Annotation of gcc/config/i386.md, revision 1.1.1.3

1.1       root        1: ;; GCC machine description for Intel 80386.
                      2: ;; Copyright (C) 1988 Free Software Foundation, Inc.
                      3: ;; Mostly by William Schelter.
                      4: 
                      5: ;; This file is part of GNU CC.
                      6: 
                      7: ;; GNU CC is free software; you can redistribute it and/or modify
                      8: ;; it under the terms of the GNU General Public License as published by
                      9: ;; the Free Software Foundation; either version 1, or (at your option)
                     10: ;; any later version.
                     11: 
                     12: ;; GNU CC is distributed in the hope that it will be useful,
                     13: ;; but WITHOUT ANY WARRANTY; without even the implied warranty of
                     14: ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
                     15: ;; GNU General Public License for more details.
                     16: 
                     17: ;; You should have received a copy of the GNU General Public License
                     18: ;; along with GNU CC; see the file COPYING.  If not, write to
                     19: ;; the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
                     20: 
                     21: 
                     22: ;;- instruction definitions
                     23: 
                     24: ;;- @@The original PO technology requires these to be ordered by speed,
                     25: ;;- @@    so that assigner will pick the fastest.
                     26: 
                     27: ;;- See file "rtl.def" for documentation on define_insn, match_*, et. al.
                     28: 
                     29: ;;- When naming insn's (operand 0 of define_insn) be careful about using
                     30: ;;- names from other targets machine descriptions.
                     31: 
                     32: ;;- cpp macro #define NOTICE_UPDATE_CC in file tm.h handles condition code
                     33: ;;- updates for most instructions.
                     34: 
                     35: ;;- Operand classes for the register allocator:
                     36: ;;- 'a' for eax
                     37: ;;- 'd' for edx
                     38: ;;- 'c' for ecx
                     39: ;;- 'b' for ebx
                     40: ;;- 'f' for anything in FLOAT_REGS
                     41: ;;- 'r' any (non-floating-point) register
                     42: ;;- 'q' regs that allow byte operations (A, B, C and D)
                     43: ;;- 'A' A and D registers
                     44: 
                     45: ;; the special asm out single letter directives following a '%' are:
                     46: ;; 'z' mov%z1 would be movl, movw, or movb depending on the mode of operands[1]
                     47: ;; 's' output a '*'
                     48: ;; 'w' If the operand is a REG, it uses the mode size to determine the
                     49: ;;      printing of the reg
                     50: 
                     51: 
                     52: ;; Put tstsi first among test insns so it matches a CONST_INT operand.
                     53: 
                     54: (define_insn "tstsi"
                     55:   [(set (cc0)
                     56:        (match_operand:SI 0 "general_operand" "rm"))]
                     57:   ""
                     58:   "*
                     59: {
                     60:   operands[1] = const0_rtx;
                     61:   if (REG_P (operands[0]))
                     62:     return AS2 (test%L0,%0,%0);
                     63:   return AS2 (cmp%L0,%1,%0);
                     64: }")
                     65: 
                     66: (define_insn "tsthi"
                     67:   [(set (cc0)
                     68:        (match_operand:HI 0 "general_operand" "rm"))]
                     69:   ""
                     70:   "*
                     71: {
                     72:   operands[1] = const0_rtx;
                     73:   if (REG_P (operands[0]))
                     74:     return AS2 (test%W0,%0,%0);
                     75:   return AS2 (cmp%W0,%1,%0);
                     76: }")
                     77: 
                     78: (define_insn "tstqi"
                     79:   [(set (cc0)
                     80:        (match_operand:QI 0 "general_operand" "qm"))]
                     81:   ""
                     82:   "*
                     83: {
                     84:   operands[1] = const0_rtx;
                     85:   if (REG_P (operands[0]))
                     86:     return AS2 (test%B0,%0,%0);
                     87:   return AS2 (cmp%B0,%1,%0);
                     88: }")
                     89: 
                     90: (define_insn "tstsf"
                     91:   [(set (cc0)
                     92:        (match_operand:SF 0 "general_operand" "rm,f"))
1.1.1.3 ! root       93:    (clobber (reg:SI 0))]
1.1       root       94:   "TARGET_80387"
                     95:   "*
                     96: {
                     97:   rtx xops[1];
                     98:   if (!FP_REG_P (operands[0]))
                     99:     fp_push_sf (operands[0]);
                    100: /*  fp_pop_level--; */
                    101:   xops[0] = FP_TOP;
                    102:   cc_status.flags |= CC_IN_80387;
                    103:   if (FP_REG_P (operands[0]) && ! top_dead_p (insn))
                    104:     output_asm_insn (\"ftst\;fnstsw %R0ax\;sahf\", xops);
                    105:   else
                    106:     output_asm_insn (\"ftst\;fstp %0(0)\;fnstsw %R0ax\;sahf\", xops);
                    107:   RETCOM (testsf);
                    108: }")
                    109: 
                    110: (define_insn "tstdf"
                    111:   [(set (cc0)
                    112:        (match_operand:DF 0 "general_operand" "rm,f"))
1.1.1.3 ! root      113:    (clobber (reg:SI 0))
1.1       root      114:    ]
                    115:   "TARGET_80387"
                    116:   "*
                    117: {
                    118:   rtx xops[1];
                    119:   if (!FP_REG_P (operands[0]))
                    120:     fp_push_df (operands[0]);
                    121: /*  fp_pop_level--; */
                    122:   xops[0] = FP_TOP;
                    123:   cc_status.flags |= CC_IN_80387;
                    124:   if (FP_REG_P (operands[0]) && ! top_dead_p (insn))
                    125:     output_asm_insn (\"ftst\;fnstsw %R0ax\;sahf\", xops);
                    126:   else
                    127:     output_asm_insn (\"ftst\;fstp %0(0)\;fnstsw %R0ax\;sahf\", xops);
                    128:   RETCOM (testdf);
                    129: }")
                    130: 
                    131: ;;- compare instructions
                    132: 
                    133: ;; Put cmpsi first among compare insns so it matches two CONST_INT operands.
                    134: 
                    135: (define_insn "cmpsi"
                    136:   [(set (cc0)
                    137:        (compare (match_operand:SI 0 "general_operand" "mr,ri")
                    138:                 (match_operand:SI 1 "general_operand" "ri,mr")))]
                    139:   ""
                    140:   "*
                    141: {
                    142:   if (REG_P (operands[1])
                    143:       || (!REG_P (operands[0]) && GET_CODE (operands[0]) != MEM))
                    144:     {
                    145:       cc_status.flags |= CC_REVERSED;
                    146:       return AS2 (cmp%L0,%0,%1);
                    147:     }
                    148:   return AS2 (cmp%L0,%1,%0);
                    149: }")
                    150: 
                    151: (define_insn "cmphi"
                    152:   [(set (cc0)
                    153:        (compare (match_operand:HI 0 "general_operand" "mr,ri")
                    154:                 (match_operand:HI 1 "general_operand" "ri,mr")))]
                    155:   ""
                    156:   "*
                    157: {
                    158:   if (REG_P (operands[1])
                    159:       || (!REG_P (operands[0]) && GET_CODE (operands[0]) != MEM))
                    160:     {
                    161:       cc_status.flags |= CC_REVERSED;
                    162:       return AS2 (cmp%W0,%0,%1);
                    163:     }
                    164:   return AS2 (cmp%W0,%1,%0);
                    165: }")
                    166: 
                    167: (define_insn "cmpqi"
                    168:   [(set (cc0)
                    169:        (compare (match_operand:QI 0 "general_operand" "qn,mq")
                    170:                 (match_operand:QI 1 "general_operand" "qm,nq")))]
                    171:   ""
                    172:   "*
                    173: {
                    174:   if (REG_P (operands[1])
                    175:       || (!REG_P (operands[0]) && GET_CODE (operands[0]) != MEM))
                    176:     {
                    177:       cc_status.flags |= CC_REVERSED;
                    178:       return AS2 (cmp%B0,%0,%1);
                    179:     }
                    180:   return AS2 (cmp%B0,%1,%0);
                    181: }")
                    182: 
                    183: (define_insn "cmpdf"
                    184:   [(set (cc0)
                    185:        (compare (match_operand:DF 0 "general_operand" "m,f*r,m,f,r,!*r")
                    186:                 (match_operand:DF 1 "general_operand" "m,m,f*r,r,f,*r")))
                    187:       (clobber (reg:SI 0))]
                    188:   "TARGET_80387"
                    189:   "*
                    190: {
                    191:   if (FP_REG_P (operands[0]))
                    192:     {
                    193:       rtx tem = operands[1];
                    194:       operands[1] = operands[0];
                    195:       operands[0] = tem;
                    196:       cc_status.flags |= CC_REVERSED;
                    197:     }
                    198:   if (! FP_REG_P (operands[1]))
                    199:     output_movdf (FP_TOP, operands[1]);
                    200:   output_movdf (FP_TOP, operands[0]);
                    201: /*  fp_pop_level--;
                    202:   fp_pop_level--; */
                    203:   cc_status.flags |= CC_IN_80387;
                    204:   return \"fcompp\;fnstsw %R0ax\;sahf\";
                    205: }")
                    206: 
                    207: (define_insn "cmpsf"
                    208:   [(set (cc0)
                    209:        (compare (match_operand:SF 0 "general_operand" "m,f*r,m,f,r,!*r")
                    210:                 (match_operand:SF 1 "general_operand" "m,m,f*r,r,f,*r")))
                    211:    (clobber (reg:SI 0))]
                    212:   "TARGET_80387"
                    213:   "*
                    214: {
                    215:   if (FP_REG_P (operands[0]))
                    216:     {
                    217:       rtx tem = operands[1];
                    218:       operands[1] = operands[0];
                    219:       operands[0] = tem;
                    220:       cc_status.flags |= CC_REVERSED;
                    221:     }
                    222:   if (! FP_REG_P (operands[1]))
                    223:     output_movsf (FP_TOP, operands[1]);
                    224:   output_movsf (FP_TOP, operands[0]);
                    225: /*  fp_pop_level--;
                    226:   fp_pop_level--; */
                    227:   cc_status.flags |= CC_IN_80387;
                    228:   return \"fcompp\;fnstsw %R0ax\;sahf\";
                    229: }")
                    230: 
                    231: ;; logical compare
                    232: (define_insn ""
                    233:   [(set (cc0)
                    234:        (and:SI (match_operand:SI 0 "general_operand" "rm,ri")
                    235:                (match_operand:SI 1 "general_operand" "ri,rm")))]
                    236:   ""
                    237:   "*
                    238: {
1.1.1.3 ! root      239:   if (CONSTANT_P (operands[1]) || GET_CODE (operands[0]) == MEM)
1.1       root      240:     return AS2 (test%L0,%1,%0);
                    241:   return AS2 (test%L0,%0,%1);
                    242: }")
                    243: 
                    244: (define_insn ""
                    245:   [(set (cc0)
                    246:        (and:HI (match_operand:HI 0 "general_operand" "rm,ri")
                    247:                (match_operand:HI 1 "general_operand" "ri,rm")))]
                    248:   ""
                    249:   "*
                    250: {
1.1.1.3 ! root      251:   if (CONSTANT_P (operands[1]) || GET_CODE (operands[0]) == MEM)
1.1       root      252:     return AS2 (test%W0,%1,%0);
                    253:   return AS2 (test%W0,%0,%1);
                    254: }")
                    255: 
                    256: (define_insn ""
                    257:   [(set (cc0)
                    258:        (and:QI (match_operand:QI 0 "general_operand" "qm,qi")
                    259:                (match_operand:QI 1 "general_operand" "qi,qm")))]
                    260:   ""
                    261:   "*
                    262: {
1.1.1.3 ! root      263:   if (CONSTANT_P (operands[1]) || GET_CODE (operands[0]) == MEM)
1.1       root      264:     return AS2 (test%B0,%1,%0);
                    265:   return AS2 (test%B0,%0,%1);
                    266: }")
                    267: 
                    268: ;; move instructions.
