206 lines
5.9 KiB
C
206 lines
5.9 KiB
C
#include "c_stdio.h"
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#include "platform.h"
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#include "spiffs.h"
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//#undef NODE_DBG
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//#define NODE_DBG c_printf
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spiffs fs;
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#define LOG_PAGE_SIZE 256
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static u8_t spiffs_work_buf[LOG_PAGE_SIZE*2];
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static u8_t spiffs_fds[32*4];
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static u8_t spiffs_cache[(LOG_PAGE_SIZE+32)*4];
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static s32_t my_spiffs_read(u32_t addr, u32_t size, u8_t *dst) {
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platform_flash_read(dst, addr, size);
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return SPIFFS_OK;
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}
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static s32_t my_spiffs_write(u32_t addr, u32_t size, u8_t *src) {
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platform_flash_write(src, addr, size);
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return SPIFFS_OK;
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}
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static s32_t my_spiffs_erase(u32_t addr, u32_t size) {
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u32_t sect_first = platform_flash_get_sector_of_address(addr);
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u32_t sect_last = sect_first;
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while( sect_first <= sect_last )
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if( platform_flash_erase_sector( sect_first ++ ) == PLATFORM_ERR )
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return SPIFFS_ERR_INTERNAL;
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return SPIFFS_OK;
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}
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void myspiffs_check_callback(spiffs_check_type type, spiffs_check_report report, u32_t arg1, u32_t arg2){
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// if(SPIFFS_CHECK_PROGRESS == report) return;
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// NODE_ERR("type: %d, report: %d, arg1: %d, arg2: %d\n", type, report, arg1, arg2);
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}
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/*******************
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The W25Q32BV array is organized into 16,384 programmable pages of 256-bytes each. Up to 256 bytes can be programmed at a time.
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Pages can be erased in groups of 16 (4KB sector erase), groups of 128 (32KB block erase), groups of 256 (64KB block erase) or
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the entire chip (chip erase). The W25Q32BV has 1,024 erasable sectors and 64 erasable blocks respectively.
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The small 4KB sectors allow for greater flexibility in applications that require data and parameter storage.
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********************/
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void myspiffs_mount() {
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spiffs_config cfg;
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cfg.phys_addr = ( u32_t )platform_flash_get_first_free_block_address( NULL );
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cfg.phys_addr += 0x3000;
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cfg.phys_addr &= 0xFFFFC000; // align to 4 sector.
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cfg.phys_size = INTERNAL_FLASH_SIZE - ( ( u32_t )cfg.phys_addr - INTERNAL_FLASH_START_ADDRESS );
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cfg.phys_erase_block = INTERNAL_FLASH_SECTOR_SIZE; // according to datasheet
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cfg.log_block_size = INTERNAL_FLASH_SECTOR_SIZE; // let us not complicate things
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cfg.log_page_size = LOG_PAGE_SIZE; // as we said
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NODE_DBG("fs.start:%x,max:%x\n",cfg.phys_addr,cfg.phys_size);
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cfg.hal_read_f = my_spiffs_read;
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cfg.hal_write_f = my_spiffs_write;
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cfg.hal_erase_f = my_spiffs_erase;
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int res = SPIFFS_mount(&fs,
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&cfg,
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spiffs_work_buf,
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spiffs_fds,
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sizeof(spiffs_fds),
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spiffs_cache,
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sizeof(spiffs_cache),
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// myspiffs_check_callback);
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0);
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NODE_DBG("mount res: %i\n", res);
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}
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void myspiffs_unmount() {
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SPIFFS_unmount(&fs);
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}
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// FS formatting function
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// Returns 1 if OK, 0 for error
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int myspiffs_format( void )
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{
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#if 0
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SPIFFS_unmount(&fs);
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if(0 == SPIFFS_format(&fs))
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{
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return 1;
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}
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else
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{
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return 0;
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}
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#else
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u32_t sect_first, sect_last;
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sect_first = ( u32_t )platform_flash_get_first_free_block_address( NULL );
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sect_first += 0x3000;
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sect_first &= 0xFFFFC000; // align to 4 sector.
