blob: 7bd6943d3ed65bb24c709af0b195825a26d65f39 [file] [log] [blame]
Tom Rini10e47792018-05-06 17:58:06 -04001// SPDX-License-Identifier: GPL-2.0+
wdenkfe8c2802002-11-03 00:38:21 +00002/*
3 * sh.c -- a prototype Bourne shell grammar parser
4 * Intended to follow the original Thompson and Ritchie
5 * "small and simple is beautiful" philosophy, which
6 * incidentally is a good match to today's BusyBox.
7 *
8 * Copyright (C) 2000,2001 Larry Doolittle <larry@doolittle.boa.org>
9 *
10 * Credits:
11 * The parser routines proper are all original material, first
12 * written Dec 2000 and Jan 2001 by Larry Doolittle.
13 * The execution engine, the builtins, and much of the underlying
14 * support has been adapted from busybox-0.49pre's lash,
15 * which is Copyright (C) 2000 by Lineo, Inc., and
16 * written by Erik Andersen <andersen@lineo.com>, <andersee@debian.org>.
17 * That, in turn, is based in part on ladsh.c, by Michael K. Johnson and
18 * Erik W. Troan, which they placed in the public domain. I don't know
19 * how much of the Johnson/Troan code has survived the repeated rewrites.
20 * Other credits:
wdenkfe8c2802002-11-03 00:38:21 +000021 * b_addchr() derived from similar w_addchar function in glibc-2.2
22 * setup_redirect(), redirect_opt_num(), and big chunks of main()
23 * and many builtins derived from contributions by Erik Andersen
24 * miscellaneous bugfixes from Matt Kraai
25 *
26 * There are two big (and related) architecture differences between
27 * this parser and the lash parser. One is that this version is
28 * actually designed from the ground up to understand nearly all
29 * of the Bourne grammar. The second, consequential change is that
30 * the parser and input reader have been turned inside out. Now,
31 * the parser is in control, and asks for input as needed. The old
32 * way had the input reader in control, and it asked for parsing to
33 * take place as needed. The new way makes it much easier to properly
34 * handle the recursion implicit in the various substitutions, especially
35 * across continuation lines.
36 *
37 * Bash grammar not implemented: (how many of these were in original sh?)
38 * $@ (those sure look like weird quoting rules)
39 * $_
40 * ! negation operator for pipes
41 * &> and >& redirection of stdout+stderr
42 * Brace Expansion
43 * Tilde Expansion
44 * fancy forms of Parameter Expansion
45 * aliases
46 * Arithmetic Expansion
47 * <(list) and >(list) Process Substitution
48 * reserved words: case, esac, select, function
49 * Here Documents ( << word )
50 * Functions
51 * Major bugs:
52 * job handling woefully incomplete and buggy
53 * reserved word execution woefully incomplete and buggy
54 * to-do:
55 * port selected bugfixes from post-0.49 busybox lash - done?
56 * finish implementing reserved words: for, while, until, do, done
57 * change { and } from special chars to reserved words
58 * builtins: break, continue, eval, return, set, trap, ulimit
59 * test magic exec
60 * handle children going into background
61 * clean up recognition of null pipes
62 * check setting of global_argc and global_argv
63 * control-C handling, probably with longjmp
64 * follow IFS rules more precisely, including update semantics
65 * figure out what to do with backslash-newline
66 * explain why we use signal instead of sigaction
67 * propagate syntax errors, die on resource errors?
68 * continuation lines, both explicit and implicit - done?
69 * memory leak finding and plugging - done?
70 * more testing, especially quoting rules and redirection
71 * document how quoting rules not precisely followed for variable assignments
72 * maybe change map[] to use 2-bit entries
73 * (eventually) remove all the printf's
wdenkfe8c2802002-11-03 00:38:21 +000074 */
Wolfgang Denkd79de1d2013-07-08 09:37:19 +020075
wdenkfe8c2802002-11-03 00:38:21 +000076#define __U_BOOT__
77#ifdef __U_BOOT__
Simon Glass5e6201b2019-08-01 09:46:51 -060078#include <env.h>
wdenkfe8c2802002-11-03 00:38:21 +000079#include <malloc.h> /* malloc, free, realloc*/
80#include <linux/ctype.h> /* isalpha, isdigit */
Simon Glassa73bda42015-11-08 23:47:45 -070081#include <console.h>
Simon Glass399ed9a2014-04-10 20:01:30 -060082#include <bootretry.h>
Simon Glassdec3c012014-04-10 20:01:25 -060083#include <cli.h>
Simon Glass299f0be2014-04-10 20:01:24 -060084#include <cli_hush.h>
wdenkfe8c2802002-11-03 00:38:21 +000085#include <command.h> /* find_cmd */
Simon Glass3ba929a2020-10-30 21:38:53 -060086#include <asm/global_data.h>
wdenkfe8c2802002-11-03 00:38:21 +000087#endif
wdenkfe8c2802002-11-03 00:38:21 +000088#ifndef __U_BOOT__
89#include <ctype.h> /* isalpha, isdigit */
90#include <unistd.h> /* getpid */
91#include <stdlib.h> /* getenv, atoi */
92#include <string.h> /* strchr */
93#include <stdio.h> /* popen etc. */
94#include <glob.h> /* glob, of course */
95#include <stdarg.h> /* va_list */
96#include <errno.h>
97#include <fcntl.h>
98#include <getopt.h> /* should be pretty obvious */
99
100#include <sys/stat.h> /* ulimit */
101#include <sys/types.h>
102#include <sys/wait.h>
103#include <signal.h>
104
105/* #include <dmalloc.h> */
wdenkfe8c2802002-11-03 00:38:21 +0000106
wdenke7f34c62003-01-11 09:48:40 +0000107#if 1
wdenkfe8c2802002-11-03 00:38:21 +0000108#include "busybox.h"
109#include "cmdedit.h"
110#else
111#define applet_name "hush"
112#include "standalone.h"
113#define hush_main main
wdenke7f34c62003-01-11 09:48:40 +0000114#define BB_BANNER
wdenkfe8c2802002-11-03 00:38:21 +0000115#endif
116#endif
117#define SPECIAL_VAR_SYMBOL 03
Joe Hershberger38de0b62012-08-17 10:26:30 +0000118#define SUBSTED_VAR_SYMBOL 04
wdenkfe8c2802002-11-03 00:38:21 +0000119#ifndef __U_BOOT__
120#define FLAG_EXIT_FROM_LOOP 1
121#define FLAG_PARSE_SEMICOLON (1 << 1) /* symbol ';' is special for parser */
122#define FLAG_REPARSING (1 << 2) /* >= 2nd pass */
123
124#endif
125
126#ifdef __U_BOOT__
Wolfgang Denk6405a152006-03-31 18:32:53 +0200127DECLARE_GLOBAL_DATA_PTR;
128
wdenkfe8c2802002-11-03 00:38:21 +0000129#define EXIT_SUCCESS 0
130#define EOF -1
131#define syntax() syntax_err()
132#define xstrdup strdup
133#define error_msg printf
134#else
135typedef enum {
136 REDIRECT_INPUT = 1,
137 REDIRECT_OVERWRITE = 2,
138 REDIRECT_APPEND = 3,
139 REDIRECT_HEREIS = 4,
140 REDIRECT_IO = 5
141} redir_type;
142
143/* The descrip member of this structure is only used to make debugging
144 * output pretty */
145struct {int mode; int default_fd; char *descrip;} redir_table[] = {
146 { 0, 0, "()" },
147 { O_RDONLY, 0, "<" },
148 { O_CREAT|O_TRUNC|O_WRONLY, 1, ">" },
149 { O_CREAT|O_APPEND|O_WRONLY, 1, ">>" },
150 { O_RDONLY, -1, "<<" },
151 { O_RDWR, 1, "<>" }
152};
153#endif
154
155typedef enum {
156 PIPE_SEQ = 1,
157 PIPE_AND = 2,
158 PIPE_OR = 3,
159 PIPE_BG = 4,
160} pipe_style;
161
162/* might eventually control execution */
163typedef enum {
164 RES_NONE = 0,
165 RES_IF = 1,
166 RES_THEN = 2,
167 RES_ELIF = 3,
168 RES_ELSE = 4,
169 RES_FI = 5,
170 RES_FOR = 6,
171 RES_WHILE = 7,
172 RES_UNTIL = 8,
173 RES_DO = 9,
174 RES_DONE = 10,
175 RES_XXXX = 11,
176 RES_IN = 12,
177 RES_SNTX = 13
178} reserved_style;
179#define FLAG_END (1<<RES_NONE)
180#define FLAG_IF (1<<RES_IF)
181#define FLAG_THEN (1<<RES_THEN)
182#define FLAG_ELIF (1<<RES_ELIF)
183#define FLAG_ELSE (1<<RES_ELSE)
184#define FLAG_FI (1<<RES_FI)
185#define FLAG_FOR (1<<RES_FOR)
186#define FLAG_WHILE (1<<RES_WHILE)
187#define FLAG_UNTIL (1<<RES_UNTIL)
188#define FLAG_DO (1<<RES_DO)
189#define FLAG_DONE (1<<RES_DONE)
190#define FLAG_IN (1<<RES_IN)
191#define FLAG_START (1<<RES_XXXX)
192
193/* This holds pointers to the various results of parsing */
194struct p_context {
195 struct child_prog *child;
196 struct pipe *list_head;
197 struct pipe *pipe;
198#ifndef __U_BOOT__
199 struct redir_struct *pending_redirect;
200#endif
201 reserved_style w;
202 int old_flag; /* for figuring out valid reserved words */
203 struct p_context *stack;
204 int type; /* define type of parser : ";$" common or special symbol */
205 /* How about quoting status? */
206};
207
208#ifndef __U_BOOT__
209struct redir_struct {
210 redir_type type; /* type of redirection */
211 int fd; /* file descriptor being redirected */
212 int dup; /* -1, or file descriptor being duplicated */
213 struct redir_struct *next; /* pointer to the next redirect in the list */
214 glob_t word; /* *word.gl_pathv is the filename */
215};
216#endif
217
218struct child_prog {
219#ifndef __U_BOOT__
220 pid_t pid; /* 0 if exited */
221#endif
222 char **argv; /* program name and arguments */
Stephen Warren60c38c92014-03-01 22:16:10 -0700223 /* was quoted when parsed; copy of struct o_string.nonnull field */
Simon Glass299f0be2014-04-10 20:01:24 -0600224 int *argv_nonnull;
wdenkfe8c2802002-11-03 00:38:21 +0000225#ifdef __U_BOOT__
226 int argc; /* number of program arguments */
227#endif
228 struct pipe *group; /* if non-NULL, first in group or subshell */
229#ifndef __U_BOOT__
230 int subshell; /* flag, non-zero if group must be forked */
231 struct redir_struct *redirects; /* I/O redirections */
232 glob_t glob_result; /* result of parameter globbing */
233 int is_stopped; /* is the program currently running? */
234 struct pipe *family; /* pointer back to the child's parent pipe */
235#endif
236 int sp; /* number of SPECIAL_VAR_SYMBOL */
237 int type;
238};
239
240struct pipe {
241#ifndef __U_BOOT__
242 int jobid; /* job number */
243#endif
244 int num_progs; /* total number of programs in job */
245#ifndef __U_BOOT__
246 int running_progs; /* number of programs running */
247 char *text; /* name of job */
248 char *cmdbuf; /* buffer various argv's point into */
249 pid_t pgrp; /* process group ID for the job */
250#endif
251 struct child_prog *progs; /* array of commands in pipe */
252 struct pipe *next; /* to track background commands */
253#ifndef __U_BOOT__
254 int stopped_progs; /* number of programs alive, but stopped */
255 int job_context; /* bitmask defining current context */
256#endif
257 pipe_style followup; /* PIPE_BG, PIPE_SEQ, PIPE_OR, PIPE_AND */
258 reserved_style r_mode; /* supports if, for, while, until */
259};
260
261#ifndef __U_BOOT__
262struct close_me {
263 int fd;
264 struct close_me *next;
265};
266#endif
267
268struct variables {
269 char *name;
270 char *value;
271 int flg_export;
272 int flg_read_only;
273 struct variables *next;
274};
275
276/* globals, connect us to the outside world
277 * the first three support $?, $#, and $1 */
278#ifndef __U_BOOT__
279char **global_argv;
280unsigned int global_argc;
281#endif
Kim Phillipsb052b602012-10-29 13:34:32 +0000282static unsigned int last_return_code;
wdenkfe8c2802002-11-03 00:38:21 +0000283#ifndef __U_BOOT__
284extern char **environ; /* This is in <unistd.h>, but protected with __USE_GNU */
285#endif
286
287/* "globals" within this file */
Wolfgang Denk7fb52662005-10-13 16:45:02 +0200288static uchar *ifs;
wdenkfe8c2802002-11-03 00:38:21 +0000289static char map[256];
290#ifndef __U_BOOT__
291static int fake_mode;
292static int interactive;
293static struct close_me *close_me_head;
294static const char *cwd;
295static struct pipe *job_list;
296static unsigned int last_bg_pid;
297static unsigned int last_jobid;
298static unsigned int shell_terminal;
299static char *PS1;
300static char *PS2;
301struct variables shell_ver = { "HUSH_VERSION", "0.01", 1, 1, 0 };
302struct variables *top_vars = &shell_ver;
303#else
304static int flag_repeat = 0;
305static int do_repeat = 0;
wdenkbd1575f2003-10-14 19:43:55 +0000306static struct variables *top_vars = NULL ;
wdenkfe8c2802002-11-03 00:38:21 +0000307#endif /*__U_BOOT__ */
308
309#define B_CHUNK (100)
310#define B_NOSPAC 1
311
312typedef struct {
313 char *data;
314 int length;
315 int maxlen;
316 int quote;
317 int nonnull;
318} o_string;
319#define NULL_O_STRING {NULL,0,0,0,0}
320/* used for initialization:
321 o_string foo = NULL_O_STRING; */
322
323/* I can almost use ordinary FILE *. Is open_memstream() universally
324 * available? Where is it documented? */
325struct in_str {
Heinrich Schuchardta52881e2023-05-02 04:34:09 +0200326 const unsigned char *p;
wdenkfe8c2802002-11-03 00:38:21 +0000327#ifndef __U_BOOT__
328 char peek_buf[2];
329#endif
330 int __promptme;
331 int promptmode;
332#ifndef __U_BOOT__
333 FILE *file;
334#endif
335 int (*get) (struct in_str *);
336 int (*peek) (struct in_str *);
337};
338#define b_getch(input) ((input)->get(input))
339#define b_peek(input) ((input)->peek(input))
340
341#ifndef __U_BOOT__
342#define JOB_STATUS_FORMAT "[%d] %-22s %.40s\n"
343
344struct built_in_command {
345 char *cmd; /* name */
346 char *descr; /* description */
347 int (*function) (struct child_prog *); /* function ptr */
348};
349#endif
350
Stefan Roesec23634d2008-08-19 14:57:55 +0200351/* define DEBUG_SHELL for debugging output (obviously ;-)) */
352#if 0
353#define DEBUG_SHELL
354#endif
355
wdenkfe8c2802002-11-03 00:38:21 +0000356/* This should be in utility.c */
357#ifdef DEBUG_SHELL
358#ifndef __U_BOOT__
359static void debug_printf(const char *format, ...)
360{
361 va_list args;
362 va_start(args, format);
363 vfprintf(stderr, format, args);
364 va_end(args);
365}
366#else
Stefan Roesec23634d2008-08-19 14:57:55 +0200367#define debug_printf(fmt,args...) printf (fmt ,##args)
wdenkfe8c2802002-11-03 00:38:21 +0000368#endif
369#else
370static inline void debug_printf(const char *format, ...) { }
371#endif
372#define final_printf debug_printf
373
374#ifdef __U_BOOT__
375static void syntax_err(void) {
376 printf("syntax error\n");
377}
378#else
379static void __syntax(char *file, int line) {
380 error_msg("syntax error %s:%d", file, line);
381}
382#define syntax() __syntax(__FILE__, __LINE__)
383#endif
384
385#ifdef __U_BOOT__
386static void *xmalloc(size_t size);
387static void *xrealloc(void *ptr, size_t size);
388#else
389/* Index of subroutines: */
390/* function prototypes for builtins */
391static int builtin_cd(struct child_prog *child);
392static int builtin_env(struct child_prog *child);
393static int builtin_eval(struct child_prog *child);
394static int builtin_exec(struct child_prog *child);
395static int builtin_exit(struct child_prog *child);
396static int builtin_export(struct child_prog *child);
397static int builtin_fg_bg(struct child_prog *child);
398static int builtin_help(struct child_prog *child);
399static int builtin_jobs(struct child_prog *child);
400static int builtin_pwd(struct child_prog *child);
401static int builtin_read(struct child_prog *child);
402static int builtin_set(struct child_prog *child);
403static int builtin_shift(struct child_prog *child);
404static int builtin_source(struct child_prog *child);
405static int builtin_umask(struct child_prog *child);
406static int builtin_unset(struct child_prog *child);
407static int builtin_not_written(struct child_prog *child);
408#endif
409/* o_string manipulation: */
410static int b_check_space(o_string *o, int len);
411static int b_addchr(o_string *o, int ch);
412static void b_reset(o_string *o);
413static int b_addqchr(o_string *o, int ch, int quote);
wdenk6203e402004-04-18 10:13:26 +0000414#ifndef __U_BOOT__
wdenkfe8c2802002-11-03 00:38:21 +0000415static int b_adduint(o_string *o, unsigned int i);
wdenk6203e402004-04-18 10:13:26 +0000416#endif
wdenkfe8c2802002-11-03 00:38:21 +0000417/* in_str manipulations: */
418static int static_get(struct in_str *i);
419static int static_peek(struct in_str *i);
420static int file_get(struct in_str *i);
421static int file_peek(struct in_str *i);
422#ifndef __U_BOOT__
423static void setup_file_in_str(struct in_str *i, FILE *f);
424#else
425static void setup_file_in_str(struct in_str *i);
426#endif
427static void setup_string_in_str(struct in_str *i, const char *s);
428#ifndef __U_BOOT__
429/* close_me manipulations: */
430static void mark_open(int fd);
431static void mark_closed(int fd);
wdenke7f34c62003-01-11 09:48:40 +0000432static void close_all(void);
wdenkfe8c2802002-11-03 00:38:21 +0000433#endif
434/* "run" the final data structures: */
435static char *indenter(int i);
436static int free_pipe_list(struct pipe *head, int indent);
437static int free_pipe(struct pipe *pi, int indent);
438/* really run the final data structures: */
439#ifndef __U_BOOT__
440static int setup_redirects(struct child_prog *prog, int squirrel[]);
441#endif
442static int run_list_real(struct pipe *pi);
443#ifndef __U_BOOT__
444static void pseudo_exec(struct child_prog *child) __attribute__ ((noreturn));
445#endif
446static int run_pipe_real(struct pipe *pi);
447/* extended glob support: */
448#ifndef __U_BOOT__
449static int globhack(const char *src, int flags, glob_t *pglob);
450static int glob_needed(const char *s);
451static int xglob(o_string *dest, int flags, glob_t *pglob);
452#endif
453/* variable assignment: */
454static int is_assignment(const char *s);
455/* data structure manipulation: */
456#ifndef __U_BOOT__
457static int setup_redirect(struct p_context *ctx, int fd, redir_type style, struct in_str *input);
458#endif
459static void initialize_context(struct p_context *ctx);
460static int done_word(o_string *dest, struct p_context *ctx);
461static int done_command(struct p_context *ctx);
462static int done_pipe(struct p_context *ctx, pipe_style type);
463/* primary string parsing: */
464#ifndef __U_BOOT__
465static int redirect_dup_num(struct in_str *input);
466static int redirect_opt_num(o_string *o);
467static int process_command_subs(o_string *dest, struct p_context *ctx, struct in_str *input, int subst_end);
468static int parse_group(o_string *dest, struct p_context *ctx, struct in_str *input, int ch);
469#endif
470static char *lookup_param(char *src);
Stephen Warren60c38c92014-03-01 22:16:10 -0700471static char *make_string(char **inp, int *nonnull);
wdenkfe8c2802002-11-03 00:38:21 +0000472static int handle_dollar(o_string *dest, struct p_context *ctx, struct in_str *input);
473#ifndef __U_BOOT__
474static int parse_string(o_string *dest, struct p_context *ctx, const char *src);
475#endif
476static int parse_stream(o_string *dest, struct p_context *ctx, struct in_str *input0, int end_trigger);
477/* setup: */
478static int parse_stream_outer(struct in_str *inp, int flag);
479#ifndef __U_BOOT__
480static int parse_string_outer(const char *s, int flag);
481static int parse_file_outer(FILE *f);
482#endif
483#ifndef __U_BOOT__
484/* job management: */
485static int checkjobs(struct pipe* fg_pipe);
486static void insert_bg_job(struct pipe *pi);
487static void remove_bg_job(struct pipe *pi);
488#endif
489/* local variable support */
490static char **make_list_in(char **inp, char *name);
491static char *insert_var_value(char *inp);
Joe Hershberger38de0b62012-08-17 10:26:30 +0000492static char *insert_var_value_sub(char *inp, int tag_subst);
wdenkfe8c2802002-11-03 00:38:21 +0000493
494#ifndef __U_BOOT__
495/* Table of built-in functions. They can be forked or not, depending on
496 * context: within pipes, they fork. As simple commands, they do not.
