Annotation of gcc/genextract.c, revision 1.1.1.2

1.1       root        1: /* Generate code from machine description to extract operands from insn as rtl.
                      2:    Copyright (C) 1987, 1991 Free Software Foundation, Inc.
                      3: 
                      4: This file is part of GNU CC.
                      5: 
                      6: GNU CC is free software; you can redistribute it and/or modify
                      7: it under the terms of the GNU General Public License as published by
                      8: the Free Software Foundation; either version 2, or (at your option)
                      9: any later version.
                     10: 
                     11: GNU CC is distributed in the hope that it will be useful,
                     12: but WITHOUT ANY WARRANTY; without even the implied warranty of
                     13: MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
                     14: GNU General Public License for more details.
                     15: 
                     16: You should have received a copy of the GNU General Public License
                     17: along with GNU CC; see the file COPYING.  If not, write to
                     18: the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.  */
                     19: 
                     20: 
                     21: #include <stdio.h>
                     22: #include "config.h"
                     23: #include "rtl.h"
                     24: #include "obstack.h"
                     25: 
                     26: static struct obstack obstack;
                     27: struct obstack *rtl_obstack = &obstack;
                     28: 
                     29: #define obstack_chunk_alloc xmalloc
                     30: #define obstack_chunk_free free
                     31: 
                     32: extern void free ();
                     33: 
                     34: /* Number instruction patterns handled, starting at 0 for first one.  */
                     35: 
                     36: static int insn_code_number;
                     37: 
                     38: /* Number the occurrences of MATCH_DUP in each instruction,
                     39:    starting at 0 for the first occurrence.  */
                     40: 
                     41: static int dup_count;
                     42: 
                     43: /* Record which operand numbers have been seen in the current pattern.
                     44:    This table is made longer as needed.  */
                     45: 
                     46: static char *operand_seen;
                     47: 
                     48: /* Current allocated length of operand_seen.  */
                     49: 
                     50: static int operand_seen_length;
                     51: 
                     52: /* Have we got any peephole patterns yet?  */
                     53: 
                     54: static int peephole_seen;
                     55: 
                     56: /* While tree-walking an instruction pattern, we keep a chain
                     57:    of these `struct link's to record how to get down to the
                     58:    current position.  In each one, POS is the operand number,
                     59:    and if the operand is a vector VEC is the element number.
                     60:    VEC is -1 if the operand is not a vector.  */
                     61: 
                     62: struct link
                     63: {
                     64:   struct link *next;
                     65:   int pos;
                     66:   int vecelt;
                     67: };
                     68: 
                     69: static void walk_rtx ();
                     70: static void print_path ();
                     71: char *xmalloc ();
                     72: char *xrealloc ();
                     73: static void fatal ();
1.1.1.2 ! root       74: static void mybzero ();
1.1       root       75: void fancy_abort ();
                     76: 
                     77: static void
                     78: gen_insn (insn)
                     79:      rtx insn;
                     80: {
                     81:   register int i;
                     82: 
                     83:   dup_count = 0;
                     84: 
                     85:   /* No operands seen so far in this pattern.  */
1.1.1.2 ! root       86:   mybzero (operand_seen, operand_seen_length);
1.1       root       87: 
                     88:   printf ("    case %d:\n", insn_code_number);
                     89: 
                     90:   /* Walk the insn's pattern, remembering at all times the path
                     91:      down to the walking point.  */
                     92: 
                     93:   if (XVECLEN (insn, 1) == 1)
                     94:     walk_rtx (XVECEXP (insn, 1, 0), 0);
                     95:   else
                     96:     for (i = XVECLEN (insn, 1) - 1; i >= 0; i--)
                     97:       {
                     98:        struct link link;
                     99:        link.next = 0;
