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527 lines
14 KiB
C
527 lines
14 KiB
C
/* Pattern and suffix rule internals for GNU Make.
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Copyright (C) 1988, 1989, 1990, 1991, 1992 Free Software Foundation, Inc.
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This file is part of GNU Make.
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GNU Make is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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GNU Make is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with GNU Make; see the file COPYING. If not, write to
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the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */
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#include "make.h"
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#include "commands.h"
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#include "dep.h"
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#include "file.h"
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#include "variable.h"
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#include "rule.h"
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static void freerule ();
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static int new_pattern_rule ();
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/* Chain of all pattern rules. */
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struct rule *pattern_rules;
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/* Pointer to last rule in the chain, so we can add onto the end. */
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struct rule *last_pattern_rule;
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/* Number of rules in the chain. */
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unsigned int num_pattern_rules;
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/* Maximum number of dependencies of any pattern rule. */
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unsigned int max_pattern_deps;
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/* Maximum length of the name of a dependencies of any pattern rule. */
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unsigned int max_pattern_dep_length;
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/* Pointer to structure for the file .SUFFIXES
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whose dependencies are the suffixes to be searched. */
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struct file *suffix_file;
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/* Maximum length of a suffix. */
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unsigned int maxsuffix;
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/* Compute the maximum dependency length and maximum number of
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dependencies of all implicit rules. Also sets the subdir
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flag for a rule when appropriate, possibly removing the rule
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completely when appropriate. */
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void
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count_implicit_rule_limits ()
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{
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char *name;
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unsigned int namelen;
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register struct rule *rule, *lastrule;
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num_pattern_rules = 0;
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name = 0;
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namelen = 0;
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rule = pattern_rules;
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lastrule = 0;
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while (rule != 0)
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{
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unsigned int ndeps = 0;
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register struct dep *dep;
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struct rule *next = rule->next;
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++num_pattern_rules;
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for (dep = rule->deps; dep != 0; dep = dep->next)
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{
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unsigned int len = strlen (dep->name);
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char *p = rindex (dep->name, '/');
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char *p2 = p != 0 ? index (dep->name, '%') : 0;
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ndeps++;
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if (len > max_pattern_dep_length)
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max_pattern_dep_length = len;
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if (p != 0 && p2 > p)
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{
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if (p == dep->name)
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++p;
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if (p - dep->name > namelen)
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{
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if (name != 0)
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free (name);
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namelen = p - dep->name;
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name = (char *) xmalloc (namelen + 1);
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}
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bcopy (dep->name, name, p - dep->name);
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name[p - dep->name] = '\0';
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if (!dir_file_exists_p (name, "."))
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{
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if (*name == '/')
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{
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freerule (rule, lastrule);
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goto end_main_loop;
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}
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else
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rule->subdir = 1;
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}
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}
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}
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if (ndeps > max_pattern_deps)
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max_pattern_deps = ndeps;
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lastrule = rule;
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end_main_loop:
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rule = next;
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}
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if (name != 0)
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free (name);
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}
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/* Convert old-style suffix rules to pattern rules.
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All rules for the suffixes on the .SUFFIXES list
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are converted and added to the chain of pattern rules. */
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void
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convert_to_pattern ()
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{
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register struct dep *d, *d2, *newd;
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register struct file *f;
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register char *rulename;
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register unsigned int slen, s2len;
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register char *name, **names;
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/* Compute maximum length of all the suffixes. */
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maxsuffix = 0;
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for (d = suffix_file->deps; d != 0; d = d->next)
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{
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register unsigned int namelen = strlen (dep_name (d));
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if (namelen > maxsuffix)
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maxsuffix = namelen;
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}
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rulename = (char *) alloca ((maxsuffix * 2) + 1);
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for (d = suffix_file->deps; d != 0; d = d->next)
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{
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/* Make a rule that is just the suffix, with no deps or commands.
