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ld-insn.c revision 1.8
      1 /*  This file is part of the program psim.
      2 
      3     Copyright 1994, 1995, 1996, 2003 Andrew Cagney
      4 
      5     This program is free software; you can redistribute it and/or modify
      6     it under the terms of the GNU General Public License as published by
      7     the Free Software Foundation; either version 3 of the License, or
      8     (at your option) any later version.
      9 
     10     This program is distributed in the hope that it will be useful,
     11     but WITHOUT ANY WARRANTY; without even the implied warranty of
     12     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     13     GNU General Public License for more details.
     14 
     15     You should have received a copy of the GNU General Public License
     16     along with this program; if not, see <http://www.gnu.org/licenses/>.
     17 
     18     */
     19 
     20 
     21 #include "misc.h"
     22 #include "lf.h"
     23 #include "table.h"
     24 #include "filter.h"
     25 #include "filter-ppc.h"
     26 #include "ld-decode.h"
     27 #include "ld-cache.h"
     28 #include "ld-insn.h"
     29 #include "dumpf.h"
     30 
     31 #include "igen.h"
     32 
     33 static model *last_model;
     34 
     35 static insn *last_model_macro;
     36 static insn *last_model_function;
     37 static insn *last_model_internal;
     38 static insn *last_model_static;
     39 static insn *last_model_data;
     40 
     41 model *models;
     42 
     43 insn *model_macros;
     44 insn *model_functions;
     45 insn *model_internal;
     46 insn *model_static;
     47 insn *model_data;
     48 
     49 int max_model_fields_len;
     50 
     51 static void
     52 update_depth(insn_table *entry,
     53 	     lf *file,
     54 	     void *data,
     55 	     insn *instruction,
     56 	     int depth)
     57 {
     58   int *max_depth = (int*)data;
     59   if (*max_depth < depth)
     60     *max_depth = depth;
     61 }
     62 
     63 
     64 int
     65 insn_table_depth(insn_table *table)
     66 {
     67   int depth = 0;
     68   insn_table_traverse_tree(table,
     69 			   NULL,
     70 			   &depth,
     71 			   1,
     72 			   NULL, /*start*/
     73 			   update_depth,
     74 			   NULL, /*end*/
     75 			   NULL); /*padding*/
     76   return depth;
     77 }
     78 
     79 
     80 static insn_fields *
     81 parse_insn_format(table_entry *entry,
     82 		  const char *format)
     83 {
     84   const char *chp;
     85   insn_fields *fields = ZALLOC(insn_fields);
     86 
     87   /* create a leading sentinal */
     88   fields->first = ZALLOC(insn_field);
     89   fields->first->first = -1;
     90   fields->first->last = -1;
     91   fields->first->width = 0;
     92 
     93   /* and a trailing sentinal */
     94   fields->last = ZALLOC(insn_field);
     95   fields->last->first = insn_bit_size;
     96   fields->last->last = insn_bit_size;
     97   fields->last->width = 0;
     98 
     99   /* link them together */
    100   fields->first->next = fields->last;
    101   fields->last->prev = fields->first;
    102 
    103   /* now work through the formats */
    104   chp = format;
    105 
    106   while (*chp != '\0') {
    107     const char *start_pos;
    108     const char *start_val;
    109     int strlen_val;
    110     int strlen_pos;
    111     insn_field *new_field;
    112 
    113     /* sanity check */
    114     if (!isdigit(*chp)) {
    115       ERROR("%s:%d: missing position field at `%s'\n",
    116 	    entry->file_name, entry->line_nr, chp);
    117     }
    118 
    119     /* break out the bit position */
    120     start_pos = chp;
    121     while (isdigit(*chp))
    122       chp++;
    123     strlen_pos = chp - start_pos;
    124     if (*chp == '.' && strlen_pos > 0)
    125       chp++;
    126     else {
    127       ERROR("%s:%d: missing field value at %s\n",
    128 	    entry->file_name, entry->line_nr, chp);
    129       break;
    130     }
    131 
    132     /* break out the value */
    133     start_val = chp;
    134     while ((*start_val == '/' && *chp == '/')
    135 	   || (isdigit(*start_val) && isdigit(*chp))
    136 	   || (isalpha(*start_val) && (isalnum(*chp) || *chp == '_')))
    137       chp++;
    138     strlen_val = chp - start_val;
    139     if (*chp == ',')
    140       chp++;
    141     else if (*chp != '\0' || strlen_val == 0) {
    142       ERROR("%s:%d: missing field terminator at %s\n",
