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1.1 root 1: /***************************************************************************
2:
3: i860dis.c
4:
5: Disassembler for the Intel i860 emulator.
6:
7: Copyright (C) 1995-present Jason Eckhardt ([email protected])
8: Released for general non-commercial use under the MAME license
9: with the additional requirement that you are free to use and
10: redistribute this code in modified or unmodified form, provided
11: you list me in the credits.
12: Visit http://mamedev.org for licensing and usage restrictions.
13:
14: Changes for previous/NeXTdimension by Simon Schubiger (SC)
15:
16: ***************************************************************************/
17:
18: #include "i860.hpp"
19:
20: /* Macros for accessing register fields in instruction word. */
21: #define get_isrc1(bits) (((bits) >> 11) & 0x1f)
22: #define get_isrc2(bits) (((bits) >> 21) & 0x1f)
23: #define get_idest(bits) (((bits) >> 16) & 0x1f)
24: #define get_fsrc1(bits) (((bits) >> 11) & 0x1f)
25: #define get_fsrc2(bits) (((bits) >> 21) & 0x1f)
26: #define get_fdest(bits) (((bits) >> 16) & 0x1f)
27: #define get_creg(bits) (((bits) >> 21) & 0x7)
28:
29: /* Macros for accessing immediate fields. */
30: /* 16-bit immediate. */
31: #define get_imm16(insn) ((insn) & 0xffff)
32:
33:
34: /* Control register names. */
35: static const char *const cr2str[] =
36: {"fir", "psr", "dirbase", "db", "fsr", "epsr", "!", "!"};
37:
38:
39: /* Sign extend N-bit number. */
40: static INT32 sign_ext(UINT32 x, int n)
41: {
42: INT32 t;
43: t = x >> (n - 1);
44: t = ((-t) << n) | x;
45: return t;
46: }
47:
48:
49: /* Basic integer 3-address register format:
50: * mnemonic %rs1,%rs2,%rd */
51: static void int_12d(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
52: {
53: /* Possibly prefix shrd with 'd.' */
54: if (((insn & 0xfc000000) == 0xb0000000) && (insn & 0x200))
55: sprintf(buf, "d.%s\t%%r%d,%%r%d,%%r%d", mnemonic,
56: get_isrc1 (insn), get_isrc2 (insn), get_idest (insn));
57: else
58: sprintf(buf, " %s\t%%r%d,%%r%d,%%r%d", mnemonic,
59: get_isrc1 (insn), get_isrc2 (insn), get_idest (insn));
60: }
61:
62:
63: /* Basic integer 3-address imm16 format:
64: * mnemonic #imm16,%rs2,%rd */
65: static void int_i2d(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
66: {
67: /* Sign extend the 16-bit immediate.
68: Print as hex for the bitwise operations. */
69: int upper_6bits = (insn >> 26) & 0x3f;
70: if (upper_6bits >= 0x30 && upper_6bits <= 0x3f)
71: sprintf(buf, " %s\t0x%04x,%%r%d,%%r%d", mnemonic,
72: (UINT32)(get_imm16 (insn)), get_isrc2 (insn), get_idest (insn));
73: else
74: sprintf(buf, " %s\t%d,%%r%d,%%r%d", mnemonic,
75: sign_ext(get_imm16 (insn), 16), get_isrc2 (insn), get_idest (insn));
76: }
77:
78:
79: /* Integer (mixed) 2-address isrc1ni,fdest. */
80: static void int_1d(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
81: {
82: sprintf(buf, " %s\t%%r%d,%%f%d", mnemonic, get_isrc1 (insn), get_fdest (insn));
83: }
84:
85:
86: /* Integer (mixed) 2-address csrc2,idest. */
87: static void int_cd(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
88: {
89: sprintf(buf, " %s\t%%%s,%%r%d", mnemonic, cr2str[get_creg (insn)], get_idest (insn));
90: }
91:
92:
93: /* Integer (mixed) 2-address isrc1,csrc2. */
94: static void int_1c(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
95: {
96: sprintf(buf, " %s\t%%r%d,%%%s", mnemonic, get_isrc1(insn), cr2str[get_creg (insn)]);
97: }
98:
99:
100: /* Integer 1-address register format:
101: * mnemonic %rs1 */
102: static void int_1(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
103: {
104: sprintf(buf, " %s\t%%r%d", mnemonic, get_isrc1 (insn));
105: }
106:
107:
108: /* Integer no-address register format:
109: * mnemonic */
110: static void int_0(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
111: {
112: sprintf(buf, " %s", mnemonic);
113: }
114:
115:
116: /* Basic floating-point 3-address register format:
117: * mnemonic %fs1,%fs2,%fd */