                    269: ;; There is one for each machine mode,
                    270: ;; and each is preceded by a corresponding push-insn pattern
                    271: ;; (since pushes are not general_operands on the 386).
                    272: 
                    273: (define_insn ""
                    274:   [(set (match_operand:SI 0 "push_operand" "=<")
                    275:        (match_operand:SI 1 "general_operand" "g"))]
                    276:   ""
                    277:   "push%L0 %1")
                    278: 
                    279: ;; General case of fullword move.
                    280: (define_insn "movsi"
                    281:   [(set (match_operand:SI 0 "general_operand" "=g,r")
                    282:        (match_operand:SI 1 "general_operand" "ri,m"))]
                    283:   ""
                    284:   "*
                    285: {
                    286:   rtx link;
                    287:   if (operands[1] == const0_rtx && REG_P (operands[0]))
                    288:     return \"xor%L0 %0,%0\";
                    289:   if (operands[1] == const1_rtx
                    290:       && (link = find_reg_note (insn, REG_WAS_0, 0))
                    291:       /* Make sure the insn that stored the 0 is still present.  */
                    292:       && ! XEXP (link, 0)->volatil
                    293:       && GET_CODE (XEXP (link, 0)) != NOTE
                    294:       /* Make sure cross jumping didn't happen here.  */
                    295:       && no_labels_between_p (XEXP (link, 0), insn))
                    296:     /* Fastest way to change a 0 to a 1.  */
                    297:     return \"inc%L0 %0\";
                    298:   return \"mov%L0 %1,%0\";
                    299: }")
                    300: 
                    301: (define_insn ""
                    302:   [(set (match_operand:HI 0 "push_operand" "=<")
                    303:        (match_operand:HI 1 "general_operand" "g"))]
                    304:   ""
                    305:   "push%W0 %1")
                    306: 
                    307: (define_insn "movhi"
                    308:   [(set (match_operand:HI 0 "general_operand" "=g,r")
                    309:        (match_operand:HI 1 "general_operand" "ri,m"))]
                    310:   ""
                    311:   "*
                    312: {
                    313:   rtx link;
                    314:   if (operands[1] == const0_rtx && REG_P (operands[0]))
                    315:     return \"xor%W0 %0,%0\";
                    316:   if (operands[1] == const1_rtx
                    317:       && (link = find_reg_note (insn, REG_WAS_0, 0))
                    318:       /* Make sure the insn that stored the 0 is still present.  */
                    319:       && ! XEXP (link, 0)->volatil
                    320:       && GET_CODE (XEXP (link, 0)) != NOTE
                    321:       /* Make sure cross jumping didn't happen here.  */
                    322:       && no_labels_between_p (XEXP (link, 0), insn))
                    323:     /* Fastest way to change a 0 to a 1.  */
                    324:     return \"inc%W0 %0\";
                    325:   return \"mov%W0 %1,%0\";
                    326: }")
                    327: 
                    328: ;; emit_push_insn when it calls move_by_pieces
                    329: ;; requires an insn to "push a byte".
                    330: ;; But actually we use pushw, which has the effect of rounding
                    331: ;; the amount pushed up to a halfword.
                    332: (define_insn ""
                    333:   [(set (match_operand:QI 0 "push_operand" "=<")
                    334:        (match_operand:QI 1 "general_operand" "q"))]
                    335:   ""
                    336:   "*
                    337: {
                    338:   operands[1] = gen_rtx (REG, HImode, REGNO (operands[1]));
                    339:   return \"push%W0 %1\";
                    340: }")
                    341: 
                    342: (define_insn "movqi"
                    343:   [(set (match_operand:QI 0 "general_operand" "=q,*r,m")
                    344:        (match_operand:QI 1 "general_operand" "*g,q,qi"))]
                    345:   ""
                    346:   "*
                    347: {
                    348:   rtx link;
                    349:   if (operands[1] == const0_rtx && REG_P (operands[0]))
                    350:     return \"xor%B0 %0,%0\";
                    351:   if (operands[1] == const1_rtx
                    352:       && (link = find_reg_note (insn, REG_WAS_0, 0))
                    353:       /* Make sure the insn that stored the 0 is still present.  */
                    354:       && ! XEXP (link, 0)->volatil
                    355:       && GET_CODE (XEXP (link, 0)) != NOTE
                    356:       /* Make sure cross jumping didn't happen here.  */
                    357:       && no_labels_between_p (XEXP (link, 0), insn))
                    358:     /* Fastest way to change a 0 to a 1.  */
                    359:     return \"inc%B0 %0\";
                    360:   /* If mov%B0 isn't allowed for one of these regs, use mov%W0.  */
                    361:   if (NON_QI_REG_P (operands[0]) || NON_QI_REG_P (operands[1]))
                    362:     return (AS2 (mov%W0,%w1,%w0));
                    363:   return (AS2 (mov%B0,%1,%0));
                    364: }")
                    365: 
                    366: ; I suspect nothing can ever match this ???
                    367: ;(define_insn ""
                    368: ;  [(set (match_operand:SF 0 "general_operand" "rm")
                    369: ;      (match_operand:SF 1 "general_operand" "f"))
                    370: ;   (clobber (reg:SF 8))]
                    371: ;  ""
                    372: ;  "*
                    373: ;{
                    374: ;  output_asm_insn ("???", operands);
                    375: ;  fpop_sf (operands[0]);
                    376: ;  RETCOM (movsf_clobber);
                    377: ;}")
                    378: 
                    379: (define_insn ""
                    380:   [(set (match_operand:SF 0 "push_operand" "=<,<")
                    381:        (match_operand:SF 1 "general_operand" "gF,f"))]
                    382:   ""
                    383:   "*
                    384: {
                    385:   if (FP_REG_P (operands[1]))
                    386:     {
                    387:       rtx xops[3];
                    388:       xops[0] = AT_SP (SFmode);
                    389:       xops[1] = gen_rtx (CONST_INT, VOIDmode, 4);
                    390:       xops[2] = stack_pointer_rtx;
                    391: /*      fp_pop_level--; */
                    392:       output_asm_insn (AS2 (sub%L0,%1,%2), xops);
1.1.1.2   root      393:       if (top_dead_p (insn))
                    394:         output_asm_insn (\"fstp%S0 %0\", xops);
                    395:       else
                    396:         output_asm_insn (\"fst%S0\", xops);
1.1       root      397:       RET;
                    398:     }
                    399:   return \"push%L0 %1\";
                    400: }")
                    401: 
                    402: (define_insn "movsf"
                    403:   [(set (match_operand:SF 0 "general_operand" "=rf,rmf,!rm")
                    404:        (match_operand:SF 1 "general_operand" "m,rf,F"))]
                    405:   ""
                    406:   "*
                    407: {
                    408:   if (FP_REG_P (operands[1])
                    409:       && !FP_REG_P (operands[0])
                    410:       && !top_dead_p (insn))
                    411:     fp_store_sf (operands[0]);
                    412:   else
                    413:     output_movsf (operands[0], operands[1]);
                    414:   RETCOM (movsf);
                    415: }")
                    416: 
                    417: ;;should change to handle the memory operands[1] without doing df push..
                    418: (define_insn ""
                    419:   [(set (match_operand:DF 0 "push_operand" "=<,<")
                    420:        (match_operand:DF 1 "general_operand" "gF,f"))]
                    421:   ""
                    422:   "*
                    423: {
                    424:   if (FP_REG_P (operands[1]))
                    425:     {
                    426:       rtx xops[3];
                    427:       xops[0] = AT_SP (DFmode);
                    428:       xops[1] = gen_rtx (CONST_INT, VOIDmode, 8);
                    429:       xops[2] = stack_pointer_rtx;
                    430: /*      fp_pop_level--; */
                    431:       output_asm_insn (AS2 (sub%L0,%1,%2), xops);
1.1.1.2   root      432:       if (top_dead_p(insn))
                    433:         output_asm_insn (\"fstp%Q0 %0\", xops);
                    434:       else
                    435:         output_asm_insn (\"fst%Q0 %0\", xops);
1.1       root      436:       RETCOM (pushdf);
                    437:     }
                    438:   else
                    439:     return output_move_double (operands);
                    440: }")
                    441: 
                    442: (define_insn "movdf"
                    443:   [(set (match_operand:DF 0 "general_operand" "=&rf,rmf,!rm")
                    444:        (match_operand:DF 1 "general_operand" "m,fr,F"))]
                    445:   ""
                    446:   "*
                    447: {
                    448:   if (FP_REG_P (operands[1])
                    449:       && ! FP_REG_P (operands[0])
                    450:       && ! top_dead_p (insn))
                    451:     fp_store_df (operands[0]);
                    452:   else
                    453:     output_movdf (operands[0], operands[1]);
                    454:   RETCOM (movdf);
                    455: }")
                    456: 
                    457: (define_insn ""
                    458:   [(set (match_operand:DI 0 "push_operand" "=<")
                    459:        (match_operand:DI 1 "general_operand" "roiF"))]
                    460:   ""
                    461:   "*
                    462: {
                    463:   return output_move_double (operands);
                    464: }")
                    465: 
                    466: (define_insn "movdi"
                    467:   [(set (match_operand:DI 0 "general_operand" "=&r,rm")
                    468:        (match_operand:DI 1 "general_operand" "m,riF"))]
                    469:   ""
                    470:   "*
                    471: {
                    472:    return output_move_double (operands);
                    473: }")
                    474: 
                    475: ;; These go after the move instructions
                    476: ;; because the move instructions are better (require no spilling)
                    477: ;; when they can apply.  But these go before the add and subtract insns
                    478: ;; because it is often shorter to use these when both apply.