                    100:        link.pos = 0;
                    101:        link.vecelt = i;
                    102:        walk_rtx (XVECEXP (insn, 1, i), &link);
                    103:       }
                    104: 
                    105:   /* If the operand numbers used in the pattern are not consecutive,
                    106:      don't leave an operand uninitialized.  */
                    107:   for (i = operand_seen_length - 1; i >= 0; i--)
                    108:     if (operand_seen[i])
                    109:       break;
                    110:   for (; i >= 0; i--)
                    111:     if (!operand_seen[i])
                    112:       {
                    113:        printf ("      recog_operand[%d] = const0_rtx;\n", i);
                    114:        printf ("      recog_operand_loc[%d] = &junk;\n", i);
                    115:       }
                    116:   printf ("      break;\n");
                    117: }
                    118: 
                    119: /* Record that we have seen an operand with number OPNO in this pattern.  */
                    120: 
                    121: static void
                    122: mark_operand_seen (opno)
                    123:      int opno;
                    124: {
                    125:   if (opno >= operand_seen_length)
                    126:     {
                    127:       operand_seen_length *= 2;
                    128:       operand_seen = (char *) xrealloc (operand_seen_length);
                    129:     }
                    130: 
                    131:   operand_seen[opno] = 1;
                    132: }
                    133: 
                    134: static void
                    135: walk_rtx (x, path)
                    136:      rtx x;
                    137:      struct link *path;
                    138: {
                    139:   register RTX_CODE code;
                    140:   register int i;
                    141:   register int len;
                    142:   register char *fmt;
                    143:   struct link link;
                    144: 
                    145:   if (x == 0)
                    146:     return;
                    147: 
                    148:   code = GET_CODE (x);
                    149: 
                    150:   switch (code)
                    151:     {
                    152:     case PC:
                    153:     case CC0:
                    154:     case CONST_INT:
                    155:     case SYMBOL_REF:
                    156:       return;
                    157: 
                    158:     case MATCH_OPERAND:
                    159:     case MATCH_SCRATCH:
                    160:       mark_operand_seen (XINT (x, 0));
                    161:       printf ("      recog_operand[%d] = *(recog_operand_loc[%d]\n        = &",
                    162:              XINT (x, 0), XINT (x, 0));
                    163:       print_path (path);
                    164:       printf (");\n");
                    165:       break;
                    166: 
                    167:     case MATCH_DUP:
                    168:     case MATCH_OP_DUP:
                    169:       printf ("      recog_dup_loc[%d] = &", dup_count);
                    170:       print_path (path);
                    171:       printf (";\n");
                    172:       printf ("      recog_dup_num[%d] = %d;\n", dup_count, XINT (x, 0));
                    173:       dup_count++;
                    174:       break;
                    175: 
                    176:     case MATCH_OPERATOR:
                    177:       mark_operand_seen (XINT (x, 0));
                    178:       printf ("      recog_operand[%d] = *(recog_operand_loc[%d]\n        = &",
                    179:              XINT (x, 0), XINT (x, 0));
                    180:       print_path (path);
                    181:       printf (");\n");
                    182:       link.next = path;
                    183:       link.vecelt = -1;
                    184:       for (i = XVECLEN (x, 2) - 1; i >= 0; i--)
                    185:        {
                    186:          link.pos = i;
                    187:          walk_rtx (XVECEXP (x, 2, i), &link);
                    188:        }
                    189:       return;
                    190: 
                    191:     case MATCH_PARALLEL:
                    192:       mark_operand_seen (XINT (x, 0));
                    193:       printf ("      recog_operand[%d] = *(recog_operand_loc[%d]\n        = &",
                    194:              XINT (x, 0), XINT (x, 0));
                    195:       print_path (path);
                    196:       printf (");\n");
                    197:       link.next = path;
                    198:       link.pos = 0;
                    199:       for (i = XVECLEN (x, 2) - 1; i >= 0; i--)
                    200:        {
                    201:          link.vecelt = i;
                    202:          walk_rtx (XVECEXP (x, 2, i), &link);
                    203:        }
                    204:       return;
