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1101 lines
46 KiB
C
1101 lines
46 KiB
C
/* This FileX test concentrates on the file create/delete operations. */
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#ifndef FX_STANDALONE_ENABLE
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#include "tx_api.h"
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#endif
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#include "fx_api.h"
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#include "fx_fault_tolerant.h"
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#include "fx_media.h"
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#include "fx_ram_driver_test.h"
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#include "fx_utility.h"
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#include <stdio.h>
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#define DEMO_STACK_SIZE 8192
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#define CACHE_SIZE 16*128
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#ifdef FX_ENABLE_FAULT_TOLERANT
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#define FAULT_TOLERANT_SIZE FX_FAULT_TOLERANT_MINIMAL_BUFFER_SIZE
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#else
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#define FAULT_TOLERANT_SIZE 0
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#endif
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/* Define the ThreadX and FileX object control blocks... */
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#ifndef FX_STANDALONE_ENABLE
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static TX_THREAD ftest_0;
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#endif
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static FX_MEDIA ram_disk;
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static FX_FILE file_1;
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static FX_FILE file_2;
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static FX_FILE file_3;
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static FX_FILE file_4;
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static FX_FILE file_5;
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static FX_FILE file_6;
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static FX_FILE file_7;
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/* Define the counters used in the test application... */
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#ifndef FX_STANDALONE_ENABLE
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static UCHAR *ram_disk_memory;
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static UCHAR *cache_buffer;
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static UCHAR *fault_tolerant_buffer;
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#else
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static UCHAR cache_buffer[CACHE_SIZE];
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static UCHAR fault_tolerant_buffer[FAULT_TOLERANT_SIZE];
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#endif
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static UCHAR fat_buffer[128];
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static UCHAR name_buffer[FX_MAX_LONG_NAME_LEN+1];
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/* Define thread prototypes. */
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void filex_file_create_delete_application_define(void *first_unused_memory);
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static void ftest_0_entry(ULONG thread_input);
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VOID _fx_ram_driver(FX_MEDIA *media_ptr);
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void test_control_return(UINT status);
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/* Define what the initial system looks like. */
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#ifdef CTEST
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void test_application_define(void *first_unused_memory)
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#else
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void filex_file_create_delete_application_define(void *first_unused_memory)
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#endif
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{
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#ifndef FX_STANDALONE_ENABLE
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UCHAR *pointer;
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/* Setup the working pointer. */
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pointer = (UCHAR *) first_unused_memory;
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/* Create the main thread. */
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tx_thread_create(&ftest_0, "thread 0", ftest_0_entry, 0,
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pointer, DEMO_STACK_SIZE,
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4, 4, TX_NO_TIME_SLICE, TX_AUTO_START);
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pointer = pointer + DEMO_STACK_SIZE;
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/* Setup memory for the RAM disk and the sector cache. */
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cache_buffer = pointer;
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pointer = pointer + CACHE_SIZE;
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fault_tolerant_buffer = pointer;
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pointer += FAULT_TOLERANT_SIZE;
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ram_disk_memory = pointer;
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#endif
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/* Initialize the FileX system. */
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fx_system_initialize();
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#ifdef FX_STANDALONE_ENABLE
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ftest_0_entry(0);
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#endif
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}
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/* Define the test threads. */
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static void ftest_0_entry(ULONG thread_input)
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{
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UINT status;
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UCHAR buffer[30];
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ULONG actual;
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ULONG64 actual64;
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UINT i;
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ULONG64 temp;
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UINT temp_attr;
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FX_PARAMETER_NOT_USED(thread_input);
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/* Print out some test information banners. */
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printf("FileX Test: File create/delete test................................");
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/* Format the media. This needs to be done before opening it! */
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status = fx_media_format(&ram_disk,
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_fx_ram_driver, // Driver entry
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ram_disk_memory, // RAM disk memory pointer
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cache_buffer, // Media buffer pointer
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CACHE_SIZE, // Media buffer size