118: static void flop_12d(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
119: {
120: const char *const suffix[4] = { "ss", "sd", "ds", "dd" };
121: const char *prefix_d, *prefix_p;
122: prefix_p = (insn & 0x400) ? "p" : "";
123: prefix_d = (insn & 0x200) ? "d." : " ";
124:
125: /* Special case: pf[m]am and pf[m]sm families are always pipelined, so they
126: do not have a prefix. Also, for the pfmam and pfmsm families, replace
127: any 'a' in the mnemonic with 'm' and prepend an 'm'. */
128: if ((insn & 0x7f) < 0x20)
129: {
130: int is_pfam = insn & 0x400;
131: if (!is_pfam)
132: {
133: char newname[256];
134: char *op = mnemonic;
135: char *np = newname + 1;
136: newname[0] = 'm';
137: while (*op)
138: {
139: if (*op == 'a')
140: *np = 'm';
141: else
142: *np = *op;
143: np++;
144: op++;
145: }
146: *np = 0;
147: mnemonic = newname;
148: }
149: prefix_p = "";
150: }
151:
152: /* Special case: pfgt/pfle-- R-bit distinguishes the two. */
153: if ((insn & 0x7f) == 0x34)
154: {
155: const char *const mn[2] = { "fgt.", "fle." };
156: int r = (insn & 0x080) >> 7;
157: int s = (insn & 0x100) ? 3 : 0;
158: sprintf(buf, "%s%s%s%s\t%%f%d,%%f%d,%%f%d", prefix_d, prefix_p, mn[r],
159: suffix[s], get_fsrc1 (insn), get_fsrc2 (insn), get_fdest (insn));
160: }
161: else
162: {
163: int s = (insn & 0x180) >> 7;
164: sprintf(buf, "%s%s%s%s\t%%f%d,%%f%d,%%f%d", prefix_d, prefix_p, mnemonic,
165: suffix[s], get_fsrc1 (insn), get_fsrc2 (insn), get_fdest (insn));
166: }
167: }
168:
169:
170: /* Floating-point 2-address register format:
171: * mnemonic %fs1,%fd */
172: static void flop_1d(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
173: {
174: const char *const suffix[4] = { "ss", "sd", "ds", "dd" };
175: const char *prefix_d, *prefix_p;
176: int s = (insn & 0x180) >> 7;
177: prefix_p = (insn & 0x400) ? "p" : "";
178: prefix_d = (insn & 0x200) ? "d." : " ";
179: sprintf(buf, "%s%s%s%s\t%%f%d,%%f%d", prefix_d, prefix_p, mnemonic,
180: suffix[s], get_fsrc1 (insn), get_fdest (insn));
181: }
182:
183:
184: /* Floating-point 2-address register format:
185: * mnemonic %fs2,%fd */
186: static void flop_2d(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
187: {
188: const char *const suffix[4] = { "ss", "sd", "ds", "dd" };
189: const char *prefix_d;
190: int s = (insn & 0x180) >> 7;
191: prefix_d = (insn & 0x200) ? "d." : " ";
192: sprintf(buf, "%s%s%s\t%%f%d,%%f%d", prefix_d, mnemonic, suffix[s],
193: get_fsrc2 (insn), get_fdest (insn));
194: }
195:
196:
197: /* Floating-point (mixed) 2-address register format:
198: * fxfr fsrc1,idest. */
199: static void flop_fxfr(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
200: {
201: const char *prefix_d = (insn & 0x200) ? "d." : " ";
202: sprintf(buf, "%s%s\t%%f%d,%%r%d", prefix_d, mnemonic, get_fsrc1 (insn),
203: get_idest (insn));
204: }
205:
206:
207: /* Branch with reg,reg,sbroff format:
208: * mnemonic %rs1,%rs2,sbroff */
209: static void int_12S(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
210: {
211: INT32 sbroff = sign_ext ((((insn >> 5) & 0xf800) | (insn & 0x07ff)), 16);
212: INT32 rel = (INT32)pc + (sbroff << 2) + 4;
213:
214: sprintf(buf, " %s\t%%r%d,%%r%d,0x%08x", mnemonic, get_isrc1 (insn),
215: get_isrc2 (insn), (UINT32)rel);
216: }
217:
218:
219: /* Branch with #const5,reg,sbroff format:
220: * mnemonic #const5,%rs2,sbroff */
221: static void int_i2S(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
222: {
223: INT32 sbroff = sign_ext ((((insn >> 5) & 0xf800) | (insn & 0x07ff)), 16);
224: INT32 rel = (INT32)pc + (sbroff << 2) + 4;
225:
226: sprintf(buf, " %s\t%d,%%r%d,0x%08x", mnemonic, ((insn >> 11) & 0x1f),
227: get_isrc2 (insn), (UINT32)rel);
228: }
229:
230:
231: /* Branch with lbroff format:
232: * mnemonic lbroff */
233: static void int_L(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
234: {
235: INT32 lbroff = sign_ext ((insn & 0x03ffffff), 26);
236: INT32 rel = (INT32)pc + (lbroff << 2) + 4;
237:
238: sprintf(buf, " %s\t0x%08x", mnemonic, (UINT32)rel);
239: }
240:
241:
242: /* Integer load.
