Annotation of uae/src/newcpu.c, revision 1.1.1.19

1.1.1.3   root        1:  /*
1.1       root        2:   * UAE - The Un*x Amiga Emulator
1.1.1.3   root        3:   *
1.1       root        4:   * MC68000 emulation
                      5:   *
                      6:   * (c) 1995 Bernd Schmidt
                      7:   */
                      8: 
                      9: #include "sysconfig.h"
                     10: #include "sysdeps.h"
                     11: 
                     12: #include "config.h"
                     13: #include "options.h"
                     14: #include "events.h"
1.1.1.3   root       15: #include "uae.h"
1.1       root       16: #include "memory.h"
                     17: #include "custom.h"
                     18: #include "newcpu.h"
                     19: #include "autoconf.h"
                     20: #include "ersatz.h"
                     21: #include "debug.h"
                     22: #include "compiler.h"
1.1.1.3   root       23: #include "gui.h"
1.1.1.14  root       24: #include "savestate.h"
1.1.1.18  root       25: #include "blitter.h"
1.1.1.3   root       26: 
                     27: /* Opcode of faulting instruction */
                     28: uae_u16 last_op_for_exception_3;
                     29: /* PC at fault time */
                     30: uaecptr last_addr_for_exception_3;
                     31: /* Address that generated the exception */
                     32: uaecptr last_fault_for_exception_3;
1.1       root       33: 
                     34: int areg_byteinc[] = { 1,1,1,1,1,1,1,2 };
                     35: int imm8_table[] = { 8,1,2,3,4,5,6,7 };
                     36: 
                     37: int movem_index1[256];
                     38: int movem_index2[256];
                     39: int movem_next[256];
                     40: 
                     41: int fpp_movem_index1[256];
                     42: int fpp_movem_index2[256];
                     43: int fpp_movem_next[256];
                     44: 
                     45: cpuop_func *cpufunctbl[65536];
                     46: 
1.1.1.3   root       47: #define COUNT_INSTRS 0
1.1       root       48: 
                     49: #if COUNT_INSTRS
                     50: static unsigned long int instrcount[65536];
1.1.1.3   root       51: static uae_u16 opcodenums[65536];
1.1       root       52: 
1.1.1.4   root       53: static int compfn (const void *el1, const void *el2)
1.1       root       54: {
1.1.1.3   root       55:     return instrcount[*(const uae_u16 *)el1] < instrcount[*(const uae_u16 *)el2];
                     56: }
                     57: 
                     58: static char *icountfilename (void)
                     59: {
                     60:     char *name = getenv ("INSNCOUNT");
                     61:     if (name)
                     62:        return name;
                     63:     return COUNT_INSTRS == 2 ? "frequent.68k" : "insncount";
1.1       root       64: }
                     65: 
1.1.1.4   root       66: void dump_counts (void)
1.1       root       67: {
1.1.1.4   root       68:     FILE *f = fopen (icountfilename (), "w");
1.1.1.3   root       69:     unsigned long int total;
1.1       root       70:     int i;
1.1.1.3   root       71: 
                     72:     write_log ("Writing instruction count file...\n");
1.1.1.4   root       73:     for (i = 0; i < 65536; i++) {
1.1       root       74:        opcodenums[i] = i;
1.1.1.3   root       75:        total += instrcount[i];
1.1       root       76:     }
1.1.1.4   root       77:     qsort (opcodenums, 65536, sizeof(uae_u16), compfn);
1.1.1.3   root       78: 
                     79:     fprintf (f, "Total: %lu\n", total);
                     80:     for (i=0; i < 65536; i++) {
1.1       root       81:        unsigned long int cnt = instrcount[opcodenums[i]];
                     82:        struct instr *dp;
                     83:        struct mnemolookup *lookup;
                     84:        if (!cnt)
                     85:            break;
                     86:        dp = table68k + opcodenums[i];
1.1.1.4   root       87:        for (lookup = lookuptab;lookup->mnemo != dp->mnemo; lookup++)
                     88:            ;
1.1.1.3   root       89:        fprintf (f, "%04x: %lu %s\n", opcodenums[i], cnt, lookup->name);
1.1       root       90:     }
1.1.1.4   root       91:     fclose (f);
1.1       root       92: }
                     93: #else
1.1.1.4   root       94: void dump_counts (void)
1.1       root       95: {
                     96: }
                     97: #endif
                     98: 
                     99: int broken_in;
                    100: 
1.1.1.4   root      101: static unsigned long op_illg_1 (uae_u32 opcode) REGPARAM;
                    102: 
                    103: static unsigned long REGPARAM2 op_illg_1 (uae_u32 opcode)
                    104: {
1.1.1.8   root      105:     op_illg (opcode);
1.1.1.4   root      106:     return 4;
                    107: }
                    108: 
1.1.1.3   root      109: static void build_cpufunctbl (void)
                    110: {
                    111:     int i;
                    112:     unsigned long opcode;
1.1.1.12  root      113:     struct cputbl *tbl = (currprefs.cpu_level == 4 ? op_smalltbl_0_ff
                    114:                          : currprefs.cpu_level == 3 ? op_smalltbl_1_ff
                    115:                          : currprefs.cpu_level == 2 ? op_smalltbl_2_ff
                    116:                          : currprefs.cpu_level == 1 ? op_smalltbl_3_ff
                    117:                          : ! currprefs.cpu_compatible ? op_smalltbl_4_ff
                    118:                          : op_smalltbl_5_ff);
1.1.1.3   root      119: 
1.1.1.4   root      120:     write_log ("Building CPU function table (%d %d %d).\n",
                    121:               currprefs.cpu_level, currprefs.cpu_compatible, currprefs.address_space_24);
1.1.1.3   root      122: 
                    123:     for (opcode = 0; opcode < 65536; opcode++)
1.1.1.8   root      124:        cpufunctbl[opcode] = op_illg_1;
1.1.1.3   root      125:     for (i = 0; tbl[i].handler != NULL; i++) {
                    126:        if (! tbl[i].specific)
1.1.1.8   root      127:            cpufunctbl[tbl[i].opcode] = tbl[i].handler;
1.1.1.3   root      128:     }
                    129:     for (opcode = 0; opcode < 65536; opcode++) {
                    130:        cpuop_func *f;
                    131: 
                    132:        if (table68k[opcode].mnemo == i_ILLG || table68k[opcode].clev > currprefs.cpu_level)
                    133:            continue;
                    134: 
                    135:        if (table68k[opcode].handler != -1) {
1.1.1.8   root      136:            f = cpufunctbl[table68k[opcode].handler];
1.1.1.4   root      137:            if (f == op_illg_1)
1.1.1.3   root      138:                abort();
1.1.1.8   root      139:            cpufunctbl[opcode] = f;
1.1.1.3   root      140:        }
                    141:     }
                    142:     for (i = 0; tbl[i].handler != NULL; i++) {
                    143:        if (tbl[i].specific)
1.1.1.8   root      144:            cpufunctbl[tbl[i].opcode] = tbl[i].handler;
1.1.1.4   root      145:     }
                    146: }
                    147: 
                    148: unsigned long cycles_mask, cycles_val;
                    149: 
                    150: static void update_68k_cycles (void)
                    151: {
                    152:     cycles_mask = 0;
                    153:     cycles_val = currprefs.m68k_speed;
                    154:     if (currprefs.m68k_speed < 1) {
                    155:        cycles_mask = 0xFFFFFFFF;
                    156:        cycles_val = 0;
1.1.1.3   root      157:     }
                    158: }
                    159: 
                    160: void check_prefs_changed_cpu (void)
                    161: {
                    162:     if (currprefs.cpu_level != changed_prefs.cpu_level
                    163:        || currprefs.cpu_compatible != changed_prefs.cpu_compatible) {
                    164:        currprefs.cpu_level = changed_prefs.cpu_level;
                    165:        currprefs.cpu_compatible = changed_prefs.cpu_compatible;
                    166:        build_cpufunctbl ();
                    167:     }
1.1.1.4   root      168:     if (currprefs.m68k_speed != changed_prefs.m68k_speed) {
                    169:        currprefs.m68k_speed = changed_prefs.m68k_speed;
                    170:        reset_frame_rate_hack ();
                    171:        update_68k_cycles ();
                    172:     }
1.1.1.3   root      173: }
                    174: 
1.1       root      175: void init_m68k (void)
                    176: {
1.1.1.3   root      177:     int i;
                    178: 
1.1.1.4   root      179:     update_68k_cycles ();
                    180: 
1.1       root      181:     for (i = 0 ; i < 256 ; i++) {
1.1.1.3   root      182:        int j;
1.1       root      183:        for (j = 0 ; j < 8 ; j++) {
                    184:                if (i & (1 << j)) break;
                    185:        }
                    186:        movem_index1[i] = j;
                    187:        movem_index2[i] = 7-j;
                    188:        movem_next[i] = i & (~(1 << j));
                    189:     }
                    190:     for (i = 0 ; i < 256 ; i++) {
1.1.1.3   root      191:        int j;
1.1       root      192:        for (j = 7 ; j >= 0 ; j--) {
                    193:                if (i & (1 << j)) break;
                    194:        }
1.1.1.8   root      195:        fpp_movem_index1[i] = 7-j;
                    196:        fpp_movem_index2[i] = j;
1.1       root      197:        fpp_movem_next[i] = i & (~(1 << j));
                    198:     }
                    199: #if COUNT_INSTRS
                    200:     {
1.1.1.4   root      201:        FILE *f = fopen (icountfilename (), "r");
                    202:        memset (instrcount, 0, sizeof instrcount);
1.1       root      203:        if (f) {
1.1.1.3   root      204:            uae_u32 opcode, count, total;
1.1       root      205:            char name[20];
1.1.1.3   root      206:            write_log ("Reading instruction count file...\n");
1.1.1.4   root      207:            fscanf (f, "Total: %lu\n", &total);
                    208:            while (fscanf (f, "%lx: %lu %s\n", &opcode, &count, name) == 3) {
1.1       root      209:                instrcount[opcode] = count;
                    210:            }
                    211:            fclose(f);
                    212:        }
                    213:     }
                    214: #endif
1.1.1.5   root      215:     write_log ("Building CPU table for configuration: 68");
                    216:     if (currprefs.address_space_24 && currprefs.cpu_level > 1)
                    217:         write_log ("EC");
                    218:     switch (currprefs.cpu_level) {
1.1.1.12  root      219:     case 1:
1.1.1.5   root      220:         write_log ("010");
                    221:         break;
1.1.1.12  root      222:     case 2:
1.1.1.5   root      223:         write_log ("020");
                    224:         break;
