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fpu_calcea.c revision 1.1
      1 /*	$NetBSD: fpu_calcea.c,v 1.1 1995/11/03 04:47:01 briggs Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 1995 Gordon W. Ross
      5  * portion Copyright (c) 1995 Ken Nakata
      6  * All rights reserved.
      7  *
      8  * Redistribution and use in source and binary forms, with or without
      9  * modification, are permitted provided that the following conditions
     10  * are met:
     11  * 1. Redistributions of source code must retain the above copyright
     12  *    notice, this list of conditions and the following disclaimer.
     13  * 2. Redistributions in binary form must reproduce the above copyright
     14  *    notice, this list of conditions and the following disclaimer in the
     15  *    documentation and/or other materials provided with the distribution.
     16  * 3. The name of the author may not be used to endorse or promote products
     17  *    derived from this software without specific prior written permission.
     18  * 4. All advertising materials mentioning features or use of this software
     19  *    must display the following acknowledgement:
     20  *      This product includes software developed by Gordon Ross
     21  *
     22  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     23  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     24  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     25  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     26  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     27  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     28  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     29  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     30  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     31  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     32  */
     33 
     34 #include <stddef.h>
     35 #include <sys/types.h>
     36 #include <sys/signal.h>
     37 #include <machine/frame.h>
     38 
     39 #include "fpu_emulate.h"
     40 
     41 /*
     42  * Prototypes of static functions
     43  */
     44 static int decode_ea6 __P((struct frame *frame, struct instruction *insn,
     45 			   struct insn_ea *ea, int modreg));
     46 static int fetch_immed __P((struct frame *frame, struct instruction *insn,
     47 			    int *dst));
     48 static int fetch_disp __P((struct frame *frame, struct instruction *insn,
     49 			   int size, int *res));
     50 static int calc_ea __P((struct insn_ea *ea, char *ptr, char **eaddr));
     51 
     52 /*
     53  * Helper routines for dealing with "effective address" values.
     54  */
     55 
     56 /*
     57  * Decode an effective address into internal form.
     58  * Returns zero on success, else signal number.
     59  */
     60 int
     61 fpu_decode_ea(frame, insn, ea, modreg)
     62      struct frame *frame;
     63      struct instruction *insn;
     64      struct insn_ea *ea;
     65      int modreg;
     66 {
     67     int data, sig;
     68 
     69 #ifdef DEBUG
     70     if (insn->is_datasize < 0) {
     71 	panic("decode_ea: called with uninitialized datasize\n");
     72     }
     73 #endif
     74 
     75     sig = 0;
     76 
     77     /* Set the most common value here. */
