| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454 | #include "log.h"#include "rtc.h"#include "ringfs.h"#include "spi_flash.h"#include "FreeRTOS.h"#include "task.h"#include "semphr.h"#include "event_groups.h"#include "rtc.h"#include "settings_api.h"#include "digital_input.h"#include "log_ai.h"#include "log_dio.h"#include "ringfs_api.h"#include <string.h>#include <stdio.h>#include <inttypes.h>#undef DBG#define DBG if(0)static bool archive_state = true;static bool log_state = true;static bool log_init_f = false;static bool archive_init_f = false;struct ringfs fs_log;SemaphoreHandle_t log_mutex;xQueueHandle log_queue;//EventGroupHandle_t archive_event;uint16_t log_entries_capacity;uint16_t archive_entries_capacity;void archive_task(void *params);void log_task(void *params);//static struct ringfs_flash_partition ringfs_flash_log = {	.sector_offset = LOG_FLASH_SECTOR_OFFSET,	.sector_erase = op_sector_erase,	.program = op_program,	.read = op_read,};//void log_init(bool format) {	DBG printf("[LOG] Init...\r\n");        // ---------------------------------------------------------------------- //    // Журнал        	ringfs_flash_log.sector_size = spi_flash_desc.sector_size;	ringfs_flash_log.sector_count = LOG_FLASH_SECTOR_COUNT;	ringfs_init(&fs_log, &ringfs_flash_log, LOG_ENTRY_VERSION, sizeof(log_entry_t));    	if (format || ringfs_scan(&fs_log) != 0) {		DBG printf("FAT1 false\r\n");		ringfs_format(&fs_log);	}	DBG printf("FAT1 true\r\n");        #if defined (MDIO_88)        log_dio_archive_init();#endif    #if defined (MAI_12)    log_ai_archive_init();#endif        // ---------------------------------------------------------------------- //	log_mutex = xSemaphoreCreateMutex();    log_entries_capacity = ringfs_capacity(&fs_log);    #if defined (MDIO_88) || (MAI_12)         archive_entries_capacity = ringfs_capacity(&fs_ch_arch[0]);        // Event    archive_event = xEventGroupCreate();	xTaskCreate(archive_task, "archive_task", 2*configMINIMAL_STACK_SIZE, NULL, tskIDLE_PRIORITY, NULL);#endif        log_queue = xQueueCreate(10, sizeof(log_entry_t));    xTaskCreate(log_task, "log_task", 2*configMINIMAL_STACK_SIZE, NULL, tskIDLE_PRIORITY, NULL);        log_init_f = true;        archive_init_f = true;    // Таймер для ведения архива с разным периодом по разным каналам    log_init_archive_tim();  }// Настройка таймера на частоту 10 Гцvoid log_init_archive_tim(void){    printf("Init log timer...\r\n");        crm_clocks_freq_type crm_clocks_freq_struct = {0};        crm_periph_clock_enable(CRM_TMR14_PERIPH_CLOCK, TRUE);    crm_clocks_freq_get(&crm_clocks_freq_struct);    tmr_base_init(TMR14, 999, (crm_clocks_freq_struct.ahb_freq / 10000) - 1);    tmr_cnt_dir_set(TMR14, TMR_COUNT_UP);            tmr_flag_clear(TMR14, TMR_OVF_FLAG);    nvic_priority_group_config(NVIC_PRIORITY_GROUP_4);    nvic_irq_enable(TMR8_TRG_HALL_TMR14_IRQn, 5, 0);           tmr_counter_enable(TMR14, TRUE);        tmr_interrupt_enable(TMR14, TMR_OVF_INT, TRUE);}//void TMR8_TRG_HALL_TMR14_IRQHandler(void){    if (tmr_flag_get(TMR14, TMR_OVF_FLAG) != RESET)    {        tmr_flag_clear(TMR14, TMR_OVF_FLAG);                if (archive_state)         {            log_check_archive_cnt();            //printf("TMR_14 irq\r\n");        }    }}//int log_fetch(void *entry, entry_type_t entry_type, uint8_t ch, uint32_t timeout) {    int ret;        ret = xSemaphoreTake(log_mutex, (TickType_t)timeout);        if (ret == pdFALSE)        return ret;    if (entry_type == LOG_ENTRY)        ret = ringfs_fetch(&fs_log, entry);#if defined (MDIO_88) || (MAI_12)         else if (entry_type == ARCHIVE_ENTRY)        ret = ringfs_fetch(&fs_ch_arch[ch], entry);#endif        else ret = -1;    xSemaphoreGive(log_mutex);    return ret;   }//int log_discard(void *entry, entry_type_t entry_type, uint8_t ch, uint32_t timeout){    int ret;          ret = xSemaphoreTake(log_mutex, (TickType_t)timeout);        if (ret == pdFALSE)        return ret;    if (entry_type == LOG_ENTRY)        ret = ringfs_discard(&fs_log);#if defined (MDIO_88) || (MAI_12)         else if (entry_type == ARCHIVE_ENTRY)        ret = ringfs_discard(&fs_ch_arch[ch]);#endif        else ret = -1;        xSemaphoreGive(log_mutex);    return ret; }//int log_append(void *entry, entry_type_t entry_type, uint8_t ch){    int ret;    TM_RTC_t time;    common_entry_t *entry_ptr = entry;    log_entry_t *log_etnry_ptr;    archive_entry_t *archive_etnry_ptr;        ret = xSemaphoreTake(log_mutex, portMAX_DELAY);        if (ret == pdFALSE)        return ret;      if (entry_ptr->timestamp == 0)        entry_ptr->timestamp = rtc_get_ms();        if (entry_type == LOG_ENTRY)     {        log_etnry_ptr = (log_entry_t*)entry;        log_etnry_ptr->crc = crc_8(entry, sizeof(log_entry_t) - 1);        ret = ringfs_append(&fs_log, entry);    }#if defined (MDIO_88) || (MAI_12)         else if (entry_type == ARCHIVE_ENTRY)     {        archive_etnry_ptr = (archive_entry_t*)entry;        archive_etnry_ptr->crc = crc_8(entry, sizeof(archive_entry_t) - 1);        ret = ringfs_append(&fs_ch_arch[ch], entry);    }#endif        else ret = -1;        xSemaphoreGive(log_mutex);    return ret;    }//uint16_t log_capacity(void){    return ringfs_count_exact(&fs_log);}//uint16_t log_arch_capacity(uint8_t ch){#if defined (MDIO_88) || (MAI_12)       return ringfs_count_exact(&fs_ch_arch[ch]);#endif    }// -------------------------------------------------------------------------- //// miscuint8_t crc_8(uint8_t *data, int length){    uint8_t crc = 0x00;    uint8_t extract;    uint8_t sum;        for (int i = 0; i < length; i++) {        extract = *data;        for (uint8_t tmp = 8; tmp; tmp--) {            sum = (crc ^ extract) & 0x01;            crc >>= 1;            if (sum)                crc ^= 0x8C;            extract >>= 1;        }        data++;    }    return crc;}// -------------------------------------------------------------------------- //// Tests// val - 0 - журнал// val - 1 - архив// ch - номер канала архиваvoid log_info(uint8_t val, uint8_t ch){    if (val > 1)        return;#if defined (MDIO_88) || (MAI_12)       struct ringfs *fs = val == 0 ? &fs_log : &fs_ch_arch[ch];#else    struct ringfs *fs = &fs_log;#endif            int capacity_flash = 0;    int count_flash = 0;    int count_estimate = 0;        capacity_flash = ringfs_capacity(fs);    count_flash = ringfs_count_exact(fs);    count_estimate = ringfs_count_estimate(fs);        if (val == 0)    {        DBG printf("Log partition capacity: %u\r\n", capacity_flash);        DBG printf("Count log entry: %u\r\n", count_flash);        DBG printf("Estimate count: %u\r\n", count_estimate);    }    else     {        DBG printf("Archive partition capacity: %u\r\n", capacity_flash);        DBG printf("Count archive entry: %u\r\n", count_flash);        DBG printf("Estimate count: %u\r\n", count_estimate);    }}// val - 0 - журнал// val - 1 - архив// ch - номер канала архиваvoid log_format(uint8_t val, uint8_t ch){    if (val == 0) {        DBG printf("Formating log partition...