1.1.1.12  root      225:     case 3:
1.1.1.5   root      226:         write_log ("020/881");
                    227:         break;
1.1.1.12  root      228:     case 4:
                    229:         /* Who is going to miss the MMU anyway...? :-)  */
                    230:         write_log ("040");
                    231:         break;
                    232:     default:
1.1.1.5   root      233:         write_log ("000");
                    234:         break;
                    235:     }
                    236:     if (currprefs.cpu_compatible)
                    237:         write_log (" (compatible mode)");
                    238:     write_log ("\n");
                    239:     
1.1       root      240:     read_table68k ();
                    241:     do_merges ();
1.1.1.2   root      242: 
1.1.1.4   root      243:     write_log ("%d CPU functions\n", nr_cpuop_funcs);
1.1       root      244: 
1.1.1.3   root      245:     build_cpufunctbl ();
                    246: }
1.1.1.4   root      247: 
1.1       root      248: struct regstruct regs, lastint_regs;
                    249: static struct regstruct regs_backup[16];
                    250: static int backup_pointer = 0;
1.1.1.3   root      251: static long int m68kpc_offset;
1.1       root      252: int lastint_no;
                    253: 
1.1.1.3   root      254: #define get_ibyte_1(o) get_byte(regs.pc + (regs.pc_p - regs.pc_oldp) + (o) + 1)
                    255: #define get_iword_1(o) get_word(regs.pc + (regs.pc_p - regs.pc_oldp) + (o))
                    256: #define get_ilong_1(o) get_long(regs.pc + (regs.pc_p - regs.pc_oldp) + (o))
                    257: 
1.1.1.11  root      258: uae_s32 ShowEA (FILE *f, int reg, amodes mode, wordsizes size, char *buf)
1.1.1.3   root      259: {
                    260:     uae_u16 dp;
                    261:     uae_s8 disp8;
                    262:     uae_s16 disp16;
1.1       root      263:     int r;
1.1.1.3   root      264:     uae_u32 dispreg;
                    265:     uaecptr addr;
                    266:     uae_s32 offset = 0;
1.1.1.2   root      267:     char buffer[80];
1.1.1.3   root      268: 
                    269:     switch (mode){
1.1       root      270:      case Dreg:
1.1.1.3   root      271:        sprintf (buffer,"D%d", reg);
1.1       root      272:        break;
                    273:      case Areg:
1.1.1.3   root      274:        sprintf (buffer,"A%d", reg);
1.1       root      275:        break;
                    276:      case Aind:
1.1.1.3   root      277:        sprintf (buffer,"(A%d)", reg);
1.1       root      278:        break;
                    279:      case Aipi:
1.1.1.3   root      280:        sprintf (buffer,"(A%d)+", reg);
1.1       root      281:        break;
                    282:      case Apdi:
1.1.1.3   root      283:        sprintf (buffer,"-(A%d)", reg);
1.1       root      284:        break;
                    285:      case Ad16:
1.1.1.4   root      286:        disp16 = get_iword_1 (m68kpc_offset); m68kpc_offset += 2;
1.1.1.3   root      287:        addr = m68k_areg(regs,reg) + (uae_s16)disp16;
                    288:        sprintf (buffer,"(A%d,$%04x) == $%08lx", reg, disp16 & 0xffff,
1.1.1.8   root      289:                                        (unsigned long)addr);
1.1       root      290:        break;
                    291:      case Ad8r:
1.1.1.4   root      292:        dp = get_iword_1 (m68kpc_offset); m68kpc_offset += 2;
1.1       root      293:        disp8 = dp & 0xFF;
                    294:        r = (dp & 0x7000) >> 12;
1.1.1.3   root      295:        dispreg = dp & 0x8000 ? m68k_areg(regs,r) : m68k_dreg(regs,r);
                    296:        if (!(dp & 0x800)) dispreg = (uae_s32)(uae_s16)(dispreg);
1.1       root      297:        dispreg <<= (dp >> 9) & 3;
1.1.1.3   root      298: 
1.1       root      299:        if (dp & 0x100) {
1.1.1.3   root      300:            uae_s32 outer = 0, disp = 0;
                    301:            uae_s32 base = m68k_areg(regs,reg);
                    302:            char name[10];
                    303:            sprintf (name,"A%d, ",reg);
                    304:            if (dp & 0x80) { base = 0; name[0] = 0; }
                    305:            if (dp & 0x40) dispreg = 0;
1.1.1.4   root      306:            if ((dp & 0x30) == 0x20) { disp = (uae_s32)(uae_s16)get_iword_1 (m68kpc_offset); m68kpc_offset += 2; }
                    307:            if ((dp & 0x30) == 0x30) { disp = get_ilong_1 (m68kpc_offset); m68kpc_offset += 4; }
1.1.1.3   root      308:            base += disp;
                    309: 
1.1.1.4   root      310:            if ((dp & 0x3) == 0x2) { outer = (uae_s32)(uae_s16)get_iword_1 (m68kpc_offset); m68kpc_offset += 2; }
                    311:            if ((dp & 0x3) == 0x3) { outer = get_ilong_1 (m68kpc_offset); m68kpc_offset += 4; }
1.1.1.3   root      312: 
                    313:            if (!(dp & 4)) base += dispreg;
                    314:            if (dp & 3) base = get_long (base);
                    315:            if (dp & 4) base += dispreg;
                    316: 
                    317:            addr = base + outer;
                    318:            sprintf (buffer,"(%s%c%d.%c*%d+%ld)+%ld == $%08lx", name,
                    319:                    dp & 0x8000 ? 'A' : 'D', (int)r, dp & 0x800 ? 'L' : 'W',
                    320:                    1 << ((dp >> 9) & 3),
                    321:                    disp,outer,
1.1.1.8   root      322:                    (unsigned long)addr);
1.1.1.3   root      323:        } else {
                    324:          addr = m68k_areg(regs,reg) + (uae_s32)((uae_s8)disp8) + dispreg;
                    325:          sprintf (buffer,"(A%d, %c%d.%c*%d, $%02x) == $%08lx", reg,
1.1       root      326:               dp & 0x8000 ? 'A' : 'D', (int)r, dp & 0x800 ? 'L' : 'W',
                    327:               1 << ((dp >> 9) & 3), disp8,
1.1.1.8   root      328:               (unsigned long)addr);
1.1       root      329:        }
                    330:        break;
                    331:      case PC16:
1.1.1.4   root      332:        addr = m68k_getpc () + m68kpc_offset;
                    333:        disp16 = get_iword_1 (m68kpc_offset); m68kpc_offset += 2;
1.1.1.3   root      334:        addr += (uae_s16)disp16;
1.1.1.8   root      335:        sprintf (buffer,"(PC,$%04x) == $%08lx", disp16 & 0xffff,(unsigned long)addr);
1.1       root      336:        break;
                    337:      case PC8r:
1.1.1.4   root      338:        addr = m68k_getpc () + m68kpc_offset;
                    339:        dp = get_iword_1 (m68kpc_offset); m68kpc_offset += 2;
1.1       root      340:        disp8 = dp & 0xFF;
                    341:        r = (dp & 0x7000) >> 12;
1.1.1.2   root      342:        dispreg = dp & 0x8000 ? m68k_areg(regs,r) : m68k_dreg(regs,r);
1.1.1.3   root      343:        if (!(dp & 0x800)) dispreg = (uae_s32)(uae_s16)(dispreg);
1.1       root      344:        dispreg <<= (dp >> 9) & 3;
1.1.1.3   root      345: 
1.1       root      346:        if (dp & 0x100) {
1.1.1.3   root      347:            uae_s32 outer = 0,disp = 0;
                    348:            uae_s32 base = addr;
                    349:            char name[10];
                    350:            sprintf (name,"PC, ");
                    351:            if (dp & 0x80) { base = 0; name[0] = 0; }
                    352:            if (dp & 0x40) dispreg = 0;
1.1.1.4   root      353:            if ((dp & 0x30) == 0x20) { disp = (uae_s32)(uae_s16)get_iword_1 (m68kpc_offset); m68kpc_offset += 2; }
                    354:            if ((dp & 0x30) == 0x30) { disp = get_ilong_1 (m68kpc_offset); m68kpc_offset += 4; }
1.1.1.3   root      355:            base += disp;
                    356: 
1.1.1.4   root      357:            if ((dp & 0x3) == 0x2) { outer = (uae_s32)(uae_s16)get_iword_1 (m68kpc_offset); m68kpc_offset += 2; }
                    358:            if ((dp & 0x3) == 0x3) { outer = get_ilong_1 (m68kpc_offset); m68kpc_offset += 4; }
1.1.1.3   root      359: 
                    360:            if (!(dp & 4)) base += dispreg;
                    361:            if (dp & 3) base = get_long (base);
                    362:            if (dp & 4) base += dispreg;
                    363: 
                    364:            addr = base + outer;
                    365:            sprintf (buffer,"(%s%c%d.%c*%d+%ld)+%ld == $%08lx", name,
                    366:                    dp & 0x8000 ? 'A' : 'D', (int)r, dp & 0x800 ? 'L' : 'W',
                    367:                    1 << ((dp >> 9) & 3),
                    368:                    disp,outer,
1.1.1.8   root      369:                    (unsigned long)addr);
1.1.1.2   root      370:        } else {
1.1.1.3   root      371:          addr += (uae_s32)((uae_s8)disp8) + dispreg;
                    372:          sprintf (buffer,"(PC, %c%d.%c*%d, $%02x) == $%08lx", dp & 0x8000 ? 'A' : 'D',
1.1       root      373:                (int)r, dp & 0x800 ? 'L' : 'W',  1 << ((dp >> 9) & 3),
1.1.1.8   root      374:                disp8, (unsigned long)addr);
1.1       root      375:        }
                    376:        break;
                    377:      case absw:
1.1.1.8   root      378:        sprintf (buffer,"$%08lx", (unsigned long)(uae_s32)(uae_s16)get_iword_1 (m68kpc_offset));
1.1.1.3   root      379:        m68kpc_offset += 2;
1.1       root      380:        break;
                    381:      case absl:
1.1.1.8   root      382:        sprintf (buffer,"$%08lx", (unsigned long)get_ilong_1 (m68kpc_offset));
1.1.1.3   root      383:        m68kpc_offset += 4;
1.1       root      384:        break;
                    385:      case imm:
1.1.1.3   root      386:        switch (size){
1.1       root      387:         case sz_byte:
1.1.1.4   root      388:            sprintf (buffer,"#$%02x", (unsigned int)(get_iword_1 (m68kpc_offset) & 0xff));
1.1.1.3   root      389:            m68kpc_offset += 2;
                    390:            break;
1.1       root      391:         case sz_word:
1.1.1.4   root      392:            sprintf (buffer,"#$%04x", (unsigned int)(get_iword_1 (m68kpc_offset) & 0xffff));
1.1.1.3   root      393:            m68kpc_offset += 2;
                    394:            break;
1.1       root      395:         case sz_long:
1.1.1.8   root      396:            sprintf (buffer,"#$%08lx", (unsigned long)(get_ilong_1 (m68kpc_offset)));
1.1.1.3   root      397:            m68kpc_offset += 4;
                    398:            break;
1.1       root      399:         default:
                    400:            break;
                    401:        }
                    402:        break;
                    403:      case imm0:
1.1.1.4   root      404:        offset = (uae_s32)(uae_s8)get_iword_1 (m68kpc_offset);
1.1.1.3   root      405:        m68kpc_offset += 2;
                    406:        sprintf (buffer,"#$%02x", (unsigned int)(offset & 0xff));
1.1       root      407:        break;
                    408:      case imm1:
1.1.1.4   root      409:        offset = (uae_s32)(uae_s16)get_iword_1 (m68kpc_offset);
1.1.1.3   root      410:        m68kpc_offset += 2;
                    411:        sprintf (buffer,"#$%04x", (unsigned int)(offset & 0xffff));
