xref: /openbsd-src/gnu/usr.bin/binutils/opcodes/or32-opc.c (revision d2201f2f89f0be1a0be6f7568000ed297414a06d)
1*d2201f2fSdrahn /* Table of opcodes for the OpenRISC 1000 ISA.
2*d2201f2fSdrahn    Copyright 2002 Free Software Foundation, Inc.
3*d2201f2fSdrahn    Contributed by Damjan Lampret (lampret@opencores.org).
4*d2201f2fSdrahn 
5*d2201f2fSdrahn    This file is part of gen_or1k_isa, or1k, GDB and GAS.
6*d2201f2fSdrahn 
7*d2201f2fSdrahn    This program is free software; you can redistribute it and/or modify
8*d2201f2fSdrahn    it under the terms of the GNU General Public License as published by
9*d2201f2fSdrahn    the Free Software Foundation; either version 2 of the License, or
10*d2201f2fSdrahn    (at your option) any later version.
11*d2201f2fSdrahn 
12*d2201f2fSdrahn    This program is distributed in the hope that it will be useful,
13*d2201f2fSdrahn    but WITHOUT ANY WARRANTY; without even the implied warranty of
14*d2201f2fSdrahn    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15*d2201f2fSdrahn    GNU General Public License for more details.
16*d2201f2fSdrahn 
17*d2201f2fSdrahn    You should have received a copy of the GNU General Public License
18*d2201f2fSdrahn    along with this program; if not, write to the Free Software
19*d2201f2fSdrahn    Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.  */
20*d2201f2fSdrahn 
21*d2201f2fSdrahn /* We treat all letters the same in encode/decode routines so
22*d2201f2fSdrahn    we need to assign some characteristics to them like signess etc.  */
23*d2201f2fSdrahn #include <string.h>
24*d2201f2fSdrahn #include <stdio.h>
25*d2201f2fSdrahn #include <stdlib.h>
26*d2201f2fSdrahn #include "safe-ctype.h"
27*d2201f2fSdrahn #include "ansidecl.h"
28*d2201f2fSdrahn #ifdef HAVE_CONFIG_H
29*d2201f2fSdrahn # include "config.h"
30*d2201f2fSdrahn #endif
31*d2201f2fSdrahn #include "opcode/or32.h"
32*d2201f2fSdrahn 
33*d2201f2fSdrahn static unsigned long           insn_extract         PARAMS ((char, char *));
34*d2201f2fSdrahn static unsigned long *         cover_insn           PARAMS ((unsigned long *, int, unsigned int));
35*d2201f2fSdrahn static int                     num_ones             PARAMS ((unsigned long));
36*d2201f2fSdrahn static struct insn_op_struct * parse_params         PARAMS ((const struct or32_opcode *, struct insn_op_struct *));
37*d2201f2fSdrahn static unsigned long           or32_extract         PARAMS ((char, char *, unsigned long));
38*d2201f2fSdrahn static void                    or32_print_register  PARAMS ((char, char *, unsigned long));
39*d2201f2fSdrahn static void                    or32_print_immediate PARAMS ((char, char *, unsigned long));
40*d2201f2fSdrahn static unsigned long           extend_imm           PARAMS ((unsigned long, char));
41*d2201f2fSdrahn 
42*d2201f2fSdrahn const struct or32_letter or32_letters[] =
43*d2201f2fSdrahn   {
44*d2201f2fSdrahn     { 'A', NUM_UNSIGNED },
45*d2201f2fSdrahn     { 'B', NUM_UNSIGNED },
46*d2201f2fSdrahn     { 'D', NUM_UNSIGNED },
47*d2201f2fSdrahn     { 'I', NUM_SIGNED },
48*d2201f2fSdrahn     { 'K', NUM_UNSIGNED },
49*d2201f2fSdrahn     { 'L', NUM_UNSIGNED },
50*d2201f2fSdrahn     { 'N', NUM_SIGNED },
51*d2201f2fSdrahn     { '0', NUM_UNSIGNED },
52*d2201f2fSdrahn     { '\0', 0 }     /* Dummy entry.  */
53*d2201f2fSdrahn   };
54*d2201f2fSdrahn 
55*d2201f2fSdrahn /* Opcode encoding:
56*d2201f2fSdrahn    machine[31:30]: first two bits of opcode
57*d2201f2fSdrahn    		   00 - neither of source operands is GPR
58*d2201f2fSdrahn    		   01 - second source operand is GPR (rB)
59*d2201f2fSdrahn    		   10 - first source operand is GPR (rA)
60*d2201f2fSdrahn    		   11 - both source operands are GPRs (rA and rB)
61*d2201f2fSdrahn    machine[29:26]: next four bits of opcode
62*d2201f2fSdrahn    machine[25:00]: instruction operands (specific to individual instruction)
63*d2201f2fSdrahn 
64*d2201f2fSdrahn   Recommendation: irrelevant instruction bits should be set with a value of
65*d2201f2fSdrahn   bits in same positions of instruction preceding current instruction in the
66*d2201f2fSdrahn   code (when assembling).  */
67*d2201f2fSdrahn 
68*d2201f2fSdrahn #define EFN &l_none
69*d2201f2fSdrahn 
70*d2201f2fSdrahn #ifdef HAS_EXECUTION
71*d2201f2fSdrahn #define EF(func) &(func)
72*d2201f2fSdrahn #define EFI &l_invalid
73*d2201f2fSdrahn #else  /* HAS_EXECUTION */
74*d2201f2fSdrahn #define EF(func) EFN
75*d2201f2fSdrahn #define EFI EFN
76*d2201f2fSdrahn #endif /* HAS_EXECUTION */
77*d2201f2fSdrahn 
78*d2201f2fSdrahn const struct or32_opcode or32_opcodes[] =
79*d2201f2fSdrahn   {
80*d2201f2fSdrahn     { "l.j",       "N",            "00 0x0  NNNNN NNNNN NNNN NNNN NNNN NNNN", EF(l_j), OR32_IF_DELAY },
81*d2201f2fSdrahn     { "l.jal",     "N",            "00 0x1  NNNNN NNNNN NNNN NNNN NNNN NNNN", EF(l_jal), OR32_IF_DELAY },
82*d2201f2fSdrahn     { "l.bnf",     "N",            "00 0x3  NNNNN NNNNN NNNN NNNN NNNN NNNN", EF(l_bnf), OR32_IF_DELAY | OR32_R_FLAG},
83*d2201f2fSdrahn     { "l.bf",      "N",            "00 0x4  NNNNN NNNNN NNNN NNNN NNNN NNNN", EF(l_bf), OR32_IF_DELAY | OR32_R_FLAG },
84*d2201f2fSdrahn     { "l.nop",     "K",            "00 0x5  01--- ----- KKKK KKKK KKKK KKKK", EF(l_nop), 0 },
85*d2201f2fSdrahn     { "l.movhi",   "rD,K",         "00 0x6  DDDDD ----0 KKKK KKKK KKKK KKKK", EF(l_movhi), 0 }, /*MM*/
86*d2201f2fSdrahn     { "l.macrc",   "rD",           "00 0x6  DDDDD ----1 0000 0000 0000 0000", EF(l_macrc), 0 }, /*MM*/
87*d2201f2fSdrahn 
88*d2201f2fSdrahn     { "l.sys",     "K",            "00 0x8  00000 00000 KKKK KKKK KKKK KKKK", EF(l_sys), 0 },
89*d2201f2fSdrahn     { "l.trap",    "K",            "00 0x8  01000 00000 KKKK KKKK KKKK KKKK", EF(l_trap), 0 }, /* CZ 21/06/01 */
90*d2201f2fSdrahn     { "l.msync",   "",             "00 0x8  10000 00000 0000 0000 0000 0000", EFN, 0 },
91*d2201f2fSdrahn     { "l.psync",   "",             "00 0x8  10100 00000 0000 0000 0000 0000", EFN, 0 },
92*d2201f2fSdrahn     { "l.csync",   "",             "00 0x8  11000 00000 0000 0000 0000 0000", EFN, 0 },
93*d2201f2fSdrahn     { "l.rfe",     "",             "00 0x9  ----- ----- ---- ---- ---- ----", EF(l_rfe), OR32_IF_DELAY },
94*d2201f2fSdrahn 
95*d2201f2fSdrahn     { "lv.all_eq.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x0", EFI, 0 },
96*d2201f2fSdrahn     { "lv.all_eq.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x1", EFI, 0 },
97*d2201f2fSdrahn     { "lv.all_ge.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x2", EFI, 0 },
98*d2201f2fSdrahn     { "lv.all_ge.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x3", EFI, 0 },
99*d2201f2fSdrahn     { "lv.all_gt.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x4", EFI, 0 },
100*d2201f2fSdrahn     { "lv.all_gt.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x5", EFI, 0 },
101*d2201f2fSdrahn     { "lv.all_le.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x6", EFI, 0 },
102*d2201f2fSdrahn     { "lv.all_le.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x7", EFI, 0 },
103*d2201f2fSdrahn     { "lv.all_lt.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x8", EFI, 0 },
104*d2201f2fSdrahn     { "lv.all_lt.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0x9", EFI, 0 },
105*d2201f2fSdrahn     { "lv.all_ne.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0xA", EFI, 0 },
106*d2201f2fSdrahn     { "lv.all_ne.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x1 0xB", EFI, 0 },
107*d2201f2fSdrahn     { "lv.any_eq.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x0", EFI, 0 },
108*d2201f2fSdrahn     { "lv.any_eq.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x1", EFI, 0 },
109*d2201f2fSdrahn     { "lv.any_ge.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x2", EFI, 0 },