\r\n");        ringfs_format(&fs_log);    } #if defined (MDIO_88) || (MAI_12)           else if (val == 1) {        DBG printf("Formating archive partition...\r\n");        ringfs_format(&fs_ch_arch[ch]);    }#endif    }// Добавить n записей журналаint log_add_random_entry(uint8_t val, uint32_t cnt_entry, uint8_t ch){    int ret;    log_entry_t log_entry = {0};    archive_entry_t archive_entry = {0};        static uint8_t log_index = 0;    static uint32_t archive_index = 0;        if (val == 0)    {        DBG printf("Appending %u archive entries\r\n", cnt_entry);                for (uint32_t i = 0; i < cnt_entry; i++)        {            log_entry.code_type = log_index;            log_entry.code_state = log_index;            log_entry.channel_number = log_index;            log_entry.value = (float)log_index++;                        ret = log_append((void*)&log_entry, LOG_ENTRY, 0);        }        DBG printf("Result: %u\r\n", ret);    }          if (val == 1)    {        DBG printf("Appending %u archive entries\r\n", cnt_entry);        for (uint32_t i = 0; i < cnt_entry; i++)        {            archive_entry.input_value = archive_index++;            ret = log_append((void*)&archive_entry, ARCHIVE_ENTRY, ch);        }        DBG printf("Result: %u\r\n", ret);    }    return ret;}//int log_add_entry(log_event_type_t type, log_event_state_t state,                   uint8_t channel_number, float value){    log_entry_t entry;        if (!log_init_f)        return -1;        entry.timestamp = rtc_get_ms();    entry.code_type = (uint8_t)type;    entry.code_state = (uint8_t)state;    entry.channel_number = channel_number;    entry.value = value;        xQueueSend(log_queue, &entry, 0);        return 0;}//void test_fetch(void){    archive_entry_t entry = {0};    log_fetch(&entry, ARCHIVE_ENTRY, 0, portMAX_DELAY);    //printf("\r\n%" PRId64 " [ms]\r\n", rtc_get_ms());    printf("[entry] timestamp = % " PRId64 ", value = %u, crc = %u\r\n", entry.timestamp, entry.input_value, entry.crc);}//void log_archive_state(bool state){    archive_state = state;}//void log_log_state(bool state){    log_state = state;}void archive_task(void *params){    int ret = 0;    uint32_t event = 0;    archive_entry_t entry = {0};    EventBits_t bits;    uint8_t channel_number = log_get_arch_channel_number();            for (;;)    {        log_archive_task_device();    }}//void log_task(void *params){    int ret;    log_entry_t entry;          for (;;)    {        if (xQueueReceive(log_queue, &entry, portMAX_DELAY) == pdTRUE)        {            DBG printf("Try append LOG entry... ");            ret = log_append((void*)&entry, LOG_ENTRY, 0);            DBG printf("Result: %i\r\n", ret);        }    }}// Вызывается в прерывании таймера с частотой 10 Гц // TODOvoid log_check_archive_cnt(void){#if defined (MDIO_88) || (MAI_12)       BaseType_t xHigherPriorityTaskWoken = pdFALSE;    uint8_t channel_number = log_get_arch_channel_number();    for (uint8_t i = 0; i < channel_number; i++)    {        if (archive_cnt[i]++ >= 10*settings.period_archive[i])        {            archive_cnt[i] = 0;            if (log_is_channel_on(i))             {                DBG printf("Send event: %u\r\n", 1 << i);                xEventGroupSetBitsFromISR(archive_event, 1 << i, &xHigherPriorityTaskWoken);            }        }    }#endif    }
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