db_disasm.c revision 1.18 1 1.18 andvar /* $NetBSD: db_disasm.c,v 1.18 2022/04/17 21:24:53 andvar Exp $ */
2 1.1 fredette
3 1.1 fredette /* $OpenBSD: db_disasm.c,v 1.9 2000/04/18 20:02:45 mickey Exp $ */
4 1.1 fredette
5 1.1 fredette /*
6 1.12 snj * Copyright (c) 1999,2005 Michael Shalayeff
7 1.1 fredette * All rights reserved.
8 1.1 fredette *
9 1.12 snj * Permission to use, copy, modify, and distribute this software for any
10 1.12 snj * purpose with or without fee is hereby granted, provided that the above
11 1.12 snj * copyright notice and this permission notice appear in all copies.
12 1.12 snj *
13 1.12 snj * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
14 1.12 snj * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
15 1.12 snj * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
16 1.12 snj * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
17 1.12 snj * WHATSOEVER RESULTING FROM LOSS OF MIND, USE, DATA OR PROFITS, WHETHER IN
18 1.12 snj * AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT
19 1.12 snj * OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
20 1.1 fredette */
21 1.1 fredette /*
22 1.1 fredette * (c) Copyright 1992 HEWLETT-PACKARD COMPANY
23 1.1 fredette *
24 1.1 fredette * To anyone who acknowledges that this file is provided "AS IS"
25 1.1 fredette * without any express or implied warranty:
26 1.1 fredette * permission to use, copy, modify, and distribute this file
27 1.1 fredette * for any purpose is hereby granted without fee, provided that
28 1.1 fredette * the above copyright notice and this notice appears in all
29 1.1 fredette * copies, and that the name of Hewlett-Packard Company not be
30 1.1 fredette * used in advertising or publicity pertaining to distribution
31 1.1 fredette * of the software without specific, written prior permission.
32 1.1 fredette * Hewlett-Packard Company makes no representations about the
33 1.1 fredette * suitability of this software for any purpose.
34 1.1 fredette */
35 1.1 fredette
36 1.1 fredette /*
37 1.1 fredette * unasm.c -- HP_PA Instruction Printer
38 1.1 fredette */
39 1.2 lukem
40 1.2 lukem #include <sys/cdefs.h>
41 1.18 andvar __KERNEL_RCSID(0, "$NetBSD: db_disasm.c,v 1.18 2022/04/17 21:24:53 andvar Exp $");
42 1.1 fredette
43 1.1 fredette #include <sys/param.h>
44 1.1 fredette #include <sys/systm.h>
45 1.1 fredette
46 1.1 fredette #include <machine/db_machdep.h>
47 1.16 skrll
48 1.1 fredette #include <ddb/db_access.h>
49 1.1 fredette #include <ddb/db_sym.h>
50 1.1 fredette #include <ddb/db_output.h>
51 1.1 fredette #include <ddb/db_interface.h>
52 1.1 fredette
53 1.16 skrll #ifndef _KERNEL
54 1.16 skrll #include <string.h>
55 1.16 skrll #endif
56 1.1 fredette
57 1.1 fredette /* IMPORTANT NOTE:
58 1.1 fredette * All modules using this header may assume that the datatype "int" is a
59 1.1 fredette * 32-bit (or > 32-bit) signed quantity.
60 1.1 fredette */
61 1.1 fredette
62 1.1 fredette
63 1.1 fredette /* Spectrum Architecturally Defined Datatypes */
64 1.1 fredette struct doubleword {
65 1.1 fredette int wd0;
66 1.1 fredette int wd1;
67 1.1 fredette };
68 1.1 fredette
69 1.1 fredette struct quadword {
70 1.1 fredette struct doubleword d0;
71 1.1 fredette struct doubleword d1;
72 1.1 fredette };
73 1.1 fredette
74 1.1 fredette /* datatypes for halfword and byte fields of a word are defined
75 1.1 fredette * in ssBits.h */
76 1.1 fredette
77 1.1 fredette /* Memory addressing datatypes */
78 1.1 fredette typedef unsigned int SID, /* range [0..MAXSID] */
79 1.1 fredette PGID, /* range [0..MAXPGID] */
80 1.1 fredette OFS, /* range [0..MAXINT] */
81 1.1 fredette REALADR; /* range [0..MAXINT] */
82 1.1 fredette
83 1.1 fredette
84 1.1 fredette /* data sizes */
85 1.1 fredette enum datasize { Byte, Halfword, Word, Doubleword, Quadword, Variable };
86 1.1 fredette
87 1.1 fredette /* Miscellaneous datatypes */
88 1.1 fredette typedef unsigned int FLAGS;
89 1.1 fredette
90 1.1 fredette /* struct for entry in unwind table */
91 1.1 fredette struct ute {
92 1.1 fredette int word1;
93 1.1 fredette int word2;
94 1.1 fredette int word3;
95 1.1 fredette int word4;
96 1.1 fredette };
97 1.1 fredette /*
98 1.1 fredette * Header: /n/schirf/u/baford/CVS/mach4-parisc/kernel_unused/parisc/kdb/unasm.c,v 1.5 1994/07/21 22:32:05 mike Exp
99 1.1 fredette *
100 1.1 fredette * Spectrum Instruction Set Condition Completer Bit Assignments
101 1.1 fredette * Dan Magenheimer - 6/14/82
102 1.1 fredette * Terrence Miller - 6/21/82
103 1.1 fredette * Computer Research Center, Hewlett-Packard Labs
104 1.1 fredette *
105 1.1 fredette * (c) copyright 1982
106 1.1 fredette * (p) protected 1982
107 1.1 fredette * The Hewlett-Packard Company
108 1.1 fredette * Hewlett-Packard Laboratories
109 1.1 fredette * Computer Research Center
110 1.1 fredette * Palo Alto, California
111 1.1 fredette *
112 1.1 fredette * *** HP Company Confidential ***
113 1.1 fredette *
114 1.1 fredette * Log: unasm.c,v
115 1.1 fredette * Revision 1.5 1994/07/21 22:32:05 mike
116 1.1 fredette * official HP copyright notice
117 1.1 fredette *
118 1.1 fredette * Revision 1.4 1992/07/08 12:19:52 dalton
119 1.1 fredette * Checkin before split to 1.0.4 release (by LBS).
120 1.1 fredette *
121 1.1 fredette * Revision 1.3 92/06/06 16:16:45 dalton
122 1.1 fredette * *** empty log message ***
123 1.1 fredette *
124 1.1 fredette * Revision 1.2 92/06/06 15:42:28 dalton
125 1.1 fredette * Changed include to be a path relative to hp800.
126 1.1 fredette *
127 1.1 fredette * Revision 1.1 92/06/06 14:05:33 dalton
128 1.1 fredette * Initial revision
129 1.1 fredette *
130 1.1 fredette * Revision 1.2 91/04/14 20:29:49 osfrcs
131 1.1 fredette * Initial version.
132 1.1 fredette * [91/03/30 09:20:34 brezak]
133 1.1 fredette *
134 1.1 fredette * Revision 1.1.2.2 91/04/02 10:42:50 brezak
135 1.1 fredette * Initial version.
136 1.1 fredette * [91/03/30 09:20:34 brezak]
137 1.1 fredette *
138 1.1 fredette * Revision 1.1.1.2 91/03/30 09:20:34 brezak
139 1.1 fredette * Initial version.
140 1.1 fredette *
141 1.1 fredette * Revision 1.1 88/07/11 14:05:15 14:05:15 ren (Bob Naas)
142 1.1 fredette * Initial revision
143 1.1 fredette *
144 1.1 fredette * Revision 5.2 87/07/02 14:45:57 14:45:57 kent (Kent McMullen)
145 1.1 fredette * added constants to support addDasm and addDCond added to ssDID.c
146 1.1 fredette *
147 1.1 fredette * Revision 5.1 87/02/27 11:12:08 11:12:08 kent (Kent McMullen)
148 1.1 fredette * update all src to 5.1
149 1.1 fredette *
150 1.1 fredette * Revision 5.0 87/02/18 16:31:15 16:31:15 kent (Kent McMullen)
151 1.1 fredette * update all revision numbers to 5.0 for release
152 1.1 fredette *
153 1.1 fredette * Revision 1.1 86/07/15 08:34:55 08:34:55 kent (Kent McMullen)
154 1.1 fredette * Initial revision
155 1.1 fredette *
156 1.1 fredette * Revision 4.1 83/10/25 17:01:22 17:01:22 djm (Daniel J Magenheimer)
157 1.1 fredette * First release for ACD v4
158 1.1 fredette *
159 1.1 fredette * Revision 3.0 83/06/13 10:22:59 djm (Daniel Magenheimer)
160 1.1 fredette * First release for distribution
161 1.1 fredette *
162 1.1 fredette *
163 1.1 fredette */
164 1.1 fredette
165 1.1 fredette
166 1.1 fredette /* Arithmetic/Logical Conditions */
167 1.1 fredette #define NEV 0x0
168 1.1 fredette #define EQZ 0x2
169 1.1 fredette #define LT 0x4
170 1.1 fredette #define LE 0x6
171 1.1 fredette #define LLT 0x8
172 1.1 fredette #define NUV 0x8
173 1.1 fredette #define LLE 0xA
174 1.1 fredette #define ZNV 0xA
175 1.1 fredette #define SV 0xC
176 1.1 fredette #define OD 0xE
177 1.1 fredette #define TR 0x1
178 1.1 fredette #define NEQZ 0x3
179 1.1 fredette #define GE 0x5
180 1.1 fredette #define GT 0x7
181 1.1 fredette #define LGE 0x9
182 1.1 fredette #define UV 0x9
183 1.1 fredette #define LGT 0xB
184 1.1 fredette #define VNZ 0xB
185 1.1 fredette #define NSV 0xD
186 1.1 fredette #define EV 0xF
187 1.1 fredette
188 1.1 fredette /* unit conditions */
189 1.1 fredette #define SBZ 0x4
190 1.1 fredette #define SHZ 0x6
191 1.1 fredette #define SDC 0x8
192 1.1 fredette #define SBC 0xC
193 1.1 fredette #define SHC 0xE
194 1.1 fredette #define NBZ 0x5
195 1.1 fredette #define NHZ 0x7
196 1.1 fredette #define NDC 0x9
197 1.1 fredette #define NBC 0xD
198 1.1 fredette #define NHC 0xF
199 1.1 fredette
200 1.1 fredette /*field conditions */
201 1.1 fredette #define XEQ 0x1
202 1.1 fredette #define XLT 0x2
203 1.1 fredette #define XOD 0x3
204 1.1 fredette #define XTR 0x4
205 1.1 fredette #define XNE 0x5
206 1.1 fredette #define XGE 0x6
207 1.1 fredette #define XEV 0x7
208 1.1 fredette
209 1.1 fredette
210 1.1 fredette
211 1.1 fredette /*
212 1.1 fredette * These macros are designed to be portable to all machines that have
213 1.1 fredette * a wordsize greater than or equal to 32 bits that support the portable
214 1.1 fredette * C compiler and the standard C preprocessor. Wordsize (default 32)
215 1.1 fredette * and bitfield assignment (default left-to-right, unlike VAX, PDP-11)
216 1.1 fredette * should be predefined using the constants HOSTWDSZ and BITFRL and
217 1.1 fredette * the C compiler "-D" flag (e.g., -DHOSTWDSZ=36 -DBITFLR for the DEC-20).
218 1.1 fredette * Note that the macro arguments assume that the integer being referenced
219 1.1 fredette * is a 32-bit integer (right-justified on the 20) and that bit 0 is the
220 1.1 fredette * most significant bit.
221 1.1 fredette */
222 1.1 fredette
223 1.1 fredette #ifndef HOSTWDSZ
224 1.1 fredette #define HOSTWDSZ 32
225 1.1 fredette #endif
226 1.1 fredette
227 1.1 fredette #ifdef vax
228 1.1 fredette #ifndef BITFLR
229 1.1 fredette #define BITFRL
230 1.1 fredette #endif
231 1.1 fredette #else
232 1.1 fredette #define BITFLR
233 1.1 fredette #endif
234 1.1 fredette
235 1.1 fredette /*########################### Macros ######################################*/
236 1.1 fredette
237 1.1 fredette /*---------------------------------------------------------------------------
238 1.1 fredette * DeclareBitfield$Reference - Declare a structure to be used to reference
239 1.1 fredette * a specified bitfield within an integer (using BitfR, see below).
240 1.1 fredette * The argument "n" must be an identifier name not used elsewhere in the
241 1.1 fredette * program , "s" and "l" must (alas!) be constants. (Suggestion: if
242 1.1 fredette * "s" == 2 and "l" == 8, use _b28 for "n".) The name "BITFLR" should
243 1.1 fredette * be pre-defined if the compiler assigns bitfields from left-to-right.
244 1.9 wiz * The resultant macro expansion defines a structure in which the bit field
245 1.1 fredette * starting at position "s" with length "l" may be referenced by accessing
246 1.1 fredette * member "n". [Note: The leftmost bits in a 36-bit word may be accessed
247 1.1 fredette * by specifying -4 <= s < 0 on the DEC-20.]
248 1.1 fredette *---------------------------------------------------------------------------*/
249 1.1 fredette
250 1.1 fredette #ifdef BITFRL
251 1.4 matt #define DeclBitfR(s,l,n) struct n { int:(HOSTWDSZ-(s)-(l)); unsigned n:l;} n;
252 1.1 fredette #else
253 1.4 matt #define DeclBitfR(s,l,n) struct n { int:((s)+(HOSTWDSZ-32)); unsigned n:l;} n;
254 1.1 fredette #endif
255 1.1 fredette
256 1.1 fredette /*---------------------------------------------------------------------------
257 1.1 fredette * Bitfield$Reference - Reference a specified bitfield within an integer.
258 1.1 fredette * The argument "i" must be an addressable variable (i.e., not a register
259 1.1 fredette * variable or an expression... but see BitfX below), "n" must be an
260 1.1 fredette * identifier name declared in a DeclBitfR invocation. The resultant
261 1.1 fredette * macro expansion references the bit field in "i" described by the
262 1.1 fredette * DeclBitfR invocation with the same name ("n"). BitfR may be used as
263 1.1 fredette * an lvalue or an rvalue. (i.e., either side of an assignment statement)
264 1.1 fredette * The "s" and "l" arguments are historical and are now unused. (They
265 1.1 fredette * correspond to the "s" and "l" arguments in DeclBitfR)
266 1.1 fredette * Translates to a single instruction on both the VAX and the DEC-20.
267 1.1 fredette *---------------------------------------------------------------------------*/
268 1.4 matt #define BitfR(i,s,l,n) (i.n.n)
269 1.1 fredette
270 1.1 fredette /*---------------------------------------------------------------------------
271 1.1 fredette * Bitfield$eXtract - Extract the specified field from an integer. Arguments
272 1.1 fredette * are the same as for BitfR (except no "n"), however both "s" and "l" need
273 1.1 fredette * no longer be constants. May only be used as an rvalue. Translates to
274 1.1 fredette * two instructions on the VAX, three on the DEC-20.
275 1.1 fredette *---------------------------------------------------------------------------*/
276 1.1 fredette
277 1.4 matt #define BitfX(i,s,l) (((i.w) >> (32-(s)-(l))) & ((1 << (l)) - 1))
278 1.1 fredette
279 1.1 fredette
280 1.1 fredette /*---------------------------------------------------------------------------
281 1.1 fredette * Mask$32bits - Mask the low order 32 bits of passed word. No-op on 32
282 1.1 fredette * bit machines.
283 1.1 fredette *---------------------------------------------------------------------------*/
284 1.1 fredette
285 1.1 fredette #if HOSTWDSZ > 32
286 1.1 fredette #define Mask32(x) ((x) & 0xffffffff)
287 1.1 fredette #else
288 1.1 fredette #define Mask32(x) (x)
289 1.1 fredette #endif
290 1.1 fredette
291 1.1 fredette
292 1.1 fredette /*---------------------------------------------------------------------------
293 1.1 fredette * SignExtend$32bits - Force the high-order bits in machines with wordsize
294 1.1 fredette * longer than 32 to match bit 0.