    143 	    entry->file_name, entry->line_nr, chp);
    144       break;
    145     }
    146 
    147     /* create a new field and insert it */
    148     new_field = ZALLOC(insn_field);
    149     new_field->next = fields->last;
    150     new_field->prev = fields->last->prev;
    151     new_field->next->prev = new_field;
    152     new_field->prev->next = new_field;
    153 
    154     /* the value */
    155     new_field->val_string = (char*)zalloc(strlen_val+1);
    156     strncpy(new_field->val_string, start_val, strlen_val);
    157     if (isdigit(*new_field->val_string)) {
    158       new_field->val_int = a2i(new_field->val_string);
    159       new_field->is_int = 1;
    160     }
    161     else if (new_field->val_string[0] == '/') {
    162       new_field->is_slash = 1;
    163     }
    164     else {
    165       new_field->is_string = 1;
    166     }
    167 
    168     /* the pos */
    169     new_field->pos_string = (char*)zalloc(strlen_pos+1);
    170     strncpy(new_field->pos_string, start_pos, strlen_pos);
    171     new_field->first = target_a2i(hi_bit_nr, new_field->pos_string);
    172     new_field->last = new_field->next->first - 1; /* guess */
    173     new_field->width = new_field->last - new_field->first + 1; /* guess */
    174     new_field->prev->last = new_field->first-1; /*fix*/
    175     new_field->prev->width = new_field->first - new_field->prev->first; /*fix*/
    176   }
    177 
    178   /* fiddle first/last so that the sentinals `disapear' */
    179   ASSERT(fields->first->last < 0);
    180   ASSERT(fields->last->first >= insn_bit_size);
    181   fields->first = fields->first->next;
    182   fields->last = fields->last->prev;
    183 
    184   /* now go over this again, pointing each bit position at a field
    185      record */
    186   {
    187     int i;
    188     insn_field *field;
    189     field = fields->first;
    190     for (i = 0; i < insn_bit_size; i++) {
    191       while (field->last < i)
    192 	field = field->next;
    193       fields->bits[i] = field;
    194     }
    195   }
    196 
    197   /* go over each of the fields, and compute a `value' for the insn */
    198   {
    199     insn_field *field;
    200     fields->value = 0;
    201     for (field = fields->first;
    202 	 field->last < insn_bit_size;
    203 	 field = field->next) {
    204       fields->value <<= field->width;
    205       if (field->is_int)
    206 	fields->value |= field->val_int;
    207     }
    208   }
    209   return fields;
    210 }
    211 
    212 
    213 static void
    214 parse_include_entry (table *file,
    215                      table_entry *file_entry,
    216 		     filter *filters,
    217 		     table_include *includes)
    218 {
    219   /* parse the include file_entry */
    220   if (file_entry->nr_fields < 4)
    221     ERROR ("Incorrect nr fields for include record\n");
    222   /* process it */
    223   if (!is_filtered_out(filters, file_entry->fields[include_flags]))
    224     {
    225       table_push (file, includes,
    226                 file_entry->fields[include_path],
    227 		file_entry->nr_fields, file_entry->nr_fields);
    228     }
    229 }
    230 
    231 static void
    232 model_table_insert(insn_table *table,
    233 		   table_entry *file_entry)
    234 {
    235   int len;
    236 
    237   /* create a new model */
    238   model *new_model = ZALLOC(model);
    239 
    240   new_model->name = file_entry->fields[model_identifer];
    241   new_model->printable_name = file_entry->fields[model_name];
    242   new_model->insn_default = file_entry->fields[model_default];
    243 
    244   while (*new_model->insn_default && isspace(*new_model->insn_default))
    245     new_model->insn_default++;
    246 
    247   len = strlen(new_model->insn_default);
    248   if (max_model_fields_len < len)
    249     max_model_fields_len = len;
    250 
    251   /* append it to the end of the model list */
    252   if (last_model)
    253     last_model->next = new_model;
    254   else
    255     models = new_model;
    256   last_model = new_model;
    257 }
    258 
    259 static void
    260 model_table_insert_specific(insn_table *table,
    261 			    table_entry *file_entry,
    262 			    insn **start_ptr,
    263 			    insn **end_ptr)
    264 {
    265   insn *ptr = ZALLOC(insn);
    266   ptr->file_entry = file_entry;
    267   if (*end_ptr)
    268     (*end_ptr)->next = ptr;
    269   else