     78     ea->ea_regnum = 8 + (modreg & 7);
     79 
     80     switch (modreg & 070) {
     81     case 0:			/* Dn */
     82 	ea->ea_regnum &= 7;
     83     case 010:			/* An */
     84 	ea->ea_flags = EA_DIRECT;
     85 	if (debug_level & DL_DECODEEA) {
     86 	    printf("  decode_ea: register direct reg=%d\n", ea->ea_regnum);
     87 	}
     88 	break;
     89 
     90     case 020:			/* (An) */
     91 	ea->ea_flags = 0;
     92 	if (debug_level & DL_DECODEEA) {
     93 	    printf("  decode_ea: register indirect reg=%d\n", ea->ea_regnum);
     94 	}
     95 	break;
     96 
     97     case 030:			/* (An)+ */
     98 	ea->ea_flags = EA_POSTINCR;
     99 	if (debug_level & DL_DECODEEA) {
    100 	    printf("  decode_ea: reg indirect postincrement reg=%d\n",
    101 		   ea->ea_regnum);
    102 	}
    103 	break;
    104 
    105     case 040:			/* -(An) */
    106 	ea->ea_flags = EA_PREDECR;
    107 	if (debug_level & DL_DECODEEA) {
    108 	    printf("  decode_ea: reg indirect predecrement reg=%d\n",
    109 		   ea->ea_regnum);
    110 	}
    111 	break;
    112 
    113     case 050:			/* (d16,An) */
    114 	ea->ea_flags = EA_OFFSET;
    115 	sig = fetch_disp(frame, insn, 1, &ea->ea_offset);
    116 	if (debug_level & DL_DECODEEA) {
    117 	    printf("  decode_ea: reg indirect with displacement reg=%d\n",
    118 		   ea->ea_regnum);
    119 	}
    120 	break;
    121 
    122     case 060:			/* (d8,An,Xn) */
    123 	ea->ea_flags = EA_INDEXED;
    124 	sig = decode_ea6(frame, insn, ea, modreg);
    125 	break;
    126 
    127     case 070:			/* misc. */
    128 	ea->ea_regnum = (modreg & 7);
    129 	switch (modreg & 7) {
    130 
    131 	case 0:			/* (xxxx).W */
    132 	    ea->ea_flags = EA_ABS;
    133 	    sig = fetch_disp(frame, insn, 1, &ea->ea_absaddr);
    134 	    if (debug_level & DL_DECODEEA) {
    135 		printf("  decode_ea: absolute address (word)\n");
    136 	    }
    137 	    break;
    138 
    139 	case 1:			/* (xxxxxxxx).L */
    140 	    ea->ea_flags = EA_ABS;
    141 	    sig = fetch_disp(frame, insn, 2, &ea->ea_absaddr);
    142 	    if (debug_level & DL_DECODEEA) {
    143 		printf("  decode_ea: absolute address (long)\n");
    144 	    }
    145 	    break;
    146 
    147 	case 2:			/* (d16,PC) */
    148 	    ea->ea_flags = EA_PC_REL | EA_OFFSET;
    149 	    sig = fetch_disp(frame, insn, 1, &ea->ea_absaddr);
    150 	    if (debug_level & DL_DECODEEA) {
    151 		printf("  decode_ea: pc relative word displacement\n");
    152 	    }
    153 	    break;
    154 
    155 	case 3:			/* (d8,PC,Xn) */
    156 	    ea->ea_flags = EA_PC_REL | EA_INDEXED;
    157 	    sig = decode_ea6(frame, insn, ea, modreg);
    158 	    break;
    159 
    160 	case 4:			/* #data */
    161 	    ea->ea_flags = EA_IMMED;
    162 	    sig = fetch_immed(frame, insn, &ea->ea_immed[0]);
    163 	    if (debug_level & DL_DECODEEA) {
    164 		printf("  decode_ea: immediate size=%d\n", insn->is_datasize);
    165 	    }
    166 	    break;
    167 
    168 	default:
    169 	    if (debug_level & DL_DECODEEA) {
    170 		printf("  decode_ea: invalid addr mode (7,%d)\n", modreg & 7);
    171 	    }
    172 	    return SIGILL;
    173 	} /* switch for mode 7 */
    174 	break;
    175     } /* switch mode */
    176 
    177     ea->ea_tdisp = 0;
