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[thirdparty/bash.git] / variables.c
1 /* variables.c -- Functions for hacking shell variables. */
2
3 /* Copyright (C) 1987-2013 Free Software Foundation, Inc.
4
5 This file is part of GNU Bash, the Bourne Again SHell.
6
7 Bash is free software: you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation, either version 3 of the License, or
10 (at your option) any later version.
11
12 Bash is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with Bash. If not, see <http://www.gnu.org/licenses/>.
19 */
20
21 #include "config.h"
22
23 #include "bashtypes.h"
24 #include "posixstat.h"
25 #include "posixtime.h"
26
27 #if defined (__QNX__)
28 # if defined (__QNXNTO__)
29 # include <sys/netmgr.h>
30 # else
31 # include <sys/vc.h>
32 # endif /* !__QNXNTO__ */
33 #endif /* __QNX__ */
34
35 #if defined (HAVE_UNISTD_H)
36 # include <unistd.h>
37 #endif
38
39 #include <stdio.h>
40 #include "chartypes.h"
41 #if defined (HAVE_PWD_H)
42 # include <pwd.h>
43 #endif
44 #include "bashansi.h"
45 #include "bashintl.h"
46
47 #define NEED_XTRACE_SET_DECL
48
49 #include "shell.h"
50 #include "flags.h"
51 #include "execute_cmd.h"
52 #include "findcmd.h"
53 #include "mailcheck.h"
54 #include "input.h"
55 #include "hashcmd.h"
56 #include "pathexp.h"
57 #include "alias.h"
58 #include "jobs.h"
59
60 #include "version.h"
61
62 #include "builtins/getopt.h"
63 #include "builtins/common.h"
64 #include "builtins/builtext.h"
65
66 #if defined (READLINE)
67 # include "bashline.h"
68 # include <readline/readline.h>
69 #else
70 # include <tilde/tilde.h>
71 #endif
72
73 #if defined (HISTORY)
74 # include "bashhist.h"
75 # include <readline/history.h>
76 #endif /* HISTORY */
77
78 #if defined (PROGRAMMABLE_COMPLETION)
79 # include "pcomplete.h"
80 #endif
81
82 #define TEMPENV_HASH_BUCKETS 4 /* must be power of two */
83
84 #define ifsname(s) ((s)[0] == 'I' && (s)[1] == 'F' && (s)[2] == 'S' && (s)[3] == '\0')
85
86 #define BASHFUNC_PREFIX "BASH_FUNC_"
87 #define BASHFUNC_PREFLEN 10 /* == strlen(BASHFUNC_PREFIX */
88 #define BASHFUNC_SUFFIX "%%"
89 #define BASHFUNC_SUFFLEN 2 /* == strlen(BASHFUNC_SUFFIX) */
90
91 extern char **environ;
92
93 /* Variables used here and defined in other files. */
94 extern int posixly_correct;
95 extern int line_number, line_number_base;
96 extern int subshell_environment, indirection_level, subshell_level;
97 extern int build_version, patch_level;
98 extern int expanding_redir;
99 extern int last_command_exit_value;
100 extern char *dist_version, *release_status;
101 extern char *shell_name;
102 extern char *primary_prompt, *secondary_prompt;
103 extern char *current_host_name;
104 extern sh_builtin_func_t *this_shell_builtin;
105 extern SHELL_VAR *this_shell_function;
106 extern char *the_printed_command_except_trap;
107 extern char *this_command_name;
108 extern char *command_execution_string;
109 extern time_t shell_start_time;
110 extern int assigning_in_environment;
111 extern int executing_builtin;
112 extern int funcnest_max;
113
114 #if defined (READLINE)
115 extern int no_line_editing;
116 extern int perform_hostname_completion;
117 #endif
118
119 /* The list of shell variables that the user has created at the global
120 scope, or that came from the environment. */
121 VAR_CONTEXT *global_variables = (VAR_CONTEXT *)NULL;
122
123 /* The current list of shell variables, including function scopes */
124 VAR_CONTEXT *shell_variables = (VAR_CONTEXT *)NULL;
125
126 /* The list of shell functions that the user has created, or that came from
127 the environment. */
128 HASH_TABLE *shell_functions = (HASH_TABLE *)NULL;
129
130 #if defined (DEBUGGER)
131 /* The table of shell function definitions that the user defined or that
132 came from the environment. */
133 HASH_TABLE *shell_function_defs = (HASH_TABLE *)NULL;
134 #endif
135
136 /* The current variable context. This is really a count of how deep into
137 executing functions we are. */
138 int variable_context = 0;
139
140 /* The set of shell assignments which are made only in the environment
141 for a single command. */
142 HASH_TABLE *temporary_env = (HASH_TABLE *)NULL;
143
144 /* Set to non-zero if an assignment error occurs while putting variables
145 into the temporary environment. */
146 int tempenv_assign_error;
147
148 /* Some funky variables which are known about specially. Here is where
149 "$*", "$1", and all the cruft is kept. */
150 char *dollar_vars[10];
151 WORD_LIST *rest_of_args = (WORD_LIST *)NULL;
152
153 /* The value of $$. */
154 pid_t dollar_dollar_pid;
155
156 /* Non-zero means that we have to remake EXPORT_ENV. */
157 int array_needs_making = 1;
158
159 /* The number of times BASH has been executed. This is set
160 by initialize_variables (). */
161 int shell_level = 0;
162
163 /* An array which is passed to commands as their environment. It is
164 manufactured from the union of the initial environment and the
165 shell variables that are marked for export. */
166 char **export_env = (char **)NULL;
167 static int export_env_index;
168 static int export_env_size;
169
170 #if defined (READLINE)
171 static int winsize_assignment; /* currently assigning to LINES or COLUMNS */
172 #endif
173
174 static HASH_TABLE *last_table_searched; /* hash_lookup sets this */
175
176 /* Some forward declarations. */
177 static void create_variable_tables __P((void));
178
179 static void set_machine_vars __P((void));
180 static void set_home_var __P((void));
181 static void set_shell_var __P((void));
182 static char *get_bash_name __P((void));
183 static void initialize_shell_level __P((void));
184 static void uidset __P((void));
185 #if defined (ARRAY_VARS)
186 static void make_vers_array __P((void));
187 #endif
188
189 static SHELL_VAR *null_assign __P((SHELL_VAR *, char *, arrayind_t, char *));
190 #if defined (ARRAY_VARS)
191 static SHELL_VAR *null_array_assign __P((SHELL_VAR *, char *, arrayind_t, char *));
192 #endif
193 static SHELL_VAR *get_self __P((SHELL_VAR *));
194
195 #if defined (ARRAY_VARS)
196 static SHELL_VAR *init_dynamic_array_var __P((char *, sh_var_value_func_t *, sh_var_assign_func_t *, int));
197 static SHELL_VAR *init_dynamic_assoc_var __P((char *, sh_var_value_func_t *, sh_var_assign_func_t *, int));
198 #endif
199
200 static SHELL_VAR *assign_seconds __P((SHELL_VAR *, char *, arrayind_t, char *));
201 static SHELL_VAR *get_seconds __P((SHELL_VAR *));
202 static SHELL_VAR *init_seconds_var __P((void));
203
204 static int brand __P((void));
205 static void sbrand __P((unsigned long)); /* set bash random number generator. */
206 static void seedrand __P((void)); /* seed generator randomly */
207 static SHELL_VAR *assign_random __P((SHELL_VAR *, char *, arrayind_t, char *));
208 static SHELL_VAR *get_random __P((SHELL_VAR *));
209
210 static SHELL_VAR *assign_lineno __P((SHELL_VAR *, char *, arrayind_t, char *));
211 static SHELL_VAR *get_lineno __P((SHELL_VAR *));
212
213 static SHELL_VAR *assign_subshell __P((SHELL_VAR *, char *, arrayind_t, char *));
214 static SHELL_VAR *get_subshell __P((SHELL_VAR *));
215
216 static SHELL_VAR *get_bashpid __P((SHELL_VAR *));
217
218 #if defined (HISTORY)
219 static SHELL_VAR *get_histcmd __P((SHELL_VAR *));
220 #endif
221
222 #if defined (READLINE)
223 static SHELL_VAR *get_comp_wordbreaks __P((SHELL_VAR *));
224 static SHELL_VAR *assign_comp_wordbreaks __P((SHELL_VAR *, char *, arrayind_t, char *));
225 #endif
226
227 #if defined (PUSHD_AND_POPD) && defined (ARRAY_VARS)
228 static SHELL_VAR *assign_dirstack __P((SHELL_VAR *, char *, arrayind_t, char *));
229 static SHELL_VAR *get_dirstack __P((SHELL_VAR *));
230 #endif
231
232 #if defined (ARRAY_VARS)
233 static SHELL_VAR *get_groupset __P((SHELL_VAR *));
234
235 static SHELL_VAR *build_hashcmd __P((SHELL_VAR *));
236 static SHELL_VAR *get_hashcmd __P((SHELL_VAR *));
237 static SHELL_VAR *assign_hashcmd __P((SHELL_VAR *, char *, arrayind_t, char *));
238 # if defined (ALIAS)
239 static SHELL_VAR *build_aliasvar __P((SHELL_VAR *));
240 static SHELL_VAR *get_aliasvar __P((SHELL_VAR *));
241 static SHELL_VAR *assign_aliasvar __P((SHELL_VAR *, char *, arrayind_t, char *));
242 # endif
243 #endif
244
245 static SHELL_VAR *get_funcname __P((SHELL_VAR *));
246 static SHELL_VAR *init_funcname_var __P((void));
247
248 static void initialize_dynamic_variables __P((void));
249
250 static SHELL_VAR *hash_lookup __P((const char *, HASH_TABLE *));
251 static SHELL_VAR *new_shell_variable __P((const char *));
252 static SHELL_VAR *make_new_variable __P((const char *, HASH_TABLE *));
253 static SHELL_VAR *bind_variable_internal __P((const char *, char *, HASH_TABLE *, int, int));
254
255 static void dispose_variable_value __P((SHELL_VAR *));
256 static void free_variable_hash_data __P((PTR_T));
257
258 static VARLIST *vlist_alloc __P((int));
259 static VARLIST *vlist_realloc __P((VARLIST *, int));
260 static void vlist_add __P((VARLIST *, SHELL_VAR *, int));
261
262 static void flatten __P((HASH_TABLE *, sh_var_map_func_t *, VARLIST *, int));
263
264 static int qsort_var_comp __P((SHELL_VAR **, SHELL_VAR **));
265
266 static SHELL_VAR **vapply __P((sh_var_map_func_t *));
267 static SHELL_VAR **fapply __P((sh_var_map_func_t *));
268
269 static int visible_var __P((SHELL_VAR *));
270 static int visible_and_exported __P((SHELL_VAR *));
271 static int export_environment_candidate __P((SHELL_VAR *));
272 static int local_and_exported __P((SHELL_VAR *));
273 static int variable_in_context __P((SHELL_VAR *));
274 #if defined (ARRAY_VARS)
275 static int visible_array_vars __P((SHELL_VAR *));
276 #endif
277
278 static SHELL_VAR *find_nameref_at_context __P((SHELL_VAR *, VAR_CONTEXT *));
279 static SHELL_VAR *find_variable_nameref_context __P((SHELL_VAR *, VAR_CONTEXT *, VAR_CONTEXT **));
280 static SHELL_VAR *find_variable_last_nameref_context __P((SHELL_VAR *, VAR_CONTEXT *, VAR_CONTEXT **));
281
282 static SHELL_VAR *bind_tempenv_variable __P((const char *, char *));
283 static void push_temp_var __P((PTR_T));
284 static void propagate_temp_var __P((PTR_T));
285 static void dispose_temporary_env __P((sh_free_func_t *));
286
287 static inline char *mk_env_string __P((const char *, const char *, int));
288 static char **make_env_array_from_var_list __P((SHELL_VAR **));
289 static char **make_var_export_array __P((VAR_CONTEXT *));
290 static char **make_func_export_array __P((void));
291 static void add_temp_array_to_env __P((char **, int, int));
292
293 static int n_shell_variables __P((void));
294 static int set_context __P((SHELL_VAR *));
295
296 static void push_func_var __P((PTR_T));
297 static void push_exported_var __P((PTR_T));
298
299 static inline int find_special_var __P((const char *));
300
301 static void
302 create_variable_tables ()
303 {
304 if (shell_variables == 0)
305 {
306 shell_variables = global_variables = new_var_context ((char *)NULL, 0);
307 shell_variables->scope = 0;
308 shell_variables->table = hash_create (0);
309 }
310
311 if (shell_functions == 0)
312 shell_functions = hash_create (0);
313
314 #if defined (DEBUGGER)
315 if (shell_function_defs == 0)
316 shell_function_defs = hash_create (0);
317 #endif
318 }
319
320 /* Initialize the shell variables from the current environment.
321 If PRIVMODE is nonzero, don't import functions from ENV or
322 parse $SHELLOPTS. */
323 void
324 initialize_shell_variables (env, privmode)
325 char **env;
326 int privmode;
327 {
328 char *name, *string, *temp_string;
329 int c, char_index, string_index, string_length, ro;
330 SHELL_VAR *temp_var;
331
332 create_variable_tables ();
333
334 for (string_index = 0; string = env[string_index++]; )
335 {
336 char_index = 0;
337 name = string;
338 while ((c = *string++) && c != '=')
339 ;
340 if (string[-1] == '=')
341 char_index = string - name - 1;
342
343 /* If there are weird things in the environment, like `=xxx' or a
344 string without an `=', just skip them. */
345 if (char_index == 0)
346 continue;
347
348 /* ASSERT(name[char_index] == '=') */
349 name[char_index] = '\0';
350 /* Now, name = env variable name, string = env variable value, and
351 char_index == strlen (name) */
352
353 temp_var = (SHELL_VAR *)NULL;
354
355 /* If exported function, define it now. Don't import functions from
356 the environment in privileged mode. */
357 if (privmode == 0 && read_but_dont_execute == 0 &&
358 STREQN (BASHFUNC_PREFIX, name, BASHFUNC_PREFLEN) &&
359 STREQ (BASHFUNC_SUFFIX, name + char_index - BASHFUNC_SUFFLEN) &&
360 STREQN ("() {", string, 4))
361 {
362 size_t namelen;
363 char *tname; /* desired imported function name */
364
365 namelen = char_index - BASHFUNC_PREFLEN - BASHFUNC_SUFFLEN;
366
367 tname = name + BASHFUNC_PREFLEN; /* start of func name */
368 tname[namelen] = '\0'; /* now tname == func name */
369
370 string_length = strlen (string);
371 temp_string = (char *)xmalloc (namelen + string_length + 2);
372
373 memcpy (temp_string, tname, namelen);
374 temp_string[namelen] = ' ';
375 memcpy (temp_string + namelen + 1, string, string_length + 1);
376
377 /* Don't import function names that are invalid identifiers from the
378 environment, though we still allow them to be defined as shell
379 variables. */
380 if (absolute_program (tname) == 0 && (posixly_correct == 0 || legal_identifier (tname)))
381 parse_and_execute (temp_string, tname, SEVAL_NONINT|SEVAL_NOHIST|SEVAL_FUNCDEF|SEVAL_ONECMD);
382
383 if (temp_var = find_function (tname))
384 {
385 VSETATTR (temp_var, (att_exported|att_imported));
386 array_needs_making = 1;
387 }
388 else
389 {
390 if (temp_var = bind_variable (name, string, 0))
391 {
392 VSETATTR (temp_var, (att_exported | att_imported | att_invisible));
393 array_needs_making = 1;
394 }
395 last_command_exit_value = 1;
396 report_error (_("error importing function definition for `%s'"), tname);
397 }
398
399 /* Restore original suffix */
400 tname[namelen] = BASHFUNC_SUFFIX[0];
401 }
402 #if defined (ARRAY_VARS)
403 # if ARRAY_EXPORT
404 /* Array variables may not yet be exported. */
405 else if (*string == '(' && string[1] == '[' && string[strlen (string) - 1] == ')')
406 {
407 string_length = 1;
408 temp_string = extract_array_assignment_list (string, &string_length);
409 temp_var = assign_array_from_string (name, temp_string);
410 FREE (temp_string);
411 VSETATTR (temp_var, (att_exported | att_imported));
412 array_needs_making = 1;
413 }
414 # endif /* ARRAY_EXPORT */
415 #endif
416 #if 0
417 else if (legal_identifier (name))
418 #else
419 else
420 #endif
421 {
422 ro = 0;
423 if (posixly_correct && STREQ (name, "SHELLOPTS"))
424 {
425 temp_var = find_variable ("SHELLOPTS");
426 ro = temp_var && readonly_p (temp_var);
427 if (temp_var)
428 VUNSETATTR (temp_var, att_readonly);
429 }
430 temp_var = bind_variable (name, string, 0);
431 if (temp_var)
432 {
433 if (legal_identifier (name))
434 VSETATTR (temp_var, (att_exported | att_imported));
435 else
436 VSETATTR (temp_var, (att_exported | att_imported | att_invisible));
437 if (ro)
438 VSETATTR (temp_var, att_readonly);
439 array_needs_making = 1;
440 }
441 }
442
443 name[char_index] = '=';
444 /* temp_var can be NULL if it was an exported function with a syntax
445 error (a different bug, but it still shouldn't dump core). */
446 if (temp_var && function_p (temp_var) == 0) /* XXX not yet */
447 {
448 CACHE_IMPORTSTR (temp_var, name);
449 }
450 }
451
452 set_pwd ();
453
454 /* Set up initial value of $_ */
455 temp_var = set_if_not ("_", dollar_vars[0]);
456
457 /* Remember this pid. */
458 dollar_dollar_pid = getpid ();
459
460 /* Now make our own defaults in case the vars that we think are
461 important are missing. */
462 temp_var = set_if_not ("PATH", DEFAULT_PATH_VALUE);
463 #if 0
464 set_auto_export (temp_var); /* XXX */
465 #endif
466
467 temp_var = set_if_not ("TERM", "dumb");
468 #if 0
469 set_auto_export (temp_var); /* XXX */
470 #endif
471
472 #if defined (__QNX__)
473 /* set node id -- don't import it from the environment */
474 {
475 char node_name[22];
476 # if defined (__QNXNTO__)
477 netmgr_ndtostr(ND2S_LOCAL_STR, ND_LOCAL_NODE, node_name, sizeof(node_name));
478 # else
479 qnx_nidtostr (getnid (), node_name, sizeof (node_name));
480 # endif
481 temp_var = bind_variable ("NODE", node_name, 0);
482 set_auto_export (temp_var);
483 }
484 #endif
485
486 /* set up the prompts. */
487 if (interactive_shell)
488 {
489 #if defined (PROMPT_STRING_DECODE)
490 set_if_not ("PS1", primary_prompt);
491 #else
492 if (current_user.uid == -1)
493 get_current_user_info ();
494 set_if_not ("PS1", current_user.euid == 0 ? "# " : primary_prompt);
495 #endif
496 set_if_not ("PS2", secondary_prompt);
497 }
498 set_if_not ("PS4", "+ ");
499
500 /* Don't allow IFS to be imported from the environment. */
501 temp_var = bind_variable ("IFS", " \t\n", 0);
502 setifs (temp_var);
503
504 /* Magic machine types. Pretty convenient. */
505 set_machine_vars ();
506
507 /* Default MAILCHECK for interactive shells. Defer the creation of a
508 default MAILPATH until the startup files are read, because MAIL
509 names a mail file if MAILPATH is not set, and we should provide a
510 default only if neither is set. */
511 if (interactive_shell)
512 {
513 temp_var = set_if_not ("MAILCHECK", posixly_correct ? "600" : "60");
514 VSETATTR (temp_var, att_integer);
515 }
516
517 /* Do some things with shell level. */
518 initialize_shell_level ();
519
520 set_ppid ();
521
522 /* Initialize the `getopts' stuff. */
523 temp_var = bind_variable ("OPTIND", "1", 0);
524 VSETATTR (temp_var, att_integer);
525 getopts_reset (0);
526 bind_variable ("OPTERR", "1", 0);
527 sh_opterr = 1;
528
529 if (login_shell == 1 && posixly_correct == 0)
530 set_home_var ();
531
532 /* Get the full pathname to THIS shell, and set the BASH variable
533 to it. */
534 name = get_bash_name ();
535 temp_var = bind_variable ("BASH", name, 0);
536 free (name);
537
538 /* Make the exported environment variable SHELL be the user's login
539 shell. Note that the `tset' command looks at this variable
540 to determine what style of commands to output; if it ends in "csh",
541 then C-shell commands are output, else Bourne shell commands. */
542 set_shell_var ();
543
544 /* Make a variable called BASH_VERSION which contains the version info. */
545 bind_variable ("BASH_VERSION", shell_version_string (), 0);
546 #if defined (ARRAY_VARS)
547 make_vers_array ();
548 #endif
549
550 if (command_execution_string)
551 bind_variable ("BASH_EXECUTION_STRING", command_execution_string, 0);
552
553 /* Find out if we're supposed to be in Posix.2 mode via an
554 environment variable. */
555 temp_var = find_variable ("POSIXLY_CORRECT");
556 if (!temp_var)
557 temp_var = find_variable ("POSIX_PEDANTIC");
558 if (temp_var && imported_p (temp_var))
559 sv_strict_posix (temp_var->name);
560
561 #if defined (HISTORY)
562 /* Set history variables to defaults, and then do whatever we would
563 do if the variable had just been set. Do this only in the case
564 that we are remembering commands on the history list. */
565 if (remember_on_history)
566 {
567 name = bash_tilde_expand (posixly_correct ? "~/.sh_history" : "~/.bash_history", 0);
568
569 set_if_not ("HISTFILE", name);
570 free (name);
571 }
572 #endif /* HISTORY */
573
574 /* Seed the random number generator. */
575 seedrand ();
576
577 /* Handle some "special" variables that we may have inherited from a
578 parent shell. */
579 if (interactive_shell)
580 {
581 temp_var = find_variable ("IGNOREEOF");
582 if (!temp_var)
583 temp_var = find_variable ("ignoreeof");
584 if (temp_var && imported_p (temp_var))
585 sv_ignoreeof (temp_var->name);
586 }
587
588 #if defined (HISTORY)
589 if (interactive_shell && remember_on_history)
590 {
591 sv_history_control ("HISTCONTROL");
592 sv_histignore ("HISTIGNORE");
593 sv_histtimefmt ("HISTTIMEFORMAT");
594 }
595 #endif /* HISTORY */
596
597 #if defined (READLINE) && defined (STRICT_POSIX)
598 /* POSIXLY_CORRECT will only be 1 here if the shell was compiled
599 -DSTRICT_POSIX */
600 if (interactive_shell && posixly_correct && no_line_editing == 0)
601 rl_prefer_env_winsize = 1;
602 #endif /* READLINE && STRICT_POSIX */
603
604 /*
605 * 24 October 2001
606 *
607 * I'm tired of the arguing and bug reports. Bash now leaves SSH_CLIENT
608 * and SSH2_CLIENT alone. I'm going to rely on the shell_level check in
609 * isnetconn() to avoid running the startup files more often than wanted.