497 * When used in non-forking context, they can change global variables
498 * in the parent shell process. If forked, of course they can not.
499 * For example, 'unset foo | whatever' will parse and run, but foo will
500 * still be set at the end. */
501static struct built_in_command bltins[] = {
502 {"bg", "Resume a job in the background", builtin_fg_bg},
503 {"break", "Exit for, while or until loop", builtin_not_written},
504 {"cd", "Change working directory", builtin_cd},
505 {"continue", "Continue for, while or until loop", builtin_not_written},
506 {"env", "Print all environment variables", builtin_env},
507 {"eval", "Construct and run shell command", builtin_eval},
508 {"exec", "Exec command, replacing this shell with the exec'd process",
509 builtin_exec},
510 {"exit", "Exit from shell()", builtin_exit},
511 {"export", "Set environment variable", builtin_export},
512 {"fg", "Bring job into the foreground", builtin_fg_bg},
513 {"jobs", "Lists the active jobs", builtin_jobs},
514 {"pwd", "Print current directory", builtin_pwd},
515 {"read", "Input environment variable", builtin_read},
516 {"return", "Return from a function", builtin_not_written},
517 {"set", "Set/unset shell local variables", builtin_set},
518 {"shift", "Shift positional parameters", builtin_shift},
519 {"trap", "Trap signals", builtin_not_written},
520 {"ulimit","Controls resource limits", builtin_not_written},
521 {"umask","Sets file creation mask", builtin_umask},
522 {"unset", "Unset environment variable", builtin_unset},
523 {".", "Source-in and run commands in a file", builtin_source},
524 {"help", "List shell built-in commands", builtin_help},
525 {NULL, NULL, NULL}
526};
527
528static const char *set_cwd(void)
529{
530 if(cwd==unknown)
531 cwd = NULL; /* xgetcwd(arg) called free(arg) */
532 cwd = xgetcwd((char *)cwd);
533 if (!cwd)
534 cwd = unknown;
535 return cwd;
536}
537
538/* built-in 'eval' handler */
539static int builtin_eval(struct child_prog *child)
540{
541 char *str = NULL;
542 int rcode = EXIT_SUCCESS;
543
544 if (child->argv[1]) {
545 str = make_string(child->argv + 1);
546 parse_string_outer(str, FLAG_EXIT_FROM_LOOP |
547 FLAG_PARSE_SEMICOLON);
548 free(str);
549 rcode = last_return_code;
550 }
551 return rcode;
552}
553
554/* built-in 'cd <path>' handler */
555static int builtin_cd(struct child_prog *child)
556{
557 char *newdir;
558 if (child->argv[1] == NULL)
Simon Glass64b723f2017-08-03 12:22:12 -0600559 newdir = env_get("HOME");
wdenkfe8c2802002-11-03 00:38:21 +0000560 else
561 newdir = child->argv[1];
562 if (chdir(newdir)) {
563 printf("cd: %s: %s\n", newdir, strerror(errno));
564 return EXIT_FAILURE;
565 }
566 set_cwd();
567 return EXIT_SUCCESS;
568}
569
570/* built-in 'env' handler */
571static int builtin_env(struct child_prog *dummy)
572{
573 char **e = environ;
574 if (e == NULL) return EXIT_FAILURE;
575 for (; *e; e++) {
576 puts(*e);
577 }
578 return EXIT_SUCCESS;
579}
580
581/* built-in 'exec' handler */
582static int builtin_exec(struct child_prog *child)
583{
584 if (child->argv[1] == NULL)
585 return EXIT_SUCCESS; /* Really? */
586 child->argv++;
587 pseudo_exec(child);
588 /* never returns */
589}
590
591/* built-in 'exit' handler */
592static int builtin_exit(struct child_prog *child)
593{
594 if (child->argv[1] == NULL)
595 exit(last_return_code);
596 exit (atoi(child->argv[1]));
597}
598
599/* built-in 'export VAR=value' handler */
600static int builtin_export(struct child_prog *child)
601{
602 int res = 0;
603 char *name = child->argv[1];
604
605 if (name == NULL) {
606 return (builtin_env(child));
607 }
608
609 name = strdup(name);
610
611 if(name) {
612 char *value = strchr(name, '=');
613
614 if (!value) {
615 char *tmp;
616 /* They are exporting something without an =VALUE */
617
618 value = get_local_var(name);
619 if (value) {
620 size_t ln = strlen(name);
621
622 tmp = realloc(name, ln+strlen(value)+2);
623 if(tmp==NULL)
624 res = -1;
625 else {
626 sprintf(tmp+ln, "=%s", value);
627 name = tmp;
628 }
629 } else {
630 /* bash does not return an error when trying to export
631 * an undefined variable. Do likewise. */
632 res = 1;
633 }
634 }
635 }
636 if (res<0)
637 perror_msg("export");
638 else if(res==0)
639 res = set_local_var(name, 1);
640 else
641 res = 0;
642 free(name);
643 return res;
644}
645
646/* built-in 'fg' and 'bg' handler */
647static int builtin_fg_bg(struct child_prog *child)
648{
649 int i, jobnum;
650 struct pipe *pi=NULL;
651
652 if (!interactive)
653 return EXIT_FAILURE;
654 /* If they gave us no args, assume they want the last backgrounded task */
655 if (!child->argv[1]) {
656 for (pi = job_list; pi; pi = pi->next) {
657 if (pi->jobid == last_jobid) {
658 break;
659 }
660 }
661 if (!pi) {
662 error_msg("%s: no current job", child->argv[0]);
663 return EXIT_FAILURE;
664 }
665 } else {
666 if (sscanf(child->argv[1], "%%%d", &jobnum) != 1) {
667 error_msg("%s: bad argument '%s'", child->argv[0], child->argv[1]);
668 return EXIT_FAILURE;
669 }
670 for (pi = job_list; pi; pi = pi->next) {
671 if (pi->jobid == jobnum) {
672 break;
673 }
674 }
675 if (!pi) {
676 error_msg("%s: %d: no such job", child->argv[0], jobnum);
677 return EXIT_FAILURE;
678 }
679 }
680
681 if (*child->argv[0] == 'f') {
682 /* Put the job into the foreground. */
683 tcsetpgrp(shell_terminal, pi->pgrp);
684 }
685
686 /* Restart the processes in the job */
687 for (i = 0; i < pi->num_progs; i++)
688 pi->progs[i].is_stopped = 0;
689
690 if ( (i=kill(- pi->pgrp, SIGCONT)) < 0) {
691 if (i == ESRCH) {
692 remove_bg_job(pi);
693 } else {
694 perror_msg("kill (SIGCONT)");
695 }
696 }
697
698 pi->stopped_progs = 0;
699 return EXIT_SUCCESS;
700}
701
702/* built-in 'help' handler */
703static int builtin_help(struct child_prog *dummy)
704{
705 struct built_in_command *x;
706
707 printf("\nBuilt-in commands:\n");
708 printf("-------------------\n");
709 for (x = bltins; x->cmd; x++) {
710 if (x->descr==NULL)
711 continue;
712 printf("%s\t%s\n", x->cmd, x->descr);
713 }
714 printf("\n\n");
715 return EXIT_SUCCESS;
716}
717
718/* built-in 'jobs' handler */
719static int builtin_jobs(struct child_prog *child)
720{
721 struct pipe *job;
722 char *status_string;
723
724 for (job = job_list; job; job = job->next) {
725 if (job->running_progs == job->stopped_progs)
726 status_string = "Stopped";
727 else
728 status_string = "Running";
729
730 printf(JOB_STATUS_FORMAT, job->jobid, status_string, job->text);
731 }
732 return EXIT_SUCCESS;
733}
734
wdenkfe8c2802002-11-03 00:38:21 +0000735/* built-in 'pwd' handler */
736static int builtin_pwd(struct child_prog *dummy)
737{
738 puts(set_cwd());
739 return EXIT_SUCCESS;
740}
741
742/* built-in 'read VAR' handler */
743static int builtin_read(struct child_prog *child)
744{
745 int res;
746
747 if (child->argv[1]) {
748 char string[BUFSIZ];
749 char *var = 0;
750
751 string[0] = 0; /* In case stdin has only EOF */
752 /* read string */
753 fgets(string, sizeof(string), stdin);
754 chomp(string);
755 var = malloc(strlen(child->argv[1])+strlen(string)+2);
756 if(var) {
757 sprintf(var, "%s=%s", child->argv[1], string);
758 res = set_local_var(var, 0);
759 } else
760 res = -1;
761 if (res)
762 fprintf(stderr, "read: %m\n");
763 free(var); /* So not move up to avoid breaking errno */
764 return res;
765 } else {
766 do res=getchar(); while(res!='\n' && res!=EOF);
767 return 0;
768 }
769}
770
771/* built-in 'set VAR=value' handler */
772static int builtin_set(struct child_prog *child)
773{
774 char *temp = child->argv[1];
775 struct variables *e;
776
777 if (temp == NULL)
778 for(e = top_vars; e; e=e->next)
779 printf("%s=%s\n", e->name, e->value);
780 else
781 set_local_var(temp, 0);
782
783 return EXIT_SUCCESS;
784}
785
wdenkfe8c2802002-11-03 00:38:21 +0000786/* Built-in 'shift' handler */
787static int builtin_shift(struct child_prog *child)
788{
789 int n=1;
790 if (child->argv[1]) {
791 n=atoi(child->argv[1]);
792 }
793 if (n>=0 && n<global_argc) {
794 /* XXX This probably breaks $0 */
795 global_argc -= n;
796 global_argv += n;
797 return EXIT_SUCCESS;
798 } else {
799 return EXIT_FAILURE;
800 }
801}
802
803/* Built-in '.' handler (read-in and execute commands from file) */
804static int builtin_source(struct child_prog *child)
805{
806 FILE *input;
807 int status;
808
809 if (child->argv[1] == NULL)
810 return EXIT_FAILURE;
811
812 /* XXX search through $PATH is missing */
813 input = fopen(child->argv[1], "r");
814 if (!input) {
815 error_msg("Couldn't open file '%s'", child->argv[1]);
816 return EXIT_FAILURE;
817 }
818
819 /* Now run the file */
820 /* XXX argv and argc are broken; need to save old global_argv
821 * (pointer only is OK!) on this stack frame,
822 * set global_argv=child->argv+1, recurse, and restore. */
823 mark_open(fileno(input));
824 status = parse_file_outer(input);
825 mark_closed(fileno(input));
826 fclose(input);
827 return (status);
828}
829
830static int builtin_umask(struct child_prog *child)
831{
832 mode_t new_umask;
833 const char *arg = child->argv[1];
834 char *end;
835 if (arg) {
836 new_umask=strtoul(arg, &end, 8);
837 if (*end!='\0' || end == arg) {
838 return EXIT_FAILURE;
839 }
840 } else {
841 printf("%.3o\n", (unsigned int) (new_umask=umask(0)));
842 }
843 umask(new_umask);
844 return EXIT_SUCCESS;
845}
846
847/* built-in 'unset VAR' handler */
848static int builtin_unset(struct child_prog *child)
849{
850 /* bash returned already true */
851 unset_local_var(child->argv[1]);
852 return EXIT_SUCCESS;
853}
854
855static int builtin_not_written(struct child_prog *child)
856{
857 printf("builtin_%s not written\n",child->argv[0]);
858 return EXIT_FAILURE;
859}
860#endif
861
862static int b_check_space(o_string *o, int len)
863{
864 /* It would be easy to drop a more restrictive policy
865 * in here, such as setting a maximum string length */
866 if (o->length + len > o->maxlen) {
867 char *old_data = o->data;
868 /* assert (data == NULL || o->maxlen != 0); */
869 o->maxlen += max(2*len, B_CHUNK);
870 o->data = realloc(o->data, 1 + o->maxlen);
871 if (o->data == NULL) {
872 free(old_data);
873 }
874 }
875 return o->data == NULL;
876}
877
878static int b_addchr(o_string *o, int ch)
879{
880 debug_printf("b_addchr: %c %d %p\n", ch, o->length, o);
881 if (b_check_space(o, 1)) return B_NOSPAC;
882 o->data[o->length] = ch;
883 o->length++;
884 o->data[o->length] = '\0';
885 return 0;
886}
887
888static void b_reset(o_string *o)
889{
890 o->length = 0;
891 o->nonnull = 0;
892 if (o->data != NULL) *o->data = '\0';
893}
894
895static void b_free(o_string *o)
896{
897 b_reset(o);
wdenke7f34c62003-01-11 09:48:40 +0000898 free(o->data);
wdenkfe8c2802002-11-03 00:38:21 +0000899 o->data = NULL;
900 o->maxlen = 0;
901}
902
903/* My analysis of quoting semantics tells me that state information
904 * is associated with a destination, not a source.