243: * ld.{b,s,l} isrc1(isrc2),idest
244: * ld.{b,s,l} #const(isrc2),idest */
245: static void int_ldx(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
246: {
247: /* Operand size, in bytes. */
248: int sizes[4] = { 1, 1, 2, 4 };
249: const char *const suffix[4] = { "b", "b", "s", "l" };
250: UINT32 idx = 0;
251:
252: /* Bits 28 and 0 determine the operand size. */
253: idx = ((insn >> 27) & 2) | (insn & 1);
254:
255: /* Bit 26 determines the addressing mode (reg+reg or disp+reg). */
256: if (insn & 0x04000000)
257: {
258: /* Chop off lower bits of displacement. */
259: INT32 immsrc1 = sign_ext (get_imm16 (insn), 16);
260: int size = sizes[idx];
261: immsrc1 &= ~(size - 1);
262: sprintf(buf, " %s%s\t%d(%%r%d),%%r%d", mnemonic, suffix[idx],
263: immsrc1, get_isrc2 (insn), get_idest (insn));
264: }
265: else
266: sprintf(buf, " %s%s\t%%r%d(%%r%d),%%r%d", mnemonic, suffix[idx],
267: get_isrc1 (insn), get_isrc2 (insn), get_idest (insn));
268: }
269:
270:
271: /* Integer store: st.b isrc1ni,#const(isrc2) */
272: static void int_stx(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
273: {
274: /* Operand size, in bytes. */
275: int sizes[4] = { 1, 1, 2, 4 };
276: const char *const suffix[4] = { "b", "b", "s", "l" };
277: int idx = 0;
278: int size;
279: INT32 immsrc = sign_ext ((((insn >> 5) & 0xf800) | (insn & 0x07ff)), 16);
280:
281: /* Bits 28 and 0 determine the operand size. */
282: idx = ((insn >> 27) & 2) | (insn & 1);
283:
284: /* Chop off lower bits of displacement. */
285: size = sizes[idx];
286: immsrc &= ~(size - 1);
287: sprintf(buf, " %s%s\t%%r%d,%d(%%r%d)", mnemonic, suffix[idx],
288: get_isrc1 (insn), immsrc, get_isrc2 (insn));
289: }
290:
291:
292: /* Disassemble:
293: * "[p]fld.y isrc1(isrc2),fdest", "[p]fld.y isrc1(isrc2)++,idest",
294: * "[p]fld.y #const(isrc2),fdest" or "[p]fld.y #const(isrc2)++,idest".
295: * "fst.y fdest,isrc1(isrc2)", "fst.y fdest,isrc1(isrc2)++",
296: * "fst.y fdest,#const(isrc2)" or "fst.y fdest,#const(isrc2)++"
297: * Where y = {l,d,q}. Note, there is no pfld.q, though. */
298: static void int_fldst(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
299: {
300: INT32 immsrc1 = sign_ext (get_imm16 (insn), 16);
301: /* Operand size, in bytes. */
302: int sizes[4] = { 8, 4, 16, 4 };
303: const char *const suffix[4] = { "d", "l", "q", "l" };
304: int idx = 0;
305: int size = 0;
306: int auto_inc = (insn & 1);
307: const char *const auto_suff[2] = { "", "++" };
308: int piped = (insn & 0x40000000) >> 30;
309: const char *const piped_suff[2] = { "", "p" };
310: int upper_6bits = (insn >> 26) & 0x3f;
311: int is_load = (upper_6bits == 8 || upper_6bits == 9 || upper_6bits == 24
312: || upper_6bits == 25);
313:
314: /* Bits 2 and 1 determine the operand size. */
315: idx = ((insn >> 1) & 3);
316: size = sizes[idx];
317:
318: /* There is no pipelined load quad on XR. */
319: if (piped && size == 16)
320: {
321: sprintf (buf, ".long\t%#08x; *", insn);
322: return;
323: }
324:
325: /* There is only a 64-bit pixel store. */
326: if ((upper_6bits == 15) && size != 8)
327: {
328: sprintf (buf, ".long\t%#08x", insn);
329: return;
330: }
331:
332: /* Bit 26 determines the addressing mode (reg+reg or disp+reg). */
333: if (insn & 0x04000000)
334: {
335: /* Chop off lower bits of displacement. */
336: immsrc1 &= ~(size - 1);
337: if (is_load)
338: sprintf(buf, " %s%s%s\t%d(%%r%d)%s,%%f%d", piped_suff[piped], mnemonic,