                    479: 
                    480: ;Lennart Augustsson <[email protected]>
                    481: ;says this pattern just makes slower code:
                    482: ;      pushl   %ebp
                    483: ;      addl    $-80,(%esp)
                    484: ;instead of
                    485: ;      leal    -80(%ebp),%eax
                    486: ;      pushl   %eax
                    487: ;
                    488: ;(define_insn ""
                    489: ;  [(set (match_operand:SI 0 "push_operand" "=<")
                    490: ;      (plus:SI (match_operand:SI 1 "general_operand" "%r")
                    491: ;               (match_operand:SI 2 "general_operand" "ri")))]
                    492: ;  ""
                    493: ;  "*
                    494: ;{
                    495: ;  rtx xops[4];
                    496: ;  xops[0] = operands[0];
                    497: ;  xops[1] = operands[1];
                    498: ;  xops[2] = operands[2];
                    499: ;  xops[3] = gen_rtx (MEM, SImode, stack_pointer_rtx);
                    500: ;  output_asm_insn (\"push%z1 %1\", xops);
                    501: ;  output_asm_insn (AS2 (add%z3,%2,%3), xops);
                    502: ;  RET;
                    503: ;}")
                    504: 
                    505: (define_insn ""
                    506:   [(set (match_operand:SI 0 "general_operand" "=g")
                    507:        (plus:SI (match_operand:SI 1 "general_operand" "0")
                    508:                 (const_int 1)))]
                    509:   ""
                    510:   "inc%L0 %0")
                    511: 
                    512: (define_insn ""
                    513:   [(set (match_operand:SI 0 "general_operand" "=g")
                    514:        (plus:SI (match_operand:SI 1 "general_operand" "0")
                    515:                 (const_int -1)))]
                    516:   ""
                    517:   "dec%L0 %0")
                    518: 
                    519: (define_insn ""
                    520:   [(set (match_operand:SI 0 "general_operand" "=g")
                    521:        (minus:SI (match_operand:SI 1 "general_operand" "0")
                    522:                  (const_int 1)))]
                    523:   ""
                    524:   "dec%L0 %0")
                    525: 
                    526: (define_insn ""
                    527:   [(set (match_operand:SI 0 "register_operand" "=r")
                    528:         (match_operand:QI 1 "address_operand" "p"))]
                    529:   ""
                    530:   "*
                    531: {
                    532:   CC_STATUS_INIT;
                    533:   /* Adding a constant to a register is faster with an add.  */
                    534:   if (GET_CODE (operands[1]) == PLUS
                    535:       && GET_CODE (XEXP (operands[1], 1)) == CONST_INT
                    536:       && rtx_equal_p (operands[0], XEXP (operands[1], 0)))
                    537:     {
                    538:       operands[1] = XEXP (operands[1], 1);
                    539:       return AS2 (add%L0,%1,%0);
                    540:     }
                    541:   return \"lea%L0 %a1,%0\";
                    542: }")
                    543: 
                    544: ;;- conversion instructions
                    545: ;;- NONE
                    546: 
                    547: ;;- truncation instructions
                    548: (define_insn "truncsiqi2"
1.1.1.3 ! root      549:   [(set (match_operand:QI 0 "general_operand" "=q,m")
1.1       root      550:        (truncate:QI
1.1.1.3 ! root      551:         (match_operand:SI 1 "general_operand" "qim,qn")))]
1.1       root      552:   ""
1.1.1.3 ! root      553:   "*
        !           554: {
        !           555:   if (CONSTANT_P (operands[1]) && GET_CODE (operands[1]) != CONST_INT)
        !           556:     return \"mov%L0 %1,%k0\";
        !           557:   return \"mov%B0 %b1,%0\";
        !           558: }")
1.1       root      559: 
                    560: (define_insn "trunchiqi2"
1.1.1.3 ! root      561:   [(set (match_operand:QI 0 "general_operand" "=q,m")
1.1       root      562:        (truncate:QI
1.1.1.3 ! root      563:         (match_operand:HI 1 "general_operand" "qim,qn")))]
1.1       root      564:   ""
1.1.1.3 ! root      565:   "*
        !           566: {
        !           567:   if (CONSTANT_P (operands[1]) && GET_CODE (operands[1]) != CONST_INT)
        !           568:     return \"mov%W0 %1,%w0\";
        !           569:   return \"mov%B0 %b1,%0\";
        !           570: }")
1.1       root      571: 
                    572: (define_insn "truncsihi2"
1.1.1.3 ! root      573:   [(set (match_operand:HI 0 "general_operand" "=r,m")
1.1       root      574:        (truncate:HI
1.1.1.3 ! root      575:         (match_operand:SI 1 "general_operand" "rim,rn")))]
1.1       root      576:   ""
1.1.1.3 ! root      577:   "*
        !           578: {
        !           579:   if (CONSTANT_P (operands[1]) && GET_CODE (operands[1]) != CONST_INT)
        !           580:     return \"mov%L0 %1,%k0\";
        !           581:   return \"mov%W0 %w1,%0\";
        !           582: }")
1.1       root      583: 
                    584: ;;- zero extension instructions
                    585: ;; Note that the one starting from HImode comes before those for QImode
                    586: ;; so that a constant operand will match HImode, not QImode.
                    587: 
                    588: (define_insn "zero_extendhisi2"
                    589:   [(set (match_operand:SI 0 "general_operand" "=r")
                    590:        (zero_extend:SI
                    591:         (match_operand:HI 1 "general_operand" "rm")))]
                    592:   ""
                    593:   "movz%W0%L0 %1,%0")
                    594: 
                    595: (define_insn "zero_extendqihi2"
                    596:   [(set (match_operand:HI 0 "general_operand" "=r")
                    597:        (zero_extend:HI
                    598:         (match_operand:QI 1 "general_operand" "qm")))]
                    599:   ""
                    600:   "movz%B0%W0 %1,%0")
                    601: 
                    602: (define_insn "zero_extendqisi2"
                    603:   [(set (match_operand:SI 0 "general_operand" "=r")
                    604:        (zero_extend:SI
                    605:         (match_operand:QI 1 "general_operand" "qm")))]
                    606:   ""
                    607:   "movz%B0%L0 %1,%0")
                    608: 
                    609: ;;- sign extension instructions
                    610: ;; Note that the one starting from HImode comes before those for QImode
                    611: ;; so that a constant operand will match HImode, not QImode.
                    612: 
                    613: /*
                    614: (define_insn "extendsidi2"
                    615:   [(set (match_operand:DI 0 "general_operand" "=a")
                    616:        (sign_extend:DI
                    617:         (match_operand:SI 1 "general_operand" "a")))]
                    618:   ""
                    619:   "clq")
                    620: */
                    621: 
1.1.1.3 ! root      622: ;; Note that the i386 programmers' manual says that the opcodes
        !           623: ;; are named movsx..., but the assembler on Unix does not accept that.
        !           624: ;; We use what the Unix assembler expects.
        !           625: 
1.1       root      626: (define_insn "extendhisi2"
                    627:   [(set (match_operand:SI 0 "general_operand" "=r")
                    628:        (sign_extend:SI
                    629:         (match_operand:HI 1 "general_operand" "rm")))]
                    630:   ""
                    631:   "movs%W0%L0 %1,%0")
                    632: 
                    633: (define_insn "extendqihi2"
                    634:   [(set (match_operand:HI 0 "general_operand" "=r")
                    635:        (sign_extend:HI
                    636:         (match_operand:QI 1 "general_operand" "qm")))]
                    637:   ""
                    638:   "movs%B0%W0 %1,%0")
                    639: 
                    640: (define_insn "extendqisi2"
                    641:   [(set (match_operand:SI 0 "general_operand" "=r")
                    642:        (sign_extend:SI
                    643:         (match_operand:QI 1 "general_operand" "qm")))]
                    644:   ""
                    645:  "movs%B0%L0 %1,%0"
                    646:  )
                    647: 
                    648: ;; Conversions between float and double.
                    649: 
                    650: (define_insn "extendsfdf2"
                    651:   [(set (match_operand:DF 0 "general_operand" "=fm,f,fm,fm")
                    652:        (float_extend:DF
                    653:         (match_operand:SF 1 "general_operand" "m,0,f,!*r")))]
                    654:   "TARGET_80387"
                    655:   "*
                    656: {
                    657:   if (FP_REG_P (operands[0]))
                    658:     {
                    659:       output_movsf (operands[0], operands[1]);
                    660:       RET;
                    661:     }
                    662:   if (FP_REG_P (operands[1]))
                    663:     {
                    664:       if (top_dead_p (insn))
                    665:         fp_pop_df (operands[0]);
                    666:       else
                    667:         fp_store_df (operands[0]);
                    668:       RET;
                    669:     }
                    670:   output_movsf (FP_TOP, operands[1]);
                    671:   fp_pop_df (operands[0]);
                    672:   RETCOM (extendsfdf2);
                    673: }")
                    674: 
                    675: ;; This cannot output into an f-reg because there is no way to be
                    676: ;; sure of truncating in that case.
                    677: (define_insn "truncdfsf2"
                    678:   [(set (match_operand:SF 0 "general_operand" "=m,!*r")
                    679:        (float_truncate:SF
                    680:         (match_operand:DF 1 "general_operand" "f,f")))]
                    681:   "TARGET_80387"
                    682:   "*
                    683: {
                    684:   if (top_dead_p (insn))
                    685:     fp_pop_sf (operands[0]);
                    686:   else
                    687:     fp_store_sf (operands[0]);
                    688:   RETCOM (truncdfsf2);
                    689: }")
                    690: 
                    691: ;; Conversion between fixed point and floating point.
                    692: ;; Note that among the fix-to-float insns
                    693: ;; the ones that start with SImode come first.
                    694: ;; That is so that an operand that is a CONST_INT
                    695: ;; (and therefore lacks a specific machine mode).
                    696: ;; will be recognized as SImode (which is always valid)
                    697: ;; rather than as QImode or HImode. The 80387 would not know
                    698: ;; what to do with the smaller sizes anyway. (I think).
                    699: 
                    700: (define_insn "floatsisf2"
                    701:   [(set (match_operand:SF 0 "general_operand" "=fm,fm")
                    702:        (float:SF (match_operand:SI 1 "general_operand" "m,!*r")))]
                    703:   "TARGET_80387"
                    704:   "*
                    705: {
                    706: /*  fp_pop_level++; */
                    707: 
                    708:   if (GET_CODE (operands[1]) != MEM)
                    709:     {
                    710:       rtx xops[2];
                    711:       output_asm_insn (\"push%L0 %1\", operands);
                    712:       operands[1] = AT_SP (SImode);
                    713:       output_asm_insn (\"fild%L0 %1\", operands);
                    714:       xops[0] = stack_pointer_rtx;
                    715:       xops[1] = gen_rtx (CONST_INT, VOIDmode, 4);
                    716:       output_asm_insn (AS2 (add%L0,%1,%0), xops);
                    717:     }
                    718:   else
                    719:     output_asm_insn (\"fild%L0 %1\", operands);
                    720: 
                    721:   if (! FP_REG_P (operands[0]))
                    722:     {
                    723: /*      fp_pop_level--; */
                    724:       return \"fstp%S0 %0\";
                    725:     }
                    726:   RET;
                    727: }")
                    728: 
                    729: (define_insn "floatsidf2"
                    730:   [(set (match_operand:DF 0 "general_operand" "=fm,fm")
                    731:        (float:DF (match_operand:SI 1 "general_operand" "m,!*r")))]
                    732:   "TARGET_80387"
                    733:   "*
                    734: {
                    735: /*  fp_pop_level++; */
                    736:   if (GET_CODE (operands[1]) != MEM)
                    737:     {
                    738:       rtx xops[2];
                    739:       output_asm_insn (\"push%L0 %1\", operands);
                    740:       operands[1] = AT_SP (SImode);
                    741:       output_asm_insn (\"fild%L0 %1\", operands);
                    742:       xops[0] = stack_pointer_rtx;
                    743:       xops[1] = gen_rtx (CONST_INT, VOIDmode, 4);
                    744:       output_asm_insn (AS2 (add%L0,%1,%0), xops);
                    745:     }
                    746:   else
                    747:     output_asm_insn (\"fild%L0 %1\", operands);
                    748:   if (! FP_REG_P (operands[0]))
                    749:     {
                    750: /*      fp_pop_level--; */
                    751:       return \"fstp%Q0 %0\";
                    752:     }
                    753:   RET;
                    754: }")
                    755: 
                    756: ;; Convert a float to a float whose value is an integer.
                    757: ;; This is the first stage of converting it to an integer type.
                    758: 
                    759: ;; On the 387  truncating doub to an short integer shor can be performed:
                    760: 
                    761: ;      fstcw   -4(%esp)  ;save cw
                    762: ;      movw    -4(%esp),%ax
                    763: ;      orw     $0x0c00,%ax  ;set rounding to chop towards zero
                    764: ;      movw    %ax,-2(%esp) ;
                    765: ;      fldcw   -2(%esp)     ;
                    766: ;      fldl    doubl
                    767: ;      fistpl  -12(%esp)    ;store the round value
                    768: ;      fldcw   -4(%esp)     ;restore cw
                    769: ;      movl    -12(%esp),%eax
                    770: ;      movw    %ax,shor     ; move the result into shor.
                    771: 
                    772: ;; but it is probably better to have a call, rather than waste this
                    773: ;; space.  The last instruction would have been a movl if were
                    774: ;; going to an int instead of a short.
                    775: ;; For the moment we will go with the soft float for these.
                    776: 
                    777: /* These are incorrect since they don't set the rounding bits of CW flag.
                    778:    The proper way to do that is to make the function prologue save the CW
                    779:    and also construct the alternate CW value needed for these insns.
                    780:    Then these insns can output two fldcw's, referring to fixed places in
                    781:    the stack frame.
                    782: 
                    783: ;; Convert a float whose value is an integer
                    784: ;; to an actual integer.  Second stage of converting float to integer type.
                    785: 
                    786: (define_insn "fix_truncsfqi2"
                    787:   [(set (match_operand:QI 0 "general_operand" "=m,?*q")
                    788:        (fix:QI (fix:SF (match_operand:SF 1 "general_operand" "f,f"))))]
                    789:   "TARGET_80387"
                    790:   "*
                    791: {
                    792:   fp_pop_int (operands[0]);
                    793:   RET;
                    794: }")
                    795: 
                    796: (define_insn "fix_truncsfhi2"
                    797:   [(set (match_operand:HI 0 "general_operand" "=m,?*r")
                    798:        (fix:HI (fix:SF (match_operand:SF 1 "general_operand" "f,f"))))]
                    799:   "TARGET_80387"
                    800:   "*
                    801: {
                    802:   fp_pop_int (operands[0]);
                    803:   RET;
                    804: }")
                    805: 
                    806: (define_insn "fix_truncsfsi2"
                    807:   [(set (match_operand:SI 0 "general_operand" "=m,?*r")
                    808:        (fix:SI (fix:SF (match_operand:SF 1 "general_operand" "f,f"))))]
                    809:   "TARGET_80387"
                    810:   "*
                    811: {
                    812:   fp_pop_int (operands[0]);
                    813:   RET;
                    814: }")
                    815: 
                    816: (define_insn "fix_truncdfqi2"
                    817:   [(set (match_operand:QI 0 "general_operand" "=m,?*q")
                    818:        (fix:QI (fix:DF (match_operand:DF 1 "general_operand" "f,f"))))]
                    819: 
                    820:   "TARGET_80387"
                    821:  "*
                    822: {
                    823:   fp_pop_int (operands[0]);
                    824:   RET;
                    825: }")
                    826: 
                    827: 
                    828: (define_insn "fix_truncdfhi2"
                    829:   [(set (match_operand:HI 0 "general_operand" "=m,?*r")
                    830:        (fix:HI (fix:DF (match_operand:DF 1 "general_operand" "f,f"))))]
                    831:   "TARGET_80387"
                    832:   "*
                    833: {
                    834:   fp_pop_int (operands[0]);
                    835:   RET;
                    836: }")
                    837: 
                    838: 
                    839: (define_insn "fix_truncdfsi2"
                    840:   [(set (match_operand:SI 0 "general_operand" "=m,?*r")
                    841:        (fix:SI (fix:DF (match_operand:DF 1 "general_operand" "f,f"))))]
                    842:   "TARGET_80387"
                    843:   "*
                    844: {
                    845:   fp_pop_int (operands[0]);
                    846:   RET;
                    847: }")
                    848: */
                    849: 
                    850: 
                    851: ;;- add instructions
                    852: ;;moved incl to above leal
                    853: 
                    854: (define_insn "addsi3"
                    855:   [(set (match_operand:SI 0 "general_operand" "=rm,r")
                    856:        (plus:SI (match_operand:SI 1 "general_operand" "%0,0")
                    857:                 (match_operand:SI 2 "general_operand" "ri,rm")))]
                    858:   ""
                    859:   "add%L0 %2,%0")
                    860: 
                    861: (define_insn ""
                    862:   [(set (match_operand:HI 0 "general_operand" "=g")
                    863:        (plus:HI (match_operand:HI 1 "general_operand" "0")
                    864:                 (const_int 1)))]
                    865:   ""
                    866:   "inc%W0 %0")
                    867: 
                    868: (define_insn "addhi3"
                    869:   [(set (match_operand:HI 0 "general_operand" "=rm,r")
                    870:        (plus:HI (match_operand:HI 1 "general_operand" "%0,0")
                    871:                 (match_operand:HI 2 "general_operand" "ri,rm")))]
                    872:   ""
                    873:   "add%W0 %2,%0")
                    874: 
                    875: (define_insn ""
                    876:   [(set (match_operand:QI 0 "general_operand" "=qm")
                    877:        (plus:QI (match_operand:QI 1 "general_operand" "0")
                    878:                 (const_int 1)))]
                    879:   ""
                    880:   "inc%B0 %0")
                    881: 
                    882: (define_insn "addqi3"
                    883:   [(set (match_operand:QI 0 "general_operand" "=m,q")
                    884:        (plus:QI (match_operand:QI 1 "general_operand" "%0,0")
                    885:                 (match_operand:QI 2 "general_operand" "qn,qmn")))]
                    886:   ""
                    887:   "add%B0 %2,%0")
                    888: 
                    889: ;;had "fmF,m"
                    890: 
                    891: (define_insn "adddf3"
                    892:   [(set (match_operand:DF 0 "general_operand" "=f,m,f")
                    893:        (plus:DF (match_operand:DF 1 "general_operand" "%0,0,0")
                    894:                 (match_operand:DF 2 "general_operand" "m,!f,!*r")))]
                    895:   "TARGET_80387"
                    896:   "*FP_CALL (\"fadd%z0 %0\", \"fadd%z0 %0\", 2)")
                    897: 
                    898: (define_insn "addsf3"
                    899:   [(set (match_operand:SF 0 "general_operand" "=f,m,f")
                    900:        (plus:SF (match_operand:SF 1 "general_operand" "%0,0,0")
                    901:                 (match_operand:SF 2 "general_operand" "m,!f,!*r")))]
                    902:   "TARGET_80387"
                    903:   "*FP_CALL (\"fadd%z0 %0\", \"fadd%z0 %0\", 2)")
                    904: 
                    905: ;;- subtract instructions
                    906: 
                    907: ;;moved decl above leal
                    908: 
                    909: (define_insn "subsi3"
                    910:   [(set (match_operand:SI 0 "general_operand" "=rm,r")
                    911:        (minus:SI (match_operand:SI 1 "general_operand" "0,0")
                    912:                  (match_operand:SI 2 "general_operand" "ri,rm")))]
                    913:   ""
                    914:   "sub%L0 %2,%0")
                    915: 
                    916: (define_insn ""
                    917:   [(set (match_operand:HI 0 "general_operand" "=g")
                    918:        (minus:HI (match_operand:HI 1 "general_operand" "0")
                    919:                  (const_int 1)))]
                    920:   ""
                    921:   "dec%W0 %0")
                    922: 
                    923: (define_insn "subhi3"
                    924:   [(set (match_operand:HI 0 "general_operand" "=rm,r")
                    925:        (minus:HI (match_operand:HI 1 "general_operand" "0,0")
                    926:                  (match_operand:HI 2 "general_operand" "ri,rm")))]
                    927:   ""
                    928:   "sub%W0 %2,%0")
                    929: 
                    930: (define_insn ""
                    931:   [(set (match_operand:QI 0 "general_operand" "=qm")
                    932:        (minus:QI (match_operand:QI 1 "general_operand" "0")
                    933:                  (const_int 1)))]
                    934:   ""
                    935:   "dec%B0 %0")
                    936: 
                    937: (define_insn "subqi3"
                    938:   [(set (match_operand:QI 0 "general_operand" "=m,q")
                    939:        (minus:QI (match_operand:QI 1 "general_operand" "0,0")
                    940:                  (match_operand:QI 2 "general_operand" "qn,qmn")))]
                    941:   ""
                    942:   "sub%B0 %2,%0")
                    943: 
                    944: (define_insn "subdf3"
                    945:   [(set (match_operand:DF 0 "general_operand" "=f,m,f,f")
                    946:        (minus:DF (match_operand:DF 1 "general_operand" "0,0,0,m")
                    947:                  (match_operand:DF 2 "general_operand" "m,!f,!*r,*0")))]
                    948:   "TARGET_80387"
                    949:   "*FP_CALL (\"fsub%z0 %0\", \"fsubr%z0 %0\", 2)")
                    950: 
                    951: 
                    952: (define_insn "subsf3"
                    953:   [(set (match_operand:SF 0 "general_operand" "=f,m,f,f")
                    954:        (minus:SF (match_operand:SF 1 "general_operand" "0,0,0,m")
                    955:                  (match_operand:SF 2 "general_operand" "m,!f,!*r,*0")))]
                    956:   "TARGET_80387"
                    957:   "*FP_CALL (\"fsub%z0 %0\", \"fsubr%z0 %0\", 2)")
                    958: 
                    959: ;;- multiply instructions
                    960: 
                    961: ;(define_insn "mulqi3"
                    962: ;  [(set (match_operand:QI 0 "general_operand" "=a")
                    963: ;      (mult:QI (match_operand:QI 1 "general_operand" "%0")
                    964: ;               (match_operand:QI 2 "general_operand" "qm")))]
                    965: ;  ""
                    966: ;  "mul%B0 %2,%0")
                    967: 
                    968: (define_insn "mulhi3"
                    969:   [(set (match_operand:HI 0 "general_operand" "=r,r")
                    970:        (mult:SI (match_operand:HI 1 "general_operand" "%0,rm")
                    971:                 (match_operand:HI 2 "general_operand" "g,i")))]
                    972:   ""
                    973:   "*
                    974: {
                    975:   if (GET_CODE (operands[1]) == REG
                    976:       && REGNO (operands[1]) == REGNO (operands[0])
                    977:       && (GET_CODE (operands[2]) == MEM
                    978:          || GET_CODE (operands[2]) == REG))
                    979:     /* Assembler has weird restrictions.  */
                    980:     return AS2 (imul%W0,%2,%0);
                    981:   return AS3 (imul%W0,%2,%1,%0);
                    982: }")
                    983: 
                    984: (define_insn "mulsi3"
                    985:   [(set (match_operand:SI 0 "general_operand" "=r,r")
                    986:        (mult:SI (match_operand:SI 1 "general_operand" "%0,rm")
                    987:                 (match_operand:SI 2 "general_operand" "g,i")))]
                    988:   ""
                    989:   "*
                    990: {
                    991:   if (GET_CODE (operands[1]) == REG
                    992:       && REGNO (operands[1]) == REGNO (operands[0])
                    993:       && (GET_CODE (operands[2]) == MEM
                    994:          || GET_CODE (operands[2]) == REG))
                    995:     /* Assembler has weird restrictions.  */
                    996:     return AS2 (imul%L0,%2,%0);
                    997:   return AS3 (imul%L0,%2,%1,%0);
                    998: }")
                    999: 
                   1000: ;; Turned off due to possible assembler bug.