905 */
906static int b_addqchr(o_string *o, int ch, int quote)
907{
908 if (quote && strchr("*?[\\",ch)) {
909 int rc;
910 rc = b_addchr(o, '\\');
911 if (rc) return rc;
912 }
913 return b_addchr(o, ch);
914}
915
wdenk6203e402004-04-18 10:13:26 +0000916#ifndef __U_BOOT__
wdenkfe8c2802002-11-03 00:38:21 +0000917static int b_adduint(o_string *o, unsigned int i)
918{
919 int r;
920 char *p = simple_itoa(i);
921 /* no escape checking necessary */
922 do r=b_addchr(o, *p++); while (r==0 && *p);
923 return r;
924}
wdenk6203e402004-04-18 10:13:26 +0000925#endif
wdenkfe8c2802002-11-03 00:38:21 +0000926
927static int static_get(struct in_str *i)
928{
Wolfgang Denkdc770c72008-07-14 15:19:07 +0200929 int ch = *i->p++;
wdenkfe8c2802002-11-03 00:38:21 +0000930 if (ch=='\0') return EOF;
931 return ch;
932}
933
934static int static_peek(struct in_str *i)
935{
936 return *i->p;
937}
938
939#ifndef __U_BOOT__
940static inline void cmdedit_set_initial_prompt(void)
941{
wdenke7f34c62003-01-11 09:48:40 +0000942#ifndef CONFIG_FEATURE_SH_FANCY_PROMPT
wdenkfe8c2802002-11-03 00:38:21 +0000943 PS1 = NULL;
944#else
Simon Glass64b723f2017-08-03 12:22:12 -0600945 PS1 = env_get("PS1");
wdenkfe8c2802002-11-03 00:38:21 +0000946 if(PS1==0)
947 PS1 = "\\w \\$ ";
948#endif
949}
950
951static inline void setup_prompt_string(int promptmode, char **prompt_str)
952{
953 debug_printf("setup_prompt_string %d ",promptmode);
wdenke7f34c62003-01-11 09:48:40 +0000954#ifndef CONFIG_FEATURE_SH_FANCY_PROMPT
wdenkfe8c2802002-11-03 00:38:21 +0000955 /* Set up the prompt */
956 if (promptmode == 1) {
wdenke7f34c62003-01-11 09:48:40 +0000957 free(PS1);
wdenkfe8c2802002-11-03 00:38:21 +0000958 PS1=xmalloc(strlen(cwd)+4);
959 sprintf(PS1, "%s %s", cwd, ( geteuid() != 0 ) ? "$ ":"# ");
960 *prompt_str = PS1;
961 } else {
962 *prompt_str = PS2;
963 }
964#else
965 *prompt_str = (promptmode==1)? PS1 : PS2;
966#endif
967 debug_printf("result %s\n",*prompt_str);
968}
969#endif
970
Marek Vasut755e12d2016-01-27 04:47:54 +0100971#ifdef __U_BOOT__
972static int uboot_cli_readline(struct in_str *i)
973{
974 char *prompt;
Marek Vasut734fb042016-01-27 04:47:55 +0100975 char __maybe_unused *ps_prompt = NULL;
Marek Vasut755e12d2016-01-27 04:47:54 +0100976
977 if (i->promptmode == 1)
978 prompt = CONFIG_SYS_PROMPT;
979 else
980 prompt = CONFIG_SYS_PROMPT_HUSH_PS2;
981
Marek Vasut734fb042016-01-27 04:47:55 +0100982#ifdef CONFIG_CMDLINE_PS_SUPPORT
983 if (i->promptmode == 1)
Simon Glass64b723f2017-08-03 12:22:12 -0600984 ps_prompt = env_get("PS1");
Marek Vasut734fb042016-01-27 04:47:55 +0100985 else
Simon Glass64b723f2017-08-03 12:22:12 -0600986 ps_prompt = env_get("PS2");
Marek Vasut734fb042016-01-27 04:47:55 +0100987 if (ps_prompt)
988 prompt = ps_prompt;
989#endif
990
Marek Vasut755e12d2016-01-27 04:47:54 +0100991 return cli_readline(prompt);
992}
993#endif
994
wdenkfe8c2802002-11-03 00:38:21 +0000995static void get_user_input(struct in_str *i)
996{
997#ifndef __U_BOOT__
998 char *prompt_str;
999 static char the_command[BUFSIZ];
1000
1001 setup_prompt_string(i->promptmode, &prompt_str);
wdenke7f34c62003-01-11 09:48:40 +00001002#ifdef CONFIG_FEATURE_COMMAND_EDITING
wdenkfe8c2802002-11-03 00:38:21 +00001003 /*
1004 ** enable command line editing only while a command line
1005 ** is actually being read; otherwise, we'll end up bequeathing
1006 ** atexit() handlers and other unwanted stuff to our
1007 ** child processes (rob@sysgo.de)
1008 */
1009 cmdedit_read_input(prompt_str, the_command);
1010#else
1011 fputs(prompt_str, stdout);
1012 fflush(stdout);
1013 the_command[0]=fgetc(i->file);
1014 the_command[1]='\0';
1015#endif
1016 fflush(stdout);
1017 i->p = the_command;
1018#else
wdenkfe8c2802002-11-03 00:38:21 +00001019 int n;
Kristian Otnes2a262cd2014-04-25 15:35:43 +02001020 static char the_command[CONFIG_SYS_CBSIZE + 1];
wdenkfe8c2802002-11-03 00:38:21 +00001021
Simon Glass09007c42014-04-10 20:01:31 -06001022 bootretry_reset_cmd_timeout();
wdenkfe8c2802002-11-03 00:38:21 +00001023 i->__promptme = 1;
Marek Vasut755e12d2016-01-27 04:47:54 +01001024 n = uboot_cli_readline(i);
1025
Wolfgang Denk2b7976a2005-08-12 23:34:51 +02001026#ifdef CONFIG_BOOT_RETRY_TIME
1027 if (n == -2) {
1028 puts("\nTimeout waiting for command\n");
1029# ifdef CONFIG_RESET_TO_RETRY
1030 do_reset(NULL, 0, 0, NULL);
Caleb Connolly9c09c092025-03-31 14:23:19 +02001031# elif IS_ENABLED(CONFIG_RETRY_BOOTCMD)
1032 strcpy(console_buffer, "run bootcmd\n");
1033# else
1034# error "This only works with CONFIG_RESET_TO_RETRY or CONFIG_BOOT_RETRY_COMMAND enabled"
Wolfgang Denk2b7976a2005-08-12 23:34:51 +02001035# endif
1036 }
1037#endif
wdenkfe8c2802002-11-03 00:38:21 +00001038 if (n == -1 ) {
1039 flag_repeat = 0;
1040 i->__promptme = 0;
1041 }
1042 n = strlen(console_buffer);
1043 console_buffer[n] = '\n';
1044 console_buffer[n+1]= '\0';
1045 if (had_ctrlc()) flag_repeat = 0;
1046 clear_ctrlc();
1047 do_repeat = 0;
1048 if (i->promptmode == 1) {
1049 if (console_buffer[0] == '\n'&& flag_repeat == 0) {
1050 strcpy(the_command,console_buffer);
1051 }
1052 else {
1053 if (console_buffer[0] != '\n') {
1054 strcpy(the_command,console_buffer);
1055 flag_repeat = 1;
1056 }
1057 else {
1058 do_repeat = 1;
1059 }
1060 }
1061 i->p = the_command;
1062 }
1063 else {
wdenk57b2d802003-06-27 21:31:46 +00001064 if (console_buffer[0] != '\n') {
1065 if (strlen(the_command) + strlen(console_buffer)
Jean-Christophe PLAGNIOL-VILLARD03836942008-10-16 15:01:15 +02001066 < CONFIG_SYS_CBSIZE) {
wdenk57b2d802003-06-27 21:31:46 +00001067 n = strlen(the_command);
1068 the_command[n-1] = ' ';
1069 strcpy(&the_command[n],console_buffer);
wdenkfe8c2802002-11-03 00:38:21 +00001070 }
1071 else {
1072 the_command[0] = '\n';
1073 the_command[1] = '\0';
1074 flag_repeat = 0;
1075 }
1076 }
1077 if (i->__promptme == 0) {
1078 the_command[0] = '\n';
1079 the_command[1] = '\0';
1080 }
1081 i->p = console_buffer;
1082 }
1083#endif
1084}
1085
1086/* This is the magic location that prints prompts
1087 * and gets data back from the user */
1088static int file_get(struct in_str *i)
1089{
1090 int ch;
1091
1092 ch = 0;
1093 /* If there is data waiting, eat it up */
1094 if (i->p && *i->p) {
Wolfgang Denkdc770c72008-07-14 15:19:07 +02001095 ch = *i->p++;
wdenkfe8c2802002-11-03 00:38:21 +00001096 } else {
1097 /* need to double check i->file because we might be doing something
1098 * more complicated by now, like sourcing or substituting. */
1099#ifndef __U_BOOT__
1100 if (i->__promptme && interactive && i->file == stdin) {
1101 while(! i->p || (interactive && strlen(i->p)==0) ) {
1102#else
1103 while(! i->p || strlen(i->p)==0 ) {
1104#endif
1105 get_user_input(i);
1106 }
1107 i->promptmode=2;
1108#ifndef __U_BOOT__
1109 i->__promptme = 0;
1110#endif
1111 if (i->p && *i->p) {
Wolfgang Denkdc770c72008-07-14 15:19:07 +02001112 ch = *i->p++;
wdenkfe8c2802002-11-03 00:38:21 +00001113 }
1114#ifndef __U_BOOT__
1115 } else {
1116 ch = fgetc(i->file);
1117 }
1118
1119#endif
1120 debug_printf("b_getch: got a %d\n", ch);
1121 }
1122#ifndef __U_BOOT__
1123 if (ch == '\n') i->__promptme=1;
1124#endif
1125 return ch;
1126}
1127
1128/* All the callers guarantee this routine will never be
1129 * used right after a newline, so prompting is not needed.
1130 */
1131static int file_peek(struct in_str *i)
1132{
1133#ifndef __U_BOOT__
1134 if (i->p && *i->p) {
1135#endif
1136 return *i->p;
1137#ifndef __U_BOOT__
1138 } else {
1139 i->peek_buf[0] = fgetc(i->file);
1140 i->peek_buf[1] = '\0';
1141 i->p = i->peek_buf;
1142 debug_printf("b_peek: got a %d\n", *i->p);
1143 return *i->p;
1144 }
1145#endif
1146}
1147
1148#ifndef __U_BOOT__
1149static void setup_file_in_str(struct in_str *i, FILE *f)
1150#else
1151static void setup_file_in_str(struct in_str *i)
1152#endif
1153{
1154 i->peek = file_peek;
1155 i->get = file_get;
1156 i->__promptme=1;
1157 i->promptmode=1;
1158#ifndef __U_BOOT__
1159 i->file = f;
1160#endif
1161 i->p = NULL;
1162}
1163
1164static void setup_string_in_str(struct in_str *i, const char *s)
1165{
1166 i->peek = static_peek;
1167 i->get = static_get;
1168 i->__promptme=1;
1169 i->promptmode=1;
1170 i->p = s;
1171}
1172
1173#ifndef __U_BOOT__
1174static void mark_open(int fd)
1175{
1176 struct close_me *new = xmalloc(sizeof(struct close_me));
1177 new->fd = fd;
1178 new->next = close_me_head;
1179 close_me_head = new;
1180}
1181
1182static void mark_closed(int fd)
1183{
1184 struct close_me *tmp;
1185 if (close_me_head == NULL || close_me_head->fd != fd)
1186 error_msg_and_die("corrupt close_me");
1187 tmp = close_me_head;
1188 close_me_head = close_me_head->next;
1189 free(tmp);
1190}
1191
wdenke7f34c62003-01-11 09:48:40 +00001192static void close_all(void)
wdenkfe8c2802002-11-03 00:38:21 +00001193{
1194 struct close_me *c;
1195 for (c=close_me_head; c; c=c->next) {
1196 close(c->fd);
1197 }
1198 close_me_head = NULL;
1199}
1200
1201/* squirrel != NULL means we squirrel away copies of stdin, stdout,
1202 * and stderr if they are redirected. */
1203static int setup_redirects(struct child_prog *prog, int squirrel[])
1204{
1205 int openfd, mode;
1206 struct redir_struct *redir;
1207
1208 for (redir=prog->redirects; redir; redir=redir->next) {
1209 if (redir->dup == -1 && redir->word.gl_pathv == NULL) {
1210 /* something went wrong in the parse. Pretend it didn't happen */
1211 continue;
1212 }
1213 if (redir->dup == -1) {
1214 mode=redir_table[redir->type].mode;
1215 openfd = open(redir->word.gl_pathv[0], mode, 0666);
1216 if (openfd < 0) {
1217 /* this could get lost if stderr has been redirected, but
1218 bash and ash both lose it as well (though zsh doesn't!) */
1219 perror_msg("error opening %s", redir->word.gl_pathv[0]);
1220 return 1;
1221 }
1222 } else {
1223 openfd = redir->dup;
1224 }
1225
1226 if (openfd != redir->fd) {
1227 if (squirrel && redir->fd < 3) {
1228 squirrel[redir->fd] = dup(redir->fd);
1229 }
1230 if (openfd == -3) {
1231 close(openfd);
1232 } else {
1233 dup2(openfd, redir->fd);
1234 if (redir->dup == -1)
1235 close (openfd);
1236 }
1237 }
1238 }
1239 return 0;
1240}
1241
1242static void restore_redirects(int squirrel[])
1243{
1244 int i, fd;
1245 for (i=0; i<3; i++) {
1246 fd = squirrel[i];
1247 if (fd != -1) {
1248 /* No error checking. I sure wouldn't know what
1249 * to do with an error if I found one! */
1250 dup2(fd, i);
1251 close(fd);
1252 }
1253 }
1254}
1255
1256/* never returns */
1257/* XXX no exit() here. If you don't exec, use _exit instead.
1258 * The at_exit handlers apparently confuse the calling process,
1259 * in particular stdin handling. Not sure why? */
1260static void pseudo_exec(struct child_prog *child)
1261{
1262 int i, rcode;
1263 char *p;
1264 struct built_in_command *x;
1265 if (child->argv) {
1266 for (i=0; is_assignment(child->argv[i]); i++) {
1267 debug_printf("pid %d environment modification: %s\n",getpid(),child->argv[i]);
1268 p = insert_var_value(child->argv[i]);
1269 putenv(strdup(p));
1270 if (p != child->argv[i]) free(p);
1271 }
1272 child->argv+=i; /* XXX this hack isn't so horrible, since we are about
wdenk57b2d802003-06-27 21:31:46 +00001273 to exit, and therefore don't need to keep data
1274 structures consistent for free() use. */
wdenkfe8c2802002-11-03 00:38:21 +00001275 /* If a variable is assigned in a forest, and nobody listens,
1276 * was it ever really set?
1277 */
1278 if (child->argv[0] == NULL) {
1279 _exit(EXIT_SUCCESS);
1280 }
1281
1282 /*
1283 * Check if the command matches any of the builtins.
1284 * Depending on context, this might be redundant. But it's
1285 * easier to waste a few CPU cycles than it is to figure out
1286 * if this is one of those cases.
1287 */
1288 for (x = bltins; x->cmd; x++) {
1289 if (strcmp(child->argv[0], x->cmd) == 0 ) {
1290 debug_printf("builtin exec %s\n", child->argv[0]);
1291 rcode = x->function(child);
1292 fflush(stdout);
1293 _exit(rcode);
1294 }
1295 }
1296
1297 /* Check if the command matches any busybox internal commands
1298 * ("applets") here.
1299 * FIXME: This feature is not 100% safe, since
1300 * BusyBox is not fully reentrant, so we have no guarantee the things
1301 * from the .bss are still zeroed, or that things from .data are still
1302 * at their defaults. We could exec ourself from /proc/self/exe, but I
1303 * really dislike relying on /proc for things. We could exec ourself
1304 * from global_argv[0], but if we are in a chroot, we may not be able
1305 * to find ourself... */
wdenke7f34c62003-01-11 09:48:40 +00001306#ifdef CONFIG_FEATURE_SH_STANDALONE_SHELL
wdenkfe8c2802002-11-03 00:38:21 +00001307 {
1308 int argc_l;
1309 char** argv_l=child->argv;
1310 char *name = child->argv[0];
1311
wdenke7f34c62003-01-11 09:48:40 +00001312#ifdef CONFIG_FEATURE_SH_APPLETS_ALWAYS_WIN
wdenkfe8c2802002-11-03 00:38:21 +00001313 /* Following discussions from November 2000 on the busybox mailing
1314 * list, the default configuration, (without
1315 * get_last_path_component()) lets the user force use of an
1316 * external command by specifying the full (with slashes) filename.
wdenke7f34c62003-01-11 09:48:40 +00001317 * If you enable CONFIG_FEATURE_SH_APPLETS_ALWAYS_WIN then applets
wdenkfe8c2802002-11-03 00:38:21 +00001318 * _aways_ override external commands, so if you want to run
1319 * /bin/cat, it will use BusyBox cat even if /bin/cat exists on the
1320 * filesystem and is _not_ busybox. Some systems may want this,
1321 * most do not. */
1322 name = get_last_path_component(name);
1323#endif
1324 /* Count argc for use in a second... */
1325 for(argc_l=0;*argv_l!=NULL; argv_l++, argc_l++);
1326 optind = 1;
1327 debug_printf("running applet %s\n", name);
1328 run_applet_by_name(name, argc_l, child->argv);
1329 }
1330#endif
1331 debug_printf("exec of %s\n",child->argv[0]);
1332 execvp(child->argv[0],child->argv);
1333 perror_msg("couldn't exec: %s",child->argv[0]);
1334 _exit(1);
1335 } else if (child->group) {
1336 debug_printf("runtime nesting to group\n");
1337 interactive=0; /* crucial!!!! */
1338 rcode = run_list_real(child->group);
1339 /* OK to leak memory by not calling free_pipe_list,
1340 * since this process is about to exit */
1341 _exit(rcode);
1342 } else {
1343 /* Can happen. See what bash does with ">foo" by itself. */
1344 debug_printf("trying to pseudo_exec null command\n");
1345 _exit(EXIT_SUCCESS);
1346 }
1347}
1348
1349static void insert_bg_job(struct pipe *pi)
1350{
1351 struct pipe *thejob;
1352
1353 /* Linear search for the ID of the job to use */
1354 pi->jobid = 1;
1355 for (thejob = job_list; thejob; thejob = thejob->next)
1356 if (thejob->jobid >= pi->jobid)
1357 pi->jobid = thejob->jobid + 1;
1358
1359 /* add thejob to the list of running jobs */
1360 if (!job_list) {
1361 thejob = job_list = xmalloc(sizeof(*thejob));
1362 } else {
1363 for (thejob = job_list; thejob->next; thejob = thejob->next) /* nothing */;
1364 thejob->next = xmalloc(sizeof(*thejob));
1365 thejob = thejob->next;
1366 }
1367
1368 /* physically copy the struct job */
1369 memcpy(thejob, pi, sizeof(struct pipe));
1370 thejob->next = NULL;
1371 thejob->running_progs = thejob->num_progs;
1372 thejob->stopped_progs = 0;
1373 thejob->text = xmalloc(BUFSIZ); /* cmdedit buffer size */
1374
1375 /*if (pi->progs[0] && pi->progs[0].argv && pi->progs[0].argv[0]) */
1376 {
1377 char *bar=thejob->text;
1378 char **foo=pi->progs[0].argv;
1379 while(foo && *foo) {
1380 bar += sprintf(bar, "%s ", *foo++);
1381 }
1382 }
1383
1384 /* we don't wait for background thejobs to return -- append it
1385 to the list of backgrounded thejobs and leave it alone */
1386 printf("[%d] %d\n", thejob->jobid, thejob->progs[0].pid);
1387 last_bg_pid = thejob->progs[0].pid;
1388 last_jobid = thejob->jobid;
1389}
1390
1391/* remove a backgrounded job */
1392static void remove_bg_job(struct pipe *pi)
1393{
1394 struct pipe *prev_pipe;
1395
1396 if (pi == job_list) {
1397 job_list = pi->next;
1398 } else {
1399 prev_pipe = job_list;
1400 while (prev_pipe->next != pi)
1401 prev_pipe = prev_pipe->next;
1402 prev_pipe->next = pi->next;
1403 }
1404 if (job_list)
1405 last_jobid = job_list->jobid;
1406 else
1407 last_jobid = 0;
1408
1409 pi->stopped_progs = 0;
1410 free_pipe(pi, 0);
1411 free(pi);
1412}
1413
1414/* Checks to see if any processes have exited -- if they
1415 have, figure out why and see if a job has completed */
1416static int checkjobs(struct pipe* fg_pipe)
1417{
1418 int attributes;
1419 int status;
1420 int prognum = 0;
1421 struct pipe *pi;
1422 pid_t childpid;
1423
1424 attributes = WUNTRACED;
1425 if (fg_pipe==NULL) {
1426 attributes |= WNOHANG;
1427 }
1428
1429 while ((childpid = waitpid(-1, &status, attributes)) > 0) {
1430 if (fg_pipe) {
1431 int i, rcode = 0;
1432 for (i=0; i < fg_pipe->num_progs; i++) {
1433 if (fg_pipe->progs[i].pid == childpid) {
1434 if (i==fg_pipe->num_progs-1)
1435 rcode=WEXITSTATUS(status);
1436 (fg_pipe->num_progs)--;
1437 return(rcode);
1438 }
1439 }
1440 }
1441
1442 for (pi = job_list; pi; pi = pi->next) {
1443 prognum = 0;
1444 while (prognum < pi->num_progs && pi->progs[prognum].pid != childpid) {
1445 prognum++;
1446 }
1447 if (prognum < pi->num_progs)
1448 break;
1449 }
1450
1451 if(pi==NULL) {
1452 debug_printf("checkjobs: pid %d was not in our list!\n", childpid);
1453 continue;
1454 }
1455
1456 if (WIFEXITED(status) || WIFSIGNALED(status)) {
1457 /* child exited */
1458 pi->running_progs--;
1459 pi->progs[prognum].pid = 0;
1460
1461 if (!pi->running_progs) {
1462 printf(JOB_STATUS_FORMAT, pi->jobid, "Done", pi->text);
1463 remove_bg_job(pi);
1464 }
1465 } else {
1466 /* child stopped */
1467 pi->stopped_progs++;
1468 pi->progs[prognum].is_stopped = 1;
1469
1470#if 0
1471 /* Printing this stuff is a pain, since it tends to
1472 * overwrite the prompt an inconveinient moments. So
1473 * don't do that. */
1474 if (pi->stopped_progs == pi->num_progs) {
1475 printf("\n"JOB_STATUS_FORMAT, pi->jobid, "Stopped", pi->text);
1476 }
1477#endif
1478 }
1479 }
1480
1481 if (childpid == -1 && errno != ECHILD)
1482 perror_msg("waitpid");
1483
1484 /* move the shell to the foreground */
1485 /*if (interactive && tcsetpgrp(shell_terminal, getpgid(0))) */
1486 /* perror_msg("tcsetpgrp-2"); */
1487 return -1;
1488}
1489
1490/* Figure out our controlling tty, checking in order stderr,
1491 * stdin, and stdout. If check_pgrp is set, also check that
1492 * we belong to the foreground process group associated with
1493 * that tty. The value of shell_terminal is needed in order to call
1494 * tcsetpgrp(shell_terminal, ...); */
1495void controlling_tty(int check_pgrp)
1496{
1497 pid_t curpgrp;
1498
1499 if ((curpgrp = tcgetpgrp(shell_terminal = 2)) < 0
1500 && (curpgrp = tcgetpgrp(shell_terminal = 0)) < 0
1501 && (curpgrp = tcgetpgrp(shell_terminal = 1)) < 0)
1502 goto shell_terminal_error;
1503
1504 if (check_pgrp && curpgrp != getpgid(0))
1505 goto shell_terminal_error;
1506
1507 return;
1508
1509shell_terminal_error:
1510 shell_terminal = -1;
1511 return;
1512}
1513#endif
1514
1515/* run_pipe_real() starts all the jobs, but doesn't wait for anything
1516 * to finish. See checkjobs().