110*d2201f2fSdrahn     { "lv.any_ge.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x3", EFI, 0 },
111*d2201f2fSdrahn     { "lv.any_gt.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x4", EFI, 0 },
112*d2201f2fSdrahn     { "lv.any_gt.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x5", EFI, 0 },
113*d2201f2fSdrahn     { "lv.any_le.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x6", EFI, 0 },
114*d2201f2fSdrahn     { "lv.any_le.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x7", EFI, 0 },
115*d2201f2fSdrahn     { "lv.any_lt.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x8", EFI, 0 },
116*d2201f2fSdrahn     { "lv.any_lt.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0x9", EFI, 0 },
117*d2201f2fSdrahn     { "lv.any_ne.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0xA", EFI, 0 },
118*d2201f2fSdrahn     { "lv.any_ne.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x2 0xB", EFI, 0 },
119*d2201f2fSdrahn     { "lv.add.b",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x0", EFI, 0 },
120*d2201f2fSdrahn     { "lv.add.h",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x1", EFI, 0 },
121*d2201f2fSdrahn     { "lv.adds.b", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x2", EFI, 0 },
122*d2201f2fSdrahn     { "lv.adds.h", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x3", EFI, 0 },
123*d2201f2fSdrahn     { "lv.addu.b", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x4", EFI, 0 },
124*d2201f2fSdrahn     { "lv.addu.h", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x5", EFI, 0 },
125*d2201f2fSdrahn     { "lv.addus.b","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x6", EFI, 0 },
126*d2201f2fSdrahn     { "lv.addus.h","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x7", EFI, 0 },
127*d2201f2fSdrahn     { "lv.and",    "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x8", EFI, 0 },
128*d2201f2fSdrahn     { "lv.avg.b",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0x9", EFI, 0 },
129*d2201f2fSdrahn     { "lv.avg.h",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x3 0xA", EFI, 0 },
130*d2201f2fSdrahn     { "lv.cmp_eq.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x0", EFI, 0 },
131*d2201f2fSdrahn     { "lv.cmp_eq.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x1", EFI, 0 },
132*d2201f2fSdrahn     { "lv.cmp_ge.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x2", EFI, 0 },
133*d2201f2fSdrahn     { "lv.cmp_ge.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x3", EFI, 0 },
134*d2201f2fSdrahn     { "lv.cmp_gt.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x4", EFI, 0 },
135*d2201f2fSdrahn     { "lv.cmp_gt.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x5", EFI, 0 },
136*d2201f2fSdrahn     { "lv.cmp_le.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x6", EFI, 0 },
137*d2201f2fSdrahn     { "lv.cmp_le.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x7", EFI, 0 },
138*d2201f2fSdrahn     { "lv.cmp_lt.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x8", EFI, 0 },
139*d2201f2fSdrahn     { "lv.cmp_lt.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0x9", EFI, 0 },
140*d2201f2fSdrahn     { "lv.cmp_ne.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0xA", EFI, 0 },
141*d2201f2fSdrahn     { "lv.cmp_ne.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x4 0xB", EFI, 0 },
142*d2201f2fSdrahn     { "lv.madds.h","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0x4", EFI, 0 },
143*d2201f2fSdrahn     { "lv.max.b",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0x5", EFI, 0 },
144*d2201f2fSdrahn     { "lv.max.h",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0x6", EFI, 0 },
145*d2201f2fSdrahn     { "lv.merge.b","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0x7", EFI, 0 },
146*d2201f2fSdrahn     { "lv.merge.h","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0x8", EFI, 0 },
147*d2201f2fSdrahn     { "lv.min.b",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0x9", EFI, 0 },
148*d2201f2fSdrahn     { "lv.min.h",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0xA", EFI, 0 },
149*d2201f2fSdrahn     { "lv.msubs.h","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0xB", EFI, 0 },
150*d2201f2fSdrahn     { "lv.muls.h", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0xC", EFI, 0 },
151*d2201f2fSdrahn     { "lv.nand",   "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0xD", EFI, 0 },
152*d2201f2fSdrahn     { "lv.nor",    "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0xE", EFI, 0 },
153*d2201f2fSdrahn     { "lv.or",     "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x5 0xF", EFI, 0 },
154*d2201f2fSdrahn     { "lv.pack.b", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x0", EFI, 0 },
155*d2201f2fSdrahn     { "lv.pack.h", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x1", EFI, 0 },
156*d2201f2fSdrahn     { "lv.packs.b","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x2", EFI, 0 },
157*d2201f2fSdrahn     { "lv.packs.h","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x3", EFI, 0 },
158*d2201f2fSdrahn     { "lv.packus.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x4", EFI, 0 },
159*d2201f2fSdrahn     { "lv.packus.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x5", EFI, 0 },
160*d2201f2fSdrahn     { "lv.perm.n", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x6", EFI, 0 },
161*d2201f2fSdrahn     { "lv.rl.b",   "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x7", EFI, 0 },
162*d2201f2fSdrahn     { "lv.rl.h",   "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x8", EFI, 0 },
163*d2201f2fSdrahn     { "lv.sll.b",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0x9", EFI, 0 },
164*d2201f2fSdrahn     { "lv.sll.h",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0xA", EFI, 0 },
165*d2201f2fSdrahn     { "lv.sll",    "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0xB", EFI, 0 },
166*d2201f2fSdrahn     { "lv.srl.b",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0xC", EFI, 0 },
167*d2201f2fSdrahn     { "lv.srl.h",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0xD", EFI, 0 },
168*d2201f2fSdrahn     { "lv.sra.b",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0xE", EFI, 0 },
169*d2201f2fSdrahn     { "lv.sra.h",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x6 0xF", EFI, 0 },
170*d2201f2fSdrahn     { "lv.srl",    "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x0", EFI, 0 },
171*d2201f2fSdrahn     { "lv.sub.b",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x1", EFI, 0 },
172*d2201f2fSdrahn     { "lv.sub.h",  "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x2", EFI, 0 },
173*d2201f2fSdrahn     { "lv.subs.b", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x3", EFI, 0 },
174*d2201f2fSdrahn     { "lv.subs.h", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x4", EFI, 0 },
175*d2201f2fSdrahn     { "lv.subu.b", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x5", EFI, 0 },
176*d2201f2fSdrahn     { "lv.subu.h", "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x6", EFI, 0 },
177*d2201f2fSdrahn     { "lv.subus.b","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x7", EFI, 0 },
178*d2201f2fSdrahn     { "lv.subus.h","rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x8", EFI, 0 },
179*d2201f2fSdrahn     { "lv.unpack.b","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0x9", EFI, 0 },
180*d2201f2fSdrahn     { "lv.unpack.h","rD,rA,rB",    "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0xA", EFI, 0 },
181*d2201f2fSdrahn     { "lv.xor",    "rD,rA,rB",     "00 0xA  DDDDD AAAAA BBBB B--- 0x7 0xB", EFI, 0 },
182*d2201f2fSdrahn     { "lv.cust1",  "",	       "00 0xA  ----- ----- ---- ---- 0xC ----", EFI, 0 },