295 1.1 fredette *---------------------------------------------------------------------------*/
296 1.1 fredette
297 1.1 fredette #if HOSTWDSZ > 32
298 1.1 fredette #define SignEx32(x) (((x) & 0x80000000) ? ((x) | ((unsigned)-1 << 32)) \
299 1.1 fredette : Mask32(x))
300 1.1 fredette #else
301 1.1 fredette #define SignEx32(x) (x)
302 1.1 fredette #endif
303 1.1 fredette
304 1.1 fredette /**************************/
305 1.1 fredette /* bit field declarations */
306 1.1 fredette /**************************/
307 1.1 fredette
308 1.1 fredette /* since the compiler complains if a structure name is declared twice, even
309 1.1 fredette * if the declarations are identical, all DeclBitfR invocations are
310 1.1 fredette * given here in one file. */
311 1.1 fredette
312 1.4 matt union insn {
313 1.4 matt int w;
314 1.1 fredette DeclBitfR(0,1,_b01)
315 1.1 fredette DeclBitfR(0,15,_b015)
316 1.1 fredette DeclBitfR(0,16,_b016)
317 1.1 fredette DeclBitfR(0,4,_b04)
318 1.1 fredette DeclBitfR(0,6,_b06)
319 1.1 fredette DeclBitfR(0,8,_b08)
320 1.1 fredette DeclBitfR(4,1,_b41)
321 1.1 fredette DeclBitfR(4,4,_b44)
322 1.1 fredette DeclBitfR(6,1,_b61)
323 1.1 fredette DeclBitfR(6,13,_b613)
324 1.1 fredette DeclBitfR(6,15,_b615)
325 1.1 fredette DeclBitfR(6,17,_b617)
326 1.1 fredette DeclBitfR(6,26,_b626)
327 1.1 fredette DeclBitfR(6,5,_b65)
328 1.1 fredette DeclBitfR(7,1,_b71)
329 1.1 fredette DeclBitfR(8,1,_b81)
330 1.1 fredette DeclBitfR(8,4,_b84)
331 1.1 fredette DeclBitfR(8,8,_b88)
332 1.1 fredette DeclBitfR(9,1,_b91)
333 1.1 fredette DeclBitfR(10,1,_b101)
334 1.1 fredette DeclBitfR(11,1,_b111)
335 1.1 fredette DeclBitfR(11,10,_b1110)
336 1.1 fredette DeclBitfR(11,4,_b114)
337 1.1 fredette DeclBitfR(11,5,_b115)
338 1.1 fredette DeclBitfR(12,1,_b121)
339 1.1 fredette DeclBitfR(12,4,_b124)
340 1.1 fredette DeclBitfR(13,1,_b131)
341 1.1 fredette DeclBitfR(14,1,_b141)
342 1.1 fredette DeclBitfR(15,1,_b151)
343 1.1 fredette DeclBitfR(16,1,_b161)
344 1.1 fredette DeclBitfR(16,15,_b1615)
345 1.1 fredette DeclBitfR(16,16,_b1616)
346 1.1 fredette DeclBitfR(16,2,_b162)
347 1.1 fredette DeclBitfR(16,3,_b163)
348 1.1 fredette DeclBitfR(16,4,_b164)
349 1.1 fredette DeclBitfR(16,5,_b165)
350 1.1 fredette DeclBitfR(16,8,_b168)
351 1.1 fredette DeclBitfR(17,1,_b171)
352 1.1 fredette DeclBitfR(18,1,_b181)
353 1.1 fredette DeclBitfR(18,13,_b1813)
354 1.1 fredette DeclBitfR(18,2,_b182)
355 1.1 fredette DeclBitfR(18,7,_b187)
356 1.1 fredette DeclBitfR(19,1,_b191)
357 1.1 fredette DeclBitfR(19,8,_b198)
358 1.1 fredette DeclBitfR(19,10,_b1910)
359 1.1 fredette DeclBitfR(20,11,_b2011)
360 1.1 fredette DeclBitfR(20,2,_b202)
361 1.1 fredette DeclBitfR(20,4,_b204)
362 1.1 fredette DeclBitfR(21,10,_b2110)
363 1.1 fredette DeclBitfR(21,2,_b212)
364 1.1 fredette DeclBitfR(21,5,_b215)
365 1.1 fredette DeclBitfR(22,5,_b225)
366 1.1 fredette DeclBitfR(23,3,_b233)
367 1.1 fredette DeclBitfR(24,1,_b241)
368 1.1 fredette DeclBitfR(24,4,_b244)
369 1.1 fredette DeclBitfR(24,8,_b248)
370 1.1 fredette DeclBitfR(25,1,_b251)
371 1.1 fredette DeclBitfR(26,1,_b261)
372 1.1 fredette DeclBitfR(27,1,_b271)
373 1.1 fredette DeclBitfR(27,4,_b274)
374 1.1 fredette DeclBitfR(27,5,_b275)
375 1.1 fredette DeclBitfR(28,1,_b281)
376 1.1 fredette DeclBitfR(28,4,_b284)
377 1.1 fredette DeclBitfR(29,1,_b291)
378 1.1 fredette DeclBitfR(30,1,_b301)
379 1.1 fredette DeclBitfR(30,2,_b302)
380 1.1 fredette DeclBitfR(31,1,_b311)
381 1.4 matt };
382 1.1 fredette
383 1.1 fredette /******************/
384 1.1 fredette /* Word subfields */
385 1.1 fredette /******************/
386 1.1 fredette
387 1.1 fredette #define Sign(i) BitfR(i,0,1,_b01)
388 1.1 fredette /* halfwords */
389 1.1 fredette #define Hwd0(i) BitfR(i,0,16,_b016)
390 1.1 fredette #define Hwd1sign(i) BitfR(i,16,1,_b161)
391 1.1 fredette #define Hwd1(i) BitfR(i,16,16,_b1616)
392 1.1 fredette /* bytes */
393 1.1 fredette #define Byte0(i) BitfR(i,0,8,_b08)
394 1.1 fredette #define Byte1sign(i) BitfR(i,8,1,_b81)
395 1.1 fredette #define Byte1(i) BitfR(i,8,8,_b88)
396 1.1 fredette #define Byte2(i) BitfR(i,16,8,_b168)
397 1.1 fredette #define Byte3sign(i) BitfR(i,24,1,_b241)
398 1.1 fredette #define Byte3(i) BitfR(i,24,8,_b248)
399 1.1 fredette /* digits */
400 1.1 fredette #define Digit0(i) BitfR(i,0,4,_b04)
401 1.1 fredette #define Digit1(i) BitfR(i,4,4,_b44)
402 1.1 fredette #define Digit2(i) BitfR(i,8,4,_b84)
403 1.1 fredette #define Digit3(i) BitfR(i,12,4,_b124)
404 1.1 fredette #define Digit4(i) BitfR(i,16,4,_b164)
405 1.1 fredette #define Digit5(i) BitfR(i,20,4,_b204)
406 1.1 fredette #define Digit6(i) BitfR(i,24,4,_b244)
407 1.1 fredette #define Digit7(i) BitfR(i,28,4,_b284)
408 1.1 fredette
409 1.1 fredette /* Wordsize definitions */
410 1.1 fredette
411 1.1 fredette #define BIT_P_DW 64 /* bits/doubleword */
412 1.1 fredette #define BIT_P_WD 32 /* bits/word */
413 1.1 fredette #define BIT_P_HW 16 /* bits/halfword */
414 1.1 fredette #define BIT_P_BYT 8 /* bits/byte */
415 1.1 fredette #define BYT_P_DW 8 /* bytes/doubleword */
416 1.1 fredette #define BYT_P_WD 4 /* bytes/word */
417 1.1 fredette #define BYT_P_HW 2 /* bytes/halfword */
418 1.1 fredette
419 1.1 fredette /* Masks */
420 1.1 fredette
421 1.1 fredette #define WDMASK 0xffffffff /* 32-bit mask */
422 1.1 fredette #define OFSMASK 0xffffffff /* 32-bit mask */
423 1.1 fredette #define SIDMASK 0xffffffff /* 32-bit mask */
424 1.1 fredette #define SIGNMASK 0x80000000 /* 32 bit word sign bit */
425 1.1 fredette
426 1.1 fredette /* Alignments */
427 1.1 fredette
428 1.1 fredette #define wdalign(ofs) (ofs &= ~3)
429 1.1 fredette /*
430 1.1 fredette * Header: /n/schirf/u/baford/CVS/mach4-parisc/kernel_unused/parisc/kdb/unasm.c,v 1.5 1994/07/21 22:32:05 mike Exp
431 1.1 fredette *
432 1.1 fredette * Spectrum Simulator Instruction Opcode Definitions
433 1.1 fredette * Dan Magenheimer
434 1.1 fredette * Computer Research Center, Hewlett-Packard Labs
435 1.1 fredette *
436 1.1 fredette * (c) copyright 1982
437 1.1 fredette * (p) protected 1982
438 1.1 fredette * The Hewlett-Packard Company
439 1.1 fredette * Hewlett-Packard Laboratories
440 1.1 fredette * Computer Research Center
441 1.1 fredette * Palo Alto, California
442 1.1 fredette *
443 1.1 fredette * *** HP Company Confidential ***
444 1.1 fredette *
445 1.1 fredette * Log: unasm.c,v
446 1.1 fredette * Revision 1.5 1994/07/21 22:32:05 mike
447 1.1 fredette * official HP copyright notice
448 1.1 fredette *
449 1.1 fredette * Revision 1.4 1992/07/08 12:19:52 dalton
450 1.1 fredette * Checkin before split to 1.0.4 release (by LBS).
451 1.1 fredette *
452 1.1 fredette * Revision 1.3 92/06/06 16:16:45 dalton
453 1.1 fredette * *** empty log message ***
454 1.1 fredette *
455 1.1 fredette * Revision 1.2 92/06/06 15:42:28 dalton
456 1.1 fredette * Changed include to be a path relative to hp800.
457 1.1 fredette *
458 1.1 fredette * Revision 1.1 92/06/06 14:05:33 dalton
459 1.1 fredette * Initial revision
460 1.1 fredette *
461 1.1 fredette * Revision 1.2 91/04/14 20:29:49 osfrcs
462 1.1 fredette * Initial version.
463 1.1 fredette * [91/03/30 09:20:34 brezak]
464 1.1 fredette *
465 1.1 fredette * Revision 1.1.2.2 91/04/02 10:42:50 brezak
466 1.1 fredette * Initial version.
467 1.1 fredette * [91/03/30 09:20:34 brezak]
468 1.1 fredette *
469 1.1 fredette * Revision 1.1.1.2 91/03/30 09:20:34 brezak
470 1.1 fredette * Initial version.
471 1.1 fredette *
472 1.1 fredette * Revision 6.1 89/09/06 10:39:58 burroughs
473 1.1 fredette * Added shadow registers for gr0-gr7.
474 1.1 fredette * gr0-7 are copied into sh0-7 whenever a trap occurs
475 1.1 fredette * the instruction RFIR restores gr0-7 from sh0-7 and returns from
476 1.1 fredette * interrupt.
477 1.1 fredette * the "sh" command displays the shadow registers
478 1.1 fredette * = sh7 0x789 works, too.
479 1.1 fredette *
480 1.1 fredette * Revision 6.0 89/09/01 15:46:37 15:46:37 burroughs (Greg Burroughs)
481 1.1 fredette * baseline for pcx simple offsite
482 1.1 fredette *
483 1.1 fredette * Revision 5.2 87/09/02 14:30:23 14:30:23 kent
484 1.1 fredette * separated stat gathering for indexed vs short.
485 1.1 fredette * this will NOT work if cache hints ever get used
486 1.1 fredette * since this field was assumed always zero
487 1.1 fredette *
488 1.1 fredette * Revision 5.1 87/02/27 11:12:16 11:12:16 kent (Kent McMullen)
489 1.1 fredette * update all src to 5.1
490 1.1 fredette *
491 1.1 fredette * Revision 5.0 87/02/18 16:31:35 16:31:35 kent (Kent McMullen)
492 1.1 fredette * update all revision numbers to 5.0 for release
493 1.1 fredette *
494 1.1 fredette * Revision 1.1 86/07/15 08:34:57 08:34:57 kent (Kent McMullen)
495 1.1 fredette * Initial revision
496 1.1 fredette *
497 1.1 fredette * Revision 4.1 83/10/25 17:02:34 17:02:34 djm (Daniel J Magenheimer)
498 1.1 fredette * First release for ACD v4
499 1.1 fredette *
500 1.1 fredette * Revision 3.0 83/06/13 10:24:45 djm (Daniel Magenheimer)
501 1.1 fredette * First release for distribution
502 1.1 fredette *
503 1.1 fredette *
504 1.1 fredette */
505 1.1 fredette
506 1.1 fredette /*
507 1.1 fredette * Changes:
508 1.1 fredette * 01/30/90 ejf Simplify SPOPn support, now only gives assist emulation trap.
509 1.1 fredette * 01/19/90 ejf Replace linpak instructions with just FSTQ[SX].
510 1.1 fredette * 12/19/89 ejf Add PA89 new floating point opcode 0E.
511 1.1 fredette * 12/18/89 ejf Change 5 ops to PA89 format.
512 1.1 fredette * 12/01/89 ejf Move additional instructions fmas, fmaa, fld2, fst2 to ssILst
513 1.1 fredette * 09/22/89 ejf Fix unbalanced comments.
514 1.1 fredette */
515 1.1 fredette
516 1.1 fredette
517 1.1 fredette /* ..and modified by hand to remove the load/store short references */
518 1.1 fredette /* ..and modified by hand to make memory management ops conform to the
519 1.1 fredette * requirement that all subops of a major opcode begin in the same
520 1.1 fredette * place and have the same length */
521 1.1 fredette
522 1.1 fredette #define LDW 0x12, 0x00, 0, 0 /* LOAD WORD */
523 1.1 fredette #define LDWM 0x13, 0x00, 0, 0 /* LOAD WORD and MODIFY */
524 1.1 fredette #define LDH 0x11, 0x00, 0, 0 /* LOAD HALFWORD */
525 1.1 fredette #define LDB 0x10, 0x00, 0, 0 /* LOAD BYTE */
526 1.1 fredette #define LDO 0x0d, 0x00, 0, 0 /* LOAD OFFSET */
527 1.1 fredette #define STW 0x1a, 0x00, 0, 0 /* STORE WORD */
528 1.1 fredette #define STWM 0x1b, 0x00, 0, 0 /* STORE WORD and MODIFY */
529 1.1 fredette #define STH 0x19, 0x00, 0, 0 /* STORE HALFWORD */
530 1.1 fredette #define STB 0x18, 0x00, 0, 0 /* STORE BYTE */
531 1.1 fredette #define LDWX 0x03, 0x02, 19, 7 /* LOAD WORD INDEXED */
532 1.1 fredette #define LDHX 0x03, 0x01, 19, 7 /* LOAD HALFWORD INDEXED */
533 1.1 fredette #define LDBX 0x03, 0x00, 19, 7 /* LOAD BYTE INDEXED */
534 1.1 fredette #define LDWAX 0x03, 0x06, 19, 7 /* LOAD WORD ABSOLUTE INDEXED */
535 1.1 fredette #define LDCWX 0x03, 0x07, 19, 7 /* LOAD and CLEAR WORD INDEXED */
536 1.1 fredette #define LDWS 0x03, 0x42, 19, 7 /* LOAD WORD SHORT DISP */
537 1.1 fredette #define LDHS 0x03, 0x41, 19, 7 /* LOAD HALFWORD SHORT DISP */
538 1.1 fredette #define LDBS 0x03, 0x40, 19, 7 /* LOAD BYTE SHORT DISP */
539 1.1 fredette #define LDWAS 0x03, 0x46, 19, 7 /* LOAD WORD ABSOLUTE SHORT DISP */
540 1.1 fredette #define LDCWS 0x03, 0x47, 19, 7 /* LOAD and CLEAR WORD SHORT DISP */
541 1.1 fredette #define STWS 0x03, 0x4a, 19, 7 /* STORE WORD SHORT DISP */
542 1.1 fredette #define STHS 0x03, 0x49, 19, 7 /* STORE HALFWORD SHORT DISP */
543 1.1 fredette #define STBS 0x03, 0x48, 19, 7 /* STORE BYTE SHORT DISP */
544 1.1 fredette #define STWAS 0x03, 0x4e, 19, 7 /* STORE WORD ABSOLUTE SHORT DISP */
545 1.1 fredette #define STBYS 0x03, 0x4c, 19, 7 /* STORE BYTES SHORT DISP */
546 1.1 fredette #define LDIL 0x08, 0x00, 0, 0 /* LOAD IMMED LEFT */
547 1.1 fredette #define ADDIL 0x0a, 0x00, 0, 0 /* ADD IMMED LEFT */
548 1.1 fredette #define BL 0x3a, 0x00, 16, 3 /* BRANCH [and LINK] */
549 1.1 fredette #define GATE 0x3a, 0x01, 16, 3 /* GATEWAY */
550 1.1 fredette #define BLR 0x3a, 0x02, 16, 3 /* BRANCH and LINK REGISTER */
551 1.1 fredette #define BV 0x3a, 0x06, 16, 3 /* BRANCH VECTORED */
552 1.1 fredette #define BE 0x38, 0x00, 0, 0 /* BRANCH EXTERNAL */
553 1.1 fredette #define BLE 0x39, 0x00, 0, 0 /* BRANCH and LINK EXTERNAL */
554 1.1 fredette #define MOVB 0x32, 0x00, 0, 0 /* MOVE and BRANCH */
555 1.1 fredette #define MOVIB 0x33, 0x00, 0, 0 /* MOVE IMMED and BRANCH */