    178 
    179     return sig;
    180 }
    181 
    182 /*
    183  * Decode Mode=6 address modes
    184  */
    185 static int
    186 decode_ea6(frame, insn, ea, modreg)
    187      struct frame *frame;
    188      struct instruction *insn;
    189      struct insn_ea *ea;
    190      int modreg;
    191 {
    192     int word, extword, idx;
    193     int basedisp, outerdisp;
    194     int bd_size, od_size;
    195     int sig;
    196 
    197     extword = fusword(frame->f_pc + insn->is_advance);
    198     if (extword < 0) {
    199 	return SIGSEGV;
    200     }
    201     insn->is_advance += 2;
    202 
    203     /* get register index */
    204     ea->ea_idxreg = (extword >> 12) & 0xf;
    205     idx = frame->f_regs[ea->ea_idxreg];
    206     if ((extword & 0x0800) == 0) {
    207 	/* if word sized index, sign-extend */
    208 	idx &= 0xffff;
    209 	if (idx & 0x8000) {
    210 	    idx |= 0xffff0000;
    211 	}
    212     }
    213     /* scale register index */
    214     idx <<= ((extword >>9) & 3);
    215 
    216     if ((extword & 0x100) == 0) {
    217 	/* brief extention word - sign-extend the displacement */
    218 	basedisp = (extword & 0xff);
    219 	if (basedisp & 0x80) {
    220 	    basedisp |= 0xffffff00;
    221 	}
    222 
    223 	ea->ea_basedisp = idx + basedisp;
    224 	ea->ea_outerdisp = 0;
    225 	if (debug_level & DL_DECODEEA) {
    226 	    printf("  decode_ea6: brief ext word idxreg=%d, basedisp=%08x\n",
    227 		   ea->ea_idxreg, ea->ea_basedisp);
    228 	}
    229     } else {
    230 	/* full extention word */
    231 	if (extword & 0x80) {
    232 	    ea->ea_flags |= EA_BASE_SUPPRSS;
    233 	}
    234 	bd_size = ((extword >> 4) & 3) - 1;
    235 	od_size = (extword & 3) - 1;
    236 	sig = fetch_disp(frame, insn, bd_size, &basedisp);
    237 	if (sig) {
    238 	    return sig;
    239 	}
    240 	if (od_size >= 0) {
    241 	    ea->ea_flags |= EA_MEM_INDIR;
    242 	}
    243 	sig = fetch_disp(frame, insn, od_size, &outerdisp);
    244 	if (sig) {
    245 	    return sig;
    246 	}
    247 
    248 	switch (extword & 0x44) {
    249 	case 0:			/* preindexed */
    250 	    ea->ea_basedisp = basedisp + idx;
    251 	    ea->ea_outerdisp = outerdisp;
    252 	    break;
    253 	case 4:			/* postindexed */
    254 	    ea->ea_basedisp = basedisp;
    255 	    ea->ea_outerdisp = outerdisp + idx;
    256 	    break;
    257 	case 0x40:		/* no index */
    258 	    ea->ea_basedisp = basedisp;
    259 	    ea->ea_outerdisp = outerdisp;
    260 	    break;
    261 	default:
    262 #ifdef DEBUG
    263 	    printf("  decode_ea6: invalid indirect mode: ext word %04x\n",
    264 		   extword);
    265 #endif
    266 	    return SIGILL;
    267 	    break;
    268 	}
    269 	if (debug_level & DL_DECODEEA) {
    270 	    printf("  decode_ea6: full ext idxreg=%d, basedisp=%x, outerdisp=%x\n",
    271 		   ea->ea_idxreg, ea->ea_basedisp, ea->ea_outerdisp);
    272 	}
    273     }
    274     if (debug_level & DL_DECODEEA) {
    275 	printf("  decode_ea6: regnum=%d, flags=%x\n",
    276 	       ea->ea_regnum, ea->ea_flags);
    277     }
    278     return 0;
    279 }
    280 
    281 /*
    282  * Load a value from an effective address.
    283  * Returns zero on success, else signal number.