610 * That will, of course, only work if the user's login shell is bash, so
611 * I've made that behavior conditional on SSH_SOURCE_BASHRC being defined
612 * in config-top.h.
613 */
614 #if 0
615 temp_var = find_variable ("SSH_CLIENT");
616 if (temp_var && imported_p (temp_var))
617 {
618 VUNSETATTR (temp_var, att_exported);
619 array_needs_making = 1;
620 }
621 temp_var = find_variable ("SSH2_CLIENT");
622 if (temp_var && imported_p (temp_var))
623 {
624 VUNSETATTR (temp_var, att_exported);
625 array_needs_making = 1;
626 }
627 #endif
628
629 /* Get the user's real and effective user ids. */
630 uidset ();
631
632 temp_var = find_variable ("BASH_XTRACEFD");
633 if (temp_var && imported_p (temp_var))
634 sv_xtracefd (temp_var->name);
635
636 /* Initialize the dynamic variables, and seed their values. */
637 initialize_dynamic_variables ();
638 }
639
640 /* **************************************************************** */
641 /* */
642 /* Setting values for special shell variables */
643 /* */
644 /* **************************************************************** */
645
646 static void
647 set_machine_vars ()
648 {
649 SHELL_VAR *temp_var;
650
651 temp_var = set_if_not ("HOSTTYPE", HOSTTYPE);
652 temp_var = set_if_not ("OSTYPE", OSTYPE);
653 temp_var = set_if_not ("MACHTYPE", MACHTYPE);
654
655 temp_var = set_if_not ("HOSTNAME", current_host_name);
656 }
657
658 /* Set $HOME to the information in the password file if we didn't get
659 it from the environment. */
660
661 /* This function is not static so the tilde and readline libraries can
662 use it. */
663 char *
664 sh_get_home_dir ()
665 {
666 if (current_user.home_dir == 0)
667 get_current_user_info ();
668 return current_user.home_dir;
669 }
670
671 static void
672 set_home_var ()
673 {
674 SHELL_VAR *temp_var;
675
676 temp_var = find_variable ("HOME");
677 if (temp_var == 0)
678 temp_var = bind_variable ("HOME", sh_get_home_dir (), 0);
679 #if 0
680 VSETATTR (temp_var, att_exported);
681 #endif
682 }
683
684 /* Set $SHELL to the user's login shell if it is not already set. Call
685 get_current_user_info if we haven't already fetched the shell. */
686 static void
687 set_shell_var ()
688 {
689 SHELL_VAR *temp_var;
690
691 temp_var = find_variable ("SHELL");
692 if (temp_var == 0)
693 {
694 if (current_user.shell == 0)
695 get_current_user_info ();
696 temp_var = bind_variable ("SHELL", current_user.shell, 0);
697 }
698 #if 0
699 VSETATTR (temp_var, att_exported);
700 #endif
701 }
702
703 static char *
704 get_bash_name ()
705 {
706 char *name;
707
708 if ((login_shell == 1) && RELPATH(shell_name))
709 {
710 if (current_user.shell == 0)
711 get_current_user_info ();
712 name = savestring (current_user.shell);
713 }
714 else if (ABSPATH(shell_name))
715 name = savestring (shell_name);
716 else if (shell_name[0] == '.' && shell_name[1] == '/')
717 {
718 /* Fast path for common case. */
719 char *cdir;
720 int len;
721
722 cdir = get_string_value ("PWD");
723 if (cdir)
724 {
725 len = strlen (cdir);
726 name = (char *)xmalloc (len + strlen (shell_name) + 1);
727 strcpy (name, cdir);
728 strcpy (name + len, shell_name + 1);
729 }
730 else
731 name = savestring (shell_name);
732 }
733 else
734 {
735 char *tname;
736 int s;
737
738 tname = find_user_command (shell_name);
739
740 if (tname == 0)
741 {
742 /* Try the current directory. If there is not an executable
743 there, just punt and use the login shell. */
744 s = file_status (shell_name);
745 if (s & FS_EXECABLE)
746 {
747 tname = make_absolute (shell_name, get_string_value ("PWD"));
748 if (*shell_name == '.')
749 {
750 name = sh_canonpath (tname, PATH_CHECKDOTDOT|PATH_CHECKEXISTS);
751 if (name == 0)
752 name = tname;
753 else
754 free (tname);
755 }
756 else
757 name = tname;
758 }
759 else
760 {
761 if (current_user.shell == 0)
762 get_current_user_info ();
763 name = savestring (current_user.shell);
764 }
765 }
766 else
767 {
768 name = full_pathname (tname);
769 free (tname);
770 }
771 }
772
773 return (name);
774 }
775
776 void
777 adjust_shell_level (change)
778 int change;
779 {
780 char new_level[5], *old_SHLVL;
781 intmax_t old_level;
782 SHELL_VAR *temp_var;
783
784 old_SHLVL = get_string_value ("SHLVL");
785 if (old_SHLVL == 0 || *old_SHLVL == '\0' || legal_number (old_SHLVL, &old_level) == 0)
786 old_level = 0;
787
788 shell_level = old_level + change;
789 if (shell_level < 0)
790 shell_level = 0;
791 else if (shell_level > 1000)
792 {
793 internal_warning (_("shell level (%d) too high, resetting to 1"), shell_level);
794 shell_level = 1;
795 }
796
797 /* We don't need the full generality of itos here. */
798 if (shell_level < 10)
799 {
800 new_level[0] = shell_level + '0';
801 new_level[1] = '\0';
802 }
803 else if (shell_level < 100)
804 {
805 new_level[0] = (shell_level / 10) + '0';
806 new_level[1] = (shell_level % 10) + '0';
807 new_level[2] = '\0';
808 }
809 else if (shell_level < 1000)
810 {
811 new_level[0] = (shell_level / 100) + '0';
812 old_level = shell_level % 100;
813 new_level[1] = (old_level / 10) + '0';
814 new_level[2] = (old_level % 10) + '0';
815 new_level[3] = '\0';
816 }
817
818 temp_var = bind_variable ("SHLVL", new_level, 0);
819 set_auto_export (temp_var);
820 }
821
822 static void
823 initialize_shell_level ()
824 {
825 adjust_shell_level (1);
826 }
827
828 /* If we got PWD from the environment, update our idea of the current
829 working directory. In any case, make sure that PWD exists before
830 checking it. It is possible for getcwd () to fail on shell startup,
831 and in that case, PWD would be undefined. If this is an interactive
832 login shell, see if $HOME is the current working directory, and if
833 that's not the same string as $PWD, set PWD=$HOME. */
834
835 void
836 set_pwd ()
837 {
838 SHELL_VAR *temp_var, *home_var;
839 char *temp_string, *home_string;
840
841 home_var = find_variable ("HOME");
842 home_string = home_var ? value_cell (home_var) : (char *)NULL;
843
844 temp_var = find_variable ("PWD");
845 if (temp_var && imported_p (temp_var) &&
846 (temp_string = value_cell (temp_var)) &&
847 same_file (temp_string, ".", (struct stat *)NULL, (struct stat *)NULL))
848 set_working_directory (temp_string);
849 else if (home_string && interactive_shell && login_shell &&
850 same_file (home_string, ".", (struct stat *)NULL, (struct stat *)NULL))
851 {
852 set_working_directory (home_string);
853 temp_var = bind_variable ("PWD", home_string, 0);
854 set_auto_export (temp_var);
855 }
856 else
857 {
858 temp_string = get_working_directory ("shell-init");
859 if (temp_string)
860 {
861 temp_var = bind_variable ("PWD", temp_string, 0);
862 set_auto_export (temp_var);
863 free (temp_string);
864 }
865 }
866
867 /* According to the Single Unix Specification, v2, $OLDPWD is an
868 `environment variable' and therefore should be auto-exported.
869 Make a dummy invisible variable for OLDPWD, and mark it as exported. */
870 temp_var = bind_variable ("OLDPWD", (char *)NULL, 0);
871 VSETATTR (temp_var, (att_exported | att_invisible));
872 }
873
874 /* Make a variable $PPID, which holds the pid of the shell's parent. */
875 void
876 set_ppid ()
877 {
878 char namebuf[INT_STRLEN_BOUND(pid_t) + 1], *name;
879 SHELL_VAR *temp_var;
880
881 name = inttostr (getppid (), namebuf, sizeof(namebuf));
882 temp_var = find_variable ("PPID");
883 if (temp_var)
884 VUNSETATTR (temp_var, (att_readonly | att_exported));
885 temp_var = bind_variable ("PPID", name, 0);
886 VSETATTR (temp_var, (att_readonly | att_integer));
887 }
888
889 static void
890 uidset ()
891 {
892 char buff[INT_STRLEN_BOUND(uid_t) + 1], *b;
893 register SHELL_VAR *v;
894
895 b = inttostr (current_user.uid, buff, sizeof (buff));
896 v = find_variable ("UID");
897 if (v == 0)
898 {
899 v = bind_variable ("UID", b, 0);
900 VSETATTR (v, (att_readonly | att_integer));
901 }
902
903 if (current_user.euid != current_user.uid)
904 b = inttostr (current_user.euid, buff, sizeof (buff));
905
906 v = find_variable ("EUID");
907 if (v == 0)
908 {
909 v = bind_variable ("EUID", b, 0);
910 VSETATTR (v, (att_readonly | att_integer));
911 }
912 }
913
914 #if defined (ARRAY_VARS)
915 static void
916 make_vers_array ()
917 {
918 SHELL_VAR *vv;
919 ARRAY *av;
920 char *s, d[32], b[INT_STRLEN_BOUND(int) + 1];
921
922 unbind_variable ("BASH_VERSINFO");
923
924 vv = make_new_array_variable ("BASH_VERSINFO");
925 av = array_cell (vv);
926 strcpy (d, dist_version);
927 s = strchr (d, '.');
928 if (s)
929 *s++ = '\0';
930 array_insert (av, 0, d);
931 array_insert (av, 1, s);
932 s = inttostr (patch_level, b, sizeof (b));
933 array_insert (av, 2, s);
934 s = inttostr (build_version, b, sizeof (b));
935 array_insert (av, 3, s);
936 array_insert (av, 4, release_status);
937 array_insert (av, 5, MACHTYPE);
938
939 VSETATTR (vv, att_readonly);
940 }
941 #endif /* ARRAY_VARS */
942
943 /* Set the environment variables $LINES and $COLUMNS in response to
944 a window size change. */
945 void
946 sh_set_lines_and_columns (lines, cols)
947 int lines, cols;
948 {
949 char val[INT_STRLEN_BOUND(int) + 1], *v;
950
951 #if defined (READLINE)
952 /* If we are currently assigning to LINES or COLUMNS, don't do anything. */
953 if (winsize_assignment)
954 return;
955 #endif
956
957 v = inttostr (lines, val, sizeof (val));
958 bind_variable ("LINES", v, 0);
959
960 v = inttostr (cols, val, sizeof (val));
961 bind_variable ("COLUMNS", v, 0);
962 }
963
964 /* **************************************************************** */
965 /* */
966 /* Printing variables and values */
967 /* */
968 /* **************************************************************** */
969
970 /* Print LIST (a list of shell variables) to stdout in such a way that
971 they can be read back in. */
972 void
973 print_var_list (list)
974 register SHELL_VAR **list;
975 {
976 register int i;
977 register SHELL_VAR *var;
978
979 for (i = 0; list && (var = list[i]); i++)
980 if (invisible_p (var) == 0)
981 print_assignment (var);
982 }
983
984 /* Print LIST (a list of shell functions) to stdout in such a way that
985 they can be read back in. */
986 void
987 print_func_list (list)
988 register SHELL_VAR **list;
989 {
990 register int i;
991 register SHELL_VAR *var;
992
993 for (i = 0; list && (var = list[i]); i++)
994 {
995 printf ("%s ", var->name);
996 print_var_function (var);
997 printf ("\n");
998 }
999 }
1000
1001 /* Print the value of a single SHELL_VAR. No newline is
1002 output, but the variable is printed in such a way that
1003 it can be read back in. */
1004 void
1005 print_assignment (var)
1006 SHELL_VAR *var;
1007 {
1008 if (var_isset (var) == 0)
1009 return;
1010
1011 if (function_p (var))
1012 {
1013 printf ("%s", var->name);
1014 print_var_function (var);
1015 printf ("\n");
1016 }
1017 #if defined (ARRAY_VARS)
1018 else if (array_p (var))
1019 print_array_assignment (var, 0);
1020 else if (assoc_p (var))
1021 print_assoc_assignment (var, 0);
1022 #endif /* ARRAY_VARS */
1023 else
1024 {
1025 printf ("%s=", var->name);
1026 print_var_value (var, 1);
1027 printf ("\n");
1028 }
1029 }
1030
1031 /* Print the value cell of VAR, a shell variable. Do not print
1032 the name, nor leading/trailing newline. If QUOTE is non-zero,
1033 and the value contains shell metacharacters, quote the value
1034 in such a way that it can be read back in. */
1035 void
1036 print_var_value (var, quote)
1037 SHELL_VAR *var;
1038 int quote;
1039 {
1040 char *t;
1041
1042 if (var_isset (var) == 0)
1043 return;
1044
1045 if (quote && posixly_correct == 0 && ansic_shouldquote (value_cell (var)))
1046 {
1047 t = ansic_quote (value_cell (var), 0, (int *)0);
1048 printf ("%s", t);
1049 free (t);
1050 }
1051 else if (quote && sh_contains_shell_metas (value_cell (var)))
1052 {
1053 t = sh_single_quote (value_cell (var));
1054 printf ("%s", t);
1055 free (t);
1056 }
1057 else
1058 printf ("%s", value_cell (var));
1059 }
1060
1061 /* Print the function cell of VAR, a shell variable. Do not
1062 print the name, nor leading/trailing newline. */
1063 void
1064 print_var_function (var)
1065 SHELL_VAR *var;
1066 {
1067 char *x;
1068
1069 if (function_p (var) && var_isset (var))
1070 {
1071 x = named_function_string ((char *)NULL, function_cell(var), FUNC_MULTILINE|FUNC_EXTERNAL);
1072 printf ("%s", x);
1073 }
1074 }
1075
1076 /* **************************************************************** */
1077 /* */
1078 /* Dynamic Variables */
1079 /* */
1080 /* **************************************************************** */
1081
1082 /* DYNAMIC VARIABLES
1083
1084 These are variables whose values are generated anew each time they are
1085 referenced. These are implemented using a pair of function pointers
1086 in the struct variable: assign_func, which is called from bind_variable
1087 and, if arrays are compiled into the shell, some of the functions in
1088 arrayfunc.c, and dynamic_value, which is called from find_variable.
1089
1090 assign_func is called from bind_variable_internal, if
1091 bind_variable_internal discovers that the variable being assigned to
1092 has such a function. The function is called as
1093 SHELL_VAR *temp = (*(entry->assign_func)) (entry, value, ind)
1094 and the (SHELL_VAR *)temp is returned as the value of bind_variable. It
1095 is usually ENTRY (self). IND is an index for an array variable, and
1096 unused otherwise.
1097
1098 dynamic_value is called from find_variable_internal to return a `new'
1099 value for the specified dynamic varible. If this function is NULL,
1100 the variable is treated as a `normal' shell variable. If it is not,
1101 however, then this function is called like this:
1102 tempvar = (*(var->dynamic_value)) (var);
1103
1104 Sometimes `tempvar' will replace the value of `var'. Other times, the
1105 shell will simply use the string value. Pretty object-oriented, huh?
1106
1107 Be warned, though: if you `unset' a special variable, it loses its
1108 special meaning, even if you subsequently set it.