556 1.1 fredette #define COMBT 0x20, 0x00, 0, 0 /* COMPARE and BRANCH if TRUE */
557 1.1 fredette #define COMBF 0x22, 0x00, 0, 0 /* COMPARE and BRANCH if FALSE */
558 1.1 fredette #define COMIBT 0x21, 0x00, 0, 0 /* COMPARE IMMED and BRANCH if TRUE */
559 1.1 fredette #define COMIBF 0x23, 0x00, 0, 0 /* COMPARE IMMED and BRANCH if FALSE */
560 1.1 fredette #define ADDBT 0x28, 0x00, 0, 0 /* ADD and BRANCH if TRUE */
561 1.1 fredette #define ADDBF 0x2a, 0x00, 0, 0 /* ADD and BRANCH if FALSE */
562 1.1 fredette #define ADDIBT 0x29, 0x00, 0, 0 /* ADD IMMED and BRANCH if TRUE */
563 1.1 fredette #define ADDIBF 0x2b, 0x00, 0, 0 /* ADD IMMED and BRANCH if FALSE */
564 1.1 fredette #define BVB 0x30, 0x00, 0, 0 /* BRANCH on VARIABLE BIT */
565 1.1 fredette #define BB 0x31, 0x00, 0, 0 /* BRANCH on BIT */
566 1.1 fredette #define ADD 0x02, 0x30, 20, 7 /* ADD */
567 1.1 fredette #define ADDL 0x02, 0x50, 20, 7 /* ADD LOGICAL */
568 1.1 fredette #define ADDO 0x02, 0x70, 20, 7 /* ADD and TRAP on OVFLO */
569 1.1 fredette #define SH1ADD 0x02, 0x32, 20, 7 /* SHIFT 1, ADD */
570 1.1 fredette #define SH1ADDL 0x02, 0x52, 20, 7 /* SHIFT 1, ADD LOGICAL */
571 1.1 fredette #define SH1ADDO 0x02, 0x72, 20, 7 /* SHIFT 1, ADD and TRAP on OVFLO */
572 1.1 fredette #define SH2ADD 0x02, 0x34, 20, 7 /* SHIFT 2, ADD */
573 1.1 fredette #define SH2ADDL 0x02, 0x54, 20, 7 /* SHIFT 2, ADD LOGICAL */
574 1.1 fredette #define SH2ADDO 0x02, 0x74, 20, 7 /* SHIFT 2, ADD and TRAP on OVFLO */
575 1.1 fredette #define SH3ADD 0x02, 0x36, 20, 7 /* SHIFT 3, ADD */
576 1.1 fredette #define SH3ADDL 0x02, 0x56, 20, 7 /* SHIFT 3, ADD LOGICAL */
577 1.1 fredette #define SH3ADDO 0x02, 0x76, 20, 7 /* SHIFT 3, ADD and TRAP on OVFLO */
578 1.1 fredette #define ADDC 0x02, 0x38, 20, 7 /* ADD with CARRY */
579 1.1 fredette #define ADDCO 0x02, 0x78, 20, 7 /* ADD with CARRY and TRAP on OVFLO */
580 1.1 fredette #define SUB 0x02, 0x20, 20, 7 /* SUBTRACT */
581 1.1 fredette #define SUBO 0x02, 0x60, 20, 7 /* SUBTRACT and TRAP on OVFLO */
582 1.1 fredette #define SUBB 0x02, 0x28, 20, 7 /* SUBTRACT with BORROW */
583 1.1 fredette #define SUBBO 0x02, 0x68, 20, 7 /* SUBTRACT with BORROW and TRAP on OVFLO */
584 1.1 fredette #define SUBT 0x02, 0x26, 20, 7 /* SUBTRACT and TRAP on COND */
585 1.1 fredette #define SUBTO 0x02, 0x66, 20, 7 /* SUBTRACT and TRAP on COND or OVFLO */
586 1.1 fredette #define DS 0x02, 0x22, 20, 7 /* DIVIDE STEP */
587 1.1 fredette #define COMCLR 0x02, 0x44, 20, 7 /* COMPARE and CLEAR */
588 1.1 fredette #define OR 0x02, 0x12, 20, 7 /* INCLUSIVE OR */
589 1.1 fredette #define XOR 0x02, 0x14, 20, 7 /* EXCLUSIVE OR */
590 1.1 fredette #define AND 0x02, 0x10, 20, 7 /* AND */
591 1.1 fredette #define ANDCM 0x02, 0x00, 20, 7 /* AND COMPLEMENT */
592 1.1 fredette #define UXOR 0x02, 0x1c, 20, 7 /* UNIT XOR */
593 1.1 fredette #define UADDCM 0x02, 0x4c, 20, 7 /* UNIT ADD COMPLEMENT */
594 1.1 fredette #define UADDCMT 0x02, 0x4e, 20, 7 /* UNIT ADD COMPLEMENT and TRAP on COND */
595 1.1 fredette #define DCOR 0x02, 0x5c, 20, 7 /* DECIMAL CORRECT */
596 1.1 fredette #define IDCOR 0x02, 0x5e, 20, 7 /* INTERMEDIATE DECIMAL CORRECT */
597 1.1 fredette #define ADDI 0x2d, 0x00, 20, 1 /* ADD to IMMED */
598 1.1 fredette #define ADDIO 0x2d, 0x01, 20, 1 /* ADD to IMMED and TRAP on OVFLO */
599 1.1 fredette #define ADDIT 0x2c, 0x00, 20, 1 /* ADD to IMMED and TRAP on COND */
600 1.1 fredette #define ADDITO 0x2c, 0x01, 20, 1 /* ADD to IMMED and TRAP on COND or OVFLO */
601 1.1 fredette #define SUBI 0x25, 0x00, 20, 1 /* SUBTRACT from IMMED */
602 1.1 fredette #define SUBIO 0x25, 0x01, 20, 1 /* SUBTRACT from IMMED and TRAP on OVFLO */
603 1.1 fredette #define COMICLR 0x24, 0x00, 0, 0 /* COMPARE IMMED and CLEAR */
604 1.1 fredette #define VSHD 0x34, 0x00, 19, 3 /* VARIABLE SHIFT DOUBLE */
605 1.1 fredette #define SHD 0x34, 0x02, 19, 3 /* SHIFT DOUBLE */
606 1.1 fredette #define VEXTRU 0x34, 0x04, 19, 3 /* VARIABLE EXTRACT RIGHT UNSIGNED */
607 1.1 fredette #define VEXTRS 0x34, 0x05, 19, 3 /* VARIABLE EXTRACT RIGHT SIGNED */
608 1.1 fredette #define EXTRU 0x34, 0x06, 19, 3 /* EXTRACT RIGHT UNSIGNED */
609 1.1 fredette #define EXTRS 0x34, 0x07, 19, 3 /* EXTRACT RIGHT SIGNED */
610 1.1 fredette #define VDEP 0x35, 0x01, 19, 3 /* VARIABLE DEPOSIT */
611 1.1 fredette #define DEP 0x35, 0x03, 19, 3 /* DEPOSIT */
612 1.1 fredette #define VDEPI 0x35, 0x05, 19, 3 /* VARIABLE DEPOSIT IMMED */
613 1.1 fredette #define DEPI 0x35, 0x07, 19, 3 /* DEPOSIT IMMED */
614 1.1 fredette #define ZVDEP 0x35, 0x00, 19, 3 /* ZERO and VARIABLE DEPOSIT */
615 1.1 fredette #define ZDEP 0x35, 0x02, 19, 3 /* ZERO and DEPOSIT */
616 1.1 fredette #define ZVDEPI 0x35, 0x04, 19, 3 /* ZERO and VARIABLE DEPOSIT IMMED */
617 1.1 fredette #define ZDEPI 0x35, 0x06, 19, 3 /* ZERO and DEPOSIT IMMED */
618 1.1 fredette #define BREAK 0x00, 0x00, 19, 8 /* BREAK */
619 1.1 fredette #define RFI 0x00, 0x60, 19, 8 /* RETURN FROM INTERRUPTION */
620 1.1 fredette #define RFIR 0x00, 0x65, 19, 8 /* RFI & RESTORE SHADOW REGISTERS */
621 1.1 fredette #define SSM 0x00, 0x6b, 19, 8 /* SET SYSTEM MASK */
622 1.1 fredette #define RSM 0x00, 0x73, 19, 8 /* RESET SYSTEM MASK */
623 1.1 fredette #define MTSM 0x00, 0xc3, 19, 8 /* MOVE TO SYSTEM MASK */
624 1.1 fredette #define LDSID 0x00, 0x85, 19, 8 /* LOAD SPACE IDENTIFIER */
625 1.1 fredette #define MTSP 0x00, 0xc1, 19, 8 /* MOVE TO SPACE REGISTER */
626 1.1 fredette #define MTCTL 0x00, 0xc2, 19, 8 /* MOVE TO SYSTEM CONTROL REGISTER */
627 1.1 fredette #define MFSP 0x00, 0x25, 19, 8 /* MOVE FROM SPACE REGISTER */
628 1.1 fredette #define MFCTL 0x00, 0x45, 19, 8 /* MOVE FROM SYSTEM CONTROL REGISTER */
629 1.1 fredette #define SYNC 0x00, 0x20, 19, 8 /* SYNCHRONIZE DATA CACHE */
630 1.1 fredette #define DIAG 0x05, 0x00, 0, 0 /* DIAGNOSE */
631 1.1 fredette #define SPOP 0x04, 0x00, 0, 0 /* SPECIAL FUNCTION UNIT */
632 1.1 fredette #define COPR 0x0c, 0x00, 0, 0 /* COPROCESSOR */
633 1.1 fredette #define CLDWX 0x09, 0x00, 19, 4 /* COPROCESSOR LOAD WORD INDEXED */
634 1.1 fredette #define CLDDX 0x0b, 0x00, 19, 4 /* COPROCESSOR LOAD WORD INDEXED */
635 1.1 fredette #define CSTWX 0x09, 0x01, 19, 4 /* COPROCESSOR STORE WORD INDEXED */
636 1.1 fredette #define CSTDX 0x0b, 0x01, 19, 4 /* COPROCESSOR STORE WORD INDEXED */
637 1.1 fredette #define CLDWS 0x09, 0x08, 19, 4 /* COPROCESSOR LOAD WORD SHORT */
638 1.1 fredette #define CLDDS 0x0b, 0x08, 19, 4 /* COPROCESSOR LOAD WORD SHORT */
639 1.1 fredette #define CSTWS 0x09, 0x09, 19, 4 /* COPROCESSOR STORE WORD SHORT */
640 1.1 fredette #define CSTDS 0x0b, 0x09, 19, 4 /* COPROCESSOR STORE WORD SHORT */
641 1.1 fredette #define FLOAT0 0x0e, 0x00, 21, 2 /* FLOATING POINT CLASS 0 */
642 1.1 fredette #define FLOAT1 0x0e, 0x01, 21, 2 /* FLOATING POINT CLASS 1 */
643 1.1 fredette #define FLOAT2 0x0e, 0x02, 21, 2 /* FLOATING POINT CLASS 2 */
644 1.1 fredette #define FLOAT3 0x0e, 0x03, 21, 2 /* FLOATING POINT CLASS 3 */
645 1.1 fredette #define FMPYSUB 0x26, 0x00, 0, 0 /* FP MULTIPLY AND SUBTRACT */
646 1.1 fredette #define FMPYADD 0x06, 0x00, 0, 0 /* FP MULTIPLY AND ADD/TRUNCATE */
647 1.1 fredette #define FSTQX 0x0f, 0x01, 19, 4 /* FLOATING POINT STORE QUAD INDEXED */
648 1.1 fredette #define FSTQS 0x0f, 0x09, 19, 4 /* FLOATING POINT STORE QUAD SHORT */
649 1.1 fredette /* all of the following have been pushed around to conform */
650 1.1 fredette #define PROBER 0x01, 0x46, 19, 7 /* PROBE READ ACCESS */
651 1.1 fredette #ifdef notdef
652 1.1 fredette #define PROBERI 0x01, 0xc6, 19, 7 /* PROBE READ ACCESS IMMEDIATE */
653 1.1 fredette #endif
654 1.1 fredette #define PROBEW 0x01, 0x47, 19, 7 /* PROBE WRITE ACCESS */
655 1.1 fredette #ifdef notdef
656 1.1 fredette #define PROBEWI 0x01, 0xc7, 19, 7 /* PROBE WRITE ACCESS IMMEDIATE */
657 1.1 fredette #endif
658 1.1 fredette #define LPA 0x01, 0x4d, 19, 7 /* LOAD PHYSICAL ADDRESS */
659 1.1 fredette #define LHA 0x01, 0x4c, 19, 7 /* LOAD HASH ADDRESS */
660 1.1 fredette #define PDTLB 0x01, 0x48, 19, 7 /* PURGE DATA TRANS LOOKASIDE BUFFER */
661 1.1 fredette #define PITLB 0x01, 0x08, 19, 7 /* PURGE INST TRANS LOOKASIDE BUFFER */
662 1.1 fredette #define PDTLBE 0x01, 0x49, 19, 7 /* PURGE DATA TLB ENTRY */
663 1.1 fredette #define PITLBE 0x01, 0x09, 19, 7 /* PURGE INST TLB ENTRY */
664 1.1 fredette #define IDTLBA 0x01, 0x41, 19, 7 /* INSERT DATA TLB ADDRESS */
665 1.1 fredette #define IITLBA 0x01, 0x01, 19, 7 /* INSERT INSTRUCTION TLB ADDRESS */
666 1.1 fredette #define IDTLBP 0x01, 0x40, 19, 7 /* INSERT DATA TLB PROTECTION */
667 1.1 fredette #define IITLBP 0x01, 0x00, 19, 7 /* INSERT INSTRUCTION TLB PROTECTION */
668 1.1 fredette #define PDC 0x01, 0x4e, 19, 7 /* PURGE DATA CACHE */
669 1.1 fredette #define FDC 0x01, 0x4a, 19, 7 /* FLUSH DATA CACHE */
670 1.1 fredette #define FIC 0x01, 0x0a, 19, 7 /* FLUSH INSTRUCTION CACHE */
671 1.1 fredette #define FDCE 0x01, 0x4b, 19, 7 /* FLUSH DATA CACHE ENTRY */
672 1.1 fredette #define FICE 0x01, 0x0b, 19, 7 /* FLUSH DATA CACHE ENTRY */
673 1.1 fredette
674 1.1 fredette /*
675 1.1 fredette * Header: /n/schirf/u/baford/CVS/mach4-parisc/kernel_unused/parisc/kdb/unasm.c,v 1.5 1994/07/21 22:32:05 mike Exp
676 1.1 fredette *
677 1.1 fredette * Spectrum Simulator Instruction Set Constants and Datatypes
678 1.1 fredette * Dan Magenheimer - 4/28/82
679 1.1 fredette * Computer Research Center, Hewlett-Packard Labs
680 1.1 fredette *
681 1.1 fredette * (c) copyright 1982
682 1.1 fredette * (p) protected 1982
683 1.1 fredette * The Hewlett-Packard Company
684 1.1 fredette * Hewlett-Packard Laboratories
685 1.1 fredette * Computer Research Center
686 1.1 fredette * Palo Alto, California
687 1.1 fredette *
688 1.1 fredette * *** HP Company Confidential ***
689 1.1 fredette *
690 1.1 fredette * Log: unasm.c,v
691 1.1 fredette * Revision 1.5 1994/07/21 22:32:05 mike
692 1.1 fredette * official HP copyright notice
693 1.1 fredette *
694 1.1 fredette * Revision 1.4 1992/07/08 12:19:52 dalton
695 1.1 fredette * Checkin before split to 1.0.4 release (by LBS).
696 1.1 fredette *
697 1.1 fredette * Revision 1.3 92/06/06 16:16:45 dalton
698 1.1 fredette * *** empty log message ***
699 1.1 fredette *
700 1.1 fredette * Revision 1.2 92/06/06 15:42:28 dalton
701 1.1 fredette * Changed include to be a path relative to hp800.
702 1.1 fredette *
703 1.1 fredette * Revision 1.1 92/06/06 14:05:33 dalton
704 1.1 fredette * Initial revision
705 1.1 fredette *
706 1.1 fredette * Revision 1.2 91/04/14 20:29:49 osfrcs
707 1.1 fredette * Initial version.
708 1.1 fredette * [91/03/30 09:20:34 brezak]
709 1.1 fredette *
710 1.1 fredette * Revision 1.1.2.2 91/04/02 10:42:50 brezak
711 1.1 fredette * Initial version.
712 1.1 fredette * [91/03/30 09:20:34 brezak]
713 1.1 fredette *
714 1.1 fredette * Revision 1.1.1.2 91/03/30 09:20:34 brezak
715 1.1 fredette * Initial version.
716 1.1 fredette *
717 1.1 fredette ;Revision 1.1 88/07/11 14:05:21 14:05:21 ren (Bob Naas)
718 1.1 fredette ;Initial revision
719 1.1 fredette ;
720 1.1 fredette * Revision 5.1 87/02/27 11:12:23 11:12:23 kent (Kent McMullen)
721 1.1 fredette * update all src to 5.1
722 1.1 fredette *
723 1.1 fredette * Revision 5.0 87/02/18 16:31:52 16:31:52 kent (Kent McMullen)
724 1.1 fredette * update all revision numbers to 5.0 for release
725 1.1 fredette *
726 1.1 fredette * Revision 1.1 86/07/15 08:35:00 08:35:00 kent (Kent McMullen)
727 1.1 fredette * Initial revision
728 1.1 fredette *
729 1.1 fredette * Revision 4.3 85/11/12 09:28:44 09:28:44 viggy (Viggy Mokkarala)
730 1.1 fredette * first mpsim version, partially stable
731 1.1 fredette *
732 1.1 fredette * Revision 4.2 84/07/16 17:20:57 17:20:57 djm ()
733 1.1 fredette * Define field macros for COPR and SFU insts
734 1.1 fredette *
735 1.1 fredette * Revision 4.1 83/10/25 17:10:14 djm (Daniel Magenheimer)
736 1.1 fredette * First release for ACD v4
737 1.1 fredette *
738 1.1 fredette * Revision 3.1 83/08/03 14:09:59 djm (Daniel Magenheimer)
739 1.1 fredette * Sys calls, args, -S, bug fixes, etc.
740 1.1 fredette *
741 1.1 fredette * Revision 3.0 83/06/13 10:25:13 djm (Daniel Magenheimer)
742 1.1 fredette * First release for distribution
743 1.1 fredette *
744 1.1 fredette *
745 1.1 fredette */
746 1.1 fredette /*
747 1.1 fredette * Changes:
748 1.1 fredette * 12/01/89 ejf Add Rsd(), Rse(), Rtd(), Rte() for 5 ops.
749 1.6 wiz * 11/30/89 ejf Make instruction use counters shared, not per CPU.
750 1.1 fredette * 11/28/89 ejf Change majoropcode for quicker extension extract.