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This rule exists solely to disqualify match-anything rules. */
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slen = strlen (dep_name (d));
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name = (char *) xmalloc (1 + slen + 1);
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name[0] = '%';
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bcopy (dep_name (d), name + 1, slen + 1);
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names = (char **) xmalloc (2 * sizeof (char *));
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names[0] = name;
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names[1] = 0;
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create_pattern_rule (names, (char **) 0, 0, (struct dep *) 0,
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(struct commands *) 0, 0);
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f = d->file;
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if (f->cmds != 0)
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{
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/* Record a pattern for this suffix's null-suffix rule. */
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newd = (struct dep *) xmalloc (sizeof (struct dep));
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/* Construct this again rather than using the contents
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of NAME (above), since that may have been freed by
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create_pattern_rule. */
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newd->name = (char *) xmalloc (1 + slen + 1);
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newd->name[0] = '%';
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bcopy (dep_name (d), newd->name + 1, slen + 1);
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newd->next = 0;
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names = (char **) xmalloc (2 * sizeof (char *));
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names[0] = savestring ("%", 1);
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names[1] = 0;
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create_pattern_rule (names, (char **) 0, 0, newd, f->cmds, 0);
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}
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/* Record a pattern for each of this suffix's two-suffix rules. */
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bcopy (dep_name (d), rulename, slen);
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for (d2 = suffix_file->deps; d2 != 0; d2 = d2->next)
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{
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s2len = strlen (dep_name (d2));
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if (slen == s2len && streq (dep_name (d), dep_name (d2)))
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continue;
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bcopy (dep_name (d2), rulename + slen, s2len + 1);
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f = lookup_file (rulename);
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if (f == 0 || f->cmds == 0)
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continue;
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if (s2len == 2 && rulename[slen] == '.' && rulename[slen + 1] == 'a')
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/* The suffix rule `.X.a:' is converted
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to the pattern rule `(%.o): %.X'. */
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name = savestring ("(%.o)", 5);
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else
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{
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/* The suffix rule `.X.Y:' is converted
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to the pattern rule `%.Y: %.X'. */
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name = (char *) xmalloc (1 + s2len + 1);
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name[0] = '%';
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bcopy (dep_name (d2), name + 1, s2len + 1);
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}
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names = (char **) xmalloc (2 * sizeof (char *));
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names[0] = name;
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names[1] = 0;
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newd = (struct dep *) xmalloc (sizeof (struct dep));
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newd->next = 0;
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/* Construct this again (see comment above). */
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newd->name = (char *) xmalloc (1 + slen + 1);
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newd->name[0] = '%';
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bcopy (dep_name (d), newd->name + 1, slen + 1);
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create_pattern_rule (names, (char **) 0, 0, newd, f->cmds, 0);
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}
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}
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}
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/* Install the pattern rule RULE (whose fields have been filled in)
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at the end of the list (so that any rules previously defined
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will take precedence). If this rule duplicates a previous one
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(identical target and dependents), the old one is replaced
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if OVERRIDE is nonzero, otherwise this new one is thrown out.