1109
1110 The special assignment code would probably have been better put in
1111 subst.c: do_assignment_internal, in the same style as
1112 stupidly_hack_special_variables, but I wanted the changes as
1113 localized as possible. */
1114
1115 #define INIT_DYNAMIC_VAR(var, val, gfunc, afunc) \
1116 do \
1117 { \
1118 v = bind_variable (var, (val), 0); \
1119 v->dynamic_value = gfunc; \
1120 v->assign_func = afunc; \
1121 } \
1122 while (0)
1123
1124 #define INIT_DYNAMIC_ARRAY_VAR(var, gfunc, afunc) \
1125 do \
1126 { \
1127 v = make_new_array_variable (var); \
1128 v->dynamic_value = gfunc; \
1129 v->assign_func = afunc; \
1130 } \
1131 while (0)
1132
1133 #define INIT_DYNAMIC_ASSOC_VAR(var, gfunc, afunc) \
1134 do \
1135 { \
1136 v = make_new_assoc_variable (var); \
1137 v->dynamic_value = gfunc; \
1138 v->assign_func = afunc; \
1139 } \
1140 while (0)
1141
1142 static SHELL_VAR *
1143 null_assign (self, value, unused, key)
1144 SHELL_VAR *self;
1145 char *value;
1146 arrayind_t unused;
1147 char *key;
1148 {
1149 return (self);
1150 }
1151
1152 #if defined (ARRAY_VARS)
1153 static SHELL_VAR *
1154 null_array_assign (self, value, ind, key)
1155 SHELL_VAR *self;
1156 char *value;
1157 arrayind_t ind;
1158 char *key;
1159 {
1160 return (self);
1161 }
1162 #endif
1163
1164 /* Degenerate `dynamic_value' function; just returns what's passed without
1165 manipulation. */
1166 static SHELL_VAR *
1167 get_self (self)
1168 SHELL_VAR *self;
1169 {
1170 return (self);
1171 }
1172
1173 #if defined (ARRAY_VARS)
1174 /* A generic dynamic array variable initializer. Initialize array variable
1175 NAME with dynamic value function GETFUNC and assignment function SETFUNC. */
1176 static SHELL_VAR *
1177 init_dynamic_array_var (name, getfunc, setfunc, attrs)
1178 char *name;
1179 sh_var_value_func_t *getfunc;
1180 sh_var_assign_func_t *setfunc;
1181 int attrs;
1182 {
1183 SHELL_VAR *v;
1184
1185 v = find_variable (name);
1186 if (v)
1187 return (v);
1188 INIT_DYNAMIC_ARRAY_VAR (name, getfunc, setfunc);
1189 if (attrs)
1190 VSETATTR (v, attrs);
1191 return v;
1192 }
1193
1194 static SHELL_VAR *
1195 init_dynamic_assoc_var (name, getfunc, setfunc, attrs)
1196 char *name;
1197 sh_var_value_func_t *getfunc;
1198 sh_var_assign_func_t *setfunc;
1199 int attrs;
1200 {
1201 SHELL_VAR *v;
1202
1203 v = find_variable (name);
1204 if (v)
1205 return (v);
1206 INIT_DYNAMIC_ASSOC_VAR (name, getfunc, setfunc);
1207 if (attrs)
1208 VSETATTR (v, attrs);
1209 return v;
1210 }
1211 #endif
1212
1213 /* The value of $SECONDS. This is the number of seconds since shell
1214 invocation, or, the number of seconds since the last assignment + the
1215 value of the last assignment. */
1216 static intmax_t seconds_value_assigned;
1217
1218 static SHELL_VAR *
1219 assign_seconds (self, value, unused, key)
1220 SHELL_VAR *self;
1221 char *value;
1222 arrayind_t unused;
1223 char *key;
1224 {
1225 if (legal_number (value, &seconds_value_assigned) == 0)
1226 seconds_value_assigned = 0;
1227 shell_start_time = NOW;
1228 return (self);
1229 }
1230
1231 static SHELL_VAR *
1232 get_seconds (var)
1233 SHELL_VAR *var;
1234 {
1235 time_t time_since_start;
1236 char *p;
1237
1238 time_since_start = NOW - shell_start_time;
1239 p = itos(seconds_value_assigned + time_since_start);
1240
1241 FREE (value_cell (var));
1242
1243 VSETATTR (var, att_integer);
1244 var_setvalue (var, p);
1245 return (var);
1246 }
1247
1248 static SHELL_VAR *
1249 init_seconds_var ()
1250 {
1251 SHELL_VAR *v;
1252
1253 v = find_variable ("SECONDS");
1254 if (v)
1255 {
1256 if (legal_number (value_cell(v), &seconds_value_assigned) == 0)
1257 seconds_value_assigned = 0;
1258 }
1259 INIT_DYNAMIC_VAR ("SECONDS", (v ? value_cell (v) : (char *)NULL), get_seconds, assign_seconds);
1260 return v;
1261 }
1262
1263 /* The random number seed. You can change this by setting RANDOM. */
1264 static unsigned long rseed = 1;
1265 static int last_random_value;
1266 static int seeded_subshell = 0;
1267
1268 /* A linear congruential random number generator based on the example
1269 one in the ANSI C standard. This one isn't very good, but a more
1270 complicated one is overkill. */
1271
1272 /* Returns a pseudo-random number between 0 and 32767. */
1273 static int
1274 brand ()
1275 {
1276 /* From "Random number generators: good ones are hard to find",
1277 Park and Miller, Communications of the ACM, vol. 31, no. 10,
1278 October 1988, p. 1195. filtered through FreeBSD */
1279 long h, l;
1280
1281 /* Can't seed with 0. */
1282 if (rseed == 0)
1283 rseed = 123459876;
1284 h = rseed / 127773;
1285 l = rseed % 127773;
1286 rseed = 16807 * l - 2836 * h;
1287 #if 0
1288 if (rseed < 0)
1289 rseed += 0x7fffffff;
1290 #endif
1291 return ((unsigned int)(rseed & 32767)); /* was % 32768 */
1292 }
1293
1294 /* Set the random number generator seed to SEED. */
1295 static void
1296 sbrand (seed)
1297 unsigned long seed;
1298 {
1299 rseed = seed;
1300 last_random_value = 0;
1301 }
1302
1303 static void
1304 seedrand ()
1305 {
1306 struct timeval tv;
1307
1308 gettimeofday (&tv, NULL);
1309 sbrand (tv.tv_sec ^ tv.tv_usec ^ getpid ());
1310 }
1311
1312 static SHELL_VAR *
1313 assign_random (self, value, unused, key)
1314 SHELL_VAR *self;
1315 char *value;
1316 arrayind_t unused;
1317 char *key;
1318 {
1319 sbrand (strtoul (value, (char **)NULL, 10));
1320 if (subshell_environment)
1321 seeded_subshell = getpid ();
1322 return (self);
1323 }
1324
1325 int
1326 get_random_number ()
1327 {
1328 int rv, pid;
1329
1330 /* Reset for command and process substitution. */
1331 pid = getpid ();
1332 if (subshell_environment && seeded_subshell != pid)
1333 {
1334 seedrand ();
1335 seeded_subshell = pid;
1336 }
1337
1338 do
1339 rv = brand ();
1340 while (rv == last_random_value);
1341 return rv;
1342 }
1343
1344 static SHELL_VAR *
1345 get_random (var)
1346 SHELL_VAR *var;
1347 {
1348 int rv;
1349 char *p;
1350
1351 rv = get_random_number ();
1352 last_random_value = rv;
1353 p = itos (rv);
1354
1355 FREE (value_cell (var));
1356
1357 VSETATTR (var, att_integer);
1358 var_setvalue (var, p);
1359 return (var);
1360 }
1361
1362 static SHELL_VAR *
1363 assign_lineno (var, value, unused, key)
1364 SHELL_VAR *var;
1365 char *value;
1366 arrayind_t unused;
1367 char *key;
1368 {
1369 intmax_t new_value;
1370
1371 if (value == 0 || *value == '\0' || legal_number (value, &new_value) == 0)
1372 new_value = 0;
1373 line_number = line_number_base = new_value;
1374 return var;
1375 }
1376
1377 /* Function which returns the current line number. */
1378 static SHELL_VAR *
1379 get_lineno (var)
1380 SHELL_VAR *var;
1381 {
1382 char *p;
1383 int ln;
1384
1385 ln = executing_line_number ();
1386 p = itos (ln);
1387 FREE (value_cell (var));
1388 var_setvalue (var, p);
1389 return (var);
1390 }
1391
1392 static SHELL_VAR *
1393 assign_subshell (var, value, unused, key)
1394 SHELL_VAR *var;
1395 char *value;
1396 arrayind_t unused;
1397 char *key;
1398 {
1399 intmax_t new_value;
1400
1401 if (value == 0 || *value == '\0' || legal_number (value, &new_value) == 0)
1402 new_value = 0;
1403 subshell_level = new_value;
1404 return var;
1405 }
1406
1407 static SHELL_VAR *
1408 get_subshell (var)
1409 SHELL_VAR *var;
1410 {
1411 char *p;
1412
1413 p = itos (subshell_level);
1414 FREE (value_cell (var));
1415 var_setvalue (var, p);
1416 return (var);
1417 }
1418
1419 static SHELL_VAR *
1420 get_bashpid (var)
1421 SHELL_VAR *var;
1422 {
1423 int pid;
1424 char *p;
1425
1426 pid = getpid ();
1427 p = itos (pid);
1428
1429 FREE (value_cell (var));
1430 VSETATTR (var, att_integer|att_readonly);
1431 var_setvalue (var, p);
1432 return (var);
1433 }
1434
1435 static SHELL_VAR *
1436 get_bash_command (var)
1437 SHELL_VAR *var;
1438 {
1439 char *p;
1440
1441 if (the_printed_command_except_trap)
1442 p = savestring (the_printed_command_except_trap);
1443 else
1444 {
1445 p = (char *)xmalloc (1);
1446 p[0] = '\0';
1447 }
1448 FREE (value_cell (var));
1449 var_setvalue (var, p);
1450 return (var);
1451 }
1452
1453 #if defined (HISTORY)
1454 static SHELL_VAR *
1455 get_histcmd (var)
1456 SHELL_VAR *var;
1457 {
1458 char *p;
1459
1460 p = itos (history_number ());
1461 FREE (value_cell (var));
1462 var_setvalue (var, p);
1463 return (var);
1464 }
1465 #endif
1466
1467 #if defined (READLINE)
1468 /* When this function returns, VAR->value points to malloced memory. */
1469 static SHELL_VAR *
1470 get_comp_wordbreaks (var)
1471 SHELL_VAR *var;
1472 {
1473 /* If we don't have anything yet, assign a default value. */
1474 if (rl_completer_word_break_characters == 0 && bash_readline_initialized == 0)
1475 enable_hostname_completion (perform_hostname_completion);
1476
1477 FREE (value_cell (var));
1478 var_setvalue (var, savestring (rl_completer_word_break_characters));
1479
1480 return (var);
1481 }
1482
1483 /* When this function returns, rl_completer_word_break_characters points to
1484 malloced memory. */
1485 static SHELL_VAR *
1486 assign_comp_wordbreaks (self, value, unused, key)
1487 SHELL_VAR *self;
1488 char *value;
1489 arrayind_t unused;
1490 char *key;
1491 {
1492 if (rl_completer_word_break_characters &&
1493 rl_completer_word_break_characters != rl_basic_word_break_characters)
1494 free (rl_completer_word_break_characters);
1495
1496 rl_completer_word_break_characters = savestring (value);
1497 return self;
1498 }
1499 #endif /* READLINE */
1500
1501 #if defined (PUSHD_AND_POPD) && defined (ARRAY_VARS)
1502 static SHELL_VAR *
1503 assign_dirstack (self, value, ind, key)
1504 SHELL_VAR *self;
1505 char *value;
1506 arrayind_t ind;
1507 char *key;
1508 {
1509 set_dirstack_element (ind, 1, value);
1510 return self;
1511 }
1512
1513 static SHELL_VAR *
1514 get_dirstack (self)
1515 SHELL_VAR *self;
1516 {
1517 ARRAY *a;
1518 WORD_LIST *l;
1519
1520 l = get_directory_stack (0);
1521 a = array_from_word_list (l);
1522 array_dispose (array_cell (self));
1523 dispose_words (l);
1524 var_setarray (self, a);
1525 return self;
1526 }
1527 #endif /* PUSHD AND POPD && ARRAY_VARS */
1528
1529 #if defined (ARRAY_VARS)
1530 /* We don't want to initialize the group set with a call to getgroups()
1531 unless we're asked to, but we only want to do it once. */
1532 static SHELL_VAR *
1533 get_groupset (self)
1534 SHELL_VAR *self;
1535 {
1536 register int i;
1537 int ng;
1538 ARRAY *a;
1539 static char **group_set = (char **)NULL;
1540
1541 if (group_set == 0)
1542 {
1543 group_set = get_group_list (&ng);
1544 a = array_cell (self);
1545 for (i = 0; i < ng; i++)
1546 array_insert (a, i, group_set[i]);
1547 }
1548 return (self);
1549 }
1550
1551 static SHELL_VAR *
1552 build_hashcmd (self)
1553 SHELL_VAR *self;
1554 {
1555 HASH_TABLE *h;
1556 int i;
1557 char *k, *v;
1558 BUCKET_CONTENTS *item;
1559
1560 h = assoc_cell (self);
1561 if (h)
1562 assoc_dispose (h);
1563
1564 if (hashed_filenames == 0 || HASH_ENTRIES (hashed_filenames) == 0)
1565 {
1566 var_setvalue (self, (char *)NULL);
1567 return self;
1568 }
1569
1570 h = assoc_create (hashed_filenames->nbuckets);
1571 for (i = 0; i < hashed_filenames->nbuckets; i++)
1572 {
1573 for (item = hash_items (i, hashed_filenames); item; item = item->next)
1574 {
1575 k = savestring (item->key);
1576 v = pathdata(item)->path;
1577 assoc_insert (h, k, v);
1578 }
1579 }
1580
1581 var_setvalue (self, (char *)h);
1582 return self;
1583 }
1584
1585 static SHELL_VAR *
1586 get_hashcmd (self)
1587 SHELL_VAR *self;
1588 {
1589 build_hashcmd (self);
1590 return (self);
1591 }
1592
1593 static SHELL_VAR *
1594 assign_hashcmd (self, value, ind, key)
1595 SHELL_VAR *self;
1596 char *value;
1597 arrayind_t ind;
1598 char *key;
1599 {
1600 phash_insert (key, value, 0, 0);
1601 return (build_hashcmd (self));
1602 }
1603
1604 #if defined (ALIAS)
1605 static SHELL_VAR *
1606 build_aliasvar (self)
1607 SHELL_VAR *self;
1608 {
1609 HASH_TABLE *h;
1610 int i;
1611 char *k, *v;
1612 BUCKET_CONTENTS *item;
1613
1614 h = assoc_cell (self);
1615 if (h)
1616 assoc_dispose (h);
1617
1618 if (aliases == 0 || HASH_ENTRIES (aliases) == 0)
1619 {
1620 var_setvalue (self, (char *)NULL);
1621 return self;
1622 }
1623
1624 h = assoc_create (aliases->nbuckets);
1625 for (i = 0; i < aliases->nbuckets; i++)
1626 {
1627 for (item = hash_items (i, aliases); item; item = item->next)
1628 {
1629 k = savestring (item->key);
1630 v = ((alias_t *)(item->data))->value;
1631 assoc_insert (h, k, v);
1632 }
1633 }
1634
1635 var_setvalue (self, (char *)h);
1636 return self;
1637 }
1638
1639 static SHELL_VAR *
1640 get_aliasvar (self)
1641 SHELL_VAR *self;
1642 {
1643 build_aliasvar (self);
1644 return (self);
1645 }
1646
1647 static SHELL_VAR *
1648 assign_aliasvar (self, value, ind, key)
1649 SHELL_VAR *self;
1650 char *value;
1651 arrayind_t ind;
1652 char *key;
1653 {
1654 add_alias (key, value);
1655 return (build_aliasvar (self));
1656 }
1657 #endif /* ALIAS */
1658
1659 #endif /* ARRAY_VARS */
1660
1661 /* If ARRAY_VARS is not defined, this just returns the name of any
1662 currently-executing function. If we have arrays, it's a call stack. */
1663 static SHELL_VAR *
1664 get_funcname (self)
1665 SHELL_VAR *self;
1666 {
1667 #if ! defined (ARRAY_VARS)
1668 char *t;
1669 if (variable_context && this_shell_function)
1670 {
1671 FREE (value_cell (self));
1672 t = savestring (this_shell_function->name);
1673 var_setvalue (self, t);
1674 }
1675 #endif
1676 return (self);
1677 }
1678
1679 void
1680 make_funcname_visible (on_or_off)
1681 int on_or_off;
1682 {
1683 SHELL_VAR *v;
1684
1685 v = find_variable ("FUNCNAME");
1686 if (v == 0 || v->dynamic_value == 0)
1687 return;
1688
1689 if (on_or_off)
1690 VUNSETATTR (v, att_invisible);
1691 else
1692 VSETATTR (v, att_invisible);
1693 }
1694
1695 static SHELL_VAR *
1696 init_funcname_var ()
1697 {
1698 SHELL_VAR *v;
1699
1700 v = find_variable ("FUNCNAME");
1701 if (v)
1702 return v;
1703 #if defined (ARRAY_VARS)
1704 INIT_DYNAMIC_ARRAY_VAR ("FUNCNAME", get_funcname, null_array_assign);
1705 #else
1706 INIT_DYNAMIC_VAR ("FUNCNAME", (char *)NULL, get_funcname, null_assign);
1707 #endif
1708 VSETATTR (v, att_invisible|att_noassign);
1709 return v;
1710 }
1711
1712 static void
1713 initialize_dynamic_variables ()
1714 {
1715 SHELL_VAR *v;
1716
1717 v = init_seconds_var ();
1718
1719 INIT_DYNAMIC_VAR ("BASH_COMMAND", (char *)NULL, get_bash_command, (sh_var_assign_func_t *)NULL);
1720 INIT_DYNAMIC_VAR ("BASH_SUBSHELL", (char *)NULL, get_subshell, assign_subshell);
1721
1722 INIT_DYNAMIC_VAR ("RANDOM", (char *)NULL, get_random, assign_random);
1723 VSETATTR (v, att_integer);
1724 INIT_DYNAMIC_VAR ("LINENO", (char *)NULL, get_lineno, assign_lineno);
1725 VSETATTR (v, att_integer);
1726
1727 INIT_DYNAMIC_VAR ("BASHPID", (char *)NULL, get_bashpid, null_assign);
1728 VSETATTR (v, att_integer|att_readonly);
1729
1730 #if defined (HISTORY)
1731 INIT_DYNAMIC_VAR ("HISTCMD", (char *)NULL, get_histcmd, (sh_var_assign_func_t *)NULL);
1732 VSETATTR (v, att_integer);
1733 #endif
1734
1735 #if defined (READLINE)
1736 INIT_DYNAMIC_VAR ("COMP_WORDBREAKS", (char *)NULL, get_comp_wordbreaks, assign_comp_wordbreaks);
1737 #endif
1738
1739 #if defined (PUSHD_AND_POPD) && defined (ARRAY_VARS)
1740 v = init_dynamic_array_var ("DIRSTACK", get_dirstack, assign_dirstack, 0);
1741 #endif /* PUSHD_AND_POPD && ARRAY_VARS */
1742
1743 #if defined (ARRAY_VARS)
1744 v = init_dynamic_array_var ("GROUPS", get_groupset, null_array_assign, att_noassign);
1745
1746 # if defined (DEBUGGER)
1747 v = init_dynamic_array_var ("BASH_ARGC", get_self, null_array_assign, att_noassign|att_nounset);
1748 v = init_dynamic_array_var ("BASH_ARGV", get_self, null_array_assign, att_noassign|att_nounset);
1749 # endif /* DEBUGGER */
1750 v = init_dynamic_array_var ("BASH_SOURCE", get_self, null_array_assign, att_noassign|att_nounset);
1751 v = init_dynamic_array_var ("BASH_LINENO", get_self, null_array_assign, att_noassign|att_nounset);
1752
1753 v = init_dynamic_assoc_var ("BASH_CMDS", get_hashcmd, assign_hashcmd, att_nofree);
1754 # if defined (ALIAS)
1755 v = init_dynamic_assoc_var ("BASH_ALIASES", get_aliasvar, assign_aliasvar, att_nofree);
1756 # endif
1757 #endif
1758
1759 v = init_funcname_var ();
1760 }
1761
1762 /* **************************************************************** */
1763 /* */
1764 /* Retrieving variables and values */
1765 /* */
1766 /* **************************************************************** */
1767
1768 /* How to get a pointer to the shell variable or function named NAME.
1769 HASHED_VARS is a pointer to the hash table containing the list
1770 of interest (either variables or functions). */
1771
1772 static SHELL_VAR *
1773 hash_lookup (name, hashed_vars)
1774 const char *name;
1775 HASH_TABLE *hashed_vars;
1776 {
1777 BUCKET_CONTENTS *bucket;
1778
1779 bucket = hash_search (name, hashed_vars, 0);
1780 /* If we find the name in HASHED_VARS, set LAST_TABLE_SEARCHED to that
1781 table. */
1782 if (bucket)
1783 last_table_searched = hashed_vars;
1784 return (bucket ? (SHELL_VAR *)bucket->data : (SHELL_VAR *)NULL);
1785 }
1786
1787 SHELL_VAR *
1788 var_lookup (name, vcontext)
1789 const char *name;
1790 VAR_CONTEXT *vcontext;
1791 {
1792 VAR_CONTEXT *vc;
1793 SHELL_VAR *v;
1794
1795 v = (SHELL_VAR *)NULL;
1796 for (vc = vcontext; vc; vc = vc->down)
1797 if (v = hash_lookup (name, vc->table))
1798 break;
1799
1800 return v;
1801 }
1802
1803 /* Look up the variable entry named NAME. If SEARCH_TEMPENV is non-zero,
1804 then also search the temporarily built list of exported variables.