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"MY_RAM_DISK", // Volume Name
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1, // Number of FATs
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32, // Directory Entries
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0, // Hidden sectors
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512, // Total sectors
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256, // Sector size
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8, // Sectors per cluster
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1, // Heads
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1); // Sectors per track
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return_if_fail( status == FX_SUCCESS);
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/* Attempt to invalidate the media cache before the media is opened to generate an error */
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status = fx_media_cache_invalidate(&ram_disk);
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return_if_fail( status == FX_MEDIA_NOT_OPEN);
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/* Attempt to get space available information before the media is opened to generate an error */
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status = fx_media_extended_space_available(&ram_disk, &temp);
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return_if_fail( status == FX_MEDIA_NOT_OPEN);
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/* Attempt to allocate space before the media is opened to generate an error */
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status = fx_file_extended_allocate(&file_1, 0);
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return_if_fail( status == FX_NOT_OPEN);
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/* Attempt to allocate space before the media is opened to generate an error */
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status = fx_file_extended_best_effort_allocate(&file_1, 0, &temp);
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return_if_fail( status == FX_NOT_OPEN);
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/* try to create a file before the media has been opened to generate an error */
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status = fx_file_create(&ram_disk, "asdf");
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return_if_fail( status == FX_MEDIA_NOT_OPEN);
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/* try to close a file before the file has been opened to generate an error */
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status = fx_file_close(&file_1);
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return_if_fail( status == FX_NOT_OPEN);
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/* try to delete a file before the media has been opened to generate an error */
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status = fx_file_delete(&ram_disk, "asdf");
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return_if_fail( status == FX_MEDIA_NOT_OPEN);
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/* this will be caught by _fxe_file_open instead of _fx_file_open if DISABLE_ERROR_CHECKING is not defined */
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/* Attempt to open a file before the media has been opened to generate an error */
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status = fx_file_open(&ram_disk, &file_5, "rootname2", FX_OPEN_FOR_WRITE);
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return_if_fail( (status == FX_MEDIA_NOT_OPEN) || (status == FX_PTR_ERROR));
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/* Open the ram_disk. */
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status = fx_media_open(&ram_disk, "RAM DISK", _fx_ram_driver, ram_disk_memory, cache_buffer, CACHE_SIZE);
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return_if_fail( status == FX_SUCCESS);
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#ifdef FX_ENABLE_FAULT_TOLERANT
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/* Enable fault tolerant if FX_ENABLE_FAULT_TOLERANT is defined. */
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status = fx_fault_tolerant_enable(&ram_disk, fault_tolerant_buffer, FAULT_TOLERANT_SIZE);
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return_if_fail( status == FX_SUCCESS);
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#endif
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/* try to create a file with an illegal name to generate an error */
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status = fx_file_create(&ram_disk, "");
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return_if_fail( status == FX_INVALID_NAME);
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/* try to create a file with an illegal path to generate an error */
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status = fx_file_create(&ram_disk, "/subdir/root");
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return_if_fail( status == FX_INVALID_PATH);
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/* Simple 8.3 rename in the root directory. */
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status = fx_directory_create(&ram_disk, "subdir");
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status += fx_file_create(&ram_disk, "rootname");
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status += fx_file_create(&ram_disk, "rootname1");
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status += fx_file_create(&ram_disk, "rootname2");
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status += fx_file_create(&ram_disk, "/subdir/rootname");
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status += fx_file_create(&ram_disk, "/subdir/rootname1");
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return_if_fail( status == FX_SUCCESS);
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/* Attempt to open a file that is not a file to generate an error */
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status = fx_file_open(&ram_disk, &file_5, "subdir", FX_OPEN_FOR_WRITE);
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return_if_fail( status == FX_NOT_A_FILE);
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/* try to create and delete a file when the media is write protected to generate an error */
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ram_disk.fx_media_driver_write_protect = FX_TRUE;
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status = fx_file_create(&ram_disk, "asdf");
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return_if_fail( status == FX_WRITE_PROTECT);
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status = fx_file_delete(&ram_disk, "rootname");
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return_if_fail( status == FX_WRITE_PROTECT);
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/* Attempt to open a file while the media is write protected to generate an error */
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status = fx_file_open(&ram_disk, &file_5, "rootname2", FX_OPEN_FOR_WRITE);
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return_if_fail( status == FX_WRITE_PROTECT);
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ram_disk.fx_media_driver_write_protect = FX_FALSE;
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/* Attempt to create the same file again. This should cause an error! */
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status = fx_file_create(&ram_disk, "rootname");
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return_if_fail( status == FX_ALREADY_CREATED);