    284  */
    285 int
    286 fpu_load_ea(frame, insn, ea, dst)
    287      struct frame *frame;
    288      struct instruction *insn;
    289      struct insn_ea *ea;
    290      char *dst;
    291 {
    292     int *reg;
    293     char *src;
    294     int len, step;
    295     int data, word, sig;
    296 
    297 #ifdef	DIAGNOSTIC
    298     if (ea->ea_regnum & ~0xF) {
    299 	panic("  load_ea: bad regnum");
    300     }
    301 #endif
    302 
    303     if (debug_level & DL_LOADEA) {
    304 	printf("  load_ea: frame at %08x\n", frame);
    305     }
    306     /* The dst is always int or larger. */
    307     len = insn->is_datasize;
    308     if (len < 4) {
    309 	dst += (4 - len);
    310     }
    311     step = (len == 1 && ea->ea_regnum == 15 /* sp */) ? 2 : len;
    312 
    313     if (ea->ea_flags & EA_DIRECT) {
    314 	if (len > 4) {
    315 #ifdef DEBUG
    316 	    printf("  load_ea: operand doesn't fit cpu reg\n");
    317 #endif
    318 	    return SIGILL;
    319 	}
    320 	if (ea->ea_tdisp > 0) {
    321 #ifdef DEBUG
    322 	    printf("  load_ea: more than one move from cpu reg\n");
    323 #endif
    324 	    return SIGILL;
    325 	}
    326 	src = (char *)&frame->f_regs[ea->ea_regnum];
    327 	/* The source is an int. */
    328 	if (len < 4) {
    329 	    src += (4 - len);
    330 	    if (debug_level & DL_LOADEA) {
    331 		printf("  load_ea: short/byte opr - addr adjusted\n");
    332 	    }
    333 	}
    334 	if (debug_level & DL_LOADEA) {
    335 	    printf("  load_ea: src 0x%08x\n", src);
    336 	}
    337 	bcopy(src, dst, len);
    338     } else if (ea->ea_flags & EA_IMMED) {
    339 	if (debug_level & DL_LOADEA) {
    340 	    printf("  load_ea: immed %08x%08x%08x size %d\n",
    341 		   ea->ea_immed[0], ea->ea_immed[1], ea->ea_immed[2], len);
    342 	}
    343 	src = (char *)&ea->ea_immed[0];
    344 	if (len < 4) {
    345 	    src += (4 - len);
    346 	    if (debug_level & DL_LOADEA) {
    347 		printf("  load_ea: short/byte immed opr - addr adjusted\n");
    348 	    }
    349 	}
    350 	bcopy(src, dst, len);
    351     } else if (ea->ea_flags & EA_ABS) {
    352 	if (debug_level & DL_LOADEA) {
    353 	    printf("  load_ea: abs addr %08x\n", ea->ea_absaddr);
    354 	}
    355 	src = (char *)ea->ea_absaddr;
    356 	copyin(src, dst, len);
    357     } else /* register indirect */ {
    358 	if (ea->ea_flags & EA_PC_REL) {
    359 	    if (debug_level & DL_LOADEA) {
    360 		printf("  load_ea: using PC\n");
    361 	    }
    362 	    reg = NULL;
    363 	    /* Grab the register contents. 4 is offset to the first
    364 	       extention word from the opcode */
    365 	    src = (char *)frame->f_pc + 4;
    366 	    if (debug_level & DL_LOADEA) {
    367 		printf("  load_ea: pc relative pc+4 = 0x%08x\n", src);
    368 	    }
    369 	} else /* not PC relative */ {
    370 	    if (debug_level & DL_LOADEA) {
    371 		printf("  load_ea: using register %c%d\n",
    372 		       (ea->ea_regnum >= 8) ? 'a' : 'd', ea->ea_regnum & 7);
    373 	    }
    374 	    /* point to the register */
    375 	    reg = &frame->f_regs[ea->ea_regnum];
    376 
    377 	    if (ea->ea_flags & EA_PREDECR) {
    378 		if (debug_level & DL_LOADEA) {
    379 		    printf("  load_ea: predecr mode - reg decremented\n");
    380 		}
    381 		*reg -= step;
    382 		ea->ea_tdisp = 0;
    383 	    }
    384 
    385 	    /* Grab the register contents. */
    386 	    src = (char *)*reg;
    387 	    if (debug_level & DL_LOADEA) {
    388 		printf("  load_ea: reg indirect reg = 0x%08x\n", src);
    389 	    }
    390 	}
    391 
    392 	sig = calc_ea(ea, src, &src);
    393 	if (sig)
    394 	    return sig;
    395 
    396 	copyin(src + ea->ea_tdisp, dst, len);
    397 
    398 	/* do post-increment */
    399 	if (ea->ea_flags & EA_POSTINCR) {
    400 	    if (ea->ea_flags & EA_PC_REL) {
    401 #ifdef DEBUG
    402 		printf("  load_ea: tried to postincrement PC\n");
    403 #endif
    404 		return SIGILL;
    405 	    }
    406 	    *reg += step;
    407 	    ea->ea_tdisp = 0;
    408 	    if (debug_level & DL_LOADEA) {
    409 		printf("  load_ea: postinc mode - reg incremented\n");
    410 	    }
    411 	} else {
    412 	    ea->ea_tdisp += len;
    413 	}
    414     }
    415 
    416     return 0;
    417 }
    418 
    419 /*
    420  * Store a value at the effective address.