1.1       root      412:        break;
                    413:      case imm2:
1.1.1.4   root      414:        offset = (uae_s32)get_ilong_1 (m68kpc_offset);
1.1.1.3   root      415:        m68kpc_offset += 4;
1.1.1.8   root      416:        sprintf (buffer,"#$%08lx", (unsigned long)offset);
1.1       root      417:        break;
                    418:      case immi:
1.1.1.3   root      419:        offset = (uae_s32)(uae_s8)(reg & 0xff);
1.1.1.8   root      420:        sprintf (buffer,"#$%08lx", (unsigned long)offset);
1.1       root      421:        break;
                    422:      default:
                    423:        break;
                    424:     }
1.1.1.2   root      425:     if (buf == 0)
1.1.1.11  root      426:        fprintf (f, "%s", buffer);
1.1.1.2   root      427:     else
1.1.1.4   root      428:        strcat (buf, buffer);
1.1.1.2   root      429:     return offset;
1.1       root      430: }
                    431: 
1.1.1.3   root      432: /* The plan is that this will take over the job of exception 3 handling -
                    433:  * the CPU emulation functions will just do a longjmp to m68k_go whenever
                    434:  * they hit an odd address. */
1.1.1.4   root      435: static int verify_ea (int reg, amodes mode, wordsizes size, uae_u32 *val)
1.1.1.3   root      436: {
                    437:     uae_u16 dp;
                    438:     uae_s8 disp8;
                    439:     uae_s16 disp16;
                    440:     int r;
                    441:     uae_u32 dispreg;
                    442:     uaecptr addr;
                    443:     uae_s32 offset = 0;
                    444: 
                    445:     switch (mode){
                    446:      case Dreg:
                    447:        *val = m68k_dreg (regs, reg);
                    448:        return 1;
                    449:      case Areg:
                    450:        *val = m68k_areg (regs, reg);
                    451:        return 1;
                    452: 
                    453:      case Aind:
                    454:      case Aipi:
                    455:        addr = m68k_areg (regs, reg);
                    456:        break;
                    457:      case Apdi:
                    458:        addr = m68k_areg (regs, reg);
                    459:        break;
                    460:      case Ad16:
1.1.1.4   root      461:        disp16 = get_iword_1 (m68kpc_offset); m68kpc_offset += 2;
1.1.1.3   root      462:        addr = m68k_areg(regs,reg) + (uae_s16)disp16;
                    463:        break;
                    464:      case Ad8r:
                    465:        addr = m68k_areg (regs, reg);
                    466:      d8r_common:
1.1.1.4   root      467:        dp = get_iword_1 (m68kpc_offset); m68kpc_offset += 2;
1.1.1.3   root      468:        disp8 = dp & 0xFF;
                    469:        r = (dp & 0x7000) >> 12;
                    470:        dispreg = dp & 0x8000 ? m68k_areg(regs,r) : m68k_dreg(regs,r);
                    471:        if (!(dp & 0x800)) dispreg = (uae_s32)(uae_s16)(dispreg);
                    472:        dispreg <<= (dp >> 9) & 3;
                    473: 
                    474:        if (dp & 0x100) {
                    475:            uae_s32 outer = 0, disp = 0;
                    476:            uae_s32 base = addr;
                    477:            if (dp & 0x80) base = 0;
                    478:            if (dp & 0x40) dispreg = 0;
1.1.1.4   root      479:            if ((dp & 0x30) == 0x20) { disp = (uae_s32)(uae_s16)get_iword_1 (m68kpc_offset); m68kpc_offset += 2; }
                    480:            if ((dp & 0x30) == 0x30) { disp = get_ilong_1 (m68kpc_offset); m68kpc_offset += 4; }
1.1.1.3   root      481:            base += disp;
                    482: 
1.1.1.4   root      483:            if ((dp & 0x3) == 0x2) { outer = (uae_s32)(uae_s16)get_iword_1 (m68kpc_offset); m68kpc_offset += 2; }
                    484:            if ((dp & 0x3) == 0x3) { outer = get_ilong_1 (m68kpc_offset); m68kpc_offset += 4; }
1.1.1.3   root      485: 
                    486:            if (!(dp & 4)) base += dispreg;
                    487:            if (dp & 3) base = get_long (base);
                    488:            if (dp & 4) base += dispreg;
                    489: 
                    490:            addr = base + outer;
                    491:        } else {
                    492:          addr += (uae_s32)((uae_s8)disp8) + dispreg;
                    493:        }
                    494:        break;
                    495:      case PC16:
1.1.1.4   root      496:        addr = m68k_getpc () + m68kpc_offset;
                    497:        disp16 = get_iword_1 (m68kpc_offset); m68kpc_offset += 2;
1.1.1.3   root      498:        addr += (uae_s16)disp16;
                    499:        break;
                    500:      case PC8r:
1.1.1.4   root      501:        addr = m68k_getpc () + m68kpc_offset;
1.1.1.3   root      502:        goto d8r_common;
                    503:      case absw:
1.1.1.4   root      504:        addr = (uae_s32)(uae_s16)get_iword_1 (m68kpc_offset);
1.1.1.3   root      505:        m68kpc_offset += 2;
                    506:        break;
                    507:      case absl:
1.1.1.4   root      508:        addr = get_ilong_1 (m68kpc_offset);
1.1.1.3   root      509:        m68kpc_offset += 4;
                    510:        break;
                    511:      case imm:
                    512:        switch (size){
                    513:         case sz_byte:
1.1.1.4   root      514:            *val = get_iword_1 (m68kpc_offset) & 0xff;
1.1.1.3   root      515:            m68kpc_offset += 2;
                    516:            break;
                    517:         case sz_word:
1.1.1.4   root      518:            *val = get_iword_1 (m68kpc_offset) & 0xffff;
1.1.1.3   root      519:            m68kpc_offset += 2;
                    520:            break;
                    521:         case sz_long:
1.1.1.4   root      522:            *val = get_ilong_1 (m68kpc_offset);
1.1.1.3   root      523:            m68kpc_offset += 4;
                    524:            break;
                    525:         default:
                    526:            break;
                    527:        }
                    528:        return 1;
                    529:      case imm0:
                    530:        *val = (uae_s32)(uae_s8)get_iword_1 (m68kpc_offset);
                    531:        m68kpc_offset += 2;
                    532:        return 1;
                    533:      case imm1:
                    534:        *val = (uae_s32)(uae_s16)get_iword_1 (m68kpc_offset);
                    535:        m68kpc_offset += 2;
                    536:        return 1;
                    537:      case imm2:
                    538:        *val = get_ilong_1 (m68kpc_offset);
                    539:        m68kpc_offset += 4;
                    540:        return 1;
                    541:      case immi:
                    542:        *val = (uae_s32)(uae_s8)(reg & 0xff);
                    543:        return 1;
                    544:      default:
                    545:        addr = 0;
                    546:        break;
                    547:     }
                    548:     if ((addr & 1) == 0)
                    549:        return 1;
                    550: 
1.1.1.4   root      551:     last_addr_for_exception_3 = m68k_getpc () + m68kpc_offset;
1.1.1.3   root      552:     last_fault_for_exception_3 = addr;
                    553:     return 0;
                    554: }
                    555: 
1.1.1.5   root      556: uae_u32 get_disp_ea_020 (uae_u32 base, uae_u32 dp)
                    557: {
                    558:     int reg = (dp >> 12) & 15;
                    559:     uae_s32 regd = regs.regs[reg];
                    560:     if ((dp & 0x800) == 0)
                    561:        regd = (uae_s32)(uae_s16)regd;
                    562:     regd <<= (dp >> 9) & 3;
                    563:     if (dp & 0x100) {
                    564:        uae_s32 outer = 0;
                    565:        if (dp & 0x80) base = 0;
                    566:        if (dp & 0x40) regd = 0;
                    567: 
                    568:        if ((dp & 0x30) == 0x20) base += (uae_s32)(uae_s16)next_iword();
                    569:        if ((dp & 0x30) == 0x30) base += next_ilong();
                    570: 
                    571:        if ((dp & 0x3) == 0x2) outer = (uae_s32)(uae_s16)next_iword();
                    572:        if ((dp & 0x3) == 0x3) outer = next_ilong();
                    573: 
                    574:        if ((dp & 0x4) == 0) base += regd;
                    575:        if (dp & 0x3) base = get_long (base);
                    576:        if (dp & 0x4) base += regd;
                    577: 
                    578:        return base + outer;
                    579:     } else {
                    580:        return base + (uae_s32)((uae_s8)dp) + regd;
                    581:     }
                    582: }
                    583: 
                    584: uae_u32 get_disp_ea_000 (uae_u32 base, uae_u32 dp)
                    585: {
                    586:     int reg = (dp >> 12) & 15;
                    587:     uae_s32 regd = regs.regs[reg];
                    588: #if 1
                    589:     if ((dp & 0x800) == 0)
                    590:        regd = (uae_s32)(uae_s16)regd;
                    591:     return base + (uae_s8)dp + regd;
                    592: #else
                    593:     /* Branch-free code... benchmark this again now that
                    594:      * things are no longer inline.  */
                    595:     uae_s32 regd16;
                    596:     uae_u32 mask;
                    597:     mask = ((dp & 0x800) >> 11) - 1;
                    598:     regd16 = (uae_s32)(uae_s16)regd;
                    599:     regd16 &= mask;
                    600:     mask = ~mask;
                    601:     base += (uae_s8)dp;
                    602:     regd &= mask;
                    603:     regd |= regd16;
                    604:     return base + regd;
                    605: #endif
                    606: }
                    607: 
1.1.1.4   root      608: void MakeSR (void)
1.1       root      609: {
                    610: #if 0
                    611:     assert((regs.t1 & 1) == regs.t1);
                    612:     assert((regs.t0 & 1) == regs.t0);
                    613:     assert((regs.s & 1) == regs.s);
                    614:     assert((regs.m & 1) == regs.m);
                    615:     assert((XFLG & 1) == XFLG);
                    616:     assert((NFLG & 1) == NFLG);
                    617:     assert((ZFLG & 1) == ZFLG);
                    618:     assert((VFLG & 1) == VFLG);
                    619:     assert((CFLG & 1) == CFLG);
                    620: #endif
                    621:     regs.sr = ((regs.t1 << 15) | (regs.t0 << 14)
                    622:               | (regs.s << 13) | (regs.m << 12) | (regs.intmask << 8)
1.1.1.6   root      623:               | (GET_XFLG << 4) | (GET_NFLG << 3) | (GET_ZFLG << 2) | (GET_VFLG << 1)
                    624:               | GET_CFLG);
1.1       root      625: }