                   1001: ;(define_insn "umulqi3"
                   1002: ;  [(set (match_operand:QI 0 "general_operand" "=a")
                   1003: ;      (umult:QI (match_operand:QI 1 "general_operand" "%0")
                   1004: ;                (match_operand:QI 2 "general_operand" "qm")))]
                   1005: ;  ""
                   1006: ;  "mul%B0 %2,%0")
                   1007: 
                   1008: ;(define_insn "umulqihi3"
                   1009: ;  [(set (match_operand:HI 0 "general_operand" "=a")
                   1010: ;      (umult:HI (match_operand:QI 1 "general_operand" "%0")
                   1011: ;                (match_operand:QI 2 "general_operand" "qm")))]
                   1012: ;  ""
                   1013: ;  "mul%B0 %2,%0")
                   1014: 
                   1015: (define_insn "umulhi3"
                   1016:   [(set (match_operand:HI 0 "general_operand" "=a")
                   1017:        (umult:SI (match_operand:HI 1 "general_operand" "%0")
                   1018:                  (match_operand:HI 2 "general_operand" "rm")))
                   1019:    (clobber (reg:HI 1))]
                   1020:   ""
                   1021:   "mul%W0 %2,%0")
                   1022: 
                   1023: (define_insn "umulsi3"
                   1024:   [(set (match_operand:SI 0 "general_operand" "=a")
                   1025:        (umult:SI (match_operand:SI 1 "general_operand" "%0")
                   1026:                  (match_operand:SI 2 "general_operand" "rm")))
                   1027:    (clobber (reg:SI 1))]
                   1028:   ""
                   1029:   "mul%L0 %2,%0")
                   1030: 
                   1031: (define_insn "muldf3"
                   1032:   [(set (match_operand:DF 0 "general_operand" "=f,m,f")
                   1033:        (mult:DF (match_operand:DF 1 "general_operand" "%0,0,0")
                   1034:                 (match_operand:DF 2 "general_operand" "m,!f,!*r")))]
                   1035:   "TARGET_80387"
                   1036:    "*FP_CALL (\"fmul%z0 %0\", \"fmul%z0 %0\", 2)
                   1037: ")
                   1038: 
                   1039: (define_insn "mulsf3"
                   1040:   [(set (match_operand:SF 0 "general_operand" "=f,m,f")
                   1041:        (mult:SF (match_operand:SF 1 "general_operand" "%0,0,0")
                   1042:                 (match_operand:SF 2 "general_operand" "m,!f,!*r")))]
                   1043:   "TARGET_80387"
                   1044:   "*FP_CALL (\"fmul%z0 %0\", \"fmul%z0 %0\", 2)
                   1045: ")
                   1046: 
                   1047: ;;- divide instructions
                   1048: (define_insn "divdf3"
                   1049:   [(set (match_operand:DF 0 "general_operand" "=f,m,f,f")
                   1050:        (div:DF (match_operand:DF 1 "general_operand" "0,0,0,m")
                   1051:                (match_operand:DF 2 "general_operand" "m,!f,!*r,*0")))]
                   1052:   "TARGET_80387"
                   1053:   "*FP_CALL (\"fdiv%z0 %0\", \"fdivr%z0 %0\", 2)
                   1054: ")
                   1055: 
                   1056: (define_insn "divsf3"
                   1057:   [(set (match_operand:SF 0 "general_operand" "=f,m,f,f")
                   1058:        (div:SF (match_operand:SF 1 "general_operand" "0,0,0,m")
                   1059:                (match_operand:SF 2 "general_operand" "m,!f,!*r,*0")))]
                   1060:   "TARGET_80387"
                   1061:   "*FP_CALL (\"fdiv%z0 %0\", \"fdivr%z0 %0\", 2)
                   1062: ")
                   1063: 
                   1064: ;; Remainder instructions.
                   1065: 
                   1066: (define_insn "divmodsi4"
                   1067:   [(set (match_operand:SI 0 "general_operand" "=a")
                   1068:        (div:SI (match_operand:SI 1 "general_operand" "0")
                   1069:                (match_operand:SI 2 "general_operand" "rm")))
                   1070:    (set (match_operand:SI 3 "general_operand" "=&d")
                   1071:        (mod:SI (match_dup 1) (match_dup 2)))]
                   1072:   ""
                   1073:   "cltd\;idiv%L0 %2")
                   1074: 
                   1075: (define_insn "udivmodsi4"
                   1076:   [(set (match_operand:SI 0 "general_operand" "=a")
                   1077:        (udiv:SI (match_operand:SI 1 "general_operand" "0")
                   1078:                (match_operand:SI 2 "general_operand" "rm")))
                   1079:    (set (match_operand:SI 3 "general_operand" "=&d")
                   1080:        (umod:SI (match_dup 1) (match_dup 2)))]
                   1081:   ""
                   1082:   "xor%L0 %3,%3\;div%L0 %2")
                   1083: 
                   1084: /*
                   1085: ;;this should be a valid double division which we may want to add
                   1086: 
                   1087: (define_insn ""
                   1088:   [(set (match_operand:SI 0 "general_operand" "=a")
                   1089:        (udiv:DI (match_operand:DI 1 "general_operand" "a")
                   1090:                (match_operand:SI 2 "general_operand" "rm")))
                   1091:    (set (match_operand:SI 3 "general_operand" "=d")
                   1092:        (umod:SI (match_dup 1) (match_dup 2)))]
                   1093:   ""
                   1094:   "div%L0 %2,%0")
                   1095: */
                   1096: 
                   1097: ;;- and instructions
                   1098: 
                   1099: ;; The `r' in `rm' for operand 3 looks redundant, but it causes
                   1100: ;; optional reloads to be generated if op 3 is a pseudo in a stack slot.
                   1101: 
                   1102: (define_insn "andsi3"
                   1103:   [(set (match_operand:SI 0 "general_operand" "=rm,r")
                   1104:        (and:SI (match_operand:SI 1 "general_operand" "%0,0")
                   1105:                (match_operand:SI 2 "general_operand" "ri,rm")))]
                   1106:   ""
                   1107:   "and%L0 %2,%0")
                   1108: 
                   1109: (define_insn "andhi3"
                   1110:   [(set (match_operand:HI 0 "general_operand" "=rm,r")
                   1111:        (and:HI (match_operand:HI 1 "general_operand" "%0,0")
                   1112:                (match_operand:HI 2 "general_operand" "ri,rm")))]
                   1113:   ""
                   1114:   "and%W0 %2,%0")
                   1115: 
                   1116: (define_insn "andqi3"
                   1117:   [(set (match_operand:QI 0 "general_operand" "=m,q")
                   1118:        (and:QI (match_operand:QI 1 "general_operand" "%0,0")
                   1119:                (match_operand:QI 2 "general_operand" "qn,qmn")))]
                   1120:   ""
                   1121:   "and%B0 %2,%0")
                   1122: 
                   1123: /* I am nervous about these two.. add them later..
                   1124: ;I presume this means that we have something in say op0= eax which is small
                   1125: ;and we want to and it with memory so we can do this by just an
                   1126: ;andb m,%al  and have success.
                   1127: (define_insn ""
                   1128:   [(set (match_operand:SI 0 "general_operand" "=r")
                   1129:        (and:SI (zero_extend:SI (match_operand:HI 1 "general_operand" "rm"))
                   1130:                (match_operand:SI 2 "general_operand" "0")))]
                   1131:   "GET_CODE (operands[2]) == CONST_INT
                   1132:    && (unsigned int) INTVAL (operands[2]) < (1 << GET_MODE_BITSIZE (HImode))"
                   1133:   "and%W0 %1,%0")
                   1134: 
                   1135: (define_insn ""
                   1136:   [(set (match_operand:SI 0 "general_operand" "=q")
                   1137:        (and:SI (zero_extend:SI (match_operand:QI 1 "general_operand" "qm"))
                   1138:                (match_operand:SI 2 "general_operand" "0")))]
                   1139:   "GET_CODE (operands[2]) == CONST_INT
                   1140:    && (unsigned int) INTVAL (operands[2]) < (1 << GET_MODE_BITSIZE (QImode))"
                   1141:   "and%L0 %1,%0")
                   1142: 
                   1143: */
                   1144: 
                   1145: 
                   1146: 
                   1147: ;;- Bit set (inclusive or) instructions
                   1148: 
                   1149: (define_insn "iorsi3"
                   1150:   [(set (match_operand:SI 0 "general_operand" "=rm,r")
                   1151:        (ior:SI (match_operand:SI 1 "general_operand" "%0,0")
                   1152:                (match_operand:SI 2 "general_operand" "ri,rm")))]
                   1153:   ""
                   1154:   "or%L0 %2,%0")
                   1155: 
                   1156: (define_insn "iorhi3"
                   1157:   [(set (match_operand:HI 0 "general_operand" "=rm,r")
                   1158:        (ior:HI (match_operand:HI 1 "general_operand" "%0,0")
                   1159:                (match_operand:HI 2 "general_operand" "ri,rm")))]
                   1160:   ""
                   1161:   "or%W0 %2,%0")
                   1162: 
                   1163: (define_insn "iorqi3"
                   1164:   [(set (match_operand:QI 0 "general_operand" "=m,q")
                   1165:        (ior:QI (match_operand:QI 1 "general_operand" "%0,0")
                   1166:                (match_operand:QI 2 "general_operand" "qn,qmn")))]
                   1167:   ""
                   1168:   "or%B0 %2,%0")
                   1169: 
                   1170: ;;- xor instructions
                   1171: 
                   1172: (define_insn "xorsi3"
                   1173:   [(set (match_operand:SI 0 "general_operand" "=rm,r")
                   1174:        (xor:SI (match_operand:SI 1 "general_operand" "%0,0")
                   1175:                (match_operand:SI 2 "general_operand" "ri,rm")))]
                   1176:   ""
                   1177:   "xor%L0 %2,%0")
                   1178: 
                   1179: (define_insn "xorhi3"
                   1180:   [(set (match_operand:HI 0 "general_operand" "=rm,r")
                   1181:        (xor:HI (match_operand:HI 1 "general_operand" "%0,0")
                   1182:                (match_operand:HI 2 "general_operand" "ri,rm")))]
                   1183:   ""
                   1184:   "xor%W0 %2,%0")
                   1185: 
                   1186: (define_insn "xorqi3"
                   1187:   [(set (match_operand:QI 0 "general_operand" "=qm")
                   1188:        (xor:QI (match_operand:QI 1 "general_operand" "%0")
                   1189:                (match_operand:QI 2 "general_operand" "qn")))]
                   1190:   ""
                   1191:   "xor%B0 %2,%0")
                   1192: 
                   1193: ;;- negation instructions
                   1194: (define_insn "negsi2"
                   1195:   [(set (match_operand:SI 0 "general_operand" "=rm")
                   1196:        (neg:SI (match_operand:SI 1 "general_operand" "0")))]
                   1197:   ""
                   1198:   "neg%L0 %0")
                   1199: 
                   1200: (define_insn "neghi2"
                   1201:   [(set (match_operand:HI 0 "general_operand" "=rm")
                   1202:        (neg:HI (match_operand:HI 1 "general_operand" "0")))]
                   1203:   ""
                   1204:   "neg%W0 %0")
                   1205: 
                   1206: (define_insn "negqi2"
                   1207:   [(set (match_operand:QI 0 "general_operand" "=qm")
                   1208:        (neg:QI (match_operand:QI 1 "general_operand" "0")))]
                   1209:   ""
                   1210:   "neg%B0 %0")
                   1211: 
                   1212: (define_insn "negsf2"
                   1213:   [(set (match_operand:SF 0 "general_operand" "=f,!m")
                   1214:        (neg:SF (match_operand:SF 1 "general_operand" "0,0")))]
                   1215:   "TARGET_80387"
                   1216:   "*FP_CALL1 (\"fchs\")")
                   1217: 
                   1218: (define_insn "negdf2"
                   1219:   [(set (match_operand:DF 0 "general_operand" "=f,!m")
                   1220:        (neg:DF (match_operand:DF 1 "general_operand" "0,0")))]
                   1221:   "TARGET_80387"
                   1222:   "*FP_CALL1 (\"fchs\")")
                   1223: 
                   1224: ;; Absolute value instructions
                   1225: 
                   1226: (define_insn "abssf2"
                   1227:   [(set (match_operand:SF 0 "general_operand" "=f,!m")
                   1228:        (abs:SF (match_operand:SF 1 "general_operand" "0,0")))]
                   1229:   "TARGET_80387"
                   1230:   "*FP_CALL1 (\"fabs\")")
                   1231: 
                   1232: (define_insn "absdf2"
                   1233:   [(set (match_operand:DF 0 "general_operand" "=f,!m")