183*d2201f2fSdrahn     { "lv.cust2",  "",	       "00 0xA  ----- ----- ---- ---- 0xD ----", EFI, 0 },
184*d2201f2fSdrahn     { "lv.cust3",  "",	       "00 0xA  ----- ----- ---- ---- 0xE ----", EFI, 0 },
185*d2201f2fSdrahn     { "lv.cust4",  "",	       "00 0xA  ----- ----- ---- ---- 0xF ----", EFI, 0 },
186*d2201f2fSdrahn 
187*d2201f2fSdrahn     { "lf.add.s",   "rD,rA,rB",    "00 0xB  DDDDD AAAAA BBBB B--- 0x1 0x0", EFI, 0 },
188*d2201f2fSdrahn     { "lf.sub.s",   "rD,rA,rB",    "00 0xB  DDDDD AAAAA BBBB B--- 0x1 0x1", EFI, 0 },
189*d2201f2fSdrahn     { "lf.mul.s",   "rD,rA,rB",    "00 0xB  DDDDD AAAAA BBBB B--- 0x1 0x2", EFI, 0 },
190*d2201f2fSdrahn     { "lf.div.s",   "rD,rA,rB",    "00 0xB  DDDDD AAAAA BBBB B--- 0x1 0x3", EFI, 0 },
191*d2201f2fSdrahn     { "lf.itof.s",  "rD,rA",       "00 0xB  DDDDD AAAAA BBBB B--- 0x1 0x4", EFI, 0 },
192*d2201f2fSdrahn     { "lf.ftoi.s",  "rD,rA",       "00 0xB  DDDDD AAAAA BBBB B--- 0x1 0x5", EFI, 0 },
193*d2201f2fSdrahn     { "lf.rem.s",   "rD,rA,rB",    "00 0xB  DDDDD AAAAA BBBB B--- 0x1 0x6", EFI, 0 },
194*d2201f2fSdrahn     { "lf.madd.s",  "rD,rA,rB",    "00 0xB  DDDDD AAAAA BBBB B--- 0x1 0x7", EFI, 0 },
195*d2201f2fSdrahn     { "lf.sfeq.s",  "rA,rB",       "00 0xB  ----- AAAAA BBBB B--- 0x1 0x8", EFI, 0 },
196*d2201f2fSdrahn     { "lf.sfne.s",  "rA,rB",       "00 0xB  ----- AAAAA BBBB B--- 0x1 0x9", EFI, 0 },
197*d2201f2fSdrahn     { "lf.sfgt.s",  "rA,rB",       "00 0xB  ----- AAAAA BBBB B--- 0x1 0xA", EFI, 0 },
198*d2201f2fSdrahn     { "lf.sfge.s",  "rA,rB",       "00 0xB  ----- AAAAA BBBB B--- 0x1 0xB", EFI, 0 },
199*d2201f2fSdrahn     { "lf.sflt.s",  "rA,rB",       "00 0xB  ----- AAAAA BBBB B--- 0x1 0xC", EFI, 0 },
200*d2201f2fSdrahn     { "lf.sfle.s",  "rA,rB",       "00 0xB  ----- AAAAA BBBB B--- 0x1 0xD", EFI, 0 },
201*d2201f2fSdrahn     { "lf.cust1.s", "",	       "00 0xB  ----- ----- ---- ---- 0xE ----", EFI, 0 },
202*d2201f2fSdrahn 
203*d2201f2fSdrahn     { "lf.add.d",   "rD,rA,rB",    "00 0xC  DDDDD AAAAA BBBB B--- 0x1 0x0", EFI, 0 },
204*d2201f2fSdrahn     { "lf.sub.d",   "rD,rA,rB",    "00 0xC  DDDDD AAAAA BBBB B--- 0x1 0x1", EFI, 0 },
205*d2201f2fSdrahn     { "lf.mul.d",   "rD,rA,rB",    "00 0xC  DDDDD AAAAA BBBB B--- 0x1 0x2", EFI, 0 },
206*d2201f2fSdrahn     { "lf.div.d",   "rD,rA,rB",    "00 0xC  DDDDD AAAAA BBBB B--- 0x1 0x3", EFI, 0 },
207*d2201f2fSdrahn     { "lf.itof.d",  "rD,rA",       "00 0xC  DDDDD AAAAA BBBB B--- 0x1 0x4", EFI, 0 },
208*d2201f2fSdrahn     { "lf.ftoi.d",  "rD,rA",       "00 0xC  DDDDD AAAAA BBBB B--- 0x1 0x5", EFI, 0 },
209*d2201f2fSdrahn     { "lf.rem.d",   "rD,rA,rB",    "00 0xC  DDDDD AAAAA BBBB B--- 0x1 0x6", EFI, 0 },
210*d2201f2fSdrahn     { "lf.madd.d",  "rD,rA,rB",    "00 0xC  DDDDD AAAAA BBBB B--- 0x1 0x7", EFI, 0 },
211*d2201f2fSdrahn     { "lf.sfeq.d",  "rA,rB",       "00 0xC  ----- AAAAA BBBB B--- 0x1 0x8", EFI, 0 },
212*d2201f2fSdrahn     { "lf.sfne.d",  "rA,rB",       "00 0xC  ----- AAAAA BBBB B--- 0x1 0x9", EFI, 0 },
213*d2201f2fSdrahn     { "lf.sfgt.d",  "rA,rB",       "00 0xC  ----- AAAAA BBBB B--- 0x1 0xA", EFI, 0 },
214*d2201f2fSdrahn     { "lf.sfge.d",  "rA,rB",       "00 0xC  ----- AAAAA BBBB B--- 0x1 0xB", EFI, 0 },
215*d2201f2fSdrahn     { "lf.sflt.d",  "rA,rB",       "00 0xC  ----- AAAAA BBBB B--- 0x1 0xC", EFI, 0 },
216*d2201f2fSdrahn     { "lf.sfle.d",  "rA,rB",       "00 0xC  ----- AAAAA BBBB B--- 0x1 0xD", EFI, 0 },
217*d2201f2fSdrahn     { "lf.cust1.d", "",	       "00 0xC  ----- ----- ---- ---- 0xE ----", EFI, 0 },
218*d2201f2fSdrahn 
219*d2201f2fSdrahn     { "lvf.ld",     "rD,0(rA)",    "00 0xD  DDDDD AAAAA ---- ---- 0x0 0x0", EFI, 0 },
220*d2201f2fSdrahn     { "lvf.lw",     "rD,0(rA)",    "00 0xD  DDDDD AAAAA ---- ---- 0x0 0x1", EFI, 0 },
221*d2201f2fSdrahn     { "lvf.sd",     "0(rA),rB",    "00 0xD  ----- AAAAA BBBB B--- 0x1 0x0", EFI, 0 },
222*d2201f2fSdrahn     { "lvf.sw",     "0(rA),rB",    "00 0xD  ----- AAAAA BBBB B--- 0x1 0x1", EFI, 0 },
223*d2201f2fSdrahn 
224*d2201f2fSdrahn     { "l.jr",      "rB",           "01 0x1  ----- ----- BBBB B--- ---- ----", EF(l_jr), OR32_IF_DELAY },
225*d2201f2fSdrahn     { "l.jalr",    "rB",           "01 0x2  ----- ----- BBBB B--- ---- ----", EF(l_jalr), OR32_IF_DELAY },
226*d2201f2fSdrahn     { "l.maci",    "rB,I",         "01 0x3  IIIII ----- BBBB BIII IIII IIII", EF(l_mac), 0 },
227*d2201f2fSdrahn     { "l.cust1",   "",	       "01 0xC  ----- ----- ---- ---- ---- ----", EF(l_cust1), 0 },
228*d2201f2fSdrahn     { "l.cust2",   "",	       "01 0xD  ----- ----- ---- ---- ---- ----", EF(l_cust2), 0 },
229*d2201f2fSdrahn     { "l.cust3",   "",	       "01 0xE  ----- ----- ---- ---- ---- ----", EF(l_cust3), 0 },
230*d2201f2fSdrahn     { "l.cust4",   "",	       "01 0xF  ----- ----- ---- ---- ---- ----", EF(l_cust4), 0 },
231*d2201f2fSdrahn 
232*d2201f2fSdrahn     { "l.ld",      "rD,I(rA)",     "10 0x0  DDDDD AAAAA IIII IIII IIII IIII", EFI, 0 },
233*d2201f2fSdrahn     { "l.lwz",     "rD,I(rA)",     "10 0x1  DDDDD AAAAA IIII IIII IIII IIII", EF(l_lwz), 0 },
234*d2201f2fSdrahn     { "l.lws",     "rD,I(rA)",     "10 0x2  DDDDD AAAAA IIII IIII IIII IIII", EFI, 0 },
235*d2201f2fSdrahn     { "l.lbz",     "rD,I(rA)",     "10 0x3  DDDDD AAAAA IIII IIII IIII IIII", EF(l_lbz), 0 },
236*d2201f2fSdrahn     { "l.lbs",     "rD,I(rA)",     "10 0x4  DDDDD AAAAA IIII IIII IIII IIII", EF(l_lbs), 0 },
237*d2201f2fSdrahn     { "l.lhz",     "rD,I(rA)",     "10 0x5  DDDDD AAAAA IIII IIII IIII IIII", EF(l_lhz), 0 },
238*d2201f2fSdrahn     { "l.lhs",     "rD,I(rA)",     "10 0x6  DDDDD AAAAA IIII IIII IIII IIII", EF(l_lhs), 0 },
239*d2201f2fSdrahn 
240*d2201f2fSdrahn     { "l.addi",    "rD,rA,I",      "10 0x7  DDDDD AAAAA IIII IIII IIII IIII", EF(l_add), 0 },
241*d2201f2fSdrahn     { "l.addic",   "rD,rA,I",      "10 0x8  DDDDD AAAAA IIII IIII IIII IIII", EFI, 0 },
242*d2201f2fSdrahn     { "l.andi",    "rD,rA,K",      "10 0x9  DDDDD AAAAA KKKK KKKK KKKK KKKK", EF(l_and), 0 },
243*d2201f2fSdrahn     { "l.ori",     "rD,rA,K",      "10 0xA  DDDDD AAAAA KKKK KKKK KKKK KKKK", EF(l_or), 0  },
244*d2201f2fSdrahn     { "l.xori",    "rD,rA,I",      "10 0xB  DDDDD AAAAA IIII IIII IIII IIII", EF(l_xor), 0 },
245*d2201f2fSdrahn     { "l.muli",    "rD,rA,I",      "10 0xC  DDDDD AAAAA IIII IIII IIII IIII", EFI, 0 },
246*d2201f2fSdrahn     { "l.mfspr",   "rD,rA,K",      "10 0xD  DDDDD AAAAA KKKK KKKK KKKK KKKK", EF(l_mfspr), 0 },
247*d2201f2fSdrahn     { "l.slli",    "rD,rA,L",      "10 0xE  DDDDD AAAAA ---- ---- 00LL LLLL", EF(l_sll), 0 },
248*d2201f2fSdrahn     { "l.srli",    "rD,rA,L",      "10 0xE  DDDDD AAAAA ---- ---- 01LL LLLL", EF(l_srl), 0 },
249*d2201f2fSdrahn     { "l.srai",    "rD,rA,L",      "10 0xE  DDDDD AAAAA ---- ---- 10LL LLLL", EF(l_sra), 0 },
250*d2201f2fSdrahn     { "l.rori",    "rD,rA,L",      "10 0xE  DDDDD AAAAA ---- ---- 11LL LLLL", EFI, 0 },
251*d2201f2fSdrahn 
252*d2201f2fSdrahn     { "l.sfeqi",   "rA,I",         "10 0xF  00000 AAAAA IIII IIII IIII IIII", EF(l_sfeq), OR32_W_FLAG },
253*d2201f2fSdrahn     { "l.sfnei",   "rA,I",         "10 0xF  00001 AAAAA IIII IIII IIII IIII", EF(l_sfne), OR32_W_FLAG },
254*d2201f2fSdrahn     { "l.sfgtui",  "rA,I",         "10 0xF  00010 AAAAA IIII IIII IIII IIII", EF(l_sfgtu), OR32_W_FLAG },
255*d2201f2fSdrahn     { "l.sfgeui",  "rA,I",         "10 0xF  00011 AAAAA IIII IIII IIII IIII", EF(l_sfgeu), OR32_W_FLAG },
256*d2201f2fSdrahn     { "l.sfltui",  "rA,I",         "10 0xF  00100 AAAAA IIII IIII IIII IIII", EF(l_sfltu), OR32_W_FLAG },
257*d2201f2fSdrahn     { "l.sfleui",  "rA,I",         "10 0xF  00101 AAAAA IIII IIII IIII IIII", EF(l_sfleu), OR32_W_FLAG },
258*d2201f2fSdrahn     { "l.sfgtsi",  "rA,I",         "10 0xF  01010 AAAAA IIII IIII IIII IIII", EF(l_sfgts), OR32_W_FLAG },