1805 The lookup order is:
1806 temporary_env
1807 shell_variables list
1808 */
1809
1810 SHELL_VAR *
1811 find_variable_internal (name, force_tempenv)
1812 const char *name;
1813 int force_tempenv;
1814 {
1815 SHELL_VAR *var;
1816 int search_tempenv;
1817 VAR_CONTEXT *vc;
1818
1819 var = (SHELL_VAR *)NULL;
1820
1821 /* If explicitly requested, first look in the temporary environment for
1822 the variable. This allows constructs such as "foo=x eval 'echo $foo'"
1823 to get the `exported' value of $foo. This happens if we are executing
1824 a function or builtin, or if we are looking up a variable in a
1825 "subshell environment". */
1826 search_tempenv = force_tempenv || (expanding_redir == 0 && subshell_environment);
1827
1828 if (search_tempenv && temporary_env)
1829 var = hash_lookup (name, temporary_env);
1830
1831 vc = shell_variables;
1832 #if 0
1833 if (search_tempenv == 0 && /* (subshell_environment & SUBSHELL_COMSUB) && */
1834 expanding_redir &&
1835 (this_shell_builtin == eval_builtin || this_shell_builtin == command_builtin))
1836 {
1837 itrace("find_variable_internal: search_tempenv == 0: skipping VC_BLTNENV");
1838 while (vc && (vc->flags & VC_BLTNENV))
1839 vc = vc->down;
1840 if (vc == 0)
1841 vc = shell_variables;
1842 }
1843 #endif
1844
1845 if (var == 0)
1846 var = var_lookup (name, vc);
1847
1848 if (var == 0)
1849 return ((SHELL_VAR *)NULL);
1850
1851 return (var->dynamic_value ? (*(var->dynamic_value)) (var) : var);
1852 }
1853
1854 /* Look up and resolve the chain of nameref variables starting at V all the
1855 way to NULL or non-nameref. */
1856 SHELL_VAR *
1857 find_variable_nameref (v)
1858 SHELL_VAR *v;
1859 {
1860 int level;
1861 char *newname;
1862 SHELL_VAR *orig, *oldv;
1863
1864 level = 0;
1865 orig = v;
1866 while (v && nameref_p (v))
1867 {
1868 level++;
1869 if (level > NAMEREF_MAX)
1870 return ((SHELL_VAR *)0); /* error message here? */
1871 newname = nameref_cell (v);
1872 if (newname == 0 || *newname == '\0')
1873 return ((SHELL_VAR *)0);
1874 oldv = v;
1875 v = find_variable_internal (newname, (expanding_redir == 0 && (assigning_in_environment || executing_builtin)));
1876 if (v == orig || v == oldv)
1877 {
1878 internal_warning (_("%s: circular name reference"), orig->name);
1879 return ((SHELL_VAR *)0);
1880 }
1881 }
1882 return v;
1883 }
1884
1885 /* Resolve the chain of nameref variables for NAME. XXX - could change later */
1886 SHELL_VAR *
1887 find_variable_last_nameref (name)
1888 const char *name;
1889 {
1890 SHELL_VAR *v, *nv;
1891 char *newname;
1892 int level;
1893
1894 nv = v = find_variable_noref (name);
1895 level = 0;
1896 while (v && nameref_p (v))
1897 {
1898 level++;
1899 if (level > NAMEREF_MAX)
1900 return ((SHELL_VAR *)0); /* error message here? */
1901 newname = nameref_cell (v);
1902 if (newname == 0 || *newname == '\0')
1903 return ((SHELL_VAR *)0);
1904 nv = v;
1905 v = find_variable_internal (newname, (expanding_redir == 0 && (assigning_in_environment || executing_builtin)));
1906 }
1907 return nv;
1908 }
1909
1910 /* Resolve the chain of nameref variables for NAME. XXX - could change later */
1911 SHELL_VAR *
1912 find_global_variable_last_nameref (name)
1913 const char *name;
1914 {
1915 SHELL_VAR *v, *nv;
1916 char *newname;
1917 int level;
1918
1919 nv = v = find_global_variable_noref (name);
1920 level = 0;
1921 while (v && nameref_p (v))
1922 {
1923 level++;
1924 if (level > NAMEREF_MAX)
1925 return ((SHELL_VAR *)0); /* error message here? */
1926 newname = nameref_cell (v);
1927 if (newname == 0 || *newname == '\0')
1928 return ((SHELL_VAR *)0);
1929 nv = v;
1930 v = find_global_variable_noref (newname);
1931 }
1932 return nv;
1933 }
1934
1935 static SHELL_VAR *
1936 find_nameref_at_context (v, vc)
1937 SHELL_VAR *v;
1938 VAR_CONTEXT *vc;
1939 {
1940 SHELL_VAR *nv, *nv2;
1941 VAR_CONTEXT *nvc;
1942 char *newname;
1943 int level;
1944
1945 nv = v;
1946 level = 1;
1947 while (nv && nameref_p (nv))
1948 {
1949 level++;
1950 if (level > NAMEREF_MAX)
1951 return ((SHELL_VAR *)NULL);
1952 newname = nameref_cell (nv);
1953 if (newname == 0 || *newname == '\0')
1954 return ((SHELL_VAR *)NULL);
1955 nv2 = hash_lookup (newname, vc->table);
1956 if (nv2 == 0)
1957 break;
1958 nv = nv2;
1959 }
1960 return nv;
1961 }
1962
1963 /* Do nameref resolution from the VC, which is the local context for some
1964 function or builtin, `up' the chain to the global variables context. If
1965 NVCP is not NULL, return the variable context where we finally ended the
1966 nameref resolution (so the bind_variable_internal can use the correct
1967 variable context and hash table). */
1968 static SHELL_VAR *
1969 find_variable_nameref_context (v, vc, nvcp)
1970 SHELL_VAR *v;
1971 VAR_CONTEXT *vc;
1972 VAR_CONTEXT **nvcp;
1973 {
1974 SHELL_VAR *nv, *nv2;
1975 VAR_CONTEXT *nvc;
1976
1977 /* Look starting at the current context all the way `up' */
1978 for (nv = v, nvc = vc; nvc; nvc = nvc->down)
1979 {
1980 nv2 = find_nameref_at_context (nv, nvc);
1981 if (nv2 == 0)
1982 continue;
1983 nv = nv2;
1984 if (*nvcp)
1985 *nvcp = nvc;
1986 if (nameref_p (nv) == 0)
1987 break;
1988 }
1989 return (nameref_p (nv) ? (SHELL_VAR *)NULL : nv);
1990 }
1991
1992 /* Do nameref resolution from the VC, which is the local context for some
1993 function or builtin, `up' the chain to the global variables context. If
1994 NVCP is not NULL, return the variable context where we finally ended the
1995 nameref resolution (so the bind_variable_internal can use the correct
1996 variable context and hash table). */
1997 static SHELL_VAR *
1998 find_variable_last_nameref_context (v, vc, nvcp)
1999 SHELL_VAR *v;
2000 VAR_CONTEXT *vc;
2001 VAR_CONTEXT **nvcp;
2002 {
2003 SHELL_VAR *nv, *nv2;
2004 VAR_CONTEXT *nvc;
2005
2006 /* Look starting at the current context all the way `up' */
2007 for (nv = v, nvc = vc; nvc; nvc = nvc->down)
2008 {
2009 nv2 = find_nameref_at_context (nv, nvc);
2010 if (nv2 == 0)
2011 continue;
2012 nv = nv2;
2013 if (*nvcp)
2014 *nvcp = nvc;
2015 }
2016 return (nameref_p (nv) ? nv : (SHELL_VAR *)NULL);
2017 }
2018
2019 /* Find a variable, forcing a search of the temporary environment first */
2020 SHELL_VAR *
2021 find_variable_tempenv (name)
2022 const char *name;
2023 {
2024 SHELL_VAR *var;
2025
2026 var = find_variable_internal (name, 1);
2027 if (var && nameref_p (var))
2028 var = find_variable_nameref (var);
2029 return (var);
2030 }
2031
2032 /* Find a variable, not forcing a search of the temporary environment first */
2033 SHELL_VAR *
2034 find_variable_notempenv (name)
2035 const char *name;
2036 {
2037 SHELL_VAR *var;
2038
2039 var = find_variable_internal (name, 0);
2040 if (var && nameref_p (var))
2041 var = find_variable_nameref (var);
2042 return (var);
2043 }
2044
2045 SHELL_VAR *
2046 find_global_variable (name)
2047 const char *name;
2048 {
2049 SHELL_VAR *var;
2050
2051 var = var_lookup (name, global_variables);
2052 if (var && nameref_p (var))
2053 var = find_variable_nameref (var);
2054
2055 if (var == 0)
2056 return ((SHELL_VAR *)NULL);
2057
2058 return (var->dynamic_value ? (*(var->dynamic_value)) (var) : var);
2059 }
2060
2061 SHELL_VAR *
2062 find_global_variable_noref (name)
2063 const char *name;
2064 {
2065 SHELL_VAR *var;
2066
2067 var = var_lookup (name, global_variables);
2068
2069 if (var == 0)
2070 return ((SHELL_VAR *)NULL);
2071
2072 return (var->dynamic_value ? (*(var->dynamic_value)) (var) : var);
2073 }
2074
2075 SHELL_VAR *
2076 find_shell_variable (name)
2077 const char *name;
2078 {
2079 SHELL_VAR *var;
2080
2081 var = var_lookup (name, shell_variables);
2082 if (var && nameref_p (var))
2083 var = find_variable_nameref (var);
2084
2085 if (var == 0)
2086 return ((SHELL_VAR *)NULL);
2087
2088 return (var->dynamic_value ? (*(var->dynamic_value)) (var) : var);
2089 }
2090
2091 /* Look up the variable entry named NAME. Returns the entry or NULL. */
2092 SHELL_VAR *
2093 find_variable (name)
2094 const char *name;
2095 {
2096 SHELL_VAR *v;
2097
2098 last_table_searched = 0;
2099 v = find_variable_internal (name, (expanding_redir == 0 && (assigning_in_environment || executing_builtin)));
2100 if (v && nameref_p (v))
2101 v = find_variable_nameref (v);
2102 return v;
2103 }
2104
2105 SHELL_VAR *
2106 find_variable_noref (name)
2107 const char *name;
2108 {
2109 SHELL_VAR *v;
2110
2111 v = find_variable_internal (name, (expanding_redir == 0 && (assigning_in_environment || executing_builtin)));
2112 return v;
2113 }
2114
2115 /* Look up the function entry whose name matches STRING.
2116 Returns the entry or NULL. */
2117 SHELL_VAR *
2118 find_function (name)
2119 const char *name;
2120 {
2121 return (hash_lookup (name, shell_functions));
2122 }
2123
2124 /* Find the function definition for the shell function named NAME. Returns
2125 the entry or NULL. */
2126 FUNCTION_DEF *
2127 find_function_def (name)
2128 const char *name;
2129 {
2130 #if defined (DEBUGGER)
2131 return ((FUNCTION_DEF *)hash_lookup (name, shell_function_defs));
2132 #else
2133 return ((FUNCTION_DEF *)0);
2134 #endif
2135 }
2136
2137 /* Return the value of VAR. VAR is assumed to have been the result of a
2138 lookup without any subscript, if arrays are compiled into the shell. */
2139 char *
2140 get_variable_value (var)
2141 SHELL_VAR *var;
2142 {
2143 if (var == 0)
2144 return ((char *)NULL);
2145 #if defined (ARRAY_VARS)
2146 else if (array_p (var))
2147 return (array_reference (array_cell (var), 0));
2148 else if (assoc_p (var))
2149 return (assoc_reference (assoc_cell (var), "0"));
2150 #endif
2151 else
2152 return (value_cell (var));
2153 }
2154
2155 /* Return the string value of a variable. Return NULL if the variable
2156 doesn't exist. Don't cons a new string. This is a potential memory
2157 leak if the variable is found in the temporary environment. Since
2158 functions and variables have separate name spaces, returns NULL if
2159 var_name is a shell function only. */
2160 char *
2161 get_string_value (var_name)
2162 const char *var_name;
2163 {
2164 SHELL_VAR *var;
2165
2166 var = find_variable (var_name);
2167 return ((var) ? get_variable_value (var) : (char *)NULL);
2168 }
2169
2170 /* This is present for use by the tilde and readline libraries. */
2171 char *
2172 sh_get_env_value (v)
2173 const char *v;
2174 {
2175 return get_string_value (v);
2176 }
2177
2178 /* **************************************************************** */
2179 /* */
2180 /* Creating and setting variables */
2181 /* */
2182 /* **************************************************************** */
2183
2184 /* Set NAME to VALUE if NAME has no value. */
2185 SHELL_VAR *
2186 set_if_not (name, value)
2187 char *name, *value;
2188 {
2189 SHELL_VAR *v;
2190
2191 if (shell_variables == 0)
2192 create_variable_tables ();
2193
2194 v = find_variable (name);
2195 if (v == 0)
2196 v = bind_variable_internal (name, value, global_variables->table, HASH_NOSRCH, 0);
2197 return (v);
2198 }
2199
2200 /* Create a local variable referenced by NAME. */
2201 SHELL_VAR *
2202 make_local_variable (name)
2203 const char *name;
2204 {
2205 SHELL_VAR *new_var, *old_var;
2206 VAR_CONTEXT *vc;
2207 int was_tmpvar;
2208 char *tmp_value;
2209
2210 /* local foo; local foo; is a no-op. */
2211 old_var = find_variable (name);
2212 if (old_var && local_p (old_var) && old_var->context == variable_context)
2213 return (old_var);
2214
2215 was_tmpvar = old_var && tempvar_p (old_var);
2216 /* If we're making a local variable in a shell function, the temporary env
2217 has already been merged into the function's variable context stack. We
2218 can assume that a temporary var in the same context appears in the same
2219 VAR_CONTEXT and can safely be returned without creating a new variable
2220 (which results in duplicate names in the same VAR_CONTEXT->table */
2221 /* We can't just test tmpvar_p because variables in the temporary env given
2222 to a shell function appear in the function's local variable VAR_CONTEXT
2223 but retain their tempvar attribute. We want temporary variables that are
2224 found in temporary_env, hence the test for last_table_searched, which is
2225 set in hash_lookup and only (so far) checked here. */
2226 if (was_tmpvar && old_var->context == variable_context && last_table_searched != temporary_env)
2227 {
2228 VUNSETATTR (old_var, att_invisible);
2229 return (old_var);
2230 }
2231 if (was_tmpvar)
2232 tmp_value = value_cell (old_var);
2233
2234 for (vc = shell_variables; vc; vc = vc->down)
2235 if (vc_isfuncenv (vc) && vc->scope == variable_context)
2236 break;
2237
2238 if (vc == 0)
2239 {
2240 internal_error (_("make_local_variable: no function context at current scope"));
2241 return ((SHELL_VAR *)NULL);
2242 }
2243 else if (vc->table == 0)
2244 vc->table = hash_create (TEMPENV_HASH_BUCKETS);
2245
2246 /* Since this is called only from the local/declare/typeset code, we can
2247 call builtin_error here without worry (of course, it will also work
2248 for anything that sets this_command_name). Variables with the `noassign'
2249 attribute may not be made local. The test against old_var's context
2250 level is to disallow local copies of readonly global variables (since I
2251 believe that this could be a security hole). Readonly copies of calling
2252 function local variables are OK. */
2253 if (old_var && (noassign_p (old_var) ||
2254 (readonly_p (old_var) && old_var->context == 0)))
2255 {
2256 if (readonly_p (old_var))
2257 sh_readonly (name);
2258 else if (noassign_p (old_var))
2259 builtin_error (_("%s: variable may not be assigned value"), name);
2260 #if 0
2261 /* Let noassign variables through with a warning */
2262 if (readonly_p (old_var))
2263 #endif
2264 return ((SHELL_VAR *)NULL);
2265 }
2266
2267 if (old_var == 0)
2268 new_var = make_new_variable (name, vc->table);
2269 else
2270 {
2271 new_var = make_new_variable (name, vc->table);
2272
2273 /* If we found this variable in one of the temporary environments,
2274 inherit its value. Watch to see if this causes problems with
2275 things like `x=4 local x'. XXX - see above for temporary env
2276 variables with the same context level as variable_context */
2277 /* XXX - we should only do this if the variable is not an array. */
2278 if (was_tmpvar)
2279 var_setvalue (new_var, savestring (tmp_value));
2280
2281 new_var->attributes = exported_p (old_var) ? att_exported : 0;
2282 }
2283
2284 vc->flags |= VC_HASLOCAL;
2285
2286 new_var->context = variable_context;
2287 VSETATTR (new_var, att_local);
2288
2289 if (ifsname (name))
2290 setifs (new_var);
2291
2292 if (was_tmpvar == 0)
2293 VSETATTR (new_var, att_invisible); /* XXX */
2294 return (new_var);
2295 }
2296
2297 /* Create a new shell variable with name NAME. */
2298 static SHELL_VAR *
2299 new_shell_variable (name)
2300 const char *name;
2301 {
2302 SHELL_VAR *entry;
2303
2304 entry = (SHELL_VAR *)xmalloc (sizeof (SHELL_VAR));
2305
2306 entry->name = savestring (name);
2307 var_setvalue (entry, (char *)NULL);
2308 CLEAR_EXPORTSTR (entry);
2309
2310 entry->dynamic_value = (sh_var_value_func_t *)NULL;
2311 entry->assign_func = (sh_var_assign_func_t *)NULL;
2312
2313 entry->attributes = 0;
2314
2315 /* Always assume variables are to be made at toplevel!
2316 make_local_variable has the responsibility of changing the
2317 variable context. */
2318 entry->context = 0;
2319
2320 return (entry);
2321 }
2322
2323 /* Create a new shell variable with name NAME and add it to the hash table
2324 TABLE. */
2325 static SHELL_VAR *
2326 make_new_variable (name, table)
2327 const char *name;
2328 HASH_TABLE *table;
2329 {
2330 SHELL_VAR *entry;
2331 BUCKET_CONTENTS *elt;
2332
2333 entry = new_shell_variable (name);
2334
2335 /* Make sure we have a shell_variables hash table to add to. */
2336 if (shell_variables == 0)
2337 create_variable_tables ();
2338
2339 elt = hash_insert (savestring (name), table, HASH_NOSRCH);
2340 elt->data = (PTR_T)entry;
2341
2342 return entry;
2343 }
2344
2345 #if defined (ARRAY_VARS)
2346 SHELL_VAR *
2347 make_new_array_variable (name)
2348 char *name;
2349 {
2350 SHELL_VAR *entry;
2351 ARRAY *array;
2352
2353 entry = make_new_variable (name, global_variables->table);
2354 array = array_create ();
2355
2356 var_setarray (entry, array);
2357 VSETATTR (entry, att_array);
2358 return entry;
2359 }
2360
2361 SHELL_VAR *
2362 make_local_array_variable (name, assoc_ok)
2363 char *name;
2364 int assoc_ok;
2365 {
2366 SHELL_VAR *var;
2367 ARRAY *array;
2368
2369 var = make_local_variable (name);
2370 if (var == 0 || array_p (var) || (assoc_ok && assoc_p (var)))
2371 return var;
2372
2373 array = array_create ();
2374
2375 dispose_variable_value (var);
2376 var_setarray (var, array);
2377 VSETATTR (var, att_array);
2378 return var;
2379 }
2380
2381 SHELL_VAR *
2382 make_new_assoc_variable (name)
2383 char *name;
2384 {
2385 SHELL_VAR *entry;
2386 HASH_TABLE *hash;
2387
2388 entry = make_new_variable (name, global_variables->table);
2389 hash = assoc_create (0);
2390
2391 var_setassoc (entry, hash);
2392 VSETATTR (entry, att_assoc);
2393 return entry;
2394 }
2395
2396 SHELL_VAR *
2397 make_local_assoc_variable (name)
2398 char *name;
2399 {
2400 SHELL_VAR *var;
2401 HASH_TABLE *hash;
2402
2403 var = make_local_variable (name);
2404 if (var == 0 || assoc_p (var))
2405 return var;
2406
2407 dispose_variable_value (var);
2408 hash = assoc_create (0);
2409
2410 var_setassoc (var, hash);
2411 VSETATTR (var, att_assoc);
2412 return var;
2413 }
2414 #endif
2415
2416 char *
2417 make_variable_value (var, value, flags)
2418 SHELL_VAR *var;
2419 char *value;
2420 int flags;
2421 {
2422 char *retval, *oval;
2423 intmax_t lval, rval;
2424 int expok, olen, op;
2425
2426 /* If this variable has had its type set to integer (via `declare -i'),
2427 then do expression evaluation on it and store the result. The
2428 functions in expr.c (evalexp()) and bind_int_variable() are responsible
2429 for turning off the integer flag if they don't want further
2430 evaluation done. */
2431 if (integer_p (var))
2432 {
2433 if (flags & ASS_APPEND)
2434 {
2435 oval = value_cell (var);
2436 lval = evalexp (oval, &expok); /* ksh93 seems to do this */
2437 if (expok == 0)
2438 {
2439 top_level_cleanup ();
2440 jump_to_top_level (DISCARD);
2441 }
2442 }
2443 rval = evalexp (value, &expok);
2444 if (expok == 0)
2445 {
2446 top_level_cleanup ();
2447 jump_to_top_level (DISCARD);
2448 }
2449 /* This can be fooled if the variable's value changes while evaluating
2450 `rval'. We can change it if we move the evaluation of lval to here. */
2451 if (flags & ASS_APPEND)
2452 rval += lval;
2453 retval = itos (rval);
2454 }
2455 #if defined (CASEMOD_ATTRS)
2456 else if (capcase_p (var) || uppercase_p (var) || lowercase_p (var))
2457 {
2458 if (flags & ASS_APPEND)
2459 {
2460 oval = get_variable_value (var);
2461 if (oval == 0) /* paranoia */
2462 oval = "";
2463 olen = STRLEN (oval);
2464 retval = (char *)xmalloc (olen + (value ? STRLEN (value) : 0) + 1);
2465 strcpy (retval, oval);
2466 if (value)
2467 strcpy (retval+olen, value);
2468 }
2469 else if (*value)
2470 retval = savestring (value);
2471 else
2472 {
2473 retval = (char *)xmalloc (1);
2474 retval[0] = '\0';
2475 }
2476 op = capcase_p (var) ? CASE_CAPITALIZE
2477 : (uppercase_p (var) ? CASE_UPPER : CASE_LOWER);
2478 oval = sh_modcase (retval, (char *)0, op);
2479 free (retval);
2480 retval = oval;
2481 }
2482 #endif /* CASEMOD_ATTRS */
2483 else if (value)
2484 {
2485 if (flags & ASS_APPEND)
2486 {
2487 oval = get_variable_value (var);
2488 if (oval == 0) /* paranoia */
2489 oval = "";
2490 olen = STRLEN (oval);
2491 retval = (char *)xmalloc (olen + (value ? STRLEN (value) : 0) + 1);
2492 strcpy (retval, oval);
2493 if (value)
2494 strcpy (retval+olen, value);
2495 }
2496 else if (*value)
2497 retval = savestring (value);
2498 else
2499 {
2500 retval = (char *)xmalloc (1);
2501 retval[0] = '\0';
2502 }
2503 }
2504 else
2505 retval = (char *)NULL;
2506
2507 return retval;
2508 }
2509
2510 /* Bind a variable NAME to VALUE in the HASH_TABLE TABLE, which may be the
2511 temporary environment (but usually is not). */
2512 static SHELL_VAR *
2513 bind_variable_internal (name, value, table, hflags, aflags)
2514 const char *name;
2515 char *value;
2516 HASH_TABLE *table;
2517 int hflags, aflags;
2518 {
2519 char *newval;
2520 SHELL_VAR *entry;
2521
2522 entry = (hflags & HASH_NOSRCH) ? (SHELL_VAR *)NULL : hash_lookup (name, table);
2523 /* Follow the nameref chain here if this is the global variables table */
2524 if (entry && nameref_p (entry) && (invisible_p (entry) == 0) && table == global_variables->table)
2525 {
2526 entry = find_global_variable (entry->name);
2527 /* Let's see if we have a nameref referencing a variable that hasn't yet
2528 been created. */
2529 if (entry == 0)
2530 entry = find_variable_last_nameref (name); /* XXX */
2531 if (entry == 0) /* just in case */
2532 return (entry);
2533 }
2534
2535 /* The first clause handles `declare -n ref; ref=x;' */
2536 if (entry && invisible_p (entry) && nameref_p (entry))
2537 goto assign_value;
2538 else if (entry && nameref_p (entry))
2539 {
2540 newval = nameref_cell (entry);
2541 #if defined (ARRAY_VARS)
2542 /* declare -n foo=x[2] */
2543 if (valid_array_reference (newval))
2544 /* XXX - should it be aflags? */
2545 entry = assign_array_element (newval, make_variable_value (entry, value, 0), aflags);
2546 else
2547 #endif
2548 {
2549 entry = make_new_variable (newval, table);
2550 var_setvalue (entry, make_variable_value (entry, value, 0));
2551 }
2552 }
2553 else if (entry == 0)
2554 {
2555 entry = make_new_variable (name, table);
2556 var_setvalue (entry, make_variable_value (entry, value, 0)); /* XXX */
2557 }
2558 else if (entry->assign_func) /* array vars have assign functions now */
2559 {
2560 INVALIDATE_EXPORTSTR (entry);
2561 newval = (aflags & ASS_APPEND) ? make_variable_value (entry, value, aflags) : value;
2562 if (assoc_p (entry))
2563 entry = (*(entry->assign_func)) (entry, newval, -1, savestring ("0"));
2564 else if (array_p (entry))
2565 entry = (*(entry->assign_func)) (entry, newval, 0, 0);
2566 else
2567 entry = (*(entry->assign_func)) (entry, newval, -1, 0);
2568 if (newval != value)
2569 free (newval);
2570 return (entry);
2571 }
2572 else
2573 {
2574 assign_value:
2575 if (readonly_p (entry) || noassign_p (entry))
2576 {
2577 if (readonly_p (entry))
2578 err_readonly (name);
2579 return (entry);
2580 }
2581
2582 /* Variables which are bound are visible. */
2583 VUNSETATTR (entry, att_invisible);
2584
2585 #if defined (ARRAY_VARS)
2586 if (assoc_p (entry) || array_p (entry))
2587 newval = make_array_variable_value (entry, 0, "0", value, aflags);
2588 else
2589 #endif
2590
2591 newval = make_variable_value (entry, value, aflags); /* XXX */
2592
2593 /* Invalidate any cached export string */
2594 INVALIDATE_EXPORTSTR (entry);
2595
2596 #if defined (ARRAY_VARS)
2597 /* XXX -- this bears looking at again -- XXX */
2598 /* If an existing array variable x is being assigned to with x=b or
2599 `read x' or something of that nature, silently convert it to
2600 x[0]=b or `read x[0]'. */
2601 if (assoc_p (entry))
2602 {
2603 assoc_insert (assoc_cell (entry), savestring ("0"), newval);
2604 free (newval);
2605 }
2606 else if (array_p (entry))
2607 {
2608 array_insert (array_cell (entry), 0, newval);
2609 free (newval);
2610 }
2611 else
2612 #endif
2613 {
2614 FREE (value_cell (entry));
2615 var_setvalue (entry, newval);
2616 }
2617 }
2618
2619 if (mark_modified_vars)
2620 VSETATTR (entry, att_exported);
2621
2622 if (exported_p (entry))
2623 array_needs_making = 1;
2624
2625 return (entry);
2626 }
2627
2628 /* Bind a variable NAME to VALUE. This conses up the name
2629 and value strings. If we have a temporary environment, we bind there
2630 first, then we bind into shell_variables. */
2631
2632 SHELL_VAR *
2633 bind_variable (name, value, flags)
2634 const char *name;
2635 char *value;
2636 int flags;
2637 {
2638 SHELL_VAR *v, *nv;
2639 VAR_CONTEXT *vc, *nvc;
2640 int level;
2641
2642 if (shell_variables == 0)
2643 create_variable_tables ();
2644
2645 /* If we have a temporary environment, look there first for the variable,
2646 and, if found, modify the value there before modifying it in the
2647 shell_variables table. This allows sourced scripts to modify values
2648 given to them in a temporary environment while modifying the variable
2649 value that the caller sees. */
2650 if (temporary_env)
2651 bind_tempenv_variable (name, value);
2652
2653 /* XXX -- handle local variables here. */
2654 for (vc = shell_variables; vc; vc = vc->down)
2655 {
2656 if (vc_isfuncenv (vc) || vc_isbltnenv (vc))
2657 {
2658 v = hash_lookup (name, vc->table);
2659 nvc = vc;
2660 if (v && nameref_p (v))
2661 {
2662 nv = find_variable_nameref_context (v, vc, &nvc);
2663 if (nv == 0)
2664 {
2665 nv = find_variable_last_nameref_context (v, vc, &nvc);
2666 if (nv && nameref_p (nv))
2667 {
2668 /* If this nameref variable doesn't have a value yet,
2669 set the value. Otherwise, assign using the value as
2670 normal. */
2671 if (nameref_cell (nv) == 0)
2672 return (bind_variable_internal (nv->name, value, nvc->table, 0, flags));
2673 return (bind_variable_internal (nameref_cell (nv), value, nvc->table, 0, flags));
2674 }
2675 else
2676 v = nv;
2677 }
2678 else
2679 v = nv;
2680 }
2681 if (v)
2682 return (bind_variable_internal (v->name, value, nvc->table, 0, flags));
2683 }
2684 }
2685 /* bind_variable_internal will handle nameref resolution in this case */
2686 return (bind_variable_internal (name, value, global_variables->table, 0, flags));
2687 }
2688
2689 SHELL_VAR *
2690 bind_global_variable (name, value, flags)
2691 const char *name;
2692 char *value;
2693 int flags;
2694 {
2695 SHELL_VAR *v, *nv;
2696 VAR_CONTEXT *vc, *nvc;
2697 int level;
2698
2699 if (shell_variables == 0)
2700 create_variable_tables ();
2701
2702 /* bind_variable_internal will handle nameref resolution in this case */
2703 return (bind_variable_internal (name, value, global_variables->table, 0, flags));
2704 }
2705
2706 /* Make VAR, a simple shell variable, have value VALUE. Once assigned a
2707 value, variables are no longer invisible. This is a duplicate of part
2708 of the internals of bind_variable. If the variable is exported, or
2709 all modified variables should be exported, mark the variable for export
2710 and note that the export environment needs to be recreated. */
2711 SHELL_VAR *
2712 bind_variable_value (var, value, aflags)
2713 SHELL_VAR *var;
2714 char *value;
2715 int aflags;
2716 {
2717 char *t;
2718 int invis;
2719
2720 invis = invisible_p (var);
2721 VUNSETATTR (var, att_invisible);
2722
2723 if (var->assign_func)
2724 {
2725 /* If we're appending, we need the old value, so use
2726 make_variable_value */
2727 t = (aflags & ASS_APPEND) ? make_variable_value (var, value, aflags) : value;
2728 (*(var->assign_func)) (var, t, -1, 0);
2729 if (t != value && t)
2730 free (t);
2731 }
2732 else
2733 {
2734 t = make_variable_value (var, value, aflags);
2735 #if defined (ARRAY_VARS)
2736 if ((aflags & ASS_NAMEREF) && (t == 0 || *t == 0 || (legal_identifier (t) == 0 && valid_array_reference (t) == 0)))
2737 #else
2738 if ((aflags & ASS_NAMEREF) && (t == 0 || *t == 0 || legal_identifier (t) == 0))
2739 #endif
2740 {
2741 free (t);
2742 if (invis)
2743 VSETATTR (var, att_invisible); /* XXX */
2744 return ((SHELL_VAR *)NULL);
2745 }
2746 FREE (value_cell (var));
2747 var_setvalue (var, t);
2748 }
2749
2750 INVALIDATE_EXPORTSTR (var);
2751
2752 if (mark_modified_vars)
2753 VSETATTR (var, att_exported);
2754
2755 if (exported_p (var))
2756 array_needs_making = 1;
2757
2758 return (var);
2759 }
2760
2761 /* Bind/create a shell variable with the name LHS to the RHS.
