Mercurial > yaffs-ecoscentric
view packages/fs/yaffs/current/tests/yaffs5.c @ 338:138c9338c4cc
Update for changes to NAND interface
| author | Ross Younger <wry@ecoscentric.com> |
|---|---|
| date | Thu, 12 Nov 2009 13:42:03 +0000 |
| parents | b254764fbeac |
| children | 73b6efce8c58 |
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//========================================================================== // // yaffs5.c // // Test FAT filesystem // //========================================================================== // ####ECOSGPLCOPYRIGHTBEGIN#### // ------------------------------------------- // This file is part of eCos, the Embedded Configurable Operating System. // Copyright (C) 1998, 1999, 2000, 2001, 2002, 2004, 2006, 2007 Free Software Foundation, Inc. // Copyright (C) 2004, 2006, 2007 eCosCentric Limited // // eCos is free software; you can redistribute it and/or modify it under // the terms of the GNU General Public License as published by the Free // Software Foundation; either version 2 or (at your option) any later // version. // // eCos is distributed in the hope that it will be useful, but WITHOUT // ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or // FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License // for more details. // // You should have received a copy of the GNU General Public License // along with eCos; if not, write to the Free Software Foundation, Inc., // 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. // // As a special exception, if other files instantiate templates or use // macros or inline functions from this file, or you compile this file // and link it with other works to produce a work based on this file, // this file does not by itself cause the resulting work to be covered by // the GNU General Public License. However the source code for this file // must still be made available in accordance with section (3) of the GNU // General Public License v2. // // This exception does not invalidate any other reasons why a work based // on this file might be covered by the GNU General Public License. // ------------------------------------------- // ####ECOSGPLCOPYRIGHTEND#### //========================================================================== //#####DESCRIPTIONBEGIN#### // // Author(s): nickg // Contributors: nickg // Date: 2007-03-28 // Purpose: Test FAT system // Description: This test gets some performance figures from the // FAT filesystem. // //####DESCRIPTIONEND#### // //========================================================================== #include <pkgconf/hal.h> #include <pkgconf/kernel.h> #include <pkgconf/io_fileio.h> #include CYGDAT_DEVS_DISK_CFG // testing config defines #include <cyg/kernel/ktypes.h> // base kernel types #include <cyg/infra/cyg_trac.h> // tracing macros #include <cyg/infra/cyg_ass.h> // assertion macros #include <unistd.h> #include <fcntl.h> #include <sys/stat.h> #include <errno.h> #include <string.h> #include <dirent.h> #include <stdlib.h> #include <cyg/fileio/fileio.h> #include <cyg/infra/testcase.h> #include <cyg/infra/diag.h> // HAL polled output //========================================================================== // Config options #define TEST_DEVICE CYGDAT_DEVS_DISK_TEST_DEVICE #define TEST_MOUNTPOINT CYGDAT_DEVS_DISK_TEST_MOUNTPOINT #define TEST_DIRECTORY CYGDAT_DEVS_DISK_TEST_DIRECTORY #define TEST_FSTYPE "yaffs" #ifdef CYGDAT_DEVS_DISK_TEST_MOUNTPOINT2 #define TEST_DEVICE2 CYGDAT_DEVS_DISK_TEST_DEVICE2 #define TEST_MOUNTPOINT2 CYGDAT_DEVS_DISK_TEST_MOUNTPOINT2 #define TEST_DIRECTORY2 CYGDAT_DEVS_DISK_TEST_DIRECTORY2 #define TEST_FSTYPE2 "yaffs" #endif //========================================================================== #define SHOW_RESULT( _fn, _res ) \ { \ diag_printf("<FAIL>: " #_fn "() returned %ld %s\n", (long)_res, _res<0?strerror(errno):""); \ } //========================================================================== typedef struct { cyg_int64 ticks; cyg_int32 halticks; } timestamp; typedef struct { timestamp start; timestamp end; cyg_int64 interval; // In HAL ticks cyg_int64 us_interval; // Interval in microseconds } timing; static cyg_int64 ticks_overhead = 0; static cyg_int32 us_per_haltick = 0; static cyg_int32 halticks_per_us = 0; static cyg_int64 rtc_resolution[] = CYGNUM_KERNEL_COUNTERS_RTC_RESOLUTION; static cyg_int64 rtc_period = CYGNUM_KERNEL_COUNTERS_RTC_PERIOD; static cyg_int32 ticks_per_second; //========================================================================== static char date_string[] = __DATE__; static char time_string[] = __TIME__; cyg_uint32 timehash; //========================================================================== static void wait_for_tick( void ) { cyg_tick_count_t now = cyg_current_time(); while( cyg_current_time() == now ) continue; } static void get_timestamp( timestamp *ts ) { ts->ticks = cyg_current_time(); HAL_CLOCK_READ( (cyg_uint32 *)&ts->halticks ); } static cyg_int64 ticks_to_us( cyg_int64 ticks ) { cyg_int64 us; if( us_per_haltick != 0 ) us = ticks * us_per_haltick; else us = ticks / halticks_per_us; return us; } static void calculate_interval( timing *t ) { t->interval = t->end.halticks - t->start.halticks; t->interval += (t->end.ticks - t->start.ticks) * rtc_period; t->interval -= ticks_overhead; t->us_interval = ticks_to_us( t->interval ); } static void init_timing( void ) { timing t; ticks_per_second = (1000000000ULL*rtc_resolution[1])/rtc_resolution[0]; us_per_haltick = 1000000/(rtc_period * rtc_resolution[1]); halticks_per_us = (rtc_period * rtc_resolution[1])/1000000; wait_for_tick(); get_timestamp( &t.start ); get_timestamp( &t.end ); calculate_interval( &t ); ticks_overhead = t.interval; diag_printf("Timing overhead %lld ticks\n", ticks_overhead ); } //========================================================================== #ifndef CYGPKG_LIBC_STRING char *strcat( char *s1, const char *s2 ) { char *s = s1; while( *s1 ) s1++; while( (*s1++ = *s2++) != 0); return s; } #endif __externC int rename( const char * /* oldpath */, const char * /* newpath */ ) __THROW; //========================================================================== static void listdir( char *name, int statp, int numexpected, int *numgot ) { int err; DIR *dirp; int num=0; diag_printf("<INFO>: reading directory %s\n",name); // diag_printf("<INFO>: opendir(%s)\n",name); dirp = opendir( name ); if( dirp == NULL ) SHOW_RESULT( opendir, -1 ); for(;;) { struct dirent *entry = readdir( dirp ); if( entry == NULL ) break; num++; diag_printf("<INFO>: entry %14s",entry->d_name); if( statp ) { char fullname[PATH_MAX]; struct stat sbuf; if( name[0] ) { strcpy(fullname, name ); if( !(name[0] == '/' && name[1] == 0 ) ) strcat(fullname, "/" ); } else fullname[0] = 0; strcat(fullname, entry->d_name ); err = stat( fullname, &sbuf ); if( err < 0 ) { if( errno == ENOSYS ) diag_printf(" <no status available>"); else SHOW_RESULT( stat, err ); } else { diag_printf(" [mode %08x ino %08x nlink %d size %ld]", sbuf.st_mode,sbuf.st_ino,sbuf.st_nlink,sbuf.st_size); } } diag_printf("\n"); } // diag_printf("<INFO>: closedir(%s)\n",name); err = closedir( dirp ); if( err < 0 ) SHOW_RESULT( stat, err ); if (numexpected >= 0 && num != numexpected) CYG_TEST_FAIL("Wrong number of dir entries\n"); if ( numgot != NULL ) *numgot = num; } //========================================================================== static void createfile( char *name, size_t asize, size_t block_size ) { size_t size = asize; cyg_uint8 *buf; cyg_uint32 *b; int fd; ssize_t wrote; int i; int err; timing opent, writet; diag_printf("\n--------------------------------------------------------------------\n"); diag_printf("<INFO>: create file %s size %ld block_size %ld\n",name, (long)size, (long)block_size); buf = malloc( block_size ); if( buf == NULL ) { SHOW_RESULT( malloc, -1 ); return; } b = (cyg_uint32 *)buf; err = access( name, F_OK ); if( err < 0 && errno != EACCES ) SHOW_RESULT( access, err ); i = 0; while( i < block_size/sizeof(cyg_uint32) ) { b[i] = i; i++; b[i++] = 0; b[i++] = timehash; b[i++] = 0x12345678; } get_timestamp( &opent.start ); fd = open( name, O_WRONLY|O_CREAT ); get_timestamp( &opent.end ); if( fd < 0 ) SHOW_RESULT( open, fd ); get_timestamp( &writet.start ); while( size > 0 ) { ssize_t len = size; if ( len > block_size ) len = block_size; b[1] = asize-size; b[block_size/sizeof(cyg_uint32)-3] = asize-size; wrote = write( fd, buf, len ); if( wrote != len ) SHOW_RESULT( write, wrote ); size -= wrote; } get_timestamp( &writet.end ); free( buf ); err = close( fd ); if( err < 0 ) SHOW_RESULT( close, err ); calculate_interval( &opent ); calculate_interval( &writet ); diag_printf("CreateFile Results: %s size %ld\n", name, (long)asize); diag_printf(" Open %8d.%03d ms\n", (int)(opent.us_interval/1000), (int)(opent.us_interval%1000) ); diag_printf(" Write %8d.%03d ms\n", (int)(writet.us_interval/1000), (int)(writet.us_interval%1000) ); diag_printf(" Data Rate %10lld KiB/s\n", (1000000LL*asize)/1024/writet.us_interval); } //========================================================================== static void checkfile( char *name, size_t block_size ) { cyg_uint8 *buf; cyg_uint32 *b; int fd; ssize_t done; int err; off_t pos = 0; timing opent, readt; diag_printf("\n--------------------------------------------------------------------\n"); diag_printf("<INFO>: check file %s\n",name); buf = malloc( block_size ); if( buf == NULL ) { SHOW_RESULT( malloc, -1 ); return; } b = (cyg_uint32 *)buf; err = access( name, F_OK ); if( err != 0 ) SHOW_RESULT( access, err ); get_timestamp( &opent.start ); fd = open( name, O_RDONLY ); get_timestamp( &opent.end ); if( fd < 0 ) SHOW_RESULT( open, fd ); get_timestamp( &readt.start ); for(;;) { done = read( fd, buf, block_size ); if( done < 0 ) SHOW_RESULT( read, done ); if( done == 0 ) break; // Check that this is the block we wrote if( b[0] != 0 ) diag_printf("b[%d] != %08x\n", 0, 0 ); if( b[1] != pos ) diag_printf("b[%d] != %08x\n", 1, (unsigned)pos ); if( b[2] != timehash ) diag_printf("b[%d] != %08x\n", 2, timehash ); if( b[3] != 0x12345678 ) diag_printf("b[%d] != %08x\n", 3, 0x12345678 ); if( b[(block_size/sizeof(cyg_uint32))-4] != (block_size/sizeof(cyg_uint32)-4) ) diag_printf("b[%lu](%08x) != %08x\n", (long)block_size/sizeof(cyg_uint32)-4, b[(block_size/sizeof(cyg_uint32))-4], (unsigned)(block_size/sizeof(cyg_uint32)-4) ); if( b[block_size/sizeof(cyg_uint32)-3] != pos ) diag_printf("b[%lu] != %08x\n", (long)block_size/sizeof(cyg_uint32)-3, (unsigned)pos ); if( b[block_size/sizeof(cyg_uint32)-2] != timehash ) diag_printf("b[%lu] != %08x\n", (long)block_size/sizeof(cyg_uint32)-2, timehash ); if( b[block_size/sizeof(cyg_uint32)-1] != 0x12345678 ) diag_printf("b[%lu] != %08x\n", (long)block_size/sizeof(cyg_uint32)-1, 0x12345678 ); pos += done; } get_timestamp( &readt.end ); free( buf ); err = close( fd ); if( err < 0 ) SHOW_RESULT( close, err ); calculate_interval( &opent ); calculate_interval( &readt ); diag_printf("CheckFile Results: %s size %ld\n", name, pos); diag_printf(" Open %8d.