                    626: 
1.1.1.4   root      627: void MakeFromSR (void)
1.1       root      628: {
                    629:     int oldm = regs.m;
                    630:     int olds = regs.s;
                    631: 
                    632:     regs.t1 = (regs.sr >> 15) & 1;
                    633:     regs.t0 = (regs.sr >> 14) & 1;
                    634:     regs.s = (regs.sr >> 13) & 1;
                    635:     regs.m = (regs.sr >> 12) & 1;
                    636:     regs.intmask = (regs.sr >> 8) & 7;
1.1.1.6   root      637:     SET_XFLG ((regs.sr >> 4) & 1);
                    638:     SET_NFLG ((regs.sr >> 3) & 1);
                    639:     SET_ZFLG ((regs.sr >> 2) & 1);
                    640:     SET_VFLG ((regs.sr >> 1) & 1);
                    641:     SET_CFLG (regs.sr & 1);
1.1.1.3   root      642:     if (currprefs.cpu_level >= 2) {
1.1       root      643:        if (olds != regs.s) {
1.1.1.3   root      644:            if (olds) {
                    645:                if (oldm)
                    646:                    regs.msp = m68k_areg(regs, 7);
                    647:                else
                    648:                    regs.isp = m68k_areg(regs, 7);
                    649:                m68k_areg(regs, 7) = regs.usp;
                    650:            } else {
                    651:                regs.usp = m68k_areg(regs, 7);
                    652:                m68k_areg(regs, 7) = regs.m ? regs.msp : regs.isp;
                    653:            }
1.1       root      654:        } else if (olds && oldm != regs.m) {
                    655:            if (oldm) {
1.1.1.2   root      656:                regs.msp = m68k_areg(regs, 7);
                    657:                m68k_areg(regs, 7) = regs.isp;
                    658:            } else {
                    659:                regs.isp = m68k_areg(regs, 7);
                    660:                m68k_areg(regs, 7) = regs.msp;
1.1       root      661:            }
                    662:        }
                    663:     } else {
                    664:        if (olds != regs.s) {
1.1.1.3   root      665:            if (olds) {
                    666:                regs.isp = m68k_areg(regs, 7);
                    667:                m68k_areg(regs, 7) = regs.usp;
                    668:            } else {
                    669:                regs.usp = m68k_areg(regs, 7);
                    670:                m68k_areg(regs, 7) = regs.isp;
                    671:            }
                    672:        }
1.1       root      673:     }
1.1.1.3   root      674: 
1.1.1.12  root      675:     set_special (SPCFLAG_INT);
1.1       root      676:     if (regs.t1 || regs.t0)
1.1.1.12  root      677:        set_special (SPCFLAG_TRACE);
1.1       root      678:     else
1.1.1.16  root      679:        /* Keep SPCFLAG_DOTRACE, we still want a trace exception for
                    680:           SR-modifying instructions (including STOP).  */
                    681:        unset_special (SPCFLAG_TRACE);
1.1       root      682: }
                    683: 
1.1.1.3   root      684: void Exception(int nr, uaecptr oldpc)
1.1       root      685: {
1.1.1.12  root      686:     uae_u32 currpc = m68k_getpc ();
                    687: 
1.1.1.2   root      688:     compiler_flush_jsr_stack();
1.1       root      689:     MakeSR();
1.1.1.12  root      690: 
1.1       root      691:     if (!regs.s) {
1.1.1.2   root      692:        regs.usp = m68k_areg(regs, 7);
1.1.1.3   root      693:        if (currprefs.cpu_level >= 2)
                    694:            m68k_areg(regs, 7) = regs.m ? regs.msp : regs.isp;
                    695:        else
                    696:            m68k_areg(regs, 7) = regs.isp;
1.1       root      697:        regs.s = 1;
                    698:     }
1.1.1.3   root      699:     if (currprefs.cpu_level > 0) {
1.1       root      700:        if (nr == 2 || nr == 3) {
                    701:            int i;
1.1.1.3   root      702:            /* @@@ this is probably wrong (?) */
1.1       root      703:            for (i = 0 ; i < 12 ; i++) {
1.1.1.2   root      704:                m68k_areg(regs, 7) -= 2;
                    705:                put_word (m68k_areg(regs, 7), 0);
1.1       root      706:            }
1.1.1.2   root      707:            m68k_areg(regs, 7) -= 2;
                    708:            put_word (m68k_areg(regs, 7), 0xa000 + nr * 4);
1.1       root      709:        } else if (nr ==5 || nr == 6 || nr == 7 || nr == 9) {
1.1.1.3   root      710:            m68k_areg(regs, 7) -= 4;
                    711:            put_long (m68k_areg(regs, 7), oldpc);
                    712:            m68k_areg(regs, 7) -= 2;
                    713:            put_word (m68k_areg(regs, 7), 0x2000 + nr * 4);
                    714:        } else if (regs.m && nr >= 24 && nr < 32) {
                    715:            m68k_areg(regs, 7) -= 2;
                    716:            put_word (m68k_areg(regs, 7), nr * 4);
                    717:            m68k_areg(regs, 7) -= 4;
1.1.1.12  root      718:            put_long (m68k_areg(regs, 7), currpc);
1.1.1.3   root      719:            m68k_areg(regs, 7) -= 2;
                    720:            put_word (m68k_areg(regs, 7), regs.sr);
                    721:            regs.sr |= (1 << 13);
                    722:            regs.msp = m68k_areg(regs, 7);
                    723:            m68k_areg(regs, 7) = regs.isp;
                    724:            m68k_areg(regs, 7) -= 2;
                    725:            put_word (m68k_areg(regs, 7), 0x1000 + nr * 4);
                    726:        } else {
                    727:            m68k_areg(regs, 7) -= 2;
                    728:            put_word (m68k_areg(regs, 7), nr * 4);
                    729:        }
                    730:     } else {
                    731:        if (nr == 2 || nr == 3) {
                    732:            m68k_areg(regs, 7) -= 12;
                    733:            /* ??????? */
                    734:            if (nr == 3) {
                    735:                put_long (m68k_areg(regs, 7), last_fault_for_exception_3);
                    736:                put_word (m68k_areg(regs, 7)+4, last_op_for_exception_3);
                    737:                put_long (m68k_areg(regs, 7)+8, last_addr_for_exception_3);
                    738:            }
                    739:            write_log ("Exception!\n");
                    740:            goto kludge_me_do;
                    741:        }
1.1       root      742:     }
1.1.1.2   root      743:     m68k_areg(regs, 7) -= 4;
1.1.1.12  root      744:     put_long (m68k_areg(regs, 7), currpc);
1.1.1.3   root      745: kludge_me_do:
1.1.1.2   root      746:     m68k_areg(regs, 7) -= 2;
                    747:     put_word (m68k_areg(regs, 7), regs.sr);
1.1.1.3   root      748:     m68k_setpc (get_long (regs.vbr + 4*nr));
                    749:     fill_prefetch_0 ();
1.1       root      750:     regs.t1 = regs.t0 = regs.m = 0;
1.1.1.12  root      751:     unset_special (SPCFLAG_TRACE | SPCFLAG_DOTRACE);
1.1       root      752: }
                    753: 
1.1.1.17  root      754: static void Interrupt (int nr)
1.1       root      755: {
                    756:     assert(nr < 8 && nr >= 0);
                    757:     lastint_regs = regs;
                    758:     lastint_no = nr;
                    759:     Exception(nr+24, 0);
1.1.1.3   root      760: 
1.1       root      761:     regs.intmask = nr;
1.1.1.12  root      762:     set_special (SPCFLAG_INT);
1.1       root      763: }
                    764: 
1.1.1.15  root      765: static uae_u32 caar, cacr, itt0, itt1, dtt0, dtt1, tc, mmusr, urp, srp;
1.1       root      766: 
1.1.1.9   root      767: int m68k_move2c (int regno, uae_u32 *regp)
1.1       root      768: {
1.1.1.12  root      769:     if ((currprefs.cpu_level == 1 && (regno & 0x7FF) > 1)
                    770:        || (currprefs.cpu_level < 4 && (regno & 0x7FF) > 2)
                    771:        || (currprefs.cpu_level == 4 && regno == 0x802))
                    772:     {
1.1       root      773:        op_illg (0x4E7B);
1.1.1.9   root      774:        return 0;
1.1.1.12  root      775:     } else {
1.1       root      776:        switch (regno) {
1.1.1.12  root      777:        case 0: regs.sfc = *regp & 7; break;
                    778:        case 1: regs.dfc = *regp & 7; break;
                    779:        case 2: cacr = *regp & (currprefs.cpu_level < 4 ? 0x3 : 0x80008000); break;
                    780:        case 3: tc = *regp & 0xc000; break;
1.1.1.15  root      781:            /* Mask out fields that should be zero.  */
1.1.1.12  root      782:        case 4: itt0 = *regp & 0xffffe364; break;
                    783:        case 5: itt1 = *regp & 0xffffe364; break;
                    784:        case 6: dtt0 = *regp & 0xffffe364; break;
                    785:        case 7: dtt1 = *regp & 0xffffe364; break;
                    786:          
                    787:        case 0x800: regs.usp = *regp; break;
                    788:        case 0x801: regs.vbr = *regp; break;
                    789:        case 0x802: caar = *regp & 0xfc; break;
                    790:        case 0x803: regs.msp = *regp; if (regs.m == 1) m68k_areg(regs, 7) = regs.msp; break;
                    791:        case 0x804: regs.isp = *regp; if (regs.m == 0) m68k_areg(regs, 7) = regs.isp; break;
1.1.1.15  root      792:        case 0x805: mmusr = *regp; break;
                    793:        case 0x806: urp = *regp; break;
                    794:        case 0x807: srp = *regp; break;
1.1.1.12  root      795:        default:
1.1       root      796:            op_illg (0x4E7B);
1.1.1.9   root      797:            return 0;
1.1       root      798:        }
1.1.1.12  root      799:     }
1.1.1.9   root      800:     return 1;
1.1       root      801: }
                    802: 
1.1.1.9   root      803: int m68k_movec2 (int regno, uae_u32 *regp)
1.1       root      804: {
1.1.1.12  root      805:     if ((currprefs.cpu_level == 1 && (regno & 0x7FF) > 1)
                    806:        || (currprefs.cpu_level < 4 && (regno & 0x7FF) > 2)
                    807:        || (currprefs.cpu_level == 4 && regno == 0x802))
                    808:     {
1.1       root      809:        op_illg (0x4E7A);
1.1.1.9   root      810:        return 0;
1.1.1.12  root      811:     } else {
1.1       root      812:        switch (regno) {
1.1.1.12  root      813:        case 0: *regp = regs.sfc; break;
                    814:        case 1: *regp = regs.dfc; break;
                    815:        case 2: *regp = cacr; break;
                    816:        case 3: *regp = tc; break;
                    817:        case 4: *regp = itt0; break;
                    818:        case 5: *regp = itt1; break;
                    819:        case 6: *regp = dtt0; break;
                    820:        case 7: *regp = dtt1; break;
                    821:        case 0x800: *regp = regs.usp; break;
                    822:        case 0x801: *regp = regs.vbr; break;
                    823:        case 0x802: *regp = caar; break;
                    824:        case 0x803: *regp = regs.m == 1 ? m68k_areg(regs, 7) : regs.msp; break;
