bab98dfee9521d3e8a03db89a25f0a7c370cb7be
[openocd.git] / src / helper / command.c
1 /***************************************************************************
2 * Copyright (C) 2005 by Dominic Rath *
3 * Dominic.Rath@gmx.de *
4 * *
5 * Copyright (C) 2007,2008 Øyvind Harboe *
6 * oyvind.harboe@zylin.com *
7 * *
8 * Copyright (C) 2008, Duane Ellis *
9 * openocd@duaneeellis.com *
10 * *
11 * part of this file is taken from libcli (libcli.sourceforge.net) *
12 * Copyright (C) David Parrish (david@dparrish.com) *
13 * *
14 * This program is free software; you can redistribute it and/or modify *
15 * it under the terms of the GNU General Public License as published by *
16 * the Free Software Foundation; either version 2 of the License, or *
17 * (at your option) any later version. *
18 * *
19 * This program is distributed in the hope that it will be useful, *
20 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
21 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
22 * GNU General Public License for more details. *
23 * *
24 * You should have received a copy of the GNU General Public License *
25 * along with this program. If not, see <http://www.gnu.org/licenses/>. *
26 ***************************************************************************/
27
28 #ifdef HAVE_CONFIG_H
29 #include "config.h"
30 #endif
31
32 /* see Embedded-HOWTO.txt in Jim Tcl project hosted on BerliOS*/
33 #define JIM_EMBEDDED
34
35 /* @todo the inclusion of target.h here is a layering violation */
36 #include <jtag/jtag.h>
37 #include <target/target.h>
38 #include "command.h"
39 #include "configuration.h"
40 #include "log.h"
41 #include "time_support.h"
42 #include "jim-eventloop.h"
43
44 /* nice short description of source file */
45 #define __THIS__FILE__ "command.c"
46
47 static int run_command(struct command_context *context,
48 struct command *c, const char *words[], unsigned num_words);
49
50 struct log_capture_state {
51 Jim_Interp *interp;
52 Jim_Obj *output;
53 };
54
55 static void tcl_output(void *privData, const char *file, unsigned line,
56 const char *function, const char *string)
57 {
58 struct log_capture_state *state = privData;
59 Jim_AppendString(state->interp, state->output, string, strlen(string));
60 }
61
62 static struct log_capture_state *command_log_capture_start(Jim_Interp *interp)
63 {
64 /* capture log output and return it. A garbage collect can
65 * happen, so we need a reference count to this object */
66 Jim_Obj *tclOutput = Jim_NewStringObj(interp, "", 0);
67 if (NULL == tclOutput)
68 return NULL;
69
70 struct log_capture_state *state = malloc(sizeof(*state));
71 if (NULL == state)
72 return NULL;
73
74 state->interp = interp;
75 Jim_IncrRefCount(tclOutput);
76 state->output = tclOutput;
77
78 log_add_callback(tcl_output, state);
79
80 return state;
81 }
82
83 /* Classic openocd commands provide progress output which we
84 * will capture and return as a Tcl return value.
85 *
86 * However, if a non-openocd command has been invoked, then it
87 * makes sense to return the tcl return value from that command.
88 *
89 * The tcl return value is empty for openocd commands that provide
90 * progress output.
91 *
92 * Therefore we set the tcl return value only if we actually
93 * captured output.
94 */
95 static void command_log_capture_finish(struct log_capture_state *state)
96 {
97 if (NULL == state)
98 return;
99
100 log_remove_callback(tcl_output, state);
101
102 int length;
103 Jim_GetString(state->output, &length);
104
105 if (length > 0)
106 Jim_SetResult(state->interp, state->output);
107 else {
108 /* No output captured, use tcl return value (which could
109 * be empty too). */
110 }
111 Jim_DecrRefCount(state->interp, state->output);
112
113 free(state);
114 }
115
116 static int command_retval_set(Jim_Interp *interp, int retval)
117 {
118 int *return_retval = Jim_GetAssocData(interp, "retval");
119 if (return_retval != NULL)
120 *return_retval = retval;
121
122 return (retval == ERROR_OK) ? JIM_OK : retval;
123 }
124
125 extern struct command_context *global_cmd_ctx;
126
127 /* dump a single line to the log for the command.
128 * Do nothing in case we are not at debug level 3 */
129 void script_debug(Jim_Interp *interp, const char *name,
130 unsigned argc, Jim_Obj * const *argv)
131 {
132 if (debug_level < LOG_LVL_DEBUG)
133 return;
134
135 char *dbg = alloc_printf("command - %s", name);
136 for (unsigned i = 0; i < argc; i++) {
137 int len;
138 const char *w = Jim_GetString(argv[i], &len);
139 char *t = alloc_printf("%s %s", dbg, w);
140 free(dbg);
141 dbg = t;
142 }
143 LOG_DEBUG("%s", dbg);
144 free(dbg);
145 }
146
147 static void script_command_args_free(char **words, unsigned nwords)
148 {
149 for (unsigned i = 0; i < nwords; i++)
150 free(words[i]);
151 free(words);
152 }
153
154 static char **script_command_args_alloc(
155 unsigned argc, Jim_Obj * const *argv, unsigned *nwords)
156 {
157 char **words = malloc(argc * sizeof(char *));
158 if (NULL == words)
159 return NULL;
160
161 unsigned i;
162 for (i = 0; i < argc; i++) {
163 int len;
164 const char *w = Jim_GetString(argv[i], &len);
165 words[i] = strdup(w);
166 if (words[i] == NULL) {
167 script_command_args_free(words, i);
168 return NULL;
169 }
170 }
171 *nwords = i;
172 return words;
173 }
174
175 struct command_context *current_command_context(Jim_Interp *interp)
176 {
177 /* grab the command context from the associated data */
178 struct command_context *cmd_ctx = Jim_GetAssocData(interp, "context");
179 if (NULL == cmd_ctx) {
180 /* Tcl can invoke commands directly instead of via command_run_line(). This would
181 * happen when the Jim Tcl interpreter is provided by eCos or if we are running
182 * commands in a startup script.
183 *
184 * A telnet or gdb server would provide a non-default command context to
185 * handle piping of error output, have a separate current target, etc.