    421  * Returns zero on success, else signal number.
    422  */
    423 int
    424 fpu_store_ea(frame, insn, ea, src)
    425      struct frame *frame;
    426      struct instruction *insn;
    427      struct insn_ea *ea;
    428      char *src;
    429 {
    430     int *reg;
    431     char *dst;
    432     int len, step;
    433     int data, word, sig;
    434 
    435 #ifdef	DIAGNOSTIC
    436     if (ea->ea_regnum & ~0xF) {
    437 	panic("  store_ea: bad regnum");
    438     }
    439 #endif
    440 
    441     if (ea->ea_flags & (EA_IMMED|EA_PC_REL)) {
    442 	/* not alterable address mode */
    443 #ifdef DEBUG
    444 	printf("  store_ea: not alterable address mode\n");
    445 #endif
    446 	return SIGILL;
    447     }
    448 
    449     if (debug_level & DL_STOREEA) {
    450 	printf("  store_ea: frame at %08x\n", frame);
    451     }
    452     /* The src is always int or larger. */
    453     len = insn->is_datasize;
    454     if (len < 4) {
    455 	src += (4 - len);
    456     }
    457     step = (len == 1 && ea->ea_regnum == 15 /* sp */) ? 2 : len;
    458 
    459     if (ea->ea_flags & EA_ABS) {
    460 	if (debug_level & DL_STOREEA) {
    461 	    printf("  store_ea: abs addr %08x\n", ea->ea_absaddr);
    462 	}
    463 	dst = (char *)ea->ea_absaddr;
    464 	copyout(src, dst + ea->ea_tdisp, len);
    465 	ea->ea_tdisp += len;
    466     } else if (ea->ea_flags & EA_DIRECT) {
    467 	if (len > 4) {
    468 #ifdef DEBUG
    469 	    printf("  store_ea: operand doesn't fit cpu reg\n");
    470 #endif
    471 	    return SIGILL;
    472 	}
    473 	if (ea->ea_tdisp > 0) {
    474 #ifdef DEBUG
    475 	    printf("  store_ea: more than one move to cpu reg\n");
    476 #endif
    477 	    return SIGILL;
    478 	}
    479 	dst = (char*)&frame->f_regs[ea->ea_regnum];
    480 	/* The destination is an int. */
    481 	if (len < 4) {
    482 	    dst += (4 - len);
    483 	    if (debug_level & DL_STOREEA) {
    484 		printf("  store_ea: short/byte opr - dst addr adjusted\n");
    485 	    }
    486 	}
    487 	if (debug_level & DL_STOREEA) {
    488 	    printf("  store_ea: dst 0x%08x\n", dst);
    489 	}
    490 	bcopy(src, dst, len);
    491     } else /* One of MANY indirect forms... */ {
    492 	if (debug_level & DL_STOREEA) {
    493 	    printf("  store_ea: using register %c%d\n",
    494 		   (ea->ea_regnum >= 8) ? 'a' : 'd', ea->ea_regnum & 7);
    495 	}
    496 	/* point to the register */
    497 	reg = &(frame->f_regs[ea->ea_regnum]);
    498 
    499 	/* do pre-decrement */
    500 	if (ea->ea_flags & EA_PREDECR) {
    501 	    if (debug_level & DL_STOREEA) {
    502 		printf("  store_ea: predecr mode - reg decremented\n");
    503 	    }
    504 	    *reg -= step;
    505 	    ea->ea_tdisp = 0;
    506 	}
    507 
    508 	/* calculate the effective address */
    509 	sig = calc_ea(ea, (char *)*reg, &dst);
    510 	if (sig)