                    825:        case 0x804: *regp = regs.m == 0 ? m68k_areg(regs, 7) : regs.isp; break;
                    826:        case 0x805: *regp = mmusr; break;
1.1.1.15  root      827:        case 0x806: *regp = urp; break;
                    828:        case 0x807: *regp = srp; break;
1.1.1.12  root      829:        default:
1.1       root      830:            op_illg (0x4E7A);
1.1.1.9   root      831:            return 0;
1.1       root      832:        }
1.1.1.12  root      833:     }
1.1.1.9   root      834:     return 1;
1.1       root      835: }
                    836: 
1.1.1.8   root      837: STATIC_INLINE int
1.1.1.3   root      838: div_unsigned(uae_u32 src_hi, uae_u32 src_lo, uae_u32 div, uae_u32 *quot, uae_u32 *rem)
1.1       root      839: {
1.1.1.3   root      840:        uae_u32 q = 0, cbit = 0;
1.1       root      841:        int i;
                    842: 
                    843:        if (div <= src_hi) {
1.1.1.4   root      844:            return 1;
1.1       root      845:        }
                    846:        for (i = 0 ; i < 32 ; i++) {
1.1.1.2   root      847:                cbit = src_hi & 0x80000000ul;
1.1       root      848:                src_hi <<= 1;
1.1.1.2   root      849:                if (src_lo & 0x80000000ul) src_hi++;
1.1       root      850:                src_lo <<= 1;
                    851:                q = q << 1;
                    852:                if (cbit || div <= src_hi) {
                    853:                        q |= 1;
                    854:                        src_hi -= div;
                    855:                }
                    856:        }
                    857:        *quot = q;
                    858:        *rem = src_hi;
1.1.1.4   root      859:        return 0;
1.1       root      860: }
                    861: 
1.1.1.3   root      862: void m68k_divl (uae_u32 opcode, uae_u32 src, uae_u16 extra, uaecptr oldpc)
1.1       root      863: {
1.1.1.3   root      864: #if defined(uae_s64)
1.1       root      865:     if (src == 0) {
1.1.1.4   root      866:        Exception (5, oldpc);
1.1       root      867:        return;
                    868:     }
                    869:     if (extra & 0x800) {
                    870:        /* signed variant */
1.1.1.3   root      871:        uae_s64 a = (uae_s64)(uae_s32)m68k_dreg(regs, (extra >> 12) & 7);
                    872:        uae_s64 quot, rem;
                    873: 
1.1       root      874:        if (extra & 0x400) {
1.1.1.3   root      875:            a &= 0xffffffffu;
                    876:            a |= (uae_s64)m68k_dreg(regs, extra & 7) << 32;
1.1       root      877:        }
1.1.1.3   root      878:        rem = a % (uae_s64)(uae_s32)src;
                    879:        quot = a / (uae_s64)(uae_s32)src;
                    880:        if ((quot & UVAL64(0xffffffff80000000)) != 0
                    881:            && (quot & UVAL64(0xffffffff80000000)) != UVAL64(0xffffffff80000000))
                    882:        {
1.1.1.6   root      883:            SET_VFLG (1);
                    884:            SET_NFLG (1);
                    885:            SET_CFLG (0);
1.1.1.4   root      886:        } else {
1.1.1.3   root      887:            if (((uae_s32)rem < 0) != ((uae_s64)a < 0)) rem = -rem;
1.1.1.6   root      888:            SET_VFLG (0);
                    889:            SET_CFLG (0);
                    890:            SET_ZFLG (((uae_s32)quot) == 0);
                    891:            SET_NFLG (((uae_s32)quot) < 0);
1.1.1.2   root      892:            m68k_dreg(regs, extra & 7) = rem;
                    893:            m68k_dreg(regs, (extra >> 12) & 7) = quot;
1.1       root      894:        }
                    895:     } else {
                    896:        /* unsigned */
1.1.1.3   root      897:        uae_u64 a = (uae_u64)(uae_u32)m68k_dreg(regs, (extra >> 12) & 7);
                    898:        uae_u64 quot, rem;
                    899: 
1.1       root      900:        if (extra & 0x400) {
1.1.1.3   root      901:            a &= 0xffffffffu;
                    902:            a |= (uae_u64)m68k_dreg(regs, extra & 7) << 32;
1.1       root      903:        }
1.1.1.3   root      904:        rem = a % (uae_u64)src;
                    905:        quot = a / (uae_u64)src;
                    906:        if (quot > 0xffffffffu) {
1.1.1.6   root      907:            SET_VFLG (1);
                    908:            SET_NFLG (1);
                    909:            SET_CFLG (0);
1.1.1.4   root      910:        } else {
1.1.1.6   root      911:            SET_VFLG (0);
                    912:            SET_CFLG (0);
                    913:            SET_ZFLG (((uae_s32)quot) == 0);
                    914:            SET_NFLG (((uae_s32)quot) < 0);
1.1.1.2   root      915:            m68k_dreg(regs, extra & 7) = rem;
                    916:            m68k_dreg(regs, (extra >> 12) & 7) = quot;
1.1       root      917:        }
                    918:     }
                    919: #else
                    920:     if (src == 0) {
1.1.1.4   root      921:        Exception (5, oldpc);
1.1       root      922:        return;
                    923:     }
                    924:     if (extra & 0x800) {
                    925:        /* signed variant */
1.1.1.3   root      926:        uae_s32 lo = (uae_s32)m68k_dreg(regs, (extra >> 12) & 7);
                    927:        uae_s32 hi = lo < 0 ? -1 : 0;
                    928:        uae_s32 save_high;
                    929:        uae_u32 quot, rem;
                    930:        uae_u32 sign;
                    931: 
1.1       root      932:        if (extra & 0x400) {
1.1.1.3   root      933:            hi = (uae_s32)m68k_dreg(regs, extra & 7);
1.1       root      934:        }
                    935:        save_high = hi;
                    936:        sign = (hi ^ src);
                    937:        if (hi < 0) {
1.1.1.4   root      938:            hi = ~hi;
                    939:            lo = -lo;
                    940:            if (lo == 0) hi++;
1.1       root      941:        }
1.1.1.3   root      942:        if ((uae_s32)src < 0) src = -src;
1.1       root      943:        if (div_unsigned(hi, lo, src, &quot, &rem) ||
                    944:            (sign & 0x80000000) ? quot > 0x80000000 : quot > 0x7fffffff) {
1.1.1.6   root      945:            SET_VFLG (1);
                    946:            SET_NFLG (1);
                    947:            SET_CFLG (0);
1.1.1.4   root      948:        } else {
1.1       root      949:            if (sign & 0x80000000) quot = -quot;
1.1.1.3   root      950:            if (((uae_s32)rem < 0) != (save_high < 0)) rem = -rem;
1.1.1.6   root      951:            SET_VFLG (0);
                    952:            SET_CFLG (0);
                    953:            SET_ZFLG (((uae_s32)quot) == 0);
                    954:            SET_NFLG (((uae_s32)quot) < 0);
1.1.1.2   root      955:            m68k_dreg(regs, extra & 7) = rem;
                    956:            m68k_dreg(regs, (extra >> 12) & 7) = quot;
1.1       root      957:        }
                    958:     } else {
                    959:        /* unsigned */
1.1.1.3   root      960:        uae_u32 lo = (uae_u32)m68k_dreg(regs, (extra >> 12) & 7);
                    961:        uae_u32 hi = 0;
                    962:        uae_u32 quot, rem;
                    963: 
1.1       root      964:        if (extra & 0x400) {
1.1.1.3   root      965:            hi = (uae_u32)m68k_dreg(regs, extra & 7);
1.1       root      966:        }
                    967:        if (div_unsigned(hi, lo, src, &quot, &rem)) {
1.1.1.6   root      968:            SET_VFLG (1);
                    969:            SET_NFLG (1);
                    970:            SET_CFLG (0);
1.1.1.4   root      971:        } else {
1.1.1.6   root      972:            SET_VFLG (0);
                    973:            SET_CFLG (0);
                    974:            SET_ZFLG (((uae_s32)quot) == 0);
                    975:            SET_NFLG (((uae_s32)quot) < 0);
1.1.1.2   root      976:            m68k_dreg(regs, extra & 7) = rem;
                    977:            m68k_dreg(regs, (extra >> 12) & 7) = quot;
1.1       root      978:        }
                    979:     }
                    980: #endif
                    981: }
                    982: 
1.1.1.8   root      983: STATIC_INLINE void
1.1.1.3   root      984: mul_unsigned(uae_u32 src1, uae_u32 src2, uae_u32 *dst_hi, uae_u32 *dst_lo)
1.1       root      985: {
1.1.1.3   root      986:        uae_u32 r0 = (src1 & 0xffff) * (src2 & 0xffff);
                    987:        uae_u32 r1 = ((src1 >> 16) & 0xffff) * (src2 & 0xffff);
                    988:        uae_u32 r2 = (src1 & 0xffff) * ((src2 >> 16) & 0xffff);
                    989:        uae_u32 r3 = ((src1 >> 16) & 0xffff) * ((src2 >> 16) & 0xffff);
                    990:        uae_u32 lo;
                    991: 
                    992:        lo = r0 + ((r1 << 16) & 0xffff0000ul);
                    993:        if (lo < r0) r3++;
                    994:        r0 = lo;
                    995:        lo = r0 + ((r2 << 16) & 0xffff0000ul);
                    996:        if (lo < r0) r3++;
                    997:        r3 += ((r1 >> 16) & 0xffff) + ((r2 >> 16) & 0xffff);
1.1       root      998:        *dst_lo = lo;
                    999:        *dst_hi = r3;
                   1000: }
                   1001: 
1.1.1.3   root     1002: void m68k_mull (uae_u32 opcode, uae_u32 src, uae_u16 extra)
1.1       root     1003: {
1.1.1.3   root     1004: #if defined(uae_s64)
1.1       root     1005:     if (extra & 0x800) {
                   1006:        /* signed variant */
1.1.1.3   root     1007:        uae_s64 a = (uae_s64)(uae_s32)m68k_dreg(regs, (extra >> 12) & 7);
1.1       root     1008: 
1.1.1.3   root     1009:        a *= (uae_s64)(uae_s32)src;
1.1.1.6   root     1010:        SET_VFLG (0);
                   1011:        SET_CFLG (0);
                   1012:        SET_ZFLG (a == 0);
                   1013:        SET_NFLG (a < 0);
1.1       root     1014:        if (extra & 0x400)
1.1.1.2   root     1015:            m68k_dreg(regs, extra & 7) = a >> 32;
1.1.1.3   root     1016:        else if ((a & UVAL64(0xffffffff80000000)) != 0
                   1017:                 && (a & UVAL64(0xffffffff80000000)) != UVAL64(0xffffffff80000000))
                   1018:        {
1.1.1.6   root     1019:            SET_VFLG (1);
1.1       root     1020:        }
1.1.1.3   root     1021:        m68k_dreg(regs, (extra >> 12) & 7) = (uae_u32)a;
1.1       root     1022:     } else {
                   1023:        /* unsigned */
1.1.1.3   root     1024:        uae_u64 a = (uae_u64)(uae_u32)m68k_dreg(regs, (extra >> 12) & 7);
                   1025: 
                   1026:        a *= (uae_u64)src;
1.1.1.6   root     1027:        SET_VFLG (0);
                   1028:        SET_CFLG (0);
                   1029:        SET_ZFLG (a == 0);
                   1030:        SET_NFLG (((uae_s64)a) < 0);
1.1       root     1031:        if (extra & 0x400)
1.1.1.2   root     1032:            m68k_dreg(regs, extra & 7) = a >> 32;
1.1.1.3   root     1033:        else if ((a & UVAL64(0xffffffff00000000)) != 0) {