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/* attempt to open a file with an invalid open type to generate an error */
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/* This code is executing differently on local vs server. Disabled until cause is explored
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status = fx_file_open(&ram_disk, &file_5, "rootname2", 3);
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return_if_fail( status == FX_ACCESS_ERROR);
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*/
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/* try to delete a file in a directory that is read only */
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status = fx_file_attributes_read(&ram_disk, "rootname2", &temp_attr);
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status += fx_file_attributes_set(&ram_disk, "rootname2", FX_READ_ONLY);
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status += fx_file_delete(&ram_disk, "rootname2");
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status += fx_file_attributes_set(&ram_disk, "rootname2", temp_attr);
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return_if_fail( status == FX_WRITE_PROTECT);
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/* Open all the files. */
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status = fx_file_open(&ram_disk, &file_1, "rootname", FX_OPEN_FOR_WRITE);
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status += fx_file_open(&ram_disk, &file_2, "rootname1", FX_OPEN_FOR_WRITE);
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status += fx_file_open(&ram_disk, &file_3, "/subdir/rootname", FX_OPEN_FOR_WRITE);
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status += fx_file_open(&ram_disk, &file_4, "/subdir/rootname1", FX_OPEN_FOR_WRITE);
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status += fx_file_open(&ram_disk, &file_5, "rootname2", FX_OPEN_FOR_READ);
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return_if_fail( status == FX_SUCCESS);
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/* attempt to open a file that is already open */
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status = fx_file_open(&ram_disk, &file_6, "rootname", FX_OPEN_FOR_WRITE);
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return_if_fail( status == FX_ACCESS_ERROR);
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/* try to create and delete a file when the media is write protected to generate an error */
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ram_disk.fx_media_driver_write_protect = FX_TRUE;
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status = fx_file_create(&ram_disk, "asdf");
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return_if_fail( status == FX_WRITE_PROTECT);
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status = fx_file_delete(&ram_disk, "asdf");
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return_if_fail( status == FX_WRITE_PROTECT);
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/* Attempt to allocate space while the media is write protected to generate an error */
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status = fx_file_extended_allocate(&file_1, 1);
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return_if_fail( status == FX_WRITE_PROTECT);
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status = fx_file_extended_best_effort_allocate(&file_1, 1, &temp);
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return_if_fail( status == FX_WRITE_PROTECT);
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ram_disk.fx_media_driver_write_protect = FX_FALSE;
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/* test the error checking */
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#ifndef FX_DISABLE_ERROR_CHECKING
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/* send a null pointer to generate an error */
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status = fx_media_extended_space_available(FX_NULL, FX_NULL);
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return_if_fail( status == FX_PTR_ERROR);
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/* send a null pointer to generate an error */
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status = fx_file_extended_best_effort_allocate(FX_NULL, 0, FX_NULL);
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/* send null pointer to generate an error */
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status = fx_file_create(FX_NULL, "rootname");
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return_if_fail( status == FX_PTR_ERROR);
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/* send null pointer to generate an error */
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status = fx_file_open(FX_NULL, FX_NULL, "rootname", 0);
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return_if_fail( status == FX_PTR_ERROR);
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/* attempt to open an already open file to generate an error */
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status = fx_file_open(&ram_disk, &file_1, "rootname", FX_OPEN_FOR_WRITE);
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return_if_fail( status == FX_PTR_ERROR);
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/* Attempt to allocate space for a file that is not open to write to generate an error */
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status = fx_file_open(&ram_disk, &file_5, "rootname2", FX_OPEN_FOR_READ);
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status = fx_file_extended_allocate(&file_5, 1);
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return_if_fail( status == FX_ACCESS_ERROR);
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/* Attempt to allocate space for a file that is not open to write to generate an error */
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status = fx_file_extended_best_effort_allocate(&file_5, 0, &temp);
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return_if_fail( status == FX_ACCESS_ERROR);
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/* Allocate 0 space for a file */
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status = fx_file_extended_allocate(&file_1, 0);
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return_if_fail( status == FX_SUCCESS);
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/* Allocate 0 space for a file */
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status = fx_file_extended_best_effort_allocate(&file_1, 0, &temp);
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return_if_fail( status == FX_SUCCESS);
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/* Attempt to allocate too much space for a file */
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status = fx_file_extended_allocate(&file_1, 0xFFFFFFFFFFFFFFFF);
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return_if_fail( status == FX_NO_MORE_SPACE);
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/* Corrupt the media. */
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ram_disk.fx_media_bytes_per_sector = 0;
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status = fx_file_extended_allocate(&file_1, 1);
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return_if_fail(status == FX_MEDIA_INVALID);
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status = fx_file_extended_best_effort_allocate(&file_1, 1, &actual64);
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return_if_fail(status == FX_MEDIA_INVALID);
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ram_disk.fx_media_bytes_per_sector = 256;
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#endif /* FX_DