-/* Part of the bison parser generator,
- Copyright 1984, 1989, 2000, 2001 Free Software Foundation, Inc.
+/* Calculate which nonterminals can expand into the null string for Bison.
+
+ Copyright (C) 1984, 1989, 2000, 2001, 2002, 2003, 2004, 2005, 2006
+ Free Software Foundation, Inc.
This file is part of Bison, the GNU Compiler Compiler.
You should have received a copy of the GNU General Public License
along with Bison; see the file COPYING. If not, write to
- the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
- Boston, MA 02111-1307, USA. */
+ the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
+ Boston, MA 02110-1301, USA. */
/* Set up NULLABLE, a vector saying which nonterminals can expand into
the null string. NULLABLE[I - NTOKENS] is nonzero if symbol I can
do so. */
+#include <config.h>
#include "system.h"
+
#include "getargs.h"
-#include "reader.h"
-#include "types.h"
#include "gram.h"
-#include "reduce.h"
#include "nullable.h"
+#include "reduce.h"
+#include "symtab.h"
+
+/* Linked list of rules. */
+typedef struct rule_list
+{
+ struct rule_list *next;
+ rule *value;
+} rule_list;
-char *nullable = NULL;
+bool *nullable = NULL;
static void
nullable_print (FILE *out)
int i;
fputs ("NULLABLE\n", out);
for (i = ntokens; i < nsyms; i++)
- fprintf (out, "\t%s: %s\n", tags[i], nullable[i] ? "yes" : "no");
+ fprintf (out, "\t%s: %s\n", symbols[i]->tag,
+ nullable[i - ntokens] ? "yes" : "no");
fputs ("\n\n", out);
}
void
-set_nullable (void)
+nullable_compute (void)
{
- short *r;
- short *s1;
- short *s2;
- shorts *p;
-
- short *squeue;
- short *rcount;
- shorts **rsets;
- shorts *relts;
-
- if (trace_flag)
- fprintf (stderr, "Entering set_nullable\n");
-
- nullable = XCALLOC (char, nvars) - ntokens;
-
- squeue = XCALLOC (short, nvars);
- s1 = s2 = squeue;
-
- rcount = XCALLOC (short, nrules + 1);
+ rule_number ruleno;
+ symbol_number *s1;
+ symbol_number *s2;
+ rule_list *p;
+ symbol_number *squeue = xnmalloc (nvars, sizeof *squeue);
+ size_t *rcount = xcalloc (nrules, sizeof *rcount);
/* RITEM contains all the rules, including useless productions.
Hence we must allocate room for useless nonterminals too. */
- rsets = XCALLOC (shorts *, nvars + nuseless_nonterminals) - ntokens;
+ rule_list **rsets = xcalloc (nvars, sizeof *rsets);
/* This is said to be more elements than we actually use.
- Supposedly nitems - nrules is enough.
- But why take the risk? */
- relts = XCALLOC (shorts, nitems + nvars + nuseless_nonterminals + 1);
+ Supposedly NRITEMS - NRULES is enough. But why take the risk? */
+ rule_list *relts = xnmalloc (nritems + nvars + 1, sizeof *relts);
+
+ nullable = xcalloc (nvars, sizeof *nullable);
+
+ s1 = s2 = squeue;
p = relts;
- for (r = ritem; *r; ++r)
- {
- /* Walk RITEM to find (i), if there are any tokens in the
- RHS, and (ii), to find RULENO. */
- int ruleno;
- int any_tokens = 0;
- short *r1;
- for (r1 = r; *r1 > 0; ++r1)
- if (ISTOKEN (*r1))
- any_tokens = 1;
- ruleno = -*r1;
-
- /* Examine the RHS of the rule. */
- if (!any_tokens)
- for (/* Nothing. */; *r > 0; ++r)
+ for (ruleno = 0; ruleno < nrules; ++ruleno)
+ if (rules[ruleno].useful)
+ {
+ rule *rules_ruleno = &rules[ruleno];
+ if (rules_ruleno->rhs[0] >= 0)
{
- rcount[ruleno]++;
- p->next = rsets[*r];
- p->value = ruleno;
- rsets[*r] = p;
- p++;
+ /* This rule has a non empty RHS. */
+ item_number *rp = NULL;
+ bool any_tokens = false;
+ for (rp = rules_ruleno->rhs; *rp >= 0; ++rp)
+ if (ISTOKEN (*rp))
+ any_tokens = true;
+
+ /* This rule has only nonterminals: schedule it for the second
+ pass. */
+ if (!any_tokens)
+ for (rp = rules_ruleno->rhs; *rp >= 0; ++rp)
+ {
+ rcount[ruleno]++;
+ p->next = rsets[*rp - ntokens];
+ p->value = rules_ruleno;
+ rsets[*rp - ntokens] = p;
+ p++;
+ }
}
-
- /* Examine its LHS. */
- if (rule_table[ruleno].useful && !nullable[rule_table[ruleno].lhs])
- {
- nullable[rule_table[ruleno].lhs] = 1;
- *s2++ = rule_table[ruleno].lhs;
- }
- }
+ else
+ {
+ /* This rule has an empty RHS. */
+ aver (item_number_as_rule_number (rules_ruleno->rhs[0])
+ == ruleno);
+ if (rules_ruleno->useful
+ && ! nullable[rules_ruleno->lhs->number - ntokens])
+ {
+ nullable[rules_ruleno->lhs->number - ntokens] = true;
+ *s2++ = rules_ruleno->lhs->number;
+ }
+ }
+ }
while (s1 < s2)
- {
- p = rsets[*s1++];
- while (p)
- {
- int ruleno = p->value;
- p = p->next;
- if (--rcount[ruleno] == 0)
+ for (p = rsets[*s1++ - ntokens]; p; p = p->next)
+ {
+ rule *r = p->value;
+ if (--rcount[r->number] == 0)
+ if (r->useful && ! nullable[r->lhs->number - ntokens])
{
- int symbol = rule_table[ruleno].lhs;
- if (symbol >= 0 && !nullable[symbol])
- {
- nullable[symbol] = 1;
- *s2++ = symbol;
- }
+ nullable[r->lhs->number - ntokens] = true;
+ *s2++ = r->lhs->number;
}
- }
- }
+ }
- XFREE (squeue);
- XFREE (rcount);
- XFREE (rsets + ntokens);
- XFREE (relts);
+ free (squeue);
+ free (rcount);
+ free (rsets);
+ free (relts);
- if (trace_flag)
+ if (trace_flag & trace_sets)
nullable_print (stderr);
}
void
-free_nullable (void)
+nullable_free (void)
{
- XFREE (nullable + ntokens);
+ free (nullable);
}