751 1.1 fredette */
752 1.1 fredette
753 1.1 fredette
754 1.1 fredette
755 1.1 fredette /*
756 1.1 fredette * Dependencies: std.h, ssDefs.h, bits.h
757 1.1 fredette */
758 1.1 fredette
759 1.1 fredette
760 1.1 fredette /* Lookup/Execute structure for instructions */
761 1.1 fredette struct inst {
762 1.1 fredette u_char majopc; /* major opcode of instruction, 0..MAXOPC */
763 1.1 fredette u_char opcext; /* opcode extension, 0 if not applic. */
764 1.1 fredette u_char extbs; /* starting bit pos of extension field */
765 1.1 fredette u_char extbl; /* bit length of extension field */
766 1.1 fredette u_int count; /* frequency counter for analysis */
767 1.1 fredette char mnem[8]; /* ascii mnemonic */
768 1.1 fredette /* disassembly function */
769 1.4 matt int (*dasmfcn)(const struct inst *, OFS, union insn);
770 1.1 fredette };
771 1.1 fredette
772 1.1 fredette
773 1.1 fredette #define NMAJOPCS 64
774 1.1 fredette
775 1.1 fredette struct majoropcode {
776 1.1 fredette const struct inst **subops; /* pointer to table of subops indexed by
777 1.1 fredette * opcode extension */
778 1.1 fredette u_int maxsubop; /* largest opcode extension value or 0 */
779 1.1 fredette u_int extshft; /* right shift amount for extension field */
780 1.1 fredette u_int extmask; /* post shift mask for extension field */
781 1.1 fredette };
782 1.1 fredette
783 1.1 fredette #define OpExt(i,m) ((i >> m->extshft) & m->extmask) /* extract opcode extension */
784 1.1 fredette
785 1.1 fredette
786 1.1 fredette /*****************************/
787 1.1 fredette /* Miscellaneous definitions */
788 1.1 fredette /*****************************/
789 1.1 fredette
790 1.1 fredette /* Load/Store Indexed Opcode Extension Cache Control */
791 1.1 fredette #define NOACTION 0
792 1.1 fredette #define STACKREF 1
793 1.1 fredette #define SEQPASS 2
794 1.1 fredette #define PREFETCH 3
795 1.1 fredette
796 1.1 fredette /******************************/
797 1.1 fredette /* Fields within instructions */
798 1.1 fredette /******************************/
799 1.1 fredette
800 1.1 fredette /* opcode */
801 1.1 fredette #define Opcode(i) BitfR(i,0,6,_b06)
802 1.1 fredette /* opcode true/false bit */
803 1.1 fredette #define OpcTF(i) BitfR(i,4,1,_b41)
804 1.1 fredette /* register sources */
805 1.1 fredette #define Rsa(i) BitfR(i,11,5,_b115)
806 1.1 fredette #define Rsb(i) BitfR(i,6,5,_b65)
807 1.1 fredette #define Rsc(i) BitfR(i,27,5,_b275)
808 1.1 fredette #define Rsd(i) BitfR(i,21,5,_b215)
809 1.1 fredette #define Rse(i) BitfR(i,16,5,_b165)
810 1.1 fredette /* register targets */
811 1.1 fredette #define Rta(i) BitfR(i,11,5,_b115)
812 1.1 fredette #define Rtb(i) BitfR(i,6,5,_b65)
813 1.1 fredette #define Rtc(i) BitfR(i,27,5,_b275)
814 1.1 fredette #define Rtd(i) BitfR(i,21,5,_b215)
815 1.1 fredette #define Rte(i) BitfR(i,16,5,_b165)
816 1.1 fredette /* 5-bit immediates (Magnitude, Sign) */
817 1.1 fredette #define Imb5(i) BitfR(i,6,5,_b65)
818 1.1 fredette #define Ima5M(i) BitfR(i,11,4,_b114)
819 1.1 fredette #define Ima5S(i) BitfR(i,15,1,_b151)
820 1.1 fredette #define Ima5A(i) BitfR(i,11,5,_b115)
821 1.1 fredette #define Imd5(i) BitfR(i,22,5,_b225)
822 1.1 fredette #define Imc5M(i) BitfR(i,27,4,_b274)
823 1.1 fredette #define Imc5S(i) BitfR(i,31,1,_b311)
824 1.1 fredette #define Imc5A(i) BitfR(i,27,5,_b275)
825 1.1 fredette /* Other immediates */
826 1.1 fredette #define Im21L(i) BitfR(i,18,2,_b182)
827 1.1 fredette #define Im21H(i) BitfR(i,20,11,_b2011)
828 1.1 fredette #define Im21M1(i) BitfR(i,16,2,_b162)
829 1.1 fredette #define Im21M2(i) BitfR(i,11,5,_b115)
830 1.1 fredette #define Im21S(i) BitfR(i,31,1,_b311)
831 1.1 fredette #define Im11M(i) BitfR(i,21,10,_b2110)
832 1.1 fredette #define Im11S(i) BitfR(i,31,1,_b311)
833 1.1 fredette /* displacements/offsets */
834 1.1 fredette #define DispM(i) BitfR(i,18,13,_b1813)
835 1.1 fredette #define DispS(i) BitfR(i,31,1,_b311)
836 1.1 fredette #define Off5(i) BitfR(i,11,5,_b115)
837 1.1 fredette #define Off11H(i) BitfR(i,19,10,_b1910)
838 1.1 fredette #define Off11L(i) BitfR(i,29,1,_b291)
839 1.1 fredette #define OffS(i) BitfR(i,31,1,_b311)
840 1.1 fredette /* miscellaneous */
841 1.1 fredette #define Dss(i) BitfR(i,16,2,_b162)
842 1.1 fredette #define Cond(i) BitfR(i,16,3,_b163)
843 1.1 fredette #define Cneg(i) BitfR(i,19,1,_b191)
844 1.1 fredette #define Cond4(i) BitfR(i,16,4,_b164) /* Cond AND Cneg */
845 1.1 fredette #define Nu(i) BitfR(i,30,1,_b301)
846 1.1 fredette #define SrL(i) BitfR(i,16,2,_b162)
847 1.1 fredette #define SrH(i) BitfR(i,18,1,_b181)
848 1.1 fredette #define ShortDisp(i) BitfR(i,19,1,_b191)
849 1.1 fredette #define IndxShft(i) BitfR(i,18,1,_b181)
850 1.1 fredette #define ModBefore(i) BitfR(i,18,1,_b181)
851 1.1 fredette #define CacheCtrl(i) BitfR(i,20,2,_b202)
852 1.1 fredette #define Modify(i) BitfR(i,26,1,_b261)
853 1.1 fredette #define ProbeI(i) BitfR(i,18,1,_b181)
854 1.1 fredette #define Uid(i) BitfR(i,23,3,_b233)
855 1.1 fredette #define Sfu(i) BitfR(i,23,3,_b233)
856 1.1 fredette #define CopExt17(i) BitfR(i,6,17,_b617)
857 1.1 fredette #define CopExt5(i) BitfR(i,27,5,_b275)
858 1.1 fredette #define SpopType(i) BitfR(i,21,2,_b212)
859 1.1 fredette #define SpopExt15(i) BitfR(i,6,15,_b615)
860 1.1 fredette #define SpopExt10(i) BitfR(i,11,10,_b1110)
861 1.1 fredette #define SpopExt5L(i) BitfR(i,16,5,_b165)
862 1.1 fredette #define SpopExt5(i) BitfR(i,27,5,_b275)
863 1.1 fredette #define NoMajOpc(i) BitfR(i,6,26,_b626)
864 1.1 fredette #define Bi1(i) BitfR(i,27,5,_b275) /* fields in BREAK */
865 1.1 fredette #define Bi2(i) BitfR(i,6,13,_b613)
866 1.1 fredette
867 1.1 fredette /* fragmented field collating macros */
868 1.17 skrll #define Ima5(i) (Ima5S(i) ? Ima5M(i) | (int)(~__BITS(3,0)) : Ima5M(i))
869 1.1 fredette
870 1.17 skrll #define Imc5(i) (Imc5S(i) ? Imc5M(i) | (int)(~__BITS(3,0)) : Imc5M(i))
871 1.1 fredette
872 1.17 skrll #define Disp(i) (DispS(i) ? DispM(i) | (int)(~__BITS(12,0)) : DispM(i))
873 1.1 fredette
874 1.1 fredette #define Im21(i) (Im21S(i) << 31 | Im21H(i) << 20 | Im21M1(i) << 18 | \
875 1.1 fredette Im21M2(i) << 13 | Im21L(i) << 11)
876 1.1 fredette
877 1.17 skrll #define Im11(i) (Im11S(i) ? Im11M(i) | (int)(~__BITS(9,0)) : Im11M(i))
878 1.1 fredette
879 1.1 fredette #define Bdisp(i) ((OffS(i) ? (Off5(i)<<11 | Off11L(i)<<10|Off11H(i)) \
880 1.17 skrll /* branch displacement (bytes) */ | (int)(~__BITS(15,0)) \
881 1.1 fredette : (Off5(i)<<11|Off11L(i)<<10|Off11H(i))) << 2)
882 1.1 fredette
883 1.1 fredette #define Cbdisp(i) ((OffS(i) ? (Off11L(i) << 10 | Off11H(i)) \
884 1.17 skrll /* compare/branch disp (bytes) */ | (int)(~__BITS(10,0)) \
885 1.1 fredette : Off11L(i) << 10 | Off11H(i)) << 2)
886 1.1 fredette
887 1.1 fredette #define Sr(i) (SrH(i)<<2 | SrL(i))
888 1.1 fredette
889 1.1 fredette /* sfu/copr */
890 1.1 fredette #define CoprExt1(i) (CopExt17(i))
891 1.1 fredette #define CoprExt2(i) (CopExt5(i))
892 1.1 fredette #define CoprExt(i) ((CopExt17(i)<<5) | CopExt5(i))
893 1.1 fredette #define Spop0Ext(i) ((SpopExt15(i)<<5) | SpopExt5(i))
894 1.1 fredette #define Spop1Ext(i) (SpopExt15(i))
895 1.1 fredette #define Spop2Ext(i) ((SpopExt10(i)<<5) | SpopExt5(i))
896 1.1 fredette #define Spop3Ext(i) ((SpopExt5L(i)<<5) | SpopExt5(i))
897 1.1 fredette
898 1.1 fredette
899 1.1 fredette /*##################### Globals - Imports ##################################*/
900 1.1 fredette
901 1.1 fredette /* Disassembly functions */
902 1.5 chs int fcoprDasm(union insn, u_int, u_int);
903 1.7 chs const char *edDCond(u_int);
904 1.7 chs const char *unitDCond(u_int);
905 1.7 chs const char *addDCond(u_int);
906 1.7 chs const char *subDCond(u_int);
907 1.5 chs int blDasm(const struct inst *, OFS, union insn);
908 1.5 chs int ldDasm(const struct inst *, OFS, union insn);
909 1.5 chs int stDasm(const struct inst *, OFS, union insn);
910 1.5 chs int addDasm(const struct inst *, OFS, union insn);
911 1.5 chs int unitDasm(const struct inst *, OFS, union insn);
912 1.5 chs int iaDasm(const struct inst *, OFS, union insn);
913 1.5 chs int shdDasm(const struct inst *, OFS, union insn);
914 1.5 chs int extrDasm(const struct inst *, OFS, union insn);
915 1.5 chs int vextrDasm(const struct inst *, OFS, union insn);
916 1.5 chs int depDasm(const struct inst *, OFS, union insn);
917 1.5 chs int vdepDasm(const struct inst *, OFS, union insn);
918 1.5 chs int depiDasm(const struct inst *, OFS, union insn);
919 1.5 chs int vdepiDasm(const struct inst *, OFS, union insn);
920 1.5 chs int limmDasm(const struct inst *, OFS, union insn);
921 1.5 chs int brkDasm(const struct inst *, OFS, union insn);
922 1.5 chs int lpkDasm(const struct inst *, OFS, union insn);
923 1.5 chs int fmpyaddDasm(const struct inst *, OFS, union insn);
924 1.5 chs int fmpysubDasm(const struct inst *, OFS, union insn);
925 1.5 chs int floatDasm(const struct inst *, OFS, union insn);
926 1.5 chs int coprDasm(const struct inst *, OFS, union insn);
927 1.5 chs int diagDasm(const struct inst *, OFS, union insn);
928 1.5 chs int scDasm(const struct inst *, OFS, union insn);
929 1.5 chs int mmgtDasm(const struct inst *, OFS, union insn);
930 1.5 chs int ldxDasm(const struct inst *, OFS, union insn);
931 1.5 chs int stsDasm(const struct inst *, OFS, union insn);
932 1.5 chs int stbysDasm(const struct inst *, OFS, union insn);
933 1.5 chs int brDasm(const struct inst *, OFS, union insn);
934 1.5 chs int bvDasm(const struct inst *, OFS, union insn);
935 1.5 chs int beDasm(const struct inst *, OFS, union insn);
936 1.5 chs int cbDasm(const struct inst *, OFS, union insn);
937 1.5 chs int cbiDasm(const struct inst *, OFS, union insn);
938 1.5 chs int bbDasm(const struct inst *, OFS, union insn);
939 1.5 chs int ariDasm(const struct inst *, OFS, union insn);
940 1.1 fredette
941 1.1 fredette /*##################### Globals - Exports ##################################*/
942 1.1 fredette /*##################### Local Variables ####################################*/
943 1.1 fredette
944 1.1 fredette static const char fcoprUndef[] = "copr\t(rsvd or undef.)";
945 1.1 fredette static const char fmtStrTbl[][5] = { "sgl", "dbl", "sgl", "quad" };
946 1.1 fredette static const char condStrTbl[][7] = {
947 1.1 fredette "false?", "false", "?", "!<=>", "=", "=t", "?=", "!<>",
948 1.1 fredette "!?>=", "<", "?<", "!>=", "!?>", "<=", "?<=", "!>",
949 1.1 fredette "!?<=", ">", "?>", "!<=", "!?<", ">=", "?>=", "!<",
950 1.1 fredette "!?=", "<>", "!=", "!=t", "!?", "<=>", "true?", "true"
951 1.1 fredette };
952 1.1 fredette static const char fsreg[][5] = {
953 1.1 fredette "r0L", "r0R", "r1L", "r1R", "r2L", "r2R", "r3L", "r3R",
954 1.1 fredette "r4L", "r4R", "r5L", "r5R", "r6L", "r6R", "r7L", "r7R",
955 1.1 fredette "r8L", "r8R", "r9L", "r9R", "r10L", "r10R", "r11L", "r11R",
956 1.1 fredette "r12L", "r12R", "r13L", "r13R", "r14L", "r14R", "r15L", "r15R",
957 1.1 fredette "r16L", "r16R", "r17L", "r17R", "r18L", "r18R", "r19L", "r19R",
958 1.1 fredette "r20L", "r20R", "r21L", "r21R", "r22L", "r22R", "r23L", "r23R",
959 1.1 fredette "r24L", "r24R", "r25L", "r25R", "r26L", "r26R", "r27L", "r27R",
960 1.1 fredette "r28L", "r28R", "r29L", "r29R", "r30L", "r30R", "r31L", "r31R"
961 1.1 fredette };
962 1.1 fredette static const char fdreg[][4] = {
963 1.1 fredette "r0", "r0", "r1", "r1", "r2", "r2", "r3", "r3",
964 1.1 fredette "r4", "r4", "r5", "r5", "r6", "r6", "r7", "r7",
965 1.1 fredette "r8", "r8", "r9", "r9", "r10", "r10", "r11", "r11",
966 1.1 fredette "r12", "r12", "r13", "r13", "r14", "r14", "r15", "r15",
967 1.1 fredette "r16", "r16", "r17", "r17", "r18", "r18", "r19", "r19",
968 1.1 fredette "r20", "r20", "r21", "r21", "r22", "r22", "r23", "r23",
969 1.1 fredette "r24", "r24", "r25", "r25", "r26", "r26", "r27", "r27",
970 1.1 fredette "r28", "r28", "r29", "r29", "r30", "r30", "r31", "r31"
971 1.1 fredette };
972 1.1 fredette
973 1.1 fredette /*##################### Macros #############################################*/
974 1.1 fredette
975 1.1 fredette #define Match(s) (strncmp(s,i->mnem,sizeof(s)-1) == 0)
976 1.1 fredette
977 1.1 fredette /* bits for assist ops */
978 1.1 fredette #define AstNu(w) Modify(w)
979 1.1 fredette #define Fpi(w) (Uid(w)>3)
980 1.1 fredette
981 1.1 fredette /* bits for 5 ops */
982 1.1 fredette #define SinglePrec(i) Modify(i)
983 1.1 fredette #define Ms1(i) ((Rsb(i)<<1)+(SinglePrec(i)?((Rsb(i)>15)?1:32):0))
984 1.1 fredette #define Ms2(i) ((Rsa(i)<<1)+(SinglePrec(i)?((Rsa(i)>15)?1:32):0))
985 1.1 fredette #define Mt(i) ((Rtc(i)<<1)+(SinglePrec(i)?((Rtc(i)>15)?1:32):0))
986 1.1 fredette #define As(i) ((Rsd(i)<<1)+(SinglePrec(i)?((Rsd(i)>15)?1:32):0))
987 1.1 fredette #define Ad(i) ((Rte(i)<<1)+(SinglePrec(i)?((Rte(i)>15)?1:32):0))
988 1.1 fredette
989 1.1 fredette /*##################### Globals - Exports ##################################*/
990 1.1 fredette
991 1.1 fredette /* To replace instr function, do the following: */
992 1.1 fredette /* a) locate the desired entry in instrs[] below */
993 1.18 andvar /* b) change the 3rd field if an alternate mnemonic is */
994 1.1 fredette /* desired for window disassembly */
995 1.1 fredette /* c) change the 4th field to the name of the function being */
996 1.1 fredette /* used for replacement (i.e. ldwRepl instead of ldw) */
997 1.1 fredette /* d) change the 5th field if an alternate disassembly routine */
998 1.1 fredette /* is desired (i.e. ldDasmRepl) */
999 1.1 fredette
1000 1.1 fredette static const struct inst instrs[] = {
1001 1.1 fredette { LDW, 0, "ldw", ldDasm },
1002 1.1 fredette { LDH, 0, "ldh", ldDasm },
1003 1.1 fredette { LDB, 0, "ldb", ldDasm },
1004 1.1 fredette { LDWM, 0, "ldwm", ldDasm },
1005 1.1 fredette { LDO, 0, "ldo", ldDasm },
1006 1.1 fredette { STW, 0, "stw", stDasm },
1007 1.1 fredette { STH, 0, "sth", stDasm },
1008 1.1 fredette { STB, 0, "stb", stDasm },
1009 1.1 fredette { STWM, 0, "stwm", stDasm },
1010 1.1 fredette { LDWX, 0, "ldw", ldxDasm },
1011 1.1 fredette { LDHX, 0, "ldh", ldxDasm },
1012 1.1 fredette { LDBX, 0, "ldb", ldxDasm },
1013 1.1 fredette { LDCWX, 0, "ldcw", ldxDasm },
1014 1.1 fredette { LDWAX, 0, "ldwa", ldxDasm },
1015 1.1 fredette { LDWS, 0, "ldw", ldxDasm },
1016 1.1 fredette { LDHS, 0, "ldh", ldxDasm },
1017 1.1 fredette { LDBS, 0, "ldb", ldxDasm },
1018 1.1 fredette { LDCWS, 0, "ldcw", ldxDasm },
1019 1.1 fredette { LDWAS, 0, "ldwa", ldxDasm },
1020 1.1 fredette { STWS, 0, "stws", stsDasm },
1021 1.1 fredette { STHS, 0, "sths", stsDasm },
1022 1.1 fredette { STBS, 0, "stbs", stsDasm },
1023 1.1 fredette { STWAS, 0, "stwas", stsDasm },
1024 1.1 fredette { STBYS, 0, "stbys", stbysDasm },
1025 1.1 fredette { LDIL, 0, "ldil", limmDasm },
1026 1.1 fredette { ADDIL, 0, "addil", limmDasm },
1027 1.1 fredette { GATE, 0, "gate", blDasm },
1028 1.1 fredette { BL, 0, "b", blDasm },
1029 1.1 fredette { BLR, 0, "blr", brDasm },
1030 1.1 fredette { BV, 0, "bv", bvDasm },
1031 1.1 fredette { BE, 0, "be", beDasm },
1032 1.1 fredette { BLE, 0, "ble", beDasm },
1033 1.1 fredette { COMBT, 0, "combt", cbDasm },
1034 1.1 fredette { COMBF, 0, "combf", cbDasm },
1035 1.1 fredette { COMIBT, 0, "comibt", cbiDasm },
1036 1.1 fredette { COMIBF, 0, "comibf", cbiDasm },
1037 1.1 fredette { ADDBT, 0, "addbt", cbDasm },
1038 1.1 fredette { ADDBF, 0, "addbf", cbDasm },
1039 1.1 fredette { ADDIBT, 0, "addibt", cbiDasm },
1040 1.1 fredette { ADDIBF, 0, "addibf", cbiDasm },
1041 1.1 fredette { MOVB, 0, "movb", cbDasm },
1042 1.1 fredette { MOVIB, 0, "movib", cbiDasm },
1043 1.1 fredette { BB, 0, "bb", bbDasm },
1044 1.1 fredette { BVB, 0, "bvb", bbDasm },
1045 1.1 fredette { SUBO, 0, "subo", ariDasm },
1046 1.1 fredette { ADD, 0, "add", addDasm },
1047 1.1 fredette { ADDL, 0, "addl", addDasm },
1048 1.1 fredette { ADDO, 0, "addo", ariDasm },
1049 1.1 fredette { SH1ADD, 0, "sh1add", ariDasm },
1050 1.1 fredette { SH1ADDL,0, "sh1addl", ariDasm },
1051 1.1 fredette { SH1ADDO,0, "sh1addo", ariDasm },
1052 1.1 fredette { SH2ADD, 0, "sh2add", ariDasm },
1053 1.1 fredette { SH2ADDL,0, "sh2addl", ariDasm },
1054 1.1 fredette { SH2ADDO,0, "sh2addo", ariDasm },
1055 1.1 fredette { SH3ADD, 0, "sh3add", ariDasm },
1056 1.1 fredette { SH3ADDL,0, "sh3addl", ariDasm },
1057 1.1 fredette { SH3ADDO,0, "sh3addo", ariDasm },
1058 1.1 fredette { SUB, 0, "sub", ariDasm },
1059 1.1 fredette { ADDCO, 0, "addco", ariDasm },
1060 1.1 fredette { SUBBO, 0, "subbo", ariDasm },
1061 1.1 fredette { ADDC, 0, "addc", ariDasm },
1062 1.1 fredette { SUBB, 0, "subb", ariDasm },
1063 1.1 fredette { COMCLR, 0, "comclr", ariDasm },
1064 1.1 fredette { OR, 0, "or", ariDasm },
1065 1.1 fredette { AND, 0, "and", ariDasm },
1066 1.1 fredette { XOR, 0, "xor", ariDasm },
1067 1.1 fredette { ANDCM, 0, "andcm", ariDasm },
1068 1.1 fredette { DS, 0, "ds", ariDasm },
1069 1.1 fredette { UXOR, 0, "uxor", unitDasm },
1070 1.1 fredette { UADDCM, 0, "uaddcm", unitDasm },
1071 1.1 fredette { UADDCMT,0, "uaddcmt", unitDasm },
1072 1.1 fredette { SUBTO, 0, "subto", ariDasm },
1073 1.1 fredette { SUBT, 0, "subt", ariDasm },
1074 1.1 fredette { DCOR, 0, "dcor", unitDasm },
1075 1.1 fredette { IDCOR, 0, "idcor", unitDasm },
1076 1.1 fredette { ADDIO, 0, "addio", iaDasm },
1077 1.1 fredette { SUBIO, 0, "subio", iaDasm },
1078 1.1 fredette { ADDI, 0, "addi", iaDasm },
1079 1.1 fredette { SUBI, 0, "subi", iaDasm },
1080 1.1 fredette { COMICLR,0, "comiclr", iaDasm },
1081 1.1 fredette { ADDITO, 0, "addito", iaDasm },
1082 1.1 fredette { ADDIT, 0, "addit", iaDasm },
1083 1.1 fredette { SHD, 0, "shd", shdDasm },
1084 1.1 fredette { VSHD, 0, "vshd", shdDasm },
1085 1.1 fredette { EXTRU, 0, "extru", extrDasm },
1086 1.1 fredette { EXTRS, 0, "extrs", extrDasm },
1087 1.1 fredette { VEXTRU, 0, "vextru", vextrDasm },
1088 1.1 fredette { VEXTRS, 0, "vextrs", vextrDasm },
1089 1.1 fredette { DEP, 0, "dep", depDasm },
1090 1.1 fredette { VDEP, 0, "vdep", vdepDasm },
1091 1.1 fredette { DEPI, 0, "depi", depiDasm },
1092 1.1 fredette { VDEPI, 0, "vdepi", vdepiDasm },
1093 1.1 fredette { ZDEP, 0, "zdep", depDasm },
1094 1.1 fredette { ZVDEP, 0, "zvdep", vdepDasm },
1095 1.1 fredette { ZDEPI, 0, "zdepi", depiDasm },
1096 1.1 fredette { ZVDEPI, 0, "zvdepi", vdepiDasm },
1097 1.1 fredette { BREAK, 0, "break", brkDasm },
1098 1.1 fredette { RFI, 0, "rfi", 0 },
1099 1.1 fredette { RFIR, 0, "rfir", 0 },
1100 1.1 fredette { SSM, 0, "ssm", scDasm },
1101 1.1 fredette { RSM, 0, "rsm", scDasm },
1102 1.1 fredette { MTSM, 0, "mtsm", scDasm },
1103 1.1 fredette { PROBER, 0, "prober", mmgtDasm },
1104 1.1 fredette { PROBEW, 0, "probew", mmgtDasm },
1105 1.1 fredette { LPA, 0, "lpa", mmgtDasm },
1106 1.1 fredette { LHA, 0, "lha", mmgtDasm },
1107 1.1 fredette { LDSID, 0, "ldsid", scDasm },
1108 1.1 fredette { PDTLB, 0, "pdtlb", mmgtDasm },
1109 1.1 fredette { PDTLBE, 0, "pdtlbe", mmgtDasm },
1110 1.1 fredette { PITLB, 0, "pitlb", mmgtDasm },
1111 1.1 fredette { PITLBE, 0, "pitlbe", mmgtDasm },
1112 1.1 fredette { IDTLBA, 0, "idtlba", mmgtDasm },
1113 1.1 fredette { IITLBA, 0, "iitlba", mmgtDasm },
1114 1.1 fredette { IDTLBP, 0, "idtlbp", mmgtDasm },
1115 1.1 fredette { IITLBP, 0, "iitlbp", mmgtDasm },
1116 1.1 fredette { FIC, 0, "fic", mmgtDasm },
1117 1.1 fredette { FICE, 0, "fice", mmgtDasm },
1118 1.1 fredette { PDC, 0, "pdc", mmgtDasm },
1119 1.1 fredette { FDC, 0, "fdc", mmgtDasm },
1120 1.1 fredette { FDCE, 0, "fdce", mmgtDasm },
1121 1.1 fredette { SYNC, 0, "sync", 0 },
1122 1.1 fredette { MTSP, 0, "mtsp", scDasm },
1123 1.1 fredette { MTCTL, 0, "mtctl", scDasm },
1124 1.1 fredette { MFSP, 0, "mfsp", scDasm },
1125 1.1 fredette { MFCTL, 0, "mfctl", scDasm },
1126 1.1 fredette { DIAG, 0, "diag", diagDasm },
1127 1.1 fredette { SPOP, 0, "???", 0 },
1128 1.1 fredette { COPR, 0, "copr", coprDasm },
1129 1.1 fredette { CLDWX, 0, "cldw", coprDasm },
1130 1.1 fredette { CLDDX, 0, "cldd", coprDasm },
1131 1.1 fredette { CSTWX, 0, "cstw", coprDasm },
1132 1.1 fredette { CSTDX, 0, "cstd", coprDasm },
1133 1.1 fredette { CLDWS, 0, "cldw", coprDasm },
1134 1.1 fredette { CLDDS, 0, "cldd", coprDasm },
1135 1.1 fredette { CSTWS, 0, "cstw", coprDasm },
1136 1.1 fredette { CSTDS, 0, "cstd", coprDasm },
1137 1.1 fredette { FLOAT0, 0, "f", floatDasm },
1138 1.1 fredette { FLOAT1, 0, "fcnv", floatDasm },
1139 1.1 fredette { FLOAT2, 0, "f", floatDasm },
1140 1.1 fredette { FLOAT3, 0, "f", floatDasm },
1141 1.1 fredette { FMPYSUB,0, "fmpy", fmpysubDasm },
1142 1.1 fredette { FMPYADD,0, "fmpy", fmpyaddDasm },
1143 1.1 fredette { FSTQX, 0, "fstqx", lpkDasm },
1144 1.1 fredette { FSTQS, 0, "fstqs", lpkDasm },
1145 1.16 skrll { 0, 0, 0, 0, 0, "", NULL}
1146 1.1 fredette };
1147 1.1 fredette
1148 1.1 fredette
1149 1.1 fredette static const struct inst *so_sysop[0xd0];
1150 1.1 fredette static const struct inst *so_mmuop[0x50];
1151 1.1 fredette static const struct inst *so_arith[0x80];
1152 1.1 fredette static const struct inst *so_loads[0x50];
1153 1.1 fredette static const struct inst *so_cldw [0x0A];
1154 1.1 fredette static const struct inst *so_cldd [0x0A];
1155 1.1 fredette static const struct inst *so_float[0x04];
1156 1.1 fredette static const struct inst *so_fstq [0x0A];
1157 1.1 fredette static const struct inst *so_ebran[0x08];
1158 1.1 fredette static const struct inst *so_addit[0x02];
1159 1.1 fredette static const struct inst *so_addi [0x02];
1160 1.1 fredette static const struct inst *so_subi [0x02];
1161 1.1 fredette static const struct inst *so_shext[0x08];
1162 1.1 fredette static const struct inst *so_deps [0x08];
1163 1.1 fredette
1164 1.7 chs #define ILLEG NULL
1165 1.1 fredette #define NENTS(a) (sizeof(a)/sizeof(a[0])-1)
1166 1.1 fredette static struct majoropcode majopcs[NMAJOPCS] = {
1167 1.16 skrll { so_sysop, NENTS(so_sysop), 0, 0 }, /* 00 */
1168 1.16 skrll { so_mmuop, NENTS(so_mmuop), 0, 0 }, /* 01 */
1169 1.16 skrll { so_arith, NENTS(so_arith), 0, 0 }, /* 02 */
1170 1.16 skrll { so_loads, NENTS(so_loads), 0, 0 }, /* 03 */
1171 1.16 skrll { ILLEG, 1, 0, 0 }, /* 04 */
1172 1.16 skrll { ILLEG, 1, 0, 0 }, /* 05 */
1173 1.16 skrll { ILLEG, 1, 0, 0 }, /* 06 */
1174 1.16 skrll { ILLEG, 1, 0, 0 }, /* 07 */
1175 1.16 skrll { ILLEG, 1, 0, 0 }, /* 08 */
1176 1.16 skrll { so_cldw , NENTS(so_cldw ), 0, 0 }, /* 09 */
1177 1.16 skrll { ILLEG, 1, 0, 0 }, /* 0A */
1178 1.16 skrll { so_cldd , NENTS(so_cldd ), 0, 0 }, /* 0B */
1179 1.16 skrll { ILLEG, 1, 0, 0 }, /* 0C */
1180 1.16 skrll { ILLEG, 1, 0, 0 }, /* 0D */
1181 1.16 skrll { so_float, NENTS(so_float), 0, 0 }, /* 0E */
1182 1.16 skrll { so_fstq , NENTS(so_fstq ), 0, 0 }, /* 0F */
1183 1.16 skrll { ILLEG, 1, 0, 0 }, /* 10 */
1184 1.16 skrll { ILLEG, 1, 0, 0 }, /* 11 */
1185 1.16 skrll { ILLEG, 1, 0, 0 }, /* 12 */
1186 1.16 skrll { ILLEG, 1, 0, 0 }, /* 13 */
1187 1.16 skrll { ILLEG, 1, 0, 0 }, /* 14 */
1188 1.16 skrll { ILLEG, 1, 0, 0 }, /* 15 */
1189 1.16 skrll { ILLEG, 1, 0, 0 }, /* 16 */
1190 1.16 skrll { ILLEG, 1, 0, 0 }, /* 17 */
1191 1.16 skrll { ILLEG, 1, 0, 0 }, /* 18 */
1192 1.16 skrll { ILLEG, 1, 0, 0 }, /* 19 */
1193 1.16 skrll { ILLEG, 1, 0, 0 }, /* 1A */
1194 1.16 skrll { ILLEG, 1, 0, 0 }, /* 1B */
1195 1.16 skrll { ILLEG, 1, 0, 0 }, /* 1C */
1196 1.16 skrll { ILLEG, 1, 0, 0 }, /* 1D */
1197 1.16 skrll { ILLEG, 1, 0, 0 }, /* 1E */
1198 1.16 skrll { ILLEG, 1, 0, 0 }, /* 1F */
1199 1.16 skrll { ILLEG, 1, 0, 0 }, /* 20 */
1200 1.16 skrll { ILLEG, 1, 0, 0 }, /* 21 */
1201 1.16 skrll { ILLEG, 1, 0, 0 }, /* 22 */
1202 1.16 skrll { ILLEG, 1, 0, 0 }, /* 23 */
1203 1.16 skrll { ILLEG, 1, 0, 0 }, /* 24 */
1204 1.16 skrll { so_subi , NENTS(so_subi ), 0, 0 }, /* 25 */
1205 1.16 skrll { ILLEG, 1, 0, 0 }, /* 26 */
1206 1.16 skrll { ILLEG, 1, 0, 0 }, /* 27 */
1207 1.16 skrll { ILLEG, 1, 0, 0 }, /* 28 */
1208 1.16 skrll { ILLEG, 1, 0, 0 }, /* 29 */
1209 1.16 skrll { ILLEG, 1, 0, 0 }, /* 2A */
1210 1.16 skrll { ILLEG, 1, 0, 0 }, /* 2B */
1211 1.16 skrll { so_addit, NENTS(so_addit), 0, 0 }, /* 2C */
1212 1.16 skrll { so_addi , NENTS(so_addi ), 0, 0 }, /* 2D */
1213 1.16 skrll { ILLEG, 1, 0, 0 }, /* 2E */
1214 1.16 skrll { ILLEG, 1, 0, 0 }, /* 2F */
1215 1.16 skrll { ILLEG, 1, 0, 0 }, /* 30 */
1216 1.16 skrll { ILLEG, 1, 0, 0 }, /* 31 */
1217 1.16 skrll { ILLEG, 1, 0, 0 }, /* 32 */
1218 1.16 skrll { ILLEG, 1, 0, 0 }, /* 33 */
1219 1.16 skrll { so_shext, NENTS(so_shext), 0, 0 }, /* 34 */
1220 1.16 skrll { so_deps , NENTS(so_deps ), 0, 0 }, /* 35 */
1221 1.16 skrll { ILLEG, 1, 0, 0 }, /* 36 */
1222 1.16 skrll { ILLEG, 1, 0, 0 }, /* 37 */
1223 1.16 skrll { ILLEG, 1, 0, 0 }, /* 38 */
1224 1.16 skrll { ILLEG, 1, 0, 0 }, /* 39 */
1225 1.16 skrll { so_ebran, NENTS(so_ebran), 0, 0 }, /* 3A */
1226 1.16 skrll { ILLEG, 1, 0, 0 }, /* 3B */
1227 1.16 skrll { ILLEG, 1, 0, 0 }, /* 3C */
1228 1.16 skrll { ILLEG, 1, 0, 0 }, /* 3D */
1229 1.16 skrll { ILLEG, 1, 0, 0 }, /* 3E */
1230 1.16 skrll { ILLEG, 1, 0, 0 }, /* 3F */
1231 1.1 fredette };
1232 1.1 fredette #undef NENTS
1233 1.1 fredette #undef ILLEG
1234 1.1 fredette
1235 1.1 fredette /*--------------------------------------------------------------------------
1236 1.1 fredette * instruction$ExecutionInitialize - Initialize the instruction execution
1237 1.1 fredette * data structures.
1238 1.1 fredette *---------------------------------------------------------------------------*/
1239 1.5 chs static int iExInit(void);
1240 1.1 fredette static int
1241 1.1 fredette iExInit(void)
1242 1.1 fredette {
1243 1.1 fredette static int unasm_initted = 0;
1244 1.3 chs const struct inst *i;
1245 1.3 chs struct majoropcode *m;
1246 1.1 fredette u_int shft, mask;
1247 1.1 fredette
1248 1.1 fredette if (unasm_initted)
1249 1.1 fredette return 0;
1250 1.1 fredette
1251 1.1 fredette /*
1252 1.1 fredette * Determine maxsubop for each major opcode.
1253 1.1 fredette * Also, check all instructions of a given major opcode
1254 1.1 fredette * for consistent opcode extension field definition, and
1255 1.1 fredette * save a converted form of this definition in the majopcs
1256 1.1 fredette * entry for this major opcode.
1257 1.1 fredette */
1258 1.1 fredette for (i = &instrs[0]; *i->mnem; i++) {
1259 1.1 fredette m = &majopcs[i->majopc];
1260 1.16 skrll if (m->maxsubop < i->opcext) {
1261 1.16 skrll db_printf("iExInit not enough space for opcode %d",
1262 1.1 fredette i->majopc);
1263 1.16 skrll return 0;
1264 1.16 skrll }
1265 1.1 fredette shft = 32 - i->extbs - i->extbl;
1266 1.1 fredette mask = (1 << i->extbl) - 1;
1267 1.1 fredette if (m->extshft || m->extmask) {
1268 1.1 fredette if (m->extshft != shft || m->extmask != mask) {
1269 1.1 fredette db_printf("%s - Bad instruction initialization!\n", i->mnem);
1270 1.1 fredette return (0);
1271 1.1 fredette }
1272 1.1 fredette } else {
1273 1.1 fredette m->extshft = shft;
1274 1.1 fredette m->extmask = mask;
1275 1.1 fredette }
1276 1.1 fredette }
1277 1.1 fredette
1278 1.1 fredette /*
1279 1.1 fredette * Lastly, fill in all legal subops with the appropriate info.