                    205: 
                    206:     case ADDRESS:
                    207:       walk_rtx (XEXP (x, 0), path);
                    208:       return;
                    209:     }
                    210: 
                    211:   link.next = path;
                    212:   link.vecelt = -1;
                    213:   fmt = GET_RTX_FORMAT (code);
                    214:   len = GET_RTX_LENGTH (code);
                    215:   for (i = 0; i < len; i++)
                    216:     {
                    217:       link.pos = i;
                    218:       if (fmt[i] == 'e' || fmt[i] == 'u')
                    219:        {
                    220:          walk_rtx (XEXP (x, i), &link);
                    221:        }
                    222:       else if (fmt[i] == 'E')
                    223:        {
                    224:          int j;
                    225:          for (j = XVECLEN (x, i) - 1; j >= 0; j--)
                    226:            {
                    227:              link.vecelt = j;
                    228:              walk_rtx (XVECEXP (x, i, j), &link);
                    229:            }
                    230:        }
                    231:     }
                    232: }
                    233: 
                    234: /* Given a PATH, representing a path down the instruction's
                    235:    pattern from the root to a certain point, output code to
                    236:    evaluate to the rtx at that point.  */
                    237: 
                    238: static void
                    239: print_path (path)
                    240:      struct link *path;
                    241: {
                    242:   if (path == 0)
                    243:     printf ("insn");
                    244:   else if (path->vecelt >= 0)
                    245:     {
                    246:       printf ("XVECEXP (");
                    247:       print_path (path->next);
                    248:       printf (", %d, %d)", path->pos, path->vecelt);
                    249:     }
                    250:   else
                    251:     {
                    252:       printf ("XEXP (");
                    253:       print_path (path->next);
                    254:       printf (", %d)", path->pos);
                    255:     }
                    256: }
                    257: 
                    258: char *
                    259: xmalloc (size)
                    260:      unsigned size;
                    261: {
                    262:   register char *val = (char *) malloc (size);
                    263: 
                    264:   if (val == 0)
                    265:     fatal ("virtual memory exhausted");
                    266:   return val;
                    267: }
                    268: 
                    269: char *
                    270: xrealloc (ptr, size)
                    271:      char *ptr;
                    272:      unsigned size;
                    273: {
                    274:   char *result = (char *) realloc (ptr, size);
                    275:   if (!result)
                    276:     fatal ("virtual memory exhausted");
                    277:   return result;
                    278: }
                    279: 
                    280: static void
                    281: fatal (s, a1, a2)
                    282:      char *s;
                    283: {
                    284:   fprintf (stderr, "genextract: ");
                    285:   fprintf (stderr, s, a1, a2);
                    286:   fprintf (stderr, "\n");
                    287:   exit (FATAL_EXIT_CODE);
                    288: }
                    289: 
                    290: /* More 'friendly' abort that prints the line and file.
                    291:    config.h can #define abort fancy_abort if you like that sort of thing.  */
                    292: 
                    293: void
                    294: fancy_abort ()
                    295: {
                    296:   fatal ("Internal gcc abort.");
                    297: }
1.1.1.2 ! root      298: 
        !           299: static void
        !           300: mybzero (b, length)
        !           301:      register char *b;
        !           302:      register unsigned length;
        !           303: {
        !           304:   while (length-- > 0)
        !           305:     *b++ = 0;
        !           306: }
1.1       root      307: 
                    308: int
                    309: main (argc, argv)
                    310:      int argc;
                    311:      char **argv;
                    312: {
                    313:   rtx desc;
                    314:   FILE *infile;
                    315:   extern rtx read_rtx ();
                    316:   register int c, i;
                    317: 
                    318:   obstack_init (rtl_obstack);
                    319: 
                    320:   if (argc <= 1)
                    321:     fatal ("No input file name.");
                    322: 