%03d ms\n", (int)(opent.us_interval/1000), (int)(opent.us_interval%1000) ); diag_printf(" Read %8d.%03d ms\n", (int)(readt.us_interval/1000), (int)(readt.us_interval%1000) ); diag_printf(" Data Rate %10lld KiB/s\n", (1000000LL*pos)/1024/readt.us_interval); } //========================================================================== #define TIME_DATA_MAX 20 static void checkfile1( char *name, size_t block_size ) { cyg_uint8 *buf; cyg_uint32 *b; int fd; ssize_t done; int err; off_t pos = 0; timing totalt; struct { int valid; timing mountt; timing opent; timing seekt; timing readt; timing closet; timing umountt; } time_data[TIME_DATA_MAX]; int td; for( td = 0; td < TIME_DATA_MAX; td++ ) time_data[td].valid = 0; td = 0; diag_printf("\n--------------------------------------------------------------------\n"); diag_printf("<INFO>: check file1 %s\n",name); buf = malloc( block_size ); if( buf == NULL ) { SHOW_RESULT( malloc, -1 ); return; } b = (cyg_uint32 *)buf; get_timestamp( &totalt.start ); for(;;) { get_timestamp( &time_data[td].mountt.start ); err = mount( TEST_DEVICE, TEST_MOUNTPOINT, TEST_FSTYPE ); get_timestamp( &time_data[td].mountt.end ); if( err < 0 ) SHOW_RESULT( mount, err ); get_timestamp( &time_data[td].opent.start ); fd = open( name, O_RDONLY ); get_timestamp( &time_data[td].opent.end ); if( fd < 0 ) SHOW_RESULT( open, fd ); get_timestamp( &time_data[td].seekt.start ); err = lseek( fd, pos, SEEK_SET ); get_timestamp( &time_data[td].seekt.end ); if( err < 0 ) SHOW_RESULT( lseek, err ); get_timestamp( &time_data[td].readt.start ); done = read( fd, buf, block_size ); get_timestamp( &time_data[td].readt.end ); if( done < 0 ) SHOW_RESULT( read, done ); get_timestamp( &time_data[td].closet.start ); err = close( fd ); get_timestamp( &time_data[td].closet.end ); if( err < 0 ) SHOW_RESULT( close, err ); get_timestamp( &time_data[td].umountt.start ); err = umount( TEST_MOUNTPOINT ); get_timestamp( &time_data[td].umountt.end ); if( err < 0 ) SHOW_RESULT( umount, err ); if( done == 0 ) break; // Check that this is the block we wrote if( b[0] != 0 ) diag_printf("b[%d] != %08x\n", 0, 0 ); if( b[1] != pos ) diag_printf("b[%d] != %08x\n", 1, (unsigned)pos ); // if( b[2] != timehash ) // diag_printf("b[%d] != %08x\n", 2, timehash ); if( b[3] != 0x12345678 ) diag_printf("b[%d] != %08x\n", 3, 0x12345678 ); if( b[(block_size/sizeof(cyg_uint32))-4] != (block_size/sizeof(cyg_uint32)-4) ) diag_printf("b[%lu](%08x) != %08x\n", (long)block_size/sizeof(cyg_uint32)-4, b[(block_size/sizeof(cyg_uint32))-4], (unsigned)(block_size/sizeof(cyg_uint32)-4) ); if( b[block_size/sizeof(cyg_uint32)-3] != pos ) diag_printf("b[%lu] != %08x\n", (long)block_size/sizeof(cyg_uint32)-3, (unsigned)pos ); // if( b[block_size/sizeof(cyg_uint32)-2] != timehash ) // diag_printf("b[%d] != %08x\n", block_size/sizeof(cyg_uint32)-2, timehash ); if( b[block_size/sizeof(cyg_uint32)-1] != 0x12345678 ) diag_printf("b[%lu] != %08x\n", (long)block_size/sizeof(cyg_uint32)-1, 0x12345678 ); pos += done; time_data[td].valid = 1; if( td < (TIME_DATA_MAX-1) ) td++; } get_timestamp( &totalt.end ); free( buf ); diag_printf("Block Mount Open Seek Read Close Umount\n"); for( td = 0; td < TIME_DATA_MAX; td++ ) { if( !time_data[td].valid ) continue; calculate_interval( &time_data[td].mountt ); calculate_interval( &time_data[td].opent ); calculate_interval( &time_data[td].seekt ); calculate_interval( &time_data[td].readt ); calculate_interval( &time_data[td].closet ); calculate_interval( &time_data[td].umountt ); diag_printf("%2d:", td); diag_printf(" %8d.%03d", (int)(time_data[td].mountt.us_interval/1000), (int)(time_data[td].mountt.us_interval%1000) ); diag_printf(" %8d.