186 */
187 cmd_ctx = global_cmd_ctx;
188 }
189 return cmd_ctx;
190 }
191
192 static int script_command_run(Jim_Interp *interp,
193 int argc, Jim_Obj * const *argv, struct command *c)
194 {
195 target_call_timer_callbacks_now();
196 LOG_USER_N("%s", ""); /* Keep GDB connection alive*/
197
198 unsigned nwords;
199 char **words = script_command_args_alloc(argc, argv, &nwords);
200 if (NULL == words)
201 return JIM_ERR;
202
203 struct command_context *cmd_ctx = current_command_context(interp);
204 int retval = run_command(cmd_ctx, c, (const char **)words, nwords);
205
206 script_command_args_free(words, nwords);
207 return command_retval_set(interp, retval);
208 }
209
210 static int script_command(Jim_Interp *interp, int argc, Jim_Obj *const *argv)
211 {
212 /* the private data is stashed in the interp structure */
213
214 struct command *c = interp->cmdPrivData;
215 assert(c);
216 script_debug(interp, c->name, argc, argv);
217 return script_command_run(interp, argc, argv, c);
218 }
219
220 static struct command *command_root(struct command *c)
221 {
222 while (NULL != c->parent)
223 c = c->parent;
224 return c;
225 }
226
227 /**
228 * Find a command by name from a list of commands.
229 * @returns Returns the named command if it exists in the list.
230 * Returns NULL otherwise.
231 */
232 static struct command *command_find(struct command *head, const char *name)
233 {
234 for (struct command *cc = head; cc; cc = cc->next) {
235 if (strcmp(cc->name, name) == 0)
236 return cc;
237 }
238 return NULL;
239 }
240
241 struct command *command_find_in_context(struct command_context *cmd_ctx,
242 const char *name)
243 {
244 return command_find(cmd_ctx->commands, name);
245 }
246 struct command *command_find_in_parent(struct command *parent,
247 const char *name)
248 {
249 return command_find(parent->children, name);
250 }
251
252 /**
253 * Add the command into the linked list, sorted by name.
254 * @param head Address to head of command list pointer, which may be
255 * updated if @c c gets inserted at the beginning of the list.
256 * @param c The command to add to the list pointed to by @c head.
257 */
258 static void command_add_child(struct command **head, struct command *c)
259 {
260 assert(head);
261 if (NULL == *head) {
262 *head = c;
263 return;
264 }
265
266 while ((*head)->next && (strcmp(c->name, (*head)->name) > 0))
267 head = &(*head)->next;
268
269 if (strcmp(c->name, (*head)->name) > 0) {
270 c->next = (*head)->next;
271 (*head)->next = c;
272 } else {
273 c->next = *head;
274 *head = c;
275 }
276 }
277
278 static struct command **command_list_for_parent(
279 struct command_context *cmd_ctx, struct command *parent)
280 {
281 return parent ? &parent->children : &cmd_ctx->commands;
282 }
283
284 static void command_free(struct command *c)
285 {
286 /** @todo if command has a handler, unregister its jim command! */
287
288 while (NULL != c->children) {
289 struct command *tmp = c->children;
290 c->children = tmp->next;
291 command_free(tmp);
292 }
293
294 free(c->name);
295 free(c->help);
296 free(c->usage);
297 free(c);
298 }
299
300 static struct command *command_new(struct command_context *cmd_ctx,
301 struct command *parent, const struct command_registration *cr)
302 {
303 assert(cr->name);
304
305 /*
306 * If it is a non-jim command with no .usage specified,
307 * log an error.
308 *
309 * strlen(.usage) == 0 means that the command takes no
310 * arguments.
311 */
312 if ((cr->jim_handler == NULL) && (cr->usage == NULL)) {
313 LOG_ERROR("BUG: command '%s%s%s' does not have the "
314 "'.usage' field filled out",
315 parent && parent->name ? parent->name : "",
316 parent && parent->name ? " " : "",
317 cr->name);
318 }
319
320 struct command *c = calloc(1, sizeof(struct command));
321 if (NULL == c)
322 return NULL;
323
324 c->name = strdup(cr->name);
325 if (cr->help)
326 c->help = strdup(cr->help);
327 if (cr->usage)
328 c->usage = strdup(cr->usage);
329
330 if (!c->name || (cr->help && !c->help) || (cr->usage && !c->usage))
331 goto command_new_error;
332
333 c->parent = parent;
334 c->handler = cr->handler;
335 c->jim_handler = cr->jim_handler;
336 c->jim_handler_data = cr->jim_handler_data;
337 c->mode = cr->mode;
338
339 command_add_child(command_list_for_parent(cmd_ctx, parent), c);
340
341 return c;
342
343 command_new_error:
344 command_free(c);
345 return NULL;
346 }
347
348 static int command_unknown(Jim_Interp *interp, int argc, Jim_Obj *const *argv);
349
350 static int register_command_handler(struct command_context *cmd_ctx,
351 struct command *c)
352 {
353 Jim_Interp *interp = cmd_ctx->interp;
354 char *ocd_name = alloc_printf("ocd_%s", c->name);
355 if (NULL == ocd_name)
356 return JIM_ERR;
357
358 LOG_DEBUG("registering '%s'...", ocd_name);
359
360 Jim_CmdProc *func = c->handler ? &script_command : &command_unknown;
361 int retval = Jim_CreateCommand(interp, ocd_name, func, c, NULL);
362 free(ocd_name);
363 if (JIM_OK != retval)
364 return retval;
365
366 /* we now need to add an overrideable proc */
367 char *override_name = alloc_printf(
368 "proc %s {args} {eval ocd_bouncer %s $args}",
369 c->name, c->name);
370 if (NULL == override_name)
371 return JIM_ERR;
372
373 retval = Jim_Eval_Named(interp, override_name, 0, 0);
374 free(override_name);
375
376 return retval;
377 }
378
379 struct command *register_command(struct command_context *context,
380 struct command *parent, const struct command_registration *cr)
381 {
382 if (!context || !cr->name)
383 return NULL;
384
385 const char *name = cr->name;
386 struct command **head = command_list_for_parent(context, parent);
387 struct command *c = command_find(*head, name);
388 if (NULL != c) {
389 /* TODO: originally we treated attempting to register a cmd twice as an error
390 * Sometimes we need this behaviour, such as with flash banks.
391 * http://www.mail-archive.com/openocd-development@lists.berlios.de/msg11152.html */
392 LOG_DEBUG("command '%s' is already registered in '%s' context",
393 name, parent ? parent->name : "<global>");
394 return c;
395 }
396
397 c = command_new(context, parent, cr);
398 if (NULL == c)
399 return NULL;
400
401 int retval = ERROR_OK;
402 if (NULL != cr->jim_handler && NULL == parent) {
403 retval = Jim_CreateCommand(context->interp, cr->name,
404 cr->jim_handler, cr->jim_handler_data, NULL);
405 } else if (NULL != cr->handler || NULL != parent)
406 retval = register_command_handler(context, command_root(c));
407
408 if (ERROR_OK != retval) {
409 unregister_command(context, parent, name);
410 c = NULL;
411 }
412 return c;
413 }
414
415 int register_commands(struct command_context *cmd_ctx, struct command *parent,
416 const struct command_registration *cmds)
417 {
418 int retval = ERROR_OK;
419 unsigned i;
420 for (i = 0; cmds[i].name || cmds[i].chain; i++) {
421 const struct command_registration *cr = cmds + i;
422
423 struct command *c = NULL;
424 if (NULL != cr->name) {
425 c = register_command(cmd_ctx, parent, cr);
426 if (NULL == c) {
427 retval = ERROR_FAIL;
428 break;
429 }
430 }
431 if (NULL != cr->chain) {
432 struct command *p = c ? : parent;
433 retval = register_commands(cmd_ctx, p, cr->chain);
434 if (ERROR_OK != retval)
435 break;
436 }
437 }
438 if (ERROR_OK != retval) {
439 for (unsigned j = 0; j < i; j++)
440 unregister_command(cmd_ctx, parent, cmds[j].name);
441 }
442 return retval;
443 }
444
445 int unregister_all_commands(struct command_context *context,
446 struct command *parent)
447 {
448 if (context == NULL)
449 return ERROR_OK;
450
451 struct command **head = command_list_for_parent(context, parent);
452 while (NULL != *head) {
453 struct command *tmp = *head;
454 *head = tmp->next;
455 command_free(tmp);
456 }
457
458 return ERROR_OK;
459 }
460
461 int unregister_command(struct command_context *context,
462 struct command *parent, const char *name)
463 {
464 if ((!context) || (!name))
465 return ERROR_COMMAND_SYNTAX_ERROR;
466
467 struct command *p = NULL;
468 struct command **head = command_list_for_parent(context, parent);
469 for (struct command *c = *head; NULL != c; p = c, c = c->next) {
470 if (strcmp(name, c->name) != 0)
471 continue;
472
473 if (p)
474 p->next = c->next;
475 else
476 *head = c->next;
477
478 command_free(c);
479 return ERROR_OK;
480 }
481
482 return ERROR_OK;
483 }
484
485 void command_set_handler_data(struct command *c, void *p)
486 {
487 if (NULL != c->handler || NULL != c->jim_handler)
488 c->jim_handler_data = p;
489 for (struct command *cc = c->children; NULL != cc; cc = cc->next)
490 command_set_handler_data(cc, p);
491 }
492
493 void command_output_text(struct command_context *context, const char *data)
494 {
495 if (context && context->output_handler && data)
496 context->output_handler(context, data);
497 }
498
499 void command_print_sameline(struct command_invocation *cmd, const char *format, ...)
500 {
501 char *string;
502
503 va_list ap;
504 va_start(ap, format);
505
506 string = alloc_vprintf(format, ap);
507 if (string != NULL && cmd) {
508 /* we want this collected in the log + we also want to pick it up as a tcl return
509 * value.
510 *
511 * The latter bit isn't precisely neat, but will do for now.
512 */
513 Jim_AppendString(cmd->ctx->interp, cmd->output, string, -1);
514 /* We already printed it above
515 * command_output_text(context, string); */
516 free(string);
517 }
518
519 va_end(ap);
520 }
521
522 void command_print(struct command_invocation *cmd, const char *format, ...)
523 {
524 char *string;
525
526 va_list ap;
527 va_start(ap, format);
528
529 string = alloc_vprintf(format, ap);
530 if (string != NULL && cmd) {
531 strcat(string, "\n"); /* alloc_vprintf guaranteed the buffer to be at least one
532 *char longer */
533 /* we want this collected in the log + we also want to pick it up as a tcl return
534 * value.
535 *
536 * The latter bit isn't precisely neat, but will do for now.
537 */
538 Jim_AppendString(cmd->ctx->interp, cmd->output, string, -1);
539 /* We already printed it above
540 * command_output_text(context, string); */
541 free(string);
542 }
543
544 va_end(ap);
545 }
546
547 static char *__command_name(struct command *c, char delim, unsigned extra)
548 {
549 char *name;
550 unsigned len = strlen(c->name);
551 if (NULL == c->parent) {
552 /* allocate enough for the name, child names, and '\0' */
553 name = malloc(len + extra + 1);
554 if (!name) {
555 LOG_ERROR("Out of memory");
556 return NULL;
557 }
558 strcpy(name, c->name);
559 } else {
560 /* parent's extra must include both the space and name */
561 name = __command_name(c->parent, delim, 1 + len + extra);
562 char dstr[2] = { delim, 0 };
563 strcat(name, dstr);
564 strcat(name, c->name);
565 }
566 return name;
567 }
568
569 char *command_name(struct command *c, char delim)
570 {
571 return __command_name(c, delim, 0);
572 }
573
574 static bool command_can_run(struct command_context *cmd_ctx, struct command *c)
575 {
576 if (c->mode == COMMAND_ANY || c->mode == cmd_ctx->mode)
577 return true;
578
579 /* Many commands may be run only before/after 'init' */
580 const char *when;
581 switch (c->mode) {
582 case COMMAND_CONFIG:
583 when = "before";
584 break;
585 case COMMAND_EXEC:
586 when = "after";
587 break;
588 /* handle the impossible with humor; it guarantees a bug report! */
589 default:
590 when = "if Cthulhu is summoned by";
591 break;
592 }
593 char *full_name = command_name(c, ' ');
594 LOG_ERROR("The '%s' command must be used %s 'init'.",
595 full_name ? full_name : c->name, when);
596 free(full_name);
597 return false;
598 }
599
600 static int run_command(struct command_context *context,
601 struct command *c, const char *words[], unsigned num_words)
602 {
603 if (!command_can_run(context, c))
604 return ERROR_FAIL;
605
606 struct command_invocation cmd = {
607 .ctx = context,
608 .current = c,
609 .name = c->name,
610 .argc = num_words - 1,
611 .argv = words + 1,
612 };
613 /* Black magic of overridden current target:
614 * If the command we are going to handle has a target prefix,
615 * override the current target temporarily for the time
616 * of processing the command.
617 * current_target_override is used also for event handlers
618 * therefore we prevent touching it if command has no prefix.