                   1234:        (abs:DF (match_operand:DF 1 "general_operand" "0,0")))]
                   1235:   "TARGET_80387"
                   1236:   "*FP_CALL1 (\"fabs\")")
                   1237: 
                   1238: ;;- one complement instructions
                   1239: (define_insn "one_cmplsi2"
                   1240:   [(set (match_operand:SI 0 "general_operand" "=rm")
                   1241:        (not:SI (match_operand:SI 1 "general_operand" "0")))]
                   1242:   ""
                   1243:   "not%L0 %0")
                   1244: 
                   1245: (define_insn "one_cmplhi2"
                   1246:   [(set (match_operand:HI 0 "general_operand" "=rm")
                   1247:        (not:HI (match_operand:HI 1 "general_operand" "0")))]
                   1248:   ""
                   1249:   "not%W0 %0")
                   1250: 
                   1251: (define_insn "one_cmplqi2"
                   1252:   [(set (match_operand:QI 0 "general_operand" "=qm")
                   1253:        (not:QI (match_operand:QI 1 "general_operand" "0")))]
                   1254:   ""
                   1255:   "not%B0 %0")
                   1256: 
                   1257: ;;- arithmetic shift instructions
                   1258: 
                   1259: (define_insn "ashlsi3"
                   1260:   [(set (match_operand:SI 0 "general_operand" "=rm")
                   1261:        (ashift:SI (match_operand:SI 1 "general_operand" "0")
                   1262:                   (match_operand:SI 2 "general_operand" "cI")))]
                   1263:   ""
                   1264:   "*
                   1265: {
                   1266:   if (REG_P (operands[2]))
                   1267:     return AS2 (sal%L0,%R0cl,%0);
                   1268:   else if (REG_P (operands[1]) && GET_CODE (operands[2]) == CONST_INT
                   1269:           && INTVAL (operands[2]) == 1)
                   1270:     return AS2 (add%L0,%1,%1);
                   1271:   return AS2 (sal%L0,%2,%1);
                   1272: }")
                   1273: 
                   1274: (define_insn "ashlhi3"
                   1275:   [(set (match_operand:HI 0 "general_operand" "=rm")
                   1276:        (ashift:HI (match_operand:HI 1 "general_operand" "0")
                   1277:                   (match_operand:HI 2 "general_operand" "cI")))]
                   1278:   ""
                   1279:   "*
                   1280: {
                   1281:   if (REG_P (operands[2]))
                   1282:     return AS2 (sal%W0,%R0cl,%0);
                   1283:   else
                   1284:     return AS2 (sal%W0,%2,%1);
                   1285: }")
                   1286: 
                   1287: (define_insn "ashlqi3"
                   1288:   [(set (match_operand:QI 0 "general_operand" "=qm")
                   1289:        (ashift:QI (match_operand:QI 1 "general_operand" "0")
                   1290:                   (match_operand:QI 2 "general_operand" "cI")))]
                   1291:   ""
                   1292:   "*
                   1293: {
                   1294:   if (REG_P (operands[2]))
                   1295:     return AS2 (sal%B0,%R0cl,%0);
                   1296:   else
                   1297:     return AS2 (sal%B0,%2,%1);
                   1298: }")
                   1299: 
                   1300: (define_insn "ashrsi3"
                   1301:   [(set (match_operand:SI 0 "general_operand" "=rm")
                   1302:        (ashiftrt:SI (match_operand:SI 1 "general_operand" "0")
                   1303:                     (match_operand:SI 2 "general_operand" "cI")))]
                   1304:   ""
                   1305:   "*
                   1306: {
                   1307:   if (REG_P (operands[2]))
                   1308:     return AS2 (sar%L0,%R0cl,%0);
                   1309:   else
                   1310:     return AS2 (sar%L0,%2,%0);
                   1311: }")
                   1312: 
                   1313: (define_insn "ashrhi3"
                   1314:   [(set (match_operand:HI 0 "general_operand" "=rm")
                   1315:        (ashiftrt:HI (match_operand:HI 1 "general_operand" "0")
                   1316:                     (match_operand:HI 2 "general_operand" "cI")))]
                   1317:   ""
                   1318:   "*
                   1319: {
                   1320:   if (REG_P (operands[2]))
                   1321:     return AS2 (sar%W0,%R0cl,%0);
                   1322:   else
                   1323:     return AS2 (sar%W0,%2,%0);
                   1324: }")
                   1325: 
                   1326: (define_insn "ashrqi3"
                   1327:   [(set (match_operand:QI 0 "general_operand" "=qm")
                   1328:        (ashiftrt:QI (match_operand:QI 1 "general_operand" "0")
                   1329:                     (match_operand:QI 2 "general_operand" "cI")))]
                   1330:   ""
                   1331:   "*
                   1332: {
                   1333:   if (REG_P (operands[2]))
                   1334:     return AS2 (sar%B0,%R0cl,%0);
                   1335:   return
                   1336:     AS2 (sar%B0,%2,%1);
                   1337: }")
                   1338: 
                   1339: ;;- logical shift instructions
                   1340: 
                   1341: (define_insn "lshlsi3"
                   1342:   [(set (match_operand:SI 0 "general_operand" "=rm")
                   1343:        (lshift:SI (match_operand:SI 1 "general_operand" "0")
                   1344:                   (match_operand:SI 2 "general_operand" "cI")))]
                   1345:   ""
                   1346:   "*
                   1347: {
                   1348:   if (REG_P (operands[2]))
                   1349:     return AS2 (shl%L0,%R0cl,%0);
                   1350:   else
                   1351:     return AS2 (shl%L0,%2,%1);
                   1352: }")
                   1353: 
                   1354: (define_insn "lshlhi3"
                   1355:   [(set (match_operand:HI 0 "general_operand" "=rm")
                   1356:        (lshift:HI (match_operand:HI 1 "general_operand" "0")
                   1357:                   (match_operand:HI 2 "general_operand" "cI")))]
                   1358:   ""
                   1359:   "*
                   1360: {
                   1361:   if (REG_P (operands[2]))
                   1362:     return AS2 (shl%W0,%R0cl,%0);
                   1363:   else
                   1364:     return AS2 (shl%W0,%2,%1);
                   1365: }")
                   1366: 
                   1367: (define_insn "lshlqi3"
                   1368:   [(set (match_operand:QI 0 "general_operand" "=qm")
                   1369:        (lshift:QI (match_operand:QI 1 "general_operand" "0")
                   1370:                   (match_operand:QI 2 "general_operand" "cI")))]
                   1371:   ""
                   1372:   "*
                   1373: {
                   1374:   if (REG_P (operands[2]))
                   1375:     return AS2 (shl%B0,%R0cl,%0);
                   1376:   else
                   1377:     return AS2 (shl%B0,%2,%1);
                   1378: }")
                   1379: 
                   1380: (define_insn "lshrsi3"
                   1381:   [(set (match_operand:SI 0 "general_operand" "=rm")
                   1382:        (lshiftrt:SI (match_operand:SI 1 "general_operand" "0")
                   1383:                     (match_operand:SI 2 "general_operand" "cI")))]
                   1384:   ""
                   1385:   "*
                   1386: {
                   1387:   if (REG_P (operands[2]))
                   1388:     return AS2 (shr%L0,%R0cl,%0);
                   1389:   else
                   1390:     return AS2 (shr%L0,%2,%1);
                   1391: }")
                   1392: 
                   1393: (define_insn "lshrhi3"
                   1394:   [(set (match_operand:HI 0 "general_operand" "=rm")
                   1395:        (lshiftrt:HI (match_operand:HI 1 "general_operand" "0")
                   1396:                     (match_operand:HI 2 "general_operand" "cI")))]
                   1397:   ""
                   1398:   "*
                   1399: {
                   1400:   if (REG_P (operands[2]))
                   1401:     return AS2 (shr%W0,%%cl,%0);
                   1402:   else
                   1403:     return AS2 (shr%W0,%2,%1);
                   1404: }")
                   1405: 
                   1406: (define_insn "lshrqi3"
                   1407:   [(set (match_operand:QI 0 "general_operand" "=qm")
                   1408:        (lshiftrt:QI (match_operand:QI 1 "general_operand" "0")
                   1409:                     (match_operand:QI 2 "general_operand" "cI")))]
                   1410:   ""
                   1411:   "*
                   1412: {
                   1413:   if (REG_P (operands[2]))
                   1414:     return AS2 (shr%B0,%%cl,%0);
                   1415:   else
                   1416:     return AS2 (shr%B0,%2,%1);
                   1417: }")
                   1418: 
                   1419: ;;- rotate instructions
                   1420: 
                   1421: (define_insn "rotlsi3"
                   1422:   [(set (match_operand:SI 0 "general_operand" "=rm")
                   1423:        (rotate:SI (match_operand:SI 1 "general_operand" "0")
                   1424:                   (match_operand:SI 2 "general_operand" "cI")))]
                   1425:   ""
                   1426:   "*
                   1427: {
                   1428:   if (REG_P (operands[2]))
                   1429:     return AS2 (rol%L0,%%cl,%0);
                   1430:   else
                   1431:     return AS2 (rol%L0,%2,%1);
                   1432: }")
                   1433: 
                   1434: (define_insn "rotlhi3"
                   1435:   [(set (match_operand:HI 0 "general_operand" "=rm")
                   1436:        (rotate:HI (match_operand:HI 1 "general_operand" "0")
                   1437:                   (match_operand:HI 2 "general_operand" "cI")))]
                   1438:   ""
                   1439:   "*
                   1440: {
                   1441:   if (REG_P (operands[2]))
                   1442:     return AS2 (rol%W0,%%cl,%0);
                   1443:   else
                   1444:     return AS2 (rol%W0,%2,%1);
                   1445: }")
                   1446: 
                   1447: (define_insn "rotlqi3"
                   1448:   [(set (match_operand:QI 0 "general_operand" "=qm")
                   1449:        (rotate:QI (match_operand:QI 1 "general_operand" "0")
                   1450:                   (match_operand:QI 2 "general_operand" "cI")))]
                   1451:   ""
                   1452:   "*
                   1453: {
                   1454:   if (REG_P (operands[2]))
                   1455:     return AS2 (rol%B0,%%cl,%0);
                   1456:   else
                   1457:     return AS2 (rol%B0,%2,%1);
                   1458: }")
                   1459: 
                   1460: (define_insn "rotrsi3"
                   1461:   [(set (match_operand:SI 0 "general_operand" "=rm")
                   1462:        (rotatert:SI (match_operand:SI 1 "general_operand" "0")
                   1463:                     (match_operand:SI 2 "general_operand" "cI")))]
                   1464:   ""
                   1465:   "*
                   1466: {
                   1467:   if (REG_P (operands[2]))
                   1468:     return AS2 (ror%L0,%%cl,%0);
                   1469:   else
                   1470:     return AS2 (ror%L0,%2,%1);
                   1471: }")
                   1472: 
                   1473: (define_insn "rotrhi3"
                   1474:   [(set (match_operand:HI 0 "general_operand" "=rm")
                   1475:        (rotatert:HI (match_operand:HI 1 "general_operand" "0")
                   1476:                     (match_operand:HI 2 "general_operand" "cI")))]
                   1477:   ""
                   1478:   "*
                   1479: {
                   1480:   if (REG_P (operands[2]))
                   1481:     return AS2 (ror%W0,%%cl,%0);
                   1482:   else
                   1483:     return AS2 (ror%W0,%2,%1);
                   1484: }")
                   1485: 
                   1486: (define_insn "rotrqi3"
                   1487:   [(set (match_operand:QI 0 "general_operand" "=qm")
                   1488:        (rotatert:QI (match_operand:QI 1 "general_operand" "0")
                   1489:                     (match_operand:QI 2 "general_operand" "cI")))]
                   1490:   ""
                   1491:   "*
                   1492: {
                   1493:   if (REG_P (operands[2]))
                   1494:     return AS2 (ror%B0,%%cl,%0);
                   1495:   else
                   1496:     return AS2 (ror%B0,%2,%1);
                   1497: }")
                   1498: 
                   1499: ;; Store-flag instructions.