1.1.1.6   root     1034:            SET_VFLG (1);
1.1       root     1035:        }
1.1.1.3   root     1036:        m68k_dreg(regs, (extra >> 12) & 7) = (uae_u32)a;
1.1       root     1037:     }
                   1038: #else
                   1039:     if (extra & 0x800) {
                   1040:        /* signed variant */
1.1.1.3   root     1041:        uae_s32 src1,src2;
                   1042:        uae_u32 dst_lo,dst_hi;
                   1043:        uae_u32 sign;
1.1       root     1044: 
1.1.1.3   root     1045:        src1 = (uae_s32)src;
                   1046:        src2 = (uae_s32)m68k_dreg(regs, (extra >> 12) & 7);
1.1       root     1047:        sign = (src1 ^ src2);
                   1048:        if (src1 < 0) src1 = -src1;
                   1049:        if (src2 < 0) src2 = -src2;
1.1.1.3   root     1050:        mul_unsigned((uae_u32)src1,(uae_u32)src2,&dst_hi,&dst_lo);
1.1       root     1051:        if (sign & 0x80000000) {
                   1052:                dst_hi = ~dst_hi;
                   1053:                dst_lo = -dst_lo;
                   1054:                if (dst_lo == 0) dst_hi++;
                   1055:        }
1.1.1.6   root     1056:        SET_VFLG (0);
                   1057:        SET_CFLG (0);
                   1058:        SET_ZFLG (dst_hi == 0 && dst_lo == 0);
                   1059:        SET_NFLG (((uae_s32)dst_hi) < 0);
1.1       root     1060:        if (extra & 0x400)
1.1.1.2   root     1061:            m68k_dreg(regs, extra & 7) = dst_hi;
1.1.1.3   root     1062:        else if ((dst_hi != 0 || (dst_lo & 0x80000000) != 0)
                   1063:                 && ((dst_hi & 0xffffffff) != 0xffffffff
                   1064:                     || (dst_lo & 0x80000000) != 0x80000000))
                   1065:        {
1.1.1.6   root     1066:            SET_VFLG (1);
1.1       root     1067:        }
1.1.1.2   root     1068:        m68k_dreg(regs, (extra >> 12) & 7) = dst_lo;
1.1       root     1069:     } else {
                   1070:        /* unsigned */
1.1.1.3   root     1071:        uae_u32 dst_lo,dst_hi;
                   1072: 
                   1073:        mul_unsigned(src,(uae_u32)m68k_dreg(regs, (extra >> 12) & 7),&dst_hi,&dst_lo);
1.1       root     1074: 
1.1.1.6   root     1075:        SET_VFLG (0);
                   1076:        SET_CFLG (0);
                   1077:        SET_ZFLG (dst_hi == 0 && dst_lo == 0);
                   1078:        SET_NFLG (((uae_s32)dst_hi) < 0);
1.1       root     1079:        if (extra & 0x400)
1.1.1.2   root     1080:            m68k_dreg(regs, extra & 7) = dst_hi;
1.1       root     1081:        else if (dst_hi != 0) {
1.1.1.6   root     1082:            SET_VFLG (1);
1.1       root     1083:        }
1.1.1.2   root     1084:        m68k_dreg(regs, (extra >> 12) & 7) = dst_lo;
1.1       root     1085:     }
                   1086: #endif
                   1087: }
                   1088: static char* ccnames[] =
                   1089: { "T ","F ","HI","LS","CC","CS","NE","EQ",
                   1090:   "VC","VS","PL","MI","GE","LT","GT","LE" };
                   1091: 
1.1.1.4   root     1092: void m68k_reset (void)
1.1       root     1093: {
1.1.1.14  root     1094:     regs.kick_mask = 0x00F80000;
                   1095:     regs.spcflags = 0;
                   1096:     if (savestate_state == STATE_RESTORE) {
                   1097:         m68k_setpc (regs.pc);
                   1098:        /* MakeFromSR() must not swap stack pointer */
                   1099:        regs.s = (regs.sr >> 13) & 1;
                   1100:        MakeFromSR();
                   1101:        /* set stack pointer */
                   1102:        if (regs.s)
                   1103:            m68k_areg(regs, 7) = regs.isp;
                   1104:        else
                   1105:            m68k_areg(regs, 7) = regs.usp;
                   1106:        return;
                   1107:     }
                   1108: 
1.1.1.3   root     1109:     m68k_areg (regs, 7) = get_long (0x00f80000);
                   1110:     m68k_setpc (get_long (0x00f80004));
1.1.1.16  root     1111:     refill_prefetch (m68k_getpc (), 0);
1.1.1.3   root     1112:     fill_prefetch_0 ();
1.1       root     1113:     regs.s = 1;
                   1114:     regs.m = 0;
                   1115:     regs.stopped = 0;
                   1116:     regs.t1 = 0;
                   1117:     regs.t0 = 0;
1.1.1.6   root     1118:     SET_ZFLG (0);
                   1119:     SET_XFLG (0);
                   1120:     SET_CFLG (0);
                   1121:     SET_VFLG (0);
                   1122:     SET_NFLG (0);
1.1       root     1123:     regs.intmask = 7;
                   1124:     regs.vbr = regs.sfc = regs.dfc = 0;
                   1125:     regs.fpcr = regs.fpsr = regs.fpiar = 0;
                   1126: }
                   1127: 
1.1.1.4   root     1128: unsigned long REGPARAM2 op_illg (uae_u32 opcode)
1.1       root     1129: {
1.1.1.3   root     1130:     uaecptr pc = m68k_getpc ();
1.1.1.4   root     1131:     
1.1.1.3   root     1132:     if (cloanto_rom && (opcode & 0xF100) == 0x7100) {
                   1133:        m68k_dreg (regs, (opcode >> 9) & 7) = (uae_s8)(opcode & 0xFF);
                   1134:        m68k_incpc (2);
                   1135:        fill_prefetch_0 ();
1.1.1.4   root     1136:        return 4;
1.1.1.3   root     1137:     }
                   1138: 
                   1139:     compiler_flush_jsr_stack ();
                   1140:     if (opcode == 0x4E7B && get_long (0x10) == 0 && (pc & 0xF80000) == 0xF80000) {
1.1.1.4   root     1141:        write_log ("Your Kickstart requires a 68020 CPU. Giving up.\n");
1.1.1.3   root     1142:        broken_in = 1;
1.1.1.12  root     1143:        set_special (SPCFLAG_BRK);
1.1       root     1144:        quit_program = 1;
                   1145:     }
1.1.1.2   root     1146:     if (opcode == 0xFF0D) {
1.1.1.3   root     1147:        if ((pc & 0xF80000) == 0xF80000) {
1.1.1.2   root     1148:            /* This is from the dummy Kickstart replacement */
1.1.1.3   root     1149:            uae_u16 arg = get_iword (2);
                   1150:            m68k_incpc (4);
                   1151:            ersatz_perform (arg);
                   1152:            fill_prefetch_0 ();
1.1.1.4   root     1153:            return 4;
1.1.1.17  root     1154:        } else if ((pc & 0xFFFF0000) == RTAREA_BASE) {
1.1.1.2   root     1155:            /* User-mode STOP replacement */
1.1.1.3   root     1156:            m68k_setstopped (1);
1.1.1.4   root     1157:            return 4;
1.1.1.2   root     1158:        }
1.1       root     1159:     }
1.1.1.3   root     1160: 
1.1.1.17  root     1161:     if ((opcode & 0xF000) == 0xA000 && (pc & 0xFFFF0000) == RTAREA_BASE) {
1.1.1.3   root     1162:        /* Calltrap. */
                   1163:        m68k_incpc(2);
                   1164:        call_calltrap (opcode & 0xFFF);
                   1165:        fill_prefetch_0 ();
1.1.1.4   root     1166:        return 4;
1.1.1.3   root     1167:     }
                   1168: 
1.1       root     1169:     if ((opcode & 0xF000) == 0xF000) {
                   1170:        Exception(0xB,0);
1.1.1.4   root     1171:        return 4;
1.1       root     1172:     }
                   1173:     if ((opcode & 0xF000) == 0xA000) {
1.1.1.17  root     1174:        if ((pc & 0xFFFF0000) == RTAREA_BASE) {
1.1.1.3   root     1175:            /* Calltrap. */
                   1176:            call_calltrap (opcode & 0xFFF);
                   1177:        }
                   1178:        Exception(0xA,0);
1.1.1.4   root     1179:        return 4;
1.1       root     1180:     }
1.1.1.12  root     1181: #if 1
1.1.1.4   root     1182:     write_log ("Illegal instruction: %04x at %08lx\n", opcode, pc);
1.1.1.10  root     1183: #endif
1.1.1.3   root     1184:     Exception (4,0);
1.1.1.4   root     1185:     return 4;
1.1       root     1186: }
                   1187: 
1.1.1.3   root     1188: void mmu_op(uae_u32 opcode, uae_u16 extra)
1.1       root     1189: {
1.1.1.12  root     1190:     if ((opcode & 0xFE0) == 0x0500) {
                   1191:        /* PFLUSH */
                   1192:        mmusr = 0;
                   1193:        write_log ("PFLUSH\n");
                   1194:     } else if ((opcode & 0x0FD8) == 0x548) {
                   1195:        /* PTEST */
                   1196:        write_log ("PTEST\n");
1.1       root     1197:     } else
1.1.1.3   root     1198:        op_illg (opcode);
1.1       root     1199: }
                   1200: 
1.1.1.4   root     1201: static int n_insns = 0, n_spcinsns = 0;
1.1       root     1202: 
1.1.1.3   root     1203: static uaecptr last_trace_ad = 0;
1.1       root     1204: 
1.1.1.7   root     1205: static void do_trace (void)
1.1       root     1206: {
1.1.1.11  root     1207:     if (regs.t0 && currprefs.cpu_level >= 2) {
1.1.1.7   root     1208:        uae_u16 opcode;
                   1209:        /* should also include TRAP, CHK, SR modification FPcc */
                   1210:        /* probably never used so why bother */
                   1211:        /* We can afford this to be inefficient... */
                   1212:        m68k_setpc (m68k_getpc ());
                   1213:        fill_prefetch_0 ();
                   1214:        opcode = get_word (regs.pc);
                   1215:        if (opcode == 0x4e72            /* RTE */
                   1216:            || opcode == 0x4e74                 /* RTD */
                   1217:            || opcode == 0x4e75                 /* RTS */
                   1218:            || opcode == 0x4e77                 /* RTR */
                   1219:            || opcode == 0x4e76                 /* TRAPV */
                   1220:            || (opcode & 0xffc0) == 0x4e80      /* JSR */
                   1221:            || (opcode & 0xffc0) == 0x4ec0      /* JMP */
                   1222:            || (opcode & 0xff00) == 0x6100  /* BSR */
                   1223:            || ((opcode & 0xf000) == 0x6000     /* Bcc */
                   1224:                && cctrue((opcode >> 8) & 0xf))
                   1225:            || ((opcode & 0xf0f0) == 0x5050 /* DBcc */
                   1226:                && !cctrue((opcode >> 8) & 0xf)
                   1227:                && (uae_s16)m68k_dreg(regs, opcode & 7) != 0))
                   1228:        {
1.1.1.4   root     1229:            last_trace_ad = m68k_getpc ();
1.1.1.12  root     1230:            unset_special (SPCFLAG_TRACE);
                   1231:            set_special (SPCFLAG_DOTRACE);
1.1       root     1232:        }
1.1.1.7   root     1233:     } else if (regs.t1) {
                   1234:        last_trace_ad = m68k_getpc ();
1.1.1.12  root     1235:        unset_special (SPCFLAG_TRACE);
                   1236:        set_special (SPCFLAG_DOTRACE);
1.1       root     1237:     }
                   1238: }
                   1239: 
1.1.1.19! root     1240: static int do_specialties (int cycles)
1.1       root     1241: {
1.1.1.9   root     1242:     if (regs.spcflags & SPCFLAG_COPPER)
                   1243:        do_copper ();
                   1244: 
1.1.1.3   root     1245:     /*n_spcinsns++;*/