%03d", (int)(time_data[td].opent.us_interval/1000), (int)(time_data[td].opent.us_interval%1000) ); diag_printf(" %8d.%03d", (int)(time_data[td].seekt.us_interval/1000), (int)(time_data[td].seekt.us_interval%1000) ); diag_printf(" %8d.%03d", (int)(time_data[td].readt.us_interval/1000), (int)(time_data[td].readt.us_interval%1000) ); diag_printf(" %8d.%03d", (int)(time_data[td].closet.us_interval/1000), (int)(time_data[td].closet.us_interval%1000) ); diag_printf(" %8d.%03d", (int)(time_data[td].umountt.us_interval/1000), (int)(time_data[td].umountt.us_interval%1000) ); diag_printf("\n"); } calculate_interval( &totalt ); diag_printf("CheckFile1 Results: %s size %ld\n", name, pos); diag_printf(" Total %8d.%03d ms\n", (int)(totalt.us_interval/1000), (int)(totalt.us_interval%1000) ); diag_printf(" Data Rate %10lld KiB/s\n", (1000000LL*pos)/1024/totalt.us_interval); } //========================================================================== void checkcwd( const char *cwd ) { static char cwdbuf[PATH_MAX]; char *ret; ret = getcwd( cwdbuf, sizeof(cwdbuf)); if( ret == NULL ) SHOW_RESULT( getcwd, ret ); if( strcmp( cwdbuf, cwd ) != 0 ) { diag_printf( "cwdbuf %s cwd %s\n",cwdbuf, cwd ); CYG_TEST_FAIL( "Current directory mismatch"); } } //========================================================================== void fs_callback( cyg_int32 event, CYG_ADDRWORD data ) { #if 0 diag_printf("Filesystem %sSAFE\n", event==CYG_FS_CALLBACK_UNSAFE?"UN":""); #endif } //========================================================================== // main void yaffs5_main( CYG_ADDRESS id ) { int err; int existingdirents=-1; int i; timing mountt, umountt; #if defined(CYGSEM_FILEIO_BLOCK_USAGE) struct cyg_fs_block_usage usage; #endif // struct cyg_fs_callback_info callback; CYG_TEST_INIT(); init_timing(); for( i = 0 ; date_string[i] != 0 ; i++ ) timehash = (timehash<<1) ^ date_string[i]; for( i = 0 ; time_string[i] != 0 ; i++ ) timehash = (timehash<<1) ^ time_string[i]; // -------------------------------------------------------------- #if 1 #define DO_UMOUNT get_timestamp( &mountt.start ); err = mount( TEST_DEVICE, TEST_MOUNTPOINT, TEST_FSTYPE ); // err = mount( TEST_DEVICE, TEST_MOUNTPOINT, "yaffs:sync=write" ); // err = mount( TEST_DEVICE, TEST_MOUNTPOINT, "yaffs:sync=close" ); // err = mount( TEST_DEVICE, TEST_MOUNTPOINT, "yaffs:sync=data" ); get_timestamp( &mountt.end ); if( err < 0 ) { SHOW_RESULT( mount, err ); CYG_TEST_FAIL_FINISH("yaffs5"); } #if 0 callback.callback = fs_callback; callback.data = 0; err = cyg_fs_setinfo(TEST_MOUNTPOINT, FS_INFO_CALLBACK, &callback, sizeof(callback)); if( err < 0 ) SHOW_RESULT( cyg_fs_setinfo, err ); #endif calculate_interval( &mountt ); diag_printf(" Mount %8d.%03d ms\n", (int)(mountt.us_interval/1000), (int)(mountt.us_interval%1000) ); err = access( TEST_MOUNTPOINT TEST_DIRECTORY, F_OK ); if( err < 0 && errno != EACCES ) SHOW_RESULT( access, err ); if( err < 0 && errno == EACCES ) { diag_printf("<INFO>: create %s\n", TEST_MOUNTPOINT TEST_DIRECTORY); err = mkdir( TEST_MOUNTPOINT TEST_DIRECTORY, 0 ); if( err < 0 ) SHOW_RESULT( mkdir, err ); } err = chdir( TEST_MOUNTPOINT TEST_DIRECTORY ); if( err < 0 ) SHOW_RESULT( chdir, err ); checkcwd( TEST_MOUNTPOINT TEST_DIRECTORY ); listdir( TEST_MOUNTPOINT TEST_DIRECTORY, true, -1, &existingdirents ); // -------------------------------------------------------------- #if defined(CYGSEM_FILEIO_BLOCK_USAGE) err = cyg_fs_getinfo(TEST_MOUNTPOINT, FS_INFO_BLOCK_USAGE, &usage, sizeof(usage)); if( err < 0 ) SHOW_RESULT( cyg_fs_getinfo, err ); diag_printf("<INFO>: total size: %6lld blocks, %10lld