339: suffix[idx], immsrc1, get_isrc2 (insn), auto_suff[auto_inc],
340: get_fdest (insn));
341: else
342: sprintf(buf, " %s%s\t%%f%d,%d(%%r%d)%s", mnemonic, suffix[idx],
343: get_fdest (insn), immsrc1, get_isrc2 (insn), auto_suff[auto_inc]);
344: }
345: else
346: {
347: if (is_load)
348: sprintf(buf, " %s%s%s\t%%r%d(%%r%d)%s,%%f%d", piped_suff[piped],
349: mnemonic, suffix[idx], get_isrc1 (insn), get_isrc2 (insn),
350: auto_suff[auto_inc], get_fdest (insn));
351: else
352: sprintf(buf, " %s%s\t%%f%d,%%r%d(%%r%d)%s", mnemonic, suffix[idx],
353: get_fdest (insn), get_isrc1 (insn), get_isrc2 (insn),
354: auto_suff[auto_inc]);
355: }
356: }
357:
358:
359: /* flush #const(isrc2)[++]. */
360: static void int_flush(char *buf, char *mnemonic, UINT32 pc, UINT32 insn)
361: {
362: const char *const auto_suff[2] = { "", "++" };
363: INT32 immsrc = sign_ext (get_imm16 (insn), 16);
364: immsrc &= ~(16-1);
365: sprintf(buf, " %s\t%d(%%r%d)%s", mnemonic, immsrc, get_isrc2 (insn),
366: auto_suff[(insn & 1)]);
367: }
368:
369:
370: /* Flags for the decode table. */
371: enum
372: {
373: DEC_MORE = 1, /* More decoding necessary. */
374: DEC_DECODED = 2 /* Fully decoded, go. */
375: };
376:
377:
378: struct decode_tbl_t
379: {
380: /* Disassembly function for this opcode.
381: Call with buffer, mnemonic, pc, insn. */
382: void (*insn_dis)(char *, char *, UINT32, UINT32);
383:
384: /* Flags for this opcode. */
385: char flags;
386:
387: /* Mnemonic of this opcode (sometimes partial when more decode is
388: done in disassembly routines-- e.g., loads and stores). */
389: const char *mnemonic;
390: };
391:
392:
393: /* First-level decode table (i.e., for the 6 primary opcode bits). */
394: static const decode_tbl_t decode_tbl[64] =
395: {
396: /* A slight bit of decoding for loads and stores is done in the
397: execution routines (operand size and addressing mode), which
398: is why their respective entries are identical. */
399: { int_ldx, DEC_DECODED, "ld." }, /* ld.b isrc1(isrc2),idest. */
400: { int_ldx, DEC_DECODED, "ld." }, /* ld.b #const(isrc2),idest. */
401: { int_1d, DEC_DECODED, "ixfr" }, /* ixfr isrc1ni,fdest. */
402: { int_stx, DEC_DECODED, "st." }, /* st.b isrc1ni,#const(isrc2). */
403: { int_ldx, DEC_DECODED, "ld." }, /* ld.{s,l} isrc1(isrc2),idest. */
404: { int_ldx, DEC_DECODED, "ld." }, /* ld.{s,l} #const(isrc2),idest. */
405: { 0, 0 , 0 },
406: { int_stx, DEC_DECODED, "st." }, /* st.{s,l} isrc1ni,#const(isrc2),idest.*/
407: { int_fldst, DEC_DECODED, "fld." }, /* fld.{l,d,q} isrc1(isrc2)[++],fdest. */
408: { int_fldst, DEC_DECODED, "fld." }, /* fld.{l,d,q} #const(isrc2)[++],fdest. */
409: { int_fldst, DEC_DECODED, "fst." }, /* fst.{l,d,q} fdest,isrc1(isrc2)[++] */
410: { int_fldst, DEC_DECODED, "fst." }, /* fst.{l,d,q} fdest,#const(isrc2)[++] */
411: { int_cd, DEC_DECODED, "ld.c" }, /* ld.c csrc2,idest. */
412: { int_flush, DEC_DECODED, "flush" }, /* flush #const(isrc2) (or autoinc). */
413: { int_1c, DEC_DECODED, "st.c" }, /* st.c isrc1,csrc2. */
414: { int_fldst, DEC_DECODED, "pstd." }, /* pst.d fdest,#const(isrc2)[++]. */
415: { int_1, DEC_DECODED, "bri" }, /* bri isrc1ni. */
416: { int_12d, DEC_DECODED, "trap" }, /* trap isrc1ni,isrc2,idest. */
417: { 0, DEC_MORE, 0 }, /* FP ESCAPE FORMAT, more decode. */
418: { 0, DEC_MORE, 0 }, /* CORE ESCAPE FORMAT, more decode. */
419: { int_12S, DEC_DECODED, "btne" }, /* btne isrc1,isrc2,sbroff. */
420: { int_i2S, DEC_DECODED, "btne" }, /* btne #const,isrc2,sbroff. */