619 * Previous override is saved and restored back to ensure
620 * correct work when run_command() is re-entered. */
621 struct target *saved_target_override = context->current_target_override;
622 if (c->jim_handler_data)
623 context->current_target_override = c->jim_handler_data;
624
625 cmd.output = Jim_NewEmptyStringObj(context->interp);
626 Jim_IncrRefCount(cmd.output);
627
628 int retval = c->handler(&cmd);
629
630 if (c->jim_handler_data)
631 context->current_target_override = saved_target_override;
632
633 if (retval == ERROR_COMMAND_SYNTAX_ERROR) {
634 /* Print help for command */
635 char *full_name = command_name(c, ' ');
636 if (NULL != full_name) {
637 command_run_linef(context, "usage %s", full_name);
638 free(full_name);
639 }
640 } else if (retval == ERROR_COMMAND_CLOSE_CONNECTION) {
641 /* just fall through for a shutdown request */
642 } else if (retval != ERROR_OK) {
643 /* we do not print out an error message because the command *should*
644 * have printed out an error
645 */
646 char *full_name = command_name(c, ' ');
647 LOG_DEBUG("Command '%s' failed with error code %d",
648 full_name ? full_name : c->name, retval);
649 free(full_name);
650 } else {
651 /* Use the command output as the Tcl result */
652 Jim_SetResult(context->interp, cmd.output);
653 }
654 Jim_DecrRefCount(context->interp, cmd.output);
655
656 return retval;
657 }
658
659 int command_run_line(struct command_context *context, char *line)
660 {
661 /* all the parent commands have been registered with the interpreter
662 * so, can just evaluate the line as a script and check for
663 * results
664 */
665 /* run the line thru a script engine */
666 int retval = ERROR_FAIL;
667 int retcode;
668 /* Beware! This code needs to be reentrant. It is also possible
669 * for OpenOCD commands to be invoked directly from Tcl. This would
670 * happen when the Jim Tcl interpreter is provided by eCos for
671 * instance.
672 */
673 context->current_target_override = NULL;
674
675 Jim_Interp *interp = context->interp;
676 Jim_DeleteAssocData(interp, "context");
677 retcode = Jim_SetAssocData(interp, "context", NULL, context);
678 if (retcode == JIM_OK) {
679 /* associated the return value */
680 Jim_DeleteAssocData(interp, "retval");
681 retcode = Jim_SetAssocData(interp, "retval", NULL, &retval);
682 if (retcode == JIM_OK) {
683 retcode = Jim_Eval_Named(interp, line, 0, 0);
684
685 Jim_DeleteAssocData(interp, "retval");
686 }
687 Jim_DeleteAssocData(interp, "context");
688 }
689 if (retcode == JIM_OK) {
690 const char *result;
691 int reslen;
692
693 result = Jim_GetString(Jim_GetResult(interp), &reslen);
694 if (reslen > 0) {
695 int i;
696 char buff[256 + 1];
697 for (i = 0; i < reslen; i += 256) {
698 int chunk;
699 chunk = reslen - i;
700 if (chunk > 256)
701 chunk = 256;
702 strncpy(buff, result + i, chunk);
703 buff[chunk] = 0;
704 LOG_USER_N("%s", buff);
705 }
706 LOG_USER_N("\n");
707 }
708 retval = ERROR_OK;
709 } else if (retcode == JIM_EXIT) {
710 /* ignore.
711 * exit(Jim_GetExitCode(interp)); */
712 } else if (retcode == ERROR_COMMAND_CLOSE_CONNECTION) {
713 return retcode;
714 } else {
715 Jim_MakeErrorMessage(interp);
716 LOG_USER("%s", Jim_GetString(Jim_GetResult(interp), NULL));
717
718 if (retval == ERROR_OK) {
719 /* It wasn't a low level OpenOCD command that failed */
720 return ERROR_FAIL;
721 }
722 return retval;
723 }
724
725 return retval;
726 }
727
728 int command_run_linef(struct command_context *context, const char *format, ...)
729 {
730 int retval = ERROR_FAIL;
731 char *string;
732 va_list ap;
733 va_start(ap, format);
734 string = alloc_vprintf(format, ap);
735 if (string != NULL) {
736 retval = command_run_line(context, string);
737 free(string);
738 }
739 va_end(ap);
740 return retval;
741 }
742
743 void command_set_output_handler(struct command_context *context,
744 command_output_handler_t output_handler, void *priv)
745 {
746 context->output_handler = output_handler;
747 context->output_handler_priv = priv;
748 }
749
750 struct command_context *copy_command_context(struct command_context *context)
751 {
752 struct command_context *copy_context = malloc(sizeof(struct command_context));
753
754 *copy_context = *context;
755
756 return copy_context;
757 }
758
759 void command_done(struct command_context *cmd_ctx)
760 {
761 if (NULL == cmd_ctx)
762 return;
763
764 free(cmd_ctx);
765 }
766
767 /* find full path to file */
768 static int jim_find(Jim_Interp *interp, int argc, Jim_Obj *const *argv)
769 {
770 if (argc != 2)
771 return JIM_ERR;
772 const char *file = Jim_GetString(argv[1], NULL);
773 char *full_path = find_file(file);
774 if (full_path == NULL)
775 return JIM_ERR;
776 Jim_Obj *result = Jim_NewStringObj(interp, full_path, strlen(full_path));
777 free(full_path);
778
779 Jim_SetResult(interp, result);
780 return JIM_OK;
781 }
782
783 COMMAND_HANDLER(jim_echo)
784 {
785 if (CMD_ARGC == 2 && !strcmp(CMD_ARGV[0], "-n")) {
786 LOG_USER_N("%s", CMD_ARGV[1]);
787 return JIM_OK;
788 }
789 if (CMD_ARGC != 1)
790 return JIM_ERR;
791 LOG_USER("%s", CMD_ARGV[0]);
792 return JIM_OK;
793 }
794
795 /* Capture progress output and return as tcl return value. If the
796 * progress output was empty, return tcl return value.
797 */
798 static int jim_capture(Jim_Interp *interp, int argc, Jim_Obj *const *argv)
799 {
800 if (argc != 2)
801 return JIM_ERR;
802
803 struct log_capture_state *state = command_log_capture_start(interp);
804
805 /* disable polling during capture. This avoids capturing output
806 * from polling.
807 *
808 * This is necessary in order to avoid accidentally getting a non-empty
809 * string for tcl fn's.
