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0628567a 1/* execute_cmd.c -- Execute a COMMAND structure. */
726f6388 2
ac50fbac 3/* Copyright (C) 1987-2013 Free Software Foundation, Inc.
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4
5 This file is part of GNU Bash, the Bourne Again SHell.
6
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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.
726f6388 11
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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.
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16
17 You should have received a copy of the GNU General Public License
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18 along with Bash. If not, see <http://www.gnu.org/licenses/>.
19*/
20
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21#include "config.h"
22
23#if !defined (__GNUC__) && !defined (HAVE_ALLOCA_H) && defined (_AIX)
726f6388 24 #pragma alloca
ccc6cda3 25#endif /* _AIX && RISC6000 && !__GNUC__ */
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26
27#include <stdio.h>
f73dda09 28#include "chartypes.h"
726f6388 29#include "bashtypes.h"
b80f6443 30#if !defined (_MINIX) && defined (HAVE_SYS_FILE_H)
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31# include <sys/file.h>
32#endif
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33#include "filecntl.h"
34#include "posixstat.h"
35#include <signal.h>
ac50fbac 36#if defined (HAVE_SYS_PARAM_H)
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37# include <sys/param.h>
38#endif
726f6388 39
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40#if defined (HAVE_UNISTD_H)
41# include <unistd.h>
42#endif
43
bb70624e 44#include "posixtime.h"
ccc6cda3 45
cce855bc 46#if defined (HAVE_SYS_RESOURCE_H) && !defined (RLIMTYPE)
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47# include <sys/resource.h>
48#endif
49
50#if defined (HAVE_SYS_TIMES_H) && defined (HAVE_TIMES)
51# include <sys/times.h>
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52#endif
53
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54#include <errno.h>
55
56#if !defined (errno)
57extern int errno;
58#endif
59
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60#define NEED_FPURGE_DECL
61
ccc6cda3 62#include "bashansi.h"
b80f6443 63#include "bashintl.h"
726f6388 64
ccc6cda3 65#include "memalloc.h"
726f6388 66#include "shell.h"
d166f048 67#include <y.tab.h> /* use <...> so we pick it up from the build directory */
726f6388 68#include "flags.h"
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69#include "builtins.h"
70#include "hashlib.h"
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71#include "jobs.h"
72#include "execute_cmd.h"
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73#include "findcmd.h"
74#include "redir.h"
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75#include "trap.h"
76#include "pathexp.h"
d166f048 77#include "hashcmd.h"
726f6388 78
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79#if defined (COND_COMMAND)
80# include "test.h"
81#endif
82
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83#include "builtins/common.h"
84#include "builtins/builtext.h" /* list of builtins */
85
f73dda09 86#include <glob/strmatch.h>
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87#include <tilde/tilde.h>
88
89#if defined (BUFFERED_INPUT)
90# include "input.h"
91#endif
92
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93#if defined (ALIAS)
94# include "alias.h"
95#endif
96
97#if defined (HISTORY)
98# include "bashhist.h"
99#endif
100
495aee44 101extern int dollar_dollar_pid;
726f6388 102extern int posixly_correct;
f73dda09 103extern int expand_aliases;
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104extern int autocd;
105extern int breaking, continuing, loop_level;
0001803f 106extern int parse_and_execute_level, running_trap, sourcelevel;
f73dda09 107extern int command_string_index, line_number;
726f6388 108extern int dot_found_in_search;
ccc6cda3 109extern int already_making_children;
b80f6443 110extern int tempenv_assign_error;
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111extern char *the_printed_command, *shell_name;
112extern pid_t last_command_subst_pid;
f73dda09 113extern sh_builtin_func_t *last_shell_builtin, *this_shell_builtin;
726f6388 114extern char **subshell_argv, **subshell_envp;
ccc6cda3 115extern int subshell_argc;
495aee44 116extern time_t shell_start_time;
f73dda09 117#if 0
ccc6cda3 118extern char *glob_argv_flags;
f73dda09 119#endif
726f6388 120
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121extern int job_control; /* XXX */
122
f73dda09 123extern int close __P((int));
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124
125/* Static functions defined and used in this file. */
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126static void close_pipes __P((int, int));
127static void do_piping __P((int, int));
128static void bind_lastarg __P((char *));
129static int shell_control_structure __P((enum command_type));
130static void cleanup_redirects __P((REDIRECT *));
131
132#if defined (JOB_CONTROL)
133static int restore_signal_mask __P((sigset_t *));
134#endif
ccc6cda3 135
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136static void async_redirect_stdin __P((void));
137
138static int builtin_status __P((int));
139
140static int execute_for_command __P((FOR_COM *));
ccc6cda3 141#if defined (SELECT_COMMAND)
495aee44 142static int displen __P((const char *));
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143static int print_index_and_element __P((int, int, WORD_LIST *));
144static void indent __P((int, int));
145static void print_select_list __P((WORD_LIST *, int, int, int));
7117c2d2 146static char *select_query __P((WORD_LIST *, int, char *, int));
f73dda09 147static int execute_select_command __P((SELECT_COM *));
ccc6cda3 148#endif
cce855bc 149#if defined (DPAREN_ARITHMETIC)
f73dda09 150static int execute_arith_command __P((ARITH_COM *));
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151#endif
152#if defined (COND_COMMAND)
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153static int execute_cond_node __P((COND_COM *));
154static int execute_cond_command __P((COND_COM *));
cce855bc 155#endif
d166f048 156#if defined (COMMAND_TIMING)
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157static int mkfmt __P((char *, int, int, time_t, int));
158static void print_formatted_time __P((FILE *, char *,
159 time_t, int, time_t, int,
160 time_t, int, int));
161static int time_command __P((COMMAND *, int, int, int, struct fd_bitmap *));
d166f048 162#endif
bb70624e 163#if defined (ARITH_FOR_COMMAND)
7117c2d2 164static intmax_t eval_arith_for_expr __P((WORD_LIST *, int *));
f73dda09 165static int execute_arith_for_command __P((ARITH_FOR_COM *));
bb70624e 166#endif
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167static int execute_case_command __P((CASE_COM *));
168static int execute_while_command __P((WHILE_COM *));
169static int execute_until_command __P((WHILE_COM *));
170static int execute_while_or_until __P((WHILE_COM *, int));
171static int execute_if_command __P((IF_COM *));
95732b49 172static int execute_null_command __P((REDIRECT *, int, int, int));
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173static void fix_assignment_words __P((WORD_LIST *));
174static int execute_simple_command __P((SIMPLE_COM *, int, int, int, struct fd_bitmap *));
175static int execute_builtin __P((sh_builtin_func_t *, WORD_LIST *, int, int));
176static int execute_function __P((SHELL_VAR *, WORD_LIST *, int, struct fd_bitmap *, int, int));
177static int execute_builtin_or_function __P((WORD_LIST *, sh_builtin_func_t *,
178 SHELL_VAR *,
179 REDIRECT *, struct fd_bitmap *, int));
180static void execute_subshell_builtin_or_function __P((WORD_LIST *, REDIRECT *,
181 sh_builtin_func_t *,
182 SHELL_VAR *,
183 int, int, int,
184 struct fd_bitmap *,
185 int));
495aee44 186static int execute_disk_command __P((WORD_LIST *, REDIRECT *, char *,
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187 int, int, int, struct fd_bitmap *, int));
188
189static char *getinterp __P((char *, int, int *));
190static void initialize_subshell __P((void));
191static int execute_in_subshell __P((COMMAND *, int, int, int, struct fd_bitmap *));
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192#if defined (COPROCESS_SUPPORT)
193static int execute_coproc __P((COMMAND *, int, int, struct fd_bitmap *));
194#endif
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195
196static int execute_pipeline __P((COMMAND *, int, int, int, struct fd_bitmap *));
197
198static int execute_connection __P((COMMAND *, int, int, int, struct fd_bitmap *));
199
ac50fbac 200static int execute_intern_function __P((WORD_DESC *, FUNCTION_DEF *));
f73dda09 201
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202/* Set to 1 if fd 0 was the subject of redirection to a subshell. Global
203 so that reader_loop can set it to zero before executing a command. */
204int stdin_redir;
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205
206/* The name of the command that is currently being executed.
207 `test' needs this, for example. */
208char *this_command_name;
209
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210/* The printed representation of the currently-executing command (same as
211 the_printed_command), except when a trap is being executed. Useful for
212 a debugger to know where exactly the program is currently executing. */
213char *the_printed_command_except_trap;
214
726f6388 215/* For catching RETURN in a function. */
ccc6cda3 216int return_catch_flag;
726f6388 217int return_catch_value;
ccc6cda3 218procenv_t return_catch;
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219
220/* The value returned by the last synchronous command. */
ccc6cda3 221int last_command_exit_value;
726f6388 222
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223/* Whether or not the last command (corresponding to last_command_exit_value)
224 was terminated by a signal, and, if so, which one. */
225int last_command_exit_signal;
226
ac50fbac
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227/* Are we currently ignoring the -e option for the duration of a builtin's
228 execution? */
229int builtin_ignoring_errexit = 0;
230
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231/* The list of redirections to perform which will undo the redirections
232 that I made in the shell. */
233REDIRECT *redirection_undo_list = (REDIRECT *)NULL;
234
235/* The list of redirections to perform which will undo the internal
236 redirections performed by the `exec' builtin. These are redirections
237 that must be undone even when exec discards redirection_undo_list. */
238REDIRECT *exec_redirection_undo_list = (REDIRECT *)NULL;
239
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240/* When greater than zero, value is the `level' of builtins we are
241 currently executing (e.g. `eval echo a' would have it set to 2). */
242int executing_builtin = 0;
243
244/* Non-zero if we are executing a command list (a;b;c, etc.) */
245int executing_list = 0;
246
247/* Non-zero if failing commands in a command substitution should not exit the
248 shell even if -e is set. Used to pass the CMD_IGNORE_RETURN flag down to
249 commands run in command substitutions by parse_and_execute. */
250int comsub_ignore_return = 0;
251
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252/* Non-zero if we have just forked and are currently running in a subshell
253 environment. */
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254int subshell_environment;
255
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256/* Count of nested subshells, like SHLVL. Available via $BASH_SUBSHELL */
257int subshell_level = 0;
258
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259/* Currently-executing shell function. */
260SHELL_VAR *this_shell_function;
261
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262/* If non-zero, matches in case and [[ ... ]] are case-insensitive */
263int match_ignore_case = 0;
264
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265int executing_command_builtin = 0;
266
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267struct stat SB; /* used for debugging */
268
269static int special_builtin_failed;
270
271static COMMAND *currently_executing_command;
272
273/* The line number that the currently executing function starts on. */
274static int function_line_number;
275
276/* XXX - set to 1 if we're running the DEBUG trap and we want to show the line
277 number containing the function name. Used by executing_line_number to
278 report the correct line number. Kind of a hack. */
279static int showing_function_line;
280
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281/* $LINENO ($BASH_LINENO) for use by an ERR trap. Global so parse_and_execute
282 can save and restore it. */
283int line_number_for_err_trap;
3185942a 284
0001803f 285/* A sort of function nesting level counter */
495aee44 286int funcnest = 0;
ac50fbac 287int funcnest_max = 0; /* bash-4.2 */
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288
289int lastpipe_opt = 0;
0001803f 290
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291struct fd_bitmap *current_fds_to_close = (struct fd_bitmap *)NULL;
292
f73dda09 293#define FD_BITMAP_DEFAULT_SIZE 32
d166f048 294
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295/* Functions to allocate and deallocate the structures used to pass
296 information from the shell to its children about file descriptors
297 to close. */
298struct fd_bitmap *
299new_fd_bitmap (size)
f73dda09 300 int size;
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301{
302 struct fd_bitmap *ret;
303
304 ret = (struct fd_bitmap *)xmalloc (sizeof (struct fd_bitmap));
305
306 ret->size = size;
307
308 if (size)
309 {
f73dda09 310 ret->bitmap = (char *)xmalloc (size);
7117c2d2 311 memset (ret->bitmap, '\0', size);
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312 }
313 else
314 ret->bitmap = (char *)NULL;
315 return (ret);
316}
317
318void
319dispose_fd_bitmap (fdbp)
320 struct fd_bitmap *fdbp;
321{
322 FREE (fdbp->bitmap);
323 free (fdbp);
324}
325
326void
327close_fd_bitmap (fdbp)
328 struct fd_bitmap *fdbp;
329{
330 register int i;
331
332 if (fdbp)
333 {
334 for (i = 0; i < fdbp->size; i++)
335 if (fdbp->bitmap[i])
336 {
337 close (i);
338 fdbp->bitmap[i] = 0;
339 }
340 }
341}
342
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343/* Return the line number of the currently executing command. */
344int
345executing_line_number ()
346{
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347 if (executing && showing_function_line == 0 &&
348 (variable_context == 0 || interactive_shell == 0) &&
349 currently_executing_command)
7117c2d2 350 {
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351#if defined (COND_COMMAND)
352 if (currently_executing_command->type == cm_cond)
7117c2d2 353 return currently_executing_command->value.Cond->line;
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354#endif
355#if defined (DPAREN_ARITHMETIC)
ac50fbac 356 if (currently_executing_command->type == cm_arith)
7117c2d2 357 return currently_executing_command->value.Arith->line;
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358#endif
359#if defined (ARITH_FOR_COMMAND)
ac50fbac 360 if (currently_executing_command->type == cm_arith_for)
7117c2d2 361 return currently_executing_command->value.ArithFor->line;
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362#endif
363
7117c2d2
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364 return line_number;
365 }
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366 else
367 return line_number;
ccc6cda3
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368}
369
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370/* Execute the command passed in COMMAND. COMMAND is exactly what
371 read_command () places into GLOBAL_COMMAND. See "command.h" for the
372 details of the command structure.
373
374 EXECUTION_SUCCESS or EXECUTION_FAILURE are the only possible
375 return values. Executing a command with nothing in it returns
376 EXECUTION_SUCCESS. */
ccc6cda3 377int
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378execute_command (command)
379 COMMAND *command;
380{
381 struct fd_bitmap *bitmap;
382 int result;
383
384 current_fds_to_close = (struct fd_bitmap *)NULL;
385 bitmap = new_fd_bitmap (FD_BITMAP_DEFAULT_SIZE);
386 begin_unwind_frame ("execute-command");
387 add_unwind_protect (dispose_fd_bitmap, (char *)bitmap);
388
389 /* Just do the command, but not asynchronously. */
390 result = execute_command_internal (command, 0, NO_PIPE, NO_PIPE, bitmap);
391
392 dispose_fd_bitmap (bitmap);
393 discard_unwind_frame ("execute-command");
394
395#if defined (PROCESS_SUBSTITUTION)
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396 /* don't unlink fifos if we're in a shell function; wait until the function
397 returns. */
398 if (variable_context == 0)
399 unlink_fifo_list ();
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400#endif /* PROCESS_SUBSTITUTION */
401
0628567a 402 QUIT;
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403 return (result);
404}
405
406/* Return 1 if TYPE is a shell control structure type. */
407static int
408shell_control_structure (type)
409 enum command_type type;
410{
411 switch (type)
412 {
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413#if defined (ARITH_FOR_COMMAND)
414 case cm_arith_for:
415#endif
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416#if defined (SELECT_COMMAND)
417 case cm_select:
cce855bc
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418#endif
419#if defined (DPAREN_ARITHMETIC)
420 case cm_arith:
421#endif
422#if defined (COND_COMMAND)
423 case cm_cond:
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424#endif
425 case cm_case:
426 case cm_while:
427 case cm_until:
428 case cm_if:
95732b49 429 case cm_for:
726f6388 430 case cm_group:
95732b49 431 case cm_function_def:
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432 return (1);
433
434 default:
435 return (0);
436 }
437}
438
439/* A function to use to unwind_protect the redirection undo list
440 for loops. */
441static void
442cleanup_redirects (list)
443 REDIRECT *list;
444{
b80f6443 445 do_redirections (list, RX_ACTIVE);
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446 dispose_redirects (list);
447}
448
ccc6cda3 449#if 0
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450/* Function to unwind_protect the redirections for functions and builtins. */
451static void
452cleanup_func_redirects (list)
453 REDIRECT *list;
454{
b80f6443 455 do_redirections (list, RX_ACTIVE);
726f6388 456}
ccc6cda3 457#endif
726f6388 458
cce855bc 459void
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460dispose_exec_redirects ()
461{
462 if (exec_redirection_undo_list)
463 {
464 dispose_redirects (exec_redirection_undo_list);
465 exec_redirection_undo_list = (REDIRECT *)NULL;
466 }
467}
468
469#if defined (JOB_CONTROL)
470/* A function to restore the signal mask to its proper value when the shell
471 is interrupted or errors occur while creating a pipeline. */
472static int
473restore_signal_mask (set)
f73dda09 474 sigset_t *set;
726f6388 475{
f73dda09 476 return (sigprocmask (SIG_SETMASK, set, (sigset_t *)NULL));
726f6388
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477}
478#endif /* JOB_CONTROL */
479
f73dda09 480#ifdef DEBUG
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481/* A debugging function that can be called from gdb, for instance. */
482void
483open_files ()
484{
485 register int i;
486 int f, fd_table_size;
487
488 fd_table_size = getdtablesize ();
489
f73dda09 490 fprintf (stderr, "pid %ld open files:", (long)getpid ());
726f6388
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491 for (i = 3; i < fd_table_size; i++)
492 {
493 if ((f = fcntl (i, F_GETFD, 0)) != -1)
494 fprintf (stderr, " %d (%s)", i, f ? "close" : "open");
495 }
496 fprintf (stderr, "\n");
497}
f73dda09 498#endif
726f6388 499
d166f048
JA
500static void
501async_redirect_stdin ()
502{
503 int fd;
504
505 fd = open ("/dev/null", O_RDONLY);
506 if (fd > 0)
507 {
508 dup2 (fd, 0);
509 close (fd);
510 }
511 else if (fd < 0)
b80f6443 512 internal_error (_("cannot redirect standard input from /dev/null: %s"), strerror (errno));
d166f048
JA
513}
514
ccc6cda3 515#define DESCRIBE_PID(pid) do { if (interactive) describe_pid (pid); } while (0)
726f6388 516
ac50fbac 517/* Execute the command passed in COMMAND, perhaps doing it asynchronously.
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518 COMMAND is exactly what read_command () places into GLOBAL_COMMAND.
519 ASYNCHROUNOUS, if non-zero, says to do this command in the background.
520 PIPE_IN and PIPE_OUT are file descriptors saying where input comes
521 from and where it goes. They can have the value of NO_PIPE, which means
522 I/O is stdin/stdout.
523 FDS_TO_CLOSE is a list of file descriptors to close once the child has
524 been forked. This list often contains the unusable sides of pipes, etc.
525
526 EXECUTION_SUCCESS or EXECUTION_FAILURE are the only possible
527 return values. Executing a command with nothing in it returns
528 EXECUTION_SUCCESS. */
ccc6cda3
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529int
530execute_command_internal (command, asynchronous, pipe_in, pipe_out,
726f6388
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531 fds_to_close)
532 COMMAND *command;
533 int asynchronous;
534 int pipe_in, pipe_out;
535 struct fd_bitmap *fds_to_close;
536{
17345e5a 537 int exec_result, user_subshell, invert, ignore_return, was_error_trap;
d166f048 538 REDIRECT *my_undo_list, *exec_undo_list;
ac50fbac 539 char *tcmd;
95732b49 540 volatile int last_pid;
b80f6443 541 volatile int save_line_number;
ac50fbac
CR
542#if defined (PROCESS_SUBSTITUTION)
543 volatile int ofifo, nfifo, osize, saved_fifo;
544 volatile char *ofifo_list;
545#endif
726f6388 546
f1be666c
JA
547 if (breaking || continuing)
548 return (last_command_exit_value);
549 if (command == 0 || read_but_dont_execute)
550 return (EXECUTION_SUCCESS);
726f6388 551
0628567a 552 QUIT;
726f6388
JA
553 run_pending_traps ();
554
b80f6443 555#if 0
ccc6cda3 556 if (running_trap == 0)
b80f6443 557#endif
ccc6cda3
JA
558 currently_executing_command = command;
559
726f6388 560 invert = (command->flags & CMD_INVERT_RETURN) != 0;
d166f048
JA
561
562 /* If we're inverting the return value and `set -e' has been executed,
563 we don't want a failing command to inadvertently cause the shell
564 to exit. */
565 if (exit_immediately_on_error && invert) /* XXX */
566 command->flags |= CMD_IGNORE_RETURN; /* XXX */
567
ccc6cda3 568 exec_result = EXECUTION_SUCCESS;
726f6388
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569
570 /* If a command was being explicitly run in a subshell, or if it is
571 a shell control-structure, and it has a pipe, then we do the command
572 in a subshell. */
bb70624e
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573 if (command->type == cm_subshell && (command->flags & CMD_NO_FORK))
574 return (execute_in_subshell (command, asynchronous, pipe_in, pipe_out, fds_to_close));
726f6388 575
3185942a
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576#if defined (COPROCESS_SUPPORT)
577 if (command->type == cm_coproc)
578 return (execute_coproc (command, pipe_in, pipe_out, fds_to_close));
579#endif
580
17345e5a
JA
581 user_subshell = command->type == cm_subshell || ((command->flags & CMD_WANT_SUBSHELL) != 0);
582
bb70624e
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583 if (command->type == cm_subshell ||
584 (command->flags & (CMD_WANT_SUBSHELL|CMD_FORCE_SUBSHELL)) ||
726f6388
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585 (shell_control_structure (command->type) &&
586 (pipe_out != NO_PIPE || pipe_in != NO_PIPE || asynchronous)))
587 {
588 pid_t paren_pid;
ac50fbac 589 int s;
726f6388
JA
590
591 /* Fork a subshell, turn off the subshell bit, turn off job
592 control and call execute_command () on the command again. */
89a92869 593 line_number_for_err_trap = line_number;
ac50fbac
CR
594 tcmd = make_command_string (command);
595 paren_pid = make_child (savestring (tcmd), asynchronous);
596
597 if (user_subshell && signal_is_trapped (ERROR_TRAP) &&
598 signal_in_progress (DEBUG_TRAP) == 0 && running_trap == 0)
599 {
600 FREE (the_printed_command_except_trap);
601 the_printed_command_except_trap = savestring (the_printed_command);
602 }
603
726f6388 604 if (paren_pid == 0)
ac50fbac
CR
605 {
606 /* We want to run the exit trap for forced {} subshells, and we
607 want to note this before execute_in_subshell modifies the
608 COMMAND struct. Need to keep in mind that execute_in_subshell
609 runs the exit trap for () subshells itself. */
610 /* This handles { command; } & */
611 s = user_subshell == 0 && command->type == cm_group && pipe_in == NO_PIPE && pipe_out == NO_PIPE && asynchronous;
612 /* run exit trap for : | { ...; } and { ...; } | : */
613 /* run exit trap for : | ( ...; ) and ( ...; ) | : */
614 s += user_subshell == 0 && command->type == cm_group && (pipe_in != NO_PIPE || pipe_out != NO_PIPE) && asynchronous == 0;
615
616 last_command_exit_value = execute_in_subshell (command, asynchronous, pipe_in, pipe_out, fds_to_close);
617 if (s)
618 subshell_exit (last_command_exit_value);
619 else
620 exit (last_command_exit_value);
621 /* NOTREACHED */
622 }
726f6388
JA
623 else
624 {
625 close_pipes (pipe_in, pipe_out);
626
627#if defined (PROCESS_SUBSTITUTION) && defined (HAVE_DEV_FD)
ac50fbac
CR
628 if (variable_context == 0) /* wait until shell function completes */
629 unlink_fifo_list ();
726f6388
JA
630#endif
631 /* If we are part of a pipeline, and not the end of the pipeline,
632 then we should simply return and let the last command in the
633 pipe be waited for. If we are not in a pipeline, or are the
ccc6cda3 634 last command in the pipeline, then we wait for the subshell
726f6388
JA
635 and return its exit status as usual. */
636 if (pipe_out != NO_PIPE)
637 return (EXECUTION_SUCCESS);
638
639 stop_pipeline (asynchronous, (COMMAND *)NULL);
640
ccc6cda3 641 if (asynchronous == 0)
726f6388 642 {
17345e5a
JA
643 was_error_trap = signal_is_trapped (ERROR_TRAP) && signal_is_ignored (ERROR_TRAP) == 0;
644 invert = (command->flags & CMD_INVERT_RETURN) != 0;
645 ignore_return = (command->flags & CMD_IGNORE_RETURN) != 0;
646
495aee44 647 exec_result = wait_for (paren_pid);
726f6388
JA
648
649 /* If we have to, invert the return value. */
650 if (invert)
495aee44 651 exec_result = ((exec_result == EXECUTION_SUCCESS)
bb70624e
JA
652 ? EXECUTION_FAILURE
653 : EXECUTION_SUCCESS);
bb70624e 654
495aee44 655 last_command_exit_value = exec_result;
17345e5a
JA
656 if (user_subshell && was_error_trap && ignore_return == 0 && invert == 0 && exec_result != EXECUTION_SUCCESS)
657 {
89a92869
CR
658 save_line_number = line_number;
659 line_number = line_number_for_err_trap;
17345e5a 660 run_error_trap ();
89a92869 661 line_number = save_line_number;
17345e5a
JA
662 }
663
664 if (user_subshell && ignore_return == 0 && invert == 0 && exit_immediately_on_error && exec_result != EXECUTION_SUCCESS)
665 {
17345e5a
JA
666 run_pending_traps ();
667 jump_to_top_level (ERREXIT);
668 }
669
495aee44 670 return (last_command_exit_value);
726f6388
JA
671 }
672 else
673 {
674 DESCRIBE_PID (paren_pid);
675
676 run_pending_traps ();
677
ac50fbac
CR
678 /* Posix 2013 2.9.3.1: "the exit status of an asynchronous list
679 shall be zero." */
680 last_command_exit_value = 0;
726f6388
JA
681 return (EXECUTION_SUCCESS);
682 }
683 }
684 }
685
d166f048
JA
686#if defined (COMMAND_TIMING)
687 if (command->flags & CMD_TIME_PIPELINE)
688 {
689 if (asynchronous)
690 {
691 command->flags |= CMD_FORCE_SUBSHELL;
692 exec_result = execute_command_internal (command, 1, pipe_in, pipe_out, fds_to_close);
693 }
694 else
695 {
696 exec_result = time_command (command, asynchronous, pipe_in, pipe_out, fds_to_close);
b80f6443 697#if 0
d166f048 698 if (running_trap == 0)
b80f6443 699#endif
d166f048
JA
700 currently_executing_command = (COMMAND *)NULL;
701 }
702 return (exec_result);
703 }
704#endif /* COMMAND_TIMING */
705
706 if (shell_control_structure (command->type) && command->redirects)
707 stdin_redir = stdin_redirects (command->redirects);
708
ac50fbac
CR
709#if defined (PROCESS_SUBSTITUTION)
710 if (variable_context != 0)
711 {
712 ofifo = num_fifos ();
713 ofifo_list = copy_fifo_list ((int *)&osize);
714 saved_fifo = 1;
715 }
716 else
717 saved_fifo = 0;
718#endif
719
726f6388
JA
720 /* Handle WHILE FOR CASE etc. with redirections. (Also '&' input
721 redirection.) */
b80f6443 722 if (do_redirections (command->redirects, RX_ACTIVE|RX_UNDOABLE) != 0)
726f6388
JA
723 {
724 cleanup_redirects (redirection_undo_list);
725 redirection_undo_list = (REDIRECT *)NULL;
726 dispose_exec_redirects ();
ac50fbac
CR
727#if defined (PROCESS_SUBSTITUTION)
728 if (saved_fifo)
729 free ((void *)ofifo_list);
730#endif
f1be666c 731 return (last_command_exit_value = EXECUTION_FAILURE);
726f6388
JA
732 }
733
734 if (redirection_undo_list)
735 {
495aee44 736 /* XXX - why copy here? */
726f6388
JA
737 my_undo_list = (REDIRECT *)copy_redirects (redirection_undo_list);
738 dispose_redirects (redirection_undo_list);
739 redirection_undo_list = (REDIRECT *)NULL;
740 }
741 else
742 my_undo_list = (REDIRECT *)NULL;
743
744 if (exec_redirection_undo_list)
745 {
495aee44 746 /* XXX - why copy here? */
726f6388
JA
747 exec_undo_list = (REDIRECT *)copy_redirects (exec_redirection_undo_list);
748 dispose_redirects (exec_redirection_undo_list);
749 exec_redirection_undo_list = (REDIRECT *)NULL;
750 }
751 else
752 exec_undo_list = (REDIRECT *)NULL;
753
754 if (my_undo_list || exec_undo_list)
755 begin_unwind_frame ("loop_redirections");
756
757 if (my_undo_list)
758 add_unwind_protect ((Function *)cleanup_redirects, my_undo_list);
759
760 if (exec_undo_list)
761 add_unwind_protect ((Function *)dispose_redirects, exec_undo_list);
762
763 ignore_return = (command->flags & CMD_IGNORE_RETURN) != 0;
764
765 QUIT;
766
767 switch (command->type)
768 {
ccc6cda3
JA
769 case cm_simple:
770 {
b80f6443
JA
771 save_line_number = line_number;
772 /* We can't rely on variables retaining their values across a
ccc6cda3
JA
773 call to execute_simple_command if a longjmp occurs as the
774 result of a `return' builtin. This is true for sure with gcc. */
95732b49
JA
775#if defined (RECYCLES_PIDS)
776 last_made_pid = NO_PID;
777#endif
ccc6cda3 778 last_pid = last_made_pid;
f73dda09 779 was_error_trap = signal_is_trapped (ERROR_TRAP) && signal_is_ignored (ERROR_TRAP) == 0;
ccc6cda3
JA
780
781 if (ignore_return && command->value.Simple)
782 command->value.Simple->flags |= CMD_IGNORE_RETURN;
d166f048
JA
783 if (command->flags & CMD_STDIN_REDIR)
784 command->value.Simple->flags |= CMD_STDIN_REDIR;
b80f6443 785
0628567a 786 line_number_for_err_trap = line_number = command->value.Simple->line;
ccc6cda3
JA
787 exec_result =
788 execute_simple_command (command->value.Simple, pipe_in, pipe_out,
789 asynchronous, fds_to_close);
b80f6443 790 line_number = save_line_number;
ccc6cda3
JA
791
792 /* The temporary environment should be used for only the simple
793 command immediately following its definition. */
794 dispose_used_env_vars ();
795
796#if (defined (ultrix) && defined (mips)) || defined (C_ALLOCA)
797 /* Reclaim memory allocated with alloca () on machines which
798 may be using the alloca emulation code. */
799 (void) alloca (0);
800#endif /* (ultrix && mips) || C_ALLOCA */
801
802 /* If we forked to do the command, then we must wait_for ()
803 the child. */
804
805 /* XXX - this is something to watch out for if there are problems
ac50fbac
CR
806 when the shell is compiled without job control. Don't worry about
807 whether or not last_made_pid == last_pid; already_making_children
808 tells us whether or not there are unwaited-for children to wait
809 for and reap. */
810 if (already_making_children && pipe_out == NO_PIPE)
ccc6cda3
JA
811 {
812 stop_pipeline (asynchronous, (COMMAND *)NULL);
813
814 if (asynchronous)
815 {
816 DESCRIBE_PID (last_made_pid);
817 }
818 else
819#if !defined (JOB_CONTROL)
820 /* Do not wait for asynchronous processes started from
821 startup files. */
822 if (last_made_pid != last_asynchronous_pid)
823#endif
824 /* When executing a shell function that executes other
825 commands, this causes the last simple command in
b80f6443
JA
826 the function to be waited for twice. This also causes
827 subshells forked to execute builtin commands (e.g., in
828 pipelines) to be waited for twice. */
ccc6cda3
JA
829 exec_result = wait_for (last_made_pid);
830 }
831 }
832
17345e5a
JA
833 /* 2009/02/13 -- pipeline failure is processed elsewhere. This handles
834 only the failure of a simple command. */
3185942a 835 if (was_error_trap && ignore_return == 0 && invert == 0 && pipe_in == NO_PIPE && pipe_out == NO_PIPE && exec_result != EXECUTION_SUCCESS)
f73dda09
JA
836 {
837 last_command_exit_value = exec_result;
89a92869 838 line_number = line_number_for_err_trap;
f73dda09 839 run_error_trap ();
89a92869 840 line_number = save_line_number;
f73dda09
JA
841 }
842
ccc6cda3 843 if (ignore_return == 0 && invert == 0 &&
cce855bc 844 ((posixly_correct && interactive == 0 && special_builtin_failed) ||
3185942a 845 (exit_immediately_on_error && pipe_in == NO_PIPE && pipe_out == NO_PIPE && exec_result != EXECUTION_SUCCESS)))
ccc6cda3
JA
846 {
847 last_command_exit_value = exec_result;
848 run_pending_traps ();
b80f6443 849 jump_to_top_level (ERREXIT);
ccc6cda3
JA
850 }
851
852 break;
853
726f6388
JA
854 case cm_for:
855 if (ignore_return)
856 command->value.For->flags |= CMD_IGNORE_RETURN;
857 exec_result = execute_for_command (command->value.For);
858 break;
859
bb70624e
JA
860#if defined (ARITH_FOR_COMMAND)
861 case cm_arith_for:
862 if (ignore_return)
863 command->value.ArithFor->flags |= CMD_IGNORE_RETURN;
864 exec_result = execute_arith_for_command (command->value.ArithFor);
865 break;
866#endif
867
726f6388
JA
868#if defined (SELECT_COMMAND)
869 case cm_select:
870 if (ignore_return)
871 command->value.Select->flags |= CMD_IGNORE_RETURN;
872 exec_result = execute_select_command (command->value.Select);
873 break;
874#endif
875
876 case cm_case:
877 if (ignore_return)
878 command->value.Case->flags |= CMD_IGNORE_RETURN;
879 exec_result = execute_case_command (command->value.Case);
880 break;
881
882 case cm_while:
883 if (ignore_return)
884 command->value.While->flags |= CMD_IGNORE_RETURN;
885 exec_result = execute_while_command (command->value.While);
886 break;
887
888 case cm_until:
889 if (ignore_return)
890 command->value.While->flags |= CMD_IGNORE_RETURN;
891 exec_result = execute_until_command (command->value.While);
892 break;
893
894 case cm_if:
895 if (ignore_return)
896 command->value.If->flags |= CMD_IGNORE_RETURN;
897 exec_result = execute_if_command (command->value.If);
898 break;
899
900 case cm_group:
901
902 /* This code can be executed from either of two paths: an explicit
903 '{}' command, or via a function call. If we are executed via a
904 function call, we have already taken care of the function being
905 executed in the background (down there in execute_simple_command ()),
906 and this command should *not* be marked as asynchronous. If we
907 are executing a regular '{}' group command, and asynchronous == 1,
908 we must want to execute the whole command in the background, so we
909 need a subshell, and we want the stuff executed in that subshell
910 (this group command) to be executed in the foreground of that
911 subshell (i.e. there will not be *another* subshell forked).