    270     (*start_ptr) = ptr;
    271   (*end_ptr) = ptr;
    272 }
    273 
    274 
    275 static void
    276 insn_table_insert_function(insn_table *table,
    277 			   table_entry *file_entry)
    278 {
    279   /* create a new function */
    280   insn *new_function = ZALLOC(insn);
    281   new_function->file_entry = file_entry;
    282 
    283   /* append it to the end of the function list */
    284   if (table->last_function)
    285     table->last_function->next = new_function;
    286   else
    287     table->functions = new_function;
    288   table->last_function = new_function;
    289 }
    290 
    291 extern void
    292 insn_table_insert_insn(insn_table *table,
    293 		       table_entry *file_entry,
    294 		       insn_fields *fields)
    295 {
    296   insn **ptr_to_cur_insn = &table->insns;
    297   insn *cur_insn = *ptr_to_cur_insn;
    298   table_model_entry *insn_model_ptr;
    299   model *model_ptr;
    300 
    301   /* create a new instruction */
    302   insn *new_insn = ZALLOC(insn);
    303   new_insn->file_entry = file_entry;
    304   new_insn->fields = fields;
    305 
    306   /* Check out any model information returned to make sure the model
    307      is correct.  */
    308   for(insn_model_ptr = file_entry->model_first; insn_model_ptr; insn_model_ptr = insn_model_ptr->next) {
    309     const char *name = insn_model_ptr->fields[insn_model_name];
    310     int len = strlen (insn_model_ptr->fields[insn_model_fields]);
    311 
    312     while (len > 0 && isspace(*insn_model_ptr->fields[insn_model_fields])) {
    313       len--;
    314       insn_model_ptr->fields[insn_model_fields]++;
    315     }
    316 
    317     if (max_model_fields_len < len)
    318       max_model_fields_len = len;
    319 
    320     for(model_ptr = models; model_ptr; model_ptr = model_ptr->next) {
    321       if (strcmp(name, model_ptr->printable_name) == 0) {
    322 
    323 	/* Replace the name field with that of the global model, so that when we
    324 	   want to print it out, we can just compare pointers.  */
    325 	insn_model_ptr->fields[insn_model_name] = model_ptr->printable_name;
    326 	break;
    327       }
    328     }
    329 
    330     if (!model_ptr)
    331       ERROR("%s:%d: machine model `%s' was not known about\n",
    332 	    file_entry->file_name, file_entry->line_nr, name);
    333   }
    334 
    335   /* insert it according to the order of the fields */
    336   while (cur_insn != NULL
    337 	 && new_insn->fields->value >= cur_insn->fields->value) {
    338     ptr_to_cur_insn = &cur_insn->next;
    339     cur_insn = *ptr_to_cur_insn;
    340   }
    341 
    342   new_insn->next = cur_insn;
    343   *ptr_to_cur_insn = new_insn;
    344 
    345   table->nr_insn++;
    346 }
    347 
    348 
    349 
    350 insn_table *
    351 load_insn_table(const char *file_name,
    352 		decode_table *decode_rules,
    353 		filter *filters,
    354 		table_include *includes,
    355 		cache_table **cache_rules)
    356 {
    357   table *file = table_open(file_name, nr_insn_table_fields, nr_insn_model_table_fields);
    358   insn_table *table = ZALLOC(insn_table);
    359   table_entry *file_entry;
    360   table->opcode_rule = decode_rules;
    361 
    362   while ((file_entry = table_entry_read(file)) != NULL) {
    363     if (it_is("function", file_entry->fields[insn_flags])
    364 	|| it_is("internal", file_entry->fields[insn_flags])) {
    365       insn_table_insert_function(table, file_entry);
    366     }
    367     else if ((it_is("function", file_entry->fields[insn_form])
    368 	      || it_is("internal", file_entry->fields[insn_form]))
    369 	     && !is_filtered_out(filters, file_entry->fields[insn_flags])) {
    370       /* Ok, this is evil.  Need to convert a new style function into
    371          an old style function.  Construct an old style table and then
    372          copy it back.  */
    373       char *fields[nr_insn_table_fields];
    374       memset (fields, 0, sizeof fields);
    375       fields[insn_flags] = file_entry->fields[insn_form];
    376       fields[function_type] = file_entry->fields[insn_name];
    377       fields[function_name] = file_entry->fields[insn_comment];
    378       fields[function_param] = file_entry->fields[insn_field_6];
    379       memcpy (file_entry->fields, fields,
    380 	      sizeof (fields[0]) * file_entry->nr_fields);
    381       insn_table_insert_function(table, file_entry);
    382 #if 0
    383       ":" "..."
    384        ":" <filter-flags>
    385        ":" <filter-models>
    386        ":" <typedef>
    387        ":" <name>
    388        [ ":" <parameter-list> ]
    389        <nl>
    390        [ <function-model> ]
    391        <code-block>
    392 #endif
    393     }
    394     else if (it_is("model", file_entry->fields[insn_flags])) {
    395       model_table_insert(table, file_entry);
    396     }
    397     else if (it_is("model-macro", file_entry->fields[insn_flags])) {
    398       model_table_insert_specific(table, file_entry, &model_macros, &last_model_macro);
    399     }
    400     else if (it_is("model-function", file_entry->fields[insn_flags])) {
    401       model_table_insert_specific(table, file_entry, &model_functions, &last_model_function);
    402     }
    403     else if (it_is("model-internal", file_entry->fields[insn_flags])) {
    404       model_table_insert_specific(table, file_entry, &model_internal, &last_model_internal);
    405     }
    406     else if (it_is("model-static", file_entry->fields[insn_flags])) {
    407       model_table_insert_specific(table, file_entry, &model_static, &last_model_static);
    408     }
    409     else if (it_is("model-data", file_entry->fields[insn_flags])) {
    410       model_table_insert_specific(table, file_entry, &model_data, &last_model_data);
    411     }
    412     else if (it_is("include", file_entry->fields[insn_form])
    413              && !is_filtered_out(filters, file_entry->fields[insn_flags])) {
    414       parse_include_entry (file, file_entry, filters, includes);
    415     }
    416     else if ((it_is("cache", file_entry->fields[insn_form])
    417 	      || it_is("compute", file_entry->fields[insn_form])
    418 	      || it_is("scratch", file_entry->fields[insn_form]))
    419 	     && !is_filtered_out(filters, file_entry->fields[insn_flags])) {
    420       append_cache_rule (cache_rules,
    421 			 file_entry->fields[insn_form], /* type */
    422 			 file_entry->fields[cache_name],
    423 			 file_entry->fields[cache_derived_name],
    424 			 file_entry->fields[cache_type_def],
    425 			 file_entry->fields[cache_expression],
    426 			 file_entry);
    427     }
    428     else {
    429       insn_fields *fields;
    430       /* skip instructions that aren't relevant to the mode */
    431       if (is_filtered_out(filters, file_entry->fields[insn_flags])) {
    432 	fprintf(stderr, "Dropping %s - %s\n",
    433 		file_entry->fields[insn_name],
    434 		file_entry->fields[insn_flags]);
    435       }
    436       else {
    437 	/* create/insert the new instruction */
    438 	fields = parse_insn_format(file_entry,
    439 				   file_entry->fields[insn_format]);
    440 	insn_table_insert_insn(table, file_entry, fields);
    441       }
    442     }
    443   }
    444   return table;
    445 }
    446 
    447 
    448 extern void
    449 insn_table_traverse_tree(insn_table *table,
    450 			 lf *file,
    451 			 void *data,
    452 			 int depth,
    453 			 leaf_handler *start,
    454 			 insn_handler *leaf,
    455 			 leaf_handler *end,
    456 			 padding_handler *padding)
    457 {
    458   insn_table *entry;
    459   int entry_nr;
    460 
    461   ASSERT(table != NULL
    462 	 && table->opcode != NULL
    463 	 && table->nr_entries > 0
    464 	 && table->entries != 0);
    465 
    466   if (start != NULL && depth >= 0)
    467     start(table, file, data, depth);
    468 
    469   for (entry_nr = 0, entry = table->entries;
    470        entry_nr < (table->opcode->is_boolean
    471 		   ? 2
    472 		   : (1 << (table->opcode->last - table->opcode->first + 1)));
    473        entry_nr ++) {
    474     if (entry == NULL
    475 	|| (!table->opcode->is_boolean
    476 	    && entry_nr < entry->opcode_nr)) {
    477       if (padding != NULL && depth >= 0)
    478 	padding(table, file, data, depth, entry_nr);
    479     }
    480     else {
    481       ASSERT(entry != NULL && (entry->opcode_nr == entry_nr
    482 			       || table->opcode->is_boolean));
    483       if (entry->opcode != NULL && depth != 0) {
    484 	insn_table_traverse_tree(entry, file, data, depth+1,
    485 				 start, leaf, end, padding);
    486       }
    487       else if (depth >= 0) {
    488 	if (leaf != NULL)
    489 	  leaf(entry, file, data, entry->insns, depth);
    490       }
