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/*
    ChibiOS - Copyright (C) 2006..2018 Giovanni Di Sirio

    Licensed under the Apache License, Version 2.0 (the "License");
    you may not use this file except in compliance with the License.
    You may obtain a copy of the License at

        http://www.apache.org/licenses/LICENSE-2.0

    Unless required by applicable law or agreed to in writing, software
    distributed under the License is distributed on an "AS IS" BASIS,
    WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    See the License for the specific language governing permissions and
    limitations under the License.
*/

#include "ch.h"
#include "hal.h"
#include "shell.h"
#include "chprintf.h"

#define SHELL_WA_SIZE       THD_WORKING_AREA_SIZE(4096)
#define CONSOLE_WA_SIZE     THD_WORKING_AREA_SIZE(4096)
#define TEST_WA_SIZE        THD_WORKING_AREA_SIZE(4096)

#define cputs(msg) chMsgSend(cdtp, (msg_t)msg)

static thread_t *cdtp;
static thread_t *shelltp1;
static thread_t *shelltp2;

static const ShellCommand commands[] = {
  {NULL, NULL}
};

static const ShellConfig shell_cfg1 = {
  (BaseSequentialStream *)&SD1,
  commands
};

static const ShellConfig shell_cfg2 = {
  (BaseSequentialStream *)&SD2,
  commands
};

/*
 * Console print server done using synchronous messages. This makes the access
 * to the C printf() thread safe and the print operation atomic among threads.
 * In this example the message is the zero terminated string itself.
 */
static THD_FUNCTION(console_thread, arg) {

  (void)arg;
  while (!chThdShouldTerminateX()) {
    thread_t *tp = chMsgWait();
    puts((char *)chMsgGet(tp));
    fflush(stdout);
    chMsgRelease(tp, MSG_OK);
  }
}

/**
 * @brief Shell termination handler.
 *
 * @param[in] id event id.
 */
static void termination_handler(eventid_t id) {

  (void)id;
  if (shelltp1 && chThdTerminatedX(shelltp1)) {
    chThdWait(shelltp1);
    shelltp1 = NULL;
    chThdSleepMilliseconds(10);
    cputs("Init: shell on SD1 terminated");
    chSysLock();
    oqResetI(&SD1.oqueue);
    chSchRescheduleS();
    chSysUnlock();
  }
  if (shelltp2 && chThdTerminatedX(shelltp2)) {
    chThdWait(shelltp2);
    shelltp2 = NULL;
    chThdSleepMilliseconds(10);
    cputs("Init: shell on SD2 terminated");
    chSysLock();
    oqResetI(&SD2.oqueue);
    chSchRescheduleS();
    chSysUnlock();
  }
}

static event_listener_t sd1fel, sd2fel;

/**
 * @brief SD1 status change handler.
 *
 * @param[in] id event id.
 */
static void sd1_handler(eventid_t id) {
  eventflags_t flags;

  (void)id;
  flags = chEvtGetAndClearFlags(&sd1fel);
  if ((flags & CHN_CONNECTED) && (shelltp1 == NULL)) {
    cputs("Init: connection on SD1");
    shelltp1 = chThdCreateFromHeap(NULL, SHELL_WA_SIZE,
                                   "shell1", NORMALPRIO + 10,
                                   shellThread, (void *)&shell_cfg1);
  }
  if (flags & CHN_DISCONNECTED) {
    cputs("Init: disconnection on SD1");
    chSysLock();
    iqResetI(&SD1.iqueue);
    chSchRescheduleS();
    chSysUnlock();
  }
}

/**
 * @brief SD2 status change handler.
 *
 * @param[in] id event id.
 */
static void sd2_handler(eventid_t id) {
  eventflags_t flags;

  (void)id;
  flags = chEvtGetAndClearFlags(&sd2fel);
  if ((flags & CHN_CONNECTED) && (shelltp2 == NULL)) {
    cputs("Init: connection on SD2");
    shelltp2 = chThdCreateFromHeap(NULL, SHELL_WA_SIZE,
                                   "shell2", NORMALPRIO + 10,
                                   shellThread, (void *)&shell_cfg2);
  }
  if (flags & CHN_DISCONNECTED) {
    cputs("Init: disconnection on SD2");
    chSysLock();
    iqResetI(&SD2.iqueue);
    chSchRescheduleS();
    chSysUnlock();
  }
}

static evhandler_t fhandlers[] = {
  termination_handler,
  sd1_handler,
  sd2_handler
};