912
913 What we do is to force a subshell if asynchronous, and then call
914 execute_command_internal again with asynchronous still set to 1,
915 but with the original group command, so the printed command will
916 look right.
917
918 The code above that handles forking off subshells will note that
919 both subshell and async are on, and turn off async in the child
920 after forking the subshell (but leave async set in the parent, so
921 the normal call to describe_pid is made). This turning off
922 async is *crucial*; if it is not done, this will fall into an
923 infinite loop of executions through this spot in subshell after
924 subshell until the process limit is exhausted. */
925
926 if (asynchronous)
927 {
928 command->flags |= CMD_FORCE_SUBSHELL;
929 exec_result =
930 execute_command_internal (command, 1, pipe_in, pipe_out,
931 fds_to_close);
932 }
933 else
934 {
935 if (ignore_return && command->value.Group->command)
936 command->value.Group->command->flags |= CMD_IGNORE_RETURN;
937 exec_result =
938 execute_command_internal (command->value.Group->command,
939 asynchronous, pipe_in, pipe_out,
940 fds_to_close);
941 }
942 break;
943
ccc6cda3
JA
944 case cm_connection:
945 exec_result = execute_connection (command, asynchronous,
946 pipe_in, pipe_out, fds_to_close);
947 break;
726f6388 948
cce855bc
JA
949#if defined (DPAREN_ARITHMETIC)
950 case cm_arith:
0001803f 951 was_error_trap = signal_is_trapped (ERROR_TRAP) && signal_is_ignored (ERROR_TRAP) == 0;
cce855bc
JA
952 if (ignore_return)
953 command->value.Arith->flags |= CMD_IGNORE_RETURN;
0001803f 954 line_number_for_err_trap = save_line_number = line_number;
cce855bc 955 exec_result = execute_arith_command (command->value.Arith);
0001803f
CR
956 line_number = save_line_number;
957
958 if (was_error_trap && ignore_return == 0 && invert == 0 && exec_result != EXECUTION_SUCCESS)
959 {
960 last_command_exit_value = exec_result;
961 save_line_number = line_number;
962 line_number = line_number_for_err_trap;
963 run_error_trap ();
964 line_number = save_line_number;
965 }
966
967 if (ignore_return == 0 && invert == 0 && exit_immediately_on_error && exec_result != EXECUTION_SUCCESS)
968 {
969 last_command_exit_value = exec_result;
970 run_pending_traps ();
971 jump_to_top_level (ERREXIT);
972 }
973
cce855bc
JA
974 break;
975#endif
976
977#if defined (COND_COMMAND)
978 case cm_cond:
0001803f 979 was_error_trap = signal_is_trapped (ERROR_TRAP) && signal_is_ignored (ERROR_TRAP) == 0;
cce855bc
JA
980 if (ignore_return)
981 command->value.Cond->flags |= CMD_IGNORE_RETURN;
0001803f
CR
982
983 line_number_for_err_trap = save_line_number = line_number;
cce855bc 984 exec_result = execute_cond_command (command->value.Cond);
b80f6443 985 line_number = save_line_number;
0001803f
CR
986
987 if (was_error_trap && ignore_return == 0 && invert == 0 && exec_result != EXECUTION_SUCCESS)
988 {
989 last_command_exit_value = exec_result;
990 save_line_number = line_number;
991 line_number = line_number_for_err_trap;
992 run_error_trap ();
993 line_number = save_line_number;
994 }
995
996 if (ignore_return == 0 && invert == 0 && exit_immediately_on_error && exec_result != EXECUTION_SUCCESS)
997 {
998 last_command_exit_value = exec_result;
999 run_pending_traps ();
1000 jump_to_top_level (ERREXIT);
1001 }
1002
cce855bc
JA
1003 break;
1004#endif
1005
ccc6cda3
JA
1006 case cm_function_def:
1007 exec_result = execute_intern_function (command->value.Function_def->name,
ac50fbac 1008 command->value.Function_def);
ccc6cda3 1009 break;
726f6388 1010
ccc6cda3 1011 default:
b72432fd 1012 command_error ("execute_command", CMDERR_BADTYPE, command->type, 0);
ccc6cda3 1013 }
726f6388 1014
ccc6cda3
JA
1015 if (my_undo_list)
1016 {
b80f6443 1017 do_redirections (my_undo_list, RX_ACTIVE);
ccc6cda3
JA
1018 dispose_redirects (my_undo_list);
1019 }
726f6388 1020
ccc6cda3
JA
1021 if (exec_undo_list)
1022 dispose_redirects (exec_undo_list);
726f6388 1023
ccc6cda3
JA
1024 if (my_undo_list || exec_undo_list)
1025 discard_unwind_frame ("loop_redirections");
726f6388 1026
ac50fbac
CR
1027#if defined (PROCESS_SUBSTITUTION)
1028 if (saved_fifo)
1029 {
1030 nfifo = num_fifos ();
1031 if (nfifo > ofifo)
1032 close_new_fifos ((char *)ofifo_list, osize);
1033 free ((void *)ofifo_list);
1034 }
1035#endif
1036
ccc6cda3
JA
1037 /* Invert the return value if we have to */
1038 if (invert)
1039 exec_result = (exec_result == EXECUTION_SUCCESS)
1040 ? EXECUTION_FAILURE
1041 : EXECUTION_SUCCESS;
726f6388 1042
0628567a
JA
1043#if defined (DPAREN_ARITHMETIC) || defined (COND_COMMAND)
1044 /* This is where we set PIPESTATUS from the exit status of the appropriate
1045 compound commands (the ones that look enough like simple commands to
1046 cause confusion). We might be able to optimize by not doing this if
1047 subshell_environment != 0. */
1048 switch (command->type)
1049 {
1050# if defined (DPAREN_ARITHMETIC)
1051 case cm_arith:
1052# endif
1053# if defined (COND_COMMAND)
1054 case cm_cond:
1055# endif
1056 set_pipestatus_from_exit (exec_result);
1057 break;
1058 }
1059#endif
1060
ccc6cda3
JA
1061 last_command_exit_value = exec_result;
1062 run_pending_traps ();
b80f6443 1063#if 0
ccc6cda3 1064 if (running_trap == 0)
b80f6443 1065#endif
ccc6cda3 1066 currently_executing_command = (COMMAND *)NULL;
ac50fbac 1067
ccc6cda3
JA
1068 return (last_command_exit_value);
1069}
726f6388 1070
ccc6cda3 1071#if defined (COMMAND_TIMING)
726f6388 1072
bb70624e 1073#if defined (HAVE_GETRUSAGE) && defined (HAVE_GETTIMEOFDAY)
f73dda09
JA
1074extern struct timeval *difftimeval __P((struct timeval *, struct timeval *, struct timeval *));
1075extern struct timeval *addtimeval __P((struct timeval *, struct timeval *, struct timeval *));
1076extern int timeval_to_cpu __P((struct timeval *, struct timeval *, struct timeval *));
bb70624e 1077#endif
726f6388 1078
ccc6cda3
JA
1079#define POSIX_TIMEFORMAT "real %2R\nuser %2U\nsys %2S"
1080#define BASH_TIMEFORMAT "\nreal\t%3lR\nuser\t%3lU\nsys\t%3lS"
726f6388 1081
3185942a 1082static const int precs[] = { 0, 100, 10, 1 };
726f6388 1083
ccc6cda3
JA
1084/* Expand one `%'-prefixed escape sequence from a time format string. */
1085static int
1086mkfmt (buf, prec, lng, sec, sec_fraction)
1087 char *buf;
1088 int prec, lng;
f73dda09 1089 time_t sec;
ccc6cda3
JA
1090 int sec_fraction;
1091{
f73dda09
JA
1092 time_t min;
1093 char abuf[INT_STRLEN_BOUND(time_t) + 1];
ccc6cda3 1094 int ind, aind;
726f6388 1095
ccc6cda3 1096 ind = 0;
f73dda09 1097 abuf[sizeof(abuf) - 1] = '\0';
726f6388 1098
ccc6cda3
JA
1099 /* If LNG is non-zero, we want to decompose SEC into minutes and seconds. */
1100 if (lng)
1101 {
1102 min = sec / 60;
1103 sec %= 60;
f73dda09 1104 aind = sizeof(abuf) - 2;
ccc6cda3
JA
1105 do
1106 abuf[aind--] = (min % 10) + '0';
1107 while (min /= 10);
1108 aind++;
1109 while (abuf[aind])
cce855bc 1110 buf[ind++] = abuf[aind++];
ccc6cda3
JA
1111 buf[ind++] = 'm';
1112 }
726f6388 1113
ccc6cda3 1114 /* Now add the seconds. */
f73dda09 1115 aind = sizeof (abuf) - 2;
ccc6cda3
JA
1116 do
1117 abuf[aind--] = (sec % 10) + '0';
1118 while (sec /= 10);
1119 aind++;
1120 while (abuf[aind])
1121 buf[ind++] = abuf[aind++];
1122
1123 /* We want to add a decimal point and PREC places after it if PREC is
1124 nonzero. PREC is not greater than 3. SEC_FRACTION is between 0
1125 and 999. */
1126 if (prec != 0)
1127 {
1128 buf[ind++] = '.';
1129 for (aind = 1; aind <= prec; aind++)
1130 {
1131 buf[ind++] = (sec_fraction / precs[aind]) + '0';
1132 sec_fraction %= precs[aind];
1133 }
1134 }
726f6388 1135
ccc6cda3
JA
1136 if (lng)
1137 buf[ind++] = 's';
1138 buf[ind] = '\0';
726f6388 1139
ccc6cda3
JA
1140 return (ind);
1141}
726f6388 1142
ccc6cda3
JA
1143/* Interpret the format string FORMAT, interpolating the following escape
1144 sequences:
7117c2d2 1145 %[prec][l][RUS]
ccc6cda3
JA
1146
1147 where the optional `prec' is a precision, meaning the number of
1148 characters after the decimal point, the optional `l' means to format
1149 using minutes and seconds (MMmNN[.FF]s), like the `times' builtin',
1150 and the last character is one of
1151
7117c2d2
JA
1152 R number of seconds of `real' time
1153 U number of seconds of `user' time
1154 S number of seconds of `system' time
ccc6cda3
JA
1155
1156 An occurrence of `%%' in the format string is translated to a `%'. The
1157 result is printed to FP, a pointer to a FILE. The other variables are
1158 the seconds and thousandths of a second of real, user, and system time,
1159 resectively. */
1160static void
1161print_formatted_time (fp, format, rs, rsf, us, usf, ss, ssf, cpu)
1162 FILE *fp;
1163 char *format;
f73dda09
JA
1164 time_t rs;
1165 int rsf;
1166 time_t us;
1167 int usf;
1168 time_t ss;
1169 int ssf, cpu;
ccc6cda3
JA
1170{
1171 int prec, lng, len;
f73dda09
JA
1172 char *str, *s, ts[INT_STRLEN_BOUND (time_t) + sizeof ("mSS.FFFF")];
1173 time_t sum;
e8ce775d 1174 int sum_frac;
ccc6cda3 1175 int sindex, ssize;
726f6388 1176
ccc6cda3
JA
1177 len = strlen (format);
1178 ssize = (len + 64) - (len % 64);
f73dda09 1179 str = (char *)xmalloc (ssize);
ccc6cda3
JA
1180 sindex = 0;
1181
1182 for (s = format; *s; s++)
1183 {
1184 if (*s != '%' || s[1] == '\0')
cce855bc
JA
1185 {
1186 RESIZE_MALLOCED_BUFFER (str, sindex, 1, ssize, 64);
1187 str[sindex++] = *s;
1188 }
ccc6cda3 1189 else if (s[1] == '%')
cce855bc
JA
1190 {
1191 s++;
1192 RESIZE_MALLOCED_BUFFER (str, sindex, 1, ssize, 64);
1193 str[sindex++] = *s;
1194 }
ccc6cda3
JA
1195 else if (s[1] == 'P')
1196 {
1197 s++;
17345e5a
JA
1198#if 0
1199 /* clamp CPU usage at 100% */
ccc6cda3
JA
1200 if (cpu > 10000)
1201 cpu = 10000;
17345e5a 1202#endif
ccc6cda3
JA
1203 sum = cpu / 100;
1204 sum_frac = (cpu % 100) * 10;
1205 len = mkfmt (ts, 2, 0, sum, sum_frac);
1206 RESIZE_MALLOCED_BUFFER (str, sindex, len, ssize, 64);
1207 strcpy (str + sindex, ts);
1208 sindex += len;
1209 }
1210 else
1211 {
1212 prec = 3; /* default is three places past the decimal point. */
1213 lng = 0; /* default is to not use minutes or append `s' */
1214 s++;
f73dda09 1215 if (DIGIT (*s)) /* `precision' */
726f6388 1216 {
ccc6cda3
JA
1217 prec = *s++ - '0';
1218 if (prec > 3) prec = 3;
726f6388 1219 }
ccc6cda3
JA
1220 if (*s == 'l') /* `length extender' */
1221 {
1222 lng = 1;
1223 s++;
1224 }
1225 if (*s == 'R' || *s == 'E')
1226 len = mkfmt (ts, prec, lng, rs, rsf);
1227 else if (*s == 'U')
1228 len = mkfmt (ts, prec, lng, us, usf);
1229 else if (*s == 'S')
1230 len = mkfmt (ts, prec, lng, ss, ssf);
1231 else
1232 {
b80f6443 1233 internal_error (_("TIMEFORMAT: `%c': invalid format character"), *s);
ccc6cda3
JA
1234 free (str);
1235 return;
1236 }
1237 RESIZE_MALLOCED_BUFFER (str, sindex, len, ssize, 64);
1238 strcpy (str + sindex, ts);
1239 sindex += len;
1240 }
1241 }
1242
1243 str[sindex] = '\0';
1244 fprintf (fp, "%s\n", str);
1245 fflush (fp);
1246
1247 free (str);
1248}
1249
1250static int
1251time_command (command, asynchronous, pipe_in, pipe_out, fds_to_close)
1252 COMMAND *command;
1253 int asynchronous, pipe_in, pipe_out;
1254 struct fd_bitmap *fds_to_close;
1255{
495aee44 1256 int rv, posix_time, old_flags, nullcmd;
f73dda09 1257 time_t rs, us, ss;
ccc6cda3
JA
1258 int rsf, usf, ssf;
1259 int cpu;
1260 char *time_format;
1261
1262#if defined (HAVE_GETRUSAGE) && defined (HAVE_GETTIMEOFDAY)
1263 struct timeval real, user, sys;
1264 struct timeval before, after;
b80f6443
JA
1265# if defined (HAVE_STRUCT_TIMEZONE)
1266 struct timezone dtz; /* posix doesn't define this */
1267# endif
ccc6cda3
JA
1268 struct rusage selfb, selfa, kidsb, kidsa; /* a = after, b = before */
1269#else
1270# if defined (HAVE_TIMES)
1271 clock_t tbefore, tafter, real, user, sys;
1272 struct tms before, after;
1273# endif
1274#endif
1275
1276#if defined (HAVE_GETRUSAGE) && defined (HAVE_GETTIMEOFDAY)
b80f6443 1277# if defined (HAVE_STRUCT_TIMEZONE)
ccc6cda3 1278 gettimeofday (&before, &dtz);
b80f6443
JA
1279# else
1280 gettimeofday (&before, (void *)NULL);
1281# endif /* !HAVE_STRUCT_TIMEZONE */
ccc6cda3
JA
1282 getrusage (RUSAGE_SELF, &selfb);
1283 getrusage (RUSAGE_CHILDREN, &kidsb);
1284#else
1285# if defined (HAVE_TIMES)
1286 tbefore = times (&before);
1287# endif
1288#endif
1289
ac50fbac 1290 posix_time = command && (command->flags & CMD_TIME_POSIX);
ccc6cda3 1291
495aee44
CR
1292 nullcmd = (command == 0) || (command->type == cm_simple && command->value.Simple->words == 0 && command->value.Simple->redirects == 0);
1293 if (posixly_correct && nullcmd)
1294 {
1295#if defined (HAVE_GETRUSAGE)
1296 selfb.ru_utime.tv_sec = kidsb.ru_utime.tv_sec = selfb.ru_stime.tv_sec = kidsb.ru_stime.tv_sec = 0;
1297 selfb.ru_utime.tv_usec = kidsb.ru_utime.tv_usec = selfb.ru_stime.tv_usec = kidsb.ru_stime.tv_usec = 0;
1298 before.tv_sec = shell_start_time;
1299 before.tv_usec = 0;
1300#else
1301 before.tms_utime = before.tms_stime = before.tms_cutime = before.tms_cstime = 0;
1302 tbefore = shell_start_time;
1303#endif
1304 }
1305
d166f048 1306 old_flags = command->flags;
ccc6cda3
JA
1307 command->flags &= ~(CMD_TIME_PIPELINE|CMD_TIME_POSIX);
1308 rv = execute_command_internal (command, asynchronous, pipe_in, pipe_out, fds_to_close);
d166f048 1309 command->flags = old_flags;
ccc6cda3 1310
f73dda09 1311 rs = us = ss = 0;
cce855bc
JA
1312 rsf = usf = ssf = cpu = 0;
1313
ccc6cda3 1314#if defined (HAVE_GETRUSAGE) && defined (HAVE_GETTIMEOFDAY)
b80f6443 1315# if defined (HAVE_STRUCT_TIMEZONE)
ccc6cda3 1316 gettimeofday (&after, &dtz);
b80f6443
JA
1317# else
1318 gettimeofday (&after, (void *)NULL);
1319# endif /* !HAVE_STRUCT_TIMEZONE */
ccc6cda3
JA
1320 getrusage (RUSAGE_SELF, &selfa);
1321 getrusage (RUSAGE_CHILDREN, &kidsa);
1322
1323 difftimeval (&real, &before, &after);
1324 timeval_to_secs (&real, &rs, &rsf);
1325
1326 addtimeval (&user, difftimeval(&after, &selfb.ru_utime, &selfa.ru_utime),
1327 difftimeval(&before, &kidsb.ru_utime, &kidsa.ru_utime));
1328 timeval_to_secs (&user, &us, &usf);
1329
1330 addtimeval (&sys, difftimeval(&after, &selfb.ru_stime, &selfa.ru_stime),
1331 difftimeval(&before, &kidsb.ru_stime, &kidsa.ru_stime));
1332 timeval_to_secs (&sys, &ss, &ssf);
1333
1334 cpu = timeval_to_cpu (&real, &user, &sys);
1335#else
1336# if defined (HAVE_TIMES)
1337 tafter = times (&after);
1338
1339 real = tafter - tbefore;
1340 clock_t_to_secs (real, &rs, &rsf);
1341
1342 user = (after.tms_utime - before.tms_utime) + (after.tms_cutime - before.tms_cutime);
1343 clock_t_to_secs (user, &us, &usf);
1344
1345 sys = (after.tms_stime - before.tms_stime) + (after.tms_cstime - before.tms_cstime);
1346 clock_t_to_secs (sys, &ss, &ssf);
1347
d166f048 1348 cpu = (real == 0) ? 0 : ((user + sys) * 10000) / real;
ccc6cda3
JA
1349
1350# else
f73dda09 1351 rs = us = ss = 0;
ccc6cda3
JA
1352 rsf = usf = ssf = cpu = 0;
1353# endif
1354#endif
1355
1356 if (posix_time)
1357 time_format = POSIX_TIMEFORMAT;
1358 else if ((time_format = get_string_value ("TIMEFORMAT")) == 0)
495aee44
CR
1359 {
1360 if (posixly_correct && nullcmd)
1361 time_format = "user\t%2lU\nsys\t%2lS";
1362 else
1363 time_format = BASH_TIMEFORMAT;
1364 }
ccc6cda3
JA
1365 if (time_format && *time_format)
1366 print_formatted_time (stderr, time_format, rs, rsf, us, usf, ss, ssf, cpu);
1367
1368 return rv;
1369}
1370#endif /* COMMAND_TIMING */
1371
bb70624e 1372/* Execute a command that's supposed to be in a subshell. This must be
28ef6c31
JA
1373 called after make_child and we must be running in the child process.
1374 The caller will return or exit() immediately with the value this returns. */
bb70624e
JA
1375static int
1376execute_in_subshell (command, asynchronous, pipe_in, pipe_out, fds_to_close)
1377 COMMAND *command;
1378 int asynchronous;
1379 int pipe_in, pipe_out;
1380 struct fd_bitmap *fds_to_close;
1381{
28ef6c31 1382 int user_subshell, return_code, function_value, should_redir_stdin, invert;
3185942a 1383 int ois, user_coproc;
0001803f 1384 int result;
495aee44 1385 volatile COMMAND *tcom;
bb70624e 1386
f73dda09 1387 USE_VAR(user_subshell);
3185942a 1388 USE_VAR(user_coproc);
f73dda09
JA
1389 USE_VAR(invert);
1390 USE_VAR(tcom);
1391 USE_VAR(asynchronous);
1392
b80f6443 1393 subshell_level++;
bb70624e
JA
1394 should_redir_stdin = (asynchronous && (command->flags & CMD_STDIN_REDIR) &&
1395 pipe_in == NO_PIPE &&
1396 stdin_redirects (command->redirects) == 0);
1397
28ef6c31 1398 invert = (command->flags & CMD_INVERT_RETURN) != 0;
bb70624e 1399 user_subshell = command->type == cm_subshell || ((command->flags & CMD_WANT_SUBSHELL) != 0);
3185942a 1400 user_coproc = command->type == cm_coproc;
28ef6c31 1401
bb70624e
JA
1402 command->flags &= ~(CMD_FORCE_SUBSHELL | CMD_WANT_SUBSHELL | CMD_INVERT_RETURN);
1403
1404 /* If a command is asynchronous in a subshell (like ( foo ) & or
1405 the special case of an asynchronous GROUP command where the
1406 the subshell bit is turned on down in case cm_group: below),
1407 turn off `asynchronous', so that two subshells aren't spawned.
0628567a
JA
1408 XXX - asynchronous used to be set to 0 in this block, but that
1409 means that setup_async_signals was never run. Now it's set to
1410 0 after subshell_environment is set appropriately and setup_async_signals
1411 is run.
bb70624e
JA
1412
1413 This seems semantically correct to me. For example,
1414 ( foo ) & seems to say ``do the command `foo' in a subshell
1415 environment, but don't wait for that subshell to finish'',
1416 and "{ foo ; bar ; } &" seems to me to be like functions or
1417 builtins in the background, which executed in a subshell
1418 environment. I just don't see the need to fork two subshells. */
1419
1420 /* Don't fork again, we are already in a subshell. A `doubly
1421 async' shell is not interactive, however. */
1422 if (asynchronous)
1423 {
1424#if defined (JOB_CONTROL)
1425 /* If a construct like ( exec xxx yyy ) & is given while job
1426 control is active, we want to prevent exec from putting the
1427 subshell back into the original process group, carefully
1428 undoing all the work we just did in make_child. */
1429 original_pgrp = -1;
1430#endif /* JOB_CONTROL */
28ef6c31 1431 ois = interactive_shell;
bb70624e 1432 interactive_shell = 0;
28ef6c31
JA
1433 /* This test is to prevent alias expansion by interactive shells that
1434 run `(command) &' but to allow scripts that have enabled alias
1435 expansion with `shopt -s expand_alias' to continue to expand
1436 aliases. */
1437 if (ois != interactive_shell)
1438 expand_aliases = 0;
bb70624e
JA
1439 }
1440
1441 /* Subshells are neither login nor interactive. */
1442 login_shell = interactive = 0;
1443
0628567a
JA
1444 if (user_subshell)
1445 subshell_environment = SUBSHELL_PAREN;
1446 else
1447 {
1448 subshell_environment = 0; /* XXX */
1449 if (asynchronous)
1450 subshell_environment |= SUBSHELL_ASYNC;
1451 if (pipe_in != NO_PIPE || pipe_out != NO_PIPE)
1452 subshell_environment |= SUBSHELL_PIPE;
3185942a
JA
1453 if (user_coproc)
1454 subshell_environment |= SUBSHELL_COPROC;
0628567a 1455 }
bb70624e
JA
1456
1457 reset_terminating_signals (); /* in sig.c */
1458 /* Cancel traps, in trap.c. */
495aee44
CR
1459 /* Reset the signal handlers in the child, but don't free the
1460 trap strings. Set a flag noting that we have to free the
1461 trap strings if we run trap to change a signal disposition. */
1462 reset_signal_handlers ();
1463 subshell_environment |= SUBSHELL_RESETTRAP;
0628567a
JA
1464
1465 /* Make sure restore_original_signals doesn't undo the work done by
1466 make_child to ensure that asynchronous children are immune to SIGINT
1467 and SIGQUIT. Turn off asynchronous to make sure more subshells are
1468 not spawned. */
bb70624e 1469 if (asynchronous)
0628567a
JA
1470 {
1471 setup_async_signals ();
1472 asynchronous = 0;
1473 }
bb70624e
JA
1474
1475#if defined (JOB_CONTROL)
1476 set_sigchld_handler ();
1477#endif /* JOB_CONTROL */
1478
1479 set_sigint_handler ();
1480
1481#if defined (JOB_CONTROL)
1482 /* Delete all traces that there were any jobs running. This is
1483 only for subshells. */
1484 without_job_control ();
1485#endif /* JOB_CONTROL */
1486
1487 if (fds_to_close)
1488 close_fd_bitmap (fds_to_close);
1489
1490 do_piping (pipe_in, pipe_out);
1491
3185942a
JA
1492#if defined (COPROCESS_SUPPORT)
1493 coproc_closeall ();
1494#endif
1495
bb70624e
JA
1496 /* If this is a user subshell, set a flag if stdin was redirected.
1497 This is used later to decide whether to redirect fd 0 to
1498 /dev/null for async commands in the subshell. This adds more
1499 sh compatibility, but I'm not sure it's the right thing to do. */
1500 if (user_subshell)
1501 {
1502 stdin_redir = stdin_redirects (command->redirects);
ac50fbac 1503 restore_default_signal (EXIT_TRAP);
bb70624e
JA
1504 }
1505
1506 /* If this is an asynchronous command (command &), we want to
1507 redirect the standard input from /dev/null in the absence of
1508 any specific redirection involving stdin. */
1509 if (should_redir_stdin && stdin_redir == 0)
1510 async_redirect_stdin ();
1511
1512 /* Do redirections, then dispose of them before recursive call. */
1513 if (command->redirects)
1514 {
b80f6443 1515 if (do_redirections (command->redirects, RX_ACTIVE) != 0)
28ef6c31 1516 exit (invert ? EXECUTION_SUCCESS : EXECUTION_FAILURE);
bb70624e
JA
1517
1518 dispose_redirects (command->redirects);
1519 command->redirects = (REDIRECT *)NULL;
1520 }
1521
3185942a
JA
1522 if (command->type == cm_subshell)
1523 tcom = command->value.Subshell->command;
1524 else if (user_coproc)
1525 tcom = command->value.Coproc->command;
1526 else
1527 tcom = command;
bb70624e 1528
95732b49
JA
1529 if (command->flags & CMD_TIME_PIPELINE)
1530 tcom->flags |= CMD_TIME_PIPELINE;
1531 if (command->flags & CMD_TIME_POSIX)
1532 tcom->flags |= CMD_TIME_POSIX;
1533
f73dda09
JA
1534 /* Make sure the subshell inherits any CMD_IGNORE_RETURN flag. */
1535 if ((command->flags & CMD_IGNORE_RETURN) && tcom != command)
1536 tcom->flags |= CMD_IGNORE_RETURN;
1537
bb70624e
JA
1538 /* If this is a simple command, tell execute_disk_command that it
1539 might be able to get away without forking and simply exec.
1540 This means things like ( sleep 10 ) will only cause one fork.
28ef6c31
JA
1541 If we're timing the command or inverting its return value, however,
1542 we cannot do this optimization. */
3185942a 1543 if ((user_subshell || user_coproc) && (tcom->type == cm_simple || tcom->type == cm_subshell) &&
28ef6c31
JA
1544 ((tcom->flags & CMD_TIME_PIPELINE) == 0) &&
1545 ((tcom->flags & CMD_INVERT_RETURN) == 0))
bb70624e
JA
1546 {
1547 tcom->flags |= CMD_NO_FORK;
1548 if (tcom->type == cm_simple)
1549 tcom->value.Simple->flags |= CMD_NO_FORK;
1550 }
1551
28ef6c31
JA
1552 invert = (tcom->flags & CMD_INVERT_RETURN) != 0;
1553 tcom->flags &= ~CMD_INVERT_RETURN;
1554
ac50fbac 1555 result = setjmp_nosigs (top_level);
0001803f 1556
bb70624e
JA
1557 /* If we're inside a function while executing this subshell, we
1558 need to handle a possible `return'. */
1559 function_value = 0;
1560 if (return_catch_flag)
ac50fbac 1561 function_value = setjmp_nosigs (return_catch);
bb70624e 1562
0001803f
CR
1563 /* If we're going to exit the shell, we don't want to invert the return
1564 status. */
1565 if (result == EXITPROG)
1566 invert = 0, return_code = last_command_exit_value;
1567 else if (result)
1568 return_code = EXECUTION_FAILURE;
1569 else if (function_value)
bb70624e
JA
1570 return_code = return_catch_value;
1571 else
ac50fbac 1572 return_code = execute_command_internal ((COMMAND *)tcom, asynchronous, NO_PIPE, NO_PIPE, fds_to_close);
bb70624e 1573
28ef6c31
JA
1574 /* If we are asked to, invert the return value. */
1575 if (invert)
1576 return_code = (return_code == EXECUTION_SUCCESS) ? EXECUTION_FAILURE
1577 : EXECUTION_SUCCESS;
1578
bb70624e
JA
1579 /* If we were explicitly placed in a subshell with (), we need
1580 to do the `shell cleanup' things, such as running traps[0]. */
1581 if (user_subshell && signal_is_trapped (0))
1582 {
1583 last_command_exit_value = return_code;
1584 return_code = run_exit_trap ();
1585 }
1586
b80f6443 1587 subshell_level--;
bb70624e
JA
1588 return (return_code);
1589 /* NOTREACHED */
1590}
1591
3185942a
JA
1592#if defined (COPROCESS_SUPPORT)
1593#define COPROC_MAX 16
1594
1595typedef struct cpelement
1596 {
1597 struct cpelement *next;
1598 struct coproc *coproc;
1599 }
1600cpelement_t;
1601
1602typedef struct cplist
1603 {
1604 struct cpelement *head;
1605 struct cpelement *tail;
1606 int ncoproc;
ac50fbac 1607 int lock;
3185942a
JA
1608 }
1609cplist_t;
1610
1611static struct cpelement *cpe_alloc __P((struct coproc *));
1612static void cpe_dispose __P((struct cpelement *));
1613static struct cpelement *cpl_add __P((struct coproc *));
1614static struct cpelement *cpl_delete __P((pid_t));
17345e5a 1615static void cpl_reap __P((void));
3185942a 1616static void cpl_flush __P((void));
ac50fbac 1617static void cpl_closeall __P((void));
3185942a 1618static struct cpelement *cpl_search __P((pid_t));
ac50fbac 1619static struct cpelement *cpl_searchbyname __P((const char *));
3185942a
JA
1620static void cpl_prune __P((void));
1621
ac50fbac
CR
1622static void coproc_free __P((struct coproc *));
1623
1624/* Will go away when there is fully-implemented support for multiple coprocs. */
1625Coproc sh_coproc = { 0, NO_PID, -1, -1, 0, 0, 0, 0, 0 };
3185942a
JA
1626
1627cplist_t coproc_list = {0, 0, 0};
1628
17345e5a 1629/* Functions to manage the list of coprocs */
3185942a
JA
1630
1631static struct cpelement *
1632cpe_alloc (cp)
1633 Coproc *cp;
1634{
1635 struct cpelement *cpe;
1636
1637 cpe = (struct cpelement *)xmalloc (sizeof (struct cpelement));
1638 cpe->coproc = cp;
1639 cpe->next = (struct cpelement *)0;
1640 return cpe;
1641}
1642
1643static void
1644cpe_dispose (cpe)
1645 struct cpelement *cpe;
1646{
1647 free (cpe);
1648}
1649
1650static struct cpelement *
1651cpl_add (cp)
1652 Coproc *cp;
1653{
1654 struct cpelement *cpe;
1655
1656 cpe = cpe_alloc (cp);
1657
1658 if (coproc_list.head == 0)
1659 {
1660 coproc_list.head = coproc_list.tail = cpe;
1661 coproc_list.ncoproc = 0; /* just to make sure */
1662 }
1663 else
1664 {
1665 coproc_list.tail->next = cpe;
1666 coproc_list.tail = cpe;
1667 }
1668 coproc_list.ncoproc++;
1669
1670 return cpe;
1671}
1672
1673static struct cpelement *
1674cpl_delete (pid)
1675 pid_t pid;
1676{
1677 struct cpelement *prev, *p;
1678
1679 for (prev = p = coproc_list.head; p; prev = p, p = p->next)
1680 if (p->coproc->c_pid == pid)
1681 {
1682 prev->next = p->next; /* remove from list */
1683 break;
1684 }
1685
1686 if (p == 0)
1687 return 0; /* not found */
1688
1689#if defined (DEBUG)
1690 itrace("cpl_delete: deleting %d", pid);
1691#endif
1692
1693 /* Housekeeping in the border cases. */
1694 if (p == coproc_list.head)
1695 coproc_list.head = coproc_list.head->next;
1696 else if (p == coproc_list.tail)
1697 coproc_list.tail = prev;
1698
1699 coproc_list.ncoproc--;
1700 if (coproc_list.ncoproc == 0)
1701 coproc_list.head = coproc_list.tail = 0;
1702 else if (coproc_list.ncoproc == 1)
1703 coproc_list.tail = coproc_list.head; /* just to make sure */
1704
1705 return (p);
1706}
1707
17345e5a
JA
1708static void
1709cpl_reap ()
1710{
ac50fbac 1711 struct cpelement *p, *next, *nh, *nt;
17345e5a 1712
ac50fbac
CR
1713 /* Build a new list by removing dead coprocs and fix up the coproc_list
1714 pointers when done. */
1715 nh = nt = next = (struct cpelement *)0;
1716 for (p = coproc_list.head; p; p = next)
1717 {
1718 next = p->next;
1719 if (p->coproc->c_flags & COPROC_DEAD)
1720 {
1721 coproc_list.ncoproc--; /* keep running count, fix up pointers later */
17345e5a
JA
1722
1723#if defined (DEBUG)
ac50fbac 1724 itrace("cpl_reap: deleting %d", p->coproc->c_pid);
17345e5a
JA
1725#endif
1726
ac50fbac
CR
1727 coproc_dispose (p->coproc);
1728 cpe_dispose (p);
1729 }
1730 else if (nh == 0)
1731 nh = nt = p;
1732 else
1733 {
1734 nt->next = p;
1735 nt = nt->next;
1736 }
1737 }
1738
1739 if (coproc_list.ncoproc == 0)
1740 coproc_list.head = coproc_list.tail = 0;
1741 else
1742 {
1743 if (nt)
1744 nt->next = 0;
1745 coproc_list.head = nh;
1746 coproc_list.tail = nt;
1747 if (coproc_list.ncoproc == 1)
1748 coproc_list.tail = coproc_list.head; /* just to make sure */
1749 }
17345e5a
JA
1750}
1751
3185942a
JA
1752/* Clear out the list of saved statuses */
1753static void
1754cpl_flush ()
1755{
1756 struct cpelement *cpe, *p;
1757
1758 for (cpe = coproc_list.head; cpe; )
1759 {
1760 p = cpe;
1761 cpe = cpe->next;
1762
1763 coproc_dispose (p->coproc);
1764 cpe_dispose (p);
1765 }
1766
1767 coproc_list.head = coproc_list.tail = 0;
1768 coproc_list.ncoproc = 0;
1769}
1770
ac50fbac
CR
1771static void
1772cpl_closeall ()
1773{
1774 struct cpelement *cpe;
1775
1776 for (cpe = coproc_list.head; cpe; cpe = cpe->next)
1777 coproc_close (cpe->coproc);
1778}
1779
1780static void
1781cpl_fdchk (fd)
1782 int fd;
1783{
1784 struct cpelement *cpe;
1785
1786 for (cpe = coproc_list.head; cpe; cpe = cpe->next)
1787 coproc_checkfd (cpe->coproc, fd);
1788}
1789
3185942a
JA
1790/* Search for PID in the list of coprocs; return the cpelement struct if
1791 found. If not found, return NULL. */
1792static struct cpelement *
1793cpl_search (pid)
1794 pid_t pid;
1795{
ac50fbac 1796 struct cpelement *cpe;
3185942a 1797
ac50fbac
CR
1798 for (cpe = coproc_list.head ; cpe; cpe = cpe->next)
1799 if (cpe->coproc->c_pid == pid)
1800 return cpe;
3185942a
JA
1801 return (struct cpelement *)NULL;
1802}
1803
1804/* Search for the coproc named NAME in the list of coprocs; return the
1805 cpelement struct if found. If not found, return NULL. */
1806static struct cpelement *
1807cpl_searchbyname (name)
ac50fbac 1808 const char *name;
3185942a
JA
1809{
1810 struct cpelement *cp;
1811
1812 for (cp = coproc_list.head ; cp; cp = cp->next)
1813 if (STREQ (cp->coproc->c_name, name))
1814 return cp;
1815 return (struct cpelement *)NULL;
1816}
1817
1818#if 0
1819static void
1820cpl_prune ()
1821{
1822 struct cpelement *cp;
1823
1824 while (coproc_list.head && coproc_list.ncoproc > COPROC_MAX)
1825 {
1826 cp = coproc_list.head;
1827 coproc_list.head = coproc_list.head->next;
1828 coproc_dispose (cp->coproc);
1829 cpe_dispose (cp);
1830 coproc_list.ncoproc--;
1831 }
1832}
1833#endif
1834
1835/* These currently use a single global "shell coproc" but are written in a
1836 way to not preclude additional coprocs later (using the list management
1837 package above). */
1838
1839struct coproc *
1840getcoprocbypid (pid)
1841 pid_t pid;
1842{
ac50fbac
CR
1843#if MULTIPLE_COPROCS
1844 struct cpelement *p;
1845
1846 p = cpl_search (pid);
1847 return (p ? p->coproc : 0);
1848#else
3185942a 1849 return (pid == sh_coproc.c_pid ? &sh_coproc : 0);
ac50fbac 1850#endif
3185942a
JA
1851}
1852
1853struct coproc *
1854getcoprocbyname (name)
1855 const char *name;
1856{
ac50fbac
CR
1857#if MULTIPLE_COPROCS
1858 struct cpelement *p;
1859
1860 p = cpl_searchbyname (name);
1861 return (p ? p->coproc : 0);
1862#else
3185942a 1863 return ((sh_coproc.c_name && STREQ (sh_coproc.c_name, name)) ? &sh_coproc : 0);
ac50fbac 1864#endif
3185942a
JA
1865}
1866
1867void
1868coproc_init (cp)
1869 struct coproc *cp;
1870{
1871 cp->c_name = 0;
1872 cp->c_pid = NO_PID;
1873 cp->c_rfd = cp->c_wfd = -1;
1874 cp->c_rsave = cp->c_wsave = -1;
ac50fbac 1875 cp->c_flags = cp->c_status = cp->c_lock = 0;
3185942a
JA
1876}
1877
1878struct coproc *
1879coproc_alloc (name, pid)
1880 char *name;
1881 pid_t pid;
1882{
1883 struct coproc *cp;
1884
ac50fbac
CR
1885#if MULTIPLE_COPROCS
1886 cp = (struct coproc *)xmalloc (sizeof (struct coproc));
1887#else
1888 cp = &sh_coproc;
1889#endif
3185942a 1890 coproc_init (cp);
ac50fbac 1891 cp->c_lock = 2;
3185942a 1892
3185942a 1893 cp->c_pid = pid;
ac50fbac
CR
1894 cp->c_name = savestring (name);
1895#if MULTIPLE_COPROCS
1896 cpl_add (cp);
1897#endif
1898 cp->c_lock = 0;
3185942a
JA
1899 return (cp);
1900}
1901
ac50fbac
CR
1902static void
1903coproc_free (cp)
1904 struct coproc *cp;
1905{
1906 free (cp);
1907}
1908
3185942a
JA
1909void
1910coproc_dispose (cp)
1911 struct coproc *cp;
1912{
ac50fbac
CR
1913 sigset_t set, oset;
1914
3185942a
JA
1915 if (cp == 0)
1916 return;
1917
ac50fbac
CR
1918 BLOCK_SIGNAL (SIGCHLD, set, oset);
1919 cp->c_lock = 3;
3185942a
JA
1920 coproc_unsetvars (cp);
1921 FREE (cp->c_name);
1922 coproc_close (cp);
ac50fbac
CR
1923#if MULTIPLE_COPROCS
1924 coproc_free (cp);
1925#else
3185942a 1926 coproc_init (cp);
ac50fbac
CR
1927 cp->c_lock = 0;
1928#endif
1929 UNBLOCK_SIGNAL (oset);
3185942a
JA
1930}
1931
ac50fbac 1932/* Placeholder for now. Will require changes for multiple coprocs */
3185942a
JA
1933void
1934coproc_flush ()
1935{
ac50fbac
CR
1936#if MULTIPLE_COPROCS
1937 cpl_flush ();
1938#else
3185942a 1939 coproc_dispose (&sh_coproc);
ac50fbac 1940#endif
3185942a
JA
1941}
1942
1943void
1944coproc_close (cp)
1945 struct coproc *cp;
1946{
1947 if (cp->c_rfd >= 0)
1948 {
1949 close (cp->c_rfd);
1950 cp->c_rfd = -1;
1951 }
1952 if (cp->c_wfd >= 0)
1953 {
1954 close (cp->c_wfd);
1955 cp->c_wfd = -1;
1956 }
1957 cp->c_rsave = cp->c_wsave = -1;
1958}
1959
1960void
1961coproc_closeall ()
1962{
ac50fbac
CR
1963#if MULTIPLE_COPROCS
1964 cpl_closeall ();
1965#else
1966 coproc_close (&sh_coproc); /* XXX - will require changes for multiple coprocs */
1967#endif
3185942a
JA
1968}
1969
17345e5a
JA
1970void
1971coproc_reap ()
1972{
ac50fbac
CR
1973#if MULTIPLE_COPROCS
1974 cpl_reap ();
1975#else
17345e5a
JA
1976 struct coproc *cp;
1977
ac50fbac 1978 cp = &sh_coproc; /* XXX - will require changes for multiple coprocs */
17345e5a
JA
1979 if (cp && (cp->c_flags & COPROC_DEAD))
1980 coproc_dispose (cp);
ac50fbac 1981#endif
17345e5a
JA
1982}
1983
3185942a
JA
1984void
1985coproc_rclose (cp, fd)
1986 struct coproc *cp;
1987 int fd;
1988{
1989 if (cp->c_rfd >= 0 && cp->c_rfd == fd)
1990 {
1991 close (cp->c_rfd);
1992 cp->c_rfd = -1;
1993 }
1994}
1995
1996void
1997coproc_wclose (cp, fd)
1998 struct coproc *cp;
1999 int fd;
2000{
2001 if (cp->c_wfd >= 0 && cp->c_wfd == fd)
2002 {
2003 close (cp->c_wfd);
2004 cp->c_wfd = -1;
2005 }
2006}
2007
2008void
2009coproc_checkfd (cp, fd)
2010 struct coproc *cp;
2011 int fd;
2012{
2013 int update;
2014
2015 update = 0;
2016 if (cp->c_rfd >= 0 && cp->c_rfd == fd)
2017 update = cp->c_rfd = -1;
2018 if (cp->c_wfd >= 0 && cp->c_wfd == fd)
2019 update = cp->c_wfd = -1;
2020 if (update)
2021 coproc_setvars (cp);
2022}
2023
2024void
2025coproc_fdchk (fd)
2026 int fd;
2027{
ac50fbac
CR
2028#if MULTIPLE_COPROCS
2029 cpl_fdchk (fd);
2030#else
3185942a 2031 coproc_checkfd (&sh_coproc, fd);
ac50fbac 2032#endif
3185942a
JA
2033}
2034
2035void
2036coproc_fdclose (cp, fd)
2037 struct coproc *cp;
2038 int fd;
2039{
2040 coproc_rclose (cp, fd);
2041 coproc_wclose (cp, fd);
2042 coproc_setvars (cp);
2043}
2044
2045void
2046coproc_fdsave (cp)
2047 struct coproc *cp;
2048{
2049 cp->c_rsave = cp->c_rfd;
2050 cp->c_wsave = cp->c_wfd;
2051}
2052
2053void
2054coproc_fdrestore (cp)
2055 struct coproc *cp;
2056{
2057 cp->c_rfd = cp->c_rsave;
2058 cp->c_wfd = cp->c_wsave;
2059}
17345e5a 2060
3185942a 2061void
17345e5a 2062coproc_pidchk (pid, status)
3185942a
JA
2063 pid_t pid;
2064{
2065 struct coproc *cp;
2066
ac50fbac
CR
2067#if MULTIPLE_COPROCS
2068 struct cpelement *cpe;
2069
2070 cpe = cpl_delete (pid);
2071 cp = cpe ? cpe->coproc : 0;
2072#else
3185942a 2073 cp = getcoprocbypid (pid);
3185942a
JA
2074#endif
2075 if (cp)
17345e5a 2076 {
ac50fbac 2077 cp->c_lock = 4;
17345e5a
JA
2078 cp->c_status = status;
2079 cp->c_flags |= COPROC_DEAD;
2080 cp->c_flags &= ~COPROC_RUNNING;
ac50fbac
CR
2081 /* Don't dispose the coproc or unset the COPROC_XXX variables because
2082 this is executed in a signal handler context. Wait until coproc_reap
2083 takes care of it. */
2084 cp->c_lock = 0;
17345e5a 2085 }
3185942a
JA
2086}
2087
2088void
2089coproc_setvars (cp)
2090 struct coproc *cp;
2091{
2092 SHELL_VAR *v;
2093 char *namevar, *t;
2094 int l;
2095#if defined (ARRAY_VARS)
2096 arrayind_t ind;
2097#endif
2098
2099 if (cp->c_name == 0)
2100 return;
2101
2102 l = strlen (cp->c_name);
2103 namevar = xmalloc (l + 16);
2104
2105#if defined (ARRAY_VARS)
2106 v = find_variable (cp->c_name);
2107 if (v == 0)
2108 v = make_new_array_variable (cp->c_name);
2109 if (array_p (v) == 0)
2110 v = convert_var_to_array (v);
2111
2112 t = itos (cp->c_rfd);
2113 ind = 0;
2114 v = bind_array_variable (cp->c_name, ind, t, 0);
2115 free (t);
2116
2117 t = itos (cp->c_wfd);
2118 ind = 1;
2119 bind_array_variable (cp->c_name, ind, t, 0);
2120 free (t);
2121#else
2122 sprintf (namevar, "%s_READ", cp->c_name);
2123 t = itos (cp->c_rfd);
2124 bind_variable (namevar, t, 0);
2125 free (t);
2126 sprintf (namevar, "%s_WRITE", cp->c_name);
2127 t = itos (cp->c_wfd);
2128 bind_variable (namevar, t, 0);
2129 free (t);
2130#endif
2131
2132 sprintf (namevar, "%s_PID", cp->c_name);
2133 t = itos (cp->c_pid);
2134 bind_variable (namevar, t, 0);
2135 free (t);
2136
2137 free (namevar);
2138}
2139
2140void
2141coproc_unsetvars (cp)
2142 struct coproc *cp;
2143{
2144 int l;
2145 char *namevar;
2146
2147 if (cp->c_name == 0)
2148 return;
2149
2150 l = strlen (cp->c_name);
2151 namevar = xmalloc (l + 16);
2152
2153 sprintf (namevar, "%s_PID", cp->c_name);
2154 unbind_variable (namevar);
2155
2156#if defined (ARRAY_VARS)
2157 unbind_variable (cp->c_name);
2158#else
2159 sprintf (namevar, "%s_READ", cp->c_name);
2160 unbind_variable (namevar);
2161 sprintf (namevar, "%s_WRITE", cp->c_name);
2162 unbind_variable (namevar);
2163#endif
2164
2165 free (namevar);
2166}
2167
2168static int
2169execute_coproc (command, pipe_in, pipe_out, fds_to_close)
2170 COMMAND *command;
2171 int pipe_in, pipe_out;
2172 struct fd_bitmap *fds_to_close;
2173{
ac50fbac 2174 int rpipe[2], wpipe[2], estat, invert;
3185942a
JA
2175 pid_t coproc_pid;
2176 Coproc *cp;
2177 char *tcmd;
ac50fbac 2178 sigset_t set, oset;
3185942a 2179
ac50fbac
CR
2180 /* XXX -- can be removed after changes to handle multiple coprocs */
2181#if !MULTIPLE_COPROCS
3185942a 2182 if (sh_coproc.c_pid != NO_PID)
ac50fbac 2183 internal_warning ("execute_coproc: coproc [%d:%s] still exists", sh_coproc.c_pid, sh_coproc.c_name);
3185942a 2184 coproc_init (&sh_coproc);
ac50fbac 2185#endif
3185942a 2186
ac50fbac 2187 invert = (command->flags & CMD_INVERT_RETURN) != 0;
3185942a
JA
2188 command_string_index = 0;
2189 tcmd = make_command_string (command);
2190
2191 sh_openpipe ((int *)&rpipe); /* 0 = parent read, 1 = child write */
2192 sh_openpipe ((int *)&wpipe); /* 0 = child read, 1 = parent write */
2193
ac50fbac
CR
2194 BLOCK_SIGNAL (SIGCHLD, set, oset);
2195
3185942a 2196 coproc_pid = make_child (savestring (tcmd), 1);
ac50fbac 2197
3185942a
JA
2198 if (coproc_pid == 0)
2199 {
2200 close (rpipe[0]);
2201 close (wpipe[1]);
2202
ac50fbac 2203 UNBLOCK_SIGNAL (oset);
0001803f
CR
2204 estat = execute_in_subshell (command, 1, wpipe[0], rpipe[1], fds_to_close);
2205
2206 fflush (stdout);
2207 fflush (stderr);
2208
2209 exit (estat);
3185942a
JA
2210 }
2211
2212 close (rpipe[1]);
2213 close (wpipe[0]);
2214
ac50fbac 2215 /* XXX - possibly run Coproc->name through word expansion? */
3185942a
JA
2216 cp = coproc_alloc (command->value.Coproc->name, coproc_pid);
2217 cp->c_rfd = rpipe[0];
2218 cp->c_wfd = wpipe[1];
2219
2220 SET_CLOSE_ON_EXEC (cp->c_rfd);
2221 SET_CLOSE_ON_EXEC (cp->c_wfd);
2222
2223 coproc_setvars (cp);
2224
ac50fbac
CR
2225 UNBLOCK_SIGNAL (oset);
2226
3185942a
JA
2227#if 0
2228 itrace ("execute_coproc: [%d] %s", coproc_pid, the_printed_command);
2229#endif
2230
2231 close_pipes (pipe_in, pipe_out);
2232#if defined (PROCESS_SUBSTITUTION) && defined (HAVE_DEV_FD)
2233 unlink_fifo_list ();
2234#endif
2235 stop_pipeline (1, (COMMAND *)NULL);
2236 DESCRIBE_PID (coproc_pid);
2237 run_pending_traps ();
2238
ac50fbac 2239 return (invert ? EXECUTION_FAILURE : EXECUTION_SUCCESS);
3185942a
JA
2240}
2241#endif
2242
495aee44
CR
2243static void
2244restore_stdin (s)
2245 int s;
2246{
2247 dup2 (s, 0);
2248 close (s);
2249}
2250
2251/* Catch-all cleanup function for lastpipe code for unwind-protects */
2252static void
2253lastpipe_cleanup (s)
2254 int s;
2255{
2256 unfreeze_jobs_list ();
2257}
2258
ccc6cda3
JA
2259static int
2260execute_pipeline (command, asynchronous, pipe_in, pipe_out, fds_to_close)
2261 COMMAND *command;
2262 int asynchronous, pipe_in, pipe_out;
2263 struct fd_bitmap *fds_to_close;
2264{
2265 int prev, fildes[2], new_bitmap_size, dummyfd, ignore_return, exec_result;
495aee44 2266 int lstdin, lastpipe_flag, lastpipe_jid;
ccc6cda3
JA
2267 COMMAND *cmd;
2268 struct fd_bitmap *fd_bitmap;
495aee44 2269 pid_t lastpid;
726f6388
JA
2270
2271#if defined (JOB_CONTROL)
ccc6cda3
JA
2272 sigset_t set, oset;
2273 BLOCK_CHILD (set, oset);
726f6388
JA
2274#endif /* JOB_CONTROL */
2275
ccc6cda3 2276 ignore_return = (command->flags & CMD_IGNORE_RETURN) != 0;
726f6388 2277
ccc6cda3
JA
2278 prev = pipe_in;
2279 cmd = command;
2280
2281 while (cmd && cmd->type == cm_connection &&
2282 cmd->value.Connection && cmd->value.Connection->connector == '|')
2283 {
2284 /* Make a pipeline between the two commands. */
2285 if (pipe (fildes) < 0)
2286 {
3185942a 2287 sys_error (_("pipe error"));
726f6388 2288#if defined (JOB_CONTROL)
ccc6cda3
JA
2289 terminate_current_pipeline ();
2290 kill_current_pipeline ();
95732b49 2291 UNBLOCK_CHILD (oset);
726f6388 2292#endif /* JOB_CONTROL */
ccc6cda3
JA
2293 last_command_exit_value = EXECUTION_FAILURE;
2294 /* The unwind-protects installed below will take care
2295 of closing all of the open file descriptors. */
2296 throw_to_top_level ();
2297 return (EXECUTION_FAILURE); /* XXX */
2298 }
2299
2300 /* Here is a problem: with the new file close-on-exec
2301 code, the read end of the pipe (fildes[0]) stays open
2302 in the first process, so that process will never get a
2303 SIGPIPE. There is no way to signal the first process
2304 that it should close fildes[0] after forking, so it
2305 remains open. No SIGPIPE is ever sent because there
2306 is still a file descriptor open for reading connected
2307 to the pipe. We take care of that here. This passes
2308 around a bitmap of file descriptors that must be
2309 closed after making a child process in execute_simple_command. */
2310
2311 /* We need fd_bitmap to be at least as big as fildes[0].
