe", 0x04000240, 0xfc001fdf, "cZx(S,b)", pa10},
557 { "pitlbe", 0x04000240, 0xfc001fdf, "cZx(b)", pa10},
558 { "idtlba", 0x04001040, 0xfc003fff, "x,(s,b)", pa10},
559 { "idtlba", 0x04001040, 0xfc003fff, "x,(b)", pa10},
560 { "iitlba", 0x04000040, 0xfc001fff, "x,(S,b)", pa10},
561 { "iitlba", 0x04000040, 0xfc001fff, "x,(b)", pa10},
562 { "idtlbp", 0x04001000, 0xfc003fff, "x,(s,b)", pa10},
563 { "idtlbp", 0x04001000, 0xfc003fff, "x,(b)", pa10},
564 { "iitlbp", 0x04000000, 0xfc001fff, "x,(S,b)", pa10},
565 { "iitlbp", 0x04000000, 0xfc001fff, "x,(b)", pa10},
566 { "pdc", 0x04001380, 0xfc003fdf, "cZx(s,b)", pa10},
567 { "pdc", 0x04001380, 0xfc003fdf, "cZx(b)", pa10},
568 { "fdc", 0x04001280, 0xfc003fdf, "cZx(s,b)", pa10},
569 { "fdc", 0x04001280, 0xfc003fdf, "cZx(b)", pa10},
570 { "fic", 0x04000280, 0xfc001fdf, "cZx(S,b)", pa10},
571 { "fic", 0x04000280, 0xfc001fdf, "cZx(b)", pa10},
572 { "fdce", 0x040012c0, 0xfc003fdf, "cZx(s,b)", pa10},
573 { "fdce", 0x040012c0, 0xfc003fdf, "cZx(b)", pa10},
574 { "fice", 0x040002c0, 0xfc001fdf, "cZx(S,b)", pa10},
575 { "fice", 0x040002c0, 0xfc001fdf, "cZx(b)", pa10},
576 { "diag", 0x14000000, 0xfc000000, "D", pa10},
577 { "idtlbt", 0x04001800, 0xfc00ffff, "x,b", pa20, FLAG_STRICT},
578 { "iitlbt", 0x04000800, 0xfc00ffff, "x,b", pa20, FLAG_STRICT},
579
580 /* These may be specific to certain versions of the PA. Joel claimed
581 they were 72000 (7200?) specific. However, I'm almost certain the
582 mtcpu/mfcpu were undocumented, but available in the older 700 machines. */
583 { "mtcpu", 0x14001600, 0xfc00ffff, "x,^"},
584 { "mfcpu", 0x14001A00, 0xfc00ffff, "^,x"},
585 { "tocen", 0x14403600, 0xffffffff, ""},
586 { "tocdis", 0x14401620, 0xffffffff, ""},
587 { "shdwgr", 0x14402600, 0xffffffff, ""},
588 { "grshdw", 0x14400620, 0xffffffff, ""},
589
590 /* gfw and gfr are not in the HP PA 1.1 manual, but they are in either
591 the Timex FPU or the Mustang ERS (not sure which) manual. */
592 { "gfw", 0x04001680, 0xfc003fdf, "cZx(s,b)", pa11},
593 { "gfw", 0x04001680, 0xfc003fdf, "cZx(b)", pa11},
594 { "gfr", 0x04001a80, 0xfc003fdf, "cZx(s,b)", pa11},
595 { "gfr", 0x04001a80, 0xfc003fdf, "cZx(b)", pa11},
596
597 /* Floating Point Coprocessor Instructions */
598
599 { "fldwx", 0x24000000, 0xfc001f80, "cxx(s,b),fT", pa10},
600 { "fldwx", 0x24000000, 0xfc001f80, "cxx(b),fT", pa10},
601 { "flddx", 0x2c000000, 0xfc001fc0, "cxx(s,b),ft", pa10},
602 { "flddx", 0x2c000000, 0xfc001fc0, "cxx(b),ft", pa10},
603 { "fstwx", 0x24000200, 0xfc001f80, "cxfT,x(s,b)", pa10},
604 { "fstwx", 0x24000200, 0xfc001f80, "cxfT,x(b)", pa10},
605 { "fstdx", 0x2c000200, 0xfc001fc0, "cxft,x(s,b)", pa10},
606 { "fstdx", 0x2c000200, 0xfc001fc0, "cxft,x(b)", pa10},
607 { "fstqx", 0x3c000200, 0xfc001fc0, "cxft,x(s,b)", pa10},
608 { "fstqx", 0x3c000200, 0xfc001fc0, "cxft,x(b)", pa10},
609 { "fldws", 0x24001000, 0xfc001f80, "cm5(s,b),fT", pa10},
610 { "fldws", 0x24001000, 0xfc001f80, "cm5(b),fT", pa10},