421: { int_12S, DEC_DECODED, "bte" }, /* bte isrc1,isrc2,sbroff. */
422: { int_i2S, DEC_DECODED, "bte" }, /* bte #const5,isrc2,idest. */
423: { int_fldst, DEC_DECODED, "pfld." }, /* pfld.{l,d,q} isrc1(isrc2)[++],fdest. */
424: { int_fldst, DEC_DECODED, "pfld." }, /* pfld.{l,d,q} #const(isrc2)[++],fdest.*/
425: { int_L, DEC_DECODED, "br" }, /* br lbroff. */
426: { int_L, DEC_DECODED, "call" }, /* call lbroff . */
427: { int_L, DEC_DECODED, "bc" }, /* bc lbroff. */
428: { int_L, DEC_DECODED, "bc.t" }, /* bc.t lbroff. */
429: { int_L, DEC_DECODED, "bnc" }, /* bnc lbroff. */
430: { int_L, DEC_DECODED, "bnc.t" }, /* bnc.t lbroff. */
431: { int_12d, DEC_DECODED, "addu" }, /* addu isrc1,isrc2,idest. */
432: { int_i2d, DEC_DECODED, "addu" }, /* addu #const,isrc2,idest. */
433: { int_12d, DEC_DECODED, "subu" }, /* subu isrc1,isrc2,idest. */
434: { int_i2d, DEC_DECODED, "subu" }, /* subu #const,isrc2,idest. */
435: { int_12d, DEC_DECODED, "adds" }, /* adds isrc1,isrc2,idest. */
436: { int_i2d, DEC_DECODED, "adds" }, /* adds #const,isrc2,idest. */
437: { int_12d, DEC_DECODED, "subs" }, /* subs isrc1,isrc2,idest. */
438: { int_i2d, DEC_DECODED, "subs" }, /* subs #const,isrc2,idest. */
439: { int_12d, DEC_DECODED, "shl" }, /* shl isrc1,isrc2,idest. */
440: { int_i2d, DEC_DECODED, "shl" }, /* shl #const,isrc2,idest. */
441: { int_12d, DEC_DECODED, "shr" }, /* shr isrc1,isrc2,idest. */
442: { int_i2d, DEC_DECODED, "shr" }, /* shr #const,isrc2,idest. */
443: { int_12d, DEC_DECODED, "shrd" }, /* shrd isrc1ni,isrc2,idest. */
444: { int_12S, DEC_DECODED, "bla" }, /* bla isrc1ni,isrc2,sbroff. */
445: { int_12d, DEC_DECODED, "shra" }, /* shra isrc1,isrc2,idest. */
446: { int_i2d, DEC_DECODED, "shra" }, /* shra #const,isrc2,idest. */
447: { int_12d, DEC_DECODED, "and" }, /* and isrc1,isrc2,idest. */
448: { int_i2d, DEC_DECODED, "and" }, /* and #const,isrc2,idest. */
449: { 0, 0 , 0 },
450: { int_i2d, DEC_DECODED, "andh" }, /* andh #const,isrc2,idest. */
451: { int_12d, DEC_DECODED, "andnot" }, /* andnot isrc1,isrc2,idest. */
452: { int_i2d, DEC_DECODED, "andnot" }, /* andnot #const,isrc2,idest. */
453: { 0, 0 , 0 },
454: { int_i2d, DEC_DECODED, "andnoth" }, /* andnoth #const,isrc2,idest.*/
455: { int_12d, DEC_DECODED, "or" }, /* or isrc1,isrc2,idest. */
456: { int_i2d, DEC_DECODED, "or" }, /* or #const,isrc2,idest. */
457: { 0, 0 , 0 },
458: { int_i2d, DEC_DECODED, "orh" }, /* orh #const,isrc2,idest. */
459: { int_12d, DEC_DECODED, "xor" }, /* xor isrc1,isrc2,idest. */
460: { int_i2d, DEC_DECODED, "xor" }, /* xor #const,isrc2,idest. */
461: { 0, 0 , 0 },
462: { int_i2d, DEC_DECODED, "xorh" }, /* xorh #const,isrc2,idest. */
463: };
464:
465:
466: /* Second-level decode table (i.e., for the 3 core escape opcode bits). */
467: static const decode_tbl_t core_esc_decode_tbl[8] =
468: {
469: { 0, 0 , 0 },
470: { int_0, DEC_DECODED, "lock" }, /* lock. */
471: { int_1, DEC_DECODED, "calli" }, /* calli isrc1ni. */
472: { 0, 0 , 0 },
473: { int_0, DEC_DECODED, "intovr" }, /* intovr. */
474: { 0, 0 , 0 },
475: { 0, 0 , 0 },
476: { int_0, DEC_DECODED, "unlock" }, /* unlock. */
477: };
478:
479:
480: /* Second-level decode table (i.e., for the 7 FP extended opcode bits). */
481: static const decode_tbl_t fp_decode_tbl[128] =
482: {
483: /* Floating point instructions. The least significant 7 bits are
484: the (extended) opcode and bits 10:7 are P,D,S,R respectively
485: ([p]ipelined, [d]ual, [s]ource prec., [r]esult prec.).