259*d2201f2fSdrahn     { "l.sfgesi",  "rA,I",         "10 0xF  01011 AAAAA IIII IIII IIII IIII", EF(l_sfges), OR32_W_FLAG },
260*d2201f2fSdrahn     { "l.sfltsi",  "rA,I",         "10 0xF  01100 AAAAA IIII IIII IIII IIII", EF(l_sflts), OR32_W_FLAG },
261*d2201f2fSdrahn     { "l.sflesi",  "rA,I",         "10 0xF  01101 AAAAA IIII IIII IIII IIII", EF(l_sfles), OR32_W_FLAG },
262*d2201f2fSdrahn 
263*d2201f2fSdrahn     { "l.mtspr",   "rA,rB,K",      "11 0x0  KKKKK AAAAA BBBB BKKK KKKK KKKK", EF(l_mtspr), 0 },
264*d2201f2fSdrahn     { "l.mac",     "rA,rB",        "11 0x1  ----- AAAAA BBBB B--- ---- 0x1", EF(l_mac), 0 }, /*MM*/
265*d2201f2fSdrahn     { "l.msb",     "rA,rB",        "11 0x1  ----- AAAAA BBBB B--- ---- 0x2", EF(l_msb), 0 }, /*MM*/
266*d2201f2fSdrahn 
267*d2201f2fSdrahn     { "l.sd",      "I(rA),rB",     "11 0x4  IIIII AAAAA BBBB BIII IIII IIII", EFI, 0 },
268*d2201f2fSdrahn     { "l.sw",      "I(rA),rB",     "11 0x5  IIIII AAAAA BBBB BIII IIII IIII", EF(l_sw), 0 },
269*d2201f2fSdrahn     { "l.sb",      "I(rA),rB",     "11 0x6  IIIII AAAAA BBBB BIII IIII IIII", EF(l_sb), 0 },
270*d2201f2fSdrahn     { "l.sh",      "I(rA),rB",     "11 0x7  IIIII AAAAA BBBB BIII IIII IIII", EF(l_sh), 0 },
271*d2201f2fSdrahn 
272*d2201f2fSdrahn     { "l.add",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0x0", EF(l_add), 0 },
273*d2201f2fSdrahn     { "l.addc",    "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0x1", EFI, 0 },
274*d2201f2fSdrahn     { "l.sub",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0x2", EF(l_sub), 0 },
275*d2201f2fSdrahn     { "l.and",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0x3", EF(l_and), 0 },
276*d2201f2fSdrahn     { "l.or",      "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0x4", EF(l_or), 0 },
277*d2201f2fSdrahn     { "l.xor",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0x5", EF(l_xor), 0 },
278*d2201f2fSdrahn     { "l.mul",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-11 ---- 0x6", EF(l_mul), 0 },
279*d2201f2fSdrahn 
280*d2201f2fSdrahn     { "l.sll",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 00-- 0x8", EF(l_sll), 0 },
281*d2201f2fSdrahn     { "l.srl",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 01-- 0x8", EF(l_srl), 0 },
282*d2201f2fSdrahn     { "l.sra",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 10-- 0x8", EF(l_sra), 0 },
283*d2201f2fSdrahn     { "l.ror",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 11-- 0x8", EFI, 0 },
284*d2201f2fSdrahn     { "l.div",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0x9", EF(l_div), 0 },
285*d2201f2fSdrahn     { "l.divu",    "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0xA", EF(l_divu), 0 },
286*d2201f2fSdrahn     { "l.mulu",    "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-11 ---- 0xB", EFI, 0 },
287*d2201f2fSdrahn     { "l.exths",   "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 00-- 0xC", EFI, 0 },
288*d2201f2fSdrahn     { "l.extbs",   "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 01-- 0xC", EFI, 0 },
289*d2201f2fSdrahn     { "l.exthz",   "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 10-- 0xC", EFI, 0 },
290*d2201f2fSdrahn     { "l.extbz",   "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 11-- 0xC", EFI, 0 },
291*d2201f2fSdrahn     { "l.extws",   "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 00-- 0xD", EFI, 0 },
292*d2201f2fSdrahn     { "l.extwz",   "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 01-- 0xD", EFI, 0 },
293*d2201f2fSdrahn     { "l.cmov",    "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0xE", EFI, 0 },
294*d2201f2fSdrahn     { "l.ff1",     "rD,rA,rB",     "11 0x8  DDDDD AAAAA BBBB B-00 ---- 0xF", EFI, 0 },
295*d2201f2fSdrahn 
296*d2201f2fSdrahn     { "l.sfeq",    "rA,rB",        "11 0x9  00000 AAAAA BBBB B--- ---- ----", EF(l_sfeq), OR32_W_FLAG },
297*d2201f2fSdrahn     { "l.sfne",    "rA,rB",        "11 0x9  00001 AAAAA BBBB B--- ---- ----", EF(l_sfne), OR32_W_FLAG },
298*d2201f2fSdrahn     { "l.sfgtu",   "rA,rB",        "11 0x9  00010 AAAAA BBBB B--- ---- ----", EF(l_sfgtu), OR32_W_FLAG },
299*d2201f2fSdrahn     { "l.sfgeu",   "rA,rB",        "11 0x9  00011 AAAAA BBBB B--- ---- ----", EF(l_sfgeu), OR32_W_FLAG },
300*d2201f2fSdrahn     { "l.sfltu",   "rA,rB",        "11 0x9  00100 AAAAA BBBB B--- ---- ----", EF(l_sfltu), OR32_W_FLAG },
301*d2201f2fSdrahn     { "l.sfleu",   "rA,rB",        "11 0x9  00101 AAAAA BBBB B--- ---- ----", EF(l_sfleu), OR32_W_FLAG },
302*d2201f2fSdrahn     { "l.sfgts",   "rA,rB",        "11 0x9  01010 AAAAA BBBB B--- ---- ----", EF(l_sfgts), OR32_W_FLAG },
303*d2201f2fSdrahn     { "l.sfges",   "rA,rB",        "11 0x9  01011 AAAAA BBBB B--- ---- ----", EF(l_sfges), OR32_W_FLAG },
304*d2201f2fSdrahn     { "l.sflts",   "rA,rB",        "11 0x9  01100 AAAAA BBBB B--- ---- ----", EF(l_sflts), OR32_W_FLAG },
305*d2201f2fSdrahn     { "l.sfles",   "rA,rB",        "11 0x9  01101 AAAAA BBBB B--- ---- ----", EF(l_sfles), OR32_W_FLAG },
306*d2201f2fSdrahn 
307*d2201f2fSdrahn     { "l.cust5",   "",	       "11 0xC  ----- ----- ---- ---- ---- ----", EFI, 0 },
308*d2201f2fSdrahn     { "l.cust6",   "",	       "11 0xD  ----- ----- ---- ---- ---- ----", EFI, 0 },
309*d2201f2fSdrahn     { "l.cust7",   "",	       "11 0xE  ----- ----- ---- ---- ---- ----", EFI, 0 },
310*d2201f2fSdrahn     { "l.cust8",   "",	       "11 0xF  ----- ----- ---- ---- ---- ----", EFI, 0 },
311*d2201f2fSdrahn 
312*d2201f2fSdrahn     /* This section should not be defined in or1ksim, since it contains duplicates,
313*d2201f2fSdrahn        which would cause machine builder to complain.  */
314*d2201f2fSdrahn #ifdef HAS_CUST
315*d2201f2fSdrahn     { "l.cust5_1",   "rD",	       "11 0xC  DDDDD ----- ---- ---- ---- ----", EFI, 0 },
316*d2201f2fSdrahn     { "l.cust5_2",   "rD,rA"   ,   "11 0xC  DDDDD AAAAA ---- ---- ---- ----", EFI, 0 },
317*d2201f2fSdrahn     { "l.cust5_3",   "rD,rA,rB",   "11 0xC  DDDDD AAAAA BBBB B--- ---- ----", EFI, 0 },
318*d2201f2fSdrahn 
319*d2201f2fSdrahn     { "l.cust6_1",   "rD",	       "11 0xD  DDDDD ----- ---- ---- ---- ----", EFI, 0 },
320*d2201f2fSdrahn     { "l.cust6_2",   "rD,rA"   ,   "11 0xD  DDDDD AAAAA ---- ---- ---- ----", EFI, 0 },
321*d2201f2fSdrahn     { "l.cust6_3",   "rD,rA,rB",   "11 0xD  DDDDD AAAAA BBBB B--- ---- ----", EFI, 0 },
322*d2201f2fSdrahn 
323*d2201f2fSdrahn     { "l.cust7_1",   "rD",	       "11 0xE  DDDDD ----- ---- ---- ---- ----", EFI, 0 },
324*d2201f2fSdrahn     { "l.cust7_2",   "rD,rA"   ,   "11 0xE  DDDDD AAAAA ---- ---- ---- ----", EFI, 0 },
325*d2201f2fSdrahn     { "l.cust7_3",   "rD,rA,rB",   "11 0xE  DDDDD AAAAA BBBB B--- ---- ----", EFI, 0 },
326*d2201f2fSdrahn 
327*d2201f2fSdrahn     { "l.cust8_1",   "rD",	       "11 0xF  DDDDD ----- ---- ---- ---- ----", EFI, 0 },
328*d2201f2fSdrahn     { "l.cust8_2",   "rD,rA"   ,   "11 0xF  DDDDD AAAAA ---- ---- ---- ----", EFI, 0 },
329*d2201f2fSdrahn     { "l.cust8_3",   "rD,rA,rB",   "11 0xF  DDDDD AAAAA BBBB B--- ---- ----", EFI, 0 },
330*d2201f2fSdrahn #endif
331*d2201f2fSdrahn 
332*d2201f2fSdrahn     /* Dummy entry, not included in num_opcodes.  This
333*d2201f2fSdrahn        lets code examine entry i+1 without checking
334*d2201f2fSdrahn        if we've run off the end of the table.  */
335*d2201f2fSdrahn     { "", "", "", EFI, 0 }
336*d2201f2fSdrahn };
337*d2201f2fSdrahn 
338*d2201f2fSdrahn #undef EFI
339*d2201f2fSdrahn #undef EFN
340*d2201f2fSdrahn #undef EF
341*d2201f2fSdrahn 
342*d2201f2fSdrahn /* Define dummy, if debug is not defined.  */
343*d2201f2fSdrahn 
344*d2201f2fSdrahn #if !defined HAS_DEBUG
345*d2201f2fSdrahn static void debug PARAMS ((int, const char *, ...));
346*d2201f2fSdrahn 
347*d2201f2fSdrahn static void
debug(int level,const char * format,...)348*d2201f2fSdrahn debug (int level, const char *format, ...)