2312 If fildes[0] is less than fds_to_close->size, then
2313 use fds_to_close->size. */
2314 new_bitmap_size = (fildes[0] < fds_to_close->size)
2315 ? fds_to_close->size
2316 : fildes[0] + 8;
2317
2318 fd_bitmap = new_fd_bitmap (new_bitmap_size);
2319
2320 /* Now copy the old information into the new bitmap. */
2321 xbcopy ((char *)fds_to_close->bitmap, (char *)fd_bitmap->bitmap, fds_to_close->size);
2322
2323 /* And mark the pipe file descriptors to be closed. */
2324 fd_bitmap->bitmap[fildes[0]] = 1;
2325
2326 /* In case there are pipe or out-of-processes errors, we
cce855bc 2327 want all these file descriptors to be closed when
ccc6cda3
JA
2328 unwind-protects are run, and the storage used for the
2329 bitmaps freed up. */
2330 begin_unwind_frame ("pipe-file-descriptors");
2331 add_unwind_protect (dispose_fd_bitmap, fd_bitmap);
2332 add_unwind_protect (close_fd_bitmap, fd_bitmap);
2333 if (prev >= 0)
2334 add_unwind_protect (close, prev);
2335 dummyfd = fildes[1];
2336 add_unwind_protect (close, dummyfd);
726f6388
JA
2337
2338#if defined (JOB_CONTROL)
f73dda09 2339 add_unwind_protect (restore_signal_mask, &oset);
726f6388
JA
2340#endif /* JOB_CONTROL */
2341
ccc6cda3
JA
2342 if (ignore_return && cmd->value.Connection->first)
2343 cmd->value.Connection->first->flags |= CMD_IGNORE_RETURN;
2344 execute_command_internal (cmd->value.Connection->first, asynchronous,
2345 prev, fildes[1], fd_bitmap);
2346
2347 if (prev >= 0)
2348 close (prev);
2349
2350 prev = fildes[0];
2351 close (fildes[1]);
2352
2353 dispose_fd_bitmap (fd_bitmap);
2354 discard_unwind_frame ("pipe-file-descriptors");
726f6388 2355
ccc6cda3
JA
2356 cmd = cmd->value.Connection->second;
2357 }
2358
495aee44
CR
2359 lastpid = last_made_pid;
2360
ccc6cda3
JA
2361 /* Now execute the rightmost command in the pipeline. */
2362 if (ignore_return && cmd)
2363 cmd->flags |= CMD_IGNORE_RETURN;
495aee44
CR
2364
2365 lastpipe_flag = 0;
ac50fbac 2366
495aee44
CR
2367 begin_unwind_frame ("lastpipe-exec");
2368 lstdin = -1;
2369 /* If the `lastpipe' option is set with shopt, and job control is not
2370 enabled, execute the last element of non-async pipelines in the
2371 current shell environment. */
2372 if (lastpipe_opt && job_control == 0 && asynchronous == 0 && pipe_out == NO_PIPE && prev > 0)
2373 {
72347977 2374 lstdin = move_to_high_fd (0, 1, -1);
495aee44
CR
2375 if (lstdin > 0)
2376 {
2377 do_piping (prev, pipe_out);
2378 prev = NO_PIPE;
2379 add_unwind_protect (restore_stdin, lstdin);
2380 lastpipe_flag = 1;
2381 freeze_jobs_list ();
2382 lastpipe_jid = stop_pipeline (0, (COMMAND *)NULL); /* XXX */
2383 add_unwind_protect (lastpipe_cleanup, lastpipe_jid);
2384 }
335de49a
CR
2385 if (cmd)
2386 cmd->flags |= CMD_LASTPIPE;
495aee44
CR
2387 }
2388 if (prev >= 0)
2389 add_unwind_protect (close, prev);
2390
ccc6cda3 2391 exec_result = execute_command_internal (cmd, asynchronous, prev, pipe_out, fds_to_close);
726f6388 2392
495aee44
CR
2393 if (lstdin > 0)
2394 restore_stdin (lstdin);
2395
ccc6cda3
JA
2396 if (prev >= 0)
2397 close (prev);
726f6388
JA
2398
2399#if defined (JOB_CONTROL)
ccc6cda3 2400 UNBLOCK_CHILD (oset);
726f6388 2401#endif
726f6388 2402
3185942a 2403 QUIT;
495aee44
CR
2404
2405 if (lastpipe_flag)
2406 {
2407#if defined (JOB_CONTROL)
2408 append_process (savestring (the_printed_command), dollar_dollar_pid, exec_result, lastpipe_jid);
2409#endif
2410 lstdin = wait_for (lastpid);
2411#if defined (JOB_CONTROL)
df2c55de
CR
2412 /* If wait_for removes the job from the jobs table, use result of last
2413 command as pipeline's exit status as usual. The jobs list can get
2414 frozen and unfrozen at inconvenient times if there are multiple pipelines
2415 running simultaneously. */
2416 if (INVALID_JOB (lastpipe_jid) == 0)
2417 exec_result = job_exit_status (lastpipe_jid);
2418 else if (pipefail_opt)
2419 exec_result = exec_result | lstdin; /* XXX */
2420 /* otherwise we use exec_result */
2421
495aee44
CR
2422#endif
2423 unfreeze_jobs_list ();
2424 }
2425
2426 discard_unwind_frame ("lastpipe-exec");
2427
ccc6cda3
JA
2428 return (exec_result);
2429}
2430
2431static int
2432execute_connection (command, asynchronous, pipe_in, pipe_out, fds_to_close)
2433 COMMAND *command;
2434 int asynchronous, pipe_in, pipe_out;
2435 struct fd_bitmap *fds_to_close;
2436{
ccc6cda3 2437 COMMAND *tc, *second;
17345e5a 2438 int ignore_return, exec_result, was_error_trap, invert;
89a92869 2439 volatile int save_line_number;
ccc6cda3
JA
2440
2441 ignore_return = (command->flags & CMD_IGNORE_RETURN) != 0;
2442
2443 switch (command->value.Connection->connector)
2444 {
2445 /* Do the first command asynchronously. */
2446 case '&':
2447 tc = command->value.Connection->first;
2448 if (tc == 0)
2449 return (EXECUTION_SUCCESS);
2450
d166f048 2451 if (ignore_return)
ccc6cda3 2452 tc->flags |= CMD_IGNORE_RETURN;
d166f048 2453 tc->flags |= CMD_AMPERSAND;
ccc6cda3 2454
f73dda09
JA
2455 /* If this shell was compiled without job control support,
2456 if we are currently in a subshell via `( xxx )', or if job
2457 control is not active then the standard input for an
2458 asynchronous command is forced to /dev/null. */
ccc6cda3 2459#if defined (JOB_CONTROL)
f73dda09 2460 if ((subshell_environment || !job_control) && !stdin_redir)
ccc6cda3
JA
2461#else
2462 if (!stdin_redir)
2463#endif /* JOB_CONTROL */
7117c2d2 2464 tc->flags |= CMD_STDIN_REDIR;
ccc6cda3
JA
2465
2466 exec_result = execute_command_internal (tc, 1, pipe_in, pipe_out, fds_to_close);
3185942a 2467 QUIT;
ccc6cda3 2468
d166f048 2469 if (tc->flags & CMD_STDIN_REDIR)
7117c2d2 2470 tc->flags &= ~CMD_STDIN_REDIR;
726f6388 2471
ccc6cda3
JA
2472 second = command->value.Connection->second;
2473 if (second)
2474 {
2475 if (ignore_return)
2476 second->flags |= CMD_IGNORE_RETURN;
726f6388 2477
ccc6cda3
JA
2478 exec_result = execute_command_internal (second, asynchronous, pipe_in, pipe_out, fds_to_close);
2479 }
726f6388 2480
ccc6cda3 2481 break;
726f6388 2482
ccc6cda3
JA
2483 /* Just call execute command on both sides. */
2484 case ';':
2485 if (ignore_return)
2486 {
2487 if (command->value.Connection->first)
2488 command->value.Connection->first->flags |= CMD_IGNORE_RETURN;
2489 if (command->value.Connection->second)
2490 command->value.Connection->second->flags |= CMD_IGNORE_RETURN;
726f6388 2491 }
3185942a 2492 executing_list++;
ccc6cda3
JA
2493 QUIT;
2494 execute_command (command->value.Connection->first);
2495 QUIT;
2496 exec_result = execute_command_internal (command->value.Connection->second,
2497 asynchronous, pipe_in, pipe_out,
2498 fds_to_close);
3185942a 2499 executing_list--;
726f6388
JA
2500 break;
2501
ccc6cda3 2502 case '|':
17345e5a
JA
2503 was_error_trap = signal_is_trapped (ERROR_TRAP) && signal_is_ignored (ERROR_TRAP) == 0;
2504 invert = (command->flags & CMD_INVERT_RETURN) != 0;
2505 ignore_return = (command->flags & CMD_IGNORE_RETURN) != 0;
2506
89a92869 2507 line_number_for_err_trap = line_number;
ccc6cda3 2508 exec_result = execute_pipeline (command, asynchronous, pipe_in, pipe_out, fds_to_close);
17345e5a
JA
2509
2510 if (was_error_trap && ignore_return == 0 && invert == 0 && exec_result != EXECUTION_SUCCESS)
2511 {
2512 last_command_exit_value = exec_result;
89a92869
CR
2513 save_line_number = line_number;
2514 line_number = line_number_for_err_trap;
17345e5a 2515 run_error_trap ();
89a92869 2516 line_number = save_line_number;
17345e5a
JA
2517 }
2518
2519 if (ignore_return == 0 && invert == 0 && exit_immediately_on_error && exec_result != EXECUTION_SUCCESS)
2520 {
2521 last_command_exit_value = exec_result;
2522 run_pending_traps ();
2523 jump_to_top_level (ERREXIT);
2524 }
2525
726f6388
JA
2526 break;
2527
ccc6cda3
JA
2528 case AND_AND:
2529 case OR_OR:
2530 if (asynchronous)
2531 {
2532 /* If we have something like `a && b &' or `a || b &', run the
2533 && or || stuff in a subshell. Force a subshell and just call
2534 execute_command_internal again. Leave asynchronous on
2535 so that we get a report from the parent shell about the
2536 background job. */
2537 command->flags |= CMD_FORCE_SUBSHELL;
2538 exec_result = execute_command_internal (command, 1, pipe_in, pipe_out, fds_to_close);
2539 break;
2540 }
726f6388 2541
ccc6cda3
JA
2542 /* Execute the first command. If the result of that is successful
2543 and the connector is AND_AND, or the result is not successful
2544 and the connector is OR_OR, then execute the second command,
2545 otherwise return. */
726f6388 2546
3185942a 2547 executing_list++;
ccc6cda3
JA
2548 if (command->value.Connection->first)
2549 command->value.Connection->first->flags |= CMD_IGNORE_RETURN;
726f6388 2550
ccc6cda3
JA
2551 exec_result = execute_command (command->value.Connection->first);
2552 QUIT;
2553 if (((command->value.Connection->connector == AND_AND) &&
2554 (exec_result == EXECUTION_SUCCESS)) ||
2555 ((command->value.Connection->connector == OR_OR) &&
2556 (exec_result != EXECUTION_SUCCESS)))
2557 {
2558 if (ignore_return && command->value.Connection->second)
2559 command->value.Connection->second->flags |= CMD_IGNORE_RETURN;
726f6388 2560
ccc6cda3
JA
2561 exec_result = execute_command (command->value.Connection->second);
2562 }
3185942a 2563 executing_list--;
ccc6cda3
JA
2564 break;
2565
2566 default:
b72432fd 2567 command_error ("execute_connection", CMDERR_BADCONN, command->value.Connection->connector, 0);
ccc6cda3
JA
2568 jump_to_top_level (DISCARD);
2569 exec_result = EXECUTION_FAILURE;
726f6388
JA
2570 }
2571
ccc6cda3 2572 return exec_result;
726f6388
JA
2573}
2574
bb70624e
JA
2575#define REAP() \
2576 do \
2577 { \
2578 if (!interactive_shell) \
2579 reap_dead_jobs (); \
2580 } \
2581 while (0)
726f6388
JA
2582
2583/* Execute a FOR command. The syntax is: FOR word_desc IN word_list;
2584 DO command; DONE */
ccc6cda3 2585static int
726f6388
JA
2586execute_for_command (for_command)
2587 FOR_COM *for_command;
2588{
726f6388 2589 register WORD_LIST *releaser, *list;
ccc6cda3 2590 SHELL_VAR *v;
726f6388 2591 char *identifier;
b80f6443 2592 int retval, save_line_number;
ccc6cda3 2593#if 0
726f6388 2594 SHELL_VAR *old_value = (SHELL_VAR *)NULL; /* Remember the old value of x. */
ccc6cda3 2595#endif
726f6388 2596
b80f6443 2597 save_line_number = line_number;
726f6388 2598 if (check_identifier (for_command->name, 1) == 0)
ccc6cda3
JA
2599 {
2600 if (posixly_correct && interactive_shell == 0)
cce855bc 2601 {
3185942a 2602 last_command_exit_value = EX_BADUSAGE;
b80f6443 2603 jump_to_top_level (ERREXIT);
cce855bc 2604 }
ccc6cda3
JA
2605 return (EXECUTION_FAILURE);
2606 }
726f6388
JA
2607
2608 loop_level++;
2609 identifier = for_command->name->word;
2610
ac50fbac 2611 line_number = for_command->line; /* for expansion error messages */
726f6388
JA
2612 list = releaser = expand_words_no_vars (for_command->map_list);
2613
2614 begin_unwind_frame ("for");
2615 add_unwind_protect (dispose_words, releaser);
2616
ccc6cda3 2617#if 0
726f6388
JA
2618 if (lexical_scoping)
2619 {
2620 old_value = copy_variable (find_variable (identifier));
2621 if (old_value)
2622 add_unwind_protect (dispose_variable, old_value);
2623 }
ccc6cda3 2624#endif
726f6388
JA
2625
2626 if (for_command->flags & CMD_IGNORE_RETURN)
2627 for_command->action->flags |= CMD_IGNORE_RETURN;
2628
ccc6cda3 2629 for (retval = EXECUTION_SUCCESS; list; list = list->next)
726f6388
JA
2630 {
2631 QUIT;
b80f6443
JA
2632
2633 line_number = for_command->line;
2634
2635 /* Remember what this command looks like, for debugger. */
2636 command_string_index = 0;
2637 print_for_command_head (for_command);
2638
2639 if (echo_command_at_execute)
2640 xtrace_print_for_command_head (for_command);
2641
95732b49
JA
2642 /* Save this command unless it's a trap command and we're not running
2643 a debug trap. */
0628567a 2644 if (signal_in_progress (DEBUG_TRAP) == 0 && running_trap == 0)
b80f6443
JA
2645 {
2646 FREE (the_printed_command_except_trap);
2647 the_printed_command_except_trap = savestring (the_printed_command);
2648 }
2649
2650 retval = run_debug_trap ();
2651#if defined (DEBUGGER)
2652 /* In debugging mode, if the DEBUG trap returns a non-zero status, we
2653 skip the command. */
2654 if (debugging_mode && retval != EXECUTION_SUCCESS)
2655 continue;
2656#endif
2657
ccc6cda3 2658 this_command_name = (char *)NULL;
ac50fbac
CR
2659 /* XXX - special ksh93 for command index variable handling */
2660 v = find_variable_last_nameref (identifier);
2661 if (v && nameref_p (v))
2662 {
2663 v = bind_variable_value (v, list->word->word, 0);
2664 }
2665 else
2666 v = bind_variable (identifier, list->word->word, 0);
28ef6c31 2667 if (readonly_p (v) || noassign_p (v))
ccc6cda3 2668 {
b80f6443 2669 line_number = save_line_number;
28ef6c31 2670 if (readonly_p (v) && interactive_shell == 0 && posixly_correct)
ccc6cda3
JA
2671 {
2672 last_command_exit_value = EXECUTION_FAILURE;
2673 jump_to_top_level (FORCE_EOF);
2674 }
2675 else
2676 {
b80f6443
JA
2677 dispose_words (releaser);
2678 discard_unwind_frame ("for");
d166f048 2679 loop_level--;
ccc6cda3
JA
2680 return (EXECUTION_FAILURE);
2681 }
2682 }
2683 retval = execute_command (for_command->action);
726f6388
JA
2684 REAP ();
2685 QUIT;
2686
2687 if (breaking)
2688 {
ccc6cda3 2689 breaking--;
726f6388
JA
2690 break;
2691 }
2692
2693 if (continuing)
2694 {
2695 continuing--;
2696 if (continuing)
2697 break;
2698 }
726f6388
JA
2699 }
2700
2701 loop_level--;
b80f6443 2702 line_number = save_line_number;
726f6388 2703
ccc6cda3 2704#if 0
726f6388
JA
2705 if (lexical_scoping)
2706 {
2707 if (!old_value)
7117c2d2 2708 unbind_variable (identifier);
726f6388
JA
2709 else
2710 {
2711 SHELL_VAR *new_value;
2712
95732b49 2713 new_value = bind_variable (identifier, value_cell(old_value), 0);
726f6388
JA
2714 new_value->attributes = old_value->attributes;
2715 dispose_variable (old_value);
2716 }
2717 }
ccc6cda3 2718#endif
726f6388
JA
2719
2720 dispose_words (releaser);
2721 discard_unwind_frame ("for");
2722 return (retval);
2723}
2724
bb70624e
JA
2725#if defined (ARITH_FOR_COMMAND)
2726/* Execute an arithmetic for command. The syntax is
2727
2728 for (( init ; step ; test ))
2729 do
2730 body
2731 done
2732
2733 The execution should be exactly equivalent to
2734
2735 eval \(\( init \)\)
2736 while eval \(\( test \)\) ; do
2737 body;
2738 eval \(\( step \)\)
2739 done
2740*/
7117c2d2 2741static intmax_t
bb70624e
JA
2742eval_arith_for_expr (l, okp)
2743 WORD_LIST *l;
2744 int *okp;
2745{
2746 WORD_LIST *new;
7117c2d2 2747 intmax_t expresult;
b80f6443 2748 int r;
bb70624e
JA
2749
2750 new = expand_words_no_vars (l);
f73dda09
JA
2751 if (new)
2752 {
2753 if (echo_command_at_execute)
2754 xtrace_print_arith_cmd (new);
7117c2d2 2755 this_command_name = "(("; /* )) for expression error messages */
b80f6443
JA
2756
2757 command_string_index = 0;
2758 print_arith_command (new);
95732b49
JA
2759 if (signal_in_progress (DEBUG_TRAP) == 0)
2760 {
2761 FREE (the_printed_command_except_trap);
2762 the_printed_command_except_trap = savestring (the_printed_command);
2763 }
b80f6443
JA
2764
2765 r = run_debug_trap ();
2766 /* In debugging mode, if the DEBUG trap returns a non-zero status, we
2767 skip the command. */
2768#if defined (DEBUGGER)
2769 if (debugging_mode == 0 || r == EXECUTION_SUCCESS)
2770 expresult = evalexp (new->word->word, okp);
2771 else
2772 {
2773 expresult = 0;
2774 if (okp)
2775 *okp = 1;
2776 }
2777#else
f73dda09 2778 expresult = evalexp (new->word->word, okp);
b80f6443 2779#endif
f73dda09
JA
2780 dispose_words (new);
2781 }
2782 else
2783 {
2784 expresult = 0;
2785 if (okp)
2786 *okp = 1;
2787 }
bb70624e
JA
2788 return (expresult);
2789}
2790
2791static int
2792execute_arith_for_command (arith_for_command)
2793 ARITH_FOR_COM *arith_for_command;
2794{
7117c2d2
JA
2795 intmax_t expresult;
2796 int expok, body_status, arith_lineno, save_lineno;
bb70624e
JA
2797
2798 body_status = EXECUTION_SUCCESS;
2799 loop_level++;
b80f6443 2800 save_lineno = line_number;
bb70624e
JA
2801
2802 if (arith_for_command->flags & CMD_IGNORE_RETURN)
2803 arith_for_command->action->flags |= CMD_IGNORE_RETURN;
2804
2805 this_command_name = "(("; /* )) for expression error messages */
2806
7117c2d2
JA
2807 /* save the starting line number of the command so we can reset
2808 line_number before executing each expression -- for $LINENO
2809 and the DEBUG trap. */
b80f6443 2810 line_number = arith_lineno = arith_for_command->line;
7117c2d2 2811 if (variable_context && interactive_shell)
b80f6443 2812 line_number -= function_line_number;
bb70624e
JA
2813
2814 /* Evaluate the initialization expression. */
2815 expresult = eval_arith_for_expr (arith_for_command->init, &expok);
2816 if (expok == 0)
b80f6443
JA
2817 {
2818 line_number = save_lineno;
2819 return (EXECUTION_FAILURE);
2820 }
bb70624e
JA
2821
2822 while (1)
2823 {
2824 /* Evaluate the test expression. */
7117c2d2 2825 line_number = arith_lineno;
bb70624e 2826 expresult = eval_arith_for_expr (arith_for_command->test, &expok);
7117c2d2
JA
2827 line_number = save_lineno;
2828
bb70624e
JA
2829 if (expok == 0)
2830 {
2831 body_status = EXECUTION_FAILURE;
2832 break;
2833 }
2834 REAP ();
2835 if (expresult == 0)
28ef6c31 2836 break;
bb70624e
JA
2837
2838 /* Execute the body of the arithmetic for command. */
2839 QUIT;
2840 body_status = execute_command (arith_for_command->action);
2841 QUIT;
2842
2843 /* Handle any `break' or `continue' commands executed by the body. */
2844 if (breaking)
2845 {
2846 breaking--;
2847 break;
2848 }
2849
2850 if (continuing)
2851 {
2852 continuing--;
2853 if (continuing)
2854 break;
2855 }
2856
2857 /* Evaluate the step expression. */
7117c2d2 2858 line_number = arith_lineno;
bb70624e 2859 expresult = eval_arith_for_expr (arith_for_command->step, &expok);
7117c2d2
JA
2860 line_number = save_lineno;
2861
bb70624e
JA
2862 if (expok == 0)
2863 {
2864 body_status = EXECUTION_FAILURE;
2865 break;
2866 }
2867 }
2868
2869 loop_level--;
b80f6443
JA
2870 line_number = save_lineno;
2871
bb70624e
JA
2872 return (body_status);
2873}
2874#endif
2875
726f6388
JA
2876#if defined (SELECT_COMMAND)
2877static int LINES, COLS, tabsize;
2878
2879#define RP_SPACE ") "
2880#define RP_SPACE_LEN 2
2881
2882/* XXX - does not handle numbers > 1000000 at all. */
2883#define NUMBER_LEN(s) \
2884((s < 10) ? 1 \
2885 : ((s < 100) ? 2 \
2886 : ((s < 1000) ? 3 \
2887 : ((s < 10000) ? 4 \
2888 : ((s < 100000) ? 5 \
2889 : 6)))))
2890
495aee44
CR
2891static int
2892displen (s)
2893 const char *s;
2894{
2895#if defined (HANDLE_MULTIBYTE)
2896 wchar_t *wcstr;
ac50fbac
CR
2897 size_t slen;
2898 int wclen;
495aee44
CR
2899
2900 wcstr = 0;
2901 slen = mbstowcs (wcstr, s, 0);
2902 if (slen == -1)
2903 slen = 0;
2904 wcstr = (wchar_t *)xmalloc (sizeof (wchar_t) * (slen + 1));
2905 mbstowcs (wcstr, s, slen + 1);
2906 wclen = wcswidth (wcstr, slen);
2907 free (wcstr);
ac50fbac 2908 return (wclen < 0 ? STRLEN(s) : wclen);
495aee44
CR
2909#else
2910 return (STRLEN (s));
2911#endif
2912}
2913
726f6388
JA
2914static int
2915print_index_and_element (len, ind, list)
2916 int len, ind;
2917 WORD_LIST *list;
2918{
2919 register WORD_LIST *l;
2920 register int i;
2921
2922 if (list == 0)
2923 return (0);
ccc6cda3
JA
2924 for (i = ind, l = list; l && --i; l = l->next)
2925 ;
ac50fbac
CR
2926 if (l == 0) /* don't think this can happen */
2927 return (0);
726f6388 2928 fprintf (stderr, "%*d%s%s", len, ind, RP_SPACE, l->word->word);
495aee44 2929 return (displen (l->word->word));
726f6388
JA
2930}
2931
2932static void
2933indent (from, to)
2934 int from, to;
2935{
2936 while (from < to)
2937 {
2938 if ((to / tabsize) > (from / tabsize))
2939 {
2940 putc ('\t', stderr);
2941 from += tabsize - from % tabsize;
2942 }
2943 else
2944 {
2945 putc (' ', stderr);
2946 from++;
2947 }
2948 }
2949}
2950
2951static void
2952print_select_list (list, list_len, max_elem_len, indices_len)
2953 WORD_LIST *list;
2954 int list_len, max_elem_len, indices_len;
2955{
2956 int ind, row, elem_len, pos, cols, rows;
2957 int first_column_indices_len, other_indices_len;
2958
2959 if (list == 0)
2960 {
2961 putc ('\n', stderr);
2962 return;
2963 }
2964
ccc6cda3 2965 cols = max_elem_len ? COLS / max_elem_len : 1;
726f6388
JA
2966 if (cols == 0)
2967 cols = 1;
2968 rows = list_len ? list_len / cols + (list_len % cols != 0) : 1;
2969 cols = list_len ? list_len / rows + (list_len % rows != 0) : 1;
2970
2971 if (rows == 1)
2972 {
2973 rows = cols;
2974 cols = 1;
2975 }
2976
2977 first_column_indices_len = NUMBER_LEN (rows);
2978 other_indices_len = indices_len;
2979
2980 for (row = 0; row < rows; row++)
2981 {
2982 ind = row;
2983 pos = 0;
2984 while (1)
2985 {
2986 indices_len = (pos == 0) ? first_column_indices_len : other_indices_len;
2987 elem_len = print_index_and_element (indices_len, ind + 1, list);
2988 elem_len += indices_len + RP_SPACE_LEN;
2989 ind += rows;
2990 if (ind >= list_len)
2991 break;
2992 indent (pos + elem_len, pos + max_elem_len);
2993 pos += max_elem_len;
2994 }
2995 putc ('\n', stderr);