2762 This creates or modifies a variable such that it is an integer.
2763
2764 This used to be in expr.c, but it is here so that all of the
2765 variable binding stuff is localized. Since we don't want any
2766 recursive evaluation from bind_variable() (possible without this code,
2767 since bind_variable() calls the evaluator for variables with the integer
2768 attribute set), we temporarily turn off the integer attribute for each
2769 variable we set here, then turn it back on after binding as necessary. */
2770
2771 SHELL_VAR *
2772 bind_int_variable (lhs, rhs)
2773 char *lhs, *rhs;
2774 {
2775 register SHELL_VAR *v;
2776 int isint, isarr, implicitarray;
2777
2778 isint = isarr = implicitarray = 0;
2779 #if defined (ARRAY_VARS)
2780 if (valid_array_reference (lhs))
2781 {
2782 isarr = 1;
2783 v = array_variable_part (lhs, (char **)0, (int *)0);
2784 }
2785 else
2786 #endif
2787 v = find_variable (lhs);
2788
2789 if (v)
2790 {
2791 isint = integer_p (v);
2792 VUNSETATTR (v, att_integer);
2793 #if defined (ARRAY_VARS)
2794 if (array_p (v) && isarr == 0)
2795 implicitarray = 1;
2796 #endif
2797 }
2798
2799 #if defined (ARRAY_VARS)
2800 if (isarr)
2801 v = assign_array_element (lhs, rhs, 0);
2802 else if (implicitarray)
2803 v = bind_array_variable (lhs, 0, rhs, 0);
2804 else
2805 #endif
2806 v = bind_variable (lhs, rhs, 0);
2807
2808 if (v && isint)
2809 VSETATTR (v, att_integer);
2810
2811 VUNSETATTR (v, att_invisible);
2812
2813 return (v);
2814 }
2815
2816 SHELL_VAR *
2817 bind_var_to_int (var, val)
2818 char *var;
2819 intmax_t val;
2820 {
2821 char ibuf[INT_STRLEN_BOUND (intmax_t) + 1], *p;
2822
2823 p = fmtulong (val, 10, ibuf, sizeof (ibuf), 0);
2824 return (bind_int_variable (var, p));
2825 }
2826
2827 /* Do a function binding to a variable. You pass the name and
2828 the command to bind to. This conses the name and command. */
2829 SHELL_VAR *
2830 bind_function (name, value)
2831 const char *name;
2832 COMMAND *value;
2833 {
2834 SHELL_VAR *entry;
2835
2836 entry = find_function (name);
2837 if (entry == 0)
2838 {
2839 BUCKET_CONTENTS *elt;
2840
2841 elt = hash_insert (savestring (name), shell_functions, HASH_NOSRCH);
2842 entry = new_shell_variable (name);
2843 elt->data = (PTR_T)entry;
2844 }
2845 else
2846 INVALIDATE_EXPORTSTR (entry);
2847
2848 if (var_isset (entry))
2849 dispose_command (function_cell (entry));
2850
2851 if (value)
2852 var_setfunc (entry, copy_command (value));
2853 else
2854 var_setfunc (entry, 0);
2855
2856 VSETATTR (entry, att_function);
2857
2858 if (mark_modified_vars)
2859 VSETATTR (entry, att_exported);
2860
2861 VUNSETATTR (entry, att_invisible); /* Just to be sure */
2862
2863 if (exported_p (entry))
2864 array_needs_making = 1;
2865
2866 #if defined (PROGRAMMABLE_COMPLETION)
2867 set_itemlist_dirty (&it_functions);
2868 #endif
2869
2870 return (entry);
2871 }
2872
2873 #if defined (DEBUGGER)
2874 /* Bind a function definition, which includes source file and line number
2875 information in addition to the command, into the FUNCTION_DEF hash table.*/
2876 void
2877 bind_function_def (name, value)
2878 const char *name;
2879 FUNCTION_DEF *value;
2880 {
2881 FUNCTION_DEF *entry;
2882 BUCKET_CONTENTS *elt;
2883 COMMAND *cmd;
2884
2885 entry = find_function_def (name);
2886 if (entry)
2887 {
2888 dispose_function_def_contents (entry);
2889 entry = copy_function_def_contents (value, entry);
2890 }
2891 else
2892 {
2893 cmd = value->command;
2894 value->command = 0;
2895 entry = copy_function_def (value);
2896 value->command = cmd;
2897
2898 elt = hash_insert (savestring (name), shell_function_defs, HASH_NOSRCH);
2899 elt->data = (PTR_T *)entry;
2900 }
2901 }
2902 #endif /* DEBUGGER */
2903
2904 /* Add STRING, which is of the form foo=bar, to the temporary environment
2905 HASH_TABLE (temporary_env). The functions in execute_cmd.c are
2906 responsible for moving the main temporary env to one of the other
2907 temporary environments. The expansion code in subst.c calls this. */
2908 int
2909 assign_in_env (word, flags)
2910 WORD_DESC *word;
2911 int flags;
2912 {
2913 int offset, aflags;
2914 char *name, *temp, *value;
2915 SHELL_VAR *var;
2916 const char *string;
2917
2918 string = word->word;
2919
2920 aflags = 0;
2921 offset = assignment (string, 0);
2922 name = savestring (string);
2923 value = (char *)NULL;
2924
2925 if (name[offset] == '=')
2926 {
2927 name[offset] = 0;
2928
2929 /* don't ignore the `+' when assigning temporary environment */
2930 if (name[offset - 1] == '+')
2931 {
2932 name[offset - 1] = '\0';
2933 aflags |= ASS_APPEND;
2934 }
2935
2936 var = find_variable (name);
2937 if (var && (readonly_p (var) || noassign_p (var)))
2938 {
2939 if (readonly_p (var))
2940 err_readonly (name);
2941 free (name);
2942 return (0);
2943 }
2944
2945 temp = name + offset + 1;
2946 value = expand_assignment_string_to_string (temp, 0);
2947
2948 if (var && (aflags & ASS_APPEND))
2949 {
2950 temp = make_variable_value (var, value, aflags);
2951 FREE (value);
2952 value = temp;
2953 }
2954 }
2955
2956 if (temporary_env == 0)
2957 temporary_env = hash_create (TEMPENV_HASH_BUCKETS);
2958
2959 var = hash_lookup (name, temporary_env);
2960 if (var == 0)
2961 var = make_new_variable (name, temporary_env);
2962 else
2963 FREE (value_cell (var));
2964
2965 if (value == 0)
2966 {
2967 value = (char *)xmalloc (1); /* like do_assignment_internal */
2968 value[0] = '\0';
2969 }
2970
2971 var_setvalue (var, value);
2972 var->attributes |= (att_exported|att_tempvar);
2973 var->context = variable_context; /* XXX */
2974
2975 INVALIDATE_EXPORTSTR (var);
2976 var->exportstr = mk_env_string (name, value, 0);
2977
2978 array_needs_making = 1;
2979
2980 if (flags)
2981 stupidly_hack_special_variables (name);
2982
2983 if (echo_command_at_execute)
2984 /* The Korn shell prints the `+ ' in front of assignment statements,
2985 so we do too. */
2986 xtrace_print_assignment (name, value, 0, 1);
2987
2988 free (name);
2989 return 1;
2990 }
2991
2992 /* **************************************************************** */
2993 /* */
2994 /* Copying variables */
2995 /* */
2996 /* **************************************************************** */
2997
2998 #ifdef INCLUDE_UNUSED
2999 /* Copy VAR to a new data structure and return that structure. */
3000 SHELL_VAR *
3001 copy_variable (var)
3002 SHELL_VAR *var;
3003 {
3004 SHELL_VAR *copy = (SHELL_VAR *)NULL;
3005
3006 if (var)
3007 {
3008 copy = (SHELL_VAR *)xmalloc (sizeof (SHELL_VAR));
3009
3010 copy->attributes = var->attributes;
3011 copy->name = savestring (var->name);
3012
3013 if (function_p (var))
3014 var_setfunc (copy, copy_command (function_cell (var)));
3015 #if defined (ARRAY_VARS)
3016 else if (array_p (var))
3017 var_setarray (copy, array_copy (array_cell (var)));
3018 else if (assoc_p (var))
3019 var_setassoc (copy, assoc_copy (assoc_cell (var)));
3020 #endif
3021 else if (nameref_cell (var)) /* XXX - nameref */
3022 var_setref (copy, savestring (nameref_cell (var)));
3023 else if (value_cell (var)) /* XXX - nameref */
3024 var_setvalue (copy, savestring (value_cell (var)));
3025 else
3026 var_setvalue (copy, (char *)NULL);
3027
3028 copy->dynamic_value = var->dynamic_value;
3029 copy->assign_func = var->assign_func;
3030
3031 copy->exportstr = COPY_EXPORTSTR (var);
3032
3033 copy->context = var->context;
3034 }
3035 return (copy);
3036 }
3037 #endif
3038
3039 /* **************************************************************** */
3040 /* */
3041 /* Deleting and unsetting variables */
3042 /* */
3043 /* **************************************************************** */
3044
3045 /* Dispose of the information attached to VAR. */
3046 static void
3047 dispose_variable_value (var)
3048 SHELL_VAR *var;
3049 {
3050 if (function_p (var))
3051 dispose_command (function_cell (var));
3052 #if defined (ARRAY_VARS)
3053 else if (array_p (var))
3054 array_dispose (array_cell (var));
3055 else if (assoc_p (var))
3056 assoc_dispose (assoc_cell (var));
3057 #endif
3058 else if (nameref_p (var))
3059 FREE (nameref_cell (var));
3060 else
3061 FREE (value_cell (var));
3062 }
3063
3064 void
3065 dispose_variable (var)
3066 SHELL_VAR *var;
3067 {
3068 if (var == 0)
3069 return;
3070
3071 if (nofree_p (var) == 0)
3072 dispose_variable_value (var);
3073
3074 FREE_EXPORTSTR (var);
3075
3076 free (var->name);
3077
3078 if (exported_p (var))
3079 array_needs_making = 1;
3080
3081 free (var);
3082 }
3083
3084 /* Unset the shell variable referenced by NAME. Unsetting a nameref variable
3085 unsets the variable it resolves to but leaves the nameref alone. */
3086 int
3087 unbind_variable (name)
3088 const char *name;
3089 {
3090 SHELL_VAR *v, *nv;
3091 int r;
3092
3093 v = var_lookup (name, shell_variables);
3094 nv = (v && nameref_p (v)) ? find_variable_nameref (v) : (SHELL_VAR *)NULL;
3095
3096 r = nv ? makunbound (nv->name, shell_variables) : makunbound (name, shell_variables);
3097 return r;
3098 }
3099
3100 /* Unbind NAME, where NAME is assumed to be a nameref variable */
3101 int
3102 unbind_nameref (name)
3103 const char *name;
3104 {
3105 SHELL_VAR *v;
3106
3107 v = var_lookup (name, shell_variables);
3108 if (v && nameref_p (v))
3109 return makunbound (name, shell_variables);
3110 return 0;
3111 }
3112
3113 /* Unset the shell function named NAME. */
3114 int
3115 unbind_func (name)
3116 const char *name;
3117 {
3118 BUCKET_CONTENTS *elt;
3119 SHELL_VAR *func;
3120
3121 elt = hash_remove (name, shell_functions, 0);
3122
3123 if (elt == 0)
3124 return -1;
3125
3126 #if defined (PROGRAMMABLE_COMPLETION)
3127 set_itemlist_dirty (&it_functions);
3128 #endif
3129
3130 func = (SHELL_VAR *)elt->data;
3131 if (func)
3132 {
3133 if (exported_p (func))
3134 array_needs_making++;
3135 dispose_variable (func);
3136 }
3137
3138 free (elt->key);
3139 free (elt);
3140
3141 return 0;
3142 }
3143
3144 #if defined (DEBUGGER)
3145 int
3146 unbind_function_def (name)
3147 const char *name;
3148 {
3149 BUCKET_CONTENTS *elt;
3150 FUNCTION_DEF *funcdef;
3151
3152 elt = hash_remove (name, shell_function_defs, 0);
3153
3154 if (elt == 0)
3155 return -1;
3156
3157 funcdef = (FUNCTION_DEF *)elt->data;
3158 if (funcdef)
3159 dispose_function_def (funcdef);
3160
3161 free (elt->key);
3162 free (elt);
3163
3164 return 0;
3165 }
3166 #endif /* DEBUGGER */
3167
3168 int
3169 delete_var (name, vc)
3170 const char *name;
3171 VAR_CONTEXT *vc;
3172 {
3173 BUCKET_CONTENTS *elt;
3174 SHELL_VAR *old_var;
3175 VAR_CONTEXT *v;
3176
3177 for (elt = (BUCKET_CONTENTS *)NULL, v = vc; v; v = v->down)
3178 if (elt = hash_remove (name, v->table, 0))
3179 break;
3180
3181 if (elt == 0)
3182 return (-1);
3183
3184 old_var = (SHELL_VAR *)elt->data;
3185 free (elt->key);
3186 free (elt);
3187
3188 dispose_variable (old_var);
3189 return (0);
3190 }
3191
3192 /* Make the variable associated with NAME go away. HASH_LIST is the
3193 hash table from which this variable should be deleted (either
3194 shell_variables or shell_functions).
3195 Returns non-zero if the variable couldn't be found. */
3196 int
3197 makunbound (name, vc)
3198 const char *name;
3199 VAR_CONTEXT *vc;
3200 {
3201 BUCKET_CONTENTS *elt, *new_elt;
3202 SHELL_VAR *old_var;
3203 VAR_CONTEXT *v;
3204 char *t;
3205
3206 for (elt = (BUCKET_CONTENTS *)NULL, v = vc; v; v = v->down)
3207 if (elt = hash_remove (name, v->table, 0))
3208 break;
3209
3210 if (elt == 0)
3211 return (-1);
3212
3213 old_var = (SHELL_VAR *)elt->data;
3214
3215 if (old_var && exported_p (old_var))
3216 array_needs_making++;
3217
3218 /* If we're unsetting a local variable and we're still executing inside
3219 the function, just mark the variable as invisible. The function
3220 eventually called by pop_var_context() will clean it up later. This
3221 must be done so that if the variable is subsequently assigned a new
3222 value inside the function, the `local' attribute is still present.
3223 We also need to add it back into the correct hash table. */
3224 if (old_var && local_p (old_var) && variable_context == old_var->context)
3225 {
3226 if (nofree_p (old_var))
3227 var_setvalue (old_var, (char *)NULL);
3228 #if defined (ARRAY_VARS)
3229 else if (array_p (old_var))
3230 array_dispose (array_cell (old_var));
3231 else if (assoc_p (old_var))
3232 assoc_dispose (assoc_cell (old_var));
3233 #endif
3234 else if (nameref_p (old_var))
3235 FREE (nameref_cell (old_var));
3236 else
3237 FREE (value_cell (old_var));
3238 /* Reset the attributes. Preserve the export attribute if the variable
3239 came from a temporary environment. Make sure it stays local, and
3240 make it invisible. */
3241 old_var->attributes = (exported_p (old_var) && tempvar_p (old_var)) ? att_exported : 0;
3242 VSETATTR (old_var, att_local);
3243 VSETATTR (old_var, att_invisible);
3244 var_setvalue (old_var, (char *)NULL);
3245 INVALIDATE_EXPORTSTR (old_var);
3246
3247 new_elt = hash_insert (savestring (old_var->name), v->table, 0);
3248 new_elt->data = (PTR_T)old_var;
3249 stupidly_hack_special_variables (old_var->name);
3250
3251 free (elt->key);
3252 free (elt);
3253 return (0);
3254 }
3255
3256 /* Have to save a copy of name here, because it might refer to
3257 old_var->name. If so, stupidly_hack_special_variables will
3258 reference freed memory. */
3259 t = savestring (name);
3260
3261 free (elt->key);
3262 free (elt);
3263
3264 dispose_variable (old_var);
3265 stupidly_hack_special_variables (t);
3266 free (t);
3267
3268 return (0);
3269 }
3270
3271 /* Get rid of all of the variables in the current context. */
3272 void
3273 kill_all_local_variables ()
3274 {
3275 VAR_CONTEXT *vc;
3276
3277 for (vc = shell_variables; vc; vc = vc->down)
3278 if (vc_isfuncenv (vc) && vc->scope == variable_context)
3279 break;
3280 if (vc == 0)
3281 return; /* XXX */
3282
3283 if (vc->table && vc_haslocals (vc))
3284 {
3285 delete_all_variables (vc->table);
3286 hash_dispose (vc->table);
3287 }
3288 vc->table = (HASH_TABLE *)NULL;
3289 }
3290
3291 static void
3292 free_variable_hash_data (data)
3293 PTR_T data;
3294 {
3295 SHELL_VAR *var;
3296
3297 var = (SHELL_VAR *)data;
3298 dispose_variable (var);
3299 }
3300
3301 /* Delete the entire contents of the hash table. */
3302 void
3303 delete_all_variables (hashed_vars)
3304 HASH_TABLE *hashed_vars;
3305 {
3306 hash_flush (hashed_vars, free_variable_hash_data);
3307 }
3308
3309 /* **************************************************************** */
3310 /* */
3311 /* Setting variable attributes */
3312 /* */
3313 /* **************************************************************** */
3314
3315 #define FIND_OR_MAKE_VARIABLE(name, entry) \
3316 do \
3317 { \
3318 entry = find_variable (name); \
3319 if (!entry) \
3320 { \
3321 entry = bind_variable (name, "", 0); \
3322 if (!no_invisible_vars && entry) entry->attributes |= att_invisible; \
3323 } \
3324 } \
3325 while (0)
3326
3327 /* Make the variable associated with NAME be readonly.