349*d2201f2fSdrahn {
350*d2201f2fSdrahn   /* Just to get rid of warnings.  */
351*d2201f2fSdrahn   format = (char *) level = 0;
352*d2201f2fSdrahn }
353*d2201f2fSdrahn #endif
354*d2201f2fSdrahn 
355*d2201f2fSdrahn const unsigned int or32_num_opcodes = ((sizeof(or32_opcodes)) / (sizeof(struct or32_opcode))) - 1;
356*d2201f2fSdrahn 
357*d2201f2fSdrahn /* Calculates instruction length in bytes. Always 4 for OR32.  */
358*d2201f2fSdrahn 
359*d2201f2fSdrahn int
insn_len(insn_index)360*d2201f2fSdrahn insn_len (insn_index)
361*d2201f2fSdrahn      int insn_index ATTRIBUTE_UNUSED;
362*d2201f2fSdrahn {
363*d2201f2fSdrahn   return 4;
364*d2201f2fSdrahn }
365*d2201f2fSdrahn 
366*d2201f2fSdrahn /* Is individual insn's operand signed or unsigned?  */
367*d2201f2fSdrahn 
368*d2201f2fSdrahn int
letter_signed(l)369*d2201f2fSdrahn letter_signed (l)
370*d2201f2fSdrahn      char l;
371*d2201f2fSdrahn {
372*d2201f2fSdrahn   const struct or32_letter *pletter;
373*d2201f2fSdrahn 
374*d2201f2fSdrahn   for (pletter = or32_letters; pletter->letter != '\0'; pletter++)
375*d2201f2fSdrahn     if (pletter->letter == l)
376*d2201f2fSdrahn       return pletter->sign;
377*d2201f2fSdrahn 
378*d2201f2fSdrahn   printf ("letter_signed(%c): Unknown letter.\n", l);
379*d2201f2fSdrahn   return 0;
380*d2201f2fSdrahn }
381*d2201f2fSdrahn 
382*d2201f2fSdrahn /* Number of letters in the individual lettered operand.  */
383*d2201f2fSdrahn 
384*d2201f2fSdrahn int
letter_range(l)385*d2201f2fSdrahn letter_range (l)
386*d2201f2fSdrahn      char l;
387*d2201f2fSdrahn {
388*d2201f2fSdrahn   const struct or32_opcode *pinsn;
389*d2201f2fSdrahn   char *enc;
390*d2201f2fSdrahn   int range = 0;
391*d2201f2fSdrahn 
392*d2201f2fSdrahn   for (pinsn = or32_opcodes; strlen(pinsn->name); pinsn++)
393*d2201f2fSdrahn     {
394*d2201f2fSdrahn       if (strchr (pinsn->encoding,l))
395*d2201f2fSdrahn 	{
396*d2201f2fSdrahn 	  for (enc = pinsn->encoding; *enc != '\0'; enc++)
397*d2201f2fSdrahn 	    if ((*enc == '0') && (*(enc+1) == 'x'))
398*d2201f2fSdrahn 	      enc += 2;
399*d2201f2fSdrahn 	    else if (*enc == l)
400*d2201f2fSdrahn 	      range++;
401*d2201f2fSdrahn 	  return range;
402*d2201f2fSdrahn 	}
403*d2201f2fSdrahn     }
404*d2201f2fSdrahn 
405*d2201f2fSdrahn   printf ("\nABORT: letter_range(%c): Never used letter.\n", l);
406*d2201f2fSdrahn   exit (1);
407*d2201f2fSdrahn }
408*d2201f2fSdrahn 
409*d2201f2fSdrahn /* MM: Returns index of given instruction name.  */
410*d2201f2fSdrahn 
411*d2201f2fSdrahn int
insn_index(char * insn)412*d2201f2fSdrahn insn_index (char *insn)
413*d2201f2fSdrahn {
414*d2201f2fSdrahn   unsigned int i;
415*d2201f2fSdrahn   int found = -1;
416*d2201f2fSdrahn 
417*d2201f2fSdrahn   for (i = 0; i < or32_num_opcodes; i++)
418*d2201f2fSdrahn     if (!strcmp (or32_opcodes[i].name, insn))
419*d2201f2fSdrahn       {
420*d2201f2fSdrahn 	found = i;
421*d2201f2fSdrahn 	break;
422*d2201f2fSdrahn       }
423*d2201f2fSdrahn   return found;
424*d2201f2fSdrahn }
425*d2201f2fSdrahn 
426*d2201f2fSdrahn const char *
insn_name(index)427*d2201f2fSdrahn insn_name (index)
428*d2201f2fSdrahn      int index;
429*d2201f2fSdrahn {
430*d2201f2fSdrahn   if (index >= 0 && index < (int) or32_num_opcodes)
431*d2201f2fSdrahn     return or32_opcodes[index].name;
432*d2201f2fSdrahn   else
433*d2201f2fSdrahn     return "???";
434*d2201f2fSdrahn }
435*d2201f2fSdrahn 
436*d2201f2fSdrahn void
l_none()437*d2201f2fSdrahn l_none ()
438*d2201f2fSdrahn {
439*d2201f2fSdrahn }
440*d2201f2fSdrahn 
441*d2201f2fSdrahn /* Finite automata for instruction decoding building code.  */
442*d2201f2fSdrahn 
443*d2201f2fSdrahn /* Find simbols in encoding.  */
444*d2201f2fSdrahn static unsigned long
insn_extract(param_ch,enc_initial)445*d2201f2fSdrahn insn_extract (param_ch, enc_initial)
446*d2201f2fSdrahn      char param_ch;
447*d2201f2fSdrahn      char *enc_initial;
448*d2201f2fSdrahn {
449*d2201f2fSdrahn   char *enc;
450*d2201f2fSdrahn   unsigned long ret = 0;
451*d2201f2fSdrahn   unsigned opc_pos = 32;
452*d2201f2fSdrahn 
453*d2201f2fSdrahn   for (enc = enc_initial; *enc != '\0'; )
454*d2201f2fSdrahn     if ((*enc == '0') && (*(enc + 1) == 'x'))
455*d2201f2fSdrahn       {
456*d2201f2fSdrahn 	unsigned long tmp = strtol (enc+2, NULL, 16);
457*d2201f2fSdrahn 
458*d2201f2fSdrahn         opc_pos -= 4;
459*d2201f2fSdrahn 	if (param_ch == '0' || param_ch == '1')
460*d2201f2fSdrahn 	  {
461*d2201f2fSdrahn 	    if (param_ch == '0')
462*d2201f2fSdrahn 	      tmp = 15 - tmp;
463*d2201f2fSdrahn 	    ret |= tmp << opc_pos;
464*d2201f2fSdrahn 	  }
465*d2201f2fSdrahn         enc += 3;
466*d2201f2fSdrahn       }
467*d2201f2fSdrahn     else
468*d2201f2fSdrahn       {
469*d2201f2fSdrahn 	if (*enc == '0' || *enc == '1' || *enc == '-' || ISALPHA (*enc))
470*d2201f2fSdrahn 	  {
471*d2201f2fSdrahn 	    opc_pos--;
472*d2201f2fSdrahn 	    if (param_ch == *enc)
473*d2201f2fSdrahn 	      ret |= 1 << opc_pos;
474*d2201f2fSdrahn 	  }
475*d2201f2fSdrahn 	enc++;
476*d2201f2fSdrahn       }
477*d2201f2fSdrahn   return ret;
478*d2201f2fSdrahn }
479*d2201f2fSdrahn 
480*d2201f2fSdrahn #define MAX_AUTOMATA_SIZE (1200)
481*d2201f2fSdrahn #define MAX_OP_TABLE_SIZE (1200)
482*d2201f2fSdrahn #define LEAF_FLAG         (0x80000000)
483*d2201f2fSdrahn #define MAX_LEN           (8)
484*d2201f2fSdrahn 
485*d2201f2fSdrahn #ifndef MIN
486*d2201f2fSdrahn # define MIN(x,y)          ((x) < (y) ? (x) : (y))
487*d2201f2fSdrahn #endif
488*d2201f2fSdrahn 
489*d2201f2fSdrahn unsigned long *automata;
490*d2201f2fSdrahn int nuncovered;
491*d2201f2fSdrahn int curpass = 0;
492*d2201f2fSdrahn 
493*d2201f2fSdrahn /* MM: Struct that hold runtime build information about instructions.  */
494*d2201f2fSdrahn struct temp_insn_struct
495*d2201f2fSdrahn {
496*d2201f2fSdrahn   unsigned long insn;
497*d2201f2fSdrahn   unsigned long insn_mask;
498*d2201f2fSdrahn   int in_pass;
499*d2201f2fSdrahn } *ti;
500*d2201f2fSdrahn 
501*d2201f2fSdrahn struct insn_op_struct *op_data, **op_start;
502*d2201f2fSdrahn 
503*d2201f2fSdrahn /* Recursive utility function used to find best match and to build automata.  */
504*d2201f2fSdrahn 
505*d2201f2fSdrahn static unsigned long *
cover_insn(cur,pass,mask)506*d2201f2fSdrahn cover_insn (cur, pass, mask)
507*d2201f2fSdrahn      unsigned long * cur;
508*d2201f2fSdrahn      int pass;
509*d2201f2fSdrahn      unsigned int mask;
510*d2201f2fSdrahn {
511*d2201f2fSdrahn   int best_first = 0, last_match = -1, ninstr = 0;
512*d2201f2fSdrahn   unsigned int best_len = 0;
513*d2201f2fSdrahn   unsigned int i;
514*d2201f2fSdrahn   unsigned long cur_mask = mask;
515*d2201f2fSdrahn   unsigned long *next;
516*d2201f2fSdrahn 
517*d2201f2fSdrahn   for (i = 0; i < or32_num_opcodes; i++)
518*d2201f2fSdrahn     if (ti[i].in_pass == pass)
519*d2201f2fSdrahn       {
520*d2201f2fSdrahn 	cur_mask &= ti[i].insn_mask;
521*d2201f2fSdrahn 	ninstr++;
522*d2201f2fSdrahn 	last_match = i;