611 { "fldds", 0x2c001000, 0xfc001fc0, "cm5(s,b),ft", pa10},
612 { "fldds", 0x2c001000, 0xfc001fc0, "cm5(b),ft", pa10},
613 { "fstws", 0x24001200, 0xfc001f80, "cmfT,5(s,b)", pa10},
614 { "fstws", 0x24001200, 0xfc001f80, "cmfT,5(b)", pa10},
615 { "fstds", 0x2c001200, 0xfc001fc0, "cmft,5(s,b)", pa10},
616 { "fstds", 0x2c001200, 0xfc001fc0, "cmft,5(b)", pa10},
617 { "fstqs", 0x3c001200, 0xfc001fc0, "cmft,5(s,b)", pa10},
618 { "fstqs", 0x3c001200, 0xfc001fc0, "cmft,5(b)", pa10},
619 { "fadd", 0x30000600, 0xfc00e7e0, "Ffa,fb,fT", pa10},
620 { "fadd", 0x38000600, 0xfc00e720, "IfA,fB,fT", pa10},
621 { "fsub", 0x30002600, 0xfc00e7e0, "Ffa,fb,fT", pa10},
622 { "fsub", 0x38002600, 0xfc00e720, "IfA,fB,fT", pa10},
623 { "fmpy", 0x30004600, 0xfc00e7e0, "Ffa,fb,fT", pa10},
624 { "fmpy", 0x38004600, 0xfc00e720, "IfA,fB,fT", pa10},
625 { "fdiv", 0x30006600, 0xfc00e7e0, "Ffa,fb,fT", pa10},
626 { "fdiv", 0x38006600, 0xfc00e720, "IfA,fB,fT", pa10},
627 { "fsqrt", 0x30008000, 0xfc1fe7e0, "Ffa,fT", pa10},
628 { "fsqrt", 0x38008000, 0xfc1fe720, "FfA,fT", pa10},
629 { "fabs", 0x30006000, 0xfc1fe7e0, "Ffa,fT", pa10},
630 { "fabs", 0x38006000, 0xfc1fe720, "FfA,fT", pa10},
631 { "frem", 0x30008600, 0xfc00e7e0, "Ffa,fb,fT", pa10},
632 { "frem", 0x38008600, 0xfc00e720, "FfA,fB,fT", pa10},
633 { "frnd", 0x3000a000, 0xfc1fe7e0, "Ffa,fT", pa10},
634 { "frnd", 0x3800a000, 0xfc1fe720, "FfA,fT", pa10},
635 { "fcpy", 0x30004000, 0xfc1fe7e0, "Ffa,fT", pa10},
636 { "fcpy", 0x38004000, 0xfc1fe720, "FfA,fT", pa10},
637 { "fcnvff", 0x30000200, 0xfc1f87e0, "FGfa,fT", pa10},
638 { "fcnvff", 0x38000200, 0xfc1f8720, "FGfA,fT", pa10},
639 { "fcnvxf", 0x30008200, 0xfc1f87e0, "FGfa,fT", pa10},
640 { "fcnvxf", 0x38008200, 0xfc1f8720, "FGfA,fT", pa10},
641 { "fcnvfx", 0x30010200, 0xfc1f87e0, "FGfa,fT", pa10},
642 { "fcnvfx", 0x38010200, 0xfc1f8720, "FGfA,fT", pa10},
643 { "fcnvfxt", 0x30018200, 0xfc1f87e0, "FGfa,fT", pa10},
644 { "fcnvfxt", 0x38018200, 0xfc1f8720, "FGfA,fT", pa10},
645 { "fmpyfadd", 0xb8000000, 0xfc000020, "IfA,fB,fC,fT", pa20, FLAG_STRICT},
646 { "fmpynfadd", 0xb8000020, 0xfc000020, "IfA,fB,fC,fT", pa20, FLAG_STRICT},
647 { "fneg", 0x3000c000, 0xfc1fe7e0, "Ffa,fT", pa20, FLAG_STRICT},
648 { "fneg", 0x3800c000, 0xfc1fe720, "IfA,fT", pa20, FLAG_STRICT},
649 { "fnegabs", 0x3000e000, 0xfc1fe7e0, "Ffa,fT", pa20, FLAG_STRICT},
650 { "fnegabs", 0x3800e000, 0xfc1fe720, "IfA,fT", pa20, FLAG_STRICT},
651 { "fcmp", 0x30000400, 0xfc00e7e0, "F?ffa,fb", pa10},
652 { "fcmp", 0x38000400, 0xfc00e720, "I?ffA,fB", pa10},
653 { "xmpyu", 0x38004700, 0xfc00e720, "fX,fB,fT", pa11},
654 { "fmpyadd", 0x18000000, 0xfc000000, "Hfi,fj,fk,fl,fm", pa11},
655 { "fmpysub", 0x98000000, 0xfc000000, "Hfi,fj,fk,fl,fm", pa11},
656 { "ftest", 0x30002420, 0xffffffff, "", pa10},
657 { "fid", 0x30000000, 0xffffffff, "", pa11},
658
659 /* Performance Monitor Instructions */
660
661 { "pmdis", 0x30000280, 0xffffffdf, "N", pa20, FLAG_STRICT},
662 { "pmenb", 0x30000680, 0xffffffff, "", pa20, FLAG_STRICT},
663
664 /* Assist Instructions */
665
666 { "spop0", 0x10000000, 0xfc000600, "v,ON", pa10},
667 { "spop1", 0x10000200, 0xfc000600, "v,oNt", pa10},
668 { "spop2", 0x10000400, 0xfc000600, "v,1Nb", pa10},
669 { "spop3", 0x10000600, 0xfc000600, "v,0Nx,b", pa10},
670 { "copr", 0x30000000, 0xfc000000, "u,2N", pa10},
671 { "cldwx", 0x24000000, 0xfc001e00, "ucxx(s,b),t", pa10},
672 { "cldwx", 0x24000000, 0xfc001e00, "ucxx(b),t", pa10},
673 { "clddx", 0x2c000000, 0xfc001e00, "ucxx(s,b),t", pa10},
674 { "clddx", 0x2c000000, 0xfc001e00, "ucxx(b),t", pa10},
675 { "cstwx", 0x24000200, 0xfc001e00, "ucxt,x(s,b)", pa10},
676 { "cstwx", 0x24000200, 0xfc001e00, "ucxt,x(b)", pa10},
677 { "cstdx", 0x2c000200, 0xfc001e00, "ucxt,x(s,b)", pa10},
678 { "cstdx", 0x2c000200, 0xfc001e00, "ucxt,x(b)", pa10},
679 { "cldws", 0x24001000, 0xfc001e00, "ucm5(s,b),t", pa10},
680 { "cldws", 0x24001000, 0xfc001e00, "ucm5(b),t", pa10},
681 { "cldds", 0x2c001000, 0xfc001e00, "ucm5(s,b),t", pa10},
682 { "cldds", 0x2c001000, 0xfc001e00, "ucm5(b),t", pa10},
683 { "cstws", 0x24001200, 0xfc001e00, "ucmt,5(s,b)", pa10},
684 { "cstws", 0x24001200, 0xfc001e00, "ucmt,5(b)", pa10},
685 { "cstds", 0x2c001200, 0xfc001e00, "ucmt,5(s,b)", pa10},
686 { "cstds", 0x2c001200, 0xfc001e00, "ucmt,5(b)", pa10},
687 { "cldw", 0x24000000, 0xfc001e00, "ucxx(s,b),t", pa10, FLAG_STRICT},
688 { "cldw", 0x24000000, 0xfc001e00, "ucxx(b),t", pa10, FLAG_STRICT},
689 { "cldw", 0x24001000, 0xfc001e00, "ucm5(s,b),t", pa10, FLAG_STRICT},
690 { "cldw", 0x24001000, 0xfc001e00, "ucm5(b),t", pa10, FLAG_STRICT},
691 { "cldd", 0x2c000000, 0xfc001e00, "ucxx(s,b),t", pa10, FLAG_STRICT},
692 { "cldd", 0x2c000000, 0xfc001e00, "ucxx(b),t", pa10, FLAG_STRICT},
693 { "cldd", 0x2c001000, 0xfc001e00, "ucm5(s,b),t", pa10, FLAG_STRICT},
694 { "cldd", 0x2c001000, 0xfc001e00, "ucm5(b),t", pa20, FLAG_STRICT},
695 { "cstw", 0x24000200, 0xfc001e00, "ucxt,x(s,b)", pa10, FLAG_STRICT},
696 { "cstw", 0x24000200, 0xfc001e00, "ucxt,x(b)", pa10, FLAG_STRICT},
697 { "cstw", 0x24001200, 0xfc001e00, "ucmt,5(s,b)", pa10, FLAG_STRICT},
698 { "cstw", 0x24001200, 0xfc001e00, "ucmt,5(b)", pa10, FLAG_STRICT},
699 { "cstd", 0x2c000200, 0xfc001e00, "ucxt,x(s,b)", pa10, FLAG_STRICT},
700 { "cstd", 0x2c000200, 0xfc001e00, "ucxt,x(b)", pa10, FLAG_STRICT},
701 { "cstd", 0x2c001200, 0xfc001e00, "ucmt,5(s,b)", pa10, FLAG_STRICT},
702 { "cstd", 0x2c001200, 0xfc001e00, "ucmt,5(b)", pa10, FLAG_STRICT},
703 };
704
705 #define NUMOPCODES ((sizeof pa_opcodes)/(sizeof pa_opcodes[0]))
706
707 /* SKV 12/18/92. Added some denotations for various operands. */
708
709 #define PA_IMM11_AT_31 'i'
710 #define PA_IMM14_AT_31 'j'
711 #define PA_IMM21_AT_31 'k'
712 #define PA_DISP12 'w'
713 #define PA_DISP17 'W'
714
715 #define N_HPPA_OPERAND_FORMATS 5
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