1 /*
2 * Copyright (c) 2015, Freescale Semiconductor, Inc.
3 * Copyright 2016-2021 NXP
4 * All rights reserved.
5 *
6 * SPDX-License-Identifier: BSD-3-Clause
7 *
8 * POSIX getopt for Windows
9 * Code given out at the 1985 UNIFORUM conference in Dallas.
10 *
11 * From std-unix@ut-sally.UUCP (Moderator, John Quarterman) Sun Nov 3 14:34:15 1985
12 * Relay-Version: version B 2.10.3 4.3bsd-beta 6/6/85; site gatech.CSNET
13 * Posting-Version: version B 2.10.2 9/18/84; site ut-sally.UUCP
14 * Path: gatech!akgua!mhuxv!mhuxt!mhuxr!ulysses!allegra!mit-eddie!genrad!panda!talcott!harvard!seismo!ut-sally!std-unix
15 * From: std-unix@ut-sally.UUCP (Moderator, John Quarterman)
16 * Newsgroups: mod.std.unix
17 * Subject: public domain AT&T getopt source
18 * Message-ID: <3352@ut-sally.UUCP>
19 * Date: 3 Nov 85 19:34:15 GMT
20 * Date-Received: 4 Nov 85 12:25:09 GMT
21 * Organization: IEEE/P1003 Portable Operating System Environment Committee
22 * Lines: 91
23 * Approved: jsq@ut-sally.UUC
24 * Here's something you've all been waiting for: the AT&T public domain
25 * source for getopt(3). It is the code which was given out at the 1985
26 * UNIFORUM conference in Dallas. I obtained it by electronic mail
27 * directly from AT&T. The people there assure me that it is indeed
28 * in the public domain
29 * There is no manual page. That is because the one they gave out at
30 * UNIFORUM was slightly different from the current System V Release 2
31 * manual page. The difference apparently involved a note about the
32 * famous rules 5 and 6, recommending using white space between an option
33 * and its first argument, and not grouping options that have arguments.
34 * Getopt itself is currently lenient about both of these things White
35 * space is allowed, but not mandatory, and the last option in a group can
36 * have an argument. That particular version of the man page evidently
37 * has no official existence, and my source at AT&T did not send a copy.
38 * The current SVR2 man page reflects the actual behavor of this getopt.
39 * However, I am not about to post a copy of anything licensed by AT&T.
40 */
41
42 #include <assert.h>
43 #include <stdarg.h>
44 #include <stdlib.h>
45 #include <stdio.h>
46
47 #include "fsl_common.h"
48 #include "fsl_str.h"
49
50 #include "fsl_component_generic_list.h"
51 #include "fsl_component_serial_manager.h"
52
53 #include "fsl_shell.h"
54
55 /*
56 * The OSA_USED macro can only be defined when the OSA component is used.
57 * If the source code of the OSA component does not exist, the OSA_USED cannot be defined.
58 * OR, If OSA component is not added into project event the OSA source code exists, the OSA_USED
59 * also cannot be defined.
60 * The source code path of the OSA component is <MCUXpresso_SDK>/components/osa.
61 *
62 */
63 #if defined(OSA_USED)
64 #if (defined(SHELL_USE_COMMON_TASK) && (SHELL_USE_COMMON_TASK > 0U))
65 #include "fsl_component_common_task.h"
66 #else
67 #include "fsl_os_abstraction.h"
68 #endif
69
70 #endif
71
72 /*******************************************************************************
73 * Definitions
74 ******************************************************************************/
75 #if defined(OSA_USED)
76 #define SHELL_WRITEX SHELL_WriteSynchronization
77 #else
78 #define SHELL_WRITEX SHELL_Write
79 #endif
80
81 #if defined(OSA_USED)
82 #if (defined(USE_RTOS) && (USE_RTOS > 0U))
83 static OSA_MUTEX_HANDLE_DEFINE(s_shellMutex);
84 #define SHELL_MUTEX_CREATE() (void)OSA_MutexCreate(s_shellMutex)
85 #define SHELL_ENTER_CRITICAL() (void)OSA_MutexLock(s_shellMutex, osaWaitForever_c)
86 #define SHELL_EXIT_CRITICAL() (void)OSA_MutexUnlock(s_shellMutex)
87 #else
88 #define SHELL_MUTEX_CREATE()
89 #define SHELL_ENTER_CRITICAL()
90 #define SHELL_EXIT_CRITICAL()
91 #endif
92 #else
93 #ifdef SDK_OS_FREE_RTOS
94 #include "FreeRTOS.h"
95 #include "queue.h"
96 #include "semphr.h"
97 static QueueHandle_t s_shellMutex;
98
99 #define SHELL_MUTEX_CREATE() s_shellMutex = xSemaphoreCreateMutex()
100 #define SHELL_ENTER_CRITICAL() (void)xSemaphoreTakeRecursive(s_shellMutex, portMAX_DELAY)
101 #define SHELL_EXIT_CRITICAL() (void)xSemaphoreGiveRecursive(s_shellMutex)
102 #else /* BM case*/
103 #define SHELL_MUTEX_CREATE()
104 #define SHELL_ENTER_CRITICAL()
105 #define SHELL_EXIT_CRITICAL()
106 #endif
107 #endif
108
109 #define KEY_ESC (0x1BU)
110 #define KET_DEL (0x7FU)
111
112 #define SHELL_EVENT_DATA_ARRIVED (1U << 0)
113 #define SHELL_EVENT_DATA_SENT (1U << 1)
114
115 #define SHELL_SPRINTF_BUFFER_SIZE (64U)
116
117 /*! @brief A type for the handle special key. */
118 typedef enum _fun_key_status
119 {
120 kSHELL_Normal = 0U, /*!< Normal key */
121 kSHELL_Special = 1U, /*!< Special key */
122 kSHELL_Function = 2U, /*!< Function key */
123 } fun_key_status_t;
124
125 /*! @brief Data structure for Shell environment. */
126 typedef struct _shell_context_handle
127 {
128 list_label_t commandContextListHead; /*!< Command shellContextHandle list queue head */
129 serial_handle_t serialHandle; /*!< Serial manager handle */
130 uint8_t