1517 *
1518 * return code is normally -1, when the caller has to wait for children
1519 * to finish to determine the exit status of the pipe. If the pipe
1520 * is a simple builtin command, however, the action is done by the
1521 * time run_pipe_real returns, and the exit code is provided as the
1522 * return value.
1523 *
1524 * The input of the pipe is always stdin, the output is always
1525 * stdout. The outpipe[] mechanism in BusyBox-0.48 lash is bogus,
1526 * because it tries to avoid running the command substitution in
1527 * subshell, when that is in fact necessary. The subshell process
1528 * now has its stdout directed to the input of the appropriate pipe,
1529 * so this routine is noticeably simpler.
1530 */
1531static int run_pipe_real(struct pipe *pi)
1532{
1533 int i;
1534#ifndef __U_BOOT__
1535 int nextin, nextout;
1536 int pipefds[2]; /* pipefds[0] is for reading */
1537 struct child_prog *child;
1538 struct built_in_command *x;
1539 char *p;
wdenke7f34c62003-01-11 09:48:40 +00001540# if __GNUC__
1541 /* Avoid longjmp clobbering */
1542 (void) &i;
1543 (void) &nextin;
1544 (void) &nextout;
1545 (void) &child;
1546# endif
wdenkfe8c2802002-11-03 00:38:21 +00001547#else
1548 int nextin;
1549 int flag = do_repeat ? CMD_FLAG_REPEAT : 0;
1550 struct child_prog *child;
wdenkfe8c2802002-11-03 00:38:21 +00001551 char *p;
wdenke7f34c62003-01-11 09:48:40 +00001552# if __GNUC__
1553 /* Avoid longjmp clobbering */
1554 (void) &i;
1555 (void) &nextin;
1556 (void) &child;
1557# endif
1558#endif /* __U_BOOT__ */
wdenkfe8c2802002-11-03 00:38:21 +00001559
1560 nextin = 0;
1561#ifndef __U_BOOT__
1562 pi->pgrp = -1;
1563#endif
1564
1565 /* Check if this is a simple builtin (not part of a pipe).
1566 * Builtins within pipes have to fork anyway, and are handled in
1567 * pseudo_exec. "echo foo | read bar" doesn't work on bash, either.
1568 */
1569 if (pi->num_progs == 1) child = & (pi->progs[0]);
1570#ifndef __U_BOOT__
1571 if (pi->num_progs == 1 && child->group && child->subshell == 0) {
1572 int squirrel[] = {-1, -1, -1};
1573 int rcode;
1574 debug_printf("non-subshell grouping\n");
1575 setup_redirects(child, squirrel);
1576 /* XXX could we merge code with following builtin case,
1577 * by creating a pseudo builtin that calls run_list_real? */
1578 rcode = run_list_real(child->group);
1579 restore_redirects(squirrel);
1580#else
1581 if (pi->num_progs == 1 && child->group) {
1582 int rcode;
1583 debug_printf("non-subshell grouping\n");
1584 rcode = run_list_real(child->group);
1585#endif
1586 return rcode;
1587 } else if (pi->num_progs == 1 && pi->progs[0].argv != NULL) {
1588 for (i=0; is_assignment(child->argv[i]); i++) { /* nothing */ }
1589 if (i!=0 && child->argv[i]==NULL) {
1590 /* assignments, but no command: set the local environment */
1591 for (i=0; child->argv[i]!=NULL; i++) {
1592
1593 /* Ok, this case is tricky. We have to decide if this is a
1594 * local variable, or an already exported variable. If it is
1595 * already exported, we have to export the new value. If it is
1596 * not exported, we need only set this as a local variable.
1597 * This junk is all to decide whether or not to export this
1598 * variable. */
1599 int export_me=0;
1600 char *name, *value;
1601 name = xstrdup(child->argv[i]);
1602 debug_printf("Local environment set: %s\n", name);
1603 value = strchr(name, '=');
1604 if (value)
1605 *value=0;
1606#ifndef __U_BOOT__
1607 if ( get_local_var(name)) {
1608 export_me=1;
1609 }
1610#endif
1611 free(name);
1612 p = insert_var_value(child->argv[i]);
1613 set_local_var(p, export_me);
1614 if (p != child->argv[i]) free(p);
1615 }
1616 return EXIT_SUCCESS; /* don't worry about errors in set_local_var() yet */
1617 }
1618 for (i = 0; is_assignment(child->argv[i]); i++) {
1619 p = insert_var_value(child->argv[i]);
1620#ifndef __U_BOOT__
1621 putenv(strdup(p));
1622#else
1623 set_local_var(p, 0);
1624#endif
1625 if (p != child->argv[i]) {
1626 child->sp--;
1627 free(p);
1628 }
1629 }
1630 if (child->sp) {
1631 char * str = NULL;
1632
Stephen Warren60c38c92014-03-01 22:16:10 -07001633 str = make_string(child->argv + i,
1634 child->argv_nonnull + i);
wdenkfe8c2802002-11-03 00:38:21 +00001635 parse_string_outer(str, FLAG_EXIT_FROM_LOOP | FLAG_REPARSING);
1636 free(str);
1637 return last_return_code;
1638 }
1639#ifndef __U_BOOT__
1640 for (x = bltins; x->cmd; x++) {
1641 if (strcmp(child->argv[i], x->cmd) == 0 ) {
1642 int squirrel[] = {-1, -1, -1};
1643 int rcode;
1644 if (x->function == builtin_exec && child->argv[i+1]==NULL) {
1645 debug_printf("magic exec\n");
1646 setup_redirects(child,NULL);
1647 return EXIT_SUCCESS;
1648 }
1649 debug_printf("builtin inline %s\n", child->argv[0]);
1650 /* XXX setup_redirects acts on file descriptors, not FILEs.
1651 * This is perfect for work that comes after exec().
1652 * Is it really safe for inline use? Experimentally,
1653 * things seem to work with glibc. */
1654 setup_redirects(child, squirrel);
Simon Glasse79731e2011-12-06 19:47:53 +00001655
1656 child->argv += i; /* XXX horrible hack */
1657 rcode = x->function(child);
1658 /* XXX restore hack so free() can work right */
1659 child->argv -= i;
1660 restore_redirects(squirrel);
1661 }
1662 return rcode;
1663 }
wdenkfe8c2802002-11-03 00:38:21 +00001664#else
Simon Glass1727b942012-02-14 19:59:25 +00001665 /* check ";", because ,example , argv consist from
1666 * "help;flinfo" must not execute
1667 */
1668 if (strchr(child->argv[i], ';')) {
1669 printf("Unknown command '%s' - try 'help' or use "
1670 "'run' command\n", child->argv[i]);
1671 return -1;
wdenkfe8c2802002-11-03 00:38:21 +00001672 }
Simon Glass1727b942012-02-14 19:59:25 +00001673 /* Process the command */
Sean Anderson69d61a32021-02-28 16:29:51 -05001674 return cmd_process(flag, child->argc - i, child->argv + i,
Richard Genoud94ff0672012-12-03 06:28:28 +00001675 &flag_repeat, NULL);
Simon Glass1727b942012-02-14 19:59:25 +00001676#endif
wdenkfe8c2802002-11-03 00:38:21 +00001677 }
Simon Glass1727b942012-02-14 19:59:25 +00001678#ifndef __U_BOOT__
wdenkfe8c2802002-11-03 00:38:21 +00001679
1680 for (i = 0; i < pi->num_progs; i++) {
1681 child = & (pi->progs[i]);
1682
1683 /* pipes are inserted between pairs of commands */
1684 if ((i + 1) < pi->num_progs) {
1685 if (pipe(pipefds)<0) perror_msg_and_die("pipe");
1686 nextout = pipefds[1];
1687 } else {
1688 nextout=1;
1689 pipefds[0] = -1;
1690 }
1691
1692 /* XXX test for failed fork()? */
1693 if (!(child->pid = fork())) {
1694 /* Set the handling for job control signals back to the default. */
1695 signal(SIGINT, SIG_DFL);
1696 signal(SIGQUIT, SIG_DFL);
1697 signal(SIGTERM, SIG_DFL);
1698 signal(SIGTSTP, SIG_DFL);
1699 signal(SIGTTIN, SIG_DFL);
1700 signal(SIGTTOU, SIG_DFL);
1701 signal(SIGCHLD, SIG_DFL);
1702
1703 close_all();
1704
1705 if (nextin != 0) {
1706 dup2(nextin, 0);
1707 close(nextin);
1708 }
1709 if (nextout != 1) {
1710 dup2(nextout, 1);
1711 close(nextout);
1712 }
1713 if (pipefds[0]!=-1) {
1714 close(pipefds[0]); /* opposite end of our output pipe */
1715 }
1716
1717 /* Like bash, explicit redirects override pipes,
1718 * and the pipe fd is available for dup'ing. */
1719 setup_redirects(child,NULL);
1720
1721 if (interactive && pi->followup!=PIPE_BG) {
1722 /* If we (the child) win the race, put ourselves in the process
1723 * group whose leader is the first process in this pipe. */
1724 if (pi->pgrp < 0) {
1725 pi->pgrp = getpid();
1726 }
1727 if (setpgid(0, pi->pgrp) == 0) {
1728 tcsetpgrp(2, pi->pgrp);
1729 }
1730 }
1731
1732 pseudo_exec(child);
1733 }
1734
wdenkfe8c2802002-11-03 00:38:21 +00001735 /* put our child in the process group whose leader is the
1736 first process in this pipe */
1737 if (pi->pgrp < 0) {
1738 pi->pgrp = child->pid;
1739 }
1740 /* Don't check for errors. The child may be dead already,
1741 * in which case setpgid returns error code EACCES. */
1742 setpgid(child->pid, pi->pgrp);
1743
1744 if (nextin != 0)
1745 close(nextin);
1746 if (nextout != 1)
1747 close(nextout);
1748
1749 /* If there isn't another process, nextin is garbage
1750 but it doesn't matter */
1751 nextin = pipefds[0];
1752 }
1753#endif
1754 return -1;
1755}
1756
1757static int run_list_real(struct pipe *pi)
1758{
1759 char *save_name = NULL;
1760 char **list = NULL;
1761 char **save_list = NULL;
1762 struct pipe *rpipe;
1763 int flag_rep = 0;
1764#ifndef __U_BOOT__
1765 int save_num_progs;
1766#endif
1767 int rcode=0, flag_skip=1;
1768 int flag_restore = 0;
1769 int if_code=0, next_if_code=0; /* need double-buffer to handle elif */
1770 reserved_style rmode, skip_more_in_this_rmode=RES_XXXX;
1771 /* check syntax for "for" */
1772 for (rpipe = pi; rpipe; rpipe = rpipe->next) {
1773 if ((rpipe->r_mode == RES_IN ||
1774 rpipe->r_mode == RES_FOR) &&
1775 (rpipe->next == NULL)) {
1776 syntax();
1777#ifdef __U_BOOT__
1778 flag_repeat = 0;
1779#endif
1780 return 1;
1781 }
1782 if ((rpipe->r_mode == RES_IN &&
1783 (rpipe->next->r_mode == RES_IN &&
1784 rpipe->next->progs->argv != NULL))||
1785 (rpipe->r_mode == RES_FOR &&
1786 rpipe->next->r_mode != RES_IN)) {
1787 syntax();
1788#ifdef __U_BOOT__
1789 flag_repeat = 0;
1790#endif
1791 return 1;
1792 }
1793 }
1794 for (; pi; pi = (flag_restore != 0) ? rpipe : pi->next) {
1795 if (pi->r_mode == RES_WHILE || pi->r_mode == RES_UNTIL ||
1796 pi->r_mode == RES_FOR) {
1797#ifdef __U_BOOT__
1798 /* check Ctrl-C */
1799 ctrlc();
1800 if ((had_ctrlc())) {
1801 return 1;
1802 }
1803#endif
1804 flag_restore = 0;
1805 if (!rpipe) {
1806 flag_rep = 0;
1807 rpipe = pi;
1808 }
1809 }
1810 rmode = pi->r_mode;
1811 debug_printf("rmode=%d if_code=%d next_if_code=%d skip_more=%d\n", rmode, if_code, next_if_code, skip_more_in_this_rmode);
1812 if (rmode == skip_more_in_this_rmode && flag_skip) {
1813 if (pi->followup == PIPE_SEQ) flag_skip=0;
1814 continue;
1815 }
1816 flag_skip = 1;
1817 skip_more_in_this_rmode = RES_XXXX;
1818 if (rmode == RES_THEN || rmode == RES_ELSE) if_code = next_if_code;
1819 if (rmode == RES_THEN && if_code) continue;
1820 if (rmode == RES_ELSE && !if_code) continue;
wdenk33591052004-04-12 14:31:43 +00001821 if (rmode == RES_ELIF && !if_code) break;
wdenkfe8c2802002-11-03 00:38:21 +00001822 if (rmode == RES_FOR && pi->num_progs) {
1823 if (!list) {
1824 /* if no variable values after "in" we skip "for" */
1825 if (!pi->next->progs->argv) continue;
1826 /* create list of variable values */
1827 list = make_list_in(pi->next->progs->argv,
1828 pi->progs->argv[0]);
1829 save_list = list;
1830 save_name = pi->progs->argv[0];
1831 pi->progs->argv[0] = NULL;
1832 flag_rep = 1;
1833 }
1834 if (!(*list)) {
1835 free(pi->progs->argv[0]);
1836 free(save_list);
1837 list = NULL;
1838 flag_rep = 0;
1839 pi->progs->argv[0] = save_name;
1840#ifndef __U_BOOT__
1841 pi->progs->glob_result.gl_pathv[0] =
1842 pi->progs->argv[0];
1843#endif
1844 continue;
1845 } else {
1846 /* insert new value from list for variable */
Heinrich Schuchardta9889162020-04-28 21:56:10 +02001847 free(pi->progs->argv[0]);
wdenkfe8c2802002-11-03 00:38:21 +00001848 pi->progs->argv[0] = *list++;
1849#ifndef __U_BOOT__
1850 pi->progs->glob_result.gl_pathv[0] =
1851 pi->progs->argv[0];
1852#endif
1853 }
1854 }
1855 if (rmode == RES_IN) continue;
1856 if (rmode == RES_DO) {
1857 if (!flag_rep) continue;
1858 }
Jeroen Hofstee95ab0d32014-06-11 00:28:47 +02001859 if (rmode == RES_DONE) {
wdenkfe8c2802002-11-03 00:38:21 +00001860 if (flag_rep) {
1861 flag_restore = 1;
1862 } else {
1863 rpipe = NULL;
1864 }
1865 }
1866 if (pi->num_progs == 0) continue;
1867#ifndef __U_BOOT__
1868 save_num_progs = pi->num_progs; /* save number of programs */
1869#endif
1870 rcode = run_pipe_real(pi);
1871 debug_printf("run_pipe_real returned %d\n",rcode);
1872#ifndef __U_BOOT__
1873 if (rcode!=-1) {
1874 /* We only ran a builtin: rcode was set by the return value
1875 * of run_pipe_real(), and we don't need to wait for anything. */
1876 } else if (pi->followup==PIPE_BG) {
1877 /* XXX check bash's behavior with nontrivial pipes */
1878 /* XXX compute jobid */
1879 /* XXX what does bash do with attempts to background builtins? */
1880 insert_bg_job(pi);
1881 rcode = EXIT_SUCCESS;
1882 } else {
1883 if (interactive) {
1884 /* move the new process group into the foreground */
1885 if (tcsetpgrp(shell_terminal, pi->pgrp) && errno != ENOTTY)
1886 perror_msg("tcsetpgrp-3");
1887 rcode = checkjobs(pi);
1888 /* move the shell to the foreground */
1889 if (tcsetpgrp(shell_terminal, getpgid(0)) && errno != ENOTTY)
1890 perror_msg("tcsetpgrp-4");
1891 } else {
1892 rcode = checkjobs(pi);
1893 }
1894 debug_printf("checkjobs returned %d\n",rcode);
1895 }
1896 last_return_code=rcode;
1897#else
wdenk6203e402004-04-18 10:13:26 +00001898 if (rcode < -1) {
1899 last_return_code = -rcode - 2;
1900 return -2; /* exit */
1901 }
Marek Vasutfd099322022-12-20 07:25:59 +01001902 last_return_code = rcode;
wdenkfe8c2802002-11-03 00:38:21 +00001903#endif
1904#ifndef __U_BOOT__
1905 pi->num_progs = save_num_progs; /* restore number of programs */
1906#endif
1907 if ( rmode == RES_IF || rmode == RES_ELIF )
1908 next_if_code=rcode; /* can be overwritten a number of times */
1909 if (rmode == RES_WHILE)
1910 flag_rep = !last_return_code;
1911 if (rmode == RES_UNTIL)
1912 flag_rep = last_return_code;
1913 if ( (rcode==EXIT_SUCCESS && pi->followup==PIPE_OR) ||
1914 (rcode!=EXIT_SUCCESS && pi->followup==PIPE_AND) )
1915 skip_more_in_this_rmode=rmode;
1916#ifndef __U_BOOT__
1917 checkjobs(NULL);
1918#endif
1919 }
1920 return rcode;
1921}
1922
1923/* broken, of course, but OK for testing */
1924static char *indenter(int i)
1925{
1926 static char blanks[]=" ";
1927 return &blanks[sizeof(blanks)-i-1];
1928}
1929
1930/* return code is the exit status of the pipe */
1931static int free_pipe(struct pipe *pi, int indent)
1932{
1933 char **p;
1934 struct child_prog *child;
1935#ifndef __U_BOOT__
1936 struct redir_struct *r, *rnext;
1937#endif
1938 int a, i, ret_code=0;
1939 char *ind = indenter(indent);
1940
1941#ifndef __U_BOOT__
1942 if (pi->stopped_progs > 0)
1943 return ret_code;
1944 final_printf("%s run pipe: (pid %d)\n",ind,getpid());
1945#endif
1946 for (i=0; i<pi->num_progs; i++) {
1947 child = &pi->progs[i];
1948 final_printf("%s command %d:\n",ind,i);
1949 if (child->argv) {
1950 for (a=0,p=child->argv; *p; a++,p++) {
1951 final_printf("%s argv[%d] = %s\n",ind,a,*p);
1952 }
1953#ifndef __U_BOOT__
1954 globfree(&child->glob_result);
1955#else
Peter Tysercc215a12009-08-05 16:18:44 -05001956 for (a = 0; a < child->argc; a++) {
wdenk57b2d802003-06-27 21:31:46 +00001957 free(child->argv[a]);
1958 }
Stephen Warren60c38c92014-03-01 22:16:10 -07001959 free(child->argv);
1960 free(child->argv_nonnull);
wdenk57b2d802003-06-27 21:31:46 +00001961 child->argc = 0;
wdenkfe8c2802002-11-03 00:38:21 +00001962#endif
1963 child->argv=NULL;
1964 } else if (child->group) {
1965#ifndef __U_BOOT__
1966 final_printf("%s begin group (subshell:%d)\n",ind, child->subshell);
1967#endif
1968 ret_code = free_pipe_list(child->group,indent+3);
1969 final_printf("%s end group\n",ind);
1970 } else {
1971 final_printf("%s (nil)\n",ind);
1972 }
1973#ifndef __U_BOOT__
1974 for (r=child->redirects; r; r=rnext) {
1975 final_printf("%s redirect %d%s", ind, r->fd, redir_table[r->type].descrip);
1976 if (r->dup == -1) {
1977 /* guard against the case >$FOO, where foo is unset or blank */
1978 if (r->word.gl_pathv) {
1979 final_printf(" %s\n", *r->word.gl_pathv);
1980 globfree(&r->word);
1981 }
1982 } else {
1983 final_printf("&%d\n", r->dup);
1984 }
1985 rnext=r->next;
1986 free(r);
1987 }
1988 child->redirects=NULL;
1989#endif
1990 }
1991 free(pi->progs); /* children are an array, they get freed all at once */
1992 pi->progs=NULL;
1993 return ret_code;
1994}
1995
1996static int free_pipe_list(struct pipe *head, int indent)
1997{
1998 int rcode=0; /* if list has no members */
1999 struct pipe *pi, *next;
2000 char *ind = indenter(indent);
2001 for (pi=head; pi; pi=next) {
2002 final_printf("%s pipe reserved mode %d\n", ind, pi->r_mode);
2003 rcode = free_pipe(pi, indent);
2004 final_printf("%s pipe followup code %d\n", ind, pi->followup);
2005 next=pi->next;
2006 pi->next=NULL;
2007 free(pi);
2008 }
2009 return rcode;
2010}
2011
2012/* Select which version we will use */
2013static int run_list(struct pipe *pi)
2014{
2015 int rcode=0;
2016#ifndef __U_BOOT__
2017 if (fake_mode==0) {
2018#endif
2019 rcode = run_list_real(pi);
2020#ifndef __U_BOOT__
2021 }
2022#endif
2023 /* free_pipe_list has the side effect of clearing memory
2024 * In the long run that function can be merged with run_list_real,
2025 * but doing that now would hobble the debugging effort. */
2026 free_pipe_list(pi,0);
2027 return rcode;
2028}
2029
2030/* The API for glob is arguably broken. This routine pushes a non-matching
2031 * string into the output structure, removing non-backslashed backslashes.
2032 * If someone can prove me wrong, by performing this function within the
2033 * original glob(3) api, feel free to rewrite this routine into oblivion.
2034 * Return code (0 vs. GLOB_NOSPACE) matches glob(3).
2035 * XXX broken if the last character is '\\', check that before calling.
2036 */
2037#ifndef __U_BOOT__
2038static int globhack(const char *src, int flags, glob_t *pglob)
2039{
2040 int cnt=0, pathc;
2041 const char *s;
2042 char *dest;
2043 for (cnt=1, s=src; s && *s; s++) {
2044 if (*s == '\\') s++;
2045 cnt++;
2046 }
2047 dest = malloc(cnt);
2048 if (!dest) return GLOB_NOSPACE;
2049 if (!(flags & GLOB_APPEND)) {
2050 pglob->gl_pathv=NULL;
2051 pglob->gl_pathc=0;
2052 pglob->gl_offs=0;
2053 pglob->gl_offs=0;
2054 }
2055 pathc = ++pglob->gl_pathc;
2056 pglob->gl_pathv = realloc(pglob->gl_pathv, (pathc+1)*sizeof(*pglob->gl_pathv));
2057 if (pglob->gl_pathv == NULL) return GLOB_NOSPACE;
2058 pglob->gl_pathv[pathc-1]=dest;
2059 pglob->gl_pathv[pathc]=NULL;
2060 for (s=src; s && *s; s++, dest++) {
2061 if (*s == '\\') s++;
2062 *dest = *s;
2063 }
2064 *dest='\0';
2065 return 0;
2066}
2067
2068/* XXX broken if the last character is '\\', check that before calling */
2069static int glob_needed(const char *s)
2070{
2071 for (; *s; s++) {
2072 if (*s == '\\') s++;
2073 if (strchr("*[?",*s)) return 1;
2074 }
2075 return 0;
2076}
2077
2078#if 0
2079static void globprint(glob_t *pglob)
2080{
2081 int i;
2082 debug_printf("glob_t at %p:\n", pglob);
2083 debug_printf(" gl_pathc=%d gl_pathv=%p gl_offs=%d gl_flags=%d\n",
2084 pglob->gl_pathc, pglob->gl_pathv, pglob->gl_offs, pglob->gl_flags);
2085 for (i=0; i<pglob->gl_pathc; i++)
2086 debug_printf("pglob->gl_pathv[%d] = %p = %s\n", i,
2087 pglob->gl_pathv[i], pglob->gl_pathv[i]);
2088}
2089#endif
2090
2091static int xglob(o_string *dest, int flags, glob_t *pglob)
2092{
2093 int gr;
2094
wdenk57b2d802003-06-27 21:31:46 +00002095 /* short-circuit for null word */
wdenkfe8c2802002-11-03 00:38:21 +00002096 /* we can code this better when the debug_printf's are gone */
wdenk57b2d802003-06-27 21:31:46 +00002097 if (dest->length == 0) {
2098 if (dest->nonnull) {
2099 /* bash man page calls this an "explicit" null */
2100 gr = globhack(dest->data, flags, pglob);
2101 debug_printf("globhack returned %d\n",gr);
2102 } else {
wdenkfe8c2802002-11-03 00:38:21 +00002103 return 0;
2104 }
wdenk57b2d802003-06-27 21:31:46 +00002105 } else if (glob_needed(dest->data)) {
wdenkfe8c2802002-11-03 00:38:21 +00002106 gr = glob(dest->data, flags, NULL, pglob);
2107 debug_printf("glob returned %d\n",gr);
2108 if (gr == GLOB_NOMATCH) {
2109 /* quote removal, or more accurately, backslash removal */
2110 gr = globhack(dest->data, flags, pglob);
2111 debug_printf("globhack returned %d\n",gr);
2112 }
2113 } else {
2114 gr = globhack(dest->data, flags, pglob);
2115 debug_printf("globhack returned %d\n",gr);
2116 }
2117 if (gr == GLOB_NOSPACE)
2118 error_msg_and_die("out of memory during glob");
2119 if (gr != 0) { /* GLOB_ABORTED ? */
2120 error_msg("glob(3) error %d",gr);
2121 }
2122 /* globprint(glob_target); */
2123 return gr;
2124}
2125#endif
2126
wdenk6203e402004-04-18 10:13:26 +00002127#ifdef __U_BOOT__
2128static char *get_dollar_var(char ch);
2129#endif
2130
wdenkfe8c2802002-11-03 00:38:21 +00002131/* This is used to get/check local shell variables */
Holger Brunck50950222011-04-08 02:47:42 +00002132char *get_local_var(const char *s)
wdenkfe8c2802002-11-03 00:38:21 +00002133{
2134 struct variables *cur;
2135
2136 if (!s)
2137 return NULL;
wdenk6203e402004-04-18 10:13:26 +00002138
2139#ifdef __U_BOOT__
2140 if (*s == '$')
2141 return get_dollar_var(s[1]);
2142#endif
2143
wdenkfe8c2802002-11-03 00:38:21 +00002144 for (cur = top_vars; cur; cur=cur->next)
2145 if(strcmp(cur->name, s)==0)
2146 return cur->value;
2147 return NULL;
2148}
2149
2150/* This is used to set local shell variables
2151 flg_export==0 if only local (not exporting) variable
2152 flg_export==1 if "new" exporting environ
2153 flg_export>1 if current startup environ (not call putenv()) */
Heiko Schocher49ebcb52008-10-15 09:40:28 +02002154int set_local_var(const char *s, int flg_export)
wdenkfe8c2802002-11-03 00:38:21 +00002155{
2156 char *name, *value;
2157 int result=0;
2158 struct variables *cur;
2159
wdenk6203e402004-04-18 10:13:26 +00002160#ifdef __U_BOOT__
2161 /* might be possible! */
2162 if (!isalpha(*s))
2163 return -1;
2164#endif
2165
wdenkfe8c2802002-11-03 00:38:21 +00002166 name=strdup(s);
2167
wdenkfe8c2802002-11-03 00:38:21 +00002168 /* Assume when we enter this function that we are already in
2169 * NAME=VALUE format. So the first order of business is to
2170 * split 's' on the '=' into 'name' and 'value' */
2171 value = strchr(name, '=');
Stefan Herbrechtsmeier466a3e92023-04-03 15:50:00 +02002172 if (!value) {
wdenkfe8c2802002-11-03 00:38:21 +00002173 free(name);
2174 return -1;
2175 }
2176 *value++ = 0;
2177
Stefan Herbrechtsmeier466a3e92023-04-03 15:50:00 +02002178 if (!*value) {
2179 unset_local_var(name);
2180 free(name);
2181 return 0;
2182 }
2183
wdenkfe8c2802002-11-03 00:38:21 +00002184 for(cur = top_vars; cur; cur = cur->next) {
2185 if(strcmp(cur->name, name)==0)
2186 break;
2187 }
2188
2189 if(cur) {
2190 if(strcmp(cur->value, value)==0) {
2191 if(flg_export>0 && cur->flg_export==0)
2192 cur->flg_export=flg_export;
2193 else
2194 result++;
2195 } else {
2196 if(cur->flg_read_only) {
2197 error_msg("%s: readonly variable", name);
2198 result = -1;
2199 } else {
2200 if(flg_export>0 || cur->flg_export>1)
2201 cur->flg_export=1;
2202 free(cur->value);
2203
2204 cur->value = strdup(value);
2205 }
2206 }
2207 } else {
2208 cur = malloc(sizeof(struct variables));
2209 if(!cur) {
2210 result = -1;
2211 } else {
2212 cur->name = strdup(name);
Kim Phillipsb052b602012-10-29 13:34:32 +00002213 if (cur->name == NULL) {
wdenkfe8c2802002-11-03 00:38:21 +00002214 free(cur);
2215 result = -1;
2216 } else {
2217 struct variables *bottom = top_vars;
2218 cur->value = strdup(value);
Kim Phillipsb052b602012-10-29 13:34:32 +00002219 cur->next = NULL;
wdenkfe8c2802002-11-03 00:38:21 +00002220 cur->flg_export = flg_export;
2221 cur->flg_read_only = 0;
2222 while(bottom->next) bottom=bottom->next;
2223 bottom->next = cur;
2224 }
2225 }
2226 }
2227
2228#ifndef __U_BOOT__
2229 if(result==0 && cur->flg_export==1) {
2230 *(value-1) = '=';
2231 result = putenv(name);
2232 } else {
2233#endif
2234 free(name);
2235#ifndef __U_BOOT__
2236 if(result>0) /* equivalent to previous set */
2237 result = 0;
2238 }
2239#endif
2240 return result;
2241}
2242
Heiko Schocher49ebcb52008-10-15 09:40:28 +02002243void unset_local_var(const char *name)
wdenkfe8c2802002-11-03 00:38:21 +00002244{
2245 struct variables *cur;
2246
2247 if (name) {
2248 for (cur = top_vars; cur; cur=cur->next) {
2249 if(strcmp(cur->name, name)==0)
2250 break;
2251 }
Kim Phillipsb052b602012-10-29 13:34:32 +00002252 if (cur != NULL) {
wdenkfe8c2802002-11-03 00:38:21 +00002253 struct variables *next = top_vars;
2254 if(cur->flg_read_only) {
2255 error_msg("%s: readonly variable", name);
2256 return;
2257 } else {
Heiko Schocher49ebcb52008-10-15 09:40:28 +02002258#ifndef __U_BOOT__
wdenkfe8c2802002-11-03 00:38:21 +00002259 if(cur->flg_export)
Simon Glass6a38e412017-08-03 12:22:09 -06002260 unenv_set(cur->name);
Heiko Schocher49ebcb52008-10-15 09:40:28 +02002261#endif
wdenkfe8c2802002-11-03 00:38:21 +00002262 free(cur->name);
2263 free(cur->value);
2264 while (next->next != cur)
2265 next = next->next;
2266 next->next = cur->next;
2267 }
2268 free(cur);
2269 }
2270 }
2271}
wdenkfe8c2802002-11-03 00:38:21 +00002272
2273static int is_assignment(const char *s)
2274{
wdenk6203e402004-04-18 10:13:26 +00002275 if (s == NULL)
2276 return 0;
2277
2278 if (!isalpha(*s)) return 0;
wdenkfe8c2802002-11-03 00:38:21 +00002279 ++s;
2280 while(isalnum(*s) || *s=='_') ++s;
2281 return *s=='=';
2282}
2283
2284#ifndef __U_BOOT__
2285/* the src parameter allows us to peek forward to a possible &n syntax
2286 * for file descriptor duplication, e.g., "2>&1".
2287 * Return code is 0 normally, 1 if a syntax error is detected in src.
2288 * Resource errors (in xmalloc) cause the process to exit */
2289static int setup_redirect(struct p_context *ctx, int fd, redir_type style,
2290 struct in_str *input)
2291{
2292 struct child_prog *child=ctx->child;
2293 struct redir_struct *redir = child->redirects;
2294 struct redir_struct *last_redir=NULL;
2295
2296 /* Create a new redir_struct and drop it onto the end of the linked list */
2297 while(redir) {
2298 last_redir=redir;
2299 redir=redir->next;
2300 }
2301 redir = xmalloc(sizeof(struct redir_struct));
2302 redir->next=NULL;
2303 redir->word.gl_pathv=NULL;
2304 if (last_redir) {
2305 last_redir->next=redir;
2306 } else {
2307 child->redirects=redir;
2308 }
2309
2310 redir->type=style;
2311 redir->fd= (fd==-1) ? redir_table[style].default_fd : fd ;
2312
2313 debug_printf("Redirect type %d%s\n", redir->fd, redir_table[style].descrip);
2314
2315 /* Check for a '2>&1' type redirect */
2316 redir->dup = redirect_dup_num(input);
2317 if (redir->dup == -2) return 1; /* syntax error */
2318 if (redir->dup != -1) {
2319 /* Erik had a check here that the file descriptor in question
2320 * is legit; I postpone that to "run time"
2321 * A "-" representation of "close me" shows up as a -3 here */
2322 debug_printf("Duplicating redirect '%d>&%d'\n", redir->fd, redir->dup);
2323 } else {
2324 /* We do _not_ try to open the file that src points to,
2325 * since we need to return and let src be expanded first.
2326 * Set ctx->pending_redirect, so we know what to do at the
2327 * end of the next parsed word.
2328 */
2329 ctx->pending_redirect = redir;
2330 }
2331 return 0;
2332}
2333#endif
2334
Kim Phillipsb052b602012-10-29 13:34:32 +00002335static struct pipe *new_pipe(void)
2336{
wdenkfe8c2802002-11-03 00:38:21 +00002337 struct pipe *pi;
2338 pi = xmalloc(sizeof(struct pipe));
2339 pi->num_progs = 0;
2340 pi->progs = NULL;
2341 pi->next = NULL;
2342 pi->followup = 0; /* invalid */
Wolfgang Denk00b67fd2005-09-28 01:49:47 +02002343 pi->r_mode = RES_NONE;
wdenkfe8c2802002-11-03 00:38:21 +00002344 return pi;
2345}
2346
2347static void initialize_context(struct p_context *ctx)
2348{
2349 ctx->pipe=NULL;
2350#ifndef __U_BOOT__
2351 ctx->pending_redirect=NULL;
2352#endif
2353 ctx->child=NULL;
2354 ctx->list_head=new_pipe();
2355 ctx->pipe=ctx->list_head;
2356 ctx->w=RES_NONE;
2357 ctx->stack=NULL;
2358#ifdef __U_BOOT__
2359 ctx->old_flag=0;
2360#endif
2361 done_command(ctx); /* creates the memory for working child */
2362}
2363
2364/* normal return is 0
2365 * if a reserved word is found, and processed, return 1
2366 * should handle if, then, elif, else, fi, for, while, until, do, done.