523*d2201f2fSdrahn       }
524*d2201f2fSdrahn 
525*d2201f2fSdrahn   debug (8, "%08X %08X\n", mask, cur_mask);
526*d2201f2fSdrahn 
527*d2201f2fSdrahn   if (ninstr == 0)
528*d2201f2fSdrahn     return 0;
529*d2201f2fSdrahn 
530*d2201f2fSdrahn   if (ninstr == 1)
531*d2201f2fSdrahn     {
532*d2201f2fSdrahn       /* Leaf holds instruction index.  */
533*d2201f2fSdrahn       debug (8, "%i>I%i %s\n",
534*d2201f2fSdrahn 	     cur - automata, last_match, or32_opcodes[last_match].name);
535*d2201f2fSdrahn 
536*d2201f2fSdrahn       *cur = LEAF_FLAG | last_match;
537*d2201f2fSdrahn       cur++;
538*d2201f2fSdrahn       nuncovered--;
539*d2201f2fSdrahn     }
540*d2201f2fSdrahn   else
541*d2201f2fSdrahn     {
542*d2201f2fSdrahn       /* Find longest match.  */
543*d2201f2fSdrahn       for (i = 0; i < 32; i++)
544*d2201f2fSdrahn 	{
545*d2201f2fSdrahn 	  unsigned int len;
546*d2201f2fSdrahn 
547*d2201f2fSdrahn 	  for (len = best_len + 1; len < MIN (MAX_LEN, 33 - i); len++)
548*d2201f2fSdrahn 	    {
549*d2201f2fSdrahn 	      unsigned long m = (1UL << ((unsigned long)len)) - 1;
550*d2201f2fSdrahn 
551*d2201f2fSdrahn 	      debug (9, " (%i(%08X & %08X>>%i = %08X, %08X)",
552*d2201f2fSdrahn 		     len,m, cur_mask, i, (cur_mask >> (unsigned)i),
553*d2201f2fSdrahn 		     (cur_mask >> (unsigned)i) & m);
554*d2201f2fSdrahn 
555*d2201f2fSdrahn 	      if ((m & (cur_mask >> (unsigned)i)) == m)
556*d2201f2fSdrahn 		{
557*d2201f2fSdrahn 		  best_len = len;
558*d2201f2fSdrahn 		  best_first = i;
559*d2201f2fSdrahn 		  debug (9, "!");
560*d2201f2fSdrahn 		}
561*d2201f2fSdrahn 	      else
562*d2201f2fSdrahn 		break;
563*d2201f2fSdrahn 	    }
564*d2201f2fSdrahn 	}
565*d2201f2fSdrahn 
566*d2201f2fSdrahn       debug (9, "\n");
567*d2201f2fSdrahn 
568*d2201f2fSdrahn       if (!best_len)
569*d2201f2fSdrahn 	{
570*d2201f2fSdrahn 	  fprintf (stderr, "%i instructions match mask 0x%08X:\n", ninstr, mask);
571*d2201f2fSdrahn 
572*d2201f2fSdrahn 	  for (i = 0; i < or32_num_opcodes; i++)
573*d2201f2fSdrahn 	    if (ti[i].in_pass == pass)
574*d2201f2fSdrahn 	      fprintf (stderr, "%s ", or32_opcodes[i].name);
575*d2201f2fSdrahn 
576*d2201f2fSdrahn 	  fprintf (stderr, "\n");
577*d2201f2fSdrahn 	  exit (1);
578*d2201f2fSdrahn 	}
579*d2201f2fSdrahn 
580*d2201f2fSdrahn       debug (8, "%i> #### %i << %i (%i) ####\n",
581*d2201f2fSdrahn 	     cur - automata, best_len, best_first, ninstr);
582*d2201f2fSdrahn 
583*d2201f2fSdrahn       *cur = best_first;
584*d2201f2fSdrahn       cur++;
585*d2201f2fSdrahn       *cur = (1 << best_len) - 1;
586*d2201f2fSdrahn       cur++;
587*d2201f2fSdrahn       next = cur;
588*d2201f2fSdrahn 
589*d2201f2fSdrahn       /* Allocate space for pointers.  */
590*d2201f2fSdrahn       cur += 1 << best_len;
591*d2201f2fSdrahn       cur_mask = (1 << (unsigned long)best_len) - 1;
592*d2201f2fSdrahn 
593*d2201f2fSdrahn       for (i = 0; i < ((unsigned) 1 << best_len); i++)
594*d2201f2fSdrahn 	{
595*d2201f2fSdrahn 	  unsigned int j;
596*d2201f2fSdrahn 	  unsigned long *c;
597*d2201f2fSdrahn 
598*d2201f2fSdrahn 	  curpass++;
599*d2201f2fSdrahn 	  for (j = 0; j < or32_num_opcodes; j++)
600*d2201f2fSdrahn 	    if (ti[j].in_pass == pass
601*d2201f2fSdrahn 		&& ((ti[j].insn >> best_first) & cur_mask) == (unsigned long) i
602*d2201f2fSdrahn 		&& ((ti[j].insn_mask >> best_first) & cur_mask) == cur_mask)
603*d2201f2fSdrahn 	      ti[j].in_pass = curpass;
604*d2201f2fSdrahn 
605*d2201f2fSdrahn 	  debug (9, "%08X %08X %i\n", mask, cur_mask, best_first);
606*d2201f2fSdrahn 	  c = cover_insn (cur, curpass, mask & (~(cur_mask << best_first)));
607*d2201f2fSdrahn 	  if (c)
608*d2201f2fSdrahn 	    {
609*d2201f2fSdrahn 	      debug (8, "%i> #%X -> %u\n", next - automata, i, cur - automata);
610*d2201f2fSdrahn 	      *next = cur - automata;
611*d2201f2fSdrahn 	      cur = c;
612*d2201f2fSdrahn 	    }
613*d2201f2fSdrahn 	  else
614*d2201f2fSdrahn 	    {
615*d2201f2fSdrahn 	      debug (8, "%i> N/A\n", next - automata);
616*d2201f2fSdrahn 	      *next = 0;
617*d2201f2fSdrahn 	    }
618*d2201f2fSdrahn 	  next++;
619*d2201f2fSdrahn 	}
620*d2201f2fSdrahn     }
621*d2201f2fSdrahn   return cur;
622*d2201f2fSdrahn }
623*d2201f2fSdrahn 
624*d2201f2fSdrahn /* Returns number of nonzero bits.  */
625*d2201f2fSdrahn 
626*d2201f2fSdrahn static int
num_ones(value)627*d2201f2fSdrahn num_ones (value)
628*d2201f2fSdrahn      unsigned long value;
629*d2201f2fSdrahn {
630*d2201f2fSdrahn   int c = 0;
631*d2201f2fSdrahn 
632*d2201f2fSdrahn   while (value)
633*d2201f2fSdrahn     {
634*d2201f2fSdrahn       if (value & 1)
635*d2201f2fSdrahn 	c++;
636*d2201f2fSdrahn       value >>= 1;
637*d2201f2fSdrahn     }
638*d2201f2fSdrahn   return c;
639*d2201f2fSdrahn }
640*d2201f2fSdrahn 
641*d2201f2fSdrahn /* Utility function, which converts parameters from or32_opcode format to more binary form.
642*d2201f2fSdrahn    Parameters are stored in ti struct.  */
643*d2201f2fSdrahn 
644*d2201f2fSdrahn static struct insn_op_struct *
parse_params(opcode,cur)645*d2201f2fSdrahn parse_params (opcode, cur)
646*d2201f2fSdrahn      const struct or32_opcode * opcode;
647*d2201f2fSdrahn      struct insn_op_struct * cur;
648*d2201f2fSdrahn {
649*d2201f2fSdrahn   char *args = opcode->args;
650*d2201f2fSdrahn   int i, type;
651*d2201f2fSdrahn 
652*d2201f2fSdrahn   i = 0;
653*d2201f2fSdrahn   type = 0;
654*d2201f2fSdrahn   /* In case we don't have any parameters, we add dummy read from r0.  */
655*d2201f2fSdrahn 
656*d2201f2fSdrahn   if (!(*args))
657*d2201f2fSdrahn     {
658*d2201f2fSdrahn       cur->type = OPTYPE_REG | OPTYPE_OP | OPTYPE_LAST;
659*d2201f2fSdrahn       cur->data = 0;
660*d2201f2fSdrahn       debug (9, "#%08X %08X\n", cur->type, cur->data);
661*d2201f2fSdrahn       cur++;
662*d2201f2fSdrahn       return cur;
663*d2201f2fSdrahn   }
664*d2201f2fSdrahn 
665*d2201f2fSdrahn   while (*args != '\0')
666*d2201f2fSdrahn     {
667*d2201f2fSdrahn       if (*args == 'r')
668*d2201f2fSdrahn 	{
669*d2201f2fSdrahn 	  args++;
670*d2201f2fSdrahn 	  type |= OPTYPE_REG;
671*d2201f2fSdrahn 	}
672*d2201f2fSdrahn       else if (ISALPHA (*args))
673*d2201f2fSdrahn 	{
674*d2201f2fSdrahn 	  unsigned long arg;
675*d2201f2fSdrahn 
676*d2201f2fSdrahn 	  arg = insn_extract (*args, opcode->encoding);
677*d2201f2fSdrahn 	  debug (9, "%s : %08X ------\n", opcode->name, arg);
678*d2201f2fSdrahn 	  if (letter_signed (*args))
679*d2201f2fSdrahn 	    {
680*d2201f2fSdrahn 	      type |= OPTYPE_SIG;
681*d2201f2fSdrahn 	      type |= ((num_ones (arg) - 1) << OPTYPE_SBIT_SHR) & OPTYPE_SBIT;
682*d2201f2fSdrahn 	    }
683*d2201f2fSdrahn 
684*d2201f2fSdrahn 	  /* Split argument to sequences of consecutive ones.  */
685*d2201f2fSdrahn 	  while (arg)
686*d2201f2fSdrahn 	    {
687*d2201f2fSdrahn 	      int shr = 0;
688*d2201f2fSdrahn 	      unsigned long tmp = arg, mask = 0;
689*d2201f2fSdrahn 
690*d2201f2fSdrahn 	      while ((tmp & 1) == 0)
691*d2201f2fSdrahn 		{