1280 1.1 fredette */
1281 1.1 fredette for (i = &instrs[0]; *i->mnem; i++) {
1282 1.1 fredette m = &majopcs[i->majopc];
1283 1.1 fredette if (m->maxsubop == 1)
1284 1.7 chs m->subops = __UNCONST(i);
1285 1.1 fredette else
1286 1.1 fredette m->subops[i->opcext] = i;
1287 1.1 fredette }
1288 1.1 fredette
1289 1.1 fredette unasm_initted++;
1290 1.1 fredette return (1);
1291 1.1 fredette }
1292 1.1 fredette
1293 1.1 fredette
1294 1.1 fredette
1295 1.1 fredette /*##################### Functions and Subroutines ##########################*/
1296 1.1 fredette
1297 1.1 fredette /**************************************/
1298 1.1 fredette /* Miscellaneous Disassembly Routines */
1299 1.1 fredette /**************************************/
1300 1.1 fredette
1301 1.1 fredette /* Add instructions */
1302 1.1 fredette int
1303 1.5 chs addDasm(const struct inst *i, OFS ofs, union insn w)
1304 1.1 fredette {
1305 1.14 skrll db_printf("%s\t%%r%d, %%r%d, %%r%d",addDCond(Cond4(w)),
1306 1.1 fredette Rsa(w),Rsb(w),Rtc(w));
1307 1.1 fredette return (1);
1308 1.1 fredette }
1309 1.1 fredette
1310 1.1 fredette /* Unit instructions */
1311 1.1 fredette int
1312 1.5 chs unitDasm(const struct inst *i, OFS ofs, union insn w)
1313 1.1 fredette {
1314 1.16 skrll db_printf("%s", unitDCond(Cond4(w)));
1315 1.1 fredette if (Match("dcor") || Match("idcor"))
1316 1.14 skrll db_printf("\t%%r%d, %%r%d",Rsb(w),Rtc(w));
1317 1.1 fredette else
1318 1.14 skrll db_printf("\t%%r%d, %%r%d, %%r%d",Rsa(w),Rsb(w),Rtc(w));
1319 1.1 fredette return (1);
1320 1.1 fredette }
1321 1.1 fredette
1322 1.1 fredette /* Immediate Arithmetic instructions */
1323 1.1 fredette int
1324 1.5 chs iaDasm(const struct inst *i, OFS ofs, union insn w)
1325 1.1 fredette {
1326 1.1 fredette if (Match("addi"))
1327 1.14 skrll db_printf("%s\t%d, %%r%d, %%r%d",
1328 1.1 fredette addDCond(Cond4(w)),Im11(w),Rsb(w),Rta(w));
1329 1.1 fredette else
1330 1.14 skrll db_printf("%s\t%d, %%r%d, %%r%d",
1331 1.1 fredette subDCond(Cond4(w)),Im11(w),Rsb(w),Rta(w));
1332 1.1 fredette return (1);
1333 1.1 fredette }
1334 1.1 fredette
1335 1.1 fredette /* Shift double instructions */
1336 1.1 fredette int
1337 1.5 chs shdDasm(const struct inst *i, OFS ofs, union insn w)
1338 1.1 fredette {
1339 1.1 fredette if (Match("vshd"))
1340 1.14 skrll db_printf("%s\t%%r%d, %%r%d, %%r%d",
1341 1.1 fredette edDCond(Cond(w)), Rsa(w),Rsb(w),Rtc(w));
1342 1.1 fredette else
1343 1.14 skrll db_printf("%s\t%%r%d, %%r%d, %d, %%r%d",
1344 1.1 fredette edDCond(Cond(w)),Rsa(w),Rsb(w),31-Imd5(w),Rtc(w));
1345 1.1 fredette return (1);
1346 1.1 fredette }
1347 1.1 fredette
1348 1.1 fredette /* Extract instructions */
1349 1.1 fredette int
1350 1.5 chs extrDasm(const struct inst *i, OFS ofs, union insn w)
1351 1.1 fredette {
1352 1.14 skrll db_printf("%s\t%%r%d, %d, %d, %%r%d",
1353 1.1 fredette edDCond(Cond(w)),Rsb(w),Imd5(w),32 - Rsc(w),Rta(w));
1354 1.1 fredette return (1);
1355 1.1 fredette }
1356 1.1 fredette
1357 1.1 fredette
1358 1.1 fredette /* Variable extract instructions */
1359 1.1 fredette int
1360 1.5 chs vextrDasm(const struct inst *i, OFS ofs, union insn w)
1361 1.1 fredette {
1362 1.14 skrll db_printf("%s\t%%r%d, %d, %%r%d",
1363 1.1 fredette edDCond(Cond(w)),Rsb(w),32 - Rsc(w),Rta(w));
1364 1.1 fredette return (1);
1365 1.1 fredette }
1366 1.1 fredette
1367 1.1 fredette
1368 1.1 fredette /* Deposit instructions */
1369 1.1 fredette int
1370 1.5 chs depDasm(const struct inst *i, OFS ofs, union insn w)
1371 1.1 fredette {
1372 1.14 skrll db_printf("%s\t%%r%d, %d, %d, %%r%d",
1373 1.1 fredette edDCond(Cond(w)),Rsa(w),31 - Imd5(w),32 - Rsc(w),Rtb(w));
1374 1.1 fredette return (1);
1375 1.1 fredette }
1376 1.1 fredette
1377 1.1 fredette
1378 1.1 fredette /* Variable deposit instructions */
1379 1.1 fredette int
1380 1.5 chs vdepDasm(const struct inst *i, OFS ofs, union insn w)
1381 1.1 fredette {
1382 1.14 skrll db_printf("%s\t%%r%d, %d, %%r%d",
1383 1.1 fredette edDCond(Cond(w)),Rsa(w),32 - Rsc(w),Rtb(w));
1384 1.1 fredette return (1);
1385 1.1 fredette }
1386 1.1 fredette
1387 1.1 fredette
1388 1.1 fredette /* Deposit Immediate instructions */
1389 1.1 fredette int
1390 1.5 chs depiDasm(const struct inst *i, OFS ofs, union insn w)
1391 1.1 fredette {
1392 1.14 skrll db_printf("%s\t%d, %d, %d, %%r%d",
1393 1.1 fredette edDCond(Cond(w)),Ima5(w),31 - Imd5(w),32 - Imc5A(w),Rtb(w));
1394 1.1 fredette return (1);
1395 1.1 fredette }
1396 1.1 fredette
1397 1.1 fredette /* Variable Deposit Immediate instructions */
1398 1.1 fredette int
1399 1.5 chs vdepiDasm(const struct inst *i, OFS ofs, union insn w)
1400 1.1 fredette {
1401 1.14 skrll db_printf("%s\t%d, %d, %%r%d",edDCond(Cond(w)),Ima5(w),32-Imc5A(w),Rtb(w));
1402 1.1 fredette return (1);
1403 1.1 fredette }
1404 1.1 fredette
1405 1.1 fredette /*---------------------------------------------------------------------------
1406 1.1 fredette * conditionType$DisassembleCondition - Return a string which contains the
1407 1.1 fredette * ascii description of the passed numeric condition.
1408 1.1 fredette *---------------------------------------------------------------------------*/
1409 1.1 fredette
1410 1.7 chs const char *
1411 1.5 chs subDCond(u_int cond)
1412 1.1 fredette {
1413 1.1 fredette switch(cond) {
1414 1.1 fredette case EQZ: return(",=");
1415 1.1 fredette case LT: return(",<");
1416 1.1 fredette case LE: return(",<=");
1417 1.1 fredette case LLT: return(",<<");
1418 1.1 fredette case LLE: return(",<<=");
1419 1.1 fredette case SV: return(",sv");
1420 1.1 fredette case OD: return(",od");
1421 1.1 fredette case NEQZ: return(",<>");
1422 1.1 fredette case GE: return(",>=");
1423 1.1 fredette case GT: return(",>");
1424 1.1 fredette case LGE: return(",>>=");
1425 1.1 fredette case LGT: return(",>>");
1426 1.1 fredette case NSV: return(",nsv");
1427 1.1 fredette case EV: return(",ev");
1428 1.1 fredette case TR: return(",tr");
1429 1.1 fredette case NEV: return("");
1430 1.1 fredette default:
1431 1.16 skrll return("subDCond: unknown condition");
1432 1.1 fredette }
1433 1.1 fredette }
1434 1.1 fredette
1435 1.1 fredette
1436 1.1 fredette /*---------------------------------------------------------------------------
1437 1.1 fredette * conditionType$DisassembleCondition - Return a string which contains the
1438 1.1 fredette * ascii description of the passed numeric condition.
1439 1.1 fredette *---------------------------------------------------------------------------*/
1440 1.1 fredette
1441 1.7 chs const char *
1442 1.5 chs addDCond(u_int cond)
1443 1.1 fredette {
1444 1.1 fredette switch(cond) {
1445 1.1 fredette case EQZ: return(",=");
1446 1.1 fredette case LT: return(",<");
1447 1.1 fredette case LE: return(",<=");
1448 1.1 fredette case NUV: return(",nuv");
1449 1.1 fredette case ZNV: return(",znv");
1450 1.1 fredette case SV: return(",sv");
1451 1.1 fredette case OD: return(",od");
1452 1.1 fredette case NEQZ: return(",<>");
1453 1.1 fredette case GE: return(",>=");
1454 1.1 fredette case GT: return(",>");
1455 1.1 fredette case UV: return(",uv");
1456 1.1 fredette case VNZ: return(",vnz");
1457 1.1 fredette case NSV: return(",nsv");
1458 1.1 fredette case EV: return(",ev");
1459 1.1 fredette case TR: return(",tr");
1460 1.1 fredette case NEV: return("");
1461 1.1 fredette default:
1462 1.16 skrll return ("addDCond: unknown condition");
1463 1.1 fredette }
1464 1.1 fredette }
1465 1.1 fredette
1466 1.7 chs const char *
1467 1.5 chs unitDCond(u_int cond)
1468 1.1 fredette {
1469 1.1 fredette switch(cond) {
1470 1.1 fredette case SHC: return(",shc");
1471 1.1 fredette case SHZ: return(",shz");
1472 1.1 fredette case SBC: return(",sbc");
1473 1.1 fredette case SBZ: return(",sbz");
1474 1.1 fredette case SDC: return(",sdc");
1475 1.1 fredette case NHC: return(",nhc");
1476 1.1 fredette case NHZ: return(",nhz");
1477 1.1 fredette case NBC: return(",nbc");
1478 1.1 fredette case NBZ: return(",nbz");
1479 1.1 fredette case NDC: return(",ndc");
1480 1.1 fredette case TR: return(",tr");
1481 1.1 fredette case NEV: return("");
1482 1.1 fredette default:
1483 1.16 skrll return("unitDCond: unknown condition");
1484 1.1 fredette }
1485 1.1 fredette }
1486 1.1 fredette
1487 1.7 chs const char *
1488 1.5 chs edDCond(u_int cond)
1489 1.1 fredette {
1490 1.1 fredette switch(cond) {
1491 1.1 fredette case XOD: return(",od");
1492 1.1 fredette case XTR: return(",tr");
1493 1.1 fredette case XNE: return(",<>");
1494 1.1 fredette case XLT: return(",<");
1495 1.1 fredette case XEQ: return(",=");
1496 1.1 fredette case XGE: return(",>=");
1497 1.1 fredette case XEV: return(",ev");
1498 1.1 fredette case NEV: return("");
1499 1.1 fredette default:
1500 1.16 skrll return("edDCond: unknown condition");
1501 1.1 fredette }
1502 1.1 fredette }
1503 1.1 fredette
1504 1.1 fredette
1505 1.1 fredette
1506 1.1 fredette /****************************************/
1507 1.1 fredette /* Format Specific Disassembly Routines */
1508 1.1 fredette /****************************************/
1509 1.1 fredette
1510 1.1 fredette
1511 1.1 fredette /* Load [modify] instructions */
1512 1.1 fredette int
1513 1.5 chs ldDasm(const struct inst *i, OFS ofs, union insn w)
1514 1.1 fredette {
1515 1.3 chs int d = Disp(w);
1516 1.1 fredette char s[2];
1517 1.1 fredette
1518 1.1 fredette s[1] = '\0';
1519 1.1 fredette if (d < 0) {
1520 1.1 fredette d = -d;
1521 1.1 fredette s[0] = '-';
1522 1.1 fredette } else
1523 1.1 fredette s[0] = '\0';
1524 1.1 fredette
1525 1.1 fredette if (Rsb(w) == 0 && Match("ldo")) {
1526 1.14 skrll db_printf("ldi\t%s%X, %%r%d",s,d,Rta(w));
1527 1.1 fredette return (1);
1528 1.1 fredette }
1529 1.1 fredette db_printf("%s\t%s%s%X",i->mnem,(d < 2048? "R'":""), s, d);
1530 1.1 fredette if (Dss(w))
1531 1.14 skrll db_printf("(%%sr%d, %%r%d), %%r%d",Dss(w),Rsb(w),Rta(w));
1532 1.1 fredette else
1533 1.14 skrll db_printf("(%%r%d), %%r%d",Rsb(w),Rta(w));
1534 1.1 fredette return (1);
1535 1.1 fredette }
1536 1.1 fredette
1537 1.1 fredette /* Store [modify] instructions */
1538 1.1 fredette int
1539 1.5 chs stDasm(const struct inst *i, OFS ofs, union insn w)
1540 1.1 fredette {
1541 1.3 chs int d = Disp(w);
1542 1.1 fredette char s[2];
1543 1.1 fredette
1544 1.14 skrll db_printf("\t%%r%d, ",Rta(w));
1545 1.1 fredette
1546 1.1 fredette s[1] = '\0';
1547 1.1 fredette if (d < 0) {
1548 1.1 fredette d = -d;
1549 1.1 fredette s[0] = '-';
1550 1.1 fredette } else
1551 1.1 fredette s[0] = '\0';
1552 1.1 fredette
1553 1.1 fredette db_printf("%s%s%X", (d < 2048? "R'":""), s, d);
1554 1.1 fredette
1555 1.1 fredette if (Dss(w))
1556 1.14 skrll db_printf("(%%sr%d, %%r%d)",Dss(w),Rsb(w));
1557 1.1 fredette else
1558 1.1 fredette db_printf("(%%r%d)",Rsb(w));
1559 1.1 fredette return (1);
1560 1.1 fredette }
1561 1.1 fredette
1562 1.1 fredette /* Load indexed instructions */
1563 1.1 fredette int
1564 1.5 chs ldxDasm(const struct inst *i, OFS ofs, union insn w)
1565 1.1 fredette {
1566 1.3 chs const char *p;
1567 1.1 fredette
1568 1.1 fredette if (ShortDisp(w)) {
1569 1.1 fredette db_printf("s");
1570 1.1 fredette if (Modify(w))
1571 1.1 fredette db_printf(",m%s", ModBefore(w)? "b": "a");
1572 1.1 fredette } else {
1573 1.1 fredette db_printf("x");
1574 1.1 fredette if (Modify(w))
1575 1.1 fredette db_printf(",%sm", IndxShft(w)? "s":"");
1576 1.1 fredette }
1577 1.1 fredette switch (CacheCtrl(w)) {
1578 1.4 matt default:
1579 1.1 fredette case NOACTION: p = ""; break;
1580 1.1 fredette case STACKREF: p = ",c"; break;
1581 1.1 fredette case SEQPASS: p = ",q"; break;
1582 1.1 fredette case PREFETCH: p = ",p"; break;
1583 1.1 fredette }
1584 1.1 fredette if (ShortDisp(w))
1585 1.1 fredette db_printf("%s\t%d", p, Ima5(w));
1586 1.1 fredette else
1587 1.1 fredette db_printf("%s\t%%r%d", p, Rsa(w));
1588 1.1 fredette
1589 1.1 fredette if (Dss(w))
1590 1.14 skrll db_printf("(%%sr%d, %%r%d), %%r%d",Dss(w),Rsb(w),Rtc(w));
1591 1.1 fredette else
1592 1.14 skrll db_printf("(%%r%d), %%r%d",Rsb(w),Rtc(w));
1593 1.1 fredette return (1);
1594 1.1 fredette }
1595 1.1 fredette
1596 1.1 fredette /* Store short displacement instructions */
1597 1.1 fredette int
1598 1.5 chs stsDasm(const struct inst *i, OFS ofs, union insn w)
1599 1.1 fredette {
1600 1.3 chs const char *p;
1601 1.5 chs
1602 1.1 fredette if (Modify(w))
1603 1.1 fredette db_printf(",m%s", ModBefore(w)? "b":"a");
1604 1.1 fredette
1605 1.1 fredette switch (CacheCtrl(w)) {
1606 1.4 matt default:
1607 1.1 fredette case NOACTION: p = ""; break;
1608 1.1 fredette case STACKREF: p = ",c"; break;
1609 1.1 fredette case SEQPASS: p = ",q"; break;
1610 1.1 fredette case PREFETCH: p = ",p"; break;
1611 1.1 fredette }
1612 1.14 skrll db_printf("%s\t%%r%d, ", p, Rta(w));
1613 1.1 fredette if (Dss(w))
1614 1.14 skrll db_printf("%d(%%sr%d, %%r%d)",Imc5(w),Dss(w),Rsb(w));
1615 1.1 fredette else
1616 1.1 fredette db_printf("%d(%%r%d)",Imc5(w),Rsb(w));
1617 1.1 fredette return (1);
1618 1.1 fredette }