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When an old rule is replaced, the new one is put at the end of the
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list. Return nonzero if RULE is used; zero if not. */
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static int
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new_pattern_rule (rule, override)
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register struct rule *rule;
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int override;
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{
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register struct rule *r, *lastrule;
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register unsigned int i, j;
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rule->subdir = 0;
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rule->in_use = 0;
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rule->terminal = 0;
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rule->next = 0;
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/* Search for an identical rule. */
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lastrule = 0;
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for (r = pattern_rules; r != 0; lastrule = r, r = r->next)
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for (i = 0; rule->targets[i] != 0; ++i)
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{
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for (j = 0; r->targets[j] != 0; ++j)
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if (!streq (rule->targets[i], r->targets[j]))
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break;
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if (r->targets[j] == 0)
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/* All the targets matched. */
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{
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register struct dep *d, *d2;
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for (d = rule->deps, d2 = r->deps;
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d != 0 && d2 != 0; d = d->next, d2 = d2->next)
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if (!streq (dep_name (d), dep_name (d2)))
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break;
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if (d == 0 && d2 == 0)
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/* All the dependencies matched. */
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if (override)
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{
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/* Remove the old rule. */
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freerule (r, lastrule);
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/* Install the new one. */
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if (pattern_rules == 0)
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pattern_rules = rule;
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else
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last_pattern_rule->next = rule;
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last_pattern_rule = rule;
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/* We got one. Stop looking. */
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goto matched;
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}
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else
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{
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/* The old rule stays intact. Destroy the new one. */
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freerule (rule, (struct rule *) 0);
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return 0;
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}
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}
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}
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matched:;
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if (r == 0)
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{
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/* There was no rule to replace. */
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if (pattern_rules == 0)
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pattern_rules = rule;
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else
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last_pattern_rule->next = rule;
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last_pattern_rule = rule;
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}
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return 1;
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}
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/* Install an implicit pattern rule based on the three text strings
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in the structure P points to. These strings come from one of
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the arrays of default implicit pattern rules.
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TERMINAL specifies what the `terminal' field of the rule should be. */
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void
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install_pattern_rule (p, terminal)
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struct pspec *p;
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int terminal;
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{
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register struct rule *r;
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char *ptr;
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r = (struct rule *) xmalloc (sizeof (struct rule));
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r->targets = (char **) xmalloc (2 * sizeof (char *));
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r->suffixes = (char **) xmalloc (2 * sizeof (char *));
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r->lens = (unsigned int *) xmalloc (2 * sizeof (unsigned int));
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r->targets[1] = 0;
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r->suffixes[1] = 0;
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r->lens[1] = 0;
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r->lens[0] = strlen (p->target);
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/* These will all be string literals, but we malloc space for
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them anyway because somebody might want to free them later on. */
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r->targets[0] = savestring (p->target, r->lens[0]);
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r->suffixes[0] = find_percent (r->targets[0]);
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if (r->suffixes[0] == 0)
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/* Programmer-out-to-lunch error. */
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abort ();
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else
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++r->suffixes[0];
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ptr = p->dep;
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r->deps = (struct dep *) multi_glob (parse_file_seq (&ptr, '\0',
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sizeof (struct dep), 1),
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sizeof (struct dep));
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if (new_pattern_rule (r, 0))
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{
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r->terminal = terminal;
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r->cmds = (struct commands *) xmalloc (sizeof (struct commands));
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r->cmds->filename = 0;
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r->cmds->lineno = 0;
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/* These will all be string literals, but we malloc space for them
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anyway because somebody might want to free them later. */
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r->cmds->commands = savestring (p->commands, strlen (p->commands));
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r->cmds->command_lines = 0;
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}
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}
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/* Free all the storage used in RULE and take it out of the
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pattern_rules chain. LASTRULE is the rule whose next pointer
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points to RULE. */
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static void
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freerule (rule, lastrule)
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register struct rule *rule, *lastrule;
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{
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struct rule *next = rule->next;
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register unsigned int i;
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for (i = 0; rule->targets[i] != 0; ++i)
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free (rule->targets[i]);
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free ((char *) rule->targets);
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free ((char *) rule->suffixes);
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free ((char *) rule->lens);
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/* We can't free the storage for the commands because there
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are ways that they could be in more than one place:
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* If the commands came from a suffix rule, they could also be in
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the `struct file's for other suffix rules or plain targets given
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on the same makefile line.