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sect_first = platform_flash_get_sector_of_address(sect_first);
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sect_last = INTERNAL_FLASH_SIZE + INTERNAL_FLASH_START_ADDRESS - 4;
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sect_last = platform_flash_get_sector_of_address(sect_last);
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NODE_DBG("sect_first: %x, sect_last: %x\n", sect_first, sect_last);
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while( sect_first <= sect_last )
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if( platform_flash_erase_sector( sect_first ++ ) == PLATFORM_ERR )
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return 0;
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myspiffs_mount();
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return 1;
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#endif
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}
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int myspiffs_check( void )
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{
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// ets_wdt_disable();
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// int res = (int)SPIFFS_check(&fs);
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// ets_wdt_enable();
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// return res;
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}
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int myspiffs_open(const char *name, int flags){
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return (int)SPIFFS_open(&fs, (char *)name, (spiffs_flags)flags, 0);
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}
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int myspiffs_close( int fd ){
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SPIFFS_close(&fs, (spiffs_file)fd);
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return 0;
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}
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size_t myspiffs_write( int fd, const void* ptr, size_t len ){
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#if 0
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if(fd==c_stdout || fd==c_stderr){
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uart0_tx_buffer((u8_t*)ptr, len);
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return len;
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}
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#endif
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int res = SPIFFS_write(&fs, (spiffs_file)fd, (void *)ptr, (size_t)len);
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if (res < 0) {
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NODE_DBG("write errno %i\n", SPIFFS_errno(&fs));
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return 0;
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}
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return res;
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}
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size_t myspiffs_read( int fd, void* ptr, size_t len){
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int res = SPIFFS_read(&fs, (spiffs_file)fd, ptr, (size_t)len);
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if (res < 0) {
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NODE_DBG("read errno %i\n", SPIFFS_errno(&fs));
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return 0;
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}
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return res;
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}
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int myspiffs_lseek( int fd, int off, int whence ){
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return SPIFFS_lseek(&fs, (spiffs_file)fd, off, whence);
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}
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int myspiffs_eof( int fd ){
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return SPIFFS_eof(&fs, (spiffs_file)fd);
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}
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int myspiffs_tell( int fd ){
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return SPIFFS_tell(&fs, (spiffs_file)fd);
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}
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int myspiffs_getc( int fd ){
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unsigned char c = 0xFF;
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int res;
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if(!myspiffs_eof(fd)){
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res = SPIFFS_read(&fs, (spiffs_file)fd, &c, 1);
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if (res != 1) {
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NODE_DBG("getc errno %i\n", SPIFFS_errno(&fs));
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return (int)EOF;
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} else {
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return (int)c;
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}
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}
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return (int)EOF;
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}
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int myspiffs_ungetc( int c, int fd ){
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return SPIFFS_lseek(&fs, (spiffs_file)fd, -1, SEEK_CUR);
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}
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int myspiffs_flush( int fd ){
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return SPIFFS_fflush(&fs, (spiffs_file)fd);
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}
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int myspiffs_error( int fd ){
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return SPIFFS_errno(&fs);
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}
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void myspiffs_clearerr( int fd ){
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SPIFFS_clearerr(&fs);
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}
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int myspiffs_rename( const char *old, const char *newname ){
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return SPIFFS_rename(&fs, (char *)old, (char *)newname);
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}
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size_t myspiffs_size( int fd ){
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return SPIFFS_size(&fs, (spiffs_file)fd);
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}
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#if 0
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void test_spiffs() {
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char buf[12];
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// Surely, I've mounted spiffs before entering here
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spiffs_file fd = SPIFFS_open(&fs, "my_file", SPIFFS_CREAT | SPIFFS_TRUNC | SPIFFS_RDWR, 0);
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if (SPIFFS_write(&fs, fd, (u8_t *)"Hello world", 12) < 0) NODE_DBG("errno %i\n", SPIFFS_errno(&fs));
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SPIFFS_close(&fs, fd);
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fd = SPIFFS_open(&fs, "my_file", SPIFFS_RDWR, 0);
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if (SPIFFS_read(&fs, fd, (u8_t *)buf, 12) < 0) NODE_DBG("errno %i\n", SPIFFS_errno(&fs));
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SPIFFS_close(&fs, fd);
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NODE_DBG("--> %s <--\n", buf);
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}
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#endif
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