131 serialWriteHandleBuffer[SERIAL_MANAGER_WRITE_HANDLE_SIZE]; /*!< The buffer for serial manager write handle */
132 serial_write_handle_t serialWriteHandle; /*!< The serial manager write handle */
133 uint8_t serialReadHandleBuffer[SERIAL_MANAGER_READ_HANDLE_SIZE]; /*!< The buffer for serial manager read handle */
134 serial_read_handle_t serialReadHandle; /*!< The serial manager read handle */
135 char *prompt; /*!< Prompt string */
136 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
137
138 #if defined(OSA_USED)
139
140 #if (defined(SHELL_USE_COMMON_TASK) && (SHELL_USE_COMMON_TASK > 0U))
141 common_task_message_t commontaskMsg; /*!< Message for common task */
142 #else
143 uint8_t event[OSA_EVENT_HANDLE_SIZE]; /*!< Event instance */
144 uint8_t taskId[OSA_TASK_HANDLE_SIZE]; /*!< Task handle */
145 #endif
146
147 #endif
148
149 #endif
150 char line[SHELL_BUFFER_SIZE]; /*!< Consult buffer */
151 char hist_buf[SHELL_HISTORY_COUNT][SHELL_BUFFER_SIZE]; /*!< History buffer*/
152 char printBuffer[SHELL_SPRINTF_BUFFER_SIZE]; /*!< Buffer for print */
153 uint32_t printLength; /*!< All length has been printed */
154 uint16_t hist_current; /*!< Current history command in hist buff*/
155 uint16_t hist_count; /*!< Total history command in hist buff*/
156 enum _fun_key_status stat; /*!< Special key status */
157 uint8_t cmd_num; /*!< Number of user commands */
158 uint8_t l_pos; /*!< Total line position */
159 uint8_t c_pos; /*!< Current line position */
160 volatile uint8_t notificationPost; /*!< The serial manager notification is post */
161 uint8_t exit; /*!< Exit Flag*/
162 uint8_t printBusy : 1; /*!< Print is busy */
163 uint8_t taskBusy : 1; /*!< Task is busy */
164 } shell_context_handle_t;
165
166 #if 0
167 #define SHELL_STRUCT_OFFSET(type, field) ((size_t) & (((type *)0)->field))
168 #define SHEEL_COMMAND_POINTER(node) \
169 ((shell_command_t *)(((uint32_t)(node)) - SHELL_STRUCT_OFFSET(shell_command_t, link)))
170 #else
171 #define SHEEL_COMMAND_POINTER(node) \
172 ((shell_command_t *)(((uint32_t)(node)) - (sizeof(shell_command_t) - sizeof(list_element_t))))
173 #endif
174 /*******************************************************************************
175 * Prototypes
176 ******************************************************************************/
177 static shell_status_t SHELL_HelpCommand(shell_handle_t shellHandle, int32_t argc, char **argv); /*!< help command */
178
179 static shell_status_t SHELL_ExitCommand(shell_handle_t shellHandle, int32_t argc, char **argv); /*!< exit command */
180
181 static int32_t SHELL_ParseLine(const char *cmd, uint32_t len, char *argv[]); /*!< parse line command */
182
183 static int32_t SHELL_StringCompare(const char *str1, const char *str2, int32_t count); /*!< compare string command */
184
185 static void SHELL_ProcessCommand(shell_context_handle_t *shellContextHandle, const char *cmd); /*!< process a command */
186
187 static void SHELL_GetHistoryCommand(shell_context_handle_t *shellContextHandle,
188 uint8_t hist_pos); /*!< get commands history */
189
190 static void SHELL_AutoComplete(shell_context_handle_t *shellContextHandle); /*!< auto complete command */
191
192 static shell_status_t SHELL_GetChar(shell_context_handle_t *shellContextHandle,
193 uint8_t *ch); /*!< get a char from communication interface */
194
195 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
196 static void SHELL_Task(void *param); /*!< Shell task*/
197 #endif
198
199 /*******************************************************************************
200 * Variables
201 ******************************************************************************/
202
203 static SHELL_COMMAND_DEFINE(help, "\r\n\"help\": List all the registered commands\r\n", SHELL_HelpCommand, 0);
204 static SHELL_COMMAND_DEFINE(exit, "\r\n\"exit\": Exit program\r\n", SHELL_ExitCommand, 0);
205
206 static char s_paramBuffer[SHELL_BUFFER_SIZE];
207
208 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
209 #if defined(OSA_USED)
210 #if (defined(SHELL_USE_COMMON_TASK) && (SHELL_USE_COMMON_TASK > 0U))
211 #else
212 /*
213 * \brief Defines the serial manager task's stack
214 */
215 static OSA_TASK_DEFINE(SHELL_Task, SHELL_TASK_PRIORITY, 1, SHELL_TASK_STACK_SIZE, false);
216 #endif
217 #endif /* OSA_USED */
218 #endif /* SHELL_NON_BLOCKING_MODE */
219 /*******************************************************************************
220 * Code
221 ******************************************************************************/
222
223 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
SHELL_SerialManagerRxCallback(void * callbackParam,serial_manager_callback_message_t * message,serial_manager_status_t status)224 static void SHELL_SerialManagerRxCallback(void *callbackParam,
225 serial_manager_callback_message_t *message,
226 serial_manager_status_t status)
227 {
228 shell_context_handle_t *shellHandle;
229
230 assert(callbackParam);
231 assert(message);
232
233 shellHandle = (shell_context_handle_t *)callbackParam;
234
235 if (0U == shellHandle->notificationPost)