                   1500: 
                   1501: (define_insn "seq"
                   1502:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1503:        (eq (cc0) (const_int 0)))]
                   1504:   ""
                   1505:   "*
                   1506:   cc_status = cc_prev_status;
                   1507:   return \"sete %0\";
                   1508: ")
                   1509: 
                   1510: (define_insn "sne"
                   1511:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1512:        (ne (cc0) (const_int 0)))]
                   1513:   ""
                   1514:   "*
                   1515:   cc_status = cc_prev_status;
                   1516:   return \"setne %0\";
                   1517: ")
                   1518: 
                   1519: (define_insn "sgt"
                   1520:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1521:        (gt (cc0) (const_int 0)))]
                   1522:   ""
                   1523:   "*
                   1524:   cc_status = cc_prev_status;
                   1525:   OUTPUT_JUMP (\"setg %0\", \"seta %0\", 0);
                   1526: ")
                   1527: 
                   1528: (define_insn "sgtu"
                   1529:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1530:        (gtu (cc0) (const_int 0)))]
                   1531:   ""
                   1532:   "* cc_status = cc_prev_status;
                   1533:      return \"seta %0\"; ")
                   1534: 
                   1535: (define_insn "slt"
                   1536:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1537:        (lt (cc0) (const_int 0)))]
                   1538:   ""
                   1539:   "* cc_status = cc_prev_status;
                   1540:      OUTPUT_JUMP (\"setl %0\", \"setb %0\", \"sets %0\"); ")
                   1541: 
                   1542: (define_insn "sltu"
                   1543:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1544:        (ltu (cc0) (const_int 0)))]
                   1545:   ""
                   1546:   "* cc_status = cc_prev_status;
                   1547:      return \"setb %0\"; ")
                   1548: 
                   1549: (define_insn "sge"
                   1550:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1551:        (ge (cc0) (const_int 0)))]
                   1552:   ""
                   1553:   "* cc_status = cc_prev_status;
                   1554:      OUTPUT_JUMP (\"setge %0\", \"setae %0\", \"setns %0\"); ")
                   1555: 
                   1556: (define_insn "sgeu"
                   1557:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1558:        (geu (cc0) (const_int 0)))]
                   1559:   ""
                   1560:   "* cc_status = cc_prev_status;
                   1561:      return \"setae %0\"; ")
                   1562: 
                   1563: (define_insn "sle"
                   1564:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1565:        (le (cc0) (const_int 0)))]
                   1566:   ""
                   1567:   "*
                   1568:   cc_status = cc_prev_status;
                   1569:   OUTPUT_JUMP (\"setle %0\", \"setbe %0\", 0);
                   1570: ")
                   1571: 
                   1572: (define_insn "sleu"
                   1573:   [(set (match_operand:QI 0 "general_operand" "=q")
                   1574:        (leu (cc0) (const_int 0)))]
                   1575:   ""
                   1576:   "* cc_status = cc_prev_status;
                   1577:      return \"setbe %0\"; ")
                   1578: 
                   1579: ;; Basic conditional jump instructions.
                   1580: ;; We ignore the overflow flag for signed branch instructions.
                   1581: 
                   1582: (define_insn "beq"
                   1583:   [(set (pc)
                   1584:        (if_then_else (eq (cc0)
                   1585:                          (const_int 0))
                   1586:                      (label_ref (match_operand 0 "" ""))
                   1587:                      (pc)))]
                   1588:   ""
                   1589:   "je %l0")
                   1590: 
                   1591: (define_insn "bne"
                   1592:   [(set (pc)
                   1593:        (if_then_else (ne (cc0)
                   1594:                          (const_int 0))
                   1595:                      (label_ref (match_operand 0 "" ""))
                   1596:                      (pc)))]
                   1597:   ""
                   1598:   "jne %l0")
                   1599: 
                   1600: (define_insn "bgt"
                   1601:   [(set (pc)
                   1602:        (if_then_else (gt (cc0)
                   1603:                          (const_int 0))
                   1604:                      (label_ref (match_operand 0 "" ""))
                   1605:                      (pc)))]
                   1606:   ""
                   1607:   "*OUTPUT_JUMP (\"jg %l0\", \"ja %l0\", 0)")
                   1608: 
                   1609: (define_insn "bgtu"
                   1610:   [(set (pc)
                   1611:        (if_then_else (gtu (cc0)
                   1612:                           (const_int 0))
                   1613:                      (label_ref (match_operand 0 "" ""))
                   1614:                      (pc)))]
                   1615:   ""
                   1616:   "ja %l0")
                   1617: 
1.1.1.3 ! root     1618: ;; There is no jump insn to check for `<' on IEEE floats.
        !          1619: ;; Page 17-80 in the 80387 manual says jb, but that's wrong;
        !          1620: ;; jb checks for `not >='.  So swap the operands and do `>'.
        !          1621: (define_expand "blt"
        !          1622:   [(set (pc)
        !          1623:        (if_then_else (lt (cc0)
        !          1624:                          (const_int 0))
        !          1625:                      (label_ref (match_operand 0 "" ""))
        !          1626:                      (pc)))]
        !          1627:   ""
        !          1628:   "
        !          1629: {
        !          1630:   extern rtx sequence_stack;
        !          1631:   rtx prev = XEXP (XEXP (sequence_stack, 1), 0);
        !          1632:   rtx body = PATTERN (prev);
        !          1633:   rtx comp;
        !          1634:   if (GET_CODE (body) == SET)
        !          1635:     comp = SET_SRC (body);
        !          1636:   else
        !          1637:     comp = SET_SRC (XVECEXP (body, 0, 0));
        !          1638: 
        !          1639:   if (GET_CODE (comp) == COMPARE
        !          1640:       ? GET_MODE_CLASS (GET_MODE (XEXP (comp, 0))) == MODE_FLOAT
        !          1641:       : GET_MODE_CLASS (GET_MODE (comp)) == MODE_FLOAT)
        !          1642:     {
        !          1643:       if (GET_CODE (comp) == COMPARE)
        !          1644:        {
        !          1645:          rtx op0 = XEXP (comp, 0);
        !          1646:          rtx op1 = XEXP (comp, 1);
        !          1647:          XEXP (comp, 0) = op1;
        !          1648:          XEXP (comp, 1) = op0;
        !          1649:        }
        !          1650:       else
        !          1651:        {
        !          1652:          rtx new = gen_rtx (COMPARE, VOIDmode,
        !          1653:                             CONST0_RTX (GET_MODE (comp)), comp);
        !          1654:          if (GET_CODE (body) == SET)
        !          1655:            SET_SRC (body) = new;
        !          1656:          else
        !          1657:            SET_SRC (XVECEXP (body, 0, 0)) = new;
        !          1658:        }
        !          1659:       emit_insn (gen_bgt (operands[0]));
        !          1660:       DONE;
        !          1661:     }
        !          1662: }")
        !          1663: 
        !          1664: (define_insn ""
1.1       root     1665:   [(set (pc)
                   1666:        (if_then_else (lt (cc0)
                   1667:                          (const_int 0))
                   1668:                      (label_ref (match_operand 0 "" ""))
                   1669:                      (pc)))]
                   1670:   ""
                   1671:   "*OUTPUT_JUMP (\"jl %l0\", \"jb %l0\", \"js %l0\")")
                   1672: 
                   1673: (define_insn "bltu"
                   1674:   [(set (pc)
                   1675:        (if_then_else (ltu (cc0)
                   1676:                           (const_int 0))
                   1677:                      (label_ref (match_operand 0 "" ""))
                   1678:                      (pc)))]
                   1679:   ""
                   1680:   "jb %l0")
                   1681: 
                   1682: (define_insn "bge"
                   1683:   [(set (pc)
                   1684:        (if_then_else (ge (cc0)
                   1685:                          (const_int 0))
                   1686:                      (label_ref (match_operand 0 "" ""))
                   1687:                      (pc)))]
                   1688:   ""
                   1689:   "*OUTPUT_JUMP (\"jge %l0\", \"jae %l0\", \"jns %l0\")")
                   1690: 
                   1691: (define_insn "bgeu"
                   1692:   [(set (pc)
                   1693:        (if_then_else (geu (cc0)
                   1694:                           (const_int 0))
                   1695:                      (label_ref (match_operand 0 "" ""))
                   1696:                      (pc)))]
                   1697:   ""
                   1698:   "jae %l0")
                   1699: 
1.1.1.3 ! root     1700: ;; See comment on `blt', above.