/*------------------------------------------------------------------------*
 * Simulator main.                                                        *
 *------------------------------------------------------------------------*/
int main(void) {
  event_listener_t tel;

  /*
   * System initializations.
   * - HAL initialization, this also initializes the configured device drivers
   *   and performs the board-specific initializations.
   * - Kernel initialization, the main() function becomes a thread and the
   *   RTOS is active.
   */
  halInit();
  chSysInit();

  /*
   * Serial ports (simulated) initialization.
   */
  sdStart(&SD1, NULL);
  sdStart(&SD2, NULL);

  /*
   * Shell manager initialization.
   */
  shellInit();
  chEvtRegister(&shell_terminated, &tel, 0);

  /*
   * Console thread started.
   */
  cdtp = chThdCreateFromHeap(NULL, CONSOLE_WA_SIZE, "console",
                             NORMALPRIO + 1, console_thread, NULL);

  /*
   * Initializing connection/disconnection events.
   */
  cputs("Shell service started on SD1, SD2");
  cputs("  - Listening for connections on SD1");
  chEvtRegister(chnGetEventSource(&SD1), &sd1fel, 1);
  cputs("  - Listening for connections on SD2");
  chEvtRegister(chnGetEventSource(&SD2), &sd2fel, 2);

  /*
   * Events servicing loop.
   */
  while (!chThdShouldTerminateX())
    chEvtDispatch(fhandlers, chEvtWaitOne(ALL_EVENTS));