236 {
237 shellHandle->notificationPost = 1U;
238 #if defined(OSA_USED)
239
240 #if (defined(SHELL_USE_COMMON_TASK) && (SHELL_USE_COMMON_TASK > 0U))
241 shellHandle->commontaskMsg.callback = SHELL_Task;
242 shellHandle->commontaskMsg.callbackParam = shellHandle;
243 (void)COMMON_TASK_post_message(&shellHandle->commontaskMsg);
244 #else
245 (void)OSA_EventSet((osa_event_handle_t)shellHandle->event, SHELL_EVENT_DATA_ARRIVED);
246 #endif
247
248 #else
249 SHELL_Task(shellHandle);
250 #endif
251 }
252 }
253 #endif
254
SHELL_WriteBuffer(char * buffer,int32_t * indicator,char val,int len)255 static void SHELL_WriteBuffer(char *buffer, int32_t *indicator, char val, int len)
256 {
257 shell_context_handle_t *shellContextHandle;
258 int i = 0;
259 shellContextHandle = (shell_context_handle_t *)(void *)buffer;
260
261 for (i = 0; i < len; i++)
262 {
263 if ((*indicator + 1) >= (int32_t)SHELL_SPRINTF_BUFFER_SIZE)
264 {
265 #if (!defined(SDK_DEBUGCONSOLE_UART) && (defined(SDK_DEBUGCONSOLE) && (SDK_DEBUGCONSOLE != 1)))
266 if (NULL == shellContextHandle->serialHandle)
267 {
268 for (uint32_t index = 0; index < ((uint32_t)*indicator); index++)
269 {
270 (void)putchar(shellContextHandle->printBuffer[index]);
271 }
272 }
273 else
274 #endif
275 {
276 (void)SerialManager_WriteBlocking(shellContextHandle->serialWriteHandle,
277 (uint8_t *)shellContextHandle->printBuffer, (uint32_t)*indicator);
278 }
279
280 shellContextHandle->printLength += (uint32_t)*indicator;
281 *indicator = 0;
282 }
283
284 shellContextHandle->printBuffer[*indicator] = val;
285 (*indicator)++;
286 }
287 }
288
SHELL_Sprintf(void * buffer,const char * formatString,va_list ap)289 static int SHELL_Sprintf(void *buffer, const char *formatString, va_list ap)
290 {
291 shell_context_handle_t *shellContextHandle;
292 uint32_t length;
293 shellContextHandle = (shell_context_handle_t *)buffer;
294
295 length = (uint32_t)StrFormatPrintf(formatString, ap, (char *)buffer, SHELL_WriteBuffer);
296 shellContextHandle->printLength += length;
297 return (int32_t)length;
298 }
299
300 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
SHELL_Task(void * param)301 static void SHELL_Task(void *param)
302 #else
303 void SHELL_Task(shell_handle_t shellHandle)
304 #endif
305 {
306 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
307 shell_context_handle_t *shellContextHandle = (shell_context_handle_t *)param;
308 #else
309 shell_context_handle_t *shellContextHandle = (shell_context_handle_t *)shellHandle;
310 #endif
311 uint8_t ch;
312
313 if (NULL != shellContextHandle)
314 {
315 uint32_t osaCurrentSr = 0U;
316
317 osaCurrentSr = DisableGlobalIRQ();
318 shellContextHandle->notificationPost = 0U;
319 if (shellContextHandle->taskBusy > 0U)
320 {
321 EnableGlobalIRQ(osaCurrentSr);
322 return;
323 }
324 shellContextHandle->taskBusy = 1U;
325 EnableGlobalIRQ(osaCurrentSr);
326 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
327
328 #if defined(OSA_USED)
329
330 #if (defined(SHELL_USE_COMMON_TASK) && (SHELL_USE_COMMON_TASK > 0U))
331 #else
332 osa_event_flags_t ev = 0;
333
334 do
335 {
336 if (KOSA_StatusSuccess == OSA_EventWait((osa_event_handle_t)shellContextHandle->event, osaEventFlagsAll_c,
337 0U, osaWaitForever_c, &ev))
338 {
339 if (0U != (ev & SHELL_EVENT_DATA_ARRIVED))
340 #endif
341
342 #endif
343
344 #endif
345 {
346 shellContextHandle->notificationPost = 0U;
347 do
348 {
349 if ((bool)shellContextHandle->exit)
350 {
351 if (shellContextHandle->serialReadHandle != NULL)
352 {
353 (void)SerialManager_CloseReadHandle(shellContextHandle->serialReadHandle);
354 shellContextHandle->serialReadHandle = NULL;
355 }
356 if (shellContextHandle->serialWriteHandle != NULL)
357 {
358 (void)SerialManager_CloseWriteHandle(shellContextHandle->serialWriteHandle);
359 shellContextHandle->serialWriteHandle = NULL;
360 }
361 break;
362 }
363 if (kStatus_SHELL_Success != (shell_status_t)SHELL_GetChar(shellContextHandle, &ch))
364 {
365 /* If error occurred when getting a char, exit the task and waiting the new data arriving. */
366 break;
367 }
368
369 /* Special key */
370 if (ch == KEY_ESC)
371 {
372 shellContextHandle->stat = kSHELL_Special;
373 continue;
374 }
375 else if (shellContextHandle->stat == kSHELL_Special)
376 {
377 /* Function key */
378 if ((char)ch == '[')
379 {
380 shellContextHandle->stat = kSHELL_Function;
381 continue;
382 }
383 shellContextHandle->stat = kSHELL_Normal;
384 }
385 else if (shellContextHandle->stat == kSHELL_Function)
386 {
387 shellContextHandle->stat = kSHELL_Normal;
388
389 switch ((char)ch)
390 {
391 /* History operation here */
392 case 'A': /* Up key */
393 SHELL_GetHistoryCommand(shellContextHandle, (uint8_t)shellContextHandle->hist_current);
394 if (shellContextHandle->hist_current < (shellContextHandle->hist_count - 1U))
395 {
396 shellContextHandle->hist_current++;
397 }
398 break;
399 case 'B': /* Down key */
400 SHELL_GetHistoryCommand(shellContextHandle, (uint8_t)shellContextHandle->hist_current);
401 if (shellContextHandle->hist_current > 0U)
402 {