3328 If NAME does not exist yet, create it. */
3329 void
3330 set_var_read_only (name)
3331 char *name;
3332 {
3333 SHELL_VAR *entry;
3334
3335 FIND_OR_MAKE_VARIABLE (name, entry);
3336 VSETATTR (entry, att_readonly);
3337 }
3338
3339 #ifdef INCLUDE_UNUSED
3340 /* Make the function associated with NAME be readonly.
3341 If NAME does not exist, we just punt, like auto_export code below. */
3342 void
3343 set_func_read_only (name)
3344 const char *name;
3345 {
3346 SHELL_VAR *entry;
3347
3348 entry = find_function (name);
3349 if (entry)
3350 VSETATTR (entry, att_readonly);
3351 }
3352
3353 /* Make the variable associated with NAME be auto-exported.
3354 If NAME does not exist yet, create it. */
3355 void
3356 set_var_auto_export (name)
3357 char *name;
3358 {
3359 SHELL_VAR *entry;
3360
3361 FIND_OR_MAKE_VARIABLE (name, entry);
3362 set_auto_export (entry);
3363 }
3364
3365 /* Make the function associated with NAME be auto-exported. */
3366 void
3367 set_func_auto_export (name)
3368 const char *name;
3369 {
3370 SHELL_VAR *entry;
3371
3372 entry = find_function (name);
3373 if (entry)
3374 set_auto_export (entry);
3375 }
3376 #endif
3377
3378 /* **************************************************************** */
3379 /* */
3380 /* Creating lists of variables */
3381 /* */
3382 /* **************************************************************** */
3383
3384 static VARLIST *
3385 vlist_alloc (nentries)
3386 int nentries;
3387 {
3388 VARLIST *vlist;
3389
3390 vlist = (VARLIST *)xmalloc (sizeof (VARLIST));
3391 vlist->list = (SHELL_VAR **)xmalloc ((nentries + 1) * sizeof (SHELL_VAR *));
3392 vlist->list_size = nentries;
3393 vlist->list_len = 0;
3394 vlist->list[0] = (SHELL_VAR *)NULL;
3395
3396 return vlist;
3397 }
3398
3399 static VARLIST *
3400 vlist_realloc (vlist, n)
3401 VARLIST *vlist;
3402 int n;
3403 {
3404 if (vlist == 0)
3405 return (vlist = vlist_alloc (n));
3406 if (n > vlist->list_size)
3407 {
3408 vlist->list_size = n;
3409 vlist->list = (SHELL_VAR **)xrealloc (vlist->list, (vlist->list_size + 1) * sizeof (SHELL_VAR *));
3410 }
3411 return vlist;
3412 }
3413
3414 static void
3415 vlist_add (vlist, var, flags)
3416 VARLIST *vlist;
3417 SHELL_VAR *var;
3418 int flags;
3419 {
3420 register int i;
3421
3422 for (i = 0; i < vlist->list_len; i++)
3423 if (STREQ (var->name, vlist->list[i]->name))
3424 break;
3425 if (i < vlist->list_len)
3426 return;
3427
3428 if (i >= vlist->list_size)
3429 vlist = vlist_realloc (vlist, vlist->list_size + 16);
3430
3431 vlist->list[vlist->list_len++] = var;
3432 vlist->list[vlist->list_len] = (SHELL_VAR *)NULL;
3433 }
3434
3435 /* Map FUNCTION over the variables in VAR_HASH_TABLE. Return an array of the
3436 variables for which FUNCTION returns a non-zero value. A NULL value
3437 for FUNCTION means to use all variables. */
3438 SHELL_VAR **
3439 map_over (function, vc)
3440 sh_var_map_func_t *function;
3441 VAR_CONTEXT *vc;
3442 {
3443 VAR_CONTEXT *v;
3444 VARLIST *vlist;
3445 SHELL_VAR **ret;
3446 int nentries;
3447
3448 for (nentries = 0, v = vc; v; v = v->down)
3449 nentries += HASH_ENTRIES (v->table);
3450
3451 if (nentries == 0)
3452 return (SHELL_VAR **)NULL;
3453
3454 vlist = vlist_alloc (nentries);
3455
3456 for (v = vc; v; v = v->down)
3457 flatten (v->table, function, vlist, 0);
3458
3459 ret = vlist->list;
3460 free (vlist);
3461 return ret;
3462 }
3463
3464 SHELL_VAR **
3465 map_over_funcs (function)
3466 sh_var_map_func_t *function;
3467 {
3468 VARLIST *vlist;
3469 SHELL_VAR **ret;
3470
3471 if (shell_functions == 0 || HASH_ENTRIES (shell_functions) == 0)
3472 return ((SHELL_VAR **)NULL);
3473
3474 vlist = vlist_alloc (HASH_ENTRIES (shell_functions));
3475
3476 flatten (shell_functions, function, vlist, 0);
3477
3478 ret = vlist->list;
3479 free (vlist);
3480 return ret;
3481 }
3482
3483 /* Flatten VAR_HASH_TABLE, applying FUNC to each member and adding those
3484 elements for which FUNC succeeds to VLIST->list. FLAGS is reserved
3485 for future use. Only unique names are added to VLIST. If FUNC is
3486 NULL, each variable in VAR_HASH_TABLE is added to VLIST. If VLIST is
3487 NULL, FUNC is applied to each SHELL_VAR in VAR_HASH_TABLE. If VLIST
3488 and FUNC are both NULL, nothing happens. */
3489 static void
3490 flatten (var_hash_table, func, vlist, flags)
3491 HASH_TABLE *var_hash_table;
3492 sh_var_map_func_t *func;
3493 VARLIST *vlist;
3494 int flags;
3495 {
3496 register int i;
3497 register BUCKET_CONTENTS *tlist;
3498 int r;
3499 SHELL_VAR *var;
3500
3501 if (var_hash_table == 0 || (HASH_ENTRIES (var_hash_table) == 0) || (vlist == 0 && func == 0))
3502 return;
3503
3504 for (i = 0; i < var_hash_table->nbuckets; i++)
3505 {
3506 for (tlist = hash_items (i, var_hash_table); tlist; tlist = tlist->next)
3507 {
3508 var = (SHELL_VAR *)tlist->data;
3509
3510 r = func ? (*func) (var) : 1;
3511 if (r && vlist)
3512 vlist_add (vlist, var, flags);
3513 }
3514 }
3515 }
3516
3517 void
3518 sort_variables (array)
3519 SHELL_VAR **array;
3520 {
3521 qsort (array, strvec_len ((char **)array), sizeof (SHELL_VAR *), (QSFUNC *)qsort_var_comp);
3522 }
3523
3524 static int
3525 qsort_var_comp (var1, var2)
3526 SHELL_VAR **var1, **var2;
3527 {
3528 int result;
3529
3530 if ((result = (*var1)->name[0] - (*var2)->name[0]) == 0)
3531 result = strcmp ((*var1)->name, (*var2)->name);
3532
3533 return (result);
3534 }
3535
3536 /* Apply FUNC to each variable in SHELL_VARIABLES, adding each one for
3537 which FUNC succeeds to an array of SHELL_VAR *s. Returns the array. */
3538 static SHELL_VAR **
3539 vapply (func)
3540 sh_var_map_func_t *func;
3541 {
3542 SHELL_VAR **list;
3543
3544 list = map_over (func, shell_variables);
3545 if (list /* && posixly_correct */)
3546 sort_variables (list);
3547 return (list);
3548 }
3549
3550 /* Apply FUNC to each variable in SHELL_FUNCTIONS, adding each one for
3551 which FUNC succeeds to an array of SHELL_VAR *s. Returns the array. */
3552 static SHELL_VAR **
3553 fapply (func)
3554 sh_var_map_func_t *func;
3555 {
3556 SHELL_VAR **list;
3557
3558 list = map_over_funcs (func);
3559 if (list /* && posixly_correct */)
3560 sort_variables (list);
3561 return (list);
3562 }
3563
3564 /* Create a NULL terminated array of all the shell variables. */
3565 SHELL_VAR **
3566 all_shell_variables ()
3567 {
3568 return (vapply ((sh_var_map_func_t *)NULL));
3569 }
3570
3571 /* Create a NULL terminated array of all the shell functions. */
3572 SHELL_VAR **
3573 all_shell_functions ()
3574 {
3575 return (fapply ((sh_var_map_func_t *)NULL));
3576 }
3577
3578 static int
3579 visible_var (var)
3580 SHELL_VAR *var;
3581 {
3582 return (invisible_p (var) == 0);
3583 }
3584
3585 SHELL_VAR **
3586 all_visible_functions ()
3587 {
3588 return (fapply (visible_var));
3589 }
3590
3591 SHELL_VAR **
3592 all_visible_variables ()
3593 {
3594 return (vapply (visible_var));
3595 }
3596
3597 /* Return non-zero if the variable VAR is visible and exported. Array
3598 variables cannot be exported. */
3599 static int
3600 visible_and_exported (var)
3601 SHELL_VAR *var;
3602 {
3603 return (invisible_p (var) == 0 && exported_p (var));
3604 }
3605
3606 /* Candidate variables for the export environment are either valid variables
3607 with the export attribute or invalid variables inherited from the initial
3608 environment and simply passed through. */
3609 static int
3610 export_environment_candidate (var)
3611 SHELL_VAR *var;
3612 {
3613 return (exported_p (var) && (invisible_p (var) == 0 || imported_p (var)));
3614 }
3615
3616 /* Return non-zero if VAR is a local variable in the current context and
3617 is exported. */
3618 static int
3619 local_and_exported (var)
3620 SHELL_VAR *var;
3621 {
3622 return (invisible_p (var) == 0 && local_p (var) && var->context == variable_context && exported_p (var));
3623 }
3624
3625 SHELL_VAR **
3626 all_exported_variables ()
3627 {
3628 return (vapply (visible_and_exported));
3629 }
3630
3631 SHELL_VAR **
3632 local_exported_variables ()
3633 {
3634 return (vapply (local_and_exported));
3635 }
3636
3637 static int
3638 variable_in_context (var)
3639 SHELL_VAR *var;
3640 {
3641 return (invisible_p (var) == 0 && local_p (var) && var->context == variable_context);
3642 }
3643
3644 SHELL_VAR **
3645 all_local_variables ()
3646 {
3647 VARLIST *vlist;
3648 SHELL_VAR **ret;
3649 VAR_CONTEXT *vc;
3650
3651 vc = shell_variables;
3652 for (vc = shell_variables; vc; vc = vc->down)
3653 if (vc_isfuncenv (vc) && vc->scope == variable_context)
3654 break;
3655
3656 if (vc == 0)
3657 {
3658 internal_error (_("all_local_variables: no function context at current scope"));
3659 return (SHELL_VAR **)NULL;
3660 }
3661 if (vc->table == 0 || HASH_ENTRIES (vc->table) == 0 || vc_haslocals (vc) == 0)
3662 return (SHELL_VAR **)NULL;
3663
3664 vlist = vlist_alloc (HASH_ENTRIES (vc->table));
3665
3666 flatten (vc->table, variable_in_context, vlist, 0);
3667
3668 ret = vlist->list;
3669 free (vlist);
3670 if (ret)
3671 sort_variables (ret);
3672 return ret;
3673 }
3674
3675 #if defined (ARRAY_VARS)
3676 /* Return non-zero if the variable VAR is visible and an array. */
3677 static int
3678 visible_array_vars (var)
3679 SHELL_VAR *var;
3680 {
3681 return (invisible_p (var) == 0 && array_p (var));
3682 }
3683
3684 SHELL_VAR **
3685 all_array_variables ()
3686 {
3687 return (vapply (visible_array_vars));
3688 }
3689 #endif /* ARRAY_VARS */
3690
3691 char **
3692 all_variables_matching_prefix (prefix)
3693 const char *prefix;
3694 {
3695 SHELL_VAR **varlist;
3696 char **rlist;
3697 int vind, rind, plen;
3698
3699 plen = STRLEN (prefix);
3700 varlist = all_visible_variables ();
3701 for (vind = 0; varlist && varlist[vind]; vind++)
3702 ;
3703 if (varlist == 0 || vind == 0)
3704 return ((char **)NULL);
3705 rlist = strvec_create (vind + 1);
3706 for (vind = rind = 0; varlist[vind]; vind++)
3707 {
3708 if (plen == 0 || STREQN (prefix, varlist[vind]->name, plen))
3709 rlist[rind++] = savestring (varlist[vind]->name);
3710 }
3711 rlist[rind] = (char *)0;
3712 free (varlist);
3713
3714 return rlist;
3715 }
3716
3717 /* **************************************************************** */
3718 /* */
3719 /* Managing temporary variable scopes */
3720 /* */
3721 /* **************************************************************** */
3722
3723 /* Make variable NAME have VALUE in the temporary environment. */
3724 static SHELL_VAR *
3725 bind_tempenv_variable (name, value)
3726 const char *name;
3727 char *value;
3728 {
3729 SHELL_VAR *var;
3730
3731 var = temporary_env ? hash_lookup (name, temporary_env) : (SHELL_VAR *)NULL;
3732
3733 if (var)
3734 {
3735 FREE (value_cell (var));
3736 var_setvalue (var, savestring (value));
3737 INVALIDATE_EXPORTSTR (var);
3738 }
3739
3740 return (var);
3741 }
3742
3743 /* Find a variable in the temporary environment that is named NAME.
3744 Return the SHELL_VAR *, or NULL if not found. */
3745 SHELL_VAR *
3746 find_tempenv_variable (name)
3747 const char *name;
3748 {
3749 return (temporary_env ? hash_lookup (name, temporary_env) : (SHELL_VAR *)NULL);
3750 }
3751
3752 char **tempvar_list;
3753 int tvlist_ind;
3754
3755 /* Push the variable described by (SHELL_VAR *)DATA down to the next
3756 variable context from the temporary environment. */
3757 static void
3758 push_temp_var (data)
3759 PTR_T data;
3760 {
3761 SHELL_VAR *var, *v;
3762 HASH_TABLE *binding_table;
3763
3764 var = (SHELL_VAR *)data;
3765
3766 binding_table = shell_variables->table;
3767 if (binding_table == 0)
3768 {
3769 if (shell_variables == global_variables)
3770 /* shouldn't happen */
3771 binding_table = shell_variables->table = global_variables->table = hash_create (0);
3772 else
3773 binding_table = shell_variables->table = hash_create (TEMPENV_HASH_BUCKETS);
3774 }
3775
3776 v = bind_variable_internal (var->name, value_cell (var), binding_table, 0, 0);
3777
3778 /* XXX - should we set the context here? It shouldn't matter because of how
3779 assign_in_env works, but might want to check. */
3780 if (binding_table == global_variables->table) /* XXX */
3781 var->attributes &= ~(att_tempvar|att_propagate);
3782 else
3783 {
3784 var->attributes |= att_propagate;
3785 if (binding_table == shell_variables->table)
3786 shell_variables->flags |= VC_HASTMPVAR;
3787 }
3788 v->attributes |= var->attributes;
3789
3790 if (find_special_var (var->name) >= 0)
3791 tempvar_list[tvlist_ind++] = savestring (var->name);
3792
3793 dispose_variable (var);
3794 }
3795
3796 static void
3797 propagate_temp_var (data)
3798 PTR_T data;
3799 {
3800 SHELL_VAR *var;
3801
3802 var = (SHELL_VAR *)data;
3803 if (tempvar_p (var) && (var->attributes & att_propagate))
3804 push_temp_var (data);
3805 else
3806 {
3807 if (find_special_var (var->name) >= 0)
3808 tempvar_list[tvlist_ind++] = savestring (var->name);
3809 dispose_variable (var);
3810 }
3811 }
3812
3813 /* Free the storage used in the hash table for temporary
3814 environment variables. PUSHF is a function to be called
3815 to free each hash table entry. It takes care of pushing variables
3816 to previous scopes if appropriate. PUSHF stores names of variables
3817 that require special handling (e.g., IFS) on tempvar_list, so this
3818 function can call stupidly_hack_special_variables on all the
3819 variables in the list when the temporary hash table is destroyed. */
3820 static void
3821 dispose_temporary_env (pushf)
3822 sh_free_func_t *pushf;
3823 {
3824 int i;
3825
3826 tempvar_list = strvec_create (HASH_ENTRIES (temporary_env) + 1);
3827 tempvar_list[tvlist_ind = 0] = 0;
3828
3829 hash_flush (temporary_env, pushf);
3830 hash_dispose (temporary_env);
3831 temporary_env = (HASH_TABLE *)NULL;
3832
3833 tempvar_list[tvlist_ind] = 0;
3834
3835 array_needs_making = 1;
3836
3837 #if 0
3838 sv_ifs ("IFS"); /* XXX here for now -- check setifs in assign_in_env */
3839 #endif
3840 for (i = 0; i < tvlist_ind; i++)
3841 stupidly_hack_special_variables (tempvar_list[i]);
3842
3843 strvec_dispose (tempvar_list);
3844 tempvar_list = 0;
3845 tvlist_ind = 0;
3846 }
3847
3848 void
3849 dispose_used_env_vars ()
3850 {
3851 if (temporary_env)
3852 {
3853 dispose_temporary_env (propagate_temp_var);
3854 maybe_make_export_env ();
3855 }
3856 }
3857
3858 /* Take all of the shell variables in the temporary environment HASH_TABLE
3859 and make shell variables from them at the current variable context. */
3860 void
3861 merge_temporary_env ()
3862 {
3863 if (temporary_env)
3864 dispose_temporary_env (push_temp_var);
3865 }
3866
3867 /* **************************************************************** */
3868 /* */
3869 /* Creating and manipulating the environment */
3870 /* */
3871 /* **************************************************************** */
3872
3873 static inline char *
3874 mk_env_string (name, value, isfunc)
3875 const char *name, *value;
3876 int isfunc;
3877 {
3878 size_t name_len, value_len;
3879 char *p, *q;
3880
3881 name_len = strlen (name);
3882 value_len = STRLEN (value);
3883
3884 /* If we are exporting a shell function, construct the encoded function
3885 name. */
3886 if (isfunc && value)
3887 {
3888 p = (char *)xmalloc (BASHFUNC_PREFLEN + name_len + BASHFUNC_SUFFLEN + value_len + 2);
3889 q = p;
3890 memcpy (q, BASHFUNC_PREFIX, BASHFUNC_PREFLEN);
3891 q += BASHFUNC_PREFLEN;
3892 memcpy (q, name, name_len);
3893 q += name_len;
3894 memcpy (q, BASHFUNC_SUFFIX, BASHFUNC_SUFFLEN);
3895 q += BASHFUNC_SUFFLEN;
3896 }
3897 else
3898 {
3899 p = (char *)xmalloc (2 + name_len + value_len);
3900 memcpy (p, name, name_len);
3901 q = p + name_len;
3902 }
3903
3904 q[0] = '=';
3905 if (value && *value)
3906 memcpy (q + 1, value, value_len + 1);
3907 else
3908 q[1] = '\0';
3909
3910 return (p);
3911 }
3912
3913 #ifdef DEBUG
3914 /* Debugging */
3915 static int
3916 valid_exportstr (v)
3917 SHELL_VAR *v;
3918 {
3919 char *s;
3920
3921 s = v->exportstr;
3922 if (s == 0)
3923 {
3924 internal_error (_("%s has null exportstr"), v->name);
3925 return (0);
3926 }
3927 if (legal_variable_starter ((unsigned char)*s) == 0)
3928 {
3929 internal_error (_("invalid character %d in exportstr for %s"), *s, v->name);
3930 return (0);
3931 }
3932 for (s = v->exportstr + 1; s && *s; s++)
3933 {
3934 if (*s == '=')
3935 break;
3936 if (legal_variable_char ((unsigned char)*s) == 0)
3937 {
3938 internal_error (_("invalid character %d in exportstr for %s"), *s, v->name);
3939 return (0);
3940 }
3941 }
3942 if (*s != '=')
3943 {
3944 internal_error (_("no `=' in exportstr for %s"), v->name);
3945 return (0);
3946 }
3947 return (1);
3948 }
3949 #endif
3950
3951 static char **
3952 make_env_array_from_var_list (vars)
3953 SHELL_VAR **vars;
3954 {
3955 register int i, list_index;
3956 register SHELL_VAR *var;
3957 char **list, *value;
3958
3959 list = strvec_create ((1 + strvec_len ((char **)vars)));
3960
3961 #define USE_EXPORTSTR (value == var->exportstr)
3962
3963 for (i = 0, list_index = 0; var = vars[i]; i++)
3964 {
3965 #if defined (__CYGWIN__)
3966 /* We don't use the exportstr stuff on Cygwin at all. */
3967 INVALIDATE_EXPORTSTR (var);
3968 #endif
3969 if (var->exportstr)
3970 value = var->exportstr;
3971 else if (function_p (var))
3972 value = named_function_string ((char *)NULL, function_cell (var), 0);
3973 #if defined (ARRAY_VARS)
3974 else if (array_p (var))
3975 # if ARRAY_EXPORT
3976 value = array_to_assignment_string (array_cell (var));
3977 # else
3978 continue; /* XXX array vars cannot yet be exported */
3979 # endif /* ARRAY_EXPORT */
3980 else if (assoc_p (var))
3981 # if 0
3982 value = assoc_to_assignment_string (assoc_cell (var));
3983 # else
3984 continue; /* XXX associative array vars cannot yet be exported */
3985 # endif
3986 #endif
3987 else
3988 value = value_cell (var);
3989
3990 if (value)
3991 {
3992 /* Gee, I'd like to get away with not using savestring() if we're
3993 using the cached exportstr... */
3994 list[list_index] = USE_EXPORTSTR ? savestring (value)
3995 : mk_env_string (var->name, value, function_p (var));
3996
3997 if (USE_EXPORTSTR == 0)
3998 SAVE_EXPORTSTR (var, list[list_index]);
3999
4000 list_index++;
4001 #undef USE_EXPORTSTR
4002
4003 #if 0 /* not yet */
4004 #if defined (ARRAY_VARS)
4005 if (array_p (var) || assoc_p (var))
4006 free (value);
4007 #endif
4008 #endif
4009 }
4010 }
4011
4012 list[list_index] = (char *)NULL;
4013 return (list);
4014 }
4015
4016 /* Make an array of assignment statements from the hash table
4017 HASHED_VARS which contains SHELL_VARs. Only visible, exported
4018 variables are eligible. */
4019 static char **
4020 make_var_export_array (vcxt)
4021 VAR_CONTEXT *vcxt;
4022 {
4023 char **list;
4024 SHELL_VAR **vars;
4025
4026 #if 0
4027 vars = map_over (visible_and_exported, vcxt);
4028 #else
4029 vars = map_over (export_environment_candidate, vcxt);
4030 #endif
4031
4032 if (vars == 0)
4033 return (char **)NULL;
4034
4035 list = make_env_array_from_var_list (vars);
4036
4037 free (vars);
4038 return (list);
4039 }
4040
4041 static char **
4042 make_func_export_array ()
4043 {
4044 char **list;
4045 SHELL_VAR **vars;
4046
4047 vars = map_over_funcs (visible_and_exported);
4048 if (vars == 0)
4049 return (char **)NULL;
4050
4051 list = make_env_array_from_var_list (vars);
4052
4053 free (vars);
4054 return (list);
4055 }
4056
4057 /* Add ENVSTR to the end of the exported environment, EXPORT_ENV. */
4058 #define add_to_export_env(envstr,do_alloc) \
4059 do \
4060 { \
4061 if (export_env_index >= (export_env_size - 1)) \
4062 { \
4063 export_env_size += 16; \
4064 export_env = strvec_resize (export_env, export_env_size); \
4065 environ = export_env; \
4066 } \
4067 export_env[export_env_index++] = (do_alloc) ? savestring (envstr) : envstr; \
4068 export_env[export_env_index] = (char *)NULL; \
4069 } while (0)
4070
4071 /* Add ASSIGN to EXPORT_ENV, or supercede a previous assignment in the
4072 array with the same left-hand side. Return the new EXPORT_ENV. */
4073 char **
4074 add_or_supercede_exported_var (assign, do_alloc)
4075 char *assign;
4076 int do_alloc;
4077 {
4078 register int i;
4079 int equal_offset;
4080
4081 equal_offset = assignment (assign, 0);
4082 if (equal_offset == 0)
4083 return (export_env);
4084
4085 /* If this is a function, then only supersede the function definition.