1619 1.1 fredette
1620 1.1 fredette /* Store Bytes Instruction */
1621 1.1 fredette int
1622 1.5 chs stbysDasm(const struct inst *i, OFS ofs, union insn w)
1623 1.1 fredette {
1624 1.3 chs const char *p;
1625 1.5 chs
1626 1.16 skrll db_printf("%s", ModBefore(w)? ",e":",b");
1627 1.1 fredette if (Modify(w))
1628 1.1 fredette db_printf(",m");
1629 1.1 fredette switch (CacheCtrl(w)) {
1630 1.4 matt default:
1631 1.1 fredette case NOACTION: p = ""; break;
1632 1.1 fredette case STACKREF: p = ",f"; break;
1633 1.1 fredette case SEQPASS: p = ",r"; break;
1634 1.1 fredette case PREFETCH: p = ",z"; break;
1635 1.1 fredette }
1636 1.14 skrll db_printf("%s\t%%r%d, ", p, Rta(w));
1637 1.1 fredette if (Dss(w))
1638 1.14 skrll db_printf("%d(%%sr%d, %%r%d)",Imc5(w),Dss(w),Rsb(w));
1639 1.1 fredette else
1640 1.1 fredette db_printf("%d(%%r%d)",Imc5(w),Rsb(w));
1641 1.1 fredette return (1);
1642 1.1 fredette }
1643 1.1 fredette
1644 1.1 fredette /* Long Immediate instructions */
1645 1.1 fredette int
1646 1.5 chs limmDasm(const struct inst *i, OFS ofs, union insn w)
1647 1.1 fredette {
1648 1.14 skrll db_printf("\tL'%X, %%r%d", Im21(w), Rtb(w));
1649 1.1 fredette return (1);
1650 1.1 fredette }
1651 1.1 fredette
1652 1.1 fredette
1653 1.1 fredette /* Branch and Link instruction(s) (Branch, too!!) */
1654 1.1 fredette int
1655 1.5 chs blDasm(const struct inst *i, OFS ofs, union insn w)
1656 1.1 fredette {
1657 1.3 chs OFS tgtofs = ofs + 8 + Bdisp(w);
1658 1.3 chs u_int link = Rtb(w);
1659 1.1 fredette
1660 1.1 fredette if (link && !Match("gate"))
1661 1.1 fredette db_printf("l");
1662 1.1 fredette if (Nu(w))
1663 1.1 fredette db_printf(",n");
1664 1.1 fredette db_printf("\t");
1665 1.1 fredette
1666 1.1 fredette db_printsym((db_addr_t)tgtofs, DB_STGY_ANY, db_printf);
1667 1.1 fredette
1668 1.1 fredette if (link || Match("gate"))
1669 1.14 skrll db_printf(", %%r%d",link);
1670 1.1 fredette
1671 1.1 fredette return (1);
1672 1.1 fredette }
1673 1.1 fredette
1674 1.1 fredette /* Branch Register instruction */
1675 1.1 fredette int
1676 1.5 chs brDasm(const struct inst *i, OFS ofs, union insn w)
1677 1.1 fredette {
1678 1.14 skrll db_printf("%s\t%%r%d, %%r%d", Nu(w)?",n":"", Rsa(w), Rtb(w));
1679 1.1 fredette return (1);
1680 1.1 fredette }
1681 1.1 fredette
1682 1.1 fredette /* Dispatch instructions */
1683 1.1 fredette int
1684 1.5 chs bvDasm(const struct inst *i, OFS ofs, union insn w)
1685 1.1 fredette {
1686 1.1 fredette db_printf("%s\t%%r%d(%%r%d)", Nu(w)?",n":"", Rsa(w), Rsb(w));
1687 1.1 fredette return (1);
1688 1.1 fredette }
1689 1.1 fredette
1690 1.1 fredette /* Branch External instructions */
1691 1.1 fredette int
1692 1.5 chs beDasm(const struct inst *i, OFS ofs, union insn w)
1693 1.1 fredette {
1694 1.3 chs int d = Bdisp(w);
1695 1.3 chs const char *p;
1696 1.1 fredette char s[2];
1697 1.1 fredette
1698 1.1 fredette s[1] = '\0';
1699 1.1 fredette if (d < 0) {
1700 1.1 fredette d = -d;
1701 1.1 fredette s[0] = '-';
1702 1.1 fredette } else
1703 1.1 fredette s[0] = '\0';
1704 1.1 fredette
1705 1.1 fredette p = Nu(w)? ",n":"";
1706 1.14 skrll db_printf("%s\tR'%s%X(%%sr%d, %%r%d)", p,
1707 1.1 fredette s, d, Sr(w), Rsb(w));
1708 1.1 fredette return (1);
1709 1.1 fredette }
1710 1.1 fredette
1711 1.1 fredette
1712 1.1 fredette /* Compare/Add and Branch instructions */
1713 1.1 fredette int
1714 1.5 chs cbDasm(const struct inst *i, OFS ofs, union insn w)
1715 1.1 fredette {
1716 1.3 chs OFS tgtofs = ofs + 8 + Cbdisp(w);
1717 1.1 fredette
1718 1.1 fredette if (Match("movb"))
1719 1.16 skrll db_printf("%s", edDCond(Cond(w)));
1720 1.1 fredette else if (Match("addb"))
1721 1.16 skrll db_printf("%s", addDCond(Cond(w) << 1));
1722 1.1 fredette else
1723 1.16 skrll db_printf("%s", subDCond(Cond(w) << 1));
1724 1.16 skrll db_printf("%s\t%%r%d, %%r%d, ", Nu(w)?",n":"", Rsa(w), Rsb(w));
1725 1.1 fredette db_printsym((db_addr_t)tgtofs, DB_STGY_ANY, db_printf);
1726 1.1 fredette return (1);
1727 1.1 fredette }
1728 1.1 fredette
1729 1.1 fredette /* Compare/Add and Branch Immediate instructions */
1730 1.1 fredette int
1731 1.5 chs cbiDasm(const struct inst *i, OFS ofs, union insn w)
1732 1.1 fredette {
1733 1.3 chs OFS tgtofs = ofs + 8 + Cbdisp(w);
1734 1.1 fredette
1735 1.1 fredette if (Match("movib"))
1736 1.16 skrll db_printf("%s", edDCond(Cond(w)));
1737 1.1 fredette else if (Match("addib"))
1738 1.16 skrll db_printf("%s", addDCond(Cond(w) << 1));
1739 1.1 fredette else
1740 1.16 skrll db_printf("%s", subDCond(Cond(w) << 1));
1741 1.14 skrll db_printf("%s\t%d, %%r%d, ", Nu(w)? ",n":"", Ima5(w), Rsb(w));
1742 1.1 fredette db_printsym((db_addr_t)tgtofs, DB_STGY_ANY, db_printf);
1743 1.1 fredette return (1);
1744 1.1 fredette }
1745 1.1 fredette
1746 1.1 fredette /* Branch on Bit instructions */
1747 1.1 fredette int
1748 1.5 chs bbDasm(const struct inst *i, OFS ofs, union insn w)
1749 1.1 fredette {
1750 1.3 chs OFS tgtofs = ofs + 8 + Cbdisp(w);
1751 1.3 chs const char *p;
1752 1.1 fredette
1753 1.16 skrll db_printf("%s", edDCond(Cond(w)));
1754 1.1 fredette p = Nu(w)? ",n":"";
1755 1.1 fredette if (Match("bvb"))
1756 1.14 skrll db_printf("%s\t%%r%d, ", p, Rta(w));
1757 1.1 fredette else
1758 1.14 skrll db_printf("%s\t%%r%d, %d, ", p, Rsa(w), Imb5(w));
1759 1.1 fredette db_printsym((db_addr_t)tgtofs, DB_STGY_ANY, db_printf);
1760 1.1 fredette return (1);
1761 1.1 fredette }
1762 1.1 fredette
1763 1.1 fredette /* Arithmetic instructions */
1764 1.1 fredette int
1765 1.5 chs ariDasm(const struct inst *i, OFS ofs, union insn w)
1766 1.1 fredette {
1767 1.1 fredette if (Match("or") && Rsb(w) == 0 && Cond4(w) == NEV) {
1768 1.1 fredette if (Rsa(w) == 0 && Rtc(w) == 0)
1769 1.1 fredette db_printf("nop");
1770 1.1 fredette else
1771 1.14 skrll db_printf("copy\t%%r%d, %%r%d",Rsa(w),Rtc(w));
1772 1.1 fredette } else
1773 1.14 skrll db_printf("%s%s\t%%r%d, %%r%d, %%r%d", i->mnem,
1774 1.1 fredette subDCond(Cond4(w)), Rsa(w),Rsb(w),Rtc(w));
1775 1.1 fredette return(1);
1776 1.1 fredette }
1777 1.1 fredette
1778 1.1 fredette /* System control operations */
1779 1.1 fredette int
1780 1.5 chs scDasm(const struct inst *i, OFS ofs, union insn w)
1781 1.1 fredette {
1782 1.1 fredette if (Match("mtctl")) {
1783 1.1 fredette if (Rtb(w) == 11)
1784 1.1 fredette db_printf("mtsar\t%%r%d",Rsa(w));
1785 1.1 fredette else
1786 1.14 skrll db_printf("mtctl\t%%r%d, %%cr%d",Rsa(w),Rtb(w));
1787 1.1 fredette return (1);
1788 1.1 fredette }
1789 1.16 skrll db_printf("%s", i->mnem);
1790 1.1 fredette if (Match("ssm") || Match("rsm"))
1791 1.14 skrll db_printf("\t%d, %%r%d",Ima5A(w),Rtc(w));
1792 1.1 fredette else if (Match("mtsm")) db_printf("\t%%r%d",Rsa(w));
1793 1.1 fredette else if (Match("ldprid")) db_printf("\t%%r%d",Rtc(w));
1794 1.14 skrll else if (Match("mtsp")) db_printf("\t%%r%d, %%sr%d",Rsa(w),Sr(w));
1795 1.14 skrll else if (Match("mfsp")) db_printf("\t%%sr%d, %%r%d",Sr(w),Rtc(w));
1796 1.14 skrll else if (Match("mfctl")) db_printf("\t%%cr%d, %%r%d",Rsb(w),Rtc(w));
1797 1.1 fredette else if (Match("ldsid")) {
1798 1.1 fredette if (Dss(w))
1799 1.14 skrll db_printf("\t(%%sr%d, %%r%d), %%r%d",Dss(w),Rsb(w),Rtc(w));
1800 1.1 fredette else
1801 1.14 skrll db_printf("\t(%%r%d), %%r%d",Rsb(w),Rtc(w));
1802 1.1 fredette } else {
1803 1.1 fredette db_printf("?????");
1804 1.1 fredette return (0);
1805 1.1 fredette }
1806 1.1 fredette return (1);
1807 1.1 fredette }
1808 1.1 fredette
1809 1.1 fredette /* Instruction cache/tlb control instructions */
1810 1.1 fredette int
1811 1.5 chs mmgtDasm(const struct inst *i, OFS ofs, union insn w)
1812 1.1 fredette {
1813 1.1 fredette if (Match("probe")) {
1814 1.1 fredette if (ProbeI(w)) {
1815 1.1 fredette if (Dss(w))
1816 1.14 skrll db_printf("i\t(%%sr%d, %%r%d), %d, %%r%d",
1817 1.1 fredette Dss(w),Rsb(w),Rsa(w),Rtc(w));
1818 1.1 fredette else
1819 1.14 skrll db_printf("i\t(%%r%d), %d, %%r%d",
1820 1.1 fredette Rsb(w),Rsa(w),Rtc(w));
1821 1.1 fredette } else {
1822 1.1 fredette if (Dss(w))
1823 1.14 skrll db_printf("\t(%%sr%d, %%r%d), %%r%d, %%r%d",
1824 1.1 fredette Dss(w),Rsb(w),Rsa(w),Rtc(w));
1825 1.1 fredette else
1826 1.14 skrll db_printf("\t(%%r%d), %%r%d, %%r%d",
1827 1.1 fredette Rsb(w),Rsa(w),Rtc(w));
1828 1.1 fredette }
1829 1.1 fredette }
1830 1.1 fredette else if (Match("lha") || Match("lpa")) {
1831 1.1 fredette if (Modify(w))
1832 1.1 fredette db_printf(",m");
1833 1.1 fredette if (Dss(w))
1834 1.14 skrll db_printf("\t%%r%d(%%sr%d, %%r%d), %%r%d",
1835 1.1 fredette Rsa(w),Dss(w),Rsb(w),Rtc(w));
1836 1.1 fredette else
1837 1.14 skrll db_printf("\t%%r%d(%%r%d), %%r%d",Rsa(w),Rsb(w),Rtc(w));
1838 1.1 fredette }
1839 1.1 fredette else if (Match("pdtlb") || Match("pdc") || Match("fdc")) {
1840 1.1 fredette if (Modify(w)) db_printf(",m");
1841 1.1 fredette if (Dss(w))
1842 1.14 skrll db_printf("\t%%r%d(%%sr%d, %%r%d)",Rsa(w),Dss(w),Rsb(w));
1843 1.1 fredette else
1844 1.1 fredette db_printf("\t%%r%d(%%r%d)",Rsa(w),Rsb(w));
1845 1.1 fredette }
1846 1.1 fredette else if (Match("pitlb") || Match("fic")) {
1847 1.1 fredette if (Modify(w))
1848 1.1 fredette db_printf(",m");
1849 1.14 skrll db_printf("\t%%r%d(%%sr%d, %%r%d)",Rsa(w),Sr(w),Rsb(w));
1850 1.1 fredette }
1851 1.1 fredette else if (Match("idtlb")) {
1852 1.1 fredette if (Dss(w))
1853 1.14 skrll db_printf("\t%%r%d, (%%sr%d, %%r%d)",Rsa(w),Dss(w),Rsb(w));
1854 1.1 fredette else
1855 1.14 skrll db_printf("\t%%r%d, (%%r%d)",Rsa(w),Rsb(w));
1856 1.1 fredette }
1857 1.1 fredette else if (Match("iitlb"))
1858 1.14 skrll db_printf("\t%%r%d, (%%sr%d, %%r%d)",Rsa(w),Sr(w),Rsb(w));
1859 1.1 fredette else {
1860 1.1 fredette db_printf("?????");
1861 1.1 fredette return (0);
1862 1.1 fredette }
1863 1.1 fredette return(1);
1864 1.1 fredette }
1865 1.1 fredette
1866 1.1 fredette /* break instruction */
1867 1.1 fredette int
1868 1.5 chs brkDasm(const struct inst *i, OFS ofs, union insn w)
1869 1.1 fredette {
1870 1.14 skrll db_printf("\t%d, %d",Bi1(w),Bi2(w));
1871 1.1 fredette return (1);
1872 1.1 fredette }
1873 1.1 fredette
1874 1.1 fredette int
1875 1.5 chs floatDasm(const struct inst *i, OFS ofs, union insn w)
1876 1.1 fredette {
1877 1.3 chs u_int op1, r1, fmt, t;
1878 1.1 fredette u_int op2, r2, dfmt;
1879 1.7 chs const char *p;
1880 1.1 fredette
1881 1.1 fredette op1 = CoprExt1(w);
1882 1.1 fredette op2 = CoprExt2(w);
1883 1.1 fredette fmt = (op1 >> 2) & 3; /* get precision of source */
1884 1.1 fredette
1885 1.1 fredette #define ST(r) ((fmt & 1)? fdreg[(r)]:fsreg[(r)])
1886 1.1 fredette /*
1887 1.1 fredette * get first (or only) source register
1888 1.1 fredette * (independent of class)
1889 1.1 fredette */
1890 1.1 fredette r1 = (op1 >> 11) & 0x3e;
1891 1.1 fredette if ((fmt & 1) == 0 && (Uid(w) & 2))
1892 1.1 fredette r1++;
1893 1.1 fredette
1894 1.1 fredette if (op1 & 2) { /* class 2 or 3 */
1895 1.1 fredette /*
1896 1.1 fredette * get second source register
1897 1.1 fredette */
1898 1.1 fredette r2 = (op1 >> 6) & 0x3e;
1899 1.1 fredette if (fmt == 2)
1900 1.1 fredette r2++;
1901 1.1 fredette
1902 1.1 fredette if ((op1 & 1) == 0) { /* class 2 */
1903 1.1 fredette /* Opclass 2: 2 sources, no destination */
1904 1.1 fredette switch((op1 >> 4) & 7) {
1905 1.1 fredette case 0:
1906 1.1 fredette p = "cmp";
1907 1.1 fredette break;
1908 1.1 fredette default:
1909 1.16 skrll db_printf("%s", fcoprUndef);
1910 1.1 fredette return(0);
1911 1.1 fredette }
1912 1.1 fredette db_printf("%s,%s",p,fmtStrTbl[fmt]);
1913 1.14 skrll db_printf(",%s\t%%f%s, %%f%s",
1914 1.1 fredette condStrTbl[op2], ST(r1), ST(r2));
1915 1.1 fredette return (1);
1916 1.1 fredette }
1917 1.1 fredette /*
1918 1.1 fredette * get target register (class 3)
1919 1.1 fredette */
1920 1.1 fredette t = (op2 << 1);
1921 1.1 fredette if ((fmt & 1) == 0 && (Uid(w) & 1))
1922 1.1 fredette t++;
1923 1.1 fredette /* Opclass 3: 2 sources, 1 destination */
1924 1.1 fredette switch((op1 >> 4) & 7) {
1925 1.1 fredette case 0: p = "add"; break;
1926 1.1 fredette case 1: p = "sub"; break;
1927 1.1 fredette case 2: p = (Fpi(w)) ? "mpyi" : "mpy"; break;
1928 1.1 fredette case 3: p = "div"; break;
1929 1.1 fredette case 4: p = "rem"; break;
1930 1.16 skrll default: db_printf("%s", fcoprUndef); return (0);
1931 1.1 fredette }
1932 1.1 fredette db_printf("%s,%s", p, fmtStrTbl[fmt]);
1933 1.14 skrll db_printf("\t%%f%s, %%f%s, %%f%s",ST(r1),ST(r2),ST(t));
1934 1.1 fredette } else if (op1 & 1) { /* class 1 */
1935 1.1 fredette dfmt = (op1 >> 4) & 3;
1936 1.1 fredette #define DT(r) ((dfmt & 1)? fdreg[(r)]:fsreg[(r)])
1937 1.1 fredette
1938 1.1 fredette /*
1939 1.1 fredette * get target register
1940 1.1 fredette */
1941 1.1 fredette t = (op2 << 1);
1942 1.1 fredette if ((dfmt & 1) == 0 && (Uid(w) & 1))
1943 1.1 fredette t++;
1944 1.1 fredette /* Opclass 1: 1 source, 1 destination conversions */
1945 1.4 matt p = &"ff\0\0xf\0\0fx\0\0fxt\0"[((op1) >> 4) & 0x0c];
1946 1.4 matt #if 0
1947 1.1 fredette switch((op1 >> 6) & 3) {
1948 1.4 matt default:
1949 1.1 fredette case 0: p = "ff"; break;
1950 1.1 fredette case 1: p = "xf"; break;
1951 1.1 fredette case 2: p = "fx"; break;
1952 1.1 fredette case 3: p = "fxt"; break;
1953 1.1 fredette }
1954 1.4 matt #endif
1955 1.1 fredette db_printf("%s,%s", p, fmtStrTbl[fmt]);
1956 1.14 skrll db_printf(",%s\t%%f%s, %%f%s",fmtStrTbl[dfmt],ST(r1),DT(t));
1957 1.1 fredette } else { /* class 0 */
1958 1.1 fredette /*
1959 1.1 fredette * get target register
1960 1.1 fredette */
1961 1.1 fredette t = (op2 << 1);
1962 1.1 fredette if ((fmt & 1) == 0 && (Uid(w) & 1))
1963 1.1 fredette t++;
1964 1.1 fredette /* Opclass 0: 1 source, 1 destination */
1965 1.1 fredette switch((op1 >> 4) & 7) {
1966 1.1 fredette case 1: p = "rsqrt"; break;
1967 1.1 fredette case 2: p = "cpy"; break;
1968 1.1 fredette case 3: p = "abs"; break;
1969 1.1 fredette case 4: p = "sqrt"; break;
1970 1.1 fredette case 5: p = "rnd"; break;
1971 1.16 skrll default: db_printf("%s", fcoprUndef); return (0);
1972 1.1 fredette }
1973 1.1 fredette db_printf("%s,%s",p,fmtStrTbl[fmt]);
1974 1.14 skrll db_printf("\t%%f%s, %%f%s",ST(r1),ST(t));
1975 1.1 fredette }
1976 1.1 fredette return (1);
1977 1.1 fredette }
1978 1.1 fredette
1979 1.1 fredette int
1980 1.5 chs fcoprDasm(union insn w, u_int op1, u_int op2)
1981 1.1 fredette {
1982 1.3 chs u_int r1, r2, t, fmt, dfmt;
1983 1.7 chs const char *p;
1984 1.1 fredette
1985 1.1 fredette if (AstNu(w) && op1 == ((1<<4) | 2)) {
1986 1.1 fredette if (op2 == 0 || op2 == 1 || op2 == 2) {
1987 1.1 fredette db_printf("ftest");
1988 1.1 fredette if (op2 == 1)
1989 1.1 fredette db_printf(",acc");
1990 1.1 fredette else if (op2 == 2)
1991 1.1 fredette db_printf(",rej");
1992 1.1 fredette return (1);
1993 1.1 fredette }
1994 1.1 fredette return (0);
1995 1.1 fredette } else if (0 == op1 && 0 == op2) {
1996 1.1 fredette db_printf("fcopr identify");
1997 1.1 fredette return (1);
1998 1.1 fredette }
1999 1.1 fredette switch(op1 & 3) {
2000 1.1 fredette case 0:
2001 1.1 fredette /* Opclass 0: 1 source, 1 destination */
2002 1.1 fredette r1 = (op1 >> 12) & 0x1f; t = op2; fmt = (op1 >> 2) & 3;
2003 1.1 fredette switch((op1 >> 4) & 7) {
2004 1.1 fredette case 1: p = "rsqrt"; break;
2005 1.1 fredette case 2: p = "cpy"; break;
2006 1.1 fredette case 3: p = "abs"; break;
2007 1.1 fredette case 4: p = "sqrt"; break;
2008 1.1 fredette case 5: p = "rnd"; break;
2009 1.16 skrll default: db_printf("%s", fcoprUndef); return(0);
2010 1.1 fredette }
2011 1.14 skrll db_printf("f%s,%s\t%%fr%d, %%fr%d", p, fmtStrTbl[fmt], r1, t);
2012 1.1 fredette break;
2013 1.1 fredette case 1:
2014 1.1 fredette /* Opclass 1: 1 source, 1 destination conversions */
2015 1.1 fredette r1 = (op1 >> 12) & 0x1f; t = op2;
2016 1.1 fredette fmt = (op1 >> 2) & 3; dfmt = (op1 >> 4) & 3;
2017 1.4 matt p = &"ff\0\0xf\0\0fx\0\0fxt\0"[((op1) >> 4) & 0x0c];
2018 1.4 matt #if 0
2019 1.1 fredette switch((op1 >> 6) & 3) {
2020 1.1 fredette case 0: p = "ff"; break;
2021 1.1 fredette case 1: p = "xf"; break;
2022 1.1 fredette case 2: p = "fx"; break;
2023 1.1 fredette case 3: p = "fxt"; break;
2024 1.1 fredette }
2025 1.4 matt #endif
2026 1.14 skrll db_printf("fcnv%s,%s,%s\t%%fr%d, %%fr%d",
2027 1.1 fredette p, fmtStrTbl[fmt], fmtStrTbl[dfmt], r1, t);
2028 1.1 fredette break;
2029 1.1 fredette case 2:
2030 1.1 fredette /* Opclass 2: 2 sources, no destination */
2031 1.1 fredette r1 = (op1 >> 12) & 0x1f; r2 = (op1 >> 7) & 0x1f;
2032 1.1 fredette fmt = (op1 >> 2) & 3;
2033 1.1 fredette switch((op1 >> 4) & 7) {
2034 1.1 fredette case 0: p = "fcmp"; break;
2035 1.16 skrll default: db_printf("%s", fcoprUndef); return (0);
2036 1.1 fredette }
2037 1.14 skrll db_printf("%s,%s,%s\t%%fr%d, %%fr%d",
2038 1.1 fredette p,fmtStrTbl[fmt],condStrTbl[op2],r1,r2);
2039 1.1 fredette break;
2040 1.1 fredette case 3:
2041 1.1 fredette /* Opclass 3: 2 sources, 1 destination */
2042 1.1 fredette r1 = (op1 >> 12) & 0x1f; r2 = (op1 >> 7) & 0x1f; t = op2;
2043 1.1 fredette fmt = (op1 >> 2) & 3;
2044 1.1 fredette switch((op1 >> 4) & 7) {
2045 1.1 fredette case 0: p = "add"; break;
2046 1.1 fredette case 1: p = "sub"; break;
2047 1.1 fredette case 2: p = "mpy"; break;
2048 1.1 fredette case 3: p = "div"; break;
2049 1.1 fredette case 4: p = "rem"; break;
2050 1.16 skrll default: db_printf("%s", fcoprUndef); return (0);
2051 1.1 fredette }
2052 1.14 skrll db_printf("f%s,%s\t%%fr%d, %%fr%d, %%fr%d",
2053 1.1 fredette p, fmtStrTbl[fmt], r1, r2, t);
2054 1.1 fredette break;
2055 1.1 fredette default:
2056 1.16 skrll db_printf("%s", fcoprUndef);
2057 1.1 fredette return(0);
2058 1.1 fredette }
2059 1.1 fredette return (1);
2060 1.1 fredette }
2061 1.1 fredette
2062 1.1 fredette int
2063 1.5 chs coprDasm(const struct inst *i, OFS ofs, union insn w)
2064 1.1 fredette {
2065 1.3 chs u_int uid = Uid(w);
2066 1.3 chs int load = 0;
2067 1.7 chs const char *pfx = uid > 1 ? "c" : "f";
2068 1.4 matt int dreg = 0;
2069 1.1 fredette
2070 1.1 fredette if (Match("copr")) {
2071 1.1 fredette if (uid) {
2072 1.1 fredette db_printf("copr,%d,0x%x",uid,CoprExt(w));
2073 1.1 fredette if (AstNu(w))
2074 1.1 fredette db_printf(",n");
2075 1.1 fredette return (1);
2076 1.1 fredette }
2077 1.1 fredette return fcoprDasm(w, CoprExt1(w),CoprExt2(w));
2078 1.1 fredette }
2079 1.1 fredette if (Match("cldd")) {
2080 1.1 fredette dreg = 1;
2081 1.1 fredette load = 1;
2082 1.1 fredette db_printf("%sldd",pfx);
2083 1.1 fredette } else if (Match("cldw")) {
2084 1.1 fredette load = 1;
2085 1.1 fredette db_printf("%sldw",pfx);
2086 1.1 fredette } else if (Match("cstd")) {
2087 1.1 fredette dreg = 1;
2088 1.1 fredette db_printf("%sstd",pfx);
2089 1.1 fredette } else if (Match("cstw"))
2090 1.1 fredette db_printf("%sstw",pfx);
2091 1.1 fredette else {
2092 1.1 fredette db_printf("copr???");
2093 1.1 fredette return (0);
2094 1.1 fredette }
2095 1.1 fredette if (ShortDisp(w)) {
2096 1.1 fredette db_printf("s");
2097 1.1 fredette if (AstNu(w))
2098 1.1 fredette db_printf(",m%s", ModBefore(w)?"b":"a");
2099 1.1 fredette }
2100 1.1 fredette else {
2101 1.1 fredette db_printf("x");
2102 1.1 fredette if (AstNu(w))
2103 1.1 fredette db_printf(",%sm", IndxShft(w)?"s":"");
2104 1.1 fredette else if (IndxShft(w))
2105 1.1 fredette db_printf(",s");
2106 1.1 fredette }
2107 1.1 fredette switch (CacheCtrl(w)) {
2108 1.1 fredette case NOACTION: break;
2109 1.1 fredette case STACKREF: db_printf(",c"); break;
2110 1.1 fredette case SEQPASS: db_printf(",q"); break;
2111 1.1 fredette case PREFETCH: db_printf(",p"); break;
2112 1.1 fredette }
2113 1.1 fredette if (load) {
2114 1.3 chs const char *p;
2115 1.1 fredette
2116 1.1 fredette if (dreg)
2117 1.1 fredette p = fdreg[(Rtc(w)<<1)+(uid&1)];
2118 1.1 fredette else
2119 1.1 fredette p = fsreg[(Rtc(w)<<1)+(uid&1)];
2120 1.1 fredette
2121 1.1 fredette if (ShortDisp(w))
2122 1.1 fredette db_printf("\t%d",Ima5(w));
2123 1.1 fredette else
2124 1.1 fredette db_printf("\t%%r%d",Rsa(w));
2125 1.1 fredette if (Dss(w))
2126 1.14 skrll db_printf("(%%sr%d, %%r%d), %%f%s", Dss(w),Rsb(w), p);
2127 1.1 fredette else
2128 1.14 skrll db_printf("(%%r%d), %%f%s",Rsb(w), p);
2129 1.1 fredette } else {
2130 1.3 chs const char *p;
2131 1.1 fredette
2132 1.1 fredette if (dreg)
2133 1.1 fredette p = fdreg[(Rsc(w)<<1)+(uid&1)];
2134 1.1 fredette else
2135 1.1 fredette p = fsreg[(Rsc(w)<<1)+(uid&1)];
2136 1.1 fredette
2137 1.1 fredette if (ShortDisp(w))
2138 1.14 skrll db_printf("\t%%f%s, %d", p, Ima5(w));
2139 1.1 fredette else
2140 1.14 skrll db_printf("\t%%f%s, %%r%d", p, Rta(w));
2141 1.1 fredette if (Dss(w))
2142 1.14 skrll db_printf("(%%sr%d, %%r%d)",Dss(w),Rsb(w));
2143 1.1 fredette else
2144 1.1 fredette db_printf("(%%r%d)",Rsb(w));
2145 1.1 fredette }
2146 1.1 fredette return (1);
2147 1.1 fredette }
2148 1.1 fredette
2149 1.1 fredette int
2150 1.5 chs lpkDasm(const struct inst *i, OFS ofs, union insn w)
2151 1.1 fredette {
2152 1.1 fredette /*
2153 1.1 fredette * Floating point STore Quad
2154 1.1 fredette * Short or Indexed
2155 1.1 fredette */
2156 1.1 fredette if (ShortDisp(w)) {
2157 1.1 fredette if (Modify(w))
2158 1.1 fredette db_printf(",m%s", ModBefore(w)?"b":"a");
2159 1.1 fredette } else {
2160 1.1 fredette if (Modify(w))
2161 1.1 fredette db_printf(",%sm", IndxShft(w)? "s":"");
2162 1.1 fredette else if (IndxShft(w))
2163 1.1 fredette db_printf(",s");
2164 1.1 fredette }
2165 1.1 fredette switch (CacheCtrl(w)) {
2166 1.1 fredette case NOACTION: break;
2167 1.1 fredette case STACKREF: db_printf(",c"); break;
2168 1.1 fredette case SEQPASS: db_printf(",q"); break;
2169 1.1 fredette case PREFETCH: db_printf(",p"); break;
2170 1.1 fredette }
2171 1.1 fredette if (ShortDisp(w))
2172 1.14 skrll db_printf("\t%%fr%d, %d",Rsc(w),Ima5(w));
2173 1.1 fredette else
2174 1.14 skrll db_printf("\t%%fr%d, %%r%d",Rsc(w),Rta(w));
2175 1.1 fredette if (Dss(w))
2176 1.14 skrll db_printf("(%%sr%d, %%r%d)",Dss(w),Rsb(w));
2177 1.1 fredette else
2178 1.1 fredette db_printf("(%%r%d)",Rsb(w));
2179 1.1 fredette return (1);
2180 1.1 fredette }
2181 1.1 fredette
2182 1.1 fredette int
2183 1.5 chs diagDasm(const struct inst *i, OFS ofs, union insn w)
2184 1.1 fredette {
2185 1.1 fredette if (0x0b0 == BitfR(w,19,8,_b198)) /* mtcpu */
2186 1.14 skrll db_printf("mtcpu\t%%r%d, %%dr%d", Rsa(w), Rtb(w));
2187 1.1 fredette else if (0x0d0 == BitfR(w,19,8,_b198)) /* mfcpu */
2188 1.14 skrll db_printf("mfcpu\t%%dr%d, %%r%d", Rsb(w), Rta(w));
2189 1.1 fredette else {
2190 1.16 skrll db_printf("%s", i->mnem);
2191 1.1 fredette if (Match("diag"))
2192 1.4 matt db_printf("\t0x%X",w.w & 0x03ffffff);
2193 1.1 fredette else {
2194 1.1 fredette db_printf("?????");
2195 1.1 fredette return (0);
2196 1.1 fredette }
2197 1.1 fredette }
2198 1.1 fredette return (1);
2199 1.1 fredette }
2200 1.1 fredette
2201 1.1 fredette int
2202 1.5 chs fmpysubDasm(const struct inst *i, OFS ofs, union insn w)
2203 1.1 fredette {
2204 1.1 fredette if (SinglePrec(w))
2205 1.14 skrll db_printf("sub,sgl\t%%f%s, %%f%s, %%f%s, %%f%s, %%f%s",
2206 1.1 fredette fsreg[Ms1(w)], fsreg[Ms2(w)], fsreg[Mt(w)],
2207 1.1 fredette fsreg[As(w)], fsreg[Ad(w)]);
2208 1.1 fredette else
2209 1.14 skrll db_printf("sub,dbl\t%%f%s, %%f%s, %%f%s, %%f%s, %%f%s",
2210 1.1 fredette fdreg[Ms1(w)], fdreg[Ms2(w)], fdreg[Mt(w)],
2211 1.1 fredette fdreg[As(w)], fdreg[Ad(w)]);
2212 1.1 fredette return (1);
2213 1.1 fredette }
2214 1.1 fredette
2215 1.1 fredette int
2216 1.5 chs fmpyaddDasm(const struct inst *i, OFS ofs, union insn w)
2217 1.1 fredette {
2218 1.3 chs const char
2219 1.1 fredette *ms1 = SinglePrec(w) ? fsreg[Ms1(w)] : fdreg[Ms1(w)],
2220 1.1 fredette *ms2 = SinglePrec(w) ? fsreg[Ms2(w)] : fdreg[Ms2(w)],
2221 1.1 fredette *mt = SinglePrec(w) ? fsreg[Mt(w)] : fdreg[Mt(w)],
2222 1.1 fredette *as = SinglePrec(w) ? fsreg[As(w)] : fdreg[As(w)],
2223 1.1 fredette *ad = SinglePrec(w) ? fsreg[Ad(w)] : fdreg[Ad(w)];
2224 1.1 fredette
2225 1.1 fredette if (Rsd(w) == 0)
2226 1.14 skrll db_printf("\t%%fcfxt, %s, %%f%s, %%f%s, %%f%s",
2227 1.1 fredette ((SinglePrec(w)) ? "sgl" : "dbl"), ms1, ms2, mt);
2228 1.1 fredette else
2229 1.14 skrll db_printf("add%s\t%%f%s, %%f%s, %%f%s, %%f%s, %%f%s",
2230 1.1 fredette ((SinglePrec(w)) ? "sgl" : "dbl"), ms1, ms2, mt, as, ad);
2231 1.1 fredette
2232 1.1 fredette return (1);
2233 1.1 fredette }
2234 1.1 fredette
2235 1.1 fredette vaddr_t
2236 1.10 thorpej db_disasm(vaddr_t loc, bool flag)
2237 1.1 fredette {
2238 1.3 chs const struct inst *i;
2239 1.3 chs const struct majoropcode *m;
2240 1.3 chs u_int ext;
2241 1.4 matt union insn instruct;
2242 1.15 skrll OFS ofs = loc;
2243 1.1 fredette
2244 1.1 fredette iExInit();
2245 1.1 fredette
2246 1.16 skrll #ifdef _KERNEL
2247 1.1 fredette if (USERMODE(loc)) {
2248 1.11 christos if (copyin((void *)(loc &~ HPPA_PC_PRIV_MASK),
2249 1.1 fredette &instruct, sizeof(instruct)))
2250 1.4 matt instruct.w = 0;
2251 1.1 fredette } else
2252 1.16 skrll #endif
2253 1.4 matt instruct.w = *(int *)loc;
2254 1.1 fredette
2255 1.1 fredette m = &majopcs[Opcode(instruct)];
2256 1.4 matt ext = OpExt(instruct.w, m);
2257 1.1 fredette if (ext <= m->maxsubop) {
2258 1.1 fredette /* special hack for majopcs table layout */
2259 1.1 fredette if (m->maxsubop == 1)
2260 1.1 fredette i = (const struct inst *)m->subops;
2261 1.1 fredette else
2262 1.1 fredette i = m->subops[ext];
2263 1.1 fredette
2264 1.13 skrll if (i) {
2265 1.13 skrll if (i->dasmfcn != coprDasm && i->dasmfcn != diagDasm &&
2266 1.13 skrll i->dasmfcn != ariDasm && i->dasmfcn != scDasm &&
2267 1.13 skrll i->dasmfcn != ldDasm)
2268 1.13 skrll db_printf("%s", i->mnem);
2269 1.13 skrll if (i->dasmfcn)
2270 1.13 skrll (*i->dasmfcn)(i, ofs, instruct);
2271 1.13 skrll } else {
2272 1.13 skrll db_printf("undefined subop");
2273 1.13 skrll }
2274 1.1 fredette } else
2275 1.13 skrll db_printf("undefined");
2276 1.1 fredette
2277 1.1 fredette db_printf("\n");
2278 1.1 fredette return (loc + sizeof(instruct));
2279 1.1 fredette }
2280