1.1.1.19! root     1246:     while ((regs.spcflags & SPCFLAG_BLTNASTY) && cycles > 0) {
1.1.1.18  root     1247:        int c = blitnasty();
1.1.1.19! root     1248:        if (!c) {
        !          1249:            cycles -= 2 * CYCLE_UNIT;
        !          1250:            if (cycles < CYCLE_UNIT)
        !          1251:                cycles = 0;
        !          1252:            c = 1;
        !          1253:        }
1.1.1.18  root     1254:        do_cycles (c * CYCLE_UNIT);
1.1.1.9   root     1255:        if (regs.spcflags & SPCFLAG_COPPER)
                   1256:            do_copper ();
1.1.1.3   root     1257:     }
1.1.1.9   root     1258: 
1.1.1.3   root     1259:     run_compiled_code();
                   1260:     if (regs.spcflags & SPCFLAG_DOTRACE) {
1.1.1.4   root     1261:        Exception (9,last_trace_ad);
1.1.1.3   root     1262:     }
                   1263:     while (regs.spcflags & SPCFLAG_STOP) {
1.1.1.13  root     1264:        do_cycles (4 * CYCLE_UNIT);
1.1.1.9   root     1265:        if (regs.spcflags & SPCFLAG_COPPER)
                   1266:            do_copper ();
1.1.1.3   root     1267:        if (regs.spcflags & (SPCFLAG_INT | SPCFLAG_DOINT)){
1.1.1.4   root     1268:            int intr = intlev ();
1.1.1.12  root     1269:            unset_special (SPCFLAG_INT | SPCFLAG_DOINT);
1.1.1.3   root     1270:            if (intr != -1 && intr > regs.intmask) {
1.1.1.4   root     1271:                Interrupt (intr);
1.1.1.3   root     1272:                regs.stopped = 0;
1.1.1.12  root     1273:                unset_special (SPCFLAG_STOP);
1.1.1.2   root     1274:            }
1.1.1.3   root     1275:        }
                   1276:     }
1.1.1.7   root     1277:     if (regs.spcflags & SPCFLAG_TRACE)
                   1278:        do_trace ();
1.1.1.4   root     1279: 
1.1.1.3   root     1280:     if (regs.spcflags & SPCFLAG_DOINT) {
1.1.1.4   root     1281:        int intr = intlev ();
1.1.1.12  root     1282:        unset_special (SPCFLAG_DOINT);
1.1.1.3   root     1283:        if (intr != -1 && intr > regs.intmask) {
1.1.1.4   root     1284:            Interrupt (intr);
1.1.1.3   root     1285:            regs.stopped = 0;
                   1286:        }
                   1287:     }
                   1288:     if (regs.spcflags & SPCFLAG_INT) {
1.1.1.12  root     1289:        unset_special (SPCFLAG_INT);
                   1290:        set_special (SPCFLAG_DOINT);
1.1.1.3   root     1291:     }
1.1.1.4   root     1292:     if (regs.spcflags & (SPCFLAG_BRK | SPCFLAG_MODE_CHANGE)) {
1.1.1.12  root     1293:        unset_special (SPCFLAG_BRK | SPCFLAG_MODE_CHANGE);
1.1.1.3   root     1294:        return 1;
1.1.1.2   root     1295:     }
1.1.1.3   root     1296:     return 0;
1.1.1.2   root     1297: }
                   1298: 
1.1.1.8   root     1299: /* It's really sad to have two almost identical functions for this, but we
                   1300:    do it all for performance... :( */
1.1.1.4   root     1301: static void m68k_run_1 (void)
1.1.1.2   root     1302: {
1.1.1.12  root     1303: #ifdef DEBUG_PREFETCH
                   1304:     uae_u8 saved_bytes[20];
                   1305:     uae_u16 *oldpcp;
                   1306: #endif
1.1.1.3   root     1307:     for (;;) {
1.1.1.4   root     1308:        int cycles;
1.1.1.8   root     1309:        uae_u32 opcode = get_iword_prefetch (0);
1.1.1.12  root     1310: #ifdef DEBUG_PREFETCH
1.1.1.8   root     1311:        if (get_ilong (0) != do_get_mem_long (&regs.prefetch)) {
1.1.1.17  root     1312:            write_log ("Prefetch differs from memory.\n");
1.1.1.8   root     1313:            debugging = 1;
                   1314:            return;
                   1315:        }
1.1.1.12  root     1316:        oldpcp = regs.pc_p;
                   1317:        memcpy (saved_bytes, regs.pc_p, 20);
1.1.1.8   root     1318: #endif
                   1319:        /* assert (!regs.stopped && !(regs.spcflags & SPCFLAG_STOP)); */
                   1320: /*     regs_backup[backup_pointer = (backup_pointer + 1) % 16] = regs;*/
                   1321: #if COUNT_INSTRS == 2
                   1322:        if (table68k[opcode].handler != -1)
                   1323:            instrcount[table68k[opcode].handler]++;
                   1324: #elif COUNT_INSTRS == 1
                   1325:        instrcount[opcode]++;
                   1326: #endif
                   1327: #if defined X86_ASSEMBLY
                   1328:        __asm__ __volatile__("\tcall *%%ebx"
                   1329:                             : "=&a" (cycles) : "b" (cpufunctbl[opcode]), "0" (opcode)
                   1330:                             : "%edx", "%ecx",
                   1331:                             "%esi", "%edi", "%ebp", "memory", "cc");
                   1332: #else
                   1333:        cycles = (*cpufunctbl[opcode])(opcode);
                   1334: #endif
1.1.1.12  root     1335: #ifdef DEBUG_PREFETCH
                   1336:        if (memcmp (saved_bytes, oldpcp, 20) != 0) {
1.1.1.17  root     1337:            write_log ("Self-modifying code detected.\n");
1.1.1.12  root     1338:            set_special (SPCFLAG_BRK);
                   1339:            debugging = 1;
                   1340:        }
                   1341: #endif
1.1.1.8   root     1342:        /*n_insns++;*/
                   1343:        cycles &= cycles_mask;
                   1344:        cycles |= cycles_val;
                   1345:        do_cycles (cycles);
                   1346:        if (regs.spcflags) {
1.1.1.19! root     1347:            if (do_specialties (cycles))
1.1.1.8   root     1348:                return;
                   1349:        }
                   1350:     }
                   1351: }
                   1352: 
1.1.1.12  root     1353: #define DEBUG_PREFETCH
                   1354: 
1.1.1.8   root     1355: /* Same thing, but don't use prefetch to get opcode.  */
                   1356: static void m68k_run_2 (void)
                   1357: {
                   1358:     for (;;) {
                   1359:        int cycles;
                   1360:        uae_u32 opcode = get_iword (0);
1.1.1.12  root     1361: 
1.1.1.2   root     1362:        /* assert (!regs.stopped && !(regs.spcflags & SPCFLAG_STOP)); */
                   1363: /*     regs_backup[backup_pointer = (backup_pointer + 1) % 16] = regs;*/
1.1.1.3   root     1364: #if COUNT_INSTRS == 2
1.1.1.8   root     1365:        if (table68k[opcode].handler != -1)
                   1366:            instrcount[table68k[opcode].handler]++;
1.1.1.3   root     1367: #elif COUNT_INSTRS == 1
1.1.1.2   root     1368:        instrcount[opcode]++;
                   1369: #endif
1.1.1.8   root     1370: #if defined X86_ASSEMBLY
1.1.1.3   root     1371:        __asm__ __volatile__("\tcall *%%ebx"
1.1.1.4   root     1372:                             : "=&a" (cycles) : "b" (cpufunctbl[opcode]), "0" (opcode)
1.1.1.3   root     1373:                             : "%edx", "%ecx",
                   1374:                             "%esi", "%edi", "%ebp", "memory", "cc");
1.1.1.2   root     1375: #else
1.1.1.4   root     1376:        cycles = (*cpufunctbl[opcode])(opcode);
1.1.1.2   root     1377: #endif
1.1.1.12  root     1378: 
1.1.1.2   root     1379:        /*n_insns++;*/
1.1.1.4   root     1380:        cycles &= cycles_mask;
                   1381:        cycles |= cycles_val;
1.1.1.19! root     1382:         do_cycles (cycles);
1.1.1.2   root     1383:        if (regs.spcflags) {
1.1.1.19! root     1384:            if (do_specialties (cycles))
1.1       root     1385:                return;
                   1386:        }
                   1387:     }
                   1388: }
                   1389: 
                   1390: #ifdef X86_ASSEMBLY
1.1.1.9   root     1391: STATIC_INLINE void m68k_run1 (void (*func)(void))
1.1       root     1392: {
                   1393:     /* Work around compiler bug: GCC doesn't push %ebp in m68k_run_1. */
1.1.1.8   root     1394:     __asm__ __volatile__ ("pushl %%ebp\n\tcall *%0\n\tpopl %%ebp"
                   1395:                          : : "r" (func) : "%eax", "%edx", "%ecx", "memory", "cc");
1.1       root     1396: }
1.1.1.2   root     1397: #else
1.1.1.13  root     1398: #define m68k_run1(F) (F) ()
1.1.1.2   root     1399: #endif
                   1400: 
1.1.1.3   root     1401: int in_m68k_go = 0;
1.1       root     1402: 
1.1.1.4   root     1403: void m68k_go (int may_quit)
1.1       root     1404: {
1.1.1.3   root     1405:     if (in_m68k_go || !may_quit) {
1.1.1.4   root     1406:        write_log ("Bug! m68k_go is not reentrant.\n");
                   1407:        abort ();
1.1.1.3   root     1408:     }
1.1.1.4   root     1409: 
                   1410:     reset_frame_rate_hack ();
                   1411:     update_68k_cycles ();
                   1412: 
1.1.1.3   root     1413:     in_m68k_go++;
                   1414:     for (;;) {
                   1415:        if (quit_program > 0) {
                   1416:            if (quit_program == 1)
1.1       root     1417:                break;
1.1.1.3   root     1418:            quit_program = 0;
1.1.1.18  root     1419:            if (savestate_state == STATE_RESTORE) {
                   1420:                restore_state (savestate_filename);
                   1421: #if 0
                   1422:                activate_debugger ();
                   1423: #endif
                   1424:            }
1.1.1.4   root     1425:            m68k_reset ();
                   1426:            reset_all_systems ();
                   1427:            customreset ();
1.1.1.14  root     1428:            /* We may have been restoring state, but we're done now.  */
                   1429:            savestate_restore_finish ();
                   1430:            handle_active_events ();
1.1.1.18  root     1431:            if (regs.spcflags)
1.1.1.19! root     1432:                do_specialties (0);
1.1       root     1433:        }
1.1.1.14  root     1434: 
1.1.1.3   root     1435:        if (debugging)
1.1.1.4   root     1436:            debug ();
1.1.1.8   root     1437:        m68k_run1 (currprefs.cpu_compatible ? m68k_run_1 : m68k_run_2);
1.1       root     1438:     }
1.1.1.3   root     1439:     in_m68k_go--;
1.1       root     1440: }
                   1441: 
1.1.1.4   root     1442: static void m68k_verify (uaecptr addr, uaecptr *nextpc)
1.1       root     1443: {
1.1.1.3   root     1444:     uae_u32 opcode, val;
                   1445:     struct instr *dp;
                   1446: 
                   1447:     opcode = get_iword_1(0);
                   1448:     last_op_for_exception_3 = opcode;
                   1449:     m68kpc_offset = 2;
                   1450: 
1.1.1.8   root     1451:     if (cpufunctbl[opcode] == op_illg_1) {
1.1.1.3   root     1452:        opcode = 0x4AFC;
                   1453:     }
                   1454:     dp = table68k + opcode;
                   1455: 
                   1456:     if (dp->suse) {
                   1457:        if (!verify_ea (dp->sreg, dp->smode, dp->size, &val)) {
                   1458:            Exception (3, 0);
                   1459:            return;
                   1460:        }
                   1461:     }