        !          1701: (define_expand "ble"
        !          1702:   [(set (pc)
        !          1703:        (if_then_else (le (cc0)
        !          1704:                          (const_int 0))
        !          1705:                      (label_ref (match_operand 0 "" ""))
        !          1706:                      (pc)))]
        !          1707:   ""
        !          1708:   "
        !          1709: {
        !          1710:   extern rtx sequence_stack;
        !          1711:   rtx prev = XEXP (XEXP (sequence_stack, 1), 0);
        !          1712:   rtx body = PATTERN (prev);
        !          1713:   rtx comp;
        !          1714:   if (GET_CODE (body) == SET)
        !          1715:     comp = SET_SRC (body);
        !          1716:   else
        !          1717:     comp = SET_SRC (XVECEXP (body, 0, 0));
        !          1718: 
        !          1719:   if (GET_CODE (comp) == COMPARE
        !          1720:       ? GET_MODE_CLASS (GET_MODE (XEXP (comp, 0))) == MODE_FLOAT
        !          1721:       : GET_MODE_CLASS (GET_MODE (comp)) == MODE_FLOAT)
        !          1722:     {
        !          1723:       if (GET_CODE (comp) == COMPARE)
        !          1724:        {
        !          1725:          rtx op0 = XEXP (comp, 0);
        !          1726:          rtx op1 = XEXP (comp, 1);
        !          1727:          XEXP (comp, 0) = op1;
        !          1728:          XEXP (comp, 1) = op0;
        !          1729:        }
        !          1730:       else
        !          1731:        {
        !          1732:          rtx new = gen_rtx (COMPARE, VOIDmode,
        !          1733:                             CONST0_RTX (GET_MODE (comp)), comp);
        !          1734:          if (GET_CODE (body) == SET)
        !          1735:            SET_SRC (body) = new;
        !          1736:          else
        !          1737:            SET_SRC (XVECEXP (body, 0, 0)) = new;
        !          1738:        }
        !          1739:       emit_insn (gen_bge (operands[0]));
        !          1740:       DONE;
        !          1741:     }
        !          1742: }")
        !          1743: 
        !          1744: (define_insn ""
1.1       root     1745:   [(set (pc)
                   1746:        (if_then_else (le (cc0)
                   1747:                          (const_int 0))
                   1748:                      (label_ref (match_operand 0 "" ""))
                   1749:                      (pc)))]
                   1750:   ""
                   1751:   "*OUTPUT_JUMP (\"jle %l0\", \"jbe %l0\", 0) ")
                   1752: 
                   1753: (define_insn "bleu"
                   1754:   [(set (pc)
                   1755:        (if_then_else (leu (cc0)
                   1756:                           (const_int 0))
                   1757:                      (label_ref (match_operand 0 "" ""))
                   1758:                      (pc)))]
                   1759:   ""
                   1760:   "jbe %l0")
                   1761: 
                   1762: ;; Negated conditional jump instructions.
                   1763: 
                   1764: (define_insn ""
                   1765:   [(set (pc)
                   1766:        (if_then_else (eq (cc0)
                   1767:                          (const_int 0))
                   1768:                      (pc)
                   1769:                      (label_ref (match_operand 0 "" ""))))]
                   1770:   ""
                   1771:   "jne %l0")
                   1772: 
                   1773: (define_insn ""
                   1774:   [(set (pc)
                   1775:        (if_then_else (ne (cc0)
                   1776:                          (const_int 0))
                   1777:                      (pc)
                   1778:                      (label_ref (match_operand 0 "" ""))))]
                   1779:   ""
                   1780:   "je %l0")
                   1781: 
                   1782: (define_insn ""
                   1783:   [(set (pc)
                   1784:        (if_then_else (gt (cc0)
                   1785:                          (const_int 0))
                   1786:                      (pc)
                   1787:                      (label_ref (match_operand 0 "" ""))))]
                   1788:   ""
                   1789:   "*OUTPUT_JUMP (\"jle %l0\", \"jbe %l0\", 0) ")
                   1790: 
                   1791: (define_insn ""
                   1792:   [(set (pc)
                   1793:        (if_then_else (gtu (cc0)
                   1794:                           (const_int 0))
                   1795:                      (pc)
                   1796:                      (label_ref (match_operand 0 "" ""))))]
                   1797:   ""
                   1798:   "jbe %l0")
                   1799: 
                   1800: (define_insn ""
                   1801:   [(set (pc)
                   1802:        (if_then_else (lt (cc0)
                   1803:                          (const_int 0))
                   1804:                      (pc)
                   1805:                      (label_ref (match_operand 0 "" ""))))]
                   1806:   ""
                   1807:   "*OUTPUT_JUMP (\"jge %l0\", \"jae %l0\", \"jns %l0\")
                   1808: ")
                   1809: 
                   1810: (define_insn ""
                   1811:   [(set (pc)
                   1812:        (if_then_else (ltu (cc0)
                   1813:                           (const_int 0))
                   1814:                      (pc)
                   1815:                      (label_ref (match_operand 0 "" ""))))]
                   1816:   ""
                   1817:   "jae %l0")
                   1818: 
                   1819: (define_insn ""
                   1820:   [(set (pc)
                   1821:        (if_then_else (ge (cc0)
                   1822:                          (const_int 0))
                   1823:                      (pc)
                   1824:                      (label_ref (match_operand 0 "" ""))))]
                   1825:   ""
                   1826:   "*OUTPUT_JUMP (\"jl %l0\", \"jb %l0\", \"js %l0\")")
                   1827: 
                   1828: (define_insn ""
                   1829:   [(set (pc)
                   1830:        (if_then_else (geu (cc0)
                   1831:                           (const_int 0))
                   1832:                      (pc)
                   1833:                      (label_ref (match_operand 0 "" ""))))]
                   1834:   ""
                   1835:   "jb %l0")
                   1836: 
                   1837: (define_insn ""
                   1838:   [(set (pc)
                   1839:        (if_then_else (le (cc0)
                   1840:                          (const_int 0))
                   1841:                      (pc)
                   1842:                      (label_ref (match_operand 0 "" ""))))]
                   1843:   ""
                   1844:   "*OUTPUT_JUMP (\"jg %l0\", \"ja %l0\", 0)")
                   1845: 
                   1846: (define_insn ""
                   1847:   [(set (pc)
                   1848:        (if_then_else (leu (cc0)
                   1849:                           (const_int 0))
                   1850:                      (pc)
                   1851:                      (label_ref (match_operand 0 "" ""))))]
                   1852:   ""
                   1853:   "ja %l0")
                   1854: 
                   1855: ;; Unconditional and other jump instructions
                   1856: (define_insn "jump"
                   1857:   [(set (pc)
                   1858:        (label_ref (match_operand 0 "" "")))]
                   1859:   ""
                   1860:   "jmp %l0")
                   1861: 
                   1862: (define_insn "tablejump"
                   1863:   [(set (pc) (match_operand:SI 0 "general_operand" "rm"))
                   1864:    (use (label_ref (match_operand 1 "" "")))]
                   1865:   ""
                   1866:   "*
                   1867: {
                   1868:   CC_STATUS_INIT;
                   1869: 
                   1870:   return \"jmp %*%0\";
                   1871: }")
                   1872: 
                   1873: /*
                   1874: (define_insn ""
                   1875:   [(set (pc)
                   1876:        (if_then_else
                   1877:         (ne (compare (minus:HI (match_operand:HI 0 "general_operand" "c")
                   1878:                                (const_int 1))
                   1879:                      (const_int -1))
                   1880:             (const_int 0))
                   1881:         (label_ref (match_operand 1 "" "g"))
                   1882:         (pc)))
                   1883:    (set (match_dup 0)
                   1884:        (minus:HI (match_dup 0)
                   1885:                  (const_int 1)))]
                   1886:   ""
                   1887:   "loop %l1")
                   1888: 
                   1889: (define_insn ""
                   1890:   [(set (pc)
                   1891:        (if_then_else
                   1892:         (ne (compare (const_int -1)
                   1893:                      (minus:SI (match_operand:SI 0 "general_operand" "c")
                   1894:                                (const_int 1)))
                   1895:             (const_int 0))
                   1896:         (label_ref (match_operand 1 "" "g"))
                   1897:         (pc)))
                   1898:    (set (match_dup 0)
                   1899:        (minus:SI (match_dup 0)
                   1900:                  (const_int 1)))]
                   1901:   ""
                   1902:   "loop %l1")
                   1903: */
                   1904: 
                   1905: ;; Call subroutine returning no value.
                   1906: (define_insn "call"
                   1907:   [(call (match_operand:QI 0 "indirect_operand" "m")
                   1908:         (match_operand:SI 1 "general_operand" "g"))]
                   1909:   ;; Operand 1 not really used on the m68000.
                   1910:   ""
                   1911:   "*
                   1912: {
                   1913:   if (GET_CODE (operands[0]) == MEM
                   1914:       && ! CONSTANT_ADDRESS_P (XEXP (operands[0], 0)))
                   1915:     {
                   1916:       operands[0] = XEXP (operands[0], 0);
                   1917:       return \"call %*%0\";
                   1918:     }
                   1919:   else
                   1920:     return \"call %0\";
                   1921: }")
                   1922: 
                   1923: ;; Call subroutine, returning value in operand 0
                   1924: ;; (which must be a hard register).
                   1925: (define_insn "call_value"
                   1926:   [(set (match_operand 0 "" "=rf")
                   1927:        (call (match_operand:QI 1 "indirect_operand" "m")
                   1928:              (match_operand:SI 2 "general_operand" "g")))]
                   1929:   ;; Operand 2 not really used on the m68000.
                   1930:   ""
                   1931:   "*
                   1932: {
                   1933:   if (GET_CODE (operands[1]) == MEM
                   1934:       && ! CONSTANT_ADDRESS_P (XEXP (operands[1], 0)))
                   1935:     {
                   1936:       operands[1] = XEXP (operands[1], 0);
                   1937:       output_asm_insn (\"call %*%1\", operands);
                   1938:     }
                   1939:   else
                   1940:     output_asm_insn (\"call %1\", operands);
                   1941: 
                   1942:   if (GET_MODE (operands[0]) == DFmode
                   1943:       || GET_MODE (operands[0]) == SFmode)
                   1944:     {
                   1945: /*      fp_pop_level++; */
                   1946:       /* pop if reg dead */
                   1947:       if (!FP_REG_P (operands[0]))
                   1948:        abort ();
                   1949:       if (top_dead_p (insn))
                   1950:        {
                   1951:          POP_ONE_FP;
                   1952:        }
                   1953:     }
                   1954:   RET;
                   1955: }")
                   1956: 
                   1957: (define_insn "nop"
                   1958:   [(const_int 0)]
                   1959:   ""
                   1960:   "nop")
                   1961: 
                   1962: ;;- Local variables:
                   1963: ;;- mode:emacs-lisp
                   1964: ;;- comment-start: ";;- "
                   1965: ;;- eval: (set-syntax-table (copy-sequence (syntax-table)))
                   1966: ;;- eval: (modify-syntax-entry ?[ "(]")
                   1967: ;;- eval: (modify-syntax-entry ?] ")[")
                   1968: ;;- eval: (modify-syntax-entry ?{ "(}")
                   1969: ;;- eval: (modify-syntax-entry ?} "){")
                   1970: ;;- End:

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