810 */
811 bool save_poll = jtag_poll_get_enabled();
812
813 jtag_poll_set_enabled(false);
814
815 const char *str = Jim_GetString(argv[1], NULL);
816 int retcode = Jim_Eval_Named(interp, str, __THIS__FILE__, __LINE__);
817
818 jtag_poll_set_enabled(save_poll);
819
820 command_log_capture_finish(state);
821
822 return retcode;
823 }
824
825 static COMMAND_HELPER(command_help_find, struct command *head,
826 struct command **out)
827 {
828 if (0 == CMD_ARGC)
829 return ERROR_COMMAND_SYNTAX_ERROR;
830 *out = command_find(head, CMD_ARGV[0]);
831 if (NULL == *out && strncmp(CMD_ARGV[0], "ocd_", 4) == 0)
832 *out = command_find(head, CMD_ARGV[0] + 4);
833 if (NULL == *out)
834 return ERROR_COMMAND_SYNTAX_ERROR;
835 if (--CMD_ARGC == 0)
836 return ERROR_OK;
837 CMD_ARGV++;
838 return CALL_COMMAND_HANDLER(command_help_find, (*out)->children, out);
839 }
840
841 static COMMAND_HELPER(command_help_show, struct command *c, unsigned n,
842 bool show_help, const char *cmd_match);
843
844 static COMMAND_HELPER(command_help_show_list, struct command *head, unsigned n,
845 bool show_help, const char *cmd_match)
846 {
847 for (struct command *c = head; NULL != c; c = c->next)
848 CALL_COMMAND_HANDLER(command_help_show, c, n, show_help, cmd_match);
849 return ERROR_OK;
850 }
851
852 #define HELP_LINE_WIDTH(_n) (int)(76 - (2 * _n))
853
854 static void command_help_show_indent(unsigned n)
855 {
856 for (unsigned i = 0; i < n; i++)
857 LOG_USER_N(" ");
858 }
859 static void command_help_show_wrap(const char *str, unsigned n, unsigned n2)
860 {
861 const char *cp = str, *last = str;
862 while (*cp) {
863 const char *next = last;
864 do {
865 cp = next;
866 do {
867 next++;
868 } while (*next != ' ' && *next != '\t' && *next != '\0');
869 } while ((next - last < HELP_LINE_WIDTH(n)) && *next != '\0');
870 if (next - last < HELP_LINE_WIDTH(n))
871 cp = next;
872 command_help_show_indent(n);
873 LOG_USER("%.*s", (int)(cp - last), last);
874 last = cp + 1;
875 n = n2;
876 }
877 }
878
879 static COMMAND_HELPER(command_help_show, struct command *c, unsigned n,
880 bool show_help, const char *cmd_match)
881 {
882 char *cmd_name = command_name(c, ' ');
883 if (NULL == cmd_name)
884 return ERROR_FAIL;
885
886 /* If the match string occurs anywhere, we print out
887 * stuff for this command. */
888 bool is_match = (strstr(cmd_name, cmd_match) != NULL) ||
889 ((c->usage != NULL) && (strstr(c->usage, cmd_match) != NULL)) ||
890 ((c->help != NULL) && (strstr(c->help, cmd_match) != NULL));
891
892 if (is_match) {
893 command_help_show_indent(n);
894 LOG_USER_N("%s", cmd_name);
895 }
896 free(cmd_name);
897
898 if (is_match) {
899 if (c->usage && strlen(c->usage) > 0) {
900 LOG_USER_N(" ");
901 command_help_show_wrap(c->usage, 0, n + 5);
902 } else
903 LOG_USER_N("\n");
904 }
905
906 if (is_match && show_help) {
907 char *msg;
908
909 /* Normal commands are runtime-only; highlight exceptions */
910 if (c->mode != COMMAND_EXEC) {
911 const char *stage_msg = "";
912
913 switch (c->mode) {
914 case COMMAND_CONFIG:
915 stage_msg = " (configuration command)";
916 break;
917 case COMMAND_ANY:
918 stage_msg = " (command valid any time)";
919 break;
920 default:
921 stage_msg = " (?mode error?)";
922 break;
923 }
924 msg = alloc_printf("%s%s", c->help ? : "", stage_msg);
925 } else
926 msg = alloc_printf("%s", c->help ? : "");
927
928 if (NULL != msg) {
929 command_help_show_wrap(msg, n + 3, n + 3);
930 free(msg);
931 } else
932 return -ENOMEM;
933 }
934
935 if (++n > 5) {
936 LOG_ERROR("command recursion exceeded");
937 return ERROR_FAIL;
938 }
939
940 return CALL_COMMAND_HANDLER(command_help_show_list,
941 c->children, n, show_help, cmd_match);
942 }
943
944 COMMAND_HANDLER(handle_help_command)
945 {
946 bool full = strcmp(CMD_NAME, "help") == 0;
947 int retval;
948 struct command *c = CMD_CTX->commands;
949 char *cmd_match = NULL;
950
951 if (CMD_ARGC == 0)
952 cmd_match = "";
953 else if (CMD_ARGC >= 1) {
954 unsigned i;
955
956 for (i = 0; i < CMD_ARGC; ++i) {
957 if (NULL != cmd_match) {
958 char *prev = cmd_match;
959
960 cmd_match = alloc_printf("%s %s", cmd_match, CMD_ARGV[i]);
961 free(prev);
962 if (NULL == cmd_match) {
963 LOG_ERROR("unable to build search string");
964 return -ENOMEM;
965 }
966 } else {
967 cmd_match = alloc_printf("%s", CMD_ARGV[i]);
968 if (NULL == cmd_match) {
969 LOG_ERROR("unable to build search string");
970 return -ENOMEM;
971 }
972 }
973 }
974 } else
975 return ERROR_COMMAND_SYNTAX_ERROR;
976
977 retval = CALL_COMMAND_HANDLER(command_help_show_list,
978 c, 0, full, cmd_match);
979
980 if (CMD_ARGC >= 1)
981 free(cmd_match);
982 return retval;
983 }
984
985 static int command_unknown_find(unsigned argc, Jim_Obj *const *argv,
986 struct command *head, struct command **out, bool top_level)
987 {
988 if (0 == argc)
989 return argc;
990 const char *cmd_name = Jim_GetString(argv[0], NULL);
991 struct command *c = command_find(head, cmd_name);
992 if (NULL == c && top_level && strncmp(cmd_name, "ocd_", 4) == 0)
993 c = command_find(head, cmd_name + 4);
994 if (NULL == c)
995 return argc;
996 *out = c;
997 return command_unknown_find(--argc, ++argv, (*out)->children, out, false);
998 }
999
1000 static int command_unknown(Jim_Interp *interp, int argc, Jim_Obj *const *argv)
1001 {
1002 const char *cmd_name = Jim_GetString(argv[0], NULL);
1003 if (strcmp(cmd_name, "unknown") == 0) {
1004 if (argc == 1)
1005 return JIM_OK;
1006 argc--;
1007 argv++;
1008 }
1009 script_debug(interp, cmd_name, argc, argv);
1010
1011 struct command_context *cmd_ctx = current_command_context(interp);
1012 struct command *c = cmd_ctx->commands;
1013 int remaining = command_unknown_find(argc, argv, c, &c, true);
1014 /* if nothing could be consumed, then it's really an unknown command */
1015 if (remaining == argc) {
1016 const char *cmd = Jim_GetString(argv[0], NULL);
1017 LOG_ERROR("Unknown command:\n %s", cmd);
1018 return JIM_OK;
1019 }
1020
1021 Jim_Obj *const *start;
1022 unsigned count;
1023 if (c->handler || c->jim_handler) {
1024 /* include the command name in the list */
1025 count = remaining + 1;
1026 start = argv + (argc - remaining - 1);
1027 } else {
1028 c = command_find(cmd_ctx->commands, "usage");
1029 if (NULL == c) {
1030 LOG_ERROR("unknown command, but usage is missing too");
1031 return JIM_ERR;
1032 }
1033 count = argc - remaining;
1034 start = argv;
1035 }
1036 /* pass the command through to the intended handler */
1037 if (c->jim_handler) {
1038 if (!command_can_run(cmd_ctx, c))
1039 return JIM_ERR;
1040
1041 interp->cmdPrivData = c->jim_handler_data;
1042 return (*c->jim_handler)(interp, count, start);
1043 }
1044
1045 return script_command_run(interp, count, start, c);
1046 }
1047
1048 static int jim_command_mode(Jim_Interp *interp, int argc, Jim_Obj *const *argv)
1049 {
1050 struct command_context *cmd_ctx = current_command_context(interp);
1051 enum command_mode mode;
1052
1053 if (argc > 1) {
1054 struct command *c = cmd_ctx->commands;
1055 int remaining = command_unknown_find(argc - 1, argv + 1, c, &c, true);
1056 /* if nothing could be consumed, then it's an unknown command */
1057 if (remaining == argc - 1) {
1058 Jim_SetResultString(interp, "unknown", -1);
1059 return JIM_OK;
1060 }
1061 mode = c->mode;
1062 } else
1063 mode = cmd_ctx->mode;
1064
1065 const char *mode_str;
1066 switch (mode) {
1067 case COMMAND_ANY:
1068 mode_str = "any";
1069 break;
1070 case COMMAND_CONFIG:
1071 mode_str = "config";
1072 break;
1073 case COMMAND_EXEC:
1074 mode_str = "exec";
1075 break;
1076 default:
1077 mode_str = "unknown";
1078 break;
1079 }
1080 Jim_SetResultString(interp, mode_str, -1);
1081 return JIM_OK;
1082 }
1083
1084 static int jim_command_type(Jim_Interp *interp, int argc, Jim_Obj *const *argv)
1085 {
1086 if (1 == argc)
1087 return JIM_ERR;
1088
1089 struct command_context *cmd_ctx = current_command_context(interp);
1090 struct command *c = cmd_ctx->commands;
1091 int remaining = command_unknown_find(argc - 1, argv + 1, c, &c, true);
1092 /* if nothing could be consumed, then it's an unknown command */
1093 if (remaining == argc - 1) {
1094 Jim_SetResultString(interp, "unknown", -1);
1095 return JIM_OK;
1096 }
1097
1098 if (c->jim_handler)
1099 Jim_SetResultString(interp, "native", -1);
1100 else if (c->handler)
1101 Jim_SetResultString(interp, "simple", -1);
1102 else if (remaining == 0)
1103 Jim_SetResultString(interp, "group", -1);
1104 else
1105 Jim_SetResultString(interp, "unknown", -1);
1106
1107 return JIM_OK;
1108 }
1109
1110 int help_add_command(struct command_context *cmd_ctx, struct command *parent,
1111 const char *cmd_name, const char *help_text, const char *usage)
1112 {
1113 struct command **head = command_list_for_parent(cmd_ctx, parent);
1114 struct command *nc = command_find(*head, cmd_name);
1115 if (NULL == nc) {
1116 /* add a new command with help text */
1117 struct command_registration cr = {
1118 .name = cmd_name,
1119 .mode = COMMAND_ANY,
1120 .help = help_text,
1121 .usage = usage ? : "",
1122 };
1123 nc = register_command(cmd_ctx, parent, &cr);
1124 if (NULL == nc) {
1125 LOG_ERROR("failed to add '%s' help text", cmd_name);
1126 return ERROR_FAIL;
1127 }
1128 LOG_DEBUG("added '%s' help text", cmd_name);
1129 return ERROR_OK;
1130 }
1131 if (help_text) {
1132 bool replaced = false;
1133 if (nc->help) {
1134 free(nc->help);
1135 replaced = true;
1136 }
1137 nc->help = strdup(help_text);
1138 if (replaced)
1139 LOG_INFO("replaced existing '%s' help", cmd_name);
1140 else
1141 LOG_DEBUG("added '%s' help text", cmd_name);
1142 }
1143 if (usage) {
1144 bool replaced = false;
1145 if (nc->usage) {
1146 if (*nc->usage)
1147 replaced = true;
1148 free(nc->usage);
1149 }
1150 nc->usage = strdup(usage);
1151 if (replaced)
1152 LOG_INFO("replaced existing '%s' usage", cmd_name);
1153 else
1154 LOG_DEBUG("added '%s' usage text", cmd_name);
1155 }
1156 return ERROR_OK;
1157 }
1158
1159 COMMAND_HANDLER(handle_help_add_command)
1160 {
1161 if (CMD_ARGC < 2) {
1162 LOG_ERROR("%s: insufficient arguments", CMD_NAME);
1163 return ERROR_COMMAND_SYNTAX_ERROR;
1164 }
1165
1166 /* save help text and remove it from argument list */
1167 const char *str = CMD_ARGV[--CMD_ARGC];
1168 const char *help = !strcmp(CMD_NAME, "add_help_text") ? str : NULL;
1169 const char *usage = !strcmp(CMD_NAME, "add_usage_text") ? str : NULL;