692*d2201f2fSdrahn 		  shr++;
693*d2201f2fSdrahn 		  tmp >>= 1;
694*d2201f2fSdrahn 		}
695*d2201f2fSdrahn 	      while (tmp & 1)
696*d2201f2fSdrahn 		{
697*d2201f2fSdrahn 		  mask++;
698*d2201f2fSdrahn 		  tmp >>= 1;
699*d2201f2fSdrahn 		}
700*d2201f2fSdrahn 	      cur->type = type | shr;
701*d2201f2fSdrahn 	      cur->data = mask;
702*d2201f2fSdrahn 	      arg &= ~(((1 << mask) - 1) << shr);
703*d2201f2fSdrahn 	      debug (6, "|%08X %08X\n", cur->type, cur->data);
704*d2201f2fSdrahn 	      cur++;
705*d2201f2fSdrahn 	    }
706*d2201f2fSdrahn 	  args++;
707*d2201f2fSdrahn 	}
708*d2201f2fSdrahn       else if (*args == '(')
709*d2201f2fSdrahn 	{
710*d2201f2fSdrahn 	  /* Next param is displacement.  Later we will treat them as one operand.  */
711*d2201f2fSdrahn 	  cur--;
712*d2201f2fSdrahn 	  cur->type = type | cur->type | OPTYPE_DIS | OPTYPE_OP;
713*d2201f2fSdrahn 	  debug (9, ">%08X %08X\n", cur->type, cur->data);
714*d2201f2fSdrahn 	  cur++;
715*d2201f2fSdrahn 	  type = 0;
716*d2201f2fSdrahn 	  i++;
717*d2201f2fSdrahn 	  args++;
718*d2201f2fSdrahn 	}
719*d2201f2fSdrahn       else if (*args == OPERAND_DELIM)
720*d2201f2fSdrahn 	{
721*d2201f2fSdrahn 	  cur--;
722*d2201f2fSdrahn 	  cur->type = type | cur->type | OPTYPE_OP;
723*d2201f2fSdrahn 	  debug (9, ">%08X %08X\n", cur->type, cur->data);
724*d2201f2fSdrahn 	  cur++;
725*d2201f2fSdrahn 	  type = 0;
726*d2201f2fSdrahn 	  i++;
727*d2201f2fSdrahn 	  args++;
728*d2201f2fSdrahn 	}
729*d2201f2fSdrahn       else if (*args == '0')
730*d2201f2fSdrahn 	{
731*d2201f2fSdrahn 	  cur->type = type;
732*d2201f2fSdrahn 	  cur->data = 0;
733*d2201f2fSdrahn 	  debug (9, ">%08X %08X\n", cur->type, cur->data);
734*d2201f2fSdrahn 	  cur++;
735*d2201f2fSdrahn 	  type = 0;
736*d2201f2fSdrahn 	  i++;
737*d2201f2fSdrahn 	  args++;
738*d2201f2fSdrahn 	}
739*d2201f2fSdrahn       else if (*args == ')')
740*d2201f2fSdrahn 	args++;
741*d2201f2fSdrahn       else
742*d2201f2fSdrahn 	{
743*d2201f2fSdrahn 	  fprintf (stderr, "%s : parse error in args.\n", opcode->name);
744*d2201f2fSdrahn 	  exit (1);
745*d2201f2fSdrahn 	}
746*d2201f2fSdrahn     }
747*d2201f2fSdrahn 
748*d2201f2fSdrahn   cur--;
749*d2201f2fSdrahn   cur->type = type | cur->type | OPTYPE_OP | OPTYPE_LAST;
750*d2201f2fSdrahn   debug (9, "#%08X %08X\n", cur->type, cur->data);
751*d2201f2fSdrahn   cur++;
752*d2201f2fSdrahn 
753*d2201f2fSdrahn   return cur;
754*d2201f2fSdrahn }
755*d2201f2fSdrahn 
756*d2201f2fSdrahn /* Constructs new automata based on or32_opcodes array.  */
757*d2201f2fSdrahn 
758*d2201f2fSdrahn void
build_automata()759*d2201f2fSdrahn build_automata ()
760*d2201f2fSdrahn {
761*d2201f2fSdrahn   unsigned int i;
762*d2201f2fSdrahn   unsigned long *end;
763*d2201f2fSdrahn   struct insn_op_struct *cur;
764*d2201f2fSdrahn 
765*d2201f2fSdrahn   automata = (unsigned long *) malloc (MAX_AUTOMATA_SIZE * sizeof (unsigned long));
766*d2201f2fSdrahn   ti = (struct temp_insn_struct *) malloc (sizeof (struct temp_insn_struct) * or32_num_opcodes);
767*d2201f2fSdrahn 
768*d2201f2fSdrahn   nuncovered = or32_num_opcodes;
769*d2201f2fSdrahn   printf ("Building automata... ");
770*d2201f2fSdrahn   /* Build temporary information about instructions.  */
771*d2201f2fSdrahn   for (i = 0; i < or32_num_opcodes; i++)
772*d2201f2fSdrahn     {
773*d2201f2fSdrahn       unsigned long ones, zeros;
774*d2201f2fSdrahn       char *encoding = or32_opcodes[i].encoding;
775*d2201f2fSdrahn 
776*d2201f2fSdrahn       ones  = insn_extract('1', encoding);
777*d2201f2fSdrahn       zeros = insn_extract('0', encoding);
778*d2201f2fSdrahn 
779*d2201f2fSdrahn       ti[i].insn_mask = ones | zeros;
780*d2201f2fSdrahn       ti[i].insn = ones;
781*d2201f2fSdrahn       ti[i].in_pass = curpass = 0;
782*d2201f2fSdrahn 
783*d2201f2fSdrahn       /*debug(9, "%s: %s %08X %08X\n", or32_opcodes[i].name,
784*d2201f2fSdrahn 	or32_opcodes[i].encoding, ti[i].insn_mask, ti[i].insn);*/
785*d2201f2fSdrahn     }
786*d2201f2fSdrahn 
787*d2201f2fSdrahn   /* Until all are covered search for best criteria to separate them.  */
788*d2201f2fSdrahn   end = cover_insn (automata, curpass, 0xFFFFFFFF);
789*d2201f2fSdrahn 
790*d2201f2fSdrahn   if (end - automata > MAX_AUTOMATA_SIZE)
791*d2201f2fSdrahn     {
792*d2201f2fSdrahn       fprintf (stderr, "Automata too large. Increase MAX_AUTOMATA_SIZE.");
793*d2201f2fSdrahn       exit (1);
794*d2201f2fSdrahn     }
795*d2201f2fSdrahn 
796*d2201f2fSdrahn   printf ("done, num uncovered: %i/%i.\n", nuncovered, or32_num_opcodes);
797*d2201f2fSdrahn   printf ("Parsing operands data... ");
798*d2201f2fSdrahn 
799*d2201f2fSdrahn   op_data = (struct insn_op_struct *) malloc (MAX_OP_TABLE_SIZE * sizeof (struct insn_op_struct));
800*d2201f2fSdrahn   op_start = (struct insn_op_struct **) malloc (or32_num_opcodes * sizeof (struct insn_op_struct *));
801*d2201f2fSdrahn   cur = op_data;
802*d2201f2fSdrahn 
803*d2201f2fSdrahn   for (i = 0; i < or32_num_opcodes; i++)
804*d2201f2fSdrahn     {
805*d2201f2fSdrahn       op_start[i] = cur;
806*d2201f2fSdrahn       cur = parse_params (&or32_opcodes[i], cur);
807*d2201f2fSdrahn 
808*d2201f2fSdrahn       if (cur - op_data > MAX_OP_TABLE_SIZE)
809*d2201f2fSdrahn 	{
810*d2201f2fSdrahn 	  fprintf (stderr, "Operands table too small, increase MAX_OP_TABLE_SIZE.\n");
811*d2201f2fSdrahn 	  exit (1);
812*d2201f2fSdrahn 	}
813*d2201f2fSdrahn     }
814*d2201f2fSdrahn   printf ("done.\n");
815*d2201f2fSdrahn }
816*d2201f2fSdrahn 
817*d2201f2fSdrahn void
destruct_automata()818*d2201f2fSdrahn destruct_automata ()
819*d2201f2fSdrahn {
820*d2201f2fSdrahn   free (ti);
821*d2201f2fSdrahn   free (automata);
822*d2201f2fSdrahn   free (op_data);
823*d2201f2fSdrahn   free (op_start);
824*d2201f2fSdrahn }
825*d2201f2fSdrahn 
826*d2201f2fSdrahn /* Decodes instruction and returns instruction index.  */
827*d2201f2fSdrahn 
828*d2201f2fSdrahn int
insn_decode(insn)829*d2201f2fSdrahn insn_decode (insn)
830*d2201f2fSdrahn      unsigned int insn;
831*d2201f2fSdrahn {
832*d2201f2fSdrahn   unsigned long *a = automata;
833*d2201f2fSdrahn   int i;
834*d2201f2fSdrahn 
835*d2201f2fSdrahn   while (!(*a & LEAF_FLAG))
836*d2201f2fSdrahn     {
837*d2201f2fSdrahn       unsigned int first = *a;
838*d2201f2fSdrahn 
839*d2201f2fSdrahn       debug (9, "%i ", a - automata);
840*d2201f2fSdrahn 
841*d2201f2fSdrahn       a++;
842*d2201f2fSdrahn       i = (insn >> first) & *a;
843*d2201f2fSdrahn       a++;
844*d2201f2fSdrahn       if (!*(a + i))
845*d2201f2fSdrahn 	{
846*d2201f2fSdrahn 	  /* Invalid instruction found?  */
847*d2201f2fSdrahn 	  debug (9, "XXX\n", i);
848*d2201f2fSdrahn 	  return -1;
849*d2201f2fSdrahn 	}
850*d2201f2fSdrahn       a = automata + *(a + i);
851*d2201f2fSdrahn     }
852*d2201f2fSdrahn 
853*d2201f2fSdrahn   i = *a & ~LEAF_FLAG;
854*d2201f2fSdrahn 
855*d2201f2fSdrahn   debug (9, "%i\n", i);
856*d2201f2fSdrahn 
857*d2201f2fSdrahn   /* Final check - do we have direct match?