2367 * case, function, and select are obnoxious, save those for later.
2368 */
wdenkb02744a2003-04-05 00:53:31 +00002369struct reserved_combo {
2370 char *literal;
2371 int code;
2372 long flag;
2373};
2374/* Mostly a list of accepted follow-up reserved words.
2375 * FLAG_END means we are done with the sequence, and are ready
2376 * to turn the compound list into a command.
2377 * FLAG_START means the word must start a new compound list.
2378 */
2379static struct reserved_combo reserved_list[] = {
2380 { "if", RES_IF, FLAG_THEN | FLAG_START },
2381 { "then", RES_THEN, FLAG_ELIF | FLAG_ELSE | FLAG_FI },
2382 { "elif", RES_ELIF, FLAG_THEN },
2383 { "else", RES_ELSE, FLAG_FI },
2384 { "fi", RES_FI, FLAG_END },
2385 { "for", RES_FOR, FLAG_IN | FLAG_START },
2386 { "while", RES_WHILE, FLAG_DO | FLAG_START },
2387 { "until", RES_UNTIL, FLAG_DO | FLAG_START },
2388 { "in", RES_IN, FLAG_DO },
2389 { "do", RES_DO, FLAG_DONE },
2390 { "done", RES_DONE, FLAG_END }
2391};
2392#define NRES (sizeof(reserved_list)/sizeof(struct reserved_combo))
2393
Kim Phillipsb052b602012-10-29 13:34:32 +00002394static int reserved_word(o_string *dest, struct p_context *ctx)
wdenkfe8c2802002-11-03 00:38:21 +00002395{
wdenkfe8c2802002-11-03 00:38:21 +00002396 struct reserved_combo *r;
2397 for (r=reserved_list;
wdenkfe8c2802002-11-03 00:38:21 +00002398 r<reserved_list+NRES; r++) {
2399 if (strcmp(dest->data, r->literal) == 0) {
2400 debug_printf("found reserved word %s, code %d\n",r->literal,r->code);
2401 if (r->flag & FLAG_START) {
2402 struct p_context *new = xmalloc(sizeof(struct p_context));
2403 debug_printf("push stack\n");
2404 if (ctx->w == RES_IN || ctx->w == RES_FOR) {
2405 syntax();
2406 free(new);
2407 ctx->w = RES_SNTX;
2408 b_reset(dest);
2409 return 1;
2410 }
2411 *new = *ctx; /* physical copy */
2412 initialize_context(ctx);
2413 ctx->stack=new;
2414 } else if ( ctx->w == RES_NONE || ! (ctx->old_flag & (1<<r->code))) {
2415 syntax();
2416 ctx->w = RES_SNTX;
2417 b_reset(dest);
2418 return 1;
2419 }
2420 ctx->w=r->code;
2421 ctx->old_flag = r->flag;
2422 if (ctx->old_flag & FLAG_END) {
2423 struct p_context *old;
2424 debug_printf("pop stack\n");
2425 done_pipe(ctx,PIPE_SEQ);
2426 old = ctx->stack;
2427 old->child->group = ctx->list_head;
2428#ifndef __U_BOOT__
2429 old->child->subshell = 0;
2430#endif
2431 *ctx = *old; /* physical copy */
2432 free(old);
2433 }
2434 b_reset (dest);
2435 return 1;
2436 }
2437 }
2438 return 0;
2439}
2440
2441/* normal return is 0.
2442 * Syntax or xglob errors return 1. */
2443static int done_word(o_string *dest, struct p_context *ctx)
2444{
2445 struct child_prog *child=ctx->child;
2446#ifndef __U_BOOT__
2447 glob_t *glob_target;
2448 int gr, flags = 0;
2449#else
2450 char *str, *s;
2451 int argc, cnt;
2452#endif
2453
2454 debug_printf("done_word: %s %p\n", dest->data, child);
2455 if (dest->length == 0 && !dest->nonnull) {
2456 debug_printf(" true null, ignored\n");
2457 return 0;
2458 }
2459#ifndef __U_BOOT__
2460 if (ctx->pending_redirect) {
2461 glob_target = &ctx->pending_redirect->word;
2462 } else {
2463#endif
2464 if (child->group) {
2465 syntax();
2466 return 1; /* syntax error, groups and arglists don't mix */
2467 }
2468 if (!child->argv && (ctx->type & FLAG_PARSE_SEMICOLON)) {
2469 debug_printf("checking %s for reserved-ness\n",dest->data);
2470 if (reserved_word(dest,ctx)) return ctx->w==RES_SNTX;
2471 }
2472#ifndef __U_BOOT__
2473 glob_target = &child->glob_result;
wdenk57b2d802003-06-27 21:31:46 +00002474 if (child->argv) flags |= GLOB_APPEND;
wdenkfe8c2802002-11-03 00:38:21 +00002475#else
2476 for (cnt = 1, s = dest->data; s && *s; s++) {
2477 if (*s == '\\') s++;
2478 cnt++;
2479 }
2480 str = malloc(cnt);
2481 if (!str) return 1;
2482 if ( child->argv == NULL) {
2483 child->argc=0;
2484 }
2485 argc = ++child->argc;
2486 child->argv = realloc(child->argv, (argc+1)*sizeof(*child->argv));
Peng Fan27a9d262015-11-27 10:12:02 +08002487 if (child->argv == NULL) {
2488 free(str);
2489 return 1;
2490 }
Stephen Warren60c38c92014-03-01 22:16:10 -07002491 child->argv_nonnull = realloc(child->argv_nonnull,
2492 (argc+1)*sizeof(*child->argv_nonnull));
Peng Fan27a9d262015-11-27 10:12:02 +08002493 if (child->argv_nonnull == NULL) {
2494 free(str);
Stephen Warren60c38c92014-03-01 22:16:10 -07002495 return 1;
Peng Fan27a9d262015-11-27 10:12:02 +08002496 }
wdenkfe8c2802002-11-03 00:38:21 +00002497 child->argv[argc-1]=str;
Stephen Warren60c38c92014-03-01 22:16:10 -07002498 child->argv_nonnull[argc-1] = dest->nonnull;
wdenkfe8c2802002-11-03 00:38:21 +00002499 child->argv[argc]=NULL;
Stephen Warren60c38c92014-03-01 22:16:10 -07002500 child->argv_nonnull[argc] = 0;
wdenkfe8c2802002-11-03 00:38:21 +00002501 for (s = dest->data; s && *s; s++,str++) {
2502 if (*s == '\\') s++;
2503 *str = *s;
2504 }
2505 *str = '\0';
2506#endif
2507#ifndef __U_BOOT__
2508 }
2509 gr = xglob(dest, flags, glob_target);
2510 if (gr != 0) return 1;
2511#endif
2512
2513 b_reset(dest);
2514#ifndef __U_BOOT__
2515 if (ctx->pending_redirect) {
2516 ctx->pending_redirect=NULL;
2517 if (glob_target->gl_pathc != 1) {
2518 error_msg("ambiguous redirect");
2519 return 1;
2520 }
2521 } else {
2522 child->argv = glob_target->gl_pathv;
2523 }
2524#endif
2525 if (ctx->w == RES_FOR) {
2526 done_word(dest,ctx);
2527 done_pipe(ctx,PIPE_SEQ);
2528 }
2529 return 0;
2530}
2531
2532/* The only possible error here is out of memory, in which case
2533 * xmalloc exits. */
2534static int done_command(struct p_context *ctx)
2535{
2536 /* The child is really already in the pipe structure, so
2537 * advance the pipe counter and make a new, null child.
2538 * Only real trickiness here is that the uncommitted
2539 * child structure, to which ctx->child points, is not
2540 * counted in pi->num_progs. */
2541 struct pipe *pi=ctx->pipe;
2542 struct child_prog *prog=ctx->child;
2543
2544 if (prog && prog->group == NULL
wdenk57b2d802003-06-27 21:31:46 +00002545 && prog->argv == NULL
wdenkfe8c2802002-11-03 00:38:21 +00002546#ifndef __U_BOOT__
wdenk57b2d802003-06-27 21:31:46 +00002547 && prog->redirects == NULL) {
wdenkfe8c2802002-11-03 00:38:21 +00002548#else
2549 ) {
2550#endif
2551 debug_printf("done_command: skipping null command\n");
2552 return 0;
2553 } else if (prog) {
2554 pi->num_progs++;
2555 debug_printf("done_command: num_progs incremented to %d\n",pi->num_progs);
2556 } else {
2557 debug_printf("done_command: initializing\n");
2558 }
2559 pi->progs = xrealloc(pi->progs, sizeof(*pi->progs) * (pi->num_progs+1));
2560
2561 prog = pi->progs + pi->num_progs;
2562#ifndef __U_BOOT__
2563 prog->redirects = NULL;
2564#endif
2565 prog->argv = NULL;
Stephen Warren60c38c92014-03-01 22:16:10 -07002566 prog->argv_nonnull = NULL;
wdenkfe8c2802002-11-03 00:38:21 +00002567#ifndef __U_BOOT__
2568 prog->is_stopped = 0;
2569#endif
2570 prog->group = NULL;
2571#ifndef __U_BOOT__
2572 prog->glob_result.gl_pathv = NULL;
2573 prog->family = pi;
2574#endif
2575 prog->sp = 0;
2576 ctx->child = prog;
2577 prog->type = ctx->type;
2578
2579 /* but ctx->pipe and ctx->list_head remain unchanged */
2580 return 0;
2581}
2582
2583static int done_pipe(struct p_context *ctx, pipe_style type)
2584{
2585 struct pipe *new_p;
2586 done_command(ctx); /* implicit closure of previous command */
2587 debug_printf("done_pipe, type %d\n", type);
2588 ctx->pipe->followup = type;
2589 ctx->pipe->r_mode = ctx->w;
2590 new_p=new_pipe();
2591 ctx->pipe->next = new_p;
2592 ctx->pipe = new_p;
2593 ctx->child = NULL;
2594 done_command(ctx); /* set up new pipe to accept commands */
2595 return 0;
2596}
2597
2598#ifndef __U_BOOT__
2599/* peek ahead in the in_str to find out if we have a "&n" construct,
2600 * as in "2>&1", that represents duplicating a file descriptor.
2601 * returns either -2 (syntax error), -1 (no &), or the number found.
2602 */
2603static int redirect_dup_num(struct in_str *input)
2604{
2605 int ch, d=0, ok=0;
2606 ch = b_peek(input);
2607 if (ch != '&') return -1;
2608
2609 b_getch(input); /* get the & */
2610 ch=b_peek(input);
2611 if (ch == '-') {
2612 b_getch(input);
2613 return -3; /* "-" represents "close me" */
2614 }
2615 while (isdigit(ch)) {
2616 d = d*10+(ch-'0');
2617 ok=1;
2618 b_getch(input);
2619 ch = b_peek(input);
2620 }
2621 if (ok) return d;
2622
2623 error_msg("ambiguous redirect");
2624 return -2;
2625}
2626
2627/* If a redirect is immediately preceded by a number, that number is
2628 * supposed to tell which file descriptor to redirect. This routine
2629 * looks for such preceding numbers. In an ideal world this routine
2630 * needs to handle all the following classes of redirects...
2631 * echo 2>foo # redirects fd 2 to file "foo", nothing passed to echo
2632 * echo 49>foo # redirects fd 49 to file "foo", nothing passed to echo
2633 * echo -2>foo # redirects fd 1 to file "foo", "-2" passed to echo
2634 * echo 49x>foo # redirects fd 1 to file "foo", "49x" passed to echo
2635 * A -1 output from this program means no valid number was found, so the
2636 * caller should use the appropriate default for this redirection.
2637 */
2638static int redirect_opt_num(o_string *o)
2639{
2640 int num;
2641
2642 if (o->length==0) return -1;
2643 for(num=0; num<o->length; num++) {
2644 if (!isdigit(*(o->data+num))) {
2645 return -1;
2646 }
2647 }
2648 /* reuse num (and save an int) */
2649 num=atoi(o->data);
2650 b_reset(o);
2651 return num;
2652}
2653
2654FILE *generate_stream_from_list(struct pipe *head)
2655{
2656 FILE *pf;
2657#if 1
2658 int pid, channel[2];
2659 if (pipe(channel)<0) perror_msg_and_die("pipe");
2660 pid=fork();
2661 if (pid<0) {
2662 perror_msg_and_die("fork");
2663 } else if (pid==0) {
2664 close(channel[0]);
2665 if (channel[1] != 1) {
2666 dup2(channel[1],1);
2667 close(channel[1]);
2668 }
2669#if 0
2670#define SURROGATE "surrogate response"
2671 write(1,SURROGATE,sizeof(SURROGATE));
2672 _exit(run_list(head));
2673#else
2674 _exit(run_list_real(head)); /* leaks memory */
2675#endif
2676 }
2677 debug_printf("forked child %d\n",pid);
2678 close(channel[1]);
2679 pf = fdopen(channel[0],"r");
2680 debug_printf("pipe on FILE *%p\n",pf);
2681#else
2682 free_pipe_list(head,0);
2683 pf=popen("echo surrogate response","r");
2684 debug_printf("started fake pipe on FILE *%p\n",pf);
2685#endif
2686 return pf;
2687}
2688
2689/* this version hacked for testing purposes */
2690/* return code is exit status of the process that is run. */
2691static int process_command_subs(o_string *dest, struct p_context *ctx, struct in_str *input, int subst_end)
2692{
2693 int retcode;
2694 o_string result=NULL_O_STRING;
2695 struct p_context inner;
2696 FILE *p;
2697 struct in_str pipe_str;
2698 initialize_context(&inner);
2699
2700 /* recursion to generate command */
2701 retcode = parse_stream(&result, &inner, input, subst_end);
2702 if (retcode != 0) return retcode; /* syntax error or EOF */
2703 done_word(&result, &inner);
2704 done_pipe(&inner, PIPE_SEQ);
2705 b_free(&result);
2706
2707 p=generate_stream_from_list(inner.list_head);
2708 if (p==NULL) return 1;
2709 mark_open(fileno(p));
2710 setup_file_in_str(&pipe_str, p);
2711
2712 /* now send results of command back into original context */
2713 retcode = parse_stream(dest, ctx, &pipe_str, '\0');
2714 /* XXX In case of a syntax error, should we try to kill the child?
2715 * That would be tough to do right, so just read until EOF. */
2716 if (retcode == 1) {
2717 while (b_getch(&pipe_str)!=EOF) { /* discard */ };
2718 }
2719
2720 debug_printf("done reading from pipe, pclose()ing\n");
2721 /* This is the step that wait()s for the child. Should be pretty
2722 * safe, since we just read an EOF from its stdout. We could try
2723 * to better, by using wait(), and keeping track of background jobs
2724 * at the same time. That would be a lot of work, and contrary
2725 * to the KISS philosophy of this program. */
2726 mark_closed(fileno(p));
2727 retcode=pclose(p);
2728 free_pipe_list(inner.list_head,0);
2729 debug_printf("pclosed, retcode=%d\n",retcode);
2730 /* XXX this process fails to trim a single trailing newline */
2731 return retcode;
2732}
2733
2734static int parse_group(o_string *dest, struct p_context *ctx,
2735 struct in_str *input, int ch)
2736{
2737 int rcode, endch=0;
2738 struct p_context sub;
2739 struct child_prog *child = ctx->child;
2740 if (child->argv) {
2741 syntax();
2742 return 1; /* syntax error, groups and arglists don't mix */
2743 }
2744 initialize_context(&sub);
2745 switch(ch) {
2746 case '(': endch=')'; child->subshell=1; break;
2747 case '{': endch='}'; break;
2748 default: syntax(); /* really logic error */
2749 }
2750 rcode=parse_stream(dest,&sub,input,endch);
2751 done_word(dest,&sub); /* finish off the final word in the subcontext */
2752 done_pipe(&sub, PIPE_SEQ); /* and the final command there, too */
2753 child->group = sub.list_head;
2754 return rcode;
2755 /* child remains "open", available for possible redirects */
2756}
2757#endif
2758
2759/* basically useful version until someone wants to get fancier,
2760 * see the bash man page under "Parameter Expansion" */
2761static char *lookup_param(char *src)
2762{
wdenk6203e402004-04-18 10:13:26 +00002763 char *p;
Joe Hershberger82fea772012-08-17 10:26:29 +00002764 char *sep;
2765 char *default_val = NULL;
2766 int assign = 0;
2767 int expand_empty = 0;
wdenk6203e402004-04-18 10:13:26 +00002768
2769 if (!src)
2770 return NULL;
2771
Joe Hershberger82fea772012-08-17 10:26:29 +00002772 sep = strchr(src, ':');
2773
2774 if (sep) {
2775 *sep = '\0';
2776 if (*(sep + 1) == '-')
2777 default_val = sep+2;
2778 if (*(sep + 1) == '=') {
2779 default_val = sep+2;
2780 assign = 1;
2781 }
2782 if (*(sep + 1) == '+') {
2783 default_val = sep+2;
2784 expand_empty = 1;
2785 }
2786 }
2787
Simon Glass64b723f2017-08-03 12:22:12 -06002788 p = env_get(src);
Joe Hershberger82fea772012-08-17 10:26:29 +00002789 if (!p)
2790 p = get_local_var(src);
2791
2792 if (!p || strlen(p) == 0) {
2793 p = default_val;
2794 if (assign) {
2795 char *var = malloc(strlen(src)+strlen(default_val)+2);
2796 if (var) {
2797 sprintf(var, "%s=%s", src, default_val);
2798 set_local_var(var, 0);
2799 }
2800 free(var);
2801 }
2802 } else if (expand_empty) {
2803 p += strlen(p);
2804 }
2805
2806 if (sep)
2807 *sep = ':';
wdenk6203e402004-04-18 10:13:26 +00002808
wdenkfe8c2802002-11-03 00:38:21 +00002809 return p;
2810}
wdenk6203e402004-04-18 10:13:26 +00002811
2812#ifdef __U_BOOT__
2813static char *get_dollar_var(char ch)
2814{
2815 static char buf[40];
2816
2817 buf[0] = '\0';
2818 switch (ch) {
2819 case '?':
2820 sprintf(buf, "%u", (unsigned int)last_return_code);
2821 break;
2822 default:
2823 return NULL;
2824 }
2825 return buf;
2826}
2827#endif
wdenkfe8c2802002-11-03 00:38:21 +00002828
2829/* return code: 0 for OK, 1 for syntax error */
2830static int handle_dollar(o_string *dest, struct p_context *ctx, struct in_str *input)
2831{
2832#ifndef __U_BOOT__
2833 int i, advance=0;
2834#else
2835 int advance=0;
2836#endif
2837#ifndef __U_BOOT__
2838 char sep[]=" ";
2839#endif
2840 int ch = input->peek(input); /* first character after the $ */
2841 debug_printf("handle_dollar: ch=%c\n",ch);
2842 if (isalpha(ch)) {
2843 b_addchr(dest, SPECIAL_VAR_SYMBOL);
2844 ctx->child->sp++;
2845 while(ch=b_peek(input),isalnum(ch) || ch=='_') {
2846 b_getch(input);
2847 b_addchr(dest,ch);
2848 }
2849 b_addchr(dest, SPECIAL_VAR_SYMBOL);
2850#ifndef __U_BOOT__
2851 } else if (isdigit(ch)) {
2852 i = ch-'0'; /* XXX is $0 special? */
2853 if (i<global_argc) {
2854 parse_string(dest, ctx, global_argv[i]); /* recursion */
2855 }
2856 advance = 1;
2857#endif
2858 } else switch (ch) {
2859#ifndef __U_BOOT__
2860 case '$':
2861 b_adduint(dest,getpid());
2862 advance = 1;
2863 break;
2864 case '!':
2865 if (last_bg_pid > 0) b_adduint(dest, last_bg_pid);
2866 advance = 1;
2867 break;
2868#endif
2869 case '?':
wdenk6203e402004-04-18 10:13:26 +00002870#ifndef __U_BOOT__
wdenkfe8c2802002-11-03 00:38:21 +00002871 b_adduint(dest,last_return_code);
wdenk6203e402004-04-18 10:13:26 +00002872#else
2873 ctx->child->sp++;
2874 b_addchr(dest, SPECIAL_VAR_SYMBOL);
2875 b_addchr(dest, '$');
2876 b_addchr(dest, '?');
2877 b_addchr(dest, SPECIAL_VAR_SYMBOL);
2878#endif
wdenkfe8c2802002-11-03 00:38:21 +00002879 advance = 1;
2880 break;
2881#ifndef __U_BOOT__
2882 case '#':
2883 b_adduint(dest,global_argc ? global_argc-1 : 0);
2884 advance = 1;
2885 break;
2886#endif
2887 case '{':
2888 b_addchr(dest, SPECIAL_VAR_SYMBOL);
2889 ctx->child->sp++;
2890 b_getch(input);
2891 /* XXX maybe someone will try to escape the '}' */
2892 while(ch=b_getch(input),ch!=EOF && ch!='}') {
2893 b_addchr(dest,ch);
2894 }
2895 if (ch != '}') {
2896 syntax();
2897 return 1;
2898 }
2899 b_addchr(dest, SPECIAL_VAR_SYMBOL);
2900 break;
2901#ifndef __U_BOOT__
2902 case '(':
2903 b_getch(input);
2904 process_command_subs(dest, ctx, input, ')');
2905 break;
2906 case '*':
2907 sep[0]=ifs[0];
2908 for (i=1; i<global_argc; i++) {
2909 parse_string(dest, ctx, global_argv[i]);
2910 if (i+1 < global_argc) parse_string(dest, ctx, sep);
2911 }
2912 break;
2913 case '@':
2914 case '-':
2915 case '_':
2916 /* still unhandled, but should be eventually */
2917 error_msg("unhandled syntax: $%c",ch);
2918 return 1;
2919 break;
2920#endif
2921 default:
2922 b_addqchr(dest,'$',dest->quote);
2923 }
2924 /* Eat the character if the flag was set. If the compiler
2925 * is smart enough, we could substitute "b_getch(input);"
2926 * for all the "advance = 1;" above, and also end up with
2927 * a nice size-optimized program. Hah! That'll be the day.