403 shellContextHandle->hist_current--;
404 }
405 break;
406 case 'D': /* Left key */
407 if ((bool)shellContextHandle->c_pos)
408 {
409 (void)SHELL_WRITEX(shellContextHandle, "\b", 1);
410 shellContextHandle->c_pos--;
411 }
412 break;
413 case 'C': /* Right key */
414 if (shellContextHandle->c_pos < shellContextHandle->l_pos)
415 {
416 (void)SHELL_WRITEX(shellContextHandle,
417 &shellContextHandle->line[shellContextHandle->c_pos], 1);
418 shellContextHandle->c_pos++;
419 }
420 break;
421 default:
422 /* MISRA C-2012 Rule 16.4 */
423 break;
424 }
425 continue;
426 }
427 /* Handle tab key */
428 else if ((char)ch == '\t')
429 {
430 #if SHELL_AUTO_COMPLETE
431 /* Move the cursor to the beginning of line */
432 uint32_t i;
433 for (i = 0; i < (uint32_t)shellContextHandle->c_pos; i++)
434 {
435 (void)SHELL_WRITEX(shellContextHandle, "\b", 1);
436 }
437 /* Do auto complete */
438 SHELL_AutoComplete(shellContextHandle);
439 /* Move position to end */
440 shellContextHandle->l_pos = (uint8_t)strlen(shellContextHandle->line);
441 shellContextHandle->c_pos = shellContextHandle->l_pos;
442 #endif
443 continue;
444 }
445 /* Handle backspace key */
446 else if ((ch == KET_DEL) || ((char)ch == '\b'))
447 {
448 /* There must be at last one char */
449 if (shellContextHandle->c_pos == 0U)
450 {
451 continue;
452 }
453
454 shellContextHandle->l_pos--;
455 shellContextHandle->c_pos--;
456
457 if (shellContextHandle->l_pos > shellContextHandle->c_pos)
458 {
459 (void)memmove(&shellContextHandle->line[shellContextHandle->c_pos],
460 &shellContextHandle->line[shellContextHandle->c_pos + 1U],
461 (uint32_t)shellContextHandle->l_pos - (uint32_t)shellContextHandle->c_pos);
462 shellContextHandle->line[shellContextHandle->l_pos] = '\0';
463 (void)SHELL_WRITEX(shellContextHandle, "\b", 1);
464 (void)SHELL_WRITEX(shellContextHandle, &shellContextHandle->line[shellContextHandle->c_pos],
465 strlen(&shellContextHandle->line[shellContextHandle->c_pos]));
466 (void)SHELL_WRITEX(shellContextHandle, " \b", 3);
467
468 /* Reset position */
469 uint32_t i;
470 for (i = (uint32_t)shellContextHandle->c_pos; i <= (uint32_t)shellContextHandle->l_pos; i++)
471 {
472 (void)SHELL_WRITEX(shellContextHandle, "\b", 1);
473 }
474 }
475 else /* Normal backspace operation */
476 {
477 (void)SHELL_WRITEX(shellContextHandle, "\b \b", 3);
478 shellContextHandle->line[shellContextHandle->l_pos] = '\0';
479 }
480 continue;
481 }
482 else
483 {
484 /* MISRA C-2012 Rule 15.7 */
485 }
486
487 /* Input too long */
488 if (shellContextHandle->l_pos >= (SHELL_BUFFER_SIZE - 1U))
489 {
490 shellContextHandle->l_pos = 0U;
491 }
492
493 /* Handle end of line, break */
494 if (((char)ch == '\r') || ((char)ch == '\n'))
495 {
496 static char endoflinechar = '\0';
497
498 if (((uint8_t)endoflinechar != 0U) && ((uint8_t)endoflinechar != ch))
499 {
500 continue;
501 }
502 else
503 {
504 endoflinechar = (char)ch;
505 /* Print new line. */
506 (void)SHELL_WRITEX(shellContextHandle, "\r\n", 2U);
507 /* If command line is not NULL, will start process it. */
508 if (0U != strlen(shellContextHandle->line))
509 {
510 SHELL_ProcessCommand(shellContextHandle, shellContextHandle->line);
511 }
512 /* Print prompt. */
513 (void)SHELL_WRITEX(shellContextHandle, shellContextHandle->prompt,
514 strlen(shellContextHandle->prompt));
515 /* Reset all params */
516 shellContextHandle->c_pos = shellContextHandle->l_pos = 0;
517 shellContextHandle->hist_current = 0;
518 (void)memset(shellContextHandle->line, 0, sizeof(shellContextHandle->line));
519 continue;
520 }
521 }
522
523 /* Normal character */
524 if (shellContextHandle->c_pos < shellContextHandle->l_pos)
525 {
526 (void)memmove(&shellContextHandle->line[shellContextHandle->c_pos + 1U],
527 &shellContextHandle->line[shellContextHandle->c_pos],
528 (uint32_t)shellContextHandle->l_pos - (uint32_t)shellContextHandle->c_pos);
529 shellContextHandle->line[shellContextHandle->c_pos] = (char)ch;
530 (void)SHELL_WRITEX(shellContextHandle, &shellContextHandle->line[shellContextHandle->c_pos],
531 strlen(&shellContextHandle->line[shellContextHandle->c_pos]));
532 /* Move the cursor to new position */
533 uint32_t i;
534 for (i = (uint32_t)shellContextHandle->c_pos; i < (uint32_t)shellContextHandle->l_pos; i++)
535 {
536 (void)SHELL_WRITEX(shellContextHandle, "\b", 1);
537 }
538 }
539 else
540 {
541 shellContextHandle->line[shellContextHandle->l_pos] = (char)ch;
542 (void)SHELL_WRITEX(shellContextHandle, &shellContextHandle->line[shellContextHandle->l_pos], 1);
543 }
544
545 ch = 0;
546 shellContextHandle->l_pos++;
547 shellContextHandle->c_pos++;
548 } while (0U == shellContextHandle->exit);
549 }
550 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
551
552 #if defined(OSA_USED)
553
554 #if (defined(SHELL_USE_COMMON_TASK) && (SHELL_USE_COMMON_TASK > 0U))
555 #else
556 }
557 } while (1U == gUseRtos_c); /* USE_RTOS = 0 for BareMetal and 1 for OS */
558 #endif
559
560 #endif
561
562 #endif
563 osaCurrentSr = DisableGlobalIRQ();
564 shellContextHandle->taskBusy = 0U;
565 EnableGlobalIRQ(osaCurrentSr);