1170 if (!help && !usage) {
1171 LOG_ERROR("command name '%s' is unknown", CMD_NAME);
1172 return ERROR_COMMAND_SYNTAX_ERROR;
1173 }
1174 /* likewise for the leaf command name */
1175 const char *cmd_name = CMD_ARGV[--CMD_ARGC];
1176
1177 struct command *c = NULL;
1178 if (CMD_ARGC > 0) {
1179 c = CMD_CTX->commands;
1180 int retval = CALL_COMMAND_HANDLER(command_help_find, c, &c);
1181 if (ERROR_OK != retval)
1182 return retval;
1183 }
1184 return help_add_command(CMD_CTX, c, cmd_name, help, usage);
1185 }
1186
1187 /* sleep command sleeps for <n> milliseconds
1188 * this is useful in target startup scripts
1189 */
1190 COMMAND_HANDLER(handle_sleep_command)
1191 {
1192 bool busy = false;
1193 if (CMD_ARGC == 2) {
1194 if (strcmp(CMD_ARGV[1], "busy") == 0)
1195 busy = true;
1196 else
1197 return ERROR_COMMAND_SYNTAX_ERROR;
1198 } else if (CMD_ARGC < 1 || CMD_ARGC > 2)
1199 return ERROR_COMMAND_SYNTAX_ERROR;
1200
1201 unsigned long duration = 0;
1202 int retval = parse_ulong(CMD_ARGV[0], &duration);
1203 if (ERROR_OK != retval)
1204 return retval;
1205
1206 if (!busy) {
1207 int64_t then = timeval_ms();
1208 while (timeval_ms() - then < (int64_t)duration) {
1209 target_call_timer_callbacks_now();
1210 usleep(1000);
1211 }
1212 } else
1213 busy_sleep(duration);
1214
1215 return ERROR_OK;
1216 }
1217
1218 static const struct command_registration command_subcommand_handlers[] = {
1219 {
1220 .name = "mode",
1221 .mode = COMMAND_ANY,
1222 .jim_handler = jim_command_mode,
1223 .usage = "[command_name ...]",
1224 .help = "Returns the command modes allowed by a command:"
1225 "'any', 'config', or 'exec'. If no command is"
1226 "specified, returns the current command mode. "
1227 "Returns 'unknown' if an unknown command is given. "
1228 "Command can be multiple tokens.",
1229 },
1230 {
1231 .name = "type",
1232 .mode = COMMAND_ANY,
1233 .jim_handler = jim_command_type,
1234 .usage = "command_name [...]",
1235 .help = "Returns the type of built-in command:"
1236 "'native', 'simple', 'group', or 'unknown'. "
1237 "Command can be multiple tokens.",
1238 },
1239 COMMAND_REGISTRATION_DONE
1240 };
1241
1242 static const struct command_registration command_builtin_handlers[] = {
1243 {
1244 .name = "echo",
1245 .handler = jim_echo,
1246 .mode = COMMAND_ANY,
1247 .help = "Logs a message at \"user\" priority. "
1248 "Output message to stdout. "
1249 "Option \"-n\" suppresses trailing newline",
1250 .usage = "[-n] string",
1251 },
1252 {
1253 .name = "add_help_text",
1254 .handler = handle_help_add_command,
1255 .mode = COMMAND_ANY,
1256 .help = "Add new command help text; "
1257 "Command can be multiple tokens.",
1258 .usage = "command_name helptext_string",
1259 },
1260 {
1261 .name = "add_usage_text",
1262 .handler = handle_help_add_command,
1263 .mode = COMMAND_ANY,
1264 .help = "Add new command usage text; "
1265 "command can be multiple tokens.",
1266 .usage = "command_name usage_string",
1267 },
1268 {
1269 .name = "sleep",
1270 .handler = handle_sleep_command,
1271 .mode = COMMAND_ANY,
1272 .help = "Sleep for specified number of milliseconds. "
1273 "\"busy\" will busy wait instead (avoid this).",
1274 .usage = "milliseconds ['busy']",
1275 },
1276 {
1277 .name = "help",
1278 .handler = handle_help_command,
1279 .mode = COMMAND_ANY,
1280 .help = "Show full command help; "
1281 "command can be multiple tokens.",
1282 .usage = "[command_name]",
1283 },
1284 {
1285 .name = "usage",
1286 .handler = handle_help_command,
1287 .mode = COMMAND_ANY,
1288 .help = "Show basic command usage; "
1289 "command can be multiple tokens.",
1290 .usage = "[command_name]",
1291 },
1292 {
1293 .name = "command",
1294 .mode = COMMAND_ANY,
1295 .help = "core command group (introspection)",
1296 .chain = command_subcommand_handlers,
1297 .usage = "",
1298 },
1299 COMMAND_REGISTRATION_DONE
1300 };
1301
1302 struct command_context *command_init(const char *startup_tcl, Jim_Interp *interp)
1303 {
1304 struct command_context *context = calloc(1, sizeof(struct command_context));
1305 const char *HostOs;
1306
1307 context->mode = COMMAND_EXEC;
1308
1309 /* Create a jim interpreter if we were not handed one */
1310 if (interp == NULL) {
1311 /* Create an interpreter */
1312 interp = Jim_CreateInterp();
1313 /* Add all the Jim core commands */
1314 Jim_RegisterCoreCommands(interp);
1315 Jim_InitStaticExtensions(interp);
1316 }
1317
1318 context->interp = interp;
1319
1320 /* Stick to lowercase for HostOS strings. */
1321 #if defined(_MSC_VER)
1322 /* WinXX - is generic, the forward
1323 * looking problem is this:
1324 *
1325 * "win32" or "win64"
1326 *
1327 * "winxx" is generic.
1328 */
1329 HostOs = "winxx";
1330 #elif defined(__linux__)
1331 HostOs = "linux";
1332 #elif defined(__APPLE__) || defined(__DARWIN__)
1333 HostOs = "darwin";
1334 #elif defined(__CYGWIN__)
1335 HostOs = "cygwin";
1336 #elif defined(__MINGW32__)
1337 HostOs = "mingw32";
1338 #elif defined(__ECOS)
1339 HostOs = "ecos";
1340 #elif defined(__FreeBSD__)
1341 HostOs = "freebsd";
1342 #elif defined(__NetBSD__)
1343 HostOs = "netbsd";
1344 #elif defined(__OpenBSD__)
1345 HostOs = "openbsd";
1346 #else
1347 #warning "Unrecognized host OS..."