    491       entry = entry->sibling;
    492     }
    493   }
    494   if (end != NULL && depth >= 0)
    495     end(table, file, data, depth);
    496 }
    497 
    498 
    499 extern void
    500 insn_table_traverse_function(insn_table *table,
    501 			     lf *file,
    502 			     void *data,
    503 			     function_handler *leaf)
    504 {
    505   insn *function;
    506   for (function = table->functions;
    507        function != NULL;
    508        function = function->next) {
    509     leaf(table, file, data, function->file_entry);
    510   }
    511 }
    512 
    513 extern void
    514 insn_table_traverse_insn(insn_table *table,
    515 			 lf *file,
    516 			 void *data,
    517 			 insn_handler *handler)
    518 {
    519   insn *instruction;
    520   for (instruction = table->insns;
    521        instruction != NULL;
    522        instruction = instruction->next) {
    523     handler(table, file, data, instruction, 0);
    524   }
    525 }
    526 
    527 
    528 /****************************************************************/
    529 
    530 typedef enum {
    531   field_constant_int = 1,
    532   field_constant_slash = 2,
    533   field_constant_string = 3
    534 } constant_field_types;
    535 
    536 
    537 static int
    538 insn_field_is_constant(insn_field *field,
    539 		       decode_table *rule)
    540 {
    541   /* field is an integer */
    542   if (field->is_int)
    543     return field_constant_int;
    544   /* field is `/' and treating that as a constant */
    545   if (field->is_slash && rule->force_slash)
    546     return field_constant_slash;
    547   /* field, though variable is on the list */
    548   if (field->is_string && rule->force_expansion != NULL) {
    549     const char *forced_fields = rule->force_expansion;
    550     while (*forced_fields != '\0') {
    551       int field_len;
    552       const char *end = strchr(forced_fields, ',');
    553       if (end == NULL)
    554 	field_len = strlen(forced_fields);
    555       else
    556 	field_len = end-forced_fields;
    557       if (strncmp(forced_fields, field->val_string, field_len) == 0
    558 	  && field->val_string[field_len] == '\0')
    559 	return field_constant_string;
    560       forced_fields += field_len;
    561       if (*forced_fields == ',')
    562 	forced_fields++;
    563     }
    564   }
    565   return 0;
    566 }
    567 
    568 
    569 static opcode_field *
    570 insn_table_find_opcode_field(insn *insns,
    571 			     decode_table *rule,
    572 			     int string_only)
    573 {
    574   opcode_field *curr_opcode = ZALLOC(opcode_field);
    575   insn *entry;
    576   ASSERT(rule);
    577 
    578   curr_opcode->first = insn_bit_size;
    579   curr_opcode->last = -1;
    580   for (entry = insns; entry != NULL; entry = entry->next) {
    581     insn_fields *fields = entry->fields;
    582     opcode_field new_opcode;
    583 
    584     /* find a start point for the opcode field */
    585     new_opcode.first = rule->first;
    586     while (new_opcode.first <= rule->last
    587 	   && (!string_only
    588 	       || insn_field_is_constant(fields->bits[new_opcode.first],
    589 					 rule) != field_constant_string)
    590 	   && (string_only
    591 	       || !insn_field_is_constant(fields->bits[new_opcode.first],
    592 					  rule)))
    593       new_opcode.first = fields->bits[new_opcode.first]->last + 1;
    594     ASSERT(new_opcode.first > rule->last
    595 	   || (string_only
    596 	       && insn_field_is_constant(fields->bits[new_opcode.first],
    597 					 rule) == field_constant_string)
    598 	   || (!string_only
    599 	       && insn_field_is_constant(fields->bits[new_opcode.first],
    600 					 rule)));
    601 
    602     /* find the end point for the opcode field */
    603     new_opcode.last = rule->last;
    604     while (new_opcode.last >= rule->first
    605 	   && (!string_only
    606 	       || insn_field_is_constant(fields->bits[new_opcode.last],
    607 					 rule) != field_constant_string)
    608 	   && (string_only
    609 	       || !insn_field_is_constant(fields->bits[new_opcode.last],
    610 					  rule)))
    611       new_opcode.last = fields->bits[new_opcode.last]->first - 1;
    612     ASSERT(new_opcode.last < rule->first
    613 	   || (string_only
    614 	       && insn_field_is_constant(fields->bits[new_opcode.last],
    615 					 rule) == field_constant_string)
    616 	   || (!string_only
    617 	       && insn_field_is_constant(fields->bits[new_opcode.last],
    618 					 rule)));
    619 
    620     /* now see if our current opcode needs expanding */
    621     if (new_opcode.first <= rule->last
    622 	&& curr_opcode->first > new_opcode.first)
    623       curr_opcode->first = new_opcode.first;
    624     if (new_opcode.last >= rule->first
    625 	&& curr_opcode->last < new_opcode.last)
    626       curr_opcode->last = new_opcode.last;
    627 
    628   }
    629 
    630   /* was any thing interesting found? */
    631   if (curr_opcode->first > rule->last) {
    632     ASSERT(curr_opcode->last < rule->first);
    633     return NULL;
    634   }
    635   ASSERT(curr_opcode->last >= rule->first);
    636   ASSERT(curr_opcode->first <= rule->last);
    637 
    638   /* if something was found, check it includes the forced field range */
    639   if (!string_only
    640       && curr_opcode->first > rule->force_first) {
    641     curr_opcode->first = rule->force_first;
    642   }
    643   if (!string_only
    644       && curr_opcode->last < rule->force_last) {
    645     curr_opcode->last = rule->force_last;
    646   }
    647   /* handle special case elminating any need to do shift after mask */
    648   if (string_only
    649       && rule->force_last == insn_bit_size-1) {
    650     curr_opcode->last = insn_bit_size-1;
    651   }
    652 
    653   /* handle any special cases */
    654   switch (rule->type) {
    655   case normal_decode_rule:
    656     /* let the above apply */
    657     break;
    658   case expand_forced_rule:
    659     /* expand a limited nr of bits, ignoring the rest */
    660     curr_opcode->first = rule->force_first;
    661     curr_opcode->last = rule->force_last;
    662     break;
    663   case boolean_rule:
    664     curr_opcode->is_boolean = 1;
    665     curr_opcode->boolean_constant = rule->special_constant;
    666     break;
    667   default:
    668     ERROR("Something is going wrong\n");
    669   }
    670 
    671   return curr_opcode;
    672 }
    673 
    674 
    675 static void
    676 insn_table_insert_expanded(insn_table *table,
    677 			   insn *old_insn,
    678 			   int new_opcode_nr,
    679 			   insn_bits *new_bits)
    680 {
    681   insn_table **ptr_to_cur_entry = &table->entries;
    682   insn_table *cur_entry = *ptr_to_cur_entry;
    683 
    684   /* find the new table for this entry */
    685   while (cur_entry != NULL
    686 	 && cur_entry->opcode_nr < new_opcode_nr) {
    687     ptr_to_cur_entry = &cur_entry->sibling;
    688     cur_entry = *ptr_to_cur_entry;
    689   }
    690 
    691   if (cur_entry == NULL || cur_entry->opcode_nr != new_opcode_nr) {
    692     insn_table *new_entry = ZALLOC(insn_table);
    693     new_entry->opcode_nr = new_opcode_nr;
    694     new_entry->expanded_bits = new_bits;
    695     new_entry->opcode_rule = table->opcode_rule->next;
    696     new_entry->sibling = cur_entry;
    697     new_entry->parent = table;
    698     *ptr_to_cur_entry = new_entry;
    699     cur_entry = new_entry;
    700     table->nr_entries++;
    701   }
    702   /* ASSERT new_bits == cur_entry bits */
    703   ASSERT(cur_entry != NULL && cur_entry->opcode_nr == new_opcode_nr);
    704   insn_table_insert_insn(cur_entry,
    705 			 old_insn->file_entry,
    706 			 old_insn->fields);
    707 }
    708 
    709 static void
    710 insn_table_expand_opcode(insn_table *table,
    711 			 insn *instruction,
    712 			 int field_nr,
    713 			 int opcode_nr,
    714 			 insn_bits *bits)
    715 {
    716 
    717   if (field_nr > table->opcode->last) {
    718     insn_table_insert_expanded(table, instruction, opcode_nr, bits);
    719   }
    720   else {
    721     insn_field *field = instruction->fields->bits[field_nr];
    722     if (field->is_int || field->is_slash) {
    723       ASSERT(field->first >= table->opcode->first
    724 	     && field->last <= table->opcode->last);
    725       insn_table_expand_opcode(table, instruction, field->last+1,
    726 			       ((opcode_nr << field->width) + field->val_int),
    727 			       bits);
    728     }
    729     else {
    730       int val;
    731       int last_pos = ((field->last < table->opcode->last)
    732 			? field->last : table->opcode->last);
    733       int first_pos = ((field->first > table->opcode->first)
    734 			 ? field->first : table->opcode->first);
    735       int width = last_pos - first_pos + 1;
    736       int last_val = (table->opcode->is_boolean
    737 		      ? 2 : (1 << width));
    738       for (val = 0; val < last_val; val++) {
    739 	insn_bits *new_bits = ZALLOC(insn_bits);
    740 	new_bits->field = field;
    741 	new_bits->value = val;
    742 	new_bits->last = bits;
    743 	new_bits->opcode = table->opcode;
    744 	insn_table_expand_opcode(table, instruction, last_pos+1,
    745 				 ((opcode_nr << width) | val),
    746 				 new_bits);
    747       }
    748     }
    749   }
    750 }
    751 
    752 static void
    753 insn_table_insert_expanding(insn_table *table,
    754 			    insn *entry)
    755 {
    756   insn_table_expand_opcode(table,
    757 			   entry,
    758 			   table->opcode->first,
    759 			   0,
    760 			   table->expanded_bits);
    761 }
    762 
    763 
    764 extern void
    765 insn_table_expand_insns(insn_table *table)
    766 {
    767 
    768   ASSERT(table->nr_insn >= 1);
    769 
    770   /* determine a valid opcode */
    771   while (table->opcode_rule) {
    772     /* specials only for single instructions */
    773     if ((table->nr_insn > 1
    774 	 && table->opcode_rule->special_mask == 0
    775 	 && table->opcode_rule->type == normal_decode_rule)
    776 	|| (table->nr_insn == 1
    777 	    && table->opcode_rule->special_mask != 0
    778 	    && ((table->insns->fields->value
    779 		 & table->opcode_rule->special_mask)
    780 		== table->opcode_rule->special_value))
    781 	|| (generate_expanded_instructions
    782 	    && table->opcode_rule->special_mask == 0
    783 	    && table->opcode_rule->type == normal_decode_rule))
    784       table->opcode =
    785 	insn_table_find_opcode_field(table->insns,
    786 				     table->opcode_rule,
    787 				     table->nr_insn == 1/*string*/
    788 				     );
    789     if (table->opcode != NULL)
    790       break;
    791     table->opcode_rule = table->opcode_rule->next;
    792   }
    793 
    794   /* did we find anything */
    795   if (table->opcode == NULL) {
    796     return;
    797   }
    798   ASSERT(table->opcode != NULL);
    799 
    800   /* back link what we found to its parent */
    801   if (table->parent != NULL) {
    802     ASSERT(table->parent->opcode != NULL);
    803     table->opcode->parent = table->parent->opcode;
    804   }
    805 
    806   /* expand the raw instructions according to the opcode */
    807   {
    808     insn *entry;
    809     for (entry = table->insns; entry != NULL; entry = entry->next) {
    810       insn_table_insert_expanding(table, entry);
    811     }
    812   }
    813 
    814   /* and do the same for the sub entries */
    815   {
    816     insn_table *entry;
    817     for (entry = table->entries; entry != NULL; entry =  entry->sibling) {
    818       insn_table_expand_insns(entry);
    819     }
    820   }
    821 }
    822 
    823 
    824 
    825 
    826 #ifdef MAIN
    827 
    828 static void
    829 dump_insn_field(insn_field *field,
    830 		int indent)
    831 {
    832   printf ("(insn_field*)%p\n", field);
    833   dumpf (indent, "(first %d)\n", field->first);
    834   dumpf (indent, "(last %d)\n", field->last);
    835   dumpf (indent, "(width %d)\n", field->width);
    836   if (field->is_int)
    837     dumpf (indent, "(is_int %d)\n", field->val_int);
    838   if (field->is_slash)
    839     dumpf (indent, "(is_slash)\n");
    840   if (field->is_string)
    841     dumpf (indent, "(is_string `%s')\n", field->val_string);
    842   dumpf (indent, "(next %p)\n", field->next);
    843   dumpf (indent, "(prev %p)\n", field->prev);
    844 }
    845 
    846 static void
    847 dump_insn_fields(insn_fields *fields,
    848 		 int indent)
    849 {
    850   int i;
    851 
    852   printf("(insn_fields*)%p\n", fields);
    853 
    854   dumpf(indent, "(first %p)\n", fields->first);
    855   dumpf(indent, "(last %p)\n", fields->last);
    856 
    857   dumpf(indent, "(value 0x%x)\n", fields->value);
    858 
    859   for (i = 0; i < insn_bit_size; i++) {
    860     dumpf(indent, "(bits[%d]", i);
    861     dump_insn_field(fields->bits[i], indent+1);
    862     dumpf(indent, " )\n");
    863   }
    864 
    865 }
    866 
    867 
    868 static void
    869 dump_opcode_field(opcode_field *field, int indent, int levels)
    870 {
    871   printf("(opcode_field*)%p\n", field);
    872   if (levels && field != NULL) {
    873     dumpf(indent, "(first %d)\n", field->first);
    874     dumpf(indent, "(last %d)\n", field->last);
    875     dumpf(indent, "(is_boolean %d)\n", field->is_boolean);
    876     dumpf(indent, "(parent ");
    877     dump_opcode_field(field->parent, indent, levels-1);
    878   }
    879 }
    880 
    881 
    882 static void
    883 dump_insn_bits(insn_bits *bits, int indent, int levels)
    884 {
    885   printf("(insn_bits*)%p\n", bits);
    886 
    887   if (levels && bits != NULL) {
    888     dumpf(indent, "(value %d)\n", bits->value);
    889     dumpf(indent, "(opcode ");
    890     dump_opcode_field(bits->opcode, indent+1, 0);
    891     dumpf(indent, " )\n");
    892     dumpf(indent, "(field ");
    893     dump_insn_field(bits->field, indent+1);
    894     dumpf(indent, " )\n");
    895     dumpf(indent, "(last ");
    896     dump_insn_bits(bits->last, indent+1, levels-1);
    897   }
    898 }
    899 
    900 
    901 
    902 static void
    903 dump_insn(insn *entry, int indent, int levels)
    904 {
    905   printf("(insn*)%p\n", entry);
    906 
    907   if (levels && entry != NULL) {
    908 
    909     dumpf(indent, "(file_entry ");
    910     dump_table_entry(entry->file_entry, indent+1);
    911     dumpf(indent, " )\n");
    912 
    913     dumpf(indent, "(fields ");
    914     dump_insn_fields(entry->fields, indent+1);
    915     dumpf(indent, " )\n");
    916 
    917     dumpf(indent, "(next ");
    918     dump_insn(entry->next, indent+1, levels-1);
    919     dumpf(indent, " )\n");
    920 
    921   }
    922 
    923 }
    924 
    925 
    926 static void
    927 dump_insn_table(insn_table *table,
    928 		int indent, int levels)
    929 {
    930 
    931   printf("(insn_table*)%p\n", table);
    932 
    933   if (levels && table != NULL) {
    934 
    935     dumpf(indent, "(opcode_nr %d)\n", table->opcode_nr);
    936 
    937     dumpf(indent, "(expanded_bits ");
    938     dump_insn_bits(table->expanded_bits, indent+1, -1);
    939     dumpf(indent, " )\n");
    940 
    941     dumpf(indent, "(int nr_insn %d)\n", table->nr_insn);
    942 
    943     dumpf(indent, "(insns ");
    944     dump_insn(table->insns, indent+1, table->nr_insn);
    945     dumpf(indent, " )\n");
    946 
    947     dumpf(indent, "(opcode_rule ");
    948     dump_decode_rule(table->opcode_rule, indent+1);
    949     dumpf(indent, " )\n");
    950 
    951     dumpf(indent, "(opcode ");
    952     dump_opcode_field(table->opcode, indent+1, 1);
    953     dumpf(indent, " )\n");
    954 
    955     dumpf(indent, "(nr_entries %d)\n", table->nr_entries);
    956     dumpf(indent, "(entries ");
    957     dump_insn_table(table->entries, indent+1, table->nr_entries);
    958     dumpf(indent, " )\n");
    959 
    960     dumpf(indent, "(sibling ");
    961     dump_insn_table(table->sibling, indent+1, levels-1);
    962     dumpf(indent, " )\n");
    963 
    964     dumpf(indent, "(parent ");
    965     dump_insn_table(table->parent, indent+1, 0);
    966     dumpf(indent, " )\n");
    967 
    968   }
    969 }
    970 
    971 int insn_bit_size = ppc_max_insn_bit_size;
    972 int hi_bit_nr;
    973 int generate_expanded_instructions;
    974 
    975 int
    976 main(int argc, char **argv)
    977 {
    978   filter *filters = NULL;
    979   decode_table *decode_rules = NULL;
    980   insn_table *instructions = NULL;
    981   cache_table *cache_rules = NULL;
    982 
    983   if (argc != 5)
    984     ERROR("Usage: insn <filter> <hi-bit-nr> <decode-table> <insn-table>\n");
    985 
    986   filter_parse(&filters, argv[1]);
    987   hi_bit_nr = a2i(argv[2]);
    988   ASSERT(hi_bit_nr < insn_bit_size);
    989   decode_rules = load_decode_table(argv[3], hi_bit_nr);
    990   instructions = load_insn_table(argv[4], decode_rules, filters, NULL,
    991 				 &cache_rules);
    992   insn_table_expand_insns(instructions);
    993 
    994   dump_insn_table(instructions, 0, -1);
    995   return 0;
    996 }
    997 
    998 #endif
    999