566 }
567 }
568
SHELL_HelpCommand(shell_handle_t shellHandle,int32_t argc,char ** argv)569 static shell_status_t SHELL_HelpCommand(shell_handle_t shellHandle, int32_t argc, char **argv)
570 {
571 shell_context_handle_t *shellContextHandle = (shell_context_handle_t *)shellHandle;
572 shell_command_t *shellCommandContextHandle;
573 list_element_handle_t p = LIST_GetHead(&shellContextHandle->commandContextListHead);
574
575 while (p != NULL)
576 {
577 shellCommandContextHandle = SHEEL_COMMAND_POINTER(p);
578 if ((shellCommandContextHandle->pcHelpString != NULL) && (bool)strlen(shellCommandContextHandle->pcHelpString))
579 {
580 (void)SHELL_WRITEX(shellContextHandle, shellCommandContextHandle->pcHelpString,
581 strlen(shellCommandContextHandle->pcHelpString));
582 }
583
584 p = LIST_GetNext(p);
585 }
586 return kStatus_SHELL_Success;
587 }
588
SHELL_ExitCommand(shell_handle_t shellHandle,int32_t argc,char ** argv)589 static shell_status_t SHELL_ExitCommand(shell_handle_t shellHandle, int32_t argc, char **argv)
590 {
591 shell_context_handle_t *shellContextHandle = (shell_context_handle_t *)shellHandle;
592 /* Skip warning */
593 (void)SHELL_WRITEX(shellContextHandle, "\r\nSHELL exited\r\n", strlen("\r\nSHELL exited\r\n"));
594 shellContextHandle->exit = (uint8_t) true;
595 return kStatus_SHELL_Success;
596 }
597
SHELL_ProcessCommand(shell_context_handle_t * shellContextHandle,const char * cmd)598 static void SHELL_ProcessCommand(shell_context_handle_t *shellContextHandle, const char *cmd)
599 {
600 shell_command_t *tmpCommand = NULL;
601 const char *tmpCommandString;
602 int32_t argc;
603 char *argv[SHELL_BUFFER_SIZE] = {0};
604 list_element_handle_t p;
605 uint8_t flag = 1;
606 uint8_t tmpCommandLen;
607 uint8_t tmpLen;
608 uint8_t i = 0;
609
610 tmpLen = (uint8_t)strlen(cmd);
611 argc = SHELL_ParseLine(cmd, tmpLen, argv);
612
613 if ((argc > 0))
614 {
615 p = LIST_GetHead(&shellContextHandle->commandContextListHead);
616 while (p != NULL)
617 {
618 tmpCommand = SHEEL_COMMAND_POINTER(p);
619 tmpCommandString = tmpCommand->pcCommand;
620 tmpCommandLen = (uint8_t)strlen(tmpCommandString);
621 /* Compare with space or end of string */
622 if ((cmd[tmpCommandLen] == ' ') || (cmd[tmpCommandLen] == (char)0x00))
623 {
624 if (SHELL_StringCompare(tmpCommandString, argv[0], (int32_t)tmpCommandLen) == 0)
625 {
626 /* support commands with optional number of parameters */
627 if (tmpCommand->cExpectedNumberOfParameters == (uint8_t)SHELL_IGNORE_PARAMETER_COUNT)
628 {
629 flag = 0;
630 }
631 else if ((tmpCommand->cExpectedNumberOfParameters == 0U) && (argc == 1))
632 {
633 flag = 0;
634 }
635 else if (tmpCommand->cExpectedNumberOfParameters > 0U)
636 {
637 if ((argc - 1) == (int32_t)tmpCommand->cExpectedNumberOfParameters)
638 {
639 flag = 0;
640 }
641 }
642 else
643 {
644 flag = 1;
645 }
646 break;
647 }
648 }
649 p = LIST_GetNext(p);
650 }
651 if (NULL == p)
652 {
653 tmpCommand = NULL;
654 }
655 }
656
657 if ((tmpCommand != NULL) && (flag == 1U))
658 {
659 (void)SHELL_Write(
660 shellContextHandle,
661 "\r\nIncorrect command parameter(s). Enter \"help\" to view a list of available commands.\r\n\r\n",
662 strlen(
663 "\r\nIncorrect command parameter(s). Enter \"help\" to view a list of available commands.\r\n\r\n"));
664 }
665 else if (tmpCommand != NULL)
666 {
667 tmpLen = (uint8_t)strlen(cmd);
668 /* Compare with last command. Push back to history buffer if different */
669 if (tmpLen != (uint8_t)SHELL_StringCompare(cmd, shellContextHandle->hist_buf[0], (int32_t)strlen(cmd)))
670 {
671 for (i = SHELL_HISTORY_COUNT - 1U; i > 0U; i--)
672 {
673 (void)memset(shellContextHandle->hist_buf[i], (int)'\0', SHELL_BUFFER_SIZE);
674 tmpLen = (uint8_t)strlen(shellContextHandle->hist_buf[i - 1U]);
675 (void)memcpy(shellContextHandle->hist_buf[i], shellContextHandle->hist_buf[i - 1U], tmpLen);
676 }
677 (void)memset(shellContextHandle->hist_buf[0], (int)'\0', SHELL_BUFFER_SIZE);
678 tmpLen = (uint8_t)strlen(cmd);
679 (void)memcpy(shellContextHandle->hist_buf[0], cmd, tmpLen);
680 if (shellContextHandle->hist_count < SHELL_HISTORY_COUNT)
681 {
682 shellContextHandle->hist_count++;
683 }
684 }
685 (void)tmpCommand->pFuncCallBack(shellContextHandle, argc, argv);
686 }
687 else
688 {
689 (void)SHELL_Write(
690 shellContextHandle,
691 "\r\nCommand not recognized. Enter 'help' to view a list of available commands.\r\n\r\n",
692 strlen("\r\nCommand not recognized. Enter 'help' to view a list of available commands.\r\n\r\n"));
693 }
694 }
695
SHELL_GetHistoryCommand(shell_context_handle_t * shellContextHandle,uint8_t hist_pos)696 static void SHELL_GetHistoryCommand(shell_context_handle_t *shellContextHandle, uint8_t hist_pos)
697 {
698 uint32_t i;
699 uint32_t tmp;
700
701 if (shellContextHandle->hist_buf[0][0] == '\0')
702 {
703 shellContextHandle->hist_current = 0;
704 return;
705 }
706
707 #if 0 /*hist_pos is passed from hist_current. And hist_current is only changed in case 'A'/'B',as hist_count is 3 \
708 most, it can't be more than 3 */