2928 */
2929 if (advance) b_getch(input);
2930 return 0;
2931}
2932
2933#ifndef __U_BOOT__
2934int parse_string(o_string *dest, struct p_context *ctx, const char *src)
2935{
2936 struct in_str foo;
2937 setup_string_in_str(&foo, src);
2938 return parse_stream(dest, ctx, &foo, '\0');
2939}
2940#endif
2941
2942/* return code is 0 for normal exit, 1 for syntax error */
Kim Phillipsb052b602012-10-29 13:34:32 +00002943static int parse_stream(o_string *dest, struct p_context *ctx,
2944 struct in_str *input, int end_trigger)
wdenkfe8c2802002-11-03 00:38:21 +00002945{
2946 unsigned int ch, m;
2947#ifndef __U_BOOT__
2948 int redir_fd;
2949 redir_type redir_style;
2950#endif
2951 int next;
2952
2953 /* Only double-quote state is handled in the state variable dest->quote.
2954 * A single-quote triggers a bypass of the main loop until its mate is
2955 * found. When recursing, quote state is passed in via dest->quote. */
2956
2957 debug_printf("parse_stream, end_trigger=%d\n",end_trigger);
2958 while ((ch=b_getch(input))!=EOF) {
2959 m = map[ch];
2960#ifdef __U_BOOT__
2961 if (input->__promptme == 0) return 1;
2962#endif
2963 next = (ch == '\n') ? 0 : b_peek(input);
wdenk6203e402004-04-18 10:13:26 +00002964
2965 debug_printf("parse_stream: ch=%c (%d) m=%d quote=%d - %c\n",
2966 ch >= ' ' ? ch : '.', ch, m,
2967 dest->quote, ctx->stack == NULL ? '*' : '.');
2968
wdenkfe8c2802002-11-03 00:38:21 +00002969 if (m==0 || ((m==1 || m==2) && dest->quote)) {
2970 b_addqchr(dest, ch, dest->quote);
2971 } else {
2972 if (m==2) { /* unquoted IFS */
2973 if (done_word(dest, ctx)) {
2974 return 1;
2975 }
2976 /* If we aren't performing a substitution, treat a newline as a
2977 * command separator. */
2978 if (end_trigger != '\0' && ch=='\n')
2979 done_pipe(ctx,PIPE_SEQ);
2980 }
2981 if (ch == end_trigger && !dest->quote && ctx->w==RES_NONE) {
2982 debug_printf("leaving parse_stream (triggered)\n");
2983 return 0;
2984 }
2985#if 0
2986 if (ch=='\n') {
2987 /* Yahoo! Time to run with it! */
2988 done_pipe(ctx,PIPE_SEQ);
2989 run_list(ctx->list_head);
2990 initialize_context(ctx);
2991 }
2992#endif
2993 if (m!=2) switch (ch) {
2994 case '#':
2995 if (dest->length == 0 && !dest->quote) {
2996 while(ch=b_peek(input),ch!=EOF && ch!='\n') { b_getch(input); }
2997 } else {
2998 b_addqchr(dest, ch, dest->quote);
2999 }
3000 break;
3001 case '\\':
3002 if (next == EOF) {
3003 syntax();
3004 return 1;
3005 }
3006 b_addqchr(dest, '\\', dest->quote);
3007 b_addqchr(dest, b_getch(input), dest->quote);
3008 break;
3009 case '$':
3010 if (handle_dollar(dest, ctx, input)!=0) return 1;
3011 break;
3012 case '\'':
3013 dest->nonnull = 1;
3014 while(ch=b_getch(input),ch!=EOF && ch!='\'') {
3015#ifdef __U_BOOT__
3016 if(input->__promptme == 0) return 1;
3017#endif
3018 b_addchr(dest,ch);
3019 }
3020 if (ch==EOF) {
3021 syntax();
3022 return 1;
3023 }
3024 break;
3025 case '"':
3026 dest->nonnull = 1;
3027 dest->quote = !dest->quote;
3028 break;
3029#ifndef __U_BOOT__
3030 case '`':
3031 process_command_subs(dest, ctx, input, '`');
3032 break;
3033 case '>':
3034 redir_fd = redirect_opt_num(dest);
3035 done_word(dest, ctx);
3036 redir_style=REDIRECT_OVERWRITE;
3037 if (next == '>') {
3038 redir_style=REDIRECT_APPEND;
3039 b_getch(input);
3040 } else if (next == '(') {
3041 syntax(); /* until we support >(list) Process Substitution */
3042 return 1;
3043 }
3044 setup_redirect(ctx, redir_fd, redir_style, input);
3045 break;
3046 case '<':
3047 redir_fd = redirect_opt_num(dest);
3048 done_word(dest, ctx);
3049 redir_style=REDIRECT_INPUT;
3050 if (next == '<') {
3051 redir_style=REDIRECT_HEREIS;
3052 b_getch(input);
3053 } else if (next == '>') {
3054 redir_style=REDIRECT_IO;
3055 b_getch(input);
3056 } else if (next == '(') {
3057 syntax(); /* until we support <(list) Process Substitution */
3058 return 1;
3059 }
3060 setup_redirect(ctx, redir_fd, redir_style, input);
3061 break;
3062#endif
3063 case ';':
3064 done_word(dest, ctx);
3065 done_pipe(ctx,PIPE_SEQ);
3066 break;
3067 case '&':
3068 done_word(dest, ctx);
3069 if (next=='&') {
3070 b_getch(input);
3071 done_pipe(ctx,PIPE_AND);
3072 } else {
3073#ifndef __U_BOOT__
3074 done_pipe(ctx,PIPE_BG);
3075#else
3076 syntax_err();
3077 return 1;
3078#endif
3079 }
3080 break;
3081 case '|':
3082 done_word(dest, ctx);
3083 if (next=='|') {
3084 b_getch(input);
3085 done_pipe(ctx,PIPE_OR);
3086 } else {
3087 /* we could pick up a file descriptor choice here
3088 * with redirect_opt_num(), but bash doesn't do it.
3089 * "echo foo 2| cat" yields "foo 2". */
3090#ifndef __U_BOOT__
3091 done_command(ctx);
3092#else
3093 syntax_err();
3094 return 1;
3095#endif
3096 }
3097 break;
3098#ifndef __U_BOOT__
3099 case '(':
3100 case '{':
3101 if (parse_group(dest, ctx, input, ch)!=0) return 1;
3102 break;
3103 case ')':
3104 case '}':
3105 syntax(); /* Proper use of this character caught by end_trigger */
3106 return 1;
3107 break;
3108#endif
Joe Hershberger38de0b62012-08-17 10:26:30 +00003109 case SUBSTED_VAR_SYMBOL:
3110 dest->nonnull = 1;
3111 while (ch = b_getch(input), ch != EOF &&
3112 ch != SUBSTED_VAR_SYMBOL) {
3113 debug_printf("subst, pass=%d\n", ch);
3114 if (input->__promptme == 0)
3115 return 1;
3116 b_addchr(dest, ch);
3117 }
3118 debug_printf("subst, term=%d\n", ch);
3119 if (ch == EOF) {
3120 syntax();
3121 return 1;
3122 }
3123 break;
wdenkfe8c2802002-11-03 00:38:21 +00003124 default:
3125 syntax(); /* this is really an internal logic error */
3126 return 1;
3127 }
3128 }
3129 }
3130 /* complain if quote? No, maybe we just finished a command substitution
3131 * that was quoted. Example:
3132 * $ echo "`cat foo` plus more"
3133 * and we just got the EOF generated by the subshell that ran "cat foo"
3134 * The only real complaint is if we got an EOF when end_trigger != '\0',
3135 * that is, we were really supposed to get end_trigger, and never got
3136 * one before the EOF. Can't use the standard "syntax error" return code,
3137 * so that parse_stream_outer can distinguish the EOF and exit smoothly. */
3138 debug_printf("leaving parse_stream (EOF)\n");
3139 if (end_trigger != '\0') return -1;
3140 return 0;
3141}
3142
Kim Phillipsb052b602012-10-29 13:34:32 +00003143static void mapset(const unsigned char *set, int code)
wdenkfe8c2802002-11-03 00:38:21 +00003144{
3145 const unsigned char *s;
3146 for (s=set; *s; s++) map[*s] = code;
3147}
3148
Kim Phillipsb052b602012-10-29 13:34:32 +00003149static void update_ifs_map(void)
wdenkfe8c2802002-11-03 00:38:21 +00003150{
3151 /* char *ifs and char map[256] are both globals. */
Simon Glass64b723f2017-08-03 12:22:12 -06003152 ifs = (uchar *)env_get("IFS");
Wolfgang Denk7fb52662005-10-13 16:45:02 +02003153 if (ifs == NULL) ifs=(uchar *)" \t\n";
wdenkfe8c2802002-11-03 00:38:21 +00003154 /* Precompute a list of 'flow through' behavior so it can be treated
3155 * quickly up front. Computation is necessary because of IFS.
3156 * Special case handling of IFS == " \t\n" is not implemented.
3157 * The map[] array only really needs two bits each, and on most machines
3158 * that would be faster because of the reduced L1 cache footprint.
3159 */
3160 memset(map,0,sizeof(map)); /* most characters flow through always */
3161#ifndef __U_BOOT__
Wolfgang Denk7fb52662005-10-13 16:45:02 +02003162 mapset((uchar *)"\\$'\"`", 3); /* never flow through */
3163 mapset((uchar *)"<>;&|(){}#", 1); /* flow through if quoted */
wdenkfe8c2802002-11-03 00:38:21 +00003164#else
Joe Hershberger38de0b62012-08-17 10:26:30 +00003165 {
3166 uchar subst[2] = {SUBSTED_VAR_SYMBOL, 0};
3167 mapset(subst, 3); /* never flow through */
3168 }
Wolfgang Denk7fb52662005-10-13 16:45:02 +02003169 mapset((uchar *)"\\$'\"", 3); /* never flow through */
3170 mapset((uchar *)";&|#", 1); /* flow through if quoted */
wdenkfe8c2802002-11-03 00:38:21 +00003171#endif
3172 mapset(ifs, 2); /* also flow through if quoted */
3173}
3174
3175/* most recursion does not come through here, the exeception is
3176 * from builtin_source() */
Kim Phillipsb052b602012-10-29 13:34:32 +00003177static int parse_stream_outer(struct in_str *inp, int flag)
wdenkfe8c2802002-11-03 00:38:21 +00003178{
3179
3180 struct p_context ctx;
3181 o_string temp=NULL_O_STRING;
3182 int rcode;
3183#ifdef __U_BOOT__
Rabin Vincentc3249b82014-10-29 23:21:41 +01003184 int code = 1;
wdenkfe8c2802002-11-03 00:38:21 +00003185#endif
3186 do {
3187 ctx.type = flag;
3188 initialize_context(&ctx);
3189 update_ifs_map();
Wolfgang Denk7fb52662005-10-13 16:45:02 +02003190 if (!(flag & FLAG_PARSE_SEMICOLON) || (flag & FLAG_REPARSING)) mapset((uchar *)";$&|", 0);
wdenkfe8c2802002-11-03 00:38:21 +00003191 inp->promptmode=1;
Simon Glass94cb9c22014-10-07 13:59:43 -06003192 rcode = parse_stream(&temp, &ctx, inp,
3193 flag & FLAG_CONT_ON_NEWLINE ? -1 : '\n');
wdenkfe8c2802002-11-03 00:38:21 +00003194#ifdef __U_BOOT__
3195 if (rcode == 1) flag_repeat = 0;
3196#endif
3197 if (rcode != 1 && ctx.old_flag != 0) {
3198 syntax();
3199#ifdef __U_BOOT__
3200 flag_repeat = 0;
3201#endif
3202 }
3203 if (rcode != 1 && ctx.old_flag == 0) {
3204 done_word(&temp, &ctx);
3205 done_pipe(&ctx,PIPE_SEQ);
3206#ifndef __U_BOOT__
3207 run_list(ctx.list_head);
3208#else
wdenk6203e402004-04-18 10:13:26 +00003209 code = run_list(ctx.list_head);
3210 if (code == -2) { /* exit */
3211 b_free(&temp);
3212 code = 0;
3213 /* XXX hackish way to not allow exit from main loop */
3214 if (inp->peek == file_peek) {
3215 printf("exit not allowed from main input shell.\n");
3216 continue;
3217 }
Marek Vasutfd099322022-12-20 07:25:59 +01003218 /*
3219 * DANGER
3220 * Return code -2 is special in this context,
3221 * it indicates exit from inner pipe instead
3222 * of return code itself, the return code is
3223 * stored in 'last_return_code' variable!