    511 	    return sig;
    512 
    513 	if (debug_level & DL_STOREEA) {
    514 	    printf("  store_ea: dst addr=0x%08x+%d\n", dst, ea->ea_tdisp);
    515 	}
    516 	copyout(src, dst + ea->ea_tdisp, len);
    517 
    518 	/* do post-increment */
    519 	if (ea->ea_flags & EA_POSTINCR) {
    520 	    *reg += step;
    521 	    ea->ea_tdisp = 0;
    522 	    if (debug_level & DL_STOREEA) {
    523 		printf("  store_ea: postinc mode - reg incremented\n");
    524 	    }
    525 	} else {
    526 	    ea->ea_tdisp += len;
    527 	}
    528     }
    529 
    530     return 0;
    531 }
    532 
    533 /*
    534  * fetch_immed: fetch immediate operand
    535  */
    536 static int
    537 fetch_immed(frame, insn, dst)
    538      struct frame *frame;
    539      struct instruction *insn;
    540      int *dst;
    541 {
    542     int data, ext_bytes;
    543 
    544     ext_bytes = insn->is_datasize;
    545 
    546     if (0 < ext_bytes) {
    547 	data = fusword(frame->f_pc + insn->is_advance);
    548 	if (data < 0) {
    549 	    return SIGSEGV;
    550 	}
    551 	if (ext_bytes == 1) {
    552 	    /* sign-extend byte to long */
    553 	    data &= 0xff;
    554 	    if (data & 0x80) {
    555 		data |= 0xffffff00;
    556 	    }
    557 	} else if (ext_bytes == 2) {
    558 	    /* sign-extend word to long */
    559 	    data &= 0xffff;
    560 	    if (data & 0x8000) {
    561 		data |= 0xffff0000;
    562 	    }
    563 	}
    564 	insn->is_advance += 2;
    565 	dst[0] = data;
    566     }
    567     if (2 < ext_bytes) {
    568 	data = fusword(frame->f_pc + insn->is_advance);
    569 	if (data < 0) {
    570 	    return SIGSEGV;
    571 	}
    572 	insn->is_advance += 2;
    573 	dst[0] <<= 16;
    574 	dst[0] |= data;
    575     }
    576     if (4 < ext_bytes) {
    577 	data = fusword(frame->f_pc + insn->is_advance);
    578 	if (data < 0) {
    579 	    return SIGSEGV;
    580 	}
    581 	dst[1] = data << 16;
    582 	data = fusword(frame->f_pc + insn->is_advance + 2);
    583 	if (data < 0) {
    584 	    return SIGSEGV;
    585 	}
    586 	insn->is_advance += 4;
    587 	dst[1] |= data;
    588     }
    589     if (8 < ext_bytes) {
    590 	data = fusword(frame->f_pc + insn->is_advance);
    591 	if (data < 0) {
    592 	    return SIGSEGV;
    593 	}
    594 	dst[2] = data << 16;
    595 	data = fusword(frame->f_pc + insn->is_advance + 2);
    596 	if (data < 0) {
    597 	    return SIGSEGV;
    598 	}
    599 	insn->is_advance += 4;
    600 	dst[2] |= data;
    601     }
    602 
    603     return 0;
    604 }
    605 
    606 /*
    607  * fetch_disp: fetch displacement in full extention words
    608  */
    609 static int
    610 fetch_disp(frame, insn, size, res)
    611      struct frame *frame;
    612      struct instruction *insn;
    613      int size, *res;
    614 {
    615     int disp, word;
    616 
    617     if (size == 1) {