709 if (hist_pos >= SHELL_HISTORY_COUNT)
710 {
711 hist_pos = SHELL_HISTORY_COUNT - 1U;
712 }
713 #endif
714
715 tmp = strlen(shellContextHandle->line);
716 /* Clear current if have */
717 if (tmp > 0U)
718 {
719 (void)memset(shellContextHandle->line, (int)'\0', tmp);
720 for (i = 0U; i < tmp; i++)
721 {
722 (void)SHELL_WRITEX(shellContextHandle, "\b \b", 3);
723 }
724 }
725
726 shellContextHandle->l_pos = (uint8_t)strlen(shellContextHandle->hist_buf[hist_pos]);
727 shellContextHandle->c_pos = shellContextHandle->l_pos;
728 (void)memcpy(shellContextHandle->line, shellContextHandle->hist_buf[hist_pos], shellContextHandle->l_pos);
729 (void)SHELL_WRITEX(shellContextHandle, shellContextHandle->hist_buf[hist_pos],
730 strlen(shellContextHandle->hist_buf[hist_pos]));
731 }
732
SHELL_AutoComplete(shell_context_handle_t * shellContextHandle)733 static void SHELL_AutoComplete(shell_context_handle_t *shellContextHandle)
734 {
735 int32_t minLen;
736 list_element_handle_t p;
737 shell_command_t *tmpCommand = NULL;
738 const char *namePtr;
739 const char *cmdName;
740
741 minLen = (int32_t)SHELL_BUFFER_SIZE;
742 namePtr = NULL;
743
744 /* Empty tab, list all commands */
745 if (shellContextHandle->line[0] == '\0')
746 {
747 (void)SHELL_HelpCommand(shellContextHandle, 0, NULL);
748 return;
749 }
750
751 (void)SHELL_WRITEX(shellContextHandle, "\r\n", 2);
752
753 /* Do auto complete */
754 p = LIST_GetHead(&shellContextHandle->commandContextListHead);
755 while (p != NULL)
756 {
757 tmpCommand = SHEEL_COMMAND_POINTER(p);
758 cmdName = tmpCommand->pcCommand;
759 if (SHELL_StringCompare(shellContextHandle->line, cmdName, (int32_t)strlen(shellContextHandle->line)) == 0)
760 {
761 /* Show possible matches */
762 (void)SHELL_Printf(shellContextHandle, "%s ", cmdName);
763 if (minLen > ((int32_t)strlen(cmdName)))
764 {
765 namePtr = cmdName;
766 minLen = (int32_t)strlen(namePtr);
767 }
768 }
769 p = LIST_GetNext(p);
770 }
771 /* Auto complete string */
772 if (namePtr != NULL)
773 {
774 (void)memcpy(shellContextHandle->line, namePtr, (uint32_t)minLen);
775 }
776 SHELL_PrintPrompt(shellContextHandle);
777 (void)SHELL_WRITEX(shellContextHandle, shellContextHandle->line, strlen(shellContextHandle->line));
778 return;
779 }
780
SHELL_StringCompare(const char * str1,const char * str2,int32_t count)781 static int32_t SHELL_StringCompare(const char *str1, const char *str2, int32_t count)
782 {
783 while ((bool)(count--))
784 {
785 if (*str1++ != *str2++)
786 {
787 return (int32_t)(*(str1 - 1) - *(str2 - 1));
788 }
789 }
790 return 0;
791 }
792
SHELL_ParseLine(const char * cmd,uint32_t len,char * argv[])793 static int32_t SHELL_ParseLine(const char *cmd, uint32_t len, char *argv[])
794 {
795 uint32_t argc;
796 char *p;
797 uint32_t position;
798
799 /* Init params */
800 (void)memset(s_paramBuffer, (int)'\0', len + 1U);
801 (void)memcpy(s_paramBuffer, cmd, len);
802
803 p = s_paramBuffer;
804 position = 0;
805 argc = 0;
806
807 while (position < len)
808 {
809 /* Skip all blanks */
810 while ((position < len) && ((char)(*p) == ' '))
811 {
812 *p = '\0';
813 p++;
814 position++;
815 }
816
817 if (position >= len)
818 {
819 break;
820 }
821
822 /* Process begin of a string */
823 if (*p == '"')
824 {
825 p++;
826 position++;
827 argv[argc] = p;
828 argc++;
829 /* Skip this string */
830 while ((*p != '"') && (position < len))
831 {
832 p++;
833 position++;
834 }
835 /* Skip '"' */
836 *p = '\0';
837 p++;
838 position++;
839 }
840 else /* Normal char */
841 {
842 argv[argc] = p;
843 argc++;
844 while (((char)*p != ' ') && (position < len))
845 {
846 p++;
847 position++;
848 }
849 }
850 }
851 return (int32_t)argc;
852 }
853
SHELL_GetChar(shell_context_handle_t * shellContextHandle,uint8_t * ch)854 static shell_status_t SHELL_GetChar(shell_context_handle_t *shellContextHandle, uint8_t *ch)
855 {
856 shell_status_t status;
857
858 #if (!defined(SDK_DEBUGCONSOLE_UART) && (defined(SDK_DEBUGCONSOLE) && (SDK_DEBUGCONSOLE != 1)))
859 if (NULL == shellContextHandle->serialHandle)
860 {
861 int ret;
862 ret = getchar();
863 if (ret > 0)
864 {
865 *ch = (uint8_t)ret;
866 status = kStatus_SHELL_Success;
867 }
868 else
869 {
870 status = kStatus_SHELL_Error;
871 }
872 }
873 else
874 #endif
875 {
876 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
877 uint32_t length = 0;
878
879 (void)SerialManager_TryRead(shellContextHandle->serialReadHandle, ch, 1, &length);
880
881 if (length > 0U)
882 {
883 status = kStatus_SHELL_Success;
884 }
885 else
886 {
887 status = kStatus_SHELL_Error;
888 }
889 #else
890 status = (shell_status_t)SerialManager_ReadBlocking(shellContextHandle->serialReadHandle, ch, 1);
891 #endif
892 }
893
894 return status;
895 }
896
SHELL_Init(shell_handle_t shellHandle,serial_handle_t serialHandle,char * prompt)897 shell_status_t SHELL_Init(shell_handle_t shellHandle, serial_handle_t serialHandle, char *prompt)
898 {
899 shell_context_handle_t *shellContextHandle;
900 serial_manager_status_t status = kStatus_SerialManager_Error;
901 (void)status;
902
903 assert(shellHandle);