  /*
   * Clean simulator exit.
   */
  chEvtUnregister(chnGetEventSource(&SD1), &sd1fel);
  chEvtUnregister(chnGetEventSource(&SD2), &sd2fel);
  return 0;
}
n class="cm"> * @brief Idle thread automatic spawn suppression. * @details When this option is activated the function @p chSysInit() * does not spawn the idle thread. The application @p main() * function becomes the idle thread and must implement an * infinite loop. */ #define CH_CFG_NO_IDLE_THREAD FALSE /** @} */ /*===========================================================================*/ /** * @name Performance options * @{ */ /*===========================================================================*/ /** * @brief OS optimization. * @details If enabled then time efficient rather than space efficient code * is used when two possible implementations exist. * * @note This is not related to the compiler optimization options. * @note The default is @p TRUE. */ #define CH_CFG_OPTIMIZE_SPEED TRUE /** @} */ /*===========================================================================*/ /** * @name Subsystem options * @{ */ /*===========================================================================*/ /** * @brief Time Measurement APIs. * @details If enabled then the time measurement APIs are included in * the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_TM TRUE /** * @brief Threads registry APIs. * @details If enabled then the registry APIs are included in the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_REGISTRY TRUE /** * @brief Threads synchronization APIs. * @details If enabled then the @p chThdWait() function is included in * the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_WAITEXIT TRUE /** * @brief Semaphores APIs. * @details If enabled then the Semaphores APIs are included in the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_SEMAPHORES TRUE /** * @brief Semaphores queuing mode. * @details If enabled then the threads are enqueued on semaphores by * priority rather than in FIFO order. * * @note The default is @p FALSE. Enable this if you have special * requirements. * @note Requires @p CH_CFG_USE_SEMAPHORES. */ #define CH_CFG_USE_SEMAPHORES_PRIORITY FALSE /** * @brief Mutexes APIs. * @details If enabled then the mutexes APIs are included in the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_MUTEXES TRUE /** * @brief Enables recursive behavior on mutexes. * @note Recursive mutexes are heavier and have an increased * memory footprint. * * @note The default is @p FALSE. * @note Requires @p CH_CFG_USE_MUTEXES. */ #define CH_CFG_USE_MUTEXES_RECURSIVE FALSE /** * @brief Conditional Variables APIs. * @details If enabled then the conditional variables APIs are included * in the kernel. * * @note The default is @p TRUE. * @note Requires @p CH_CFG_USE_MUTEXES. */ #define CH_CFG_USE_CONDVARS TRUE /** * @brief Conditional Variables APIs with timeout. * @details If enabled then the conditional variables APIs with timeout * specification are included in the kernel. * * @note The default is @p TRUE. * @note Requires @p CH_CFG_USE_CONDVARS. */ #define CH_CFG_USE_CONDVARS_TIMEOUT TRUE /** * @brief Events Flags APIs. * @details If enabled then the event flags APIs are included in the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_EVENTS TRUE /** * @brief Events Flags APIs with timeout. * @details If enabled then the events APIs with timeout specification * are included in the kernel. * * @note The default is @p TRUE. * @note Requires @p CH_CFG_USE_EVENTS. */ #define CH_CFG_USE_EVENTS_TIMEOUT TRUE /** * @brief Synchronous Messages APIs. * @details If enabled then the synchronous messages APIs are included * in the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_MESSAGES TRUE /** * @brief Synchronous Messages queuing mode. * @details If enabled then messages are served by priority rather than in * FIFO order. * * @note The default is @p FALSE. Enable this if you have special * requirements. * @note Requires @p CH_CFG_USE_MESSAGES. */ #define CH_CFG_USE_MESSAGES_PRIORITY FALSE /** * @brief Mailboxes APIs. * @details If enabled then the asynchronous messages (mailboxes) APIs are * included in the kernel. * * @note The default is @p TRUE. * @note Requires @p CH_CFG_USE_SEMAPHORES. */ #define CH_CFG_USE_MAILBOXES TRUE /** * @brief Core Memory Manager APIs. * @details If enabled then the core memory manager APIs are included * in the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_MEMCORE TRUE /** * @brief Heap Allocator APIs. * @details If enabled then the memory heap allocator APIs are included * in the kernel. * * @note The default is @p TRUE. * @note Requires @p CH_CFG_USE_MEMCORE and either @p CH_CFG_USE_MUTEXES or * @p CH_CFG_USE_SEMAPHORES. * @note Mutexes are recommended. */ #define CH_CFG_USE_HEAP TRUE /** * @brief Memory Pools Allocator APIs. * @details If enabled then the memory pools allocator APIs are included * in the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_MEMPOOLS TRUE /** * @brief Objects FIFOs APIs. * @details If enabled then the objects FIFOs APIs are included * in the kernel. * * @note The default is @p TRUE. */ #define CH_CFG_USE_OBJ_FIFOS TRUE /** * @brief Dynamic Threads APIs. * @details If enabled then the dynamic threads creation APIs are included * in the kernel. * * @note The default is @p TRUE. * @note Requires @p CH_CFG_USE_WAITEXIT. * @note Requires @p CH_CFG_USE_HEAP and/or @p CH_CFG_USE_MEMPOOLS. */ #define CH_CFG_USE_DYNAMIC TRUE /** @} */ /*===========================================================================*/ /** * @name Objects factory options * @{ */ /*===========================================================================*/ /** * @brief Objects Factory APIs. * @details If enabled then the objects factory APIs are included in the * kernel. * * @note The default is @p FALSE. */ #define CH_CFG_USE_FACTORY TRUE /** * @brief Maximum length for object names. * @details If the specified length is zero then the name is stored by * pointer but this could have unintended side effects. */ #define CH_CFG_FACTORY_MAX_NAMES_LENGTH 8 /** * @brief Enables the registry of generic objects. */ #define CH_CFG_FACTORY_OBJECTS_REGISTRY TRUE /** * @brief