1348 HostOs = "other";
1349 #endif
1350 Jim_SetGlobalVariableStr(interp, "ocd_HOSTOS",
1351 Jim_NewStringObj(interp, HostOs, strlen(HostOs)));
1352
1353 Jim_CreateCommand(interp, "ocd_find", jim_find, NULL, NULL);
1354 Jim_CreateCommand(interp, "capture", jim_capture, NULL, NULL);
1355
1356 register_commands(context, NULL, command_builtin_handlers);
1357
1358 Jim_SetAssocData(interp, "context", NULL, context);
1359 if (Jim_Eval_Named(interp, startup_tcl, "embedded:startup.tcl", 1) == JIM_ERR) {
1360 LOG_ERROR("Failed to run startup.tcl (embedded into OpenOCD)");
1361 Jim_MakeErrorMessage(interp);
1362 LOG_USER_N("%s", Jim_GetString(Jim_GetResult(interp), NULL));
1363 exit(-1);
1364 }
1365 Jim_DeleteAssocData(interp, "context");
1366
1367 return context;
1368 }
1369
1370 void command_exit(struct command_context *context)
1371 {
1372 if (!context)
1373 return;
1374
1375 Jim_FreeInterp(context->interp);
1376 command_done(context);
1377 }
1378
1379 int command_context_mode(struct command_context *cmd_ctx, enum command_mode mode)
1380 {
1381 if (!cmd_ctx)
1382 return ERROR_COMMAND_SYNTAX_ERROR;
1383
1384 cmd_ctx->mode = mode;
1385 return ERROR_OK;
1386 }
1387
1388 void process_jim_events(struct command_context *cmd_ctx)
1389 {
1390 static int recursion;
1391 if (recursion)
1392 return;
1393
1394 recursion++;
1395 Jim_ProcessEvents(cmd_ctx->interp, JIM_ALL_EVENTS | JIM_DONT_WAIT);
1396 recursion--;
1397 }
1398
1399 #define DEFINE_PARSE_NUM_TYPE(name, type, func, min, max) \
1400 int parse ## name(const char *str, type * ul) \
1401 { \
1402 if (!*str) { \
1403 LOG_ERROR("Invalid command argument"); \
1404 return ERROR_COMMAND_ARGUMENT_INVALID; \
1405 } \
1406 char *end; \
1407 *ul = func(str, &end, 0); \
1408 if (*end) { \
1409 LOG_ERROR("Invalid command argument"); \
1410 return ERROR_COMMAND_ARGUMENT_INVALID; \
1411 } \
1412 if ((max == *ul) && (ERANGE == errno)) { \
1413 LOG_ERROR("Argument overflow"); \
1414 return ERROR_COMMAND_ARGUMENT_OVERFLOW; \
1415 } \
1416 if (min && (min == *ul) && (ERANGE == errno)) { \
1417 LOG_ERROR("Argument underflow"); \
1418 return ERROR_COMMAND_ARGUMENT_UNDERFLOW; \
1419 } \
1420 return ERROR_OK; \
1421 }
1422 DEFINE_PARSE_NUM_TYPE(_ulong, unsigned long, strtoul, 0, ULONG_MAX)
1423 DEFINE_PARSE_NUM_TYPE(_ullong, unsigned long long, strtoull, 0, ULLONG_MAX)
1424 DEFINE_PARSE_NUM_TYPE(_long, long, strtol, LONG_MIN, LONG_MAX)
1425 DEFINE_PARSE_NUM_TYPE(_llong, long long, strtoll, LLONG_MIN, LLONG_MAX)
1426
1427 #define DEFINE_PARSE_WRAPPER(name, type, min, max, functype, funcname) \
1428 int parse ## name(const char *str, type * ul) \
1429 { \
1430 functype n; \
1431 int retval = parse ## funcname(str, &n); \
1432 if (ERROR_OK != retval) \
1433 return retval; \
1434 if (n > max) \
1435 return ERROR_COMMAND_ARGUMENT_OVERFLOW; \
1436 if (min) \
1437 return ERROR_COMMAND_ARGUMENT_UNDERFLOW; \
1438 *ul = n; \
1439 return ERROR_OK; \
1440 }
1441
1442 #define DEFINE_PARSE_ULONGLONG(name, type, min, max) \
1443 DEFINE_PARSE_WRAPPER(name, type, min, max, unsigned long long, _ullong)
1444 DEFINE_PARSE_ULONGLONG(_uint, unsigned, 0, UINT_MAX)
1445 DEFINE_PARSE_ULONGLONG(_u64, uint64_t, 0, UINT64_MAX)
1446 DEFINE_PARSE_ULONGLONG(_u32, uint32_t, 0, UINT32_MAX)
1447 DEFINE_PARSE_ULONGLONG(_u16, uint16_t, 0, UINT16_MAX)
1448 DEFINE_PARSE_ULONGLONG(_u8, uint8_t, 0, UINT8_MAX)
1449
1450 DEFINE_PARSE_ULONGLONG(_target_addr, target_addr_t, 0, TARGET_ADDR_MAX)
1451
1452 #define DEFINE_PARSE_LONGLONG(name, type, min, max) \
1453 DEFINE_PARSE_WRAPPER(name, type, min, max, long long, _llong)
1454 DEFINE_PARSE_LONGLONG(_int, int, n < INT_MIN, INT_MAX)
1455 DEFINE_PARSE_LONGLONG(_s64, int64_t, n < INT64_MIN, INT64_MAX)
1456 DEFINE_PARSE_LONGLONG(_s32, int32_t, n < INT32_MIN, INT32_MAX)
1457 DEFINE_PARSE_LONGLONG(_s16, int16_t, n < INT16_MIN, INT16_MAX)
1458 DEFINE_PARSE_LONGLONG(_s8, int8_t, n < INT8_MIN, INT8_MAX)
1459
1460 static int command_parse_bool(const char *in, bool *out,
1461 const char *on, const char *off)
1462 {
1463 if (strcasecmp(in, on) == 0)
1464 *out = true;
1465 else if (strcasecmp(in, off) == 0)
1466 *out = false;
1467 else
1468 return ERROR_COMMAND_SYNTAX_ERROR;
1469 return ERROR_OK;
1470 }
1471
1472 int command_parse_bool_arg(const char *in, bool *out)
1473 {
1474 if (command_parse_bool(in, out, "on", "off") == ERROR_OK)
1475 return ERROR_OK;
1476 if (command_parse_bool(in, out, "enable", "disable") == ERROR_OK)
1477 return ERROR_OK;
1478 if (command_parse_bool(in, out, "true", "false") == ERROR_OK)
1479 return ERROR_OK;
1480 if (command_parse_bool(in, out, "yes", "no") == ERROR_OK)
1481 return ERROR_OK;
1482 if (command_parse_bool(in, out, "1", "0") == ERROR_OK)
1483 return ERROR_OK;
1484 return ERROR_COMMAND_SYNTAX_ERROR;
1485 }
1486
1487 COMMAND_HELPER(handle_command_parse_bool, bool *out, const char *label)
1488 {
1489 switch (CMD_ARGC) {
1490 case 1: {
1491 const char *in = CMD_ARGV[0];
1492 if (command_parse_bool_arg(in, out) != ERROR_OK) {
1493 LOG_ERROR("%s: argument '%s' is not valid", CMD_NAME, in);
1494 return ERROR_COMMAND_SYNTAX_ERROR;
1495 }
1496 }
1497 /* fallthrough */
1498 case 0:
1499 LOG_INFO("%s is %s", label, *out ? "enabled" : "disabled");
1500 break;
1501 default:
1502 return ERROR_COMMAND_SYNTAX_ERROR;
1503 }
1504 return ERROR_OK;
1505 }

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