                   1462:     if (dp->duse) {
                   1463:        if (!verify_ea (dp->dreg, dp->dmode, dp->size, &val)) {
                   1464:            Exception (3, 0);
                   1465:            return;
                   1466:        }
                   1467:     }
                   1468: }
                   1469: 
1.1.1.11  root     1470: void m68k_disasm (FILE *f, uaecptr addr, uaecptr *nextpc, int cnt)
1.1.1.3   root     1471: {
                   1472:     uaecptr newpc = 0;
1.1.1.4   root     1473:     m68kpc_offset = addr - m68k_getpc ();
                   1474:     while (cnt-- > 0) {
1.1       root     1475:        char instrname[20],*ccpt;
                   1476:        int opwords;
1.1.1.3   root     1477:        uae_u32 opcode;
1.1       root     1478:        struct mnemolookup *lookup;
                   1479:        struct instr *dp;
1.1.1.11  root     1480:        fprintf (f, "%08lx: ", m68k_getpc () + m68kpc_offset);
1.1.1.3   root     1481:        for (opwords = 0; opwords < 5; opwords++){
1.1.1.11  root     1482:            fprintf (f, "%04x ", get_iword_1 (m68kpc_offset + opwords*2));
1.1       root     1483:        }
1.1.1.4   root     1484:        opcode = get_iword_1 (m68kpc_offset);
1.1.1.3   root     1485:        m68kpc_offset += 2;
1.1.1.8   root     1486:        if (cpufunctbl[opcode] == op_illg_1) {
1.1       root     1487:            opcode = 0x4AFC;
                   1488:        }
                   1489:        dp = table68k + opcode;
                   1490:        for (lookup = lookuptab;lookup->mnemo != dp->mnemo; lookup++)
                   1491:            ;
1.1.1.3   root     1492: 
1.1.1.4   root     1493:        strcpy (instrname, lookup->name);
                   1494:        ccpt = strstr (instrname, "cc");
1.1       root     1495:        if (ccpt != 0) {
1.1.1.4   root     1496:            strncpy (ccpt, ccnames[dp->cc], 2);
1.1       root     1497:        }
1.1.1.11  root     1498:        fprintf (f, "%s", instrname);
1.1.1.3   root     1499:        switch (dp->size){
1.1.1.11  root     1500:         case sz_byte: fprintf (f, ".B "); break;
                   1501:         case sz_word: fprintf (f, ".W "); break;
                   1502:         case sz_long: fprintf (f, ".L "); break;
                   1503:         default: fprintf (f, "   "); break;
1.1       root     1504:        }
                   1505: 
                   1506:        if (dp->suse) {
1.1.1.4   root     1507:            newpc = m68k_getpc () + m68kpc_offset;
1.1.1.11  root     1508:            newpc += ShowEA (f, dp->sreg, dp->smode, dp->size, 0);
1.1       root     1509:        }
                   1510:        if (dp->suse && dp->duse)
1.1.1.11  root     1511:            fprintf (f, ",");
1.1       root     1512:        if (dp->duse) {
1.1.1.4   root     1513:            newpc = m68k_getpc () + m68kpc_offset;
1.1.1.11  root     1514:            newpc += ShowEA (f, dp->dreg, dp->dmode, dp->size, 0);
1.1       root     1515:        }
                   1516:        if (ccpt != 0) {
                   1517:            if (cctrue(dp->cc))
1.1.1.11  root     1518:                fprintf (f, " == %08lx (TRUE)", newpc);
1.1.1.3   root     1519:            else
1.1.1.11  root     1520:                fprintf (f, " == %08lx (FALSE)", newpc);
1.1       root     1521:        } else if ((opcode & 0xff00) == 0x6100) /* BSR */
1.1.1.11  root     1522:            fprintf (f, " == %08lx", newpc);
                   1523:        fprintf (f, "\n");
1.1       root     1524:     }
1.1.1.4   root     1525:     if (nextpc)
                   1526:        *nextpc = m68k_getpc () + m68kpc_offset;
1.1       root     1527: }
                   1528: 
1.1.1.11  root     1529: void m68k_dumpstate (FILE *f, uaecptr *nextpc)
1.1       root     1530: {
                   1531:     int i;
1.1.1.3   root     1532:     for (i = 0; i < 8; i++){
1.1.1.11  root     1533:        fprintf (f, "D%d: %08lx ", i, m68k_dreg(regs, i));
                   1534:        if ((i & 3) == 3) fprintf (f, "\n");
1.1.1.3   root     1535:     }
                   1536:     for (i = 0; i < 8; i++){
1.1.1.11  root     1537:        fprintf (f, "A%d: %08lx ", i, m68k_areg(regs, i));
                   1538:        if ((i & 3) == 3) fprintf (f, "\n");
1.1       root     1539:     }
1.1.1.2   root     1540:     if (regs.s == 0) regs.usp = m68k_areg(regs, 7);
                   1541:     if (regs.s && regs.m) regs.msp = m68k_areg(regs, 7);
                   1542:     if (regs.s && regs.m == 0) regs.isp = m68k_areg(regs, 7);
1.1.1.11  root     1543:     fprintf (f, "USP=%08lx ISP=%08lx MSP=%08lx VBR=%08lx\n",
                   1544:             regs.usp,regs.isp,regs.msp,regs.vbr);
                   1545:     fprintf (f, "T=%d%d S=%d M=%d X=%d N=%d Z=%d V=%d C=%d IMASK=%d\n",
                   1546:             regs.t1, regs.t0, regs.s, regs.m,
                   1547:             GET_XFLG, GET_NFLG, GET_ZFLG, GET_VFLG, GET_CFLG, regs.intmask);
1.1.1.3   root     1548:     for (i = 0; i < 8; i++){
1.1.1.11  root     1549:        fprintf (f, "FP%d: %g ", i, regs.fp[i]);
                   1550:        if ((i & 3) == 3) fprintf (f, "\n");
1.1       root     1551:     }
1.1.1.11  root     1552:     fprintf (f, "N=%d Z=%d I=%d NAN=%d\n",
                   1553:             (regs.fpsr & 0x8000000) != 0,
                   1554:             (regs.fpsr & 0x4000000) != 0,
                   1555:             (regs.fpsr & 0x2000000) != 0,
                   1556:             (regs.fpsr & 0x1000000) != 0);
1.1.1.3   root     1557:     if (currprefs.cpu_compatible)
1.1.1.11  root     1558:        fprintf (f, "prefetch %08lx\n", (unsigned long)do_get_mem_long(&regs.prefetch));
1.1.1.3   root     1559: 
1.1.1.11  root     1560:     m68k_disasm (f, m68k_getpc (), nextpc, 1);
1.1.1.4   root     1561:     if (nextpc)
1.1.1.11  root     1562:        fprintf (f, "next PC: %08lx\n", *nextpc);
1.1       root     1563: }
1.1.1.14  root     1564: 
                   1565: 
                   1566: /* CPU save/restore code */
                   1567: 
                   1568: #define CPUTYPE_EC 1
                   1569: #define CPUMODE_HALT 1
                   1570: 
                   1571: uae_u8 *restore_cpu (uae_u8 *src)
                   1572: {
                   1573:     int i,model,flags;
                   1574:     uae_u32 l;
                   1575: 
                   1576:     model = restore_u32();
                   1577:     switch (model) {
                   1578:     case 68000:
                   1579:        currprefs.cpu_level = 0;
                   1580:        break;
                   1581:     case 68010:
                   1582:        currprefs.cpu_level = 1;
                   1583:        break;
                   1584:     case 68020:
                   1585:        currprefs.cpu_level = 2;
                   1586:        break;
                   1587:     default:
                   1588:        write_log ("Unknown cpu type %d\n", model);
                   1589:        break;
                   1590:     }
                   1591: 
                   1592:     flags = restore_u32();
                   1593:     currprefs.address_space_24 = 0;
                   1594:     if (flags & CPUTYPE_EC)
                   1595:        currprefs.address_space_24 = 1;
                   1596:     for (i = 0; i < 15; i++)
                   1597:        regs.regs[i] = restore_u32 ();
                   1598:     regs.pc = restore_u32 ();
1.1.1.18  root     1599:     /* We don't actually use this - we deliberately set prefetch_pc to a
                   1600:        zero so that prefetch isn't used for the first insn after a state
                   1601:        restore.  */
1.1.1.14  root     1602:     regs.prefetch = restore_u32 ();
1.1.1.18  root     1603:     regs.prefetch_pc = regs.pc + 128;
1.1.1.14  root     1604:     regs.usp = restore_u32 ();
                   1605:     regs.isp = restore_u32 ();
                   1606:     regs.sr = restore_u16 ();
                   1607:     l = restore_u32();
1.1.1.18  root     1608:     if (l & CPUMODE_HALT) {
1.1.1.14  root     1609:        regs.stopped = 1;
1.1.1.18  root     1610:        set_special (SPCFLAG_STOP);
                   1611:     } else
1.1.1.14  root     1612:        regs.stopped = 0;
                   1613:     if (model >= 68010) {
                   1614:        regs.dfc = restore_u32 ();
                   1615:        regs.sfc = restore_u32 ();
                   1616:        regs.vbr = restore_u32 ();
                   1617:     }
                   1618:     if (model >= 68020) {
                   1619:        caar = restore_u32 ();
                   1620:        cacr = restore_u32 ();
                   1621:        regs.msp = restore_u32 ();
                   1622:     }
                   1623:     write_log ("CPU %d%s%03d, PC=%08.8X\n",
                   1624:               model/1000, flags & 1 ? "EC" : "", model % 1000, regs.pc);
                   1625: 
                   1626:     return src;
                   1627: }
                   1628: 
                   1629: static int cpumodel[] = { 68000, 68010, 68020, 68020 };
                   1630: 
                   1631: uae_u8 *save_cpu (int *len)
                   1632: {
                   1633:     uae_u8 *dstbak,*dst;
                   1634:     int model,i;
                   1635: 
                   1636:     dstbak = dst = malloc(4+4+15*4+4+4+4+4+2+4+4+4+4+4+4+4);
                   1637:     model = cpumodel[currprefs.cpu_level];
                   1638:     save_u32 (model);                                  /* MODEL */
                   1639:     save_u32 (currprefs.address_space_24 ? 1 : 0);     /* FLAGS */
                   1640:     for(i = 0;i < 15; i++) save_u32 (regs.regs[i]);    /* D0-D7 A0-A6 */
                   1641:     save_u32 (m68k_getpc ());                          /* PC */
                   1642:     save_u32 (regs.prefetch);                          /* prefetch */
                   1643:     MakeSR ();
                   1644:     save_u32 (!regs.s ? regs.regs[15] : regs.usp);     /* USP */
                   1645:     save_u32 (regs.s ? regs.regs[15] : regs.isp);      /* ISP */
                   1646:     save_u16 (regs.sr);                                /* SR/CCR */
                   1647:     save_u32 (regs.stopped ? CPUMODE_HALT : 0);        /* flags */
                   1648:     if(model >= 68010) {
                   1649:        save_u32 (regs.dfc);                            /* DFC */
                   1650:        save_u32 (regs.sfc);                            /* SFC */
                   1651:        save_u32 (regs.vbr);                            /* VBR */
                   1652:     }
                   1653:     if(model >= 68020) {
                   1654:        save_u32 (caar);                                /* CAAR */
                   1655:        save_u32 (cacr);                                /* CACR */
                   1656:        save_u32 (regs.msp);                            /* MSP */
                   1657:     }
                   1658:     *len = dst - dstbak;
                   1659:     return dstbak;
                   1660: }

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