Enables factory for generic buffers. */ #define CH_CFG_FACTORY_GENERIC_BUFFERS TRUE /** * @brief Enables factory for semaphores. */ #define CH_CFG_FACTORY_SEMAPHORES TRUE /** * @brief Enables factory for mailboxes. */ #define CH_CFG_FACTORY_MAILBOXES TRUE /** * @brief Enables factory for objects FIFOs. */ #define CH_CFG_FACTORY_OBJ_FIFOS TRUE /** @} */ /*===========================================================================*/ /** * @name Debug options * @{ */ /*===========================================================================*/ /** * @brief Debug option, kernel statistics. * * @note The default is @p FALSE. */ #define CH_DBG_STATISTICS FALSE /** * @brief Debug option, system state check. * @details If enabled the correct call protocol for system APIs is checked * at runtime. * * @note The default is @p FALSE. */ #define CH_DBG_SYSTEM_STATE_CHECK TRUE /** * @brief Debug option, parameters checks. * @details If enabled then the checks on the API functions input * parameters are activated. * * @note The default is @p FALSE. */ #define CH_DBG_ENABLE_CHECKS TRUE /** * @brief Debug option, consistency checks. * @details If enabled then all the assertions in the kernel code are * activated. This includes consistency checks inside the kernel, * runtime anomalies and port-defined checks. * * @note The default is @p FALSE. */ #define CH_DBG_ENABLE_ASSERTS TRUE /** * @brief Debug option, trace buffer. * @details If enabled then the trace buffer is activated. * * @note The default is @p CH_DBG_TRACE_MASK_DISABLED. */ #define CH_DBG_TRACE_MASK CH_DBG_TRACE_MASK_ALL /** * @brief Trace buffer entries. * @note The trace buffer is only allocated if @p CH_DBG_TRACE_MASK is * different from @p CH_DBG_TRACE_MASK_DISABLED. */ #define CH_DBG_TRACE_BUFFER_SIZE 128 /** * @brief Debug option, stack checks. * @details If enabled then a runtime stack check is performed. * * @note The default is @p FALSE. * @note The stack check is performed in a architecture/port dependent way. * It may not be implemented or some ports. * @note The default failure mode is to halt the system with the global * @p panic_msg variable set to @p NULL. */ #define CH_DBG_ENABLE_STACK_CHECK TRUE /** * @brief Debug option, stacks initialization. * @details If enabled then the threads working area is filled with a byte * value when a thread is created. This can be useful for the * runtime measurement of the used stack. * * @note The default is @p FALSE. */ #define CH_DBG_FILL_THREADS TRUE /** * @brief Debug option, threads profiling. * @details If enabled then a field is added to the @p thread_t structure that * counts the system ticks occurred while executing the thread. * * @note The default is @p FALSE. * @note This debug option is not currently compatible with the * tickless mode. */ #define CH_DBG_THREADS_PROFILING FALSE /** @} */ /*===========================================================================*/ /** * @name Kernel hooks * @{ */ /*===========================================================================*/ /** * @brief System structure extension. * @details User fields added to the end of the @p ch_system_t structure. */ #define CH_CFG_SYSTEM_EXTRA_FIELDS \ /* Add threads custom fields here.*/ /** * @brief System initialization hook. * @details User initialization code added to the @p chSysInit() function * just before interrupts are enabled globally. */ #define CH_CFG_SYSTEM_INIT_HOOK(tp) { \ /* Add threads initialization code here.*/ \ } /** * @brief Threads descriptor structure extension. * @details User fields added to the end of the @p thread_t structure. */ #define CH_CFG_THREAD_EXTRA_FIELDS \ /* Add threads custom fields here.*/ /** * @brief Threads initialization hook. * @details User initialization code added to the @p _thread_init() function. * * @note It is invoked from within @p _thread_init() and implicitly from all * the threads creation APIs. */ #define CH_CFG_THREAD_INIT_HOOK(tp) { \ /* Add threads initialization code here.*/ \ } /** * @brief Threads finalization hook. * @details User finalization code added to the @p chThdExit() API. */ #define CH_CFG_THREAD_EXIT_HOOK(tp) { \ /* Add threads finalization code here.*/ \ } /** * @brief Context switch hook. * @details This hook is invoked just before switching between threads. */ #define CH_CFG_CONTEXT_SWITCH_HOOK(ntp, otp) { \ /* Context switch code here.*/ \ } /** * @brief ISR enter hook. */ #define CH_CFG_IRQ_PROLOGUE_HOOK() { \ /* IRQ prologue code here.*/ \ } /** * @brief ISR exit hook. */ #define CH_CFG_IRQ_EPILOGUE_HOOK() { \ /* IRQ epilogue code here.*/ \ } /** * @brief Idle thread enter hook. * @note This hook is invoked within a critical zone, no OS functions * should be invoked from here. * @note This macro can be used to activate a power saving mode. */ #define CH_CFG_IDLE_ENTER_HOOK() { \ /* Idle-enter code here.*/ \ } /** * @brief Idle thread leave hook. * @note This hook is invoked within a critical zone, no OS functions * should be invoked from here. * @note This macro can be used to deactivate a power saving mode. */ #define CH_CFG_IDLE_LEAVE_HOOK() { \ /* Idle-leave code here.*/ \ } /** * @brief Idle Loop hook. * @details This hook is continuously invoked by the idle thread loop. */ #define CH_CFG_IDLE_LOOP_HOOK() { \ /* Idle loop code here.*/ \ } /** * @brief System tick event hook. * @details This hook is invoked in the system tick handler immediately * after processing the virtual timers queue. */ #define CH_CFG_SYSTEM_TICK_HOOK() { \ /* System tick event code here.*/ \ } /** * @brief System halt hook. * @details This hook is invoked in case to a system halting error before * the system is halted. */ #define CH_CFG_SYSTEM_HALT_HOOK(reason) { \ /* System halt code here.*/ \ } /** * @brief Trace hook. * @details This hook is invoked each time a new record is written in the * trace buffer. */ #define CH_CFG_TRACE_HOOK(tep) { \ /* Trace code here.*/ \ } /** @} */ /*===========================================================================*/ /* Port-specific settings (override port settings defaulted in chcore.h). */ /*===========================================================================*/ #endif /* CHCONF_H */ /** @} */