904 #if !(!defined(SDK_DEBUGCONSOLE_UART) && (defined(SDK_DEBUGCONSOLE) && (SDK_DEBUGCONSOLE != 1)))
905 assert(serialHandle);
906 #endif
907 assert(prompt);
908 assert(SHELL_HANDLE_SIZE >= sizeof(shell_context_handle_t));
909
910 shellContextHandle = (shell_context_handle_t *)shellHandle;
911
912 /* memory set for shellHandle */
913 (void)memset(shellHandle, 0, SHELL_HANDLE_SIZE);
914
915 #if (!defined(SDK_DEBUGCONSOLE_UART) && (defined(SDK_DEBUGCONSOLE) && (SDK_DEBUGCONSOLE != 1)))
916 if (NULL == serialHandle)
917 {
918 }
919 else
920 #endif
921 {
922 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
923
924 #if defined(OSA_USED)
925
926 #if (defined(SHELL_USE_COMMON_TASK) && (SHELL_USE_COMMON_TASK > 0U))
927 (void)COMMON_TASK_init();
928 #else
929 if (KOSA_StatusSuccess != OSA_EventCreate((osa_event_handle_t)shellContextHandle->event, 1U))
930 {
931 return kStatus_SHELL_Error;
932 }
933
934 if (KOSA_StatusSuccess !=
935 OSA_TaskCreate((osa_task_handle_t)shellContextHandle->taskId, OSA_TASK(SHELL_Task), shellContextHandle))
936 {
937 return kStatus_SHELL_Error;
938 }
939 #endif
940
941 #endif
942
943 #endif
944 }
945
946 shellContextHandle->prompt = prompt;
947 shellContextHandle->serialHandle = serialHandle;
948
949 #if (!defined(SDK_DEBUGCONSOLE_UART) && (defined(SDK_DEBUGCONSOLE) && (SDK_DEBUGCONSOLE != 1)))
950 if (NULL == serialHandle)
951 {
952 }
953 else
954 #endif
955 {
956 shellContextHandle->serialWriteHandle = (serial_write_handle_t)&shellContextHandle->serialWriteHandleBuffer[0];
957 status = SerialManager_OpenWriteHandle(shellContextHandle->serialHandle, shellContextHandle->serialWriteHandle);
958 assert(kStatus_SerialManager_Success == status);
959
960 shellContextHandle->serialReadHandle = (serial_read_handle_t)&shellContextHandle->serialReadHandleBuffer[0];
961 status = SerialManager_OpenReadHandle(shellContextHandle->serialHandle, shellContextHandle->serialReadHandle);
962 assert(kStatus_SerialManager_Success == status);
963
964 #if (defined(SHELL_NON_BLOCKING_MODE) && (SHELL_NON_BLOCKING_MODE > 0U))
965 status = SerialManager_InstallRxCallback(shellContextHandle->serialReadHandle, SHELL_SerialManagerRxCallback,
966 shellContextHandle);
967 assert(kStatus_SerialManager_Success == status);
968 #endif
969 (void)status;
970 }
971
972 (void)SHELL_RegisterCommand(shellContextHandle, SHELL_COMMAND(help));
973 (void)SHELL_RegisterCommand(shellContextHandle, SHELL_COMMAND(exit));
974 SHELL_MUTEX_CREATE();
975 (void)SHELL_Write(shellContextHandle, "\r\nCopyright 2020 NXP\r\n", strlen("\r\nCopyright 2020 NXP\r\n"));
976 SHELL_PrintPrompt(shellContextHandle);
977
978 return kStatus_SHELL_Success;
979 }
980
SHELL_RegisterCommand(shell_handle_t shellHandle,shell_command_t * shellCommand)981 shell_status_t SHELL_RegisterCommand(shell_handle_t shellHandle, shell_command_t *shellCommand)
982 {
983 shell_context_handle_t *shellContextHandle = (shell_context_handle_t *)shellHandle;
984 assert(shellHandle);
985 assert(shellCommand);
986
987 /* memory set for shellHandle */
988 (void)memset(&shellCommand->link, 0, sizeof(shellCommand->link));
989
990 (void)LIST_AddTail(&shellContextHandle->commandContextListHead, &shellCommand->link);
991
992 return kStatus_SHELL_Success;
993 }
994
SHELL_UnregisterCommand(shell_command_t * shellCommand)995 shell_status_t SHELL_UnregisterCommand(shell_command_t *shellCommand)
996 {
997 assert(shellCommand);
998
999 (void)LIST_RemoveElement(&shellCommand->link);
1000
1001 /* memory set for shellHandle */
1002 (void)memset(&shellCommand->link, 0, sizeof(shellCommand->link));
1003
1004 return kStatus_SHELL_Success;
1005 }
1006
SHELL_Write(shell_handle_t shellHandle,const char * buffer,uint32_t length)1007 shell_status_t SHELL_Write(shell_handle_t shellHandle, const char *buffer, uint32_t length)
1008 {
1009 shell_context_handle_t *shellContextHandle;
1010 uint32_t primask;
1011 shell_status_t status;
1012
1013 assert(shellHandle);
1014 assert(buffer);
1015
1016 if (!(bool)length)
1017 {
1018 return kStatus_SHELL_Success;
1019 }
1020
1021 shellContextHandle = (shell_context_handle_t *)shellHandle;
1022
1023 primask = DisableGlobalIRQ();
1024 if ((bool)shellContextHandle->printBusy)
1025 {
1026 EnableGlobalIRQ(primask);
1027 return kStatus_SHELL_Error;
1028 }
1029 shellContextHandle->printBusy = 1U;
1030 EnableGlobalIRQ(primask);
1031 #if (!defined(SDK_DEBUGCONSOLE_UART) && (defined(SDK_DEBUGCONSOLE) && (SDK_DEBUGCONSOLE != 1)))
1032 if (NULL == shellContextHandle->serialHandle)
1033 {
1034 status = kStatus_SHELL_Success;
1035 for (uint32_t index = 0; index < length; index++)
1036 {
1037 (void)putchar(buffer[index]);
1038 }
1039 }
1040 else
1041 #endif
1042 {
1043 status = (shell_status_t)SerialManager_WriteBlocking(shellContextHandle->serialWriteHandle, (uint8_t *)buffer,
1044 length);
1045 }
1046
1047 shellContextHandle->printBusy = 0U;
1048
1049 return status;
1050 }
1051
SHELL_Printf(shell_handle_t shellHandle,const char * formatString,...)1052 int SHELL_Printf(shell_handle_t shellHandle, const char *formatString, ...)