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* If two suffixes that together make a two-suffix rule were each
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given twice in the .SUFFIXES list, and in the proper order, two
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identical pattern rules would be created and the second one would
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be discarded here, but both would contain the same `struct commands'
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pointer from the `struct file' for the suffix rule. */
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free ((char *) rule);
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if (pattern_rules == rule)
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if (lastrule != 0)
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abort ();
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else
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pattern_rules = next;
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else if (lastrule != 0)
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lastrule->next = next;
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if (last_pattern_rule == rule)
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last_pattern_rule = lastrule;
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}
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/* Create a new pattern rule with the targets in the nil-terminated
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array TARGETS. If TARGET_PERCENTS is not nil, it is an array of
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pointers into the elements of TARGETS, where the `%'s are.
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The new rule has dependencies DEPS and commands from COMMANDS.
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It is a terminal rule if TERMINAL is nonzero. This rule overrides
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identical rules with different commands if OVERRIDE is nonzero.
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The storage for TARGETS and its elements is used and must not be freed
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until the rule is destroyed. The storage for TARGET_PERCENTS is not used;
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it may be freed. */
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void
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create_pattern_rule (targets, target_percents,
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terminal, deps, commands, override)
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char **targets, **target_percents;
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int terminal;
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struct dep *deps;
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struct commands *commands;
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int override;
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{
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register struct rule *r = (struct rule *) xmalloc (sizeof (struct rule));
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register unsigned int max_targets, i;
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r->cmds = commands;
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r->deps = deps;
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r->targets = targets;
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max_targets = 2;
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r->lens = (unsigned int *) xmalloc (2 * sizeof (unsigned int));
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r->suffixes = (char **) xmalloc (2 * sizeof (char *));
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for (i = 0; targets[i] != 0; ++i)
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{
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if (i == max_targets - 1)
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{
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max_targets += 5;
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r->lens = (unsigned int *)
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xrealloc ((char *) r->lens, max_targets * sizeof (unsigned int));
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r->suffixes = (char **)
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xrealloc ((char *) r->suffixes, max_targets * sizeof (char *));
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}
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r->lens[i] = strlen (targets[i]);
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r->suffixes[i] = (target_percents == 0 ? find_percent (targets[i])
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: target_percents[i]) + 1;
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if (r->suffixes[i] == 0)
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abort ();
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}
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if (i < max_targets - 1)
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{
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r->lens = (unsigned int *) xrealloc ((char *) r->lens,
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(i + 1) * sizeof (unsigned int));
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r->suffixes = (char **) xrealloc ((char *) r->suffixes,
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(i + 1) * sizeof (char *));
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}
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if (new_pattern_rule (r, override))
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r->terminal = terminal;
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}
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/* Print the data base of rules. */
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void
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print_rule_data_base ()
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{
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register unsigned int rules, terminal, subdir;
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register struct rule *r;
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register struct dep *d;
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register unsigned int i;
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puts ("\n# Implicit Rules");
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rules = terminal = subdir = 0;
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for (r = pattern_rules; r != 0; r = r->next)
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{
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++rules;
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putchar ('\n');
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for (i = 0; r->targets[i] != 0; ++i)
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{
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fputs (r->targets[i], stdout);
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if (r->targets[i + 1] != 0)
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putchar (' ');
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else
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putchar (':');
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}
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if (r->terminal)
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{
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++terminal;
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putchar (':');
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}
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for (d = r->deps; d != 0; d = d->next)
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printf (" %s", dep_name (d));
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putchar ('\n');
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if (r->subdir)
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{
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++subdir;
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puts ("# references nonexistent subdirectory.");
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}
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if (r->cmds != 0)
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print_commands (r->cmds);
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}
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if (rules == 0)
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puts ("\n# No implicit rules.");
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else
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{
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printf ("\n# %u implicit rules, %u", rules, terminal);
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#ifndef NO_FLOAT
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printf (" (%.1f%%)", (double) terminal / (double) rules * 100.0);
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#endif
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puts (" terminal.");
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printf ("# %u", subdir);
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#ifndef NO_FLOAT
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printf (" (%.1f%%)", (double) subdir / (double) rules * 100.0);
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#endif
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puts (" reference nonexistent subdirectories.");
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}
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}
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