4086 We do this by including the `=() {' in the comparison, like
4087 initialize_shell_variables does. */
4088 if (assign[equal_offset + 1] == '(' &&
4089 strncmp (assign + equal_offset + 2, ") {", 3) == 0) /* } */
4090 equal_offset += 4;
4091
4092 for (i = 0; i < export_env_index; i++)
4093 {
4094 if (STREQN (assign, export_env[i], equal_offset + 1))
4095 {
4096 free (export_env[i]);
4097 export_env[i] = do_alloc ? savestring (assign) : assign;
4098 return (export_env);
4099 }
4100 }
4101 add_to_export_env (assign, do_alloc);
4102 return (export_env);
4103 }
4104
4105 static void
4106 add_temp_array_to_env (temp_array, do_alloc, do_supercede)
4107 char **temp_array;
4108 int do_alloc, do_supercede;
4109 {
4110 register int i;
4111
4112 if (temp_array == 0)
4113 return;
4114
4115 for (i = 0; temp_array[i]; i++)
4116 {
4117 if (do_supercede)
4118 export_env = add_or_supercede_exported_var (temp_array[i], do_alloc);
4119 else
4120 add_to_export_env (temp_array[i], do_alloc);
4121 }
4122
4123 free (temp_array);
4124 }
4125
4126 /* Make the environment array for the command about to be executed, if the
4127 array needs making. Otherwise, do nothing. If a shell action could
4128 change the array that commands receive for their environment, then the
4129 code should `array_needs_making++'.
4130
4131 The order to add to the array is:
4132 temporary_env
4133 list of var contexts whose head is shell_variables
4134 shell_functions
4135
4136 This is the shell variable lookup order. We add only new variable
4137 names at each step, which allows local variables and variables in
4138 the temporary environments to shadow variables in the global (or
4139 any previous) scope.
4140 */
4141
4142 static int
4143 n_shell_variables ()
4144 {
4145 VAR_CONTEXT *vc;
4146 int n;
4147
4148 for (n = 0, vc = shell_variables; vc; vc = vc->down)
4149 n += HASH_ENTRIES (vc->table);
4150 return n;
4151 }
4152
4153 int
4154 chkexport (name)
4155 char *name;
4156 {
4157 SHELL_VAR *v;
4158
4159 v = find_variable (name);
4160 if (v && exported_p (v))
4161 {
4162 array_needs_making = 1;
4163 maybe_make_export_env ();
4164 return 1;
4165 }
4166 return 0;
4167 }
4168
4169 void
4170 maybe_make_export_env ()
4171 {
4172 register char **temp_array;
4173 int new_size;
4174 VAR_CONTEXT *tcxt;
4175
4176 if (array_needs_making)
4177 {
4178 if (export_env)
4179 strvec_flush (export_env);
4180
4181 /* Make a guess based on how many shell variables and functions we
4182 have. Since there will always be array variables, and array
4183 variables are not (yet) exported, this will always be big enough
4184 for the exported variables and functions. */
4185 new_size = n_shell_variables () + HASH_ENTRIES (shell_functions) + 1 +
4186 HASH_ENTRIES (temporary_env);
4187 if (new_size > export_env_size)
4188 {
4189 export_env_size = new_size;
4190 export_env = strvec_resize (export_env, export_env_size);
4191 environ = export_env;
4192 }
4193 export_env[export_env_index = 0] = (char *)NULL;
4194
4195 /* Make a dummy variable context from the temporary_env, stick it on
4196 the front of shell_variables, call make_var_export_array on the
4197 whole thing to flatten it, and convert the list of SHELL_VAR *s
4198 to the form needed by the environment. */
4199 if (temporary_env)
4200 {
4201 tcxt = new_var_context ((char *)NULL, 0);
4202 tcxt->table = temporary_env;
4203 tcxt->down = shell_variables;
4204 }
4205 else
4206 tcxt = shell_variables;
4207
4208 temp_array = make_var_export_array (tcxt);
4209 if (temp_array)
4210 add_temp_array_to_env (temp_array, 0, 0);
4211
4212 if (tcxt != shell_variables)
4213 free (tcxt);
4214
4215 #if defined (RESTRICTED_SHELL)
4216 /* Restricted shells may not export shell functions. */
4217 temp_array = restricted ? (char **)0 : make_func_export_array ();
4218 #else
4219 temp_array = make_func_export_array ();
4220 #endif
4221 if (temp_array)
4222 add_temp_array_to_env (temp_array, 0, 0);
4223
4224 array_needs_making = 0;
4225 }
4226 }
4227
4228 /* This is an efficiency hack. PWD and OLDPWD are auto-exported, so
4229 we will need to remake the exported environment every time we
4230 change directories. `_' is always put into the environment for
4231 every external command, so without special treatment it will always
4232 cause the environment to be remade.
4233
4234 If there is no other reason to make the exported environment, we can
4235 just update the variables in place and mark the exported environment
4236 as no longer needing a remake. */
4237 void
4238 update_export_env_inplace (env_prefix, preflen, value)
4239 char *env_prefix;
4240 int preflen;
4241 char *value;
4242 {
4243 char *evar;
4244
4245 evar = (char *)xmalloc (STRLEN (value) + preflen + 1);
4246 strcpy (evar, env_prefix);
4247 if (value)
4248 strcpy (evar + preflen, value);
4249 export_env = add_or_supercede_exported_var (evar, 0);
4250 }
4251
4252 /* We always put _ in the environment as the name of this command. */
4253 void
4254 put_command_name_into_env (command_name)
4255 char *command_name;
4256 {
4257 update_export_env_inplace ("_=", 2, command_name);
4258 }
4259
4260 /* **************************************************************** */
4261 /* */
4262 /* Managing variable contexts */
4263 /* */
4264 /* **************************************************************** */
4265
4266 /* Allocate and return a new variable context with NAME and FLAGS.
4267 NAME can be NULL. */
4268
4269 VAR_CONTEXT *
4270 new_var_context (name, flags)
4271 char *name;
4272 int flags;
4273 {
4274 VAR_CONTEXT *vc;
4275
4276 vc = (VAR_CONTEXT *)xmalloc (sizeof (VAR_CONTEXT));
4277 vc->name = name ? savestring (name) : (char *)NULL;
4278 vc->scope = variable_context;
4279 vc->flags = flags;
4280
4281 vc->up = vc->down = (VAR_CONTEXT *)NULL;
4282 vc->table = (HASH_TABLE *)NULL;
4283
4284 return vc;
4285 }
4286
4287 /* Free a variable context and its data, including the hash table. Dispose
4288 all of the variables. */
4289 void
4290 dispose_var_context (vc)
4291 VAR_CONTEXT *vc;
4292 {
4293 FREE (vc->name);
4294
4295 if (vc->table)
4296 {
4297 delete_all_variables (vc->table);
4298 hash_dispose (vc->table);
4299 }
4300
4301 free (vc);
4302 }
4303
4304 /* Set VAR's scope level to the current variable context. */
4305 static int
4306 set_context (var)
4307 SHELL_VAR *var;
4308 {
4309 return (var->context = variable_context);
4310 }
4311
4312 /* Make a new variable context with NAME and FLAGS and a HASH_TABLE of
4313 temporary variables, and push it onto shell_variables. This is
4314 for shell functions. */
4315 VAR_CONTEXT *
4316 push_var_context (name, flags, tempvars)
4317 char *name;
4318 int flags;
4319 HASH_TABLE *tempvars;
4320 {
4321 VAR_CONTEXT *vc;
4322
4323 vc = new_var_context (name, flags);
4324 vc->table = tempvars;
4325 if (tempvars)
4326 {
4327 /* Have to do this because the temp environment was created before
4328 variable_context was incremented. */
4329 flatten (tempvars, set_context, (VARLIST *)NULL, 0);
4330 vc->flags |= VC_HASTMPVAR;
4331 }
4332 vc->down = shell_variables;
4333 shell_variables->up = vc;
4334
4335 return (shell_variables = vc);
4336 }
4337
4338 static void
4339 push_func_var (data)
4340 PTR_T data;
4341 {
4342 SHELL_VAR *var, *v;
4343
4344 var = (SHELL_VAR *)data;
4345
4346 if (tempvar_p (var) && (posixly_correct || (var->attributes & att_propagate)))
4347 {
4348 /* Make sure we have a hash table to store the variable in while it is
4349 being propagated down to the global variables table. Create one if
4350 we have to */
4351 if ((vc_isfuncenv (shell_variables) || vc_istempenv (shell_variables)) && shell_variables->table == 0)
4352 shell_variables->table = hash_create (0);
4353 /* XXX - should we set v->context here? */
4354 v = bind_variable_internal (var->name, value_cell (var), shell_variables->table, 0, 0);
4355 if (shell_variables == global_variables)
4356 var->attributes &= ~(att_tempvar|att_propagate);
4357 else
4358 shell_variables->flags |= VC_HASTMPVAR;
4359 v->attributes |= var->attributes;
4360 }
4361 else
4362 stupidly_hack_special_variables (var->name); /* XXX */
4363
4364 dispose_variable (var);
4365 }
4366
4367 /* Pop the top context off of VCXT and dispose of it, returning the rest of
4368 the stack. */
4369 void
4370 pop_var_context ()
4371 {
4372 VAR_CONTEXT *ret, *vcxt;
4373
4374 vcxt = shell_variables;
4375 if (vc_isfuncenv (vcxt) == 0)
4376 {
4377 internal_error (_("pop_var_context: head of shell_variables not a function context"));
4378 return;
4379 }
4380
4381 if (ret = vcxt->down)
4382 {
4383 ret->up = (VAR_CONTEXT *)NULL;
4384 shell_variables = ret;
4385 if (vcxt->table)
4386 hash_flush (vcxt->table, push_func_var);
4387 dispose_var_context (vcxt);
4388 }
4389 else
4390 internal_error (_("pop_var_context: no global_variables context"));
4391 }
4392
4393 /* Delete the HASH_TABLEs for all variable contexts beginning at VCXT, and
4394 all of the VAR_CONTEXTs except GLOBAL_VARIABLES. */
4395 void
4396 delete_all_contexts (vcxt)
4397 VAR_CONTEXT *vcxt;
4398 {
4399 VAR_CONTEXT *v, *t;
4400
4401 for (v = vcxt; v != global_variables; v = t)
4402 {
4403 t = v->down;
4404 dispose_var_context (v);
4405 }
4406
4407 delete_all_variables (global_variables->table);
4408 shell_variables = global_variables;
4409 }
4410
4411 /* **************************************************************** */
4412 /* */
4413 /* Pushing and Popping temporary variable scopes */
4414 /* */
4415 /* **************************************************************** */
4416
4417 VAR_CONTEXT *
4418 push_scope (flags, tmpvars)
4419 int flags;
4420 HASH_TABLE *tmpvars;
4421 {
4422 return (push_var_context ((char *)NULL, flags, tmpvars));
4423 }
4424
4425 static void
4426 push_exported_var (data)
4427 PTR_T data;
4428 {
4429 SHELL_VAR *var, *v;
4430
4431 var = (SHELL_VAR *)data;
4432
4433 /* If a temp var had its export attribute set, or it's marked to be
4434 propagated, bind it in the previous scope before disposing it. */
4435 /* XXX - This isn't exactly right, because all tempenv variables have the
4436 export attribute set. */
4437 #if 0
4438 if (exported_p (var) || (var->attributes & att_propagate))
4439 #else
4440 if (tempvar_p (var) && exported_p (var) && (var->attributes & att_propagate))
4441 #endif
4442 {
4443 var->attributes &= ~att_tempvar; /* XXX */
4444 v = bind_variable_internal (var->name, value_cell (var), shell_variables->table, 0, 0);
4445 if (shell_variables == global_variables)
4446 var->attributes &= ~att_propagate;
4447 v->attributes |= var->attributes;
4448 }
4449 else
4450 stupidly_hack_special_variables (var->name); /* XXX */
4451
4452 dispose_variable (var);
4453 }
4454
4455 void
4456 pop_scope (is_special)
4457 int is_special;
4458 {
4459 VAR_CONTEXT *vcxt, *ret;
4460
4461 vcxt = shell_variables;
4462 if (vc_istempscope (vcxt) == 0)
4463 {
4464 internal_error (_("pop_scope: head of shell_variables not a temporary environment scope"));
4465 return;
4466 }
4467
4468 ret = vcxt->down;
4469 if (ret)
4470 ret->up = (VAR_CONTEXT *)NULL;
4471
4472 shell_variables = ret;
4473
4474 /* Now we can take care of merging variables in VCXT into set of scopes
4475 whose head is RET (shell_variables). */
4476 FREE (vcxt->name);
4477 if (vcxt->table)
4478 {
4479 if (is_special)
4480 hash_flush (vcxt->table, push_func_var);
4481 else
4482 hash_flush (vcxt->table, push_exported_var);
4483 hash_dispose (vcxt->table);
4484 }
4485 free (vcxt);
4486
4487 sv_ifs ("IFS"); /* XXX here for now */
4488 }
4489
4490 /* **************************************************************** */
4491 /* */
4492 /* Pushing and Popping function contexts */
4493 /* */
4494 /* **************************************************************** */
4495
4496 static WORD_LIST **dollar_arg_stack = (WORD_LIST **)NULL;
4497 static int dollar_arg_stack_slots;
4498 static int dollar_arg_stack_index;
4499
4500 /* XXX - we might want to consider pushing and popping the `getopts' state
4501 when we modify the positional parameters. */
4502 void
4503 push_context (name, is_subshell, tempvars)
4504 char *name; /* function name */
4505 int is_subshell;
4506 HASH_TABLE *tempvars;
4507 {
4508 if (is_subshell == 0)
4509 push_dollar_vars ();
4510 variable_context++;
4511 push_var_context (name, VC_FUNCENV, tempvars);
4512 }
4513
4514 /* Only called when subshell == 0, so we don't need to check, and can
4515 unconditionally pop the dollar vars off the stack. */
4516 void
4517 pop_context ()
4518 {
4519 pop_dollar_vars ();
4520 variable_context--;
4521 pop_var_context ();
4522
4523 sv_ifs ("IFS"); /* XXX here for now */
4524 }
4525
4526 /* Save the existing positional parameters on a stack. */
4527 void
4528 push_dollar_vars ()
4529 {
4530 if (dollar_arg_stack_index + 2 > dollar_arg_stack_slots)
4531 {
4532 dollar_arg_stack = (WORD_LIST **)
4533 xrealloc (dollar_arg_stack, (dollar_arg_stack_slots += 10)
4534 * sizeof (WORD_LIST *));
4535 }
4536 dollar_arg_stack[dollar_arg_stack_index++] = list_rest_of_args ();
4537 dollar_arg_stack[dollar_arg_stack_index] = (WORD_LIST *)NULL;
4538 }
4539
4540 /* Restore the positional parameters from our stack. */
4541 void
4542 pop_dollar_vars ()
4543 {
4544 if (!dollar_arg_stack || dollar_arg_stack_index == 0)
4545 return;
4546
4547 remember_args (dollar_arg_stack[--dollar_arg_stack_index], 1);
4548 dispose_words (dollar_arg_stack[dollar_arg_stack_index]);
4549 dollar_arg_stack[dollar_arg_stack_index] = (WORD_LIST *)NULL;
4550 set_dollar_vars_unchanged ();
4551 }
4552
4553 void
4554 dispose_saved_dollar_vars ()
4555 {
4556 if (!dollar_arg_stack || dollar_arg_stack_index == 0)
4557 return;
4558
4559 dispose_words (dollar_arg_stack[dollar_arg_stack_index]);
4560 dollar_arg_stack[dollar_arg_stack_index] = (WORD_LIST *)NULL;
4561 }
4562
4563 /* Manipulate the special BASH_ARGV and BASH_ARGC variables. */
4564
4565 void
4566 push_args (list)
4567 WORD_LIST *list;
4568 {
4569 #if defined (ARRAY_VARS) && defined (DEBUGGER)
4570 SHELL_VAR *bash_argv_v, *bash_argc_v;
4571 ARRAY *bash_argv_a, *bash_argc_a;
4572 WORD_LIST *l;
4573 arrayind_t i;
4574 char *t;
4575
4576 GET_ARRAY_FROM_VAR ("BASH_ARGV", bash_argv_v, bash_argv_a);
4577 GET_ARRAY_FROM_VAR ("BASH_ARGC", bash_argc_v, bash_argc_a);
4578
4579 for (l = list, i = 0; l; l = l->next, i++)
4580 array_push (bash_argv_a, l->word->word);
4581
4582 t = itos (i);
4583 array_push (bash_argc_a, t);
4584 free (t);
4585 #endif /* ARRAY_VARS && DEBUGGER */
4586 }
4587
4588 /* Remove arguments from BASH_ARGV array. Pop top element off BASH_ARGC
4589 array and use that value as the count of elements to remove from
4590 BASH_ARGV. */
4591 void
4592 pop_args ()
4593 {
4594 #if defined (ARRAY_VARS) && defined (DEBUGGER)
4595 SHELL_VAR *bash_argv_v, *bash_argc_v;
4596 ARRAY *bash_argv_a, *bash_argc_a;
4597 ARRAY_ELEMENT *ce;
4598 intmax_t i;
4599
4600 GET_ARRAY_FROM_VAR ("BASH_ARGV", bash_argv_v, bash_argv_a);
4601 GET_ARRAY_FROM_VAR ("BASH_ARGC", bash_argc_v, bash_argc_a);
4602
4603 ce = array_shift (bash_argc_a, 1, 0);
4604 if (ce == 0 || legal_number (element_value (ce), &i) == 0)
4605 i = 0;
4606
4607 for ( ; i > 0; i--)
4608 array_pop (bash_argv_a);
4609 array_dispose_element (ce);
4610 #endif /* ARRAY_VARS && DEBUGGER */
4611 }
4612
4613 /*************************************************
4614 * *
4615 * Functions to manage special variables *
4616 * *
4617 *************************************************/
4618
4619 /* Extern declarations for variables this code has to manage. */
4620 extern int eof_encountered, eof_encountered_limit, ignoreeof;
4621
4622 #if defined (READLINE)
4623 extern int hostname_list_initialized;
4624 #endif
4625
4626 /* An alist of name.function for each special variable. Most of the
4627 functions don't do much, and in fact, this would be faster with a
4628 switch statement, but by the end of this file, I am sick of switch
4629 statements. */
4630
4631 #define SET_INT_VAR(name, intvar) intvar = find_variable (name) != 0
4632
4633 /* This table will be sorted with qsort() the first time it's accessed. */
4634 struct name_and_function {
4635 char *name;
4636 sh_sv_func_t *function;
4637 };
4638
4639 static struct name_and_function special_vars[] = {
4640 { "BASH_COMPAT", sv_shcompat },
4641 { "BASH_XTRACEFD", sv_xtracefd },
4642
4643 #if defined (JOB_CONTROL)
4644 { "CHILD_MAX", sv_childmax },
4645 #endif
4646
4647 #if defined (READLINE)
4648 # if defined (STRICT_POSIX)
4649 { "COLUMNS", sv_winsize },
4650 # endif
4651 { "COMP_WORDBREAKS", sv_comp_wordbreaks },
4652 #endif
4653
4654 { "FUNCNEST", sv_funcnest },
4655
4656 { "GLOBIGNORE", sv_globignore },
4657
4658 #if defined (HISTORY)