2996 }
2997}
2998
2999/* Print the elements of LIST, one per line, preceded by an index from 1 to
3000 LIST_LEN. Then display PROMPT and wait for the user to enter a number.
3001 If the number is between 1 and LIST_LEN, return that selection. If EOF
e8ce775d
JA
3002 is read, return a null string. If a blank line is entered, or an invalid
3003 number is entered, the loop is executed again. */
726f6388 3004static char *
7117c2d2 3005select_query (list, list_len, prompt, print_menu)
726f6388
JA
3006 WORD_LIST *list;
3007 int list_len;
3008 char *prompt;
7117c2d2 3009 int print_menu;
726f6388 3010{
e8ce775d 3011 int max_elem_len, indices_len, len;
7117c2d2 3012 intmax_t reply;
726f6388
JA
3013 WORD_LIST *l;
3014 char *repl_string, *t;
3015
495aee44 3016#if 0
726f6388
JA
3017 t = get_string_value ("LINES");
3018 LINES = (t && *t) ? atoi (t) : 24;
495aee44 3019#endif
726f6388
JA
3020 t = get_string_value ("COLUMNS");
3021 COLS = (t && *t) ? atoi (t) : 80;
3022
3023#if 0
3024 t = get_string_value ("TABSIZE");
3025 tabsize = (t && *t) ? atoi (t) : 8;
3026 if (tabsize <= 0)
3027 tabsize = 8;
3028#else
3029 tabsize = 8;
3030#endif
3031
3032 max_elem_len = 0;
3033 for (l = list; l; l = l->next)
3034 {
495aee44 3035 len = displen (l->word->word);
726f6388 3036 if (len > max_elem_len)
cce855bc 3037 max_elem_len = len;
726f6388
JA
3038 }
3039 indices_len = NUMBER_LEN (list_len);
3040 max_elem_len += indices_len + RP_SPACE_LEN + 2;
3041
3042 while (1)
3043 {
7117c2d2
JA
3044 if (print_menu)
3045 print_select_list (list, list_len, max_elem_len, indices_len);
ccc6cda3
JA
3046 fprintf (stderr, "%s", prompt);
3047 fflush (stderr);
726f6388
JA
3048 QUIT;
3049
495aee44 3050 if (read_builtin ((WORD_LIST *)NULL) != EXECUTION_SUCCESS)
726f6388
JA
3051 {
3052 putchar ('\n');
3053 return ((char *)NULL);
3054 }
3055 repl_string = get_string_value ("REPLY");
3056 if (*repl_string == 0)
7117c2d2
JA
3057 {
3058 print_menu = 1;
3059 continue;
3060 }
e8ce775d 3061 if (legal_number (repl_string, &reply) == 0)
cce855bc 3062 return "";
726f6388
JA
3063 if (reply < 1 || reply > list_len)
3064 return "";
3065
ccc6cda3
JA
3066 for (l = list; l && --reply; l = l->next)
3067 ;
ac50fbac 3068 return (l->word->word); /* XXX - can't be null? */
726f6388
JA
3069 }
3070}
3071
3072/* Execute a SELECT command. The syntax is:
3073 SELECT word IN list DO command_list DONE
3074 Only `break' or `return' in command_list will terminate
3075 the command. */
ccc6cda3 3076static int
726f6388
JA
3077execute_select_command (select_command)
3078 SELECT_COM *select_command;
3079{
3080 WORD_LIST *releaser, *list;
ccc6cda3 3081 SHELL_VAR *v;
726f6388 3082 char *identifier, *ps3_prompt, *selection;
b80f6443 3083 int retval, list_len, show_menu, save_line_number;
7117c2d2 3084
726f6388
JA
3085 if (check_identifier (select_command->name, 1) == 0)
3086 return (EXECUTION_FAILURE);
3087
b80f6443
JA
3088 save_line_number = line_number;
3089 line_number = select_command->line;
3090
3091 command_string_index = 0;
3092 print_select_command_head (select_command);
3093
3094 if (echo_command_at_execute)
3095 xtrace_print_select_command_head (select_command);
3096
0628567a 3097#if 0
95732b49 3098 if (signal_in_progress (DEBUG_TRAP) == 0 && (this_command_name == 0 || (STREQ (this_command_name, "trap") == 0)))
0628567a
JA
3099#else
3100 if (signal_in_progress (DEBUG_TRAP) == 0 && running_trap == 0)
3101#endif
95732b49
JA
3102 {
3103 FREE (the_printed_command_except_trap);
3104 the_printed_command_except_trap = savestring (the_printed_command);
3105 }
b80f6443
JA
3106
3107 retval = run_debug_trap ();
3108#if defined (DEBUGGER)
3109 /* In debugging mode, if the DEBUG trap returns a non-zero status, we
3110 skip the command. */
3111 if (debugging_mode && retval != EXECUTION_SUCCESS)
3112 return (EXECUTION_SUCCESS);
3113#endif
3114
726f6388
JA
3115 loop_level++;
3116 identifier = select_command->name->word;
3117
3118 /* command and arithmetic substitution, parameter and variable expansion,
3119 word splitting, pathname expansion, and quote removal. */
3120 list = releaser = expand_words_no_vars (select_command->map_list);
3121 list_len = list_length (list);
3122 if (list == 0 || list_len == 0)
3123 {
3124 if (list)
3125 dispose_words (list);
b80f6443 3126 line_number = save_line_number;
726f6388
JA
3127 return (EXECUTION_SUCCESS);
3128 }
3129
3130 begin_unwind_frame ("select");
3131 add_unwind_protect (dispose_words, releaser);
3132
726f6388
JA
3133 if (select_command->flags & CMD_IGNORE_RETURN)
3134 select_command->action->flags |= CMD_IGNORE_RETURN;
3135
ccc6cda3 3136 retval = EXECUTION_SUCCESS;
7117c2d2 3137 show_menu = 1;
ccc6cda3 3138
726f6388
JA
3139 while (1)
3140 {
b80f6443 3141 line_number = select_command->line;
726f6388 3142 ps3_prompt = get_string_value ("PS3");
ccc6cda3 3143 if (ps3_prompt == 0)
726f6388
JA
3144 ps3_prompt = "#? ";
3145
3146 QUIT;
7117c2d2 3147 selection = select_query (list, list_len, ps3_prompt, show_menu);
726f6388
JA
3148 QUIT;
3149 if (selection == 0)
7117c2d2
JA
3150 {
3151 /* select_query returns EXECUTION_FAILURE if the read builtin
3152 fails, so we want to return failure in this case. */
3153 retval = EXECUTION_FAILURE;
3154 break;
3155 }
ccc6cda3 3156
95732b49 3157 v = bind_variable (identifier, selection, 0);
28ef6c31 3158 if (readonly_p (v) || noassign_p (v))
ccc6cda3 3159 {
28ef6c31 3160 if (readonly_p (v) && interactive_shell == 0 && posixly_correct)
ccc6cda3
JA
3161 {
3162 last_command_exit_value = EXECUTION_FAILURE;
3163 jump_to_top_level (FORCE_EOF);
3164 }
3165 else
3166 {
b80f6443
JA
3167 dispose_words (releaser);
3168 discard_unwind_frame ("select");
3169 loop_level--;
3170 line_number = save_line_number;
ccc6cda3
JA
3171 return (EXECUTION_FAILURE);
3172 }
3173 }
726f6388 3174
f73dda09 3175 retval = execute_command (select_command->action);
726f6388
JA
3176
3177 REAP ();
3178 QUIT;
3179
3180 if (breaking)
3181 {
3182 breaking--;
3183 break;
3184 }
bb70624e
JA
3185
3186 if (continuing)
3187 {
3188 continuing--;
3189 if (continuing)
3190 break;
3191 }
7117c2d2
JA
3192
3193#if defined (KSH_COMPATIBLE_SELECT)
3194 show_menu = 0;
3195 selection = get_string_value ("REPLY");
3196 if (selection && *selection == '\0')
3197 show_menu = 1;
3198#endif
726f6388
JA
3199 }
3200
3201 loop_level--;
b80f6443 3202 line_number = save_line_number;
726f6388 3203
b80f6443
JA
3204 dispose_words (releaser);
3205 discard_unwind_frame ("select");
726f6388
JA
3206 return (retval);
3207}
3208#endif /* SELECT_COMMAND */
3209
3210/* Execute a CASE command. The syntax is: CASE word_desc IN pattern_list ESAC.
3211 The pattern_list is a linked list of pattern clauses; each clause contains
3212 some patterns to compare word_desc against, and an associated command to
3213 execute. */
ccc6cda3 3214static int
726f6388
JA
3215execute_case_command (case_command)
3216 CASE_COM *case_command;
3217{
3218 register WORD_LIST *list;
ccc6cda3 3219 WORD_LIST *wlist, *es;
726f6388 3220 PATTERN_LIST *clauses;
ccc6cda3 3221 char *word, *pattern;
b80f6443
JA
3222 int retval, match, ignore_return, save_line_number;
3223
3224 save_line_number = line_number;
3225 line_number = case_command->line;
3226
3227 command_string_index = 0;
3228 print_case_command_head (case_command);
3229
3230 if (echo_command_at_execute)
3231 xtrace_print_case_command_head (case_command);
3232
0628567a
JA
3233#if 0
3234 if (signal_in_progress (DEBUG_TRAP) == 0 && (this_command_name == 0 || (STREQ (this_command_name, "trap") == 0)))
3235#else
3236 if (signal_in_progress (DEBUG_TRAP) == 0 && running_trap == 0)
3237#endif
b80f6443
JA
3238 {
3239 FREE (the_printed_command_except_trap);
3240 the_printed_command_except_trap = savestring (the_printed_command);
3241 }
3242
3243 retval = run_debug_trap();
3244#if defined (DEBUGGER)
3245 /* In debugging mode, if the DEBUG trap returns a non-zero status, we
3246 skip the command. */
3247 if (debugging_mode && retval != EXECUTION_SUCCESS)
3248 {
3249 line_number = save_line_number;
3250 return (EXECUTION_SUCCESS);
3251 }
3252#endif
726f6388 3253
28ef6c31 3254 wlist = expand_word_unsplit (case_command->word, 0);
ccc6cda3
JA
3255 word = wlist ? string_list (wlist) : savestring ("");
3256 dispose_words (wlist);
3257
726f6388 3258 retval = EXECUTION_SUCCESS;
ccc6cda3 3259 ignore_return = case_command->flags & CMD_IGNORE_RETURN;
726f6388
JA
3260
3261 begin_unwind_frame ("case");
726f6388
JA
3262 add_unwind_protect ((Function *)xfree, word);
3263
ccc6cda3
JA
3264#define EXIT_CASE() goto exit_case_command
3265
3266 for (clauses = case_command->clauses; clauses; clauses = clauses->next)
726f6388
JA
3267 {
3268 QUIT;
ccc6cda3 3269 for (list = clauses->patterns; list; list = list->next)
726f6388 3270 {
726f6388
JA
3271 es = expand_word_leave_quoted (list->word, 0);
3272
3273 if (es && es->word && es->word->word && *(es->word->word))
cce855bc 3274 pattern = quote_string_for_globbing (es->word->word, QGLOB_CVTNULL);
726f6388 3275 else
ccc6cda3 3276 {
f73dda09 3277 pattern = (char *)xmalloc (1);
ccc6cda3
JA
3278 pattern[0] = '\0';
3279 }
726f6388
JA
3280
3281 /* Since the pattern does not undergo quote removal (as per
f73dda09 3282 Posix.2, section 3.9.4.3), the strmatch () call must be able
726f6388 3283 to recognize backslashes as escape characters. */
95732b49 3284 match = strmatch (pattern, word, FNMATCH_EXTFLAG|FNMATCH_IGNCASE) != FNM_NOMATCH;
726f6388
JA
3285 free (pattern);
3286
3287 dispose_words (es);
3288
3289 if (match)
3290 {
3185942a
JA
3291 do
3292 {
3293 if (clauses->action && ignore_return)
3294 clauses->action->flags |= CMD_IGNORE_RETURN;
3295 retval = execute_command (clauses->action);
3296 }
3297 while ((clauses->flags & CASEPAT_FALLTHROUGH) && (clauses = clauses->next));
89a92869 3298 if (clauses == 0 || (clauses->flags & CASEPAT_TESTNEXT) == 0)
3185942a
JA
3299 EXIT_CASE ();
3300 else
3301 break;
726f6388
JA
3302 }
3303
726f6388
JA
3304 QUIT;
3305 }
726f6388
JA
3306 }
3307
ccc6cda3
JA
3308exit_case_command:
3309 free (word);
726f6388 3310 discard_unwind_frame ("case");
b80f6443 3311 line_number = save_line_number;
726f6388
JA
3312 return (retval);
3313}
3314
3315#define CMD_WHILE 0
3316#define CMD_UNTIL 1
3317
3318/* The WHILE command. Syntax: WHILE test DO action; DONE.
3319 Repeatedly execute action while executing test produces
3320 EXECUTION_SUCCESS. */
ccc6cda3 3321static int
726f6388
JA
3322execute_while_command (while_command)
3323 WHILE_COM *while_command;
3324{
3325 return (execute_while_or_until (while_command, CMD_WHILE));
3326}
3327
3328/* UNTIL is just like WHILE except that the test result is negated. */
ccc6cda3 3329static int
726f6388
JA
3330execute_until_command (while_command)
3331 WHILE_COM *while_command;
3332{
3333 return (execute_while_or_until (while_command, CMD_UNTIL));
3334}
3335
3336/* The body for both while and until. The only difference between the
3337 two is that the test value is treated differently. TYPE is
3338 CMD_WHILE or CMD_UNTIL. The return value for both commands should
3339 be EXECUTION_SUCCESS if no commands in the body are executed, and
3340 the status of the last command executed in the body otherwise. */
ccc6cda3 3341static int
726f6388
JA
3342execute_while_or_until (while_command, type)
3343 WHILE_COM *while_command;
3344 int type;
3345{
3346 int return_value, body_status;
3347
3348 body_status = EXECUTION_SUCCESS;
3349 loop_level++;
3350
3351 while_command->test->flags |= CMD_IGNORE_RETURN;
3352 if (while_command->flags & CMD_IGNORE_RETURN)
3353 while_command->action->flags |= CMD_IGNORE_RETURN;
3354
3355 while (1)
3356 {
3357 return_value = execute_command (while_command->test);
3358 REAP ();
3359
f73dda09
JA
3360 /* Need to handle `break' in the test when we would break out of the
3361 loop. The job control code will set `breaking' to loop_level
3362 when a job in a loop is stopped with SIGTSTP. If the stopped job
3363 is in the loop test, `breaking' will not be reset unless we do
3364 this, and the shell will cease to execute commands. */
726f6388 3365 if (type == CMD_WHILE && return_value != EXECUTION_SUCCESS)
f73dda09
JA
3366 {
3367 if (breaking)
3368 breaking--;
3369 break;
3370 }
726f6388 3371 if (type == CMD_UNTIL && return_value == EXECUTION_SUCCESS)
f73dda09
JA
3372 {
3373 if (breaking)
3374 breaking--;
3375 break;
3376 }
726f6388
JA
3377
3378 QUIT;
3379 body_status = execute_command (while_command->action);
3380 QUIT;
3381
3382 if (breaking)
3383 {
3384 breaking--;
3385 break;
3386 }
3387
3388 if (continuing)
3389 {
3390 continuing--;
3391 if (continuing)
3392 break;
3393 }
3394 }
3395 loop_level--;
3396
3397 return (body_status);
3398}
3399
3400/* IF test THEN command [ELSE command].