486: For some operations, I defer decoding the P,S,R bits to the
487: emulation routine for them. */
488: { flop_12d, DEC_DECODED, "r2p1." }, /* 0x00 pf[m]am */
489: { flop_12d, DEC_DECODED, "r2pt." }, /* 0x01 pf[m]am */
490: { flop_12d, DEC_DECODED, "r2ap1." }, /* 0x02 pf[m]am */
491: { flop_12d, DEC_DECODED, "r2apt." }, /* 0x03 pf[m]am */
492: { flop_12d, DEC_DECODED, "i2p1." }, /* 0x04 pf[m]am */
493: { flop_12d, DEC_DECODED, "i2pt." }, /* 0x05 pf[m]am */
494: { flop_12d, DEC_DECODED, "i2ap1." }, /* 0x06 pf[m]am */
495: { flop_12d, DEC_DECODED, "i2apt." }, /* 0x07 pf[m]am */
496: { flop_12d, DEC_DECODED, "rat1p2." }, /* 0x08 pf[m]am */
497: { flop_12d, DEC_DECODED, "m12apm." }, /* 0x09 pf[m]am */
498: { flop_12d, DEC_DECODED, "ra1p2." }, /* 0x0A pf[m]am */
499: { flop_12d, DEC_DECODED, "m12ttpa." }, /* 0x0B pf[m]am */
500: { flop_12d, DEC_DECODED, "iat1p2." }, /* 0x0C pf[m]am */
501: { flop_12d, DEC_DECODED, "m12tpm." }, /* 0x0D pf[m]am */
502: { flop_12d, DEC_DECODED, "ia1p2." }, /* 0x0E pf[m]am */
503: { flop_12d, DEC_DECODED, "m12tpa." }, /* 0x0F pf[m]am */
504: { flop_12d, DEC_DECODED, "r2s1." }, /* 0x10 pf[m]sm */
505: { flop_12d, DEC_DECODED, "r2st." }, /* 0x11 pf[m]sm */
506: { flop_12d, DEC_DECODED, "r2as1." }, /* 0x12 pf[m]sm */
507: { flop_12d, DEC_DECODED, "r2ast." }, /* 0x13 pf[m]sm */
508: { flop_12d, DEC_DECODED, "i2s1." }, /* 0x14 pf[m]sm */
509: { flop_12d, DEC_DECODED, "i2st." }, /* 0x15 pf[m]sm */
510: { flop_12d, DEC_DECODED, "i2as1." }, /* 0x16 pf[m]sm */
511: { flop_12d, DEC_DECODED, "i2ast." }, /* 0x17 pf[m]sm */
512: { flop_12d, DEC_DECODED, "rat1s2." }, /* 0x18 pf[m]sm */
513: { flop_12d, DEC_DECODED, "m12asm." }, /* 0x19 pf[m]sm */
514: { flop_12d, DEC_DECODED, "ra1s2." }, /* 0x1A pf[m]sm */
515: { flop_12d, DEC_DECODED, "m12ttsa." }, /* 0x1B pf[m]sm */
516: { flop_12d, DEC_DECODED, "iat1s2." }, /* 0x1C pf[m]sm */
517: { flop_12d, DEC_DECODED, "m12tsm." }, /* 0x1D pf[m]sm */
518: { flop_12d, DEC_DECODED, "ia1s2." }, /* 0x1E pf[m]sm */
519: { flop_12d, DEC_DECODED, "m12tsa." }, /* 0x1F pf[m]sm */
520: { flop_12d, DEC_DECODED, "fmul." }, /* 0x20 [p]fmul */
521: { flop_12d, DEC_DECODED, "fmlow." }, /* 0x21 fmlow.dd */
522: { flop_2d, DEC_DECODED, "frcp." }, /* 0x22 frcp.{ss,sd,dd} */
523: { flop_2d, DEC_DECODED, "frsqr." }, /* 0x23 frsqr.{ss,sd,dd} */
524: { flop_12d, DEC_DECODED, "pfmul3.dd" }, /* 0x24 pfmul3.dd */
525: { 0, 0 , 0 }, /* 0x25 */
526: { 0, 0 , 0 }, /* 0x26 */
527: { 0, 0 , 0 }, /* 0x27 */
528: { 0, 0 , 0 }, /* 0x28 */
529: { 0, 0 , 0 }, /* 0x29 */
530: { 0, 0 , 0 }, /* 0x2A */
531: { 0, 0 , 0 }, /* 0x2B */
532: { 0, 0 , 0 }, /* 0x2C */
533: { 0, 0 , 0 }, /* 0x2D */
534: { 0, 0 , 0 }, /* 0x2E */