4659 { "HISTCONTROL", sv_history_control },
4660 { "HISTFILESIZE", sv_histsize },
4661 { "HISTIGNORE", sv_histignore },
4662 { "HISTSIZE", sv_histsize },
4663 { "HISTTIMEFORMAT", sv_histtimefmt },
4664 #endif
4665
4666 #if defined (__CYGWIN__)
4667 { "HOME", sv_home },
4668 #endif
4669
4670 #if defined (READLINE)
4671 { "HOSTFILE", sv_hostfile },
4672 #endif
4673
4674 { "IFS", sv_ifs },
4675 { "IGNOREEOF", sv_ignoreeof },
4676
4677 { "LANG", sv_locale },
4678 { "LC_ALL", sv_locale },
4679 { "LC_COLLATE", sv_locale },
4680 { "LC_CTYPE", sv_locale },
4681 { "LC_MESSAGES", sv_locale },
4682 { "LC_NUMERIC", sv_locale },
4683 { "LC_TIME", sv_locale },
4684
4685 #if defined (READLINE) && defined (STRICT_POSIX)
4686 { "LINES", sv_winsize },
4687 #endif
4688
4689 { "MAIL", sv_mail },
4690 { "MAILCHECK", sv_mail },
4691 { "MAILPATH", sv_mail },
4692
4693 { "OPTERR", sv_opterr },
4694 { "OPTIND", sv_optind },
4695
4696 { "PATH", sv_path },
4697 { "POSIXLY_CORRECT", sv_strict_posix },
4698
4699 #if defined (READLINE)
4700 { "TERM", sv_terminal },
4701 { "TERMCAP", sv_terminal },
4702 { "TERMINFO", sv_terminal },
4703 #endif /* READLINE */
4704
4705 { "TEXTDOMAIN", sv_locale },
4706 { "TEXTDOMAINDIR", sv_locale },
4707
4708 #if defined (HAVE_TZSET)
4709 { "TZ", sv_tz },
4710 #endif
4711
4712 #if defined (HISTORY) && defined (BANG_HISTORY)
4713 { "histchars", sv_histchars },
4714 #endif /* HISTORY && BANG_HISTORY */
4715
4716 { "ignoreeof", sv_ignoreeof },
4717
4718 { (char *)0, (sh_sv_func_t *)0 }
4719 };
4720
4721 #define N_SPECIAL_VARS (sizeof (special_vars) / sizeof (special_vars[0]) - 1)
4722
4723 static int
4724 sv_compare (sv1, sv2)
4725 struct name_and_function *sv1, *sv2;
4726 {
4727 int r;
4728
4729 if ((r = sv1->name[0] - sv2->name[0]) == 0)
4730 r = strcmp (sv1->name, sv2->name);
4731 return r;
4732 }
4733
4734 static inline int
4735 find_special_var (name)
4736 const char *name;
4737 {
4738 register int i, r;
4739
4740 for (i = 0; special_vars[i].name; i++)
4741 {
4742 r = special_vars[i].name[0] - name[0];
4743 if (r == 0)
4744 r = strcmp (special_vars[i].name, name);
4745 if (r == 0)
4746 return i;
4747 else if (r > 0)
4748 /* Can't match any of rest of elements in sorted list. Take this out
4749 if it causes problems in certain environments. */
4750 break;
4751 }
4752 return -1;
4753 }
4754
4755 /* The variable in NAME has just had its state changed. Check to see if it
4756 is one of the special ones where something special happens. */
4757 void
4758 stupidly_hack_special_variables (name)
4759 char *name;
4760 {
4761 static int sv_sorted = 0;
4762 int i;
4763
4764 if (sv_sorted == 0) /* shouldn't need, but it's fairly cheap. */
4765 {
4766 qsort (special_vars, N_SPECIAL_VARS, sizeof (special_vars[0]),
4767 (QSFUNC *)sv_compare);
4768 sv_sorted = 1;
4769 }
4770
4771 i = find_special_var (name);
4772 if (i != -1)
4773 (*(special_vars[i].function)) (name);
4774 }
4775
4776 /* Special variables that need hooks to be run when they are unset as part
4777 of shell reinitialization should have their sv_ functions run here. */
4778 void
4779 reinit_special_variables ()
4780 {
4781 #if defined (READLINE)
4782 sv_comp_wordbreaks ("COMP_WORDBREAKS");
4783 #endif
4784 sv_globignore ("GLOBIGNORE");
4785 sv_opterr ("OPTERR");
4786 }
4787
4788 void
4789 sv_ifs (name)
4790 char *name;
4791 {
4792 SHELL_VAR *v;
4793
4794 v = find_variable ("IFS");
4795 setifs (v);
4796 }
4797
4798 /* What to do just after the PATH variable has changed. */
4799 void
4800 sv_path (name)
4801 char *name;
4802 {
4803 /* hash -r */
4804 phash_flush ();
4805 }
4806
4807 /* What to do just after one of the MAILxxxx variables has changed. NAME
4808 is the name of the variable. This is called with NAME set to one of
4809 MAIL, MAILCHECK, or MAILPATH. */
4810 void
4811 sv_mail (name)
4812 char *name;
4813 {
4814 /* If the time interval for checking the files has changed, then
4815 reset the mail timer. Otherwise, one of the pathname vars
4816 to the users mailbox has changed, so rebuild the array of
4817 filenames. */
4818 if (name[4] == 'C') /* if (strcmp (name, "MAILCHECK") == 0) */
4819 reset_mail_timer ();
4820 else
4821 {
4822 free_mail_files ();
4823 remember_mail_dates ();
4824 }
4825 }
4826
4827 void
4828 sv_funcnest (name)
4829 char *name;
4830 {
4831 SHELL_VAR *v;
4832 intmax_t num;
4833
4834 v = find_variable (name);
4835 if (v == 0)
4836 funcnest_max = 0;
4837 else if (legal_number (value_cell (v), &num) == 0)
4838 funcnest_max = 0;
4839 else
4840 funcnest_max = num;
4841 }
4842
4843 /* What to do when GLOBIGNORE changes. */
4844 void
4845 sv_globignore (name)
4846 char *name;
4847 {
4848 if (privileged_mode == 0)
4849 setup_glob_ignore (name);
4850 }
4851
4852 #if defined (READLINE)
4853 void
4854 sv_comp_wordbreaks (name)
4855 char *name;
4856 {
4857 SHELL_VAR *sv;
4858
4859 sv = find_variable (name);
4860 if (sv == 0)
4861 reset_completer_word_break_chars ();
4862 }
4863
4864 /* What to do just after one of the TERMxxx variables has changed.
4865 If we are an interactive shell, then try to reset the terminal
4866 information in readline. */
4867 void
4868 sv_terminal (name)
4869 char *name;
4870 {
4871 if (interactive_shell && no_line_editing == 0)
4872 rl_reset_terminal (get_string_value ("TERM"));
4873 }
4874
4875 void
4876 sv_hostfile (name)
4877 char *name;
4878 {
4879 SHELL_VAR *v;
4880
4881 v = find_variable (name);
4882 if (v == 0)
4883 clear_hostname_list ();
4884 else
4885 hostname_list_initialized = 0;
4886 }
4887
4888 #if defined (STRICT_POSIX)
4889 /* In strict posix mode, we allow assignments to LINES and COLUMNS (and values
4890 found in the initial environment) to override the terminal size reported by
4891 the kernel. */
4892 void
4893 sv_winsize (name)
4894 char *name;
4895 {
4896 SHELL_VAR *v;
4897 intmax_t xd;
4898 int d;
4899
4900 if (posixly_correct == 0 || interactive_shell == 0 || no_line_editing)
4901 return;
4902
4903 v = find_variable (name);
4904 if (v == 0 || var_isnull (v))
4905 rl_reset_screen_size ();
4906 else
4907 {
4908 if (legal_number (value_cell (v), &xd) == 0)
4909 return;
4910 winsize_assignment = 1;
4911 d = xd; /* truncate */
4912 if (name[0] == 'L') /* LINES */
4913 rl_set_screen_size (d, -1);
4914 else /* COLUMNS */
4915 rl_set_screen_size (-1, d);
4916 winsize_assignment = 0;
4917 }
4918 }
4919 #endif /* STRICT_POSIX */
4920 #endif /* READLINE */
4921
4922 /* Update the value of HOME in the export environment so tilde expansion will
4923 work on cygwin. */
4924 #if defined (__CYGWIN__)
4925 sv_home (name)
4926 char *name;
4927 {
4928 array_needs_making = 1;
4929 maybe_make_export_env ();
4930 }
4931 #endif
4932
4933 #if defined (HISTORY)
4934 /* What to do after the HISTSIZE or HISTFILESIZE variables change.
4935 If there is a value for this HISTSIZE (and it is numeric), then stifle
4936 the history. Otherwise, if there is NO value for this variable,
4937 unstifle the history. If name is HISTFILESIZE, and its value is
4938 numeric, truncate the history file to hold no more than that many
4939 lines. */
4940 void
4941 sv_histsize (name)
4942 char *name;
4943 {
4944 char *temp;
4945 intmax_t num;
4946 int hmax;
4947
4948 temp = get_string_value (name);
4949
4950 if (temp && *temp)
4951 {
4952 if (legal_number (temp, &num))
4953 {
4954 hmax = num;
4955 if (hmax < 0 && name[4] == 'S')
4956 unstifle_history (); /* unstifle history if HISTSIZE < 0 */
4957 else if (name[4] == 'S')
4958 {
4959 stifle_history (hmax);
4960 hmax = where_history ();
4961 if (history_lines_this_session > hmax)
4962 history_lines_this_session = hmax;
4963 }
4964 else if (hmax >= 0) /* truncate HISTFILE if HISTFILESIZE >= 0 */
4965 {
4966 history_truncate_file (get_string_value ("HISTFILE"), hmax);
4967 if (hmax <= history_lines_in_file)
4968 history_lines_in_file = hmax;
4969 }
4970 }
4971 }
4972 else if (name[4] == 'S')
4973 unstifle_history ();
4974 }
4975
4976 /* What to do after the HISTIGNORE variable changes. */
4977 void
4978 sv_histignore (name)
4979 char *name;
4980 {
4981 setup_history_ignore (name);
4982 }
4983
4984 /* What to do after the HISTCONTROL variable changes. */
4985 void
4986 sv_history_control (name)
4987 char *name;
4988 {
4989 char *temp;
4990 char *val;
4991 int tptr;
4992
4993 history_control = 0;
4994 temp = get_string_value (name);
4995
4996 if (temp == 0 || *temp == 0)
4997 return;
4998
4999 tptr = 0;
5000 while (val = extract_colon_unit (temp, &tptr))
5001 {
5002 if (STREQ (val, "ignorespace"))
5003 history_control |= HC_IGNSPACE;
5004 else if (STREQ (val, "ignoredups"))
5005 history_control |= HC_IGNDUPS;
5006 else if (STREQ (val, "ignoreboth"))
5007 history_control |= HC_IGNBOTH;
5008 else if (STREQ (val, "erasedups"))
5009 history_control |= HC_ERASEDUPS;
5010
5011 free (val);
5012 }
5013 }
5014
5015 #if defined (BANG_HISTORY)
5016 /* Setting/unsetting of the history expansion character. */
5017 void
5018 sv_histchars (name)
5019 char *name;
5020 {
5021 char *temp;
5022
5023 temp = get_string_value (name);
5024 if (temp)
5025 {
5026 history_expansion_char = *temp;
5027 if (temp[0] && temp[1])
5028 {
5029 history_subst_char = temp[1];
5030 if (temp[2])
5031 history_comment_char = temp[2];
5032 }
5033 }
5034 else
5035 {
5036 history_expansion_char = '!';
5037 history_subst_char = '^';
5038 history_comment_char = '#';
5039 }
5040 }
5041 #endif /* BANG_HISTORY */
5042
5043 void
5044 sv_histtimefmt (name)
5045 char *name;
5046 {
5047 SHELL_VAR *v;
5048
5049 if (v = find_variable (name))
5050 {
5051 if (history_comment_char == 0)
5052 history_comment_char = '#';
5053 }
5054 history_write_timestamps = (v != 0);
5055 }
5056 #endif /* HISTORY */
5057
5058 #if defined (HAVE_TZSET)
5059 void
5060 sv_tz (name)
5061 char *name;
5062 {
5063 if (chkexport (name))
5064 tzset ();
5065 }
5066 #endif
5067
5068 /* If the variable exists, then the value of it can be the number
5069 of times we actually ignore the EOF. The default is small,
5070 (smaller than csh, anyway). */
5071 void
5072 sv_ignoreeof (name)
5073 char *name;
5074 {
5075 SHELL_VAR *tmp_var;
5076 char *temp;
5077
5078 eof_encountered = 0;
5079
5080 tmp_var = find_variable (name);
5081 ignoreeof = tmp_var != 0;
5082 temp = tmp_var ? value_cell (tmp_var) : (char *)NULL;
5083 if (temp)
5084 eof_encountered_limit = (*temp && all_digits (temp)) ? atoi (temp) : 10;
5085 set_shellopts (); /* make sure `ignoreeof' is/is not in $SHELLOPTS */
5086 }
5087
5088 void
5089 sv_optind (name)
5090 char *name;
5091 {
5092 char *tt;
5093 int s;
5094
5095 tt = get_string_value ("OPTIND");
5096 if (tt && *tt)
5097 {
5098 s = atoi (tt);
5099
5100 /* According to POSIX, setting OPTIND=1 resets the internal state
5101 of getopt (). */
5102 if (s < 0 || s == 1)
5103 s = 0;
5104 }
5105 else
5106 s = 0;
5107 getopts_reset (s);
5108 }
5109
5110 void
5111 sv_opterr (name)
5112 char *name;
5113 {
5114 char *tt;
5115
5116 tt = get_string_value ("OPTERR");
5117 sh_opterr = (tt && *tt) ? atoi (tt) : 1;
5118 }
5119
5120 void
5121 sv_strict_posix (name)
5122 char *name;
5123 {
5124 SET_INT_VAR (name, posixly_correct);
5125 posix_initialize (posixly_correct);
5126 #if defined (READLINE)
5127 if (interactive_shell)
5128 posix_readline_initialize (posixly_correct);
5129 #endif /* READLINE */
5130 set_shellopts (); /* make sure `posix' is/is not in $SHELLOPTS */
5131 }
5132
5133 void
5134 sv_locale (name)
5135 char *name;
5136 {
5137 char *v;
5138 int r;
5139
5140 v = get_string_value (name);
5141 if (name[0] == 'L' && name[1] == 'A') /* LANG */
5142 r = set_lang (name, v);
5143 else
5144 r = set_locale_var (name, v); /* LC_*, TEXTDOMAIN* */
5145
5146 #if 1
5147 if (r == 0 && posixly_correct)
5148 last_command_exit_value = 1;
5149 #endif
5150 }
5151
5152 #if defined (ARRAY_VARS)
5153 void
5154 set_pipestatus_array (ps, nproc)
5155 int *ps;
5156 int nproc;
5157 {
5158 SHELL_VAR *v;
5159 ARRAY *a;
5160 ARRAY_ELEMENT *ae;
5161 register int i;
5162 char *t, tbuf[INT_STRLEN_BOUND(int) + 1];
5163
5164 v = find_variable ("PIPESTATUS");
5165 if (v == 0)
5166 v = make_new_array_variable ("PIPESTATUS");
5167 if (array_p (v) == 0)
5168 return; /* Do nothing if not an array variable. */
5169 a = array_cell (v);
5170
5171 if (a == 0 || array_num_elements (a) == 0)
5172 {
5173 for (i = 0; i < nproc; i++) /* was ps[i] != -1, not i < nproc */
5174 {
5175 t = inttostr (ps[i], tbuf, sizeof (tbuf));
5176 array_insert (a, i, t);
5177 }
5178 return;
5179 }
5180
5181 /* Fast case */
5182 if (array_num_elements (a) == nproc && nproc == 1)
5183 {
5184 ae = element_forw (a->head);
5185 free (element_value (ae));
5186 ae->value = itos (ps[0]);
5187 }
5188 else if (array_num_elements (a) <= nproc)
5189 {
5190 /* modify in array_num_elements members in place, then add */
5191 ae = a->head;
5192 for (i = 0; i < array_num_elements (a); i++)
5193 {
5194 ae = element_forw (ae);
5195 free (element_value (ae));
5196 ae->value = itos (ps[i]);
5197 }
5198 /* add any more */
5199 for ( ; i < nproc; i++)
5200 {
5201 t = inttostr (ps[i], tbuf, sizeof (tbuf));
5202 array_insert (a, i, t);
5203 }
5204 }
5205 else
5206 {
5207 /* deleting elements. it's faster to rebuild the array. */
5208 array_flush (a);
5209 for (i = 0; ps[i] != -1; i++)
5210 {
5211 t = inttostr (ps[i], tbuf, sizeof (tbuf));
5212 array_insert (a, i, t);
5213 }
5214 }
5215 }
5216
5217 ARRAY *
5218 save_pipestatus_array ()
5219 {
5220 SHELL_VAR *v;
5221 ARRAY *a, *a2;
5222
5223 v = find_variable ("PIPESTATUS");
5224 if (v == 0 || array_p (v) == 0 || array_cell (v) == 0)
5225 return ((ARRAY *)NULL);
5226
5227 a = array_cell (v);
5228 a2 = array_copy (array_cell (v));
5229
5230 return a2;
5231 }
5232
5233 void
5234 restore_pipestatus_array (a)
5235 ARRAY *a;
5236 {
5237 SHELL_VAR *v;
5238 ARRAY *a2;
5239
5240 v = find_variable ("PIPESTATUS");
5241 /* XXX - should we still assign even if existing value is NULL? */
5242 if (v == 0 || array_p (v) == 0 || array_cell (v) == 0)
5243 return;
5244
5245 a2 = array_cell (v);
5246 var_setarray (v, a);
5247
5248 array_dispose (a2);
5249 }
5250 #endif
5251
5252 void
5253 set_pipestatus_from_exit (s)
5254 int s;
5255 {
5256 #if defined (ARRAY_VARS)
5257 static int v[2] = { 0, -1 };
5258
5259 v[0] = s;
5260 set_pipestatus_array (v, 1);
5261 #endif
5262 }
5263
5264 void
5265 sv_xtracefd (name)
5266 char *name;
5267 {
5268 SHELL_VAR *v;
5269 char *t, *e;
5270 int fd;
5271 FILE *fp;
5272
5273 v = find_variable (name);
5274 if (v == 0)
5275 {
5276 xtrace_reset ();
5277 return;
5278 }
5279
5280 t = value_cell (v);
5281 if (t == 0 || *t == 0)
5282 xtrace_reset ();
5283 else
5284 {
5285 fd = (int)strtol (t, &e, 10);
5286 if (e != t && *e == '\0' && sh_validfd (fd))
5287 {
5288 fp = fdopen (fd, "w");
5289 if (fp == 0)
5290 internal_error (_("%s: %s: cannot open as FILE"), name, value_cell (v));
5291 else
5292 xtrace_set (fd, fp);
5293 }
5294 else
5295 internal_error (_("%s: %s: invalid value for trace file descriptor"), name, value_cell (v));
5296 }
5297 }
5298
5299 #define MIN_COMPAT_LEVEL 31
5300
5301 void
5302 sv_shcompat (name)
5303 char *name;
5304 {
5305 SHELL_VAR *v;
5306 char *val;
5307 int tens, ones, compatval;
5308
5309 v = find_variable (name);
5310 if (v == 0)
5311 {
5312 shell_compatibility_level = DEFAULT_COMPAT_LEVEL;
5313 set_compatibility_opts ();
5314 return;
5315 }
5316 val = value_cell (v);
5317 if (val == 0 || *val == '\0')
5318 {
5319 shell_compatibility_level = DEFAULT_COMPAT_LEVEL;
5320 set_compatibility_opts ();
5321 return;
5322 }
5323 /* Handle decimal-like compatibility version specifications: 4.2 */
5324 if (isdigit (val[0]) && val[1] == '.' && isdigit (val[2]) && val[3] == 0)
5325 {
5326 tens = val[0] - '0';
5327 ones = val[2] - '0';
5328 compatval = tens*10 + ones;
5329 }
5330 /* Handle integer-like compatibility version specifications: 42 */
5331 else if (isdigit (val[0]) && isdigit (val[1]) && val[2] == 0)
5332 {
5333 tens = val[0] - '0';
5334 ones = val[1] - '0';
5335 compatval = tens*10 + ones;
5336 }
5337 else
5338 {
5339 compat_error:
5340 internal_error (_("%s: %s: compatibility value out of range"), name, val);
5341 shell_compatibility_level = DEFAULT_COMPAT_LEVEL;
5342 set_compatibility_opts ();
5343 return;
5344 }
5345
5346 if (compatval < MIN_COMPAT_LEVEL || compatval > DEFAULT_COMPAT_LEVEL)
5347 goto compat_error;
5348
5349 shell_compatibility_level = compatval;
5350 set_compatibility_opts ();
5351 }
5352
5353 #if defined (JOB_CONTROL)
5354 void
5355 sv_childmax (name)
5356 char *name;
5357 {
5358 char *tt;
5359 int s;
5360
5361 tt = get_string_value (name);
5362 s = (tt && *tt) ? atoi (tt) : 0;
5363 set_maxchild (s);
5364 }
5365 #endif