3401 IF also allows ELIF in the place of ELSE IF, but
3402 the parser makes *that* stupidity transparent. */
ccc6cda3 3403static int
726f6388
JA
3404execute_if_command (if_command)
3405 IF_COM *if_command;
3406{
b80f6443 3407 int return_value, save_line_number;
726f6388 3408
b80f6443 3409 save_line_number = line_number;
726f6388
JA
3410 if_command->test->flags |= CMD_IGNORE_RETURN;
3411 return_value = execute_command (if_command->test);
b80f6443 3412 line_number = save_line_number;
726f6388
JA
3413
3414 if (return_value == EXECUTION_SUCCESS)
3415 {
3416 QUIT;
ccc6cda3 3417
726f6388 3418 if (if_command->true_case && (if_command->flags & CMD_IGNORE_RETURN))
ccc6cda3
JA
3419 if_command->true_case->flags |= CMD_IGNORE_RETURN;
3420
726f6388
JA
3421 return (execute_command (if_command->true_case));
3422 }
3423 else
3424 {
3425 QUIT;
3426
3427 if (if_command->false_case && (if_command->flags & CMD_IGNORE_RETURN))
3428 if_command->false_case->flags |= CMD_IGNORE_RETURN;
3429
3430 return (execute_command (if_command->false_case));
3431 }
3432}
3433
cce855bc
JA
3434#if defined (DPAREN_ARITHMETIC)
3435static int
3436execute_arith_command (arith_command)
3437 ARITH_COM *arith_command;
3438{
b80f6443 3439 int expok, save_line_number, retval;
7117c2d2 3440 intmax_t expresult;
f73dda09 3441 WORD_LIST *new;
0628567a 3442 char *exp;
cce855bc 3443
f73dda09 3444 expresult = 0;
cce855bc 3445
b80f6443 3446 save_line_number = line_number;
b72432fd 3447 this_command_name = "(("; /* )) */
b80f6443 3448 line_number = arith_command->line;
cce855bc 3449 /* If we're in a function, update the line number information. */
7117c2d2 3450 if (variable_context && interactive_shell)
b80f6443
JA
3451 line_number -= function_line_number;
3452
3453 command_string_index = 0;
3454 print_arith_command (arith_command->exp);
95732b49
JA
3455
3456 if (signal_in_progress (DEBUG_TRAP) == 0)
3457 {
3458 FREE (the_printed_command_except_trap);
3459 the_printed_command_except_trap = savestring (the_printed_command);
3460 }
cce855bc 3461
7117c2d2
JA
3462 /* Run the debug trap before each arithmetic command, but do it after we
3463 update the line number information and before we expand the various
3464 words in the expression. */
b80f6443
JA
3465 retval = run_debug_trap ();
3466#if defined (DEBUGGER)
3467 /* In debugging mode, if the DEBUG trap returns a non-zero status, we
3468 skip the command. */
3469 if (debugging_mode && retval != EXECUTION_SUCCESS)
3470 {
3471 line_number = save_line_number;
3472 return (EXECUTION_SUCCESS);
3473 }
3474#endif
7117c2d2 3475
b80f6443 3476 new = expand_words_no_vars (arith_command->exp);
cce855bc
JA
3477
3478 /* If we're tracing, make a new word list with `((' at the front and `))'
3479 at the back and print it. */
3480 if (echo_command_at_execute)
3481 xtrace_print_arith_cmd (new);
3482
b80f6443
JA
3483 if (new)
3484 {
0628567a
JA
3485 exp = new->next ? string_list (new) : new->word->word;
3486 expresult = evalexp (exp, &expok);
b80f6443 3487 line_number = save_line_number;
0628567a
JA
3488 if (exp != new->word->word)
3489 free (exp);
b80f6443
JA
3490 dispose_words (new);
3491 }
3492 else
3493 {
3494 expresult = 0;
3495 expok = 1;
3496 }
cce855bc
JA
3497
3498 if (expok == 0)
3499 return (EXECUTION_FAILURE);
3500
f73dda09 3501 return (expresult == 0 ? EXECUTION_FAILURE : EXECUTION_SUCCESS);
cce855bc
JA
3502}
3503#endif /* DPAREN_ARITHMETIC */
3504
3505#if defined (COND_COMMAND)
3506
3185942a 3507static char * const nullstr = "";
cce855bc 3508
ac50fbac 3509/* XXX - can COND ever be NULL when this is called? */
cce855bc
JA
3510static int
3511execute_cond_node (cond)
3512 COND_COM *cond;
3513{
0001803f 3514 int result, invert, patmatch, rmatch, mflags, ignore;
f73dda09 3515 char *arg1, *arg2;
ac50fbac
CR
3516#if 0
3517 char *t1, *t2;
3518#endif
cce855bc
JA
3519
3520 invert = (cond->flags & CMD_INVERT_RETURN);
0001803f
CR
3521 ignore = (cond->flags & CMD_IGNORE_RETURN);
3522 if (ignore)
3523 {
3524 if (cond->left)
3525 cond->left->flags |= CMD_IGNORE_RETURN;
3526 if (cond->right)
3527 cond->right->flags |= CMD_IGNORE_RETURN;
3528 }
3529
cce855bc
JA
3530 if (cond->type == COND_EXPR)
3531 result = execute_cond_node (cond->left);
3532 else if (cond->type == COND_OR)
3533 {
3534 result = execute_cond_node (cond->left);
3535 if (result != EXECUTION_SUCCESS)
3536 result = execute_cond_node (cond->right);
3537 }
3538 else if (cond->type == COND_AND)
3539 {
3540 result = execute_cond_node (cond->left);
3541 if (result == EXECUTION_SUCCESS)
3542 result = execute_cond_node (cond->right);
3543 }
3544 else if (cond->type == COND_UNARY)
3545 {
0001803f
CR
3546 if (ignore)
3547 comsub_ignore_return++;
cce855bc 3548 arg1 = cond_expand_word (cond->left->op, 0);
0001803f
CR
3549 if (ignore)
3550 comsub_ignore_return--;
cce855bc
JA
3551 if (arg1 == 0)
3552 arg1 = nullstr;
3553 if (echo_command_at_execute)
3554 xtrace_print_cond_term (cond->type, invert, cond->op, arg1, (char *)NULL);
3555 result = unary_test (cond->op->word, arg1) ? EXECUTION_SUCCESS : EXECUTION_FAILURE;
3556 if (arg1 != nullstr)
3557 free (arg1);
3558 }
3559 else if (cond->type == COND_BINARY)
3560 {
0628567a 3561 rmatch = 0;
ac50fbac
CR
3562 patmatch = (((cond->op->word[1] == '=') && (cond->op->word[2] == '\0') &&
3563 (cond->op->word[0] == '!' || cond->op->word[0] == '=')) ||
b72432fd 3564 (cond->op->word[0] == '=' && cond->op->word[1] == '\0'));
b80f6443
JA
3565#if defined (COND_REGEXP)
3566 rmatch = (cond->op->word[0] == '=' && cond->op->word[1] == '~' &&
3567 cond->op->word[2] == '\0');
3568#endif
cce855bc 3569
0001803f
CR
3570 if (ignore)
3571 comsub_ignore_return++;
cce855bc 3572 arg1 = cond_expand_word (cond->left->op, 0);
0001803f
CR
3573 if (ignore)
3574 comsub_ignore_return--;
cce855bc
JA
3575 if (arg1 == 0)
3576 arg1 = nullstr;
0001803f
CR
3577 if (ignore)
3578 comsub_ignore_return++;
f1be666c
JA
3579 arg2 = cond_expand_word (cond->right->op,
3580 (rmatch && shell_compatibility_level > 31) ? 2 : (patmatch ? 1 : 0));
0001803f
CR
3581 if (ignore)
3582 comsub_ignore_return--;
cce855bc
JA
3583 if (arg2 == 0)
3584 arg2 = nullstr;
3585
3586 if (echo_command_at_execute)
3587 xtrace_print_cond_term (cond->type, invert, cond->op, arg1, arg2);
3588
b80f6443
JA
3589#if defined (COND_REGEXP)
3590 if (rmatch)
3591 {
3592 mflags = SHMAT_PWARN;
3593#if defined (ARRAY_VARS)
3594 mflags |= SHMAT_SUBEXP;
3595#endif
3596
ac50fbac
CR
3597#if 0
3598 t1 = strescape(arg1);
3599 t2 = strescape(arg2);
3600 itrace("execute_cond_node: sh_regmatch on `%s' and `%s'", t1, t2);
3601 free(t1);
3602 free(t2);
3603#endif
3604
b80f6443
JA
3605 result = sh_regmatch (arg1, arg2, mflags);
3606 }
3607 else
3608#endif /* COND_REGEXP */
95732b49
JA
3609 {
3610 int oe;
3611 oe = extended_glob;
3612 extended_glob = 1;
0001803f 3613 result = binary_test (cond->op->word, arg1, arg2, TEST_PATMATCH|TEST_ARITHEXP|TEST_LOCALE)
95732b49
JA
3614 ? EXECUTION_SUCCESS
3615 : EXECUTION_FAILURE;
3616 extended_glob = oe;
3617 }
cce855bc
JA
3618 if (arg1 != nullstr)
3619 free (arg1);
3620 if (arg2 != nullstr)
3621 free (arg2);
3622 }
3623 else
3624 {
b72432fd 3625 command_error ("execute_cond_node", CMDERR_BADTYPE, cond->type, 0);
cce855bc
JA
3626 jump_to_top_level (DISCARD);
3627 result = EXECUTION_FAILURE;
3628 }
3629
3630 if (invert)
3631 result = (result == EXECUTION_SUCCESS) ? EXECUTION_FAILURE : EXECUTION_SUCCESS;
3632
3633 return result;
3634}
3635
3636static int
3637execute_cond_command (cond_command)
3638 COND_COM *cond_command;
3639{
b80f6443 3640 int retval, save_line_number;
cce855bc 3641
b80f6443
JA
3642 retval = EXECUTION_SUCCESS;
3643 save_line_number = line_number;
cce855bc
JA
3644
3645 this_command_name = "[[";
b80f6443 3646 line_number = cond_command->line;
cce855bc 3647 /* If we're in a function, update the line number information. */
7117c2d2 3648 if (variable_context && interactive_shell)
b80f6443 3649 line_number -= function_line_number;
b80f6443
JA
3650 command_string_index = 0;
3651 print_cond_command (cond_command);
95732b49
JA
3652
3653 if (signal_in_progress (DEBUG_TRAP) == 0)
3654 {
3655 FREE (the_printed_command_except_trap);
3656 the_printed_command_except_trap = savestring (the_printed_command);
3657 }
cce855bc 3658
7117c2d2
JA
3659 /* Run the debug trap before each conditional command, but do it after we
3660 update the line number information. */
b80f6443
JA
3661 retval = run_debug_trap ();
3662#if defined (DEBUGGER)
3663 /* In debugging mode, if the DEBUG trap returns a non-zero status, we
3664 skip the command. */
3665 if (debugging_mode && retval != EXECUTION_SUCCESS)
3666 {
3667 line_number = save_line_number;
3668 return (EXECUTION_SUCCESS);
3669 }
3670#endif
7117c2d2 3671
cce855bc
JA
3672#if 0
3673 debug_print_cond_command (cond_command);
3674#endif
b80f6443
JA
3675
3676 last_command_exit_value = retval = execute_cond_node (cond_command);
3677 line_number = save_line_number;
3678 return (retval);
cce855bc
JA
3679}
3680#endif /* COND_COMMAND */
3681
726f6388
JA
3682static void
3683bind_lastarg (arg)
3684 char *arg;
3685{
3686 SHELL_VAR *var;
3687
ccc6cda3 3688 if (arg == 0)
726f6388 3689 arg = "";
95732b49 3690 var = bind_variable ("_", arg, 0);
bb70624e 3691 VUNSETATTR (var, att_exported);
726f6388
JA
3692}
3693
ccc6cda3
JA
3694/* Execute a null command. Fork a subshell if the command uses pipes or is
3695 to be run asynchronously. This handles all the side effects that are
3696 supposed to take place. */
3697static int
95732b49 3698execute_null_command (redirects, pipe_in, pipe_out, async)
ccc6cda3 3699 REDIRECT *redirects;
bb70624e 3700 int pipe_in, pipe_out, async;
ccc6cda3 3701{
b80f6443 3702 int r;
0001803f
CR
3703 int forcefork;
3704 REDIRECT *rd;
b80f6443 3705
0001803f
CR
3706 for (forcefork = 0, rd = redirects; rd; rd = rd->next)
3707 forcefork += rd->rflags & REDIR_VARASSIGN;
3708
3709 if (forcefork || pipe_in != NO_PIPE || pipe_out != NO_PIPE || async)
ccc6cda3
JA
3710 {
3711 /* We have a null command, but we really want a subshell to take
3712 care of it. Just fork, do piping and redirections, and exit. */
3713 if (make_child ((char *)NULL, async) == 0)
3714 {
3715 /* Cancel traps, in trap.c. */
3716 restore_original_signals (); /* XXX */
3717
3718 do_piping (pipe_in, pipe_out);
3719
3185942a
JA
3720#if defined (COPROCESS_SUPPORT)
3721 coproc_closeall ();
3722#endif
3723
3724 subshell_environment = 0;
0628567a
JA
3725 if (async)
3726 subshell_environment |= SUBSHELL_ASYNC;
3727 if (pipe_in != NO_PIPE || pipe_out != NO_PIPE)
3728 subshell_environment |= SUBSHELL_PIPE;
ccc6cda3 3729
b80f6443 3730 if (do_redirections (redirects, RX_ACTIVE) == 0)
ccc6cda3
JA
3731 exit (EXECUTION_SUCCESS);
3732 else
3733 exit (EXECUTION_FAILURE);
3734 }
3735 else
3736 {
3737 close_pipes (pipe_in, pipe_out);
3738#if defined (PROCESS_SUBSTITUTION) && defined (HAVE_DEV_FD)
ac50fbac
CR
3739 if (pipe_out == NO_PIPE)
3740 unlink_fifo_list ();
ccc6cda3
JA
3741#endif
3742 return (EXECUTION_SUCCESS);
3743 }
3744 }
3745 else
3746 {
3747 /* Even if there aren't any command names, pretend to do the
3748 redirections that are specified. The user expects the side
3749 effects to take place. If the redirections fail, then return
3750 failure. Otherwise, if a command substitution took place while
3751 expanding the command or a redirection, return the value of that
3752 substitution. Otherwise, return EXECUTION_SUCCESS. */
3753
b80f6443
JA
3754 r = do_redirections (redirects, RX_ACTIVE|RX_UNDOABLE);
3755 cleanup_redirects (redirection_undo_list);
3756 redirection_undo_list = (REDIRECT *)NULL;
3757
3758 if (r != 0)
ccc6cda3 3759 return (EXECUTION_FAILURE);
95732b49 3760 else if (last_command_subst_pid != NO_PID)
ccc6cda3
JA
3761 return (last_command_exit_value);
3762 else
3763 return (EXECUTION_SUCCESS);
3764 }
3765}
3766
3767/* This is a hack to suppress word splitting for assignment statements
3768 given as arguments to builtins with the ASSIGNMENT_BUILTIN flag set. */
3769static void
3770fix_assignment_words (words)
3771 WORD_LIST *words;
3772{
ac50fbac 3773 WORD_LIST *w, *wcmd;
ccc6cda3 3774 struct builtin *b;
ac50fbac 3775 int assoc, global, array, integer;
ccc6cda3
JA
3776
3777 if (words == 0)
3778 return;
3779
7117c2d2 3780 b = 0;
ac50fbac 3781 assoc = global = array = integer = 0;
ccc6cda3 3782
ac50fbac
CR
3783 /* Skip over assignment statements preceding a command name */
3784 wcmd = words;
3785 for (wcmd = words; wcmd; wcmd = wcmd->next)
3786 if ((wcmd->word->flags & W_ASSIGNMENT) == 0)
3787 break;
3788
3789 for (w = wcmd; w; w = w->next)
ccc6cda3 3790 if (w->word->flags & W_ASSIGNMENT)
7117c2d2
JA
3791 {
3792 if (b == 0)
3793 {
ac50fbac
CR
3794 /* Posix (post-2008) says that `command' doesn't change whether
3795 or not the builtin it shadows is a `declaration command', even
3796 though it removes other special builtin properties. In Posix
3797 mode, we skip over one or more instances of `command' and
3798 deal with the next word as the assignment builtin. */
3799 while (posixly_correct && wcmd && wcmd->word && wcmd->word->word && STREQ (wcmd->word->word, "command"))
3800 wcmd = wcmd->next;
3801 b = builtin_address_internal (wcmd->word->word, 0);
7117c2d2
JA
3802 if (b == 0 || (b->flags & ASSIGNMENT_BUILTIN) == 0)
3803 return;
95732b49 3804 else if (b && (b->flags & ASSIGNMENT_BUILTIN))
ac50fbac 3805 wcmd->word->flags |= W_ASSNBLTIN;
7117c2d2 3806 }
95732b49 3807 w->word->flags |= (W_NOSPLIT|W_NOGLOB|W_TILDEEXP|W_ASSIGNARG);
3185942a
JA
3808#if defined (ARRAY_VARS)
3809 if (assoc)
3810 w->word->flags |= W_ASSIGNASSOC;
ac50fbac
CR
3811 if (array)
3812 w->word->flags |= W_ASSIGNARRAY;
3813#endif
6d41b715
CR
3814 if (global)
3815 w->word->flags |= W_ASSNGLOBAL;
ac50fbac
CR
3816 if (integer)
3817 w->word->flags |= W_ASSIGNINT;
7117c2d2 3818 }
3185942a
JA
3819#if defined (ARRAY_VARS)
3820 /* Note that we saw an associative array option to a builtin that takes
3821 assignment statements. This is a bit of a kludge. */
ac50fbac 3822 else if (w->word->word[0] == '-' && (strchr (w->word->word+1, 'A') || strchr (w->word->word+1, 'a') || strchr (w->word->word+1, 'g')))
6d41b715
CR
3823#else
3824 else if (w->word->word[0] == '-' && strchr (w->word->word+1, 'g'))
3825#endif
3185942a
JA
3826 {
3827 if (b == 0)
3828 {
ac50fbac
CR
3829 while (posixly_correct && wcmd && wcmd->word && wcmd->word->word && STREQ (wcmd->word->word, "command"))
3830 wcmd = wcmd->next;
3831 b = builtin_address_internal (wcmd->word->word, 0);
3185942a
JA
3832 if (b == 0 || (b->flags & ASSIGNMENT_BUILTIN) == 0)
3833 return;
3834 else if (b && (b->flags & ASSIGNMENT_BUILTIN))
ac50fbac 3835 wcmd->word->flags |= W_ASSNBLTIN;
3185942a 3836 }
ac50fbac 3837 if ((wcmd->word->flags & W_ASSNBLTIN) && strchr (w->word->word+1, 'A'))
3185942a 3838 assoc = 1;
ac50fbac
CR
3839 else if ((wcmd->word->flags & W_ASSNBLTIN) && strchr (w->word->word+1, 'a'))
3840 array = 1;
3841 if ((wcmd->word->flags & W_ASSNBLTIN) && strchr (w->word->word+1, 'g'))
6d41b715 3842 global = 1;
ac50fbac
CR
3843 if ((wcmd->word->flags & W_ASSNBLTIN) && strchr (w->word->word+1, 'i'))
3844 integer = 1;
3185942a 3845 }
3185942a
JA
3846}
3847
3848/* Return 1 if the file found by searching $PATH for PATHNAME, defaulting
3849 to PATHNAME, is a directory. Used by the autocd code below. */
3850static int
3851is_dirname (pathname)
3852 char *pathname;
3853{
3854 char *temp;
ac50fbac
CR
3855 int ret;
3856
3857 temp = search_for_command (pathname, 0);
3858 ret = (temp ? file_isdir (temp) : file_isdir (pathname));
3859 free (temp);
3860 return ret;
ccc6cda3
JA
3861}
3862
726f6388
JA
3863/* The meaty part of all the executions. We have to start hacking the
3864 real execution of commands here. Fork a process, set things up,
3865 execute the command. */
ccc6cda3 3866static int
726f6388
JA
3867execute_simple_command (simple_command, pipe_in, pipe_out, async, fds_to_close)
3868 SIMPLE_COM *simple_command;
3869 int pipe_in, pipe_out, async;
3870 struct fd_bitmap *fds_to_close;
3871{
3872 WORD_LIST *words, *lastword;
ccc6cda3 3873 char *command_line, *lastarg, *temp;
bc4cd23c 3874 int first_word_quoted, result, builtin_is_special, already_forked, dofork;
95732b49 3875 pid_t old_last_async_pid;
f73dda09 3876 sh_builtin_func_t *builtin;
ccc6cda3 3877 SHELL_VAR *func;
495aee44 3878 volatile int old_builtin, old_command_builtin;
726f6388
JA
3879
3880 result = EXECUTION_SUCCESS;
ccc6cda3 3881 special_builtin_failed = builtin_is_special = 0;
cce855bc 3882 command_line = (char *)0;
726f6388 3883
ac50fbac
CR
3884 QUIT;
3885
ccc6cda3 3886 /* If we're in a function, update the line number information. */
0001803f 3887 if (variable_context && interactive_shell && sourcelevel == 0)
b80f6443 3888 line_number -= function_line_number;
7117c2d2 3889
726f6388
JA
3890 /* Remember what this command line looks like at invocation. */
3891 command_string_index = 0;
3892 print_simple_command (simple_command);
726f6388 3893
0628567a 3894#if 0
95732b49 3895 if (signal_in_progress (DEBUG_TRAP) == 0 && (this_command_name == 0 || (STREQ (this_command_name, "trap") == 0)))
0628567a
JA
3896#else
3897 if (signal_in_progress (DEBUG_TRAP) == 0 && running_trap == 0)
3898#endif
b80f6443
JA
3899 {
3900 FREE (the_printed_command_except_trap);
95732b49 3901 the_printed_command_except_trap = the_printed_command ? savestring (the_printed_command) : (char *)0;
b80f6443
JA
3902 }
3903
3904 /* Run the debug trap before each simple command, but do it after we
3905 update the line number information. */
3906 result = run_debug_trap ();
3907#if defined (DEBUGGER)
3908 /* In debugging mode, if the DEBUG trap returns a non-zero status, we
3909 skip the command. */
3910 if (debugging_mode && result != EXECUTION_SUCCESS)
3911 return (EXECUTION_SUCCESS);
3912#endif
3913
726f6388 3914 first_word_quoted =
3185942a 3915 simple_command->words ? (simple_command->words->word->flags & W_QUOTED) : 0;
726f6388 3916
95732b49 3917 last_command_subst_pid = NO_PID;
b72432fd 3918 old_last_async_pid = last_asynchronous_pid;
726f6388 3919
bc4cd23c
JA
3920 already_forked = dofork = 0;
3921
3922 /* If we're in a pipeline or run in the background, set DOFORK so we
3923 make the child early, before word expansion. This keeps assignment
3924 statements from affecting the parent shell's environment when they
3925 should not. */
3926 dofork = pipe_in != NO_PIPE || pipe_out != NO_PIPE || async;
3927
3928 /* Something like `%2 &' should restart job 2 in the background, not cause
3929 the shell to fork here. */
3930 if (dofork && pipe_in == NO_PIPE && pipe_out == NO_PIPE &&
3931 simple_command->words && simple_command->words->word &&
3932 simple_command->words->word->word &&
3933 (simple_command->words->word->word[0] == '%'))
3934 dofork = 0;
3935
3936 if (dofork)
cce855bc 3937 {
bb70624e
JA
3938 /* Do this now, because execute_disk_command will do it anyway in the
3939 vast majority of cases. */
3940 maybe_make_export_env ();
3941
95732b49
JA
3942 /* Don't let a DEBUG trap overwrite the command string to be saved with
3943 the process/job associated with this child. */
3944 if (make_child (savestring (the_printed_command_except_trap), async) == 0)
cce855bc
JA
3945 {
3946 already_forked = 1;
3947 simple_command->flags |= CMD_NO_FORK;
3948
95732b49
JA
3949 subshell_environment = SUBSHELL_FORK;
3950 if (pipe_in != NO_PIPE || pipe_out != NO_PIPE)
3951 subshell_environment |= SUBSHELL_PIPE;
3952 if (async)
3953 subshell_environment |= SUBSHELL_ASYNC;
28ef6c31 3954
bb70624e
JA
3955 /* We need to do this before piping to handle some really
3956 pathological cases where one of the pipe file descriptors
3957 is < 2. */
3958 if (fds_to_close)
3959 close_fd_bitmap (fds_to_close);
3960
cce855bc 3961 do_piping (pipe_in, pipe_out);
f73dda09 3962 pipe_in = pipe_out = NO_PIPE;
3185942a
JA
3963#if defined (COPROCESS_SUPPORT)
3964 coproc_closeall ();
3965#endif
cce855bc 3966
b72432fd 3967 last_asynchronous_pid = old_last_async_pid;
ac50fbac
CR
3968
3969 CHECK_SIGTERM;
cce855bc
JA
3970 }
3971 else
3972 {
495aee44
CR
3973 /* Don't let simple commands that aren't the last command in a
3974 pipeline change $? for the rest of the pipeline (or at all). */
3975 if (pipe_out != NO_PIPE)
3976 result = last_command_exit_value;
cce855bc
JA
3977 close_pipes (pipe_in, pipe_out);
3978#if defined (PROCESS_SUBSTITUTION) && defined (HAVE_DEV_FD)
ac50fbac
CR
3979 /* Close /dev/fd file descriptors in the parent after forking the
3980 last child in a (possibly one-element) pipeline. Defer this
3981 until any running shell function completes. */
3982 if (pipe_out == NO_PIPE && variable_context == 0) /* XXX */
3983 unlink_fifo_list (); /* XXX */
cce855bc
JA
3984#endif
3985 command_line = (char *)NULL; /* don't free this. */
3986 bind_lastarg ((char *)NULL);
3987 return (result);
3988 }
3989 }
3990
726f6388
JA
3991 /* If we are re-running this as the result of executing the `command'
3992 builtin, do not expand the command words a second time. */
3993 if ((simple_command->flags & CMD_INHIBIT_EXPANSION) == 0)
3994 {
3995 current_fds_to_close = fds_to_close;
ccc6cda3 3996 fix_assignment_words (simple_command->words);
3185942a
JA
3997 /* Pass the ignore return flag down to command substitutions */
3998 if (simple_command->flags & CMD_IGNORE_RETURN) /* XXX */
3999 comsub_ignore_return++;
726f6388 4000 words = expand_words (simple_command->words);
3185942a
JA
4001 if (simple_command->flags & CMD_IGNORE_RETURN)
4002 comsub_ignore_return--;
726f6388
JA
4003 current_fds_to_close = (struct fd_bitmap *)NULL;
4004 }
4005 else
4006 words = copy_word_list (simple_command->words);
4007
726f6388
JA
4008 /* It is possible for WORDS not to have anything left in it.
4009 Perhaps all the words consisted of `$foo', and there was
4010 no variable `$foo'. */
ccc6cda3 4011 if (words == 0)
726f6388 4012 {
b80f6443 4013 this_command_name = 0;
ccc6cda3 4014 result = execute_null_command (simple_command->redirects,
cce855bc 4015 pipe_in, pipe_out,
95732b49 4016 already_forked ? 0 : async);
cce855bc
JA
4017 if (already_forked)
4018 exit (result);
4019 else
4020 {
4021 bind_lastarg ((char *)NULL);
4022 set_pipestatus_from_exit (result);
4023 return (result);
4024 }
ccc6cda3 4025 }
726f6388 4026
ccc6cda3 4027 lastarg = (char *)NULL;
726f6388 4028
ccc6cda3 4029 begin_unwind_frame ("simple-command");
726f6388 4030
ccc6cda3 4031 if (echo_command_at_execute)
b80f6443 4032 xtrace_print_word_list (words, 1);
726f6388 4033
f73dda09 4034 builtin = (sh_builtin_func_t *)NULL;
ccc6cda3
JA
4035 func = (SHELL_VAR *)NULL;
4036 if ((simple_command->flags & CMD_NO_FUNCTIONS) == 0)
4037 {
4038 /* Posix.2 says special builtins are found before functions. We
4039 don't set builtin_is_special anywhere other than here, because
4040 this path is followed only when the `command' builtin is *not*
4041 being used, and we don't want to exit the shell if a special
4042 builtin executed with `command builtin' fails. `command' is not
4043 a special builtin. */
4044 if (posixly_correct)
4045 {
4046 builtin = find_special_builtin (words->word->word);
4047 if (builtin)
4048 builtin_is_special = 1;
726f6388 4049 }
ccc6cda3 4050 if (builtin == 0)
726f6388 4051 func = find_function (words->word->word);
ccc6cda3 4052 }
726f6388 4053
b80f6443
JA
4054 /* In POSIX mode, assignment errors in the temporary environment cause a
4055 non-interactive shell to exit. */
ac50fbac 4056 if (posixly_correct && builtin_is_special && interactive_shell == 0 && tempenv_assign_error)
b80f6443
JA
4057 {
4058 last_command_exit_value = EXECUTION_FAILURE;
4059 jump_to_top_level (ERREXIT);
4060 }
ac50fbac 4061 tempenv_assign_error = 0; /* don't care about this any more */
b80f6443 4062
ccc6cda3
JA
4063 add_unwind_protect (dispose_words, words);
4064 QUIT;
726f6388 4065
ccc6cda3
JA
4066 /* Bind the last word in this command to "$_" after execution. */
4067 for (lastword = words; lastword->next; lastword = lastword->next)
4068 ;
4069 lastarg = lastword->word->word;
726f6388
JA
4070
4071#if defined (JOB_CONTROL)
ccc6cda3 4072 /* Is this command a job control related thing? */
cce855bc 4073 if (words->word->word[0] == '%' && already_forked == 0)
ccc6cda3
JA
4074 {
4075 this_command_name = async ? "bg" : "fg";
726f6388 4076 last_shell_builtin = this_shell_builtin;
ccc6cda3
JA
4077 this_shell_builtin = builtin_address (this_command_name);
4078 result = (*this_shell_builtin) (words);
4079 goto return_result;
4080 }
726f6388 4081
ac50fbac 4082 /* One other possibililty. The user may want to resume an existing job.
ccc6cda3
JA
4083 If they do, find out whether this word is a candidate for a running
4084 job. */
cce855bc 4085 if (job_control && already_forked == 0 && async == 0 &&
ccc6cda3
JA
4086 !first_word_quoted &&
4087 !words->next &&
4088 words->word->word[0] &&
4089 !simple_command->redirects &&
4090 pipe_in == NO_PIPE &&
4091 pipe_out == NO_PIPE &&
4092 (temp = get_string_value ("auto_resume")))
4093 {
7117c2d2 4094 int job, jflags, started_status;
ccc6cda3 4095
7117c2d2
JA
4096 jflags = JM_STOPPED|JM_FIRSTMATCH;
4097 if (STREQ (temp, "exact"))
4098 jflags |= JM_EXACT;
4099 else if (STREQ (temp, "substring"))
4100 jflags |= JM_SUBSTRING;
4101 else
4102 jflags |= JM_PREFIX;
4103 job = get_job_by_name (words->word->word, jflags);
4104 if (job != NO_JOB)
726f6388 4105 {
7117c2d2
JA
4106 run_unwind_frame ("simple-command");
4107 this_command_name = "fg";
4108 last_shell_builtin = this_shell_builtin;
4109 this_shell_builtin = builtin_address ("fg");
ccc6cda3 4110
7117c2d2
JA
4111 started_status = start_job (job, 1);
4112 return ((started_status < 0) ? EXECUTION_FAILURE : started_status);
726f6388 4113 }
ccc6cda3
JA
4114 }
4115#endif /* JOB_CONTROL */
726f6388 4116
3185942a 4117run_builtin:
ccc6cda3
JA
4118 /* Remember the name of this command globally. */
4119 this_command_name = words->word->word;
726f6388 4120
ccc6cda3
JA
4121 QUIT;
4122
4123 /* This command could be a shell builtin or a user-defined function.