                    323:   infile = fopen (argv[1], "r");
                    324:   if (infile == 0)
                    325:     {
                    326:       perror (argv[1]);
                    327:       exit (FATAL_EXIT_CODE);
                    328:     }
                    329: 
                    330:   init_rtl ();
                    331: 
                    332:   /* Assign sequential codes to all entries in the machine description
                    333:      in parallel with the tables in insn-output.c.  */
                    334: 
                    335:   insn_code_number = 0;
                    336: 
                    337:   operand_seen_length = 40;
                    338:   operand_seen = (char *) xmalloc (40);
                    339: 
                    340:   printf ("/* Generated automatically by the program `genextract'\n\
                    341: from the machine description file `md'.  */\n\n");
                    342: 
                    343:   printf ("#include \"config.h\"\n");
                    344:   printf ("#include \"rtl.h\"\n\n");
                    345: 
                    346:   /* This variable exists only so it can be the "location"
                    347:      of any missing operand whose numbers are skipped by a given pattern.  */
                    348:   printf ("static rtx junk;\n");
                    349:   printf ("extern rtx recog_operand[];\n");
                    350:   printf ("extern rtx *recog_operand_loc[];\n");
                    351:   printf ("extern rtx *recog_dup_loc[];\n");
                    352:   printf ("extern char recog_dup_num[];\n");
                    353:   printf ("extern void fatal_insn_not_found ();\n\n");
                    354: 
                    355:   printf ("void\ninsn_extract (insn)\n");
                    356:   printf ("     rtx insn;\n");
                    357:   printf ("{\n");
                    358:   printf ("  int insn_code = INSN_CODE (insn);\n");
                    359:   printf ("  if (insn_code == -1) fatal_insn_not_found (insn);\n");
                    360:   printf ("  insn = PATTERN (insn);\n");
                    361:   printf ("  switch (insn_code)\n");
                    362:   printf ("    {\n");
                    363: 
                    364:   /* Read the machine description.  */
                    365: 
                    366:   while (1)
                    367:     {
                    368:       c = read_skip_spaces (infile);
                    369:       if (c == EOF)
                    370:        break;
                    371:       ungetc (c, infile);
                    372: 
                    373:       desc = read_rtx (infile);
                    374:       if (GET_CODE (desc) == DEFINE_INSN)
                    375:        {
                    376:          gen_insn (desc);
                    377:          ++insn_code_number;
                    378:        }
                    379:       if (GET_CODE (desc) == DEFINE_PEEPHOLE)
                    380:        {
                    381:          printf ("    case %d: goto peephole;\n", insn_code_number);
                    382:          ++insn_code_number;
                    383:          ++peephole_seen;
                    384:        }
                    385:       if (GET_CODE (desc) == DEFINE_EXPAND || GET_CODE (desc) == DEFINE_SPLIT)
                    386:        {
                    387:          printf ("    case %d: break;\n", insn_code_number);
                    388:          ++insn_code_number;
                    389:        }
                    390:     }
                    391: 
                    392:   /* This should never be reached.  */
                    393:   printf ("\n    default:\n      abort ();\n");
                    394: 
                    395:   if (peephole_seen)
                    396:     {
                    397:       /* The vector in the insn says how many operands it has.
                    398:         And all it contains are operands.  In fact, the vector was
                    399:         created just for the sake of this function.  */
                    400:       printf ("    peephole:\n");
                    401:       printf ("#if __GNUC__ > 1 && !defined (bcopy)\n");
                    402:       printf ("#define bcopy(FROM,TO,COUNT) __builtin_memcpy(TO,FROM,COUNT)\n");
                    403:       printf ("#endif\n");
                    404:       printf ("      bcopy (&XVECEXP (insn, 0, 0), recog_operand,\n");
                    405:       printf ("             sizeof (rtx) * XVECLEN (insn, 0));\n");
                    406:       printf ("      break;\n");
                    407:     }
                    408: 
                    409:   printf ("    }\n}\n");
                    410: 
                    411:   fflush (stdout);
                    412:   exit (ferror (stdout) != 0 ? FATAL_EXIT_CODE : SUCCESS_EXIT_CODE);
                    413:   /* NOTREACHED */
                    414:   return 0;
                    415: }

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