bytes\n", usage.total_blocks, usage.total_blocks * usage.block_size); diag_printf("<INFO>: free size: %6lld blocks, %10lld bytes\n", usage.free_blocks, usage.free_blocks * usage.block_size); diag_printf("<INFO>: block size: %6u bytes\n", usage.block_size); #endif // -------------------------------------------------------------- #endif #if 1 createfile( "yaffs5.0", 1024*1024, 16*1024 ); checkfile( "yaffs5.0",16*1024 ); err = unlink( "yaffs5.0" ); err = cyg_fs_setinfo(TEST_MOUNTPOINT, FS_INFO_SYNC, 0, 0); if (err != 0) SHOW_RESULT(sync, err); #endif #if 1 createfile( "yaffs5.0", 200*1024, 1024 ); checkfile( "yaffs5.0", 1024 ); err = unlink( "yaffs5.0" ); #endif #if 1 createfile( "yaffs5.1", 1024*1024, 1024 ); createfile( "yaffs5.2", 1024*1024, 4*1024 ); err = cyg_fs_setinfo(TEST_MOUNTPOINT, FS_INFO_SYNC, 0, 0); if (err != 0) SHOW_RESULT(sync, err); createfile( "yaffs5.3", 8*1024*1024, 32*1024 ); checkfile( "yaffs5.1", 1024 ); checkfile( "yaffs5.2", 4*1024 ); checkfile( "yaffs5.3", 32*1024 ); diag_printf("\n--------------------------------------------------------------------\n"); listdir( "." , true, existingdirents+3, NULL ); // -------------------------------------------------------------- diag_printf("<INFO>: unlink yaffs5.1\n"); err = unlink( "yaffs5.1" ); if( err < 0 ) SHOW_RESULT( unlink, err ); diag_printf("<INFO>: unlink yaffs5.2\n"); err = unlink( "yaffs5.2" ); if( err < 0 ) SHOW_RESULT( unlink, err ); diag_printf("<INFO>: unlink yaffs5.3\n"); err = unlink( "yaffs5.3" ); if( err < 0 ) SHOW_RESULT( unlink, err ); #endif // -------------------------------------------------------------- #if 1 && defined(DO_UMOUNT) diag_printf("<INFO>: unlink yaffs5.4\n"); err = unlink( "yaffs5.4" ); createfile( "yaffs5.4", 5*1024*1024, 32*1024 ); #endif // -------------------------------------------------------------- #ifdef DO_UMOUNT diag_printf("<INFO>: cd /\n"); err = chdir( "/" ); if( err == 0 ) { checkcwd( "/" ); diag_printf("<INFO>: umount %s\n",TEST_MOUNTPOINT); get_timestamp( &umountt.start ); err = umount( TEST_MOUNTPOINT ); get_timestamp( &umountt.end ); if( err < 0 ) SHOW_RESULT( umount, err ); calculate_interval( &umountt ); diag_printf(" Umount %8d.%03d ms\n", (int)(umountt.us_interval/1000), (int)(umountt.us_interval%1000) ); } #endif #if 1 diag_printf("<INFO>: syncing\n"); err = cyg_fs_setinfo(TEST_MOUNTPOINT, FS_INFO_SYNC, 0, 0); if (err != 0) SHOW_RESULT(sync, err); checkfile1(TEST_MOUNTPOINT TEST_DIRECTORY "/yaffs5.4", 32*1024 ); // Remount just to remove yaffs5.4 err = mount( TEST_DEVICE, TEST_MOUNTPOINT, TEST_FSTYPE ); if( err < 0 ) { SHOW_RESULT( mount, err ); CYG_TEST_FAIL_FINISH("yaffs5"); } err = unlink( TEST_MOUNTPOINT TEST_DIRECTORY "/yaffs5.4" ); if( err < 0 ) SHOW_RESULT( unlink, err ); err = umount( TEST_MOUNTPOINT ); if( err < 0 ) SHOW_RESULT( umount, err ); #else // don't sync if not mounted diag_printf("<INFO>: syncing\n"); err = cyg_fs_setinfo(TEST_MOUNTPOINT, FS_INFO_SYNC, 0, 0); if (err != 0) SHOW_RESULT(sync, err); #endif CYG_TEST_PASS_FINISH("yaffs5"); } // ------------------------------------------------------------------------- #include <cyg/kernel/kapi.h> static cyg_handle_t thread_handle; static cyg_thread thread; static char stack[CYGNUM_HAL_STACK_SIZE_TYPICAL+8*1024]; //static char stack[64*1024]; externC void cyg_start( void ) { cyg_thread_create(3, // Priority - just a number yaffs5_main, // entry 0, // index 0, // no name &stack[0], // Stack sizeof(stack), // Size &thread_handle, // Handle &thread // Thread data structure ); cyg_thread_resume(thread_handle); cyg_scheduler_start(); } // ------------------------------------------------------------------------- // EOF yaffs5.c