535: { 0, 0 , 0 }, /* 0x2F */
536: { flop_12d, DEC_DECODED, "fadd." }, /* 0x30, [p]fadd.{ss,sd,dd} */
537: { flop_12d, DEC_DECODED, "fsub." }, /* 0x31, [p]fsub.{ss,sd,dd} */
538: { flop_1d, DEC_DECODED, "fix." }, /* 0x32, [p]fix.{ss,sd,dd} */
539: { flop_1d, DEC_DECODED, "famov." }, /* 0x33, [p]famov.{ss,sd,ds,dd} */
540: { flop_12d, DEC_DECODED, "f{gt,le}" }, /* 0x34, pf{gt,le}.{ss,dd} */
541: { flop_12d, DEC_DECODED, "feq." }, /* 0x35, pfeq.{ss,dd} */
542: { 0, 0 , 0 }, /* 0x36 */
543: { 0, 0 , 0 }, /* 0x37 */
544: { 0, 0 , 0 }, /* 0x38 */
545: { 0, 0 , 0 }, /* 0x39 */
546: { flop_1d, DEC_DECODED, "ftrunc." }, /* 0x3A, [p]ftrunc.{ss,sd,dd} */
547: { 0, 0 , 0 }, /* 0x3B */
548: { 0, 0 , 0 }, /* 0x3C */
549: { 0, 0 , 0 }, /* 0x3D */
550: { 0, 0 , 0 }, /* 0x3E */
551: { 0, 0 , 0 }, /* 0x3F */
552: { flop_fxfr, DEC_DECODED, "fxfr" }, /* 0x40, fxfr fsrc1,idest. */
553: { 0, 0 , 0 }, /* 0x41 */
554: { 0, 0 , 0 }, /* 0x42 */
555: { 0, 0 , 0 }, /* 0x43 */
556: { 0, 0 , 0 }, /* 0x44 */
557: { 0, 0 , 0 }, /* 0x45 */
558: { 0, 0 , 0 }, /* 0x46 */
559: { 0, 0 , 0 }, /* 0x47 */
560: { 0, 0 , 0 }, /* 0x48 */
561: { flop_12d, DEC_DECODED, "fiadd." }, /* 0x49, [p]fiadd.{ss,dd} */
562: { 0, 0 , 0 }, /* 0x4A */
563: { 0, 0 , 0 }, /* 0x4B */
564: { 0, 0 , 0 }, /* 0x4C */
565: { flop_12d, DEC_DECODED, "fisub." }, /* 0x4D, [p]fisub.{ss,dd} */
566: { 0, 0 , 0 }, /* 0x4E */
567: { 0, 0 , 0 }, /* 0x4F */
568: { flop_12d, DEC_DECODED, "faddp" }, /* 0x50, [p]faddp */
569: { flop_12d, DEC_DECODED, "faddz" }, /* 0x51, [p]faddz */
570: { 0, 0 , 0 }, /* 0x52 */
571: { 0, 0 , 0 }, /* 0x53 */
572: { 0, 0 , 0 }, /* 0x54 */
573: { 0, 0 , 0 }, /* 0x55 */
574: { 0, 0 , 0 }, /* 0x56 */
575: { flop_12d, DEC_DECODED, "fzchkl" }, /* 0x57, [p]fzchkl */
576: { 0, 0 , 0 }, /* 0x58 */
577: { 0, 0 , 0 }, /* 0x59 */
578: { flop_1d, DEC_DECODED, "form" }, /* 0x5A, [p]form.dd */
579: { 0, 0 , 0 }, /* 0x5B */
580: { 0, 0 , 0 }, /* 0x5C */
581: { 0, 0 , 0 }, /* 0x5D */
582: { 0, 0 , 0 }, /* 0x5E */
583: { flop_12d, DEC_DECODED, "fzchks" }, /* 0x5F, [p]fzchks */
584: { 0, 0 , 0 }, /* 0x60 */
585: { 0, 0 , 0 }, /* 0x61 */
586: { 0, 0 , 0 }, /* 0x62 */
587: { 0, 0 , 0 }, /* 0x63 */
588: { 0, 0 , 0 }, /* 0x64 */
589: { 0, 0 , 0 }, /* 0x65 */
590: { 0, 0 , 0 }, /* 0x66 */
591: { 0, 0 , 0 }, /* 0x67 */
592: { 0, 0 , 0 }, /* 0x68 */
593: { 0, 0 , 0 }, /* 0x69 */
594: { 0, 0 , 0 }, /* 0x6A */
595: { 0, 0 , 0 }, /* 0x6B */
596: { 0, 0 , 0 }, /* 0x6C */
597: { 0, 0 , 0 }, /* 0x6D */
598: { 0, 0 , 0 }, /* 0x6E */
599: { 0, 0 , 0 }, /* 0x6F */
600: { 0, 0 , 0 }, /* 0x70 */
601: { 0, 0 , 0 }, /* 0x71 */
602: { 0, 0 , 0 }, /* 0x72 */
603: { 0, 0 , 0 }, /* 0x73 */