858*d2201f2fSdrahn      (based on or32_opcodes this should be the only possibility,
859*d2201f2fSdrahn      but in case of invalid/missing instruction we must perform a check)  */
860*d2201f2fSdrahn   if ((ti[i].insn_mask & insn) == ti[i].insn)
861*d2201f2fSdrahn     return i;
862*d2201f2fSdrahn   else
863*d2201f2fSdrahn     return -1;
864*d2201f2fSdrahn }
865*d2201f2fSdrahn 
866*d2201f2fSdrahn static char disassembled_str[50];
867*d2201f2fSdrahn char *disassembled = &disassembled_str[0];
868*d2201f2fSdrahn 
869*d2201f2fSdrahn /* Automagically does zero- or sign- extension and also finds correct
870*d2201f2fSdrahn    sign bit position if sign extension is correct extension. Which extension
871*d2201f2fSdrahn    is proper is figured out from letter description.  */
872*d2201f2fSdrahn 
873*d2201f2fSdrahn static unsigned long
extend_imm(imm,l)874*d2201f2fSdrahn extend_imm (imm, l)
875*d2201f2fSdrahn      unsigned long imm;
876*d2201f2fSdrahn      char l;
877*d2201f2fSdrahn {
878*d2201f2fSdrahn   unsigned long mask;
879*d2201f2fSdrahn   int letter_bits;
880*d2201f2fSdrahn 
881*d2201f2fSdrahn   /* First truncate all bits above valid range for this letter
882*d2201f2fSdrahn      in case it is zero extend.  */
883*d2201f2fSdrahn   letter_bits = letter_range (l);
884*d2201f2fSdrahn   mask = (1 << letter_bits) - 1;
885*d2201f2fSdrahn   imm &= mask;
886*d2201f2fSdrahn 
887*d2201f2fSdrahn   /* Do sign extend if this is the right one.  */
888*d2201f2fSdrahn   if (letter_signed(l) && (imm >> (letter_bits - 1)))
889*d2201f2fSdrahn     imm |= (~mask);
890*d2201f2fSdrahn 
891*d2201f2fSdrahn   return imm;
892*d2201f2fSdrahn }
893*d2201f2fSdrahn 
894*d2201f2fSdrahn static unsigned long
or32_extract(param_ch,enc_initial,insn)895*d2201f2fSdrahn or32_extract (param_ch, enc_initial, insn)
896*d2201f2fSdrahn      char param_ch;
897*d2201f2fSdrahn      char *enc_initial;
898*d2201f2fSdrahn      unsigned long insn;
899*d2201f2fSdrahn {
900*d2201f2fSdrahn   char *enc;
901*d2201f2fSdrahn   unsigned long ret = 0;
902*d2201f2fSdrahn   int opc_pos = 0;
903*d2201f2fSdrahn   int param_pos = 0;
904*d2201f2fSdrahn 
905*d2201f2fSdrahn   for (enc = enc_initial; *enc != '\0'; enc++)
906*d2201f2fSdrahn     if (*enc == param_ch)
907*d2201f2fSdrahn       {
908*d2201f2fSdrahn         if (enc - 2 >= enc_initial && (*(enc - 2) == '0') && (*(enc - 1) == 'x'))
909*d2201f2fSdrahn       	  continue;
910*d2201f2fSdrahn         else
911*d2201f2fSdrahn           param_pos++;
912*d2201f2fSdrahn       }
913*d2201f2fSdrahn 
914*d2201f2fSdrahn #if DEBUG
915*d2201f2fSdrahn   printf ("or32_extract: %x ", param_pos);
916*d2201f2fSdrahn #endif
917*d2201f2fSdrahn   opc_pos = 32;
918*d2201f2fSdrahn 
919*d2201f2fSdrahn   for (enc = enc_initial; *enc != '\0'; )
920*d2201f2fSdrahn     if ((*enc == '0') && (*(enc + 1) == 'x'))
921*d2201f2fSdrahn       {
922*d2201f2fSdrahn         opc_pos -= 4;
923*d2201f2fSdrahn         if ((param_ch == '0') || (param_ch == '1'))
924*d2201f2fSdrahn           {
925*d2201f2fSdrahn             unsigned long tmp = strtol (enc, NULL, 16);
926*d2201f2fSdrahn #if DEBUG
927*d2201f2fSdrahn             printf (" enc=%s, tmp=%x ", enc, tmp);
928*d2201f2fSdrahn #endif
929*d2201f2fSdrahn             if (param_ch == '0')
930*d2201f2fSdrahn               tmp = 15 - tmp;
931*d2201f2fSdrahn             ret |= tmp << opc_pos;
932*d2201f2fSdrahn           }
933*d2201f2fSdrahn         enc += 3;
934*d2201f2fSdrahn       }
935*d2201f2fSdrahn     else if ((*enc == '0') || (*enc == '1'))
936*d2201f2fSdrahn       {
937*d2201f2fSdrahn         opc_pos--;
938*d2201f2fSdrahn         if (param_ch == *enc)
939*d2201f2fSdrahn           ret |= 1 << opc_pos;
940*d2201f2fSdrahn         enc++;
941*d2201f2fSdrahn       }
942*d2201f2fSdrahn     else if (*enc == param_ch)
943*d2201f2fSdrahn       {
944*d2201f2fSdrahn         opc_pos--;
945*d2201f2fSdrahn         param_pos--;
946*d2201f2fSdrahn #if DEBUG
947*d2201f2fSdrahn         printf ("\n  ret=%x opc_pos=%x, param_pos=%x\n", ret, opc_pos, param_pos);
948*d2201f2fSdrahn #endif
949*d2201f2fSdrahn         if (ISLOWER (param_ch))
950*d2201f2fSdrahn           ret -= ((insn >> opc_pos) & 0x1) << param_pos;
951*d2201f2fSdrahn         else
952*d2201f2fSdrahn           ret += ((insn >> opc_pos) & 0x1) << param_pos;
953*d2201f2fSdrahn         enc++;
954*d2201f2fSdrahn       }
955*d2201f2fSdrahn     else if (ISALPHA (*enc))
956*d2201f2fSdrahn       {
957*d2201f2fSdrahn         opc_pos--;
958*d2201f2fSdrahn         enc++;
959*d2201f2fSdrahn       }
960*d2201f2fSdrahn     else if (*enc == '-')
961*d2201f2fSdrahn       {
962*d2201f2fSdrahn         opc_pos--;
963*d2201f2fSdrahn         enc++;
964*d2201f2fSdrahn       }
965*d2201f2fSdrahn     else
966*d2201f2fSdrahn       enc++;
967*d2201f2fSdrahn 
968*d2201f2fSdrahn #if DEBUG
969*d2201f2fSdrahn   printf ("ret=%x\n", ret);
970*d2201f2fSdrahn #endif
971*d2201f2fSdrahn   return ret;
972*d2201f2fSdrahn }
973*d2201f2fSdrahn 
974*d2201f2fSdrahn /* Print register. Used only by print_insn.  */
975*d2201f2fSdrahn 
976*d2201f2fSdrahn static void
or32_print_register(param_ch,encoding,insn)977*d2201f2fSdrahn or32_print_register (param_ch, encoding, insn)
978*d2201f2fSdrahn      char param_ch;
979*d2201f2fSdrahn      char *encoding;
980*d2201f2fSdrahn      unsigned long insn;
981*d2201f2fSdrahn {
982*d2201f2fSdrahn   int regnum = or32_extract(param_ch, encoding, insn);
983*d2201f2fSdrahn 
984*d2201f2fSdrahn   sprintf (disassembled, "%sr%d", disassembled, regnum);
985*d2201f2fSdrahn }
986*d2201f2fSdrahn 
987*d2201f2fSdrahn /* Print immediate. Used only by print_insn.  */
988*d2201f2fSdrahn 
989*d2201f2fSdrahn static void
or32_print_immediate(param_ch,encoding,insn)990*d2201f2fSdrahn or32_print_immediate (param_ch, encoding, insn)
991*d2201f2fSdrahn      char param_ch;
992*d2201f2fSdrahn      char *encoding;
993*d2201f2fSdrahn      unsigned long insn;
994*d2201f2fSdrahn {
995*d2201f2fSdrahn   int imm = or32_extract (param_ch, encoding, insn);
996*d2201f2fSdrahn 
997*d2201f2fSdrahn   imm = extend_imm (imm, param_ch);
998*d2201f2fSdrahn 
999*d2201f2fSdrahn   if (letter_signed (param_ch))
1000*d2201f2fSdrahn     {
1001*d2201f2fSdrahn       if (imm < 0)
1002*d2201f2fSdrahn         sprintf (disassembled, "%s%d", disassembled, imm);
1003*d2201f2fSdrahn       else
1004*d2201f2fSdrahn         sprintf (disassembled, "%s0x%x", disassembled, imm);
1005*d2201f2fSdrahn     }
1006*d2201f2fSdrahn   else
1007*d2201f2fSdrahn     sprintf (disassembled, "%s%#x", disassembled, imm);
1008*d2201f2fSdrahn }
1009*d2201f2fSdrahn 
1010*d2201f2fSdrahn /* Disassemble one instruction from insn to disassemble.
1011*d2201f2fSdrahn    Return the size of the instruction.  */
1012*d2201f2fSdrahn 
1013*d2201f2fSdrahn int
disassemble_insn(insn)1014*d2201f2fSdrahn disassemble_insn (insn)
1015*d2201f2fSdrahn      unsigned long insn;
1016*d2201f2fSdrahn {
1017*d2201f2fSdrahn   int index;
1018*d2201f2fSdrahn   index = insn_decode (insn);
1019*d2201f2fSdrahn 
1020*d2201f2fSdrahn   if (index >= 0)
1021*d2201f2fSdrahn     {
1022*d2201f2fSdrahn       struct or32_opcode const *opcode = &or32_opcodes[index];
1023*d2201f2fSdrahn       char *s;
1024*d2201f2fSdrahn 
1025*d2201f2fSdrahn       sprintf (disassembled, "%s ", opcode->name);
1026*d2201f2fSdrahn       for (s = opcode->args; *s != '\0'; ++s)
1027*d2201f2fSdrahn         {
1028*d2201f2fSdrahn           switch (*s)
1029*d2201f2fSdrahn             {
1030*d2201f2fSdrahn             case '\0':
1031*d2201f2fSdrahn               return 4;
1032*d2201f2fSdrahn 
1033*d2201f2fSdrahn             case 'r':
1034*d2201f2fSdrahn               or32_print_register (*++s, opcode->encoding, insn);
1035*d2201f2fSdrahn               break;
1036*d2201f2fSdrahn 
1037*d2201f2fSdrahn             default:
1038*d2201f2fSdrahn               if (strchr (opcode->encoding, *s))
1039*d2201f2fSdrahn                 or32_print_immediate (*s, opcode->encoding, insn);
1040*d2201f2fSdrahn               else
1041*d2201f2fSdrahn                 sprintf (disassembled, "%s%c", disassembled, *s);
1042*d2201f2fSdrahn             }
1043*d2201f2fSdrahn         }
1044*d2201f2fSdrahn     }
1045*d2201f2fSdrahn   else
1046*d2201f2fSdrahn     {
1047*d2201f2fSdrahn       /* This used to be %8x for binutils.  */
1048*d2201f2fSdrahn       sprintf (disassembled, "%s.word 0x%08lx", disassembled, insn);
1049*d2201f2fSdrahn     }
1050*d2201f2fSdrahn 
1051*d2201f2fSdrahn   return insn_len (insn);
1052*d2201f2fSdrahn }
1053