    618 	word = fusword(frame->f_pc + insn->is_advance);
    619 	if (word < 0) {
    620 	    return SIGSEGV;
    621 	}
    622 	disp = word & 0xffff;
    623 	if (disp & 0x8000) {
    624 	    /* sign-extend */
    625 	    disp |= 0xffff0000;
    626 	}
    627 	insn->is_advance += 2;
    628     } else if (size == 2) {
    629 	word = fusword(frame->f_pc + insn->is_advance);
    630 	if (word < 0) {
    631 	    return SIGSEGV;
    632 	}
    633 	disp = word << 16;
    634 	word = fusword(frame->f_pc + insn->is_advance + 2);
    635 	if (word < 0) {
    636 	    return SIGSEGV;
    637 	}
    638 	disp |= (word & 0xffff);
    639 	insn->is_advance += 4;
    640     } else {
    641 	disp = 0;
    642     }
    643     *res = disp;
    644     return 0;
    645 }
    646 
    647 /*
    648  * Calculates an effective address for all address modes except for
    649  * register direct, absolute, and immediate modes.  However, it does
    650  * not take care of predecrement/postincrement of register content.
    651  * Returns a signal value (0 == no error).
    652  */
    653 static int
    654 calc_ea(ea, ptr, eaddr)
    655      struct insn_ea *ea;
    656      char *ptr;		/* base address (usually a register content) */
    657      char **eaddr;	/* pointer to result pointer */
    658 {
    659     int data, word, sig;
    660 
    661     if (debug_level & DL_EA) {
    662 	printf("  calc_ea: reg indirect (reg) = 0x%08x\n", ptr);
    663     }
    664 
    665     if (ea->ea_flags & EA_OFFSET) {
    666 	/* apply the signed offset */
    667 	if (debug_level & DL_EA) {
    668 	    printf("  calc_ea: offset %d\n", ea->ea_offset);
    669 	}
    670 	ptr += ea->ea_offset;
    671     } else if (ea->ea_flags & EA_INDEXED) {
    672 	if (debug_level & DL_EA) {
    673 	    printf("  calc_ea: indexed mode\n");
    674 	}
    675 
    676 	if (ea->ea_flags & EA_BASE_SUPPRSS) {
    677 	    /* base register is suppressed */
    678 	    ptr = (char *)ea->ea_basedisp;
    679 	} else {
    680 	    ptr += ea->ea_basedisp;
    681 	}
    682 
    683 	if (ea->ea_flags & EA_MEM_INDIR) {
    684 	    if (debug_level & DL_EA) {
    685 		printf("  calc_ea: mem indir mode: basedisp=%08x, outerdisp=%08x\n",
    686 		       ea->ea_basedisp, ea->ea_outerdisp);
    687 		printf("  calc_ea: addr fetched from 0x%08x\n", ptr);
    688 	    }
    689 	    /* memory indirect modes */
    690 	    word = fusword(ptr);
    691 	    if (word < 0) {
    692 		return SIGSEGV;
    693 	    }
    694 	    word <<= 16;
    695 	    data = fusword(ptr + 2);
    696 	    if (data < 0) {
    697 		return SIGSEGV;
    698 	    }
    699 	    word |= data;
    700 	    if (debug_level & DL_STOREEA) {
    701 		printf(" calc_ea: fetched ptr 0x%08x\n", word);
    702 	    }
    703 	    ptr = (char *)word + ea->ea_outerdisp;
    704 	}
    705     }
    706 
    707     *eaddr = ptr;
    708 
    709     return 0;
    710 }
    711