4124 We have already found special builtins by this time, so we do not
4125 set builtin_is_special. If this is a function or builtin, and we
4126 have pipes, then fork a subshell in here. Otherwise, just execute
4127 the command directly. */
4128 if (func == 0 && builtin == 0)
4129 builtin = find_shell_builtin (this_command_name);
4130
4131 last_shell_builtin = this_shell_builtin;
4132 this_shell_builtin = builtin;
4133
4134 if (builtin || func)
726f6388 4135 {
3185942a 4136 if (builtin)
495aee44
CR
4137 {
4138 old_builtin = executing_builtin;
4139 old_command_builtin = executing_command_builtin;
4140 unwind_protect_int (executing_builtin); /* modified in execute_builtin */
4141 unwind_protect_int (executing_command_builtin); /* ditto */
4142 }
28ef6c31 4143 if (already_forked)
726f6388 4144 {
cce855bc 4145 /* reset_terminating_signals (); */ /* XXX */
495aee44
CR
4146 /* Reset the signal handlers in the child, but don't free the
4147 trap strings. Set a flag noting that we have to free the
4148 trap strings if we run trap to change a signal disposition. */
4149 reset_signal_handlers ();
4150 subshell_environment |= SUBSHELL_RESETTRAP;
726f6388 4151
cce855bc 4152 if (async)
ccc6cda3 4153 {
cce855bc
JA
4154 if ((simple_command->flags & CMD_STDIN_REDIR) &&
4155 pipe_in == NO_PIPE &&
4156 (stdin_redirects (simple_command->redirects) == 0))
4157 async_redirect_stdin ();
4158 setup_async_signals ();
ccc6cda3 4159 }
cce855bc 4160
b80f6443 4161 subshell_level++;
cce855bc
JA
4162 execute_subshell_builtin_or_function
4163 (words, simple_command->redirects, builtin, func,
4164 pipe_in, pipe_out, async, fds_to_close,
4165 simple_command->flags);
b80f6443 4166 subshell_level--;
726f6388
JA
4167 }
4168 else
4169 {
ccc6cda3
JA
4170 result = execute_builtin_or_function
4171 (words, builtin, func, simple_command->redirects, fds_to_close,
4172 simple_command->flags);
4173 if (builtin)
4174 {
4175 if (result > EX_SHERRBASE)
4176 {
ac50fbac
CR
4177 switch (result)
4178 {
4179 case EX_REDIRFAIL:
4180 case EX_BADASSIGN:
4181 case EX_EXPFAIL:
4182 /* These errors cause non-interactive posix mode shells to exit */
4183 if (posixly_correct && builtin_is_special && interactive_shell == 0)
4184 {
4185 last_command_exit_value = EXECUTION_FAILURE;
4186 jump_to_top_level (ERREXIT);
4187 }
4188 }
cce855bc
JA
4189 result = builtin_status (result);
4190 if (builtin_is_special)
4191 special_builtin_failed = 1;
ccc6cda3
JA
4192 }
4193 /* In POSIX mode, if there are assignment statements preceding
4194 a special builtin, they persist after the builtin
4195 completes. */
4196 if (posixly_correct && builtin_is_special && temporary_env)
4197 merge_temporary_env ();
4198 }
4199 else /* function */
4200 {
4201 if (result == EX_USAGE)
4202 result = EX_BADUSAGE;
4203 else if (result > EX_SHERRBASE)
cce855bc 4204 result = EXECUTION_FAILURE;
ccc6cda3
JA
4205 }
4206
cce855bc
JA
4207 set_pipestatus_from_exit (result);
4208
726f6388
JA
4209 goto return_result;
4210 }
4211 }
726f6388 4212
3185942a
JA
4213 if (autocd && interactive && words->word && is_dirname (words->word->word))
4214 {
4215 words = make_word_list (make_word ("cd"), words);
4216 xtrace_print_word_list (words, 0);
4217 goto run_builtin;
4218 }
4219
cce855bc 4220 if (command_line == 0)
ac50fbac 4221 command_line = savestring (the_printed_command_except_trap ? the_printed_command_except_trap : "");
cce855bc 4222
f1be666c
JA
4223#if defined (PROCESS_SUBSTITUTION)
4224 if ((subshell_environment & SUBSHELL_COMSUB) && (simple_command->flags & CMD_NO_FORK) && fifos_pending() > 0)
4225 simple_command->flags &= ~CMD_NO_FORK;
4226#endif
4227
495aee44 4228 result = execute_disk_command (words, simple_command->redirects, command_line,
ccc6cda3 4229 pipe_in, pipe_out, async, fds_to_close,
d166f048 4230 simple_command->flags);
726f6388
JA
4231
4232 return_result:
4233 bind_lastarg (lastarg);
ccc6cda3 4234 FREE (command_line);
b80f6443 4235 dispose_words (words);
495aee44
CR
4236 if (builtin)
4237 {
4238 executing_builtin = old_builtin;
4239 executing_command_builtin = old_command_builtin;
4240 }
b80f6443
JA
4241 discard_unwind_frame ("simple-command");
4242 this_command_name = (char *)NULL; /* points to freed memory now */
726f6388
JA
4243 return (result);
4244}
4245
ccc6cda3
JA
4246/* Translate the special builtin exit statuses. We don't really need a
4247 function for this; it's a placeholder for future work. */
4248static int
4249builtin_status (result)
4250 int result;
4251{
4252 int r;
4253
4254 switch (result)
4255 {
4256 case EX_USAGE:
4257 r = EX_BADUSAGE;
4258 break;
4259 case EX_REDIRFAIL:
4260 case EX_BADSYNTAX:
4261 case EX_BADASSIGN:
4262 case EX_EXPFAIL:
4263 r = EXECUTION_FAILURE;
4264 break;
4265 default:
4266 r = EXECUTION_SUCCESS;
4267 break;
4268 }
4269 return (r);
4270}
4271
726f6388
JA
4272static int
4273execute_builtin (builtin, words, flags, subshell)
f73dda09 4274 sh_builtin_func_t *builtin;
726f6388
JA
4275 WORD_LIST *words;
4276 int flags, subshell;
4277{
d166f048 4278 int old_e_flag, result, eval_unwind;
7117c2d2 4279 int isbltinenv;
0001803f 4280 char *error_trap;
726f6388 4281
0001803f 4282 error_trap = 0;
ccc6cda3 4283 old_e_flag = exit_immediately_on_error;
ac50fbac 4284
726f6388
JA
4285 /* The eval builtin calls parse_and_execute, which does not know about
4286 the setting of flags, and always calls the execution functions with
4287 flags that will exit the shell on an error if -e is set. If the
4288 eval builtin is being called, and we're supposed to ignore the exit
0001803f
CR
4289 value of the command, we turn the -e flag off ourselves and disable
4290 the ERR trap, then restore them when the command completes. This is
4291 also a problem (as below) for the command and source/. builtins. */
3185942a
JA
4292 if (subshell == 0 && (flags & CMD_IGNORE_RETURN) &&
4293 (builtin == eval_builtin || builtin == command_builtin || builtin == source_builtin))
726f6388
JA
4294 {
4295 begin_unwind_frame ("eval_builtin");
4296 unwind_protect_int (exit_immediately_on_error);
ac50fbac 4297 unwind_protect_int (builtin_ignoring_errexit);
0001803f
CR
4298 error_trap = TRAP_STRING (ERROR_TRAP);
4299 if (error_trap)
4300 {
4301 error_trap = savestring (error_trap);
4302 add_unwind_protect (xfree, error_trap);
4303 add_unwind_protect (set_error_trap, error_trap);
4304 restore_default_signal (ERROR_TRAP);
4305 }
726f6388 4306 exit_immediately_on_error = 0;
ac50fbac 4307 builtin_ignoring_errexit = 1;
d166f048 4308 eval_unwind = 1;
726f6388 4309 }
d166f048
JA
4310 else
4311 eval_unwind = 0;
726f6388
JA
4312
4313 /* The temporary environment for a builtin is supposed to apply to
4314 all commands executed by that builtin. Currently, this is a
ac50fbac
CR
4315 problem only with the `unset', `source' and `eval' builtins.
4316 `mapfile' is a special case because it uses evalstring (same as
4317 eval or source) to run its callbacks. */
4318 isbltinenv = (builtin == source_builtin || builtin == eval_builtin || builtin == unset_builtin || builtin == mapfile_builtin);
95732b49 4319
7117c2d2 4320 if (isbltinenv)
726f6388
JA
4321 {
4322 if (subshell == 0)
4323 begin_unwind_frame ("builtin_env");
4324
4325 if (temporary_env)
4326 {
7117c2d2 4327 push_scope (VC_BLTNENV, temporary_env);
726f6388 4328 if (subshell == 0)
95732b49 4329 add_unwind_protect (pop_scope, (flags & CMD_COMMAND_BUILTIN) ? 0 : "1");
7117c2d2 4330 temporary_env = (HASH_TABLE *)NULL;
726f6388 4331 }
28ef6c31
JA
4332 }
4333
4334 /* `return' does a longjmp() back to a saved environment in execute_function.
4335 If a variable assignment list preceded the command, and the shell is
4336 running in POSIX mode, we need to merge that into the shell_variables
4337 table, since `return' is a POSIX special builtin. */
4338 if (posixly_correct && subshell == 0 && builtin == return_builtin && temporary_env)
4339 {
4340 begin_unwind_frame ("return_temp_env");
4341 add_unwind_protect (merge_temporary_env, (char *)NULL);
726f6388
JA
4342 }
4343
3185942a 4344 executing_builtin++;
495aee44 4345 executing_command_builtin |= builtin == command_builtin;
726f6388
JA
4346 result = ((*builtin) (words->next));
4347
28ef6c31
JA
4348 /* This shouldn't happen, but in case `return' comes back instead of
4349 longjmp'ing, we need to unwind. */
4350 if (posixly_correct && subshell == 0 && builtin == return_builtin && temporary_env)
4351 discard_unwind_frame ("return_temp_env");
4352
7117c2d2
JA
4353 if (subshell == 0 && isbltinenv)
4354 run_unwind_frame ("builtin_env");
726f6388 4355
d166f048 4356 if (eval_unwind)
726f6388 4357 {
ac50fbac
CR
4358 exit_immediately_on_error = errexit_flag;
4359 builtin_ignoring_errexit = 0;
0001803f
CR
4360 if (error_trap)
4361 {
4362 set_error_trap (error_trap);
4363 xfree (error_trap);
4364 }
726f6388
JA
4365 discard_unwind_frame ("eval_builtin");
4366 }
4367
4368 return (result);
4369}
4370
726f6388
JA
4371static int
4372execute_function (var, words, flags, fds_to_close, async, subshell)
4373 SHELL_VAR *var;
4374 WORD_LIST *words;
f73dda09 4375 int flags;
726f6388 4376 struct fd_bitmap *fds_to_close;
f73dda09 4377 int async, subshell;
726f6388
JA
4378{
4379 int return_val, result;
b80f6443
JA
4380 COMMAND *tc, *fc, *save_current;
4381 char *debug_trap, *error_trap, *return_trap;
4382#if defined (ARRAY_VARS)
95732b49 4383 SHELL_VAR *funcname_v, *nfv, *bash_source_v, *bash_lineno_v;
495aee44
CR
4384 ARRAY *funcname_a;
4385 volatile ARRAY *bash_source_a;
4386 volatile ARRAY *bash_lineno_a;
b80f6443
JA
4387#endif
4388 FUNCTION_DEF *shell_fn;
4389 char *sfile, *t;
f73dda09
JA
4390
4391 USE_VAR(fc);
726f6388 4392
0001803f
CR
4393 if (funcnest_max > 0 && funcnest >= funcnest_max)
4394 {
ac50fbac 4395 internal_error (_("%s: maximum function nesting level exceeded (%d)"), var->name, funcnest);
495aee44 4396 funcnest = 0; /* XXX - should we reset it somewhere else? */
0001803f
CR
4397 jump_to_top_level (DISCARD);
4398 }
0001803f 4399
b80f6443
JA
4400#if defined (ARRAY_VARS)
4401 GET_ARRAY_FROM_VAR ("FUNCNAME", funcname_v, funcname_a);
4402 GET_ARRAY_FROM_VAR ("BASH_SOURCE", bash_source_v, bash_source_a);
4403 GET_ARRAY_FROM_VAR ("BASH_LINENO", bash_lineno_v, bash_lineno_a);
4404#endif
4405
726f6388
JA
4406 tc = (COMMAND *)copy_command (function_cell (var));
4407 if (tc && (flags & CMD_IGNORE_RETURN))
4408 tc->flags |= CMD_IGNORE_RETURN;
4409
726f6388
JA
4410 if (subshell == 0)
4411 {
ccc6cda3 4412 begin_unwind_frame ("function_calling");
7117c2d2 4413 push_context (var->name, subshell, temporary_env);
726f6388
JA
4414 add_unwind_protect (pop_context, (char *)NULL);
4415 unwind_protect_int (line_number);
ccc6cda3
JA
4416 unwind_protect_int (return_catch_flag);
4417 unwind_protect_jmp_buf (return_catch);
4418 add_unwind_protect (dispose_command, (char *)tc);
bb70624e 4419 unwind_protect_pointer (this_shell_function);
ccc6cda3 4420 unwind_protect_int (loop_level);
0001803f 4421 unwind_protect_int (funcnest);
726f6388 4422 }
7117c2d2
JA
4423 else
4424 push_context (var->name, subshell, temporary_env); /* don't unwind-protect for subshells */
4425
4426 temporary_env = (HASH_TABLE *)NULL;
726f6388 4427
bb70624e
JA
4428 this_shell_function = var;
4429 make_funcname_visible (1);
4430
f73dda09
JA
4431 debug_trap = TRAP_STRING(DEBUG_TRAP);
4432 error_trap = TRAP_STRING(ERROR_TRAP);
b80f6443 4433 return_trap = TRAP_STRING(RETURN_TRAP);
f73dda09 4434
b80f6443
JA
4435 /* The order of the unwind protects for debug_trap, error_trap and
4436 return_trap is important here! unwind-protect commands are run
4437 in reverse order of registration. If this causes problems, take
4438 out the xfree unwind-protect calls and live with the small memory leak. */
4439
4440 /* function_trace_mode != 0 means that all functions inherit the DEBUG trap.
4441 if the function has the trace attribute set, it inherits the DEBUG trap */
4442 if (debug_trap && ((trace_p (var) == 0) && function_trace_mode == 0))
ccc6cda3
JA
4443 {
4444 if (subshell == 0)
4445 {
4446 debug_trap = savestring (debug_trap);
cce855bc 4447 add_unwind_protect (xfree, debug_trap);
ccc6cda3
JA
4448 add_unwind_protect (set_debug_trap, debug_trap);
4449 }
4450 restore_default_signal (DEBUG_TRAP);
4451 }
726f6388 4452
b80f6443
JA
4453 /* error_trace_mode != 0 means that functions inherit the ERR trap. */
4454 if (error_trap && error_trace_mode == 0)
f73dda09
JA
4455 {
4456 if (subshell == 0)
4457 {
4458 error_trap = savestring (error_trap);
4459 add_unwind_protect (xfree, error_trap);
4460 add_unwind_protect (set_error_trap, error_trap);
4461 }
4462 restore_default_signal (ERROR_TRAP);
4463 }
4464
95732b49
JA
4465 /* Shell functions inherit the RETURN trap if function tracing is on
4466 globally or on individually for this function. */
4467#if 0
b80f6443 4468 if (return_trap && ((trace_p (var) == 0) && function_trace_mode == 0))
95732b49
JA
4469#else
4470 if (return_trap && (signal_in_progress (DEBUG_TRAP) || ((trace_p (var) == 0) && function_trace_mode == 0)))
4471#endif
b80f6443
JA
4472 {
4473 if (subshell == 0)
4474 {
4475 return_trap = savestring (return_trap);
4476 add_unwind_protect (xfree, return_trap);
4477 add_unwind_protect (set_return_trap, return_trap);
4478 }
4479 restore_default_signal (RETURN_TRAP);
4480 }
4481
4482 funcnest++;
4483#if defined (ARRAY_VARS)
4484 /* This is quite similar to the code in shell.c and elsewhere. */
4485 shell_fn = find_function_def (this_shell_function->name);
4486 sfile = shell_fn ? shell_fn->source_file : "";
ac50fbac 4487 array_push ((ARRAY *)funcname_a, this_shell_function->name);
b80f6443 4488
ac50fbac 4489 array_push ((ARRAY *)bash_source_a, sfile);
b80f6443 4490 t = itos (executing_line_number ());
ac50fbac 4491 array_push ((ARRAY *)bash_lineno_a, t);
b80f6443
JA
4492 free (t);
4493#endif
4494
726f6388
JA
4495 /* The temporary environment for a function is supposed to apply to
4496 all commands executed within the function body. */
726f6388 4497
726f6388
JA
4498 remember_args (words->next, 1);
4499
b80f6443
JA
4500 /* Update BASH_ARGV and BASH_ARGC */
4501 if (debugging_mode)
4502 push_args (words->next);
4503
ccc6cda3 4504 /* Number of the line on which the function body starts. */
b80f6443 4505 line_number = function_line_number = tc->line;
726f6388 4506
726f6388 4507#if defined (JOB_CONTROL)
95732b49
JA
4508 if (subshell)
4509 stop_pipeline (async, (COMMAND *)NULL);
726f6388 4510#endif
726f6388 4511
95732b49 4512 fc = tc;
726f6388
JA
4513
4514 return_catch_flag++;
ac50fbac 4515 return_val = setjmp_nosigs (return_catch);
726f6388
JA
4516
4517 if (return_val)
95732b49
JA
4518 {
4519 result = return_catch_value;
4520 /* Run the RETURN trap in the function's context. */
4521 save_current = currently_executing_command;
4522 run_return_trap ();
4523 currently_executing_command = save_current;
4524 }
726f6388 4525 else
b80f6443
JA
4526 {
4527 /* Run the debug trap here so we can trap at the start of a function's
4528 execution rather than the execution of the body's first command. */
4529 showing_function_line = 1;
4530 save_current = currently_executing_command;
4531 result = run_debug_trap ();
4532#if defined (DEBUGGER)
4533 /* In debugging mode, if the DEBUG trap returns a non-zero status, we
4534 skip the command. */
4535 if (debugging_mode == 0 || result == EXECUTION_SUCCESS)
4536 {
4537 showing_function_line = 0;
4538 currently_executing_command = save_current;
4539 result = execute_command_internal (fc, 0, NO_PIPE, NO_PIPE, fds_to_close);
4540
4541 /* Run the RETURN trap in the function's context */
4542 save_current = currently_executing_command;
4543 run_return_trap ();
4544 currently_executing_command = save_current;
4545 }
4546#else
4547 result = execute_command_internal (fc, 0, NO_PIPE, NO_PIPE, fds_to_close);
95732b49
JA
4548
4549 save_current = currently_executing_command;
4550 run_return_trap ();
4551 currently_executing_command = save_current;
b80f6443
JA
4552#endif
4553 showing_function_line = 0;
4554 }
4555
4556 /* Restore BASH_ARGC and BASH_ARGV */
4557 if (debugging_mode)
4558 pop_args ();
726f6388 4559
ccc6cda3 4560 if (subshell == 0)
726f6388
JA
4561 run_unwind_frame ("function_calling");
4562
b80f6443 4563#if defined (ARRAY_VARS)
95732b49
JA
4564 /* These two variables cannot be unset, and cannot be affected by the
4565 function. */
ac50fbac
CR
4566 array_pop ((ARRAY *)bash_source_a);
4567 array_pop ((ARRAY *)bash_lineno_a);
95732b49
JA
4568
4569 /* FUNCNAME can be unset, and so can potentially be changed by the
4570 function. */
4571 GET_ARRAY_FROM_VAR ("FUNCNAME", nfv, funcname_a);
4572 if (nfv == funcname_v)
4573 array_pop (funcname_a);
b80f6443
JA
4574#endif
4575
bb70624e 4576 if (variable_context == 0 || this_shell_function == 0)
0001803f
CR
4577 {
4578 make_funcname_visible (0);
4579#if defined (PROCESS_SUBSTITUTION)
4580 unlink_fifo_list ();
4581#endif
4582 }
4583
726f6388
JA
4584 return (result);
4585}
4586
bb70624e
JA
4587/* A convenience routine for use by other parts of the shell to execute
4588 a particular shell function. */
4589int
4590execute_shell_function (var, words)
4591 SHELL_VAR *var;
4592 WORD_LIST *words;
4593{
4594 int ret;
4595 struct fd_bitmap *bitmap;
4596
4597 bitmap = new_fd_bitmap (FD_BITMAP_DEFAULT_SIZE);
4598 begin_unwind_frame ("execute-shell-function");
4599 add_unwind_protect (dispose_fd_bitmap, (char *)bitmap);
4600
4601 ret = execute_function (var, words, 0, bitmap, 0, 0);
4602
4603 dispose_fd_bitmap (bitmap);
4604 discard_unwind_frame ("execute-shell-function");
4605
4606 return ret;
4607}
4608
726f6388
JA
4609/* Execute a shell builtin or function in a subshell environment. This
4610 routine does not return; it only calls exit(). If BUILTIN is non-null,
4611 it points to a function to call to execute a shell builtin; otherwise
4612 VAR points at the body of a function to execute. WORDS is the arguments
4613 to the command, REDIRECTS specifies redirections to perform before the
4614 command is executed. */
4615static void
4616execute_subshell_builtin_or_function (words, redirects, builtin, var,
4617 pipe_in, pipe_out, async, fds_to_close,
4618 flags)
4619 WORD_LIST *words;
4620 REDIRECT *redirects;
f73dda09 4621 sh_builtin_func_t *builtin;
726f6388
JA
4622 SHELL_VAR *var;
4623 int pipe_in, pipe_out, async;
4624 struct fd_bitmap *fds_to_close;
4625 int flags;
4626{
0628567a 4627 int result, r, funcvalue;
bb70624e
JA
4628#if defined (JOB_CONTROL)
4629 int jobs_hack;
726f6388 4630
b72432fd
JA
4631 jobs_hack = (builtin == jobs_builtin) &&
4632 ((subshell_environment & SUBSHELL_ASYNC) == 0 || pipe_out != NO_PIPE);
bb70624e
JA
4633#endif
4634
4635 /* A subshell is neither a login shell nor interactive. */
4636 login_shell = interactive = 0;
b72432fd 4637
0628567a
JA
4638 if (async)
4639 subshell_environment |= SUBSHELL_ASYNC;
4640 if (pipe_in != NO_PIPE || pipe_out != NO_PIPE)
4641 subshell_environment |= SUBSHELL_PIPE;
726f6388 4642
ccc6cda3 4643 maybe_make_export_env (); /* XXX - is this needed? */
726f6388
JA
4644
4645#if defined (JOB_CONTROL)
4646 /* Eradicate all traces of job control after we fork the subshell, so
4647 all jobs begun by this subshell are in the same process group as
4648 the shell itself. */
4649
4650 /* Allow the output of `jobs' to be piped. */
b72432fd 4651 if (jobs_hack)
726f6388
JA
4652 kill_current_pipeline ();
4653 else
4654 without_job_control ();
4655
4656 set_sigchld_handler ();
4657#endif /* JOB_CONTROL */
4658
4659 set_sigint_handler ();
4660
726f6388
JA
4661 if (fds_to_close)
4662 close_fd_bitmap (fds_to_close);
4663
bb70624e
JA
4664 do_piping (pipe_in, pipe_out);
4665
b80f6443 4666 if (do_redirections (redirects, RX_ACTIVE) != 0)
726f6388
JA
4667 exit (EXECUTION_FAILURE);
4668
4669 if (builtin)
4670 {
726f6388
JA
4671 /* Give builtins a place to jump back to on failure,
4672 so we don't go back up to main(). */
ac50fbac 4673 result = setjmp_nosigs (top_level);
726f6388 4674
0628567a
JA
4675 /* Give the return builtin a place to jump to when executed in a subshell
4676 or pipeline */
4677 funcvalue = 0;
4678 if (return_catch_flag && builtin == return_builtin)
ac50fbac 4679 funcvalue = setjmp_nosigs (return_catch);
0628567a 4680
726f6388
JA
4681 if (result == EXITPROG)
4682 exit (last_command_exit_value);
4683 else if (result)
4684 exit (EXECUTION_FAILURE);
0628567a
JA
4685 else if (funcvalue)
4686 exit (return_catch_value);
726f6388 4687 else
cce855bc
JA
4688 {
4689 r = execute_builtin (builtin, words, flags, 1);
3185942a 4690 fflush (stdout);
cce855bc
JA
4691 if (r == EX_USAGE)
4692 r = EX_BADUSAGE;
4693 exit (r);
4694 }
726f6388
JA
4695 }
4696 else
3185942a
JA
4697 {
4698 r = execute_function (var, words, flags, fds_to_close, async, 1);
4699 fflush (stdout);
4700 exit (r);
4701 }
726f6388
JA
4702}
4703
4704/* Execute a builtin or function in the current shell context. If BUILTIN
4705 is non-null, it is the builtin command to execute, otherwise VAR points
4706 to the body of a function. WORDS are the command's arguments, REDIRECTS
4707 are the redirections to perform. FDS_TO_CLOSE is the usual bitmap of
4708 file descriptors to close.
4709
4710 If BUILTIN is exec_builtin, the redirections specified in REDIRECTS are
4711 not undone before this function returns. */
4712static int
4713execute_builtin_or_function (words, builtin, var, redirects,
4714 fds_to_close, flags)
4715 WORD_LIST *words;
f73dda09 4716 sh_builtin_func_t *builtin;
726f6388
JA
4717 SHELL_VAR *var;
4718 REDIRECT *redirects;
4719 struct fd_bitmap *fds_to_close;
4720 int flags;
4721{
ccc6cda3 4722 int result;
726f6388 4723 REDIRECT *saved_undo_list;
495aee44
CR
4724#if defined (PROCESS_SUBSTITUTION)
4725 int ofifo, nfifo, osize;
4726 char *ofifo_list;
4727#endif
4728
4729
4730#if defined (PROCESS_SUBSTITUTION)
4731 ofifo = num_fifos ();
4732 ofifo_list = copy_fifo_list (&osize);
4733#endif
726f6388 4734
b80f6443 4735 if (do_redirections (redirects, RX_ACTIVE|RX_UNDOABLE) != 0)
726f6388
JA
4736 {
4737 cleanup_redirects (redirection_undo_list);
4738 redirection_undo_list = (REDIRECT *)NULL;
4739 dispose_exec_redirects ();
495aee44
CR
4740#if defined (PROCESS_SUBSTITUTION)
4741 free (ofifo_list);
4742#endif
ccc6cda3 4743 return (EX_REDIRFAIL); /* was EXECUTION_FAILURE */
726f6388
JA
4744 }
4745
4746 saved_undo_list = redirection_undo_list;
4747
4748 /* Calling the "exec" builtin changes redirections forever. */
4749 if (builtin == exec_builtin)
4750 {
4751 dispose_redirects (saved_undo_list);
4752 saved_undo_list = exec_redirection_undo_list;
4753 exec_redirection_undo_list = (REDIRECT *)NULL;
4754 }
4755 else
4756 dispose_exec_redirects ();
4757
4758 if (saved_undo_list)
4759 {
4760 begin_unwind_frame ("saved redirects");
ccc6cda3 4761 add_unwind_protect (cleanup_redirects, (char *)saved_undo_list);
726f6388
JA
4762 }
4763
4764 redirection_undo_list = (REDIRECT *)NULL;
4765
4766 if (builtin)
4767 result = execute_builtin (builtin, words, flags, 0);
4768 else
4769 result = execute_function (var, words, flags, fds_to_close, 0, 0);
4770
b80f6443 4771 /* We do this before undoing the effects of any redirections. */
3185942a
JA
4772 fflush (stdout);
4773 fpurge (stdout);
b80f6443
JA
4774 if (ferror (stdout))
4775 clearerr (stdout);
4776
28ef6c31
JA
4777 /* If we are executing the `command' builtin, but this_shell_builtin is
4778 set to `exec_builtin', we know that we have something like
4779 `command exec [redirection]', since otherwise `exec' would have
4780 overwritten the shell and we wouldn't get here. In this case, we
4781 want to behave as if the `command' builtin had not been specified
4782 and preserve the redirections. */
4783 if (builtin == command_builtin && this_shell_builtin == exec_builtin)
4784 {
495aee44
CR
4785 int discard;
4786
4787 discard = 0;
28ef6c31 4788 if (saved_undo_list)
495aee44
CR
4789 {
4790 dispose_redirects (saved_undo_list);
4791 discard = 1;
4792 }
28ef6c31
JA
4793 redirection_undo_list = exec_redirection_undo_list;
4794 saved_undo_list = exec_redirection_undo_list = (REDIRECT *)NULL;
495aee44
CR
4795 if (discard)
4796 discard_unwind_frame ("saved redirects");
28ef6c31
JA
4797 }
4798
726f6388
JA
4799 if (saved_undo_list)
4800 {
4801 redirection_undo_list = saved_undo_list;
4802 discard_unwind_frame ("saved redirects");
4803 }
4804
4805 if (redirection_undo_list)
4806 {
ccc6cda3 4807 cleanup_redirects (redirection_undo_list);
726f6388
JA
4808 redirection_undo_list = (REDIRECT *)NULL;
4809 }
4810
495aee44
CR
4811#if defined (PROCESS_SUBSTITUTION)
4812 /* Close any FIFOs created by this builtin or function. */
4813 nfifo = num_fifos ();
4814 if (nfifo > ofifo)
4815 close_new_fifos (ofifo_list, osize);
4816 free (ofifo_list);
4817#endif
4818
726f6388
JA
4819 return (result);
4820}
4821
4822void
4823setup_async_signals ()
4824{
b72432fd
JA
4825#if defined (__BEOS__)
4826 set_signal_handler (SIGHUP, SIG_IGN); /* they want csh-like behavior */
4827#endif
4828
726f6388
JA
4829#if defined (JOB_CONTROL)
4830 if (job_control == 0)
4831#endif
4832 {
ac50fbac
CR
4833 /* Make sure we get the original signal dispositions now so we don't
4834 confuse the trap builtin later if the subshell tries to use it to
4835 reset SIGINT/SIGQUIT. Don't call set_signal_ignored; that sets
4836 the value of original_signals to SIG_IGN. Posix interpretation 751. */
4837 get_original_signal (SIGINT);
726f6388 4838 set_signal_handler (SIGINT, SIG_IGN);
ac50fbac
CR
4839
4840 get_original_signal (SIGQUIT);
726f6388 4841 set_signal_handler (SIGQUIT, SIG_IGN);
726f6388
JA
4842 }
4843}
4844
4845/* Execute a simple command that is hopefully defined in a disk file
4846 somewhere.