604: { 0, 0 , 0 }, /* 0x74 */
605: { 0, 0 , 0 }, /* 0x75 */
606: { 0, 0 , 0 }, /* 0x76 */
607: { 0, 0 , 0 }, /* 0x77 */
608: { 0, 0 , 0 }, /* 0x78 */
609: { 0, 0 , 0 }, /* 0x79 */
610: { 0, 0 , 0 }, /* 0x7A */
611: { 0, 0 , 0 }, /* 0x7B */
612: { 0, 0 , 0 }, /* 0x7C */
613: { 0, 0 , 0 }, /* 0x7D */
614: { 0, 0 , 0 }, /* 0x7E */
615: { 0, 0 , 0 }, /* 0x7F */
616: };
617:
618:
619: /* Replaces tabs with spaces. */
620: static void i860_dasm_tab_replacer(char* buf, int tab_size)
621: {
622: int i = 0;
623: int tab_count = 0;
624: char tab_buf[1024];
625: memset(tab_buf, 0, 1024);
626:
627: while (i != strlen(buf))
628: {
629: if (buf[i] != '\t')
630: {
631: tab_buf[tab_count] = buf[i];
632: tab_count++;
633: }
634: else
635: {
636: while (tab_count % tab_size != 0)
637: {
638: strcat(tab_buf, " ");
639: tab_count++;
640: }
641: }
642: i++;
643: }
644:
645: tab_buf[tab_count] = 0x00;
646: strcpy(buf, tab_buf);
647: }
648:
649:
650: int i860_disassembler(UINT32 pc, UINT32 insn, char* buffer) {
651: int unrecognized_op = 1;
652:
653: int upper_6bits = (insn >> 26) & 0x3f;
654: char flags = decode_tbl[upper_6bits].flags;
655: if(insn == INSN_NOP) {
656: strcpy(buffer, " nop");
657: unrecognized_op = 0;
658: } else if(insn == INSN_FNOP) {
659: strcpy(buffer, " fnop");
660: unrecognized_op = 0;
661: } else if(insn == INSN_FNOP_DIM) {
662: strcpy(buffer, "d.fnop");
663: unrecognized_op = 0;
664: } else if (flags & DEC_DECODED) {
665: const char *s = decode_tbl[upper_6bits].mnemonic;
666: decode_tbl[upper_6bits].insn_dis (buffer, (char *)s, pc, insn);
667: unrecognized_op = 0;
668: } else if (flags & DEC_MORE) {
669: if (upper_6bits == 0x12) {
670: /* FP instruction format handled here. */
671: char fp_flags = fp_decode_tbl[insn & 0x7f].flags;
672: const char *s = fp_decode_tbl[insn & 0x7f].mnemonic;
673: if (fp_flags & DEC_DECODED) {
674: fp_decode_tbl[insn & 0x7f].insn_dis (buffer, (char *)s, pc, insn);
675: unrecognized_op = 0;
676: }
677: }
678: else if (upper_6bits == 0x13) {
679: /* Core escape instruction format handled here. */
680: char esc_flags = core_esc_decode_tbl[insn & 0x3].flags;
681: const char *s = core_esc_decode_tbl[insn & 0x3].mnemonic;
682: if (esc_flags & DEC_DECODED)
683: {
684: core_esc_decode_tbl[insn & 0x3].insn_dis (buffer, (char *)s, pc, insn);
685: unrecognized_op = 0;
686: }
687: }
688: }
689:
690: if (unrecognized_op)
691: sprintf (buffer, " .long\t%#08x", insn);
692:
693: /* Replace tabs with spaces */
694: i860_dasm_tab_replacer(buffer, 10);
695:
696: /* Return number of bytes disassembled. */
697: /* MAME dasm flags haven't been added yet */
698: return (4);
699: }
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