1053 {
1054 shell_context_handle_t *shellContextHandle;
1055 uint32_t length;
1056 uint32_t primask;
1057 va_list ap;
1058
1059 assert(shellHandle);
1060 assert(formatString);
1061
1062 shellContextHandle = (shell_context_handle_t *)shellHandle;
1063
1064 primask = DisableGlobalIRQ();
1065 if ((bool)shellContextHandle->printBusy)
1066 {
1067 EnableGlobalIRQ(primask);
1068 return -1;
1069 }
1070 shellContextHandle->printBusy = 1U;
1071 EnableGlobalIRQ(primask);
1072
1073 va_start(ap, formatString);
1074
1075 shellContextHandle->printLength = 0U;
1076 length = (uint32_t)SHELL_Sprintf(shellHandle, formatString, ap);
1077 #if (!defined(SDK_DEBUGCONSOLE_UART) && (defined(SDK_DEBUGCONSOLE) && (SDK_DEBUGCONSOLE != 1)))
1078 if (NULL == shellContextHandle->serialHandle)
1079 {
1080 for (uint32_t index = 0; index < length; index++)
1081 {
1082 (void)putchar(shellContextHandle->printBuffer[index]);
1083 }
1084 }
1085 else
1086 #endif
1087 {
1088 (void)SerialManager_WriteBlocking(shellContextHandle->serialWriteHandle,
1089 (uint8_t *)shellContextHandle->printBuffer, length);
1090 }
1091 va_end(ap);
1092
1093 shellContextHandle->printBusy = 0U;
1094 return (int32_t)shellContextHandle->printLength;
1095 }
1096
SHELL_WriteSynchronization(shell_handle_t shellHandle,const char * buffer,uint32_t length)1097 shell_status_t SHELL_WriteSynchronization(shell_handle_t shellHandle, const char *buffer, uint32_t length)
1098 {
1099 shell_status_t status;
1100
1101 assert(SHELL_checkRunningInIsr() == false);
1102
1103 SHELL_ENTER_CRITICAL();
1104 status = SHELL_Write(shellHandle, buffer, length);
1105
1106 SHELL_EXIT_CRITICAL();
1107
1108 return status;
1109 }
1110
SHELL_PrintfSynchronization(shell_handle_t shellHandle,const char * formatString,...)1111 int SHELL_PrintfSynchronization(shell_handle_t shellHandle, const char *formatString, ...)
1112 {
1113 shell_status_t status;
1114 shell_context_handle_t *shellContextHandle;
1115 va_list ap;
1116 uint32_t length;
1117
1118 assert(SHELL_checkRunningInIsr() == false);
1119
1120 shellContextHandle = (shell_context_handle_t *)shellHandle;
1121
1122 SHELL_ENTER_CRITICAL();
1123 va_start(ap, formatString);
1124 length = (uint32_t)SHELL_Sprintf(shellHandle, formatString, ap);
1125
1126 status = SHELL_Write(shellHandle, (const char *)shellContextHandle->printBuffer, length);
1127 va_end(ap);
1128 SHELL_EXIT_CRITICAL();
1129
1130 return (status == kStatus_SHELL_Success) ? (int)length : 0;
1131 }
SHELL_ChangePrompt(shell_handle_t shellHandle,char * prompt)1132 void SHELL_ChangePrompt(shell_handle_t shellHandle, char *prompt)
1133 {
1134 shell_context_handle_t *shellContextHandle;
1135 assert(shellHandle);
1136 assert(prompt);
1137
1138 shellContextHandle = (shell_context_handle_t *)shellHandle;
1139
1140 shellContextHandle->prompt = prompt;
1141 SHELL_PrintPrompt(shellContextHandle);
1142 }
1143
SHELL_PrintPrompt(shell_handle_t shellHandle)1144 void SHELL_PrintPrompt(shell_handle_t shellHandle)
1145 {
1146 shell_context_handle_t *shellContextHandle;
1147 assert(shellHandle);
1148
1149 shellContextHandle = (shell_context_handle_t *)shellHandle;
1150
1151 (void)SHELL_Write(shellContextHandle, "\r\n", 2U);
1152 (void)SHELL_Write(shellContextHandle, shellContextHandle->prompt, strlen(shellContextHandle->prompt));
1153 }
1154