4847
4848 1) fork ()
4849 2) connect pipes
4850 3) look up the command
4851 4) do redirections
4852 5) execve ()
4853 6) If the execve failed, see if the file has executable mode set.
4854 If so, and it isn't a directory, then execute its contents as
4855 a shell script.
4856
4857 Note that the filename hashing stuff has to take place up here,
4858 in the parent. This is probably why the Bourne style shells
4859 don't handle it, since that would require them to go through
b80f6443
JA
4860 this gnarly hair, for no good reason.
4861
4862 NOTE: callers expect this to fork or exit(). */
3185942a
JA
4863
4864/* Name of a shell function to call when a command name is not found. */
4865#ifndef NOTFOUND_HOOK
4866# define NOTFOUND_HOOK "command_not_found_handle"
4867#endif
4868
495aee44 4869static int
726f6388 4870execute_disk_command (words, redirects, command_line, pipe_in, pipe_out,
d166f048 4871 async, fds_to_close, cmdflags)
726f6388
JA
4872 WORD_LIST *words;
4873 REDIRECT *redirects;
4874 char *command_line;
4875 int pipe_in, pipe_out, async;
4876 struct fd_bitmap *fds_to_close;
d166f048 4877 int cmdflags;
726f6388 4878{
ccc6cda3 4879 char *pathname, *command, **args;
495aee44 4880 int nofork, result;
bb70624e 4881 pid_t pid;
3185942a
JA
4882 SHELL_VAR *hookf;
4883 WORD_LIST *wl;
726f6388 4884
d166f048 4885 nofork = (cmdflags & CMD_NO_FORK); /* Don't fork, just exec, if no pipes */
726f6388 4886 pathname = words->word->word;
ccc6cda3 4887
495aee44 4888 result = EXECUTION_SUCCESS;
726f6388 4889#if defined (RESTRICTED_SHELL)
b80f6443 4890 command = (char *)NULL;
0001803f 4891 if (restricted && mbschr (pathname, '/'))
726f6388 4892 {
b80f6443 4893 internal_error (_("%s: restricted: cannot specify `/' in command names"),
726f6388 4894 pathname);
495aee44 4895 result = last_command_exit_value = EXECUTION_FAILURE;
b80f6443
JA
4896
4897 /* If we're not going to fork below, we must already be in a child
4898 process or a context in which it's safe to call exit(2). */
4899 if (nofork && pipe_in == NO_PIPE && pipe_out == NO_PIPE)
4900 exit (last_command_exit_value);
4901 else
4902 goto parent_return;
726f6388
JA
4903 }
4904#endif /* RESTRICTED_SHELL */
4905
ac50fbac 4906 command = search_for_command (pathname, 1);
726f6388 4907
ccc6cda3 4908 if (command)
726f6388 4909 {
ccc6cda3
JA
4910 maybe_make_export_env ();
4911 put_command_name_into_env (command);
726f6388
JA
4912 }
4913
bb70624e 4914 /* We have to make the child before we check for the non-existence
726f6388
JA
4915 of COMMAND, since we want the error messages to be redirected. */
4916 /* If we can get away without forking and there are no pipes to deal with,
4917 don't bother to fork, just directly exec the command. */
4918 if (nofork && pipe_in == NO_PIPE && pipe_out == NO_PIPE)
4919 pid = 0;
4920 else
4921 pid = make_child (savestring (command_line), async);
4922
4923 if (pid == 0)
4924 {
4925 int old_interactive;
4926
495aee44 4927 reset_terminating_signals (); /* XXX */
726f6388
JA
4928 /* Cancel traps, in trap.c. */
4929 restore_original_signals ();
4930
ac50fbac
CR
4931 CHECK_SIGTERM;
4932
726f6388 4933 /* restore_original_signals may have undone the work done
cce855bc
JA
4934 by make_child to ensure that SIGINT and SIGQUIT are ignored
4935 in asynchronous children. */
726f6388 4936 if (async)
d166f048
JA
4937 {
4938 if ((cmdflags & CMD_STDIN_REDIR) &&
4939 pipe_in == NO_PIPE &&
4940 (stdin_redirects (redirects) == 0))
4941 async_redirect_stdin ();
4942 setup_async_signals ();
4943 }
726f6388 4944
bb70624e
JA
4945 /* This functionality is now provided by close-on-exec of the
4946 file descriptors manipulated by redirection and piping.
4947 Some file descriptors still need to be closed in all children
4948 because of the way bash does pipes; fds_to_close is a
4949 bitmap of all such file descriptors. */
4950 if (fds_to_close)
4951 close_fd_bitmap (fds_to_close);
4952
726f6388
JA
4953 do_piping (pipe_in, pipe_out);
4954
f73dda09 4955 old_interactive = interactive;
726f6388 4956 if (async)
f73dda09 4957 interactive = 0;
726f6388 4958
ccc6cda3 4959 subshell_environment = SUBSHELL_FORK;
726f6388 4960
b80f6443 4961 if (redirects && (do_redirections (redirects, RX_ACTIVE) != 0))
726f6388
JA
4962 {
4963#if defined (PROCESS_SUBSTITUTION)
4964 /* Try to remove named pipes that may have been created as the
4965 result of redirections. */
4966 unlink_fifo_list ();
4967#endif /* PROCESS_SUBSTITUTION */
4968 exit (EXECUTION_FAILURE);
4969 }
4970
4971 if (async)
4972 interactive = old_interactive;
4973
ccc6cda3 4974 if (command == 0)
726f6388 4975 {
3185942a
JA
4976 hookf = find_function (NOTFOUND_HOOK);
4977 if (hookf == 0)
4978 {
495aee44
CR
4979 /* Make sure filenames are displayed using printable characters */
4980 if (ansic_shouldquote (pathname))
4981 pathname = ansic_quote (pathname, 0, NULL);
3185942a
JA
4982 internal_error (_("%s: command not found"), pathname);
4983 exit (EX_NOTFOUND); /* Posix.2 says the exit status is 127 */
4984 }
4985
ac50fbac
CR
4986#if defined (JOB_CONTROL)
4987 /* May need to reinitialize more of the job control state here. */
4988 kill_current_pipeline ();
4989#endif
4990
3185942a
JA
4991 wl = make_word_list (make_word (NOTFOUND_HOOK), words);
4992 exit (execute_shell_function (hookf, wl));
726f6388
JA
4993 }
4994
ac50fbac
CR
4995 CHECK_SIGTERM;
4996
ccc6cda3
JA
4997 /* Execve expects the command name to be in args[0]. So we
4998 leave it there, in the same format that the user used to
4999 type it in. */
7117c2d2 5000 args = strvec_from_word_list (words, 0, 0, (int *)NULL);
726f6388
JA
5001 exit (shell_execve (command, args, export_env));
5002 }
5003 else
5004 {
b80f6443 5005parent_return:
ac50fbac
CR
5006 QUIT;
5007
726f6388
JA
5008 /* Make sure that the pipes are closed in the parent. */
5009 close_pipes (pipe_in, pipe_out);
5010#if defined (PROCESS_SUBSTITUTION) && defined (HAVE_DEV_FD)
0001803f
CR
5011 if (variable_context == 0)
5012 unlink_fifo_list ();
726f6388
JA
5013#endif
5014 FREE (command);
495aee44 5015 return (result);
726f6388
JA
5016 }
5017}
5018
28ef6c31
JA
5019/* CPP defines to decide whether a particular index into the #! line
5020 corresponds to a valid interpreter name or argument character, or
5021 whitespace. The MSDOS define is to allow \r to be treated the same
5022 as \n. */
5023
5024#if !defined (MSDOS)
5025# define STRINGCHAR(ind) \
f73dda09 5026 (ind < sample_len && !whitespace (sample[ind]) && sample[ind] != '\n')
28ef6c31 5027# define WHITECHAR(ind) \
f73dda09 5028 (ind < sample_len && whitespace (sample[ind]))
28ef6c31
JA
5029#else /* MSDOS */
5030# define STRINGCHAR(ind) \
f73dda09 5031 (ind < sample_len && !whitespace (sample[ind]) && sample[ind] != '\n' && sample[ind] != '\r')
28ef6c31 5032# define WHITECHAR(ind) \
f73dda09 5033 (ind < sample_len && whitespace (sample[ind]))
28ef6c31
JA
5034#endif /* MSDOS */
5035
f73dda09
JA
5036static char *
5037getinterp (sample, sample_len, endp)
5038 char *sample;
5039 int sample_len, *endp;
726f6388
JA
5040{
5041 register int i;
f73dda09
JA
5042 char *execname;
5043 int start;
726f6388
JA
5044
5045 /* Find the name of the interpreter to exec. */
f73dda09 5046 for (i = 2; i < sample_len && whitespace (sample[i]); i++)
726f6388
JA
5047 ;
5048
28ef6c31 5049 for (start = i; STRINGCHAR(i); i++)
726f6388
JA
5050 ;
5051
f73dda09
JA
5052 execname = substring (sample, start, i);
5053
5054 if (endp)
5055 *endp = i;
5056 return execname;
5057}
5058
5059#if !defined (HAVE_HASH_BANG_EXEC)
5060/* If the operating system on which we're running does not handle
5061 the #! executable format, then help out. SAMPLE is the text read
5062 from the file, SAMPLE_LEN characters. COMMAND is the name of
5063 the script; it and ARGS, the arguments given by the user, will
5064 become arguments to the specified interpreter. ENV is the environment
5065 to pass to the interpreter.
5066
5067 The word immediately following the #! is the interpreter to execute.
5068 A single argument to the interpreter is allowed. */
5069
5070static int
5071execute_shell_script (sample, sample_len, command, args, env)
5072 char *sample;
5073 int sample_len;
5074 char *command;
5075 char **args, **env;
5076{
5077 char *execname, *firstarg;
5078 int i, start, size_increment, larry;
5079
5080 /* Find the name of the interpreter to exec. */
5081 execname = getinterp (sample, sample_len, &i);
726f6388
JA
5082 size_increment = 1;
5083
5084 /* Now the argument, if any. */
28ef6c31 5085 for (firstarg = (char *)NULL, start = i; WHITECHAR(i); i++)
726f6388
JA
5086 ;
5087
5088 /* If there is more text on the line, then it is an argument for the
5089 interpreter. */
28ef6c31
JA
5090
5091 if (STRINGCHAR(i))
726f6388 5092 {
28ef6c31 5093 for (start = i; STRINGCHAR(i); i++)
726f6388 5094 ;
bb70624e 5095 firstarg = substring ((char *)sample, start, i);
726f6388
JA
5096 size_increment = 2;
5097 }
5098
7117c2d2
JA
5099 larry = strvec_len (args) + size_increment;
5100 args = strvec_resize (args, larry + 1);
726f6388
JA
5101
5102 for (i = larry - 1; i; i--)
5103 args[i] = args[i - size_increment];
5104
5105 args[0] = execname;
5106 if (firstarg)
5107 {
5108 args[1] = firstarg;
5109 args[2] = command;
5110 }
5111 else
5112 args[1] = command;
5113
5114 args[larry] = (char *)NULL;
5115
5116 return (shell_execve (execname, args, env));
5117}
28ef6c31
JA
5118#undef STRINGCHAR
5119#undef WHITECHAR
5120
ccc6cda3
JA
5121#endif /* !HAVE_HASH_BANG_EXEC */
5122
d166f048
JA
5123static void
5124initialize_subshell ()
5125{
5126#if defined (ALIAS)
5127 /* Forget about any aliases that we knew of. We are in a subshell. */
5128 delete_all_aliases ();
5129#endif /* ALIAS */
5130
5131#if defined (HISTORY)
5132 /* Forget about the history lines we have read. This is a non-interactive
5133 subshell. */
5134 history_lines_this_session = 0;
5135#endif
5136
5137#if defined (JOB_CONTROL)
5138 /* Forget about the way job control was working. We are in a subshell. */
5139 without_job_control ();
5140 set_sigchld_handler ();
95732b49 5141 init_job_stats ();
d166f048
JA
5142#endif /* JOB_CONTROL */
5143
5144 /* Reset the values of the shell flags and options. */
5145 reset_shell_flags ();
5146 reset_shell_options ();
5147 reset_shopt_options ();
5148
28ef6c31
JA
5149 /* Zero out builtin_env, since this could be a shell script run from a
5150 sourced file with a temporary environment supplied to the `source/.'
5151 builtin. Such variables are not supposed to be exported (empirical
7117c2d2
JA
5152 testing with sh and ksh). Just throw it away; don't worry about a
5153 memory leak. */
5154 if (vc_isbltnenv (shell_variables))
5155 shell_variables = shell_variables->down;
28ef6c31
JA
5156
5157 clear_unwind_protect_list (0);
f1be666c
JA
5158 /* XXX -- are there other things we should be resetting here? */
5159 parse_and_execute_level = 0; /* nothing left to restore it */
28ef6c31
JA
5160
5161 /* We're no longer inside a shell function. */
0001803f 5162 variable_context = return_catch_flag = funcnest = 0;
28ef6c31 5163
3185942a
JA
5164 executing_list = 0; /* XXX */
5165
d166f048
JA
5166 /* If we're not interactive, close the file descriptor from which we're
5167 reading the current shell script. */
cce855bc 5168 if (interactive_shell == 0)
b80f6443 5169 unset_bash_input (0);
d166f048
JA
5170}
5171
ccc6cda3
JA
5172#if defined (HAVE_SETOSTYPE) && defined (_POSIX_SOURCE)
5173# define SETOSTYPE(x) __setostype(x)
5174#else
5175# define SETOSTYPE(x)
5176#endif
726f6388 5177
28ef6c31
JA
5178#define READ_SAMPLE_BUF(file, buf, len) \
5179 do \
5180 { \
5181 fd = open(file, O_RDONLY); \
5182 if (fd >= 0) \
5183 { \
f73dda09 5184 len = read (fd, buf, 80); \
28ef6c31
JA
5185 close (fd); \
5186 } \
5187 else \
5188 len = -1; \
5189 } \
5190 while (0)
5191
726f6388
JA
5192/* Call execve (), handling interpreting shell scripts, and handling
5193 exec failures. */
5194int
5195shell_execve (command, args, env)
5196 char *command;
5197 char **args, **env;
5198{
ccc6cda3 5199 int larray, i, fd;
f73dda09 5200 char sample[80];
28ef6c31 5201 int sample_len;
ccc6cda3
JA
5202
5203 SETOSTYPE (0); /* Some systems use for USG/POSIX semantics */
726f6388 5204 execve (command, args, env);
28ef6c31 5205 i = errno; /* error from execve() */
3185942a 5206 CHECK_TERMSIG;
ccc6cda3 5207 SETOSTYPE (1);
726f6388
JA
5208
5209 /* If we get to this point, then start checking out the file.
5210 Maybe it is something we can hack ourselves. */
28ef6c31 5211 if (i != ENOEXEC)
ccc6cda3 5212 {
3185942a 5213 if (file_isdir (command))
495aee44
CR
5214#if defined (EISDIR)
5215 internal_error (_("%s: %s"), command, strerror (EISDIR));
5216#else
b80f6443 5217 internal_error (_("%s: is a directory"), command);
495aee44 5218#endif
7117c2d2
JA
5219 else if (executable_file (command) == 0)
5220 {
5221 errno = i;
5222 file_error (command);
5223 }
95732b49
JA
5224 /* errors not involving the path argument to execve. */
5225 else if (i == E2BIG || i == ENOMEM)
5226 {
5227 errno = i;
5228 file_error (command);
5229 }
ccc6cda3
JA
5230 else
5231 {
7117c2d2
JA
5232 /* The file has the execute bits set, but the kernel refuses to
5233 run it for some reason. See why. */
28ef6c31
JA
5234#if defined (HAVE_HASH_BANG_EXEC)
5235 READ_SAMPLE_BUF (command, sample, sample_len);
ac50fbac 5236 sample[sample_len - 1] = '\0';
28ef6c31
JA
5237 if (sample_len > 2 && sample[0] == '#' && sample[1] == '!')
5238 {
f73dda09 5239 char *interp;
95732b49 5240 int ilen;
f73dda09
JA
5241
5242 interp = getinterp (sample, sample_len, (int *)NULL);
95732b49 5243 ilen = strlen (interp);
28ef6c31 5244 errno = i;
95732b49
JA
5245 if (interp[ilen - 1] == '\r')
5246 {
5247 interp = xrealloc (interp, ilen + 2);
5248 interp[ilen - 1] = '^';
5249 interp[ilen] = 'M';
5250 interp[ilen + 1] = '\0';
5251 }
b80f6443 5252 sys_error (_("%s: %s: bad interpreter"), command, interp ? interp : "");
f73dda09 5253 FREE (interp);
28ef6c31
JA
5254 return (EX_NOEXEC);
5255 }
5256#endif
ccc6cda3 5257 errno = i;
726f6388 5258 file_error (command);
ccc6cda3 5259 }
d166f048 5260 return ((i == ENOENT) ? EX_NOTFOUND : EX_NOEXEC); /* XXX Posix.2 says that exit status is 126 */
ccc6cda3 5261 }
726f6388 5262
ccc6cda3
JA
5263 /* This file is executable.
5264 If it begins with #!, then help out people with losing operating
5265 systems. Otherwise, check to see if it is a binary file by seeing
28ef6c31
JA
5266 if the contents of the first line (or up to 80 characters) are in the
5267 ASCII set. If it's a text file, execute the contents as shell commands,
5268 otherwise return 126 (EX_BINARY_FILE). */
5269 READ_SAMPLE_BUF (command, sample, sample_len);
ccc6cda3 5270
28ef6c31
JA
5271 if (sample_len == 0)
5272 return (EXECUTION_SUCCESS);
ccc6cda3 5273
28ef6c31
JA
5274 /* Is this supposed to be an executable script?
5275 If so, the format of the line is "#! interpreter [argument]".
5276 A single argument is allowed. The BSD kernel restricts
5277 the length of the entire line to 32 characters (32 bytes
5278 being the size of the BSD exec header), but we allow 80
5279 characters. */
5280 if (sample_len > 0)
5281 {
ccc6cda3 5282#if !defined (HAVE_HASH_BANG_EXEC)
28ef6c31
JA
5283 if (sample_len > 2 && sample[0] == '#' && sample[1] == '!')
5284 return (execute_shell_script (sample, sample_len, command, args, env));
5285 else
ccc6cda3 5286#endif
28ef6c31
JA
5287 if (check_binary_file (sample, sample_len))
5288 {
ac50fbac 5289 internal_error (_("%s: cannot execute binary file: %s"), command, strerror (i));
28ef6c31 5290 return (EX_BINARY_FILE);
726f6388 5291 }
ccc6cda3
JA
5292 }
5293
28ef6c31
JA
5294 /* We have committed to attempting to execute the contents of this file
5295 as shell commands. */
5296
d166f048 5297 initialize_subshell ();
726f6388 5298
ccc6cda3 5299 set_sigint_handler ();
726f6388 5300
ccc6cda3 5301 /* Insert the name of this shell into the argument list. */
7117c2d2
JA
5302 larray = strvec_len (args) + 1;
5303 args = strvec_resize (args, larray + 1);
726f6388 5304
ccc6cda3
JA
5305 for (i = larray - 1; i; i--)
5306 args[i] = args[i - 1];
726f6388 5307
ccc6cda3
JA
5308 args[0] = shell_name;
5309 args[1] = command;
5310 args[larray] = (char *)NULL;
726f6388 5311
ccc6cda3
JA
5312 if (args[0][0] == '-')
5313 args[0]++;
726f6388 5314
ccc6cda3
JA
5315#if defined (RESTRICTED_SHELL)
5316 if (restricted)
5317 change_flag ('r', FLAG_OFF);
5318#endif
726f6388 5319
ccc6cda3
JA
5320 if (subshell_argv)
5321 {
5322 /* Can't free subshell_argv[0]; that is shell_name. */
5323 for (i = 1; i < subshell_argc; i++)
5324 free (subshell_argv[i]);
5325 free (subshell_argv);
5326 }
5327
5328 dispose_command (currently_executing_command); /* XXX */
5329 currently_executing_command = (COMMAND *)NULL;
5330
5331 subshell_argc = larray;
5332 subshell_argv = args;
5333 subshell_envp = env;
5334
5335 unbind_args (); /* remove the positional parameters */
5336
5337 longjmp (subshell_top_level, 1);
f73dda09 5338 /*NOTREACHED*/
ccc6cda3
JA
5339}
5340
5341static int
ac50fbac 5342execute_intern_function (name, funcdef)
ccc6cda3 5343 WORD_DESC *name;
ac50fbac 5344 FUNCTION_DEF *funcdef;
ccc6cda3
JA
5345{
5346 SHELL_VAR *var;
5347
5348 if (check_identifier (name, posixly_correct) == 0)
5349 {
5350 if (posixly_correct && interactive_shell == 0)
5351 {
3185942a 5352 last_command_exit_value = EX_BADUSAGE;
b80f6443 5353 jump_to_top_level (ERREXIT);
ccc6cda3
JA
5354 }
5355 return (EXECUTION_FAILURE);
5356 }
5357
ac50fbac
CR
5358 /* Posix interpretation 383 */
5359 if (posixly_correct && find_special_builtin (name->word))
5360 {
5361 internal_error (_("`%s': is a special builtin"), name->word);
5362 last_command_exit_value = EX_BADUSAGE;
5363 jump_to_top_level (ERREXIT);
5364 }
5365
ccc6cda3 5366 var = find_function (name->word);
28ef6c31 5367 if (var && (readonly_p (var) || noassign_p (var)))
ccc6cda3 5368 {
28ef6c31 5369 if (readonly_p (var))
b80f6443 5370 internal_error (_("%s: readonly function"), var->name);
ccc6cda3
JA
5371 return (EXECUTION_FAILURE);
5372 }
5373
ac50fbac
CR
5374#if defined (DEBUGGER)
5375 bind_function_def (name->word, funcdef);
5376#endif
5377
5378 bind_function (name->word, funcdef->command);
ccc6cda3 5379 return (EXECUTION_SUCCESS);
726f6388
JA
5380}
5381
d166f048 5382#if defined (INCLUDE_UNUSED)
726f6388 5383#if defined (PROCESS_SUBSTITUTION)
726f6388
JA
5384void
5385close_all_files ()
5386{
5387 register int i, fd_table_size;
5388
5389 fd_table_size = getdtablesize ();
5390 if (fd_table_size > 256) /* clamp to a reasonable value */
7117c2d2 5391 fd_table_size = 256;
726f6388
JA
5392
5393 for (i = 3; i < fd_table_size; i++)
5394 close (i);
5395}
5396#endif /* PROCESS_SUBSTITUTION */
d166f048 5397#endif
726f6388
JA
5398
5399static void
5400close_pipes (in, out)
5401 int in, out;
5402{
5403 if (in >= 0)
5404 close (in);
5405 if (out >= 0)
5406 close (out);
5407}
5408
b80f6443
JA
5409static void
5410dup_error (oldd, newd)
5411 int oldd, newd;
5412{
5413 sys_error (_("cannot duplicate fd %d to fd %d"), oldd, newd);
5414}
5415
726f6388
JA
5416/* Redirect input and output to be from and to the specified pipes.
5417 NO_PIPE and REDIRECT_BOTH are handled correctly. */
5418static void
5419do_piping (pipe_in, pipe_out)
5420 int pipe_in, pipe_out;
5421{
5422 if (pipe_in != NO_PIPE)
5423 {
5424 if (dup2 (pipe_in, 0) < 0)
b80f6443 5425 dup_error (pipe_in, 0);
726f6388 5426 if (pipe_in > 0)
cce855bc 5427 close (pipe_in);
495aee44
CR
5428#ifdef __CYGWIN__
5429 /* Let stdio know the fd may have changed from text to binary mode. */
5430 freopen (NULL, "r", stdin);
5431#endif /* __CYGWIN__ */
726f6388
JA
5432 }
5433 if (pipe_out != NO_PIPE)
5434 {
5435 if (pipe_out != REDIRECT_BOTH)
5436 {
5437 if (dup2 (pipe_out, 1) < 0)
b80f6443 5438 dup_error (pipe_out, 1);
726f6388
JA
5439 if (pipe_out == 0 || pipe_out > 1)
5440 close (pipe_out);
5441 }
5442 else
ccc6cda3 5443 {
cce855bc 5444 if (dup2 (1, 2) < 0)
b80f6443 5445 dup_error (1, 2);
ccc6cda3 5446 }
495aee44
CR
5447#ifdef __CYGWIN__
5448 /* Let stdio know the fd may have changed from text to binary mode, and
5449 make sure to preserve stdout line buffering. */
5450 freopen (NULL, "w", stdout);
5451 sh_setlinebuf (stdout);
5452#endif /* __CYGWIN__ */
d166f048 5453 }
726f6388 5454}