3224 * DANGER
3225 */
3226 return -2;
wdenk6203e402004-04-18 10:13:26 +00003227 }
3228 if (code == -1)
wdenkfe8c2802002-11-03 00:38:21 +00003229 flag_repeat = 0;
3230#endif
3231 } else {
3232 if (ctx.old_flag != 0) {
3233 free(ctx.stack);
3234 b_reset(&temp);
3235 }
3236#ifdef __U_BOOT__
3237 if (inp->__promptme == 0) printf("<INTERRUPT>\n");
3238 inp->__promptme = 1;
3239#endif
3240 temp.nonnull = 0;
3241 temp.quote = 0;
3242 inp->p = NULL;
3243 free_pipe_list(ctx.list_head,0);
3244 }
3245 b_free(&temp);
Simon Glass29617102014-05-30 14:41:50 -06003246 /* loop on syntax errors, return on EOF */
Rabin Vincentae68a822014-11-21 23:05:22 +01003247 } while (rcode != -1 && !(flag & FLAG_EXIT_FROM_LOOP) &&
Simon Glass29617102014-05-30 14:41:50 -06003248 (inp->peek != static_peek || b_peek(inp)));
wdenkfe8c2802002-11-03 00:38:21 +00003249#ifndef __U_BOOT__
3250 return 0;
3251#else
3252 return (code != 0) ? 1 : 0;
3253#endif /* __U_BOOT__ */
3254}
3255
3256#ifndef __U_BOOT__
3257static int parse_string_outer(const char *s, int flag)
3258#else
Jason Hobbsa56febb2011-08-31 05:37:24 +00003259int parse_string_outer(const char *s, int flag)
wdenkfe8c2802002-11-03 00:38:21 +00003260#endif /* __U_BOOT__ */
3261{
3262 struct in_str input;
Marek Vasutfd099322022-12-20 07:25:59 +01003263 int rcode;
wdenkfe8c2802002-11-03 00:38:21 +00003264#ifdef __U_BOOT__
3265 char *p = NULL;
Rabin Vincent401ac652014-10-29 23:21:39 +01003266 if (!s)
wdenkfe8c2802002-11-03 00:38:21 +00003267 return 1;
Rabin Vincent401ac652014-10-29 23:21:39 +01003268 if (!*s)
3269 return 0;
wdenkfe8c2802002-11-03 00:38:21 +00003270 if (!(p = strchr(s, '\n')) || *++p) {
3271 p = xmalloc(strlen(s) + 2);
3272 strcpy(p, s);
3273 strcat(p, "\n");
3274 setup_string_in_str(&input, p);
3275 rcode = parse_stream_outer(&input, flag);
3276 free(p);
Marek Vasutfd099322022-12-20 07:25:59 +01003277 return rcode == -2 ? last_return_code : rcode;
wdenkfe8c2802002-11-03 00:38:21 +00003278 } else {
3279#endif
3280 setup_string_in_str(&input, s);
Marek Vasutfd099322022-12-20 07:25:59 +01003281 rcode = parse_stream_outer(&input, flag);
3282 return rcode == -2 ? last_return_code : rcode;
wdenkfe8c2802002-11-03 00:38:21 +00003283#ifdef __U_BOOT__
3284 }
3285#endif
3286}
3287
3288#ifndef __U_BOOT__
3289static int parse_file_outer(FILE *f)
3290#else
3291int parse_file_outer(void)
3292#endif
3293{
3294 int rcode;
3295 struct in_str input;
3296#ifndef __U_BOOT__
3297 setup_file_in_str(&input, f);
3298#else
3299 setup_file_in_str(&input);
3300#endif
3301 rcode = parse_stream_outer(&input, FLAG_PARSE_SEMICOLON);
Marek Vasutfd099322022-12-20 07:25:59 +01003302 return rcode == -2 ? last_return_code : rcode;
wdenkfe8c2802002-11-03 00:38:21 +00003303}
3304
3305#ifdef __U_BOOT__
3306int u_boot_hush_start(void)
3307{
wdenkbd1575f2003-10-14 19:43:55 +00003308 if (top_vars == NULL) {
3309 top_vars = malloc(sizeof(struct variables));
3310 top_vars->name = "HUSH_VERSION";
3311 top_vars->value = "0.01";
Kim Phillipsb052b602012-10-29 13:34:32 +00003312 top_vars->next = NULL;
wdenkbd1575f2003-10-14 19:43:55 +00003313 top_vars->flg_export = 0;
3314 top_vars->flg_read_only = 1;
wdenkbd1575f2003-10-14 19:43:55 +00003315 }
wdenkfe8c2802002-11-03 00:38:21 +00003316 return 0;
3317}
3318
3319static void *xmalloc(size_t size)
3320{
3321 void *p = NULL;
3322
3323 if (!(p = malloc(size))) {
peng.wang@smartm.comd18973c2021-05-04 01:45:59 -07003324 printf("ERROR : xmalloc failed\n");
wdenkfe8c2802002-11-03 00:38:21 +00003325 for(;;);
3326 }
3327 return p;
3328}
3329
3330static void *xrealloc(void *ptr, size_t size)
3331{
3332 void *p = NULL;
3333
3334 if (!(p = realloc(ptr, size))) {
peng.wang@smartm.comd18973c2021-05-04 01:45:59 -07003335 printf("ERROR : xrealloc failed\n");
wdenkfe8c2802002-11-03 00:38:21 +00003336 for(;;);
3337 }
3338 return p;
3339}
3340#endif /* __U_BOOT__ */
3341
3342#ifndef __U_BOOT__
3343/* Make sure we have a controlling tty. If we get started under a job
3344 * aware app (like bash for example), make sure we are now in charge so
3345 * we don't fight over who gets the foreground */
wdenke7f34c62003-01-11 09:48:40 +00003346static void setup_job_control(void)
wdenkfe8c2802002-11-03 00:38:21 +00003347{
3348 static pid_t shell_pgrp;
3349 /* Loop until we are in the foreground. */
3350 while (tcgetpgrp (shell_terminal) != (shell_pgrp = getpgrp ()))
3351 kill (- shell_pgrp, SIGTTIN);
3352
3353 /* Ignore interactive and job-control signals. */
3354 signal(SIGINT, SIG_IGN);
3355 signal(SIGQUIT, SIG_IGN);
3356 signal(SIGTERM, SIG_IGN);
3357 signal(SIGTSTP, SIG_IGN);
3358 signal(SIGTTIN, SIG_IGN);
3359 signal(SIGTTOU, SIG_IGN);
3360 signal(SIGCHLD, SIG_IGN);
3361
3362 /* Put ourselves in our own process group. */
3363 setsid();
3364 shell_pgrp = getpid ();
3365 setpgid (shell_pgrp, shell_pgrp);
3366
3367 /* Grab control of the terminal. */
3368 tcsetpgrp(shell_terminal, shell_pgrp);
3369}
3370
Wolfgang Denk6262d0212010-06-28 22:00:46 +02003371int hush_main(int argc, char * const *argv)
wdenkfe8c2802002-11-03 00:38:21 +00003372{
3373 int opt;
3374 FILE *input;
3375 char **e = environ;
3376
3377 /* XXX what should these be while sourcing /etc/profile? */
3378 global_argc = argc;
3379 global_argv = argv;
3380
3381 /* (re?) initialize globals. Sometimes hush_main() ends up calling
3382 * hush_main(), therefore we cannot rely on the BSS to zero out this
3383 * stuff. Reset these to 0 every time. */
3384 ifs = NULL;
3385 /* map[] is taken care of with call to update_ifs_map() */
3386 fake_mode = 0;
3387 interactive = 0;
3388 close_me_head = NULL;
3389 last_bg_pid = 0;
3390 job_list = NULL;
3391 last_jobid = 0;
3392
3393 /* Initialize some more globals to non-zero values */
3394 set_cwd();
wdenke7f34c62003-01-11 09:48:40 +00003395#ifdef CONFIG_FEATURE_COMMAND_EDITING
wdenkfe8c2802002-11-03 00:38:21 +00003396 cmdedit_set_initial_prompt();
3397#else
3398 PS1 = NULL;
3399#endif
3400 PS2 = "> ";
3401
3402 /* initialize our shell local variables with the values
3403 * currently living in the environment */
3404 if (e) {
3405 for (; *e; e++)
3406 set_local_var(*e, 2); /* without call putenv() */
3407 }
3408
3409 last_return_code=EXIT_SUCCESS;
3410
wdenkfe8c2802002-11-03 00:38:21 +00003411 if (argv[0] && argv[0][0] == '-') {
3412 debug_printf("\nsourcing /etc/profile\n");
3413 if ((input = fopen("/etc/profile", "r")) != NULL) {
3414 mark_open(fileno(input));
3415 parse_file_outer(input);
3416 mark_closed(fileno(input));
3417 fclose(input);
3418 }
3419 }
3420 input=stdin;
3421
3422 while ((opt = getopt(argc, argv, "c:xif")) > 0) {
3423 switch (opt) {
3424 case 'c':
3425 {
3426 global_argv = argv+optind;
3427 global_argc = argc-optind;
3428 opt = parse_string_outer(optarg, FLAG_PARSE_SEMICOLON);
3429 goto final_return;
3430 }
3431 break;
3432 case 'i':
3433 interactive++;
3434 break;
3435 case 'f':
3436 fake_mode++;
3437 break;
3438 default:
3439#ifndef BB_VER
3440 fprintf(stderr, "Usage: sh [FILE]...\n"
3441 " or: sh -c command [args]...\n\n");
3442 exit(EXIT_FAILURE);
3443#else
3444 show_usage();
3445#endif
3446 }
3447 }
3448 /* A shell is interactive if the `-i' flag was given, or if all of
3449 * the following conditions are met:
3450 * no -c command
3451 * no arguments remaining or the -s flag given
3452 * standard input is a terminal
3453 * standard output is a terminal
3454 * Refer to Posix.2, the description of the `sh' utility. */
3455 if (argv[optind]==NULL && input==stdin &&
3456 isatty(fileno(stdin)) && isatty(fileno(stdout))) {
3457 interactive++;
3458 }
3459
3460 debug_printf("\ninteractive=%d\n", interactive);
3461 if (interactive) {
3462 /* Looks like they want an interactive shell */
wdenk57b2d802003-06-27 21:31:46 +00003463#ifndef CONFIG_FEATURE_SH_EXTRA_QUIET
wdenke7f34c62003-01-11 09:48:40 +00003464 printf( "\n\n" BB_BANNER " hush - the humble shell v0.01 (testing)\n");
3465 printf( "Enter 'help' for a list of built-in commands.\n\n");
3466#endif
wdenkfe8c2802002-11-03 00:38:21 +00003467 setup_job_control();
3468 }
3469
3470 if (argv[optind]==NULL) {
3471 opt=parse_file_outer(stdin);
3472 goto final_return;
3473 }
3474
3475 debug_printf("\nrunning script '%s'\n", argv[optind]);
3476 global_argv = argv+optind;
3477 global_argc = argc-optind;
3478 input = xfopen(argv[optind], "r");
3479 opt = parse_file_outer(input);
3480
wdenke7f34c62003-01-11 09:48:40 +00003481#ifdef CONFIG_FEATURE_CLEAN_UP
wdenkfe8c2802002-11-03 00:38:21 +00003482 fclose(input);
3483 if (cwd && cwd != unknown)
3484 free((char*)cwd);
3485 {
3486 struct variables *cur, *tmp;
3487 for(cur = top_vars; cur; cur = tmp) {
3488 tmp = cur->next;
3489 if (!cur->flg_read_only) {
3490 free(cur->name);
3491 free(cur->value);
3492 free(cur);
3493 }
3494 }
3495 }
3496#endif
3497
3498final_return:
3499 return(opt?opt:last_return_code);
3500}
3501#endif
3502
3503static char *insert_var_value(char *inp)
3504{
Joe Hershberger38de0b62012-08-17 10:26:30 +00003505 return insert_var_value_sub(inp, 0);
3506}
3507
3508static char *insert_var_value_sub(char *inp, int tag_subst)
3509{
wdenkfe8c2802002-11-03 00:38:21 +00003510 int res_str_len = 0;
3511 int len;
3512 int done = 0;
3513 char *p, *p1, *res_str = NULL;
3514
3515 while ((p = strchr(inp, SPECIAL_VAR_SYMBOL))) {
Nishanth Menon0978ef32015-12-04 13:02:11 -06003516 /* check the beginning of the string for normal characters */
wdenkfe8c2802002-11-03 00:38:21 +00003517 if (p != inp) {
Nishanth Menon0978ef32015-12-04 13:02:11 -06003518 /* copy any characters to the result string */
wdenkfe8c2802002-11-03 00:38:21 +00003519 len = p - inp;
3520 res_str = xrealloc(res_str, (res_str_len + len));
3521 strncpy((res_str + res_str_len), inp, len);
3522 res_str_len += len;
3523 }
3524 inp = ++p;
Joe Hershberger38de0b62012-08-17 10:26:30 +00003525 /* find the ending marker */
wdenkfe8c2802002-11-03 00:38:21 +00003526 p = strchr(inp, SPECIAL_VAR_SYMBOL);
3527 *p = '\0';
Joe Hershberger38de0b62012-08-17 10:26:30 +00003528 /* look up the value to substitute */
wdenkfe8c2802002-11-03 00:38:21 +00003529 if ((p1 = lookup_param(inp))) {
Joe Hershberger38de0b62012-08-17 10:26:30 +00003530 if (tag_subst)
3531 len = res_str_len + strlen(p1) + 2;
3532 else
3533 len = res_str_len + strlen(p1);
wdenkfe8c2802002-11-03 00:38:21 +00003534 res_str = xrealloc(res_str, (1 + len));
Joe Hershberger38de0b62012-08-17 10:26:30 +00003535 if (tag_subst) {
3536 /*
3537 * copy the variable value to the result
3538 * string
3539 */
3540 strcpy((res_str + res_str_len + 1), p1);
3541
3542 /*
3543 * mark the replaced text to be accepted as
3544 * is
3545 */
3546 res_str[res_str_len] = SUBSTED_VAR_SYMBOL;
3547 res_str[res_str_len + 1 + strlen(p1)] =
3548 SUBSTED_VAR_SYMBOL;
3549 } else
3550 /*
3551 * copy the variable value to the result
3552 * string
3553 */
3554 strcpy((res_str + res_str_len), p1);
3555
wdenkfe8c2802002-11-03 00:38:21 +00003556 res_str_len = len;
3557 }
3558 *p = SPECIAL_VAR_SYMBOL;
3559 inp = ++p;
3560 done = 1;
3561 }
3562 if (done) {
3563 res_str = xrealloc(res_str, (1 + res_str_len + strlen(inp)));
3564 strcpy((res_str + res_str_len), inp);
3565 while ((p = strchr(res_str, '\n'))) {
3566 *p = ' ';
3567 }
3568 }
3569 return (res_str == NULL) ? inp : res_str;
3570}
3571
3572static char **make_list_in(char **inp, char *name)
3573{
3574 int len, i;
3575 int name_len = strlen(name);
3576 int n = 0;
3577 char **list;
3578 char *p1, *p2, *p3;
3579
3580 /* create list of variable values */
3581 list = xmalloc(sizeof(*list));
3582 for (i = 0; inp[i]; i++) {
3583 p3 = insert_var_value(inp[i]);
3584 p1 = p3;
3585 while (*p1) {
Jeroen Hofstee95ab0d32014-06-11 00:28:47 +02003586 if (*p1 == ' ') {
wdenkfe8c2802002-11-03 00:38:21 +00003587 p1++;
3588 continue;
3589 }
3590 if ((p2 = strchr(p1, ' '))) {
3591 len = p2 - p1;
3592 } else {
3593 len = strlen(p1);
3594 p2 = p1 + len;
3595 }
3596 /* we use n + 2 in realloc for list,because we add
3597 * new element and then we will add NULL element */
3598 list = xrealloc(list, sizeof(*list) * (n + 2));
3599 list[n] = xmalloc(2 + name_len + len);
3600 strcpy(list[n], name);
3601 strcat(list[n], "=");
3602 strncat(list[n], p1, len);
3603 list[n++][name_len + len + 1] = '\0';
3604 p1 = p2;
3605 }
3606 if (p3 != inp[i]) free(p3);
3607 }
3608 list[n] = NULL;
3609 return list;
3610}
3611
Stephen Warren60c38c92014-03-01 22:16:10 -07003612/*
3613 * Make new string for parser
3614 * inp - array of argument strings to flatten
3615 * nonnull - indicates argument was quoted when originally parsed
3616 */
3617static char *make_string(char **inp, int *nonnull)
wdenkfe8c2802002-11-03 00:38:21 +00003618{
3619 char *p;
3620 char *str = NULL;
3621 int n;
3622 int len = 2;
Joe Hershberger38de0b62012-08-17 10:26:30 +00003623 char *noeval_str;
3624 int noeval = 0;
wdenkfe8c2802002-11-03 00:38:21 +00003625
Joe Hershberger38de0b62012-08-17 10:26:30 +00003626 noeval_str = get_local_var("HUSH_NO_EVAL");
3627 if (noeval_str != NULL && *noeval_str != '0' && *noeval_str != '\0')
3628 noeval = 1;
wdenkfe8c2802002-11-03 00:38:21 +00003629 for (n = 0; inp[n]; n++) {
Joe Hershberger38de0b62012-08-17 10:26:30 +00003630 p = insert_var_value_sub(inp[n], noeval);
Anton Moryakov09794a62025-02-07 01:01:23 +03003631 char *new_str = xrealloc(str, (len + strlen(p) + (2 * nonnull[n])));
3632 if (!new_str) {
3633 free(str);
3634 if (p != inp[n]) free(p);
3635 return NULL;
3636 }
3637 str = new_str;
wdenkfe8c2802002-11-03 00:38:21 +00003638 if (n) {
3639 strcat(str, " ");
3640 } else {
3641 *str = '\0';
3642 }
Stephen Warren60c38c92014-03-01 22:16:10 -07003643 if (nonnull[n])
3644 strcat(str, "'");
wdenkfe8c2802002-11-03 00:38:21 +00003645 strcat(str, p);
Stephen Warren60c38c92014-03-01 22:16:10 -07003646 if (nonnull[n])
3647 strcat(str, "'");
wdenkfe8c2802002-11-03 00:38:21 +00003648 len = strlen(str) + 3;
3649 if (p != inp[n]) free(p);
3650 }
3651 len = strlen(str);
3652 *(str + len) = '\n';
3653 *(str + len + 1) = '\0';
3654 return str;
3655}
3656
Heiko Schocher49ebcb52008-10-15 09:40:28 +02003657#ifdef __U_BOOT__
Simon Glassed38aef2020-05-10 11:40:03 -06003658static int do_showvar(struct cmd_tbl *cmdtp, int flag, int argc,
3659 char *const argv[])
Heiko Schocher49ebcb52008-10-15 09:40:28 +02003660{
3661 int i, k;
3662 int rcode = 0;
3663 struct variables *cur;
3664
3665 if (argc == 1) { /* Print all env variables */
3666 for (cur = top_vars; cur; cur = cur->next) {
3667 printf ("%s=%s\n", cur->name, cur->value);
3668 if (ctrlc ()) {
3669 puts ("\n ** Abort\n");
3670 return 1;
3671 }
3672 }
3673 return 0;
3674 }
3675 for (i = 1; i < argc; ++i) { /* print single env variables */
3676 char *name = argv[i];
3677
3678 k = -1;
3679 for (cur = top_vars; cur; cur = cur->next) {
3680 if(strcmp (cur->name, name) == 0) {
3681 k = 0;
3682 printf ("%s=%s\n", cur->name, cur->value);
3683 }
3684 if (ctrlc ()) {
3685 puts ("\n ** Abort\n");
3686 return 1;
3687 }
3688 }
3689 if (k < 0) {
3690 printf ("## Error: \"%s\" not defined\n", name);
3691 rcode ++;
3692 }
3693 }
3694 return rcode;
3695}
3696
3697U_BOOT_CMD(
Jean-Christophe PLAGNIOL-VILLARD03836942008-10-16 15:01:15 +02003698 showvar, CONFIG_SYS_MAXARGS, 1, do_showvar,
Peter Tyserdfb72b82009-01-27 18:03:12 -06003699 "print local hushshell variables",
Heiko Schocher49ebcb52008-10-15 09:40:28 +02003700 "\n - print values of all hushshell variables\n"
3701 "showvar name ...\n"
Wolfgang Denkc54781c2009-05-24 17:06:54 +02003702 " - print value of hushshell variable 'name'"
Heiko Schocher49ebcb52008-10-15 09:40:28 +02003703);
3704
3705#endif
wdenkfe8c2802002-11-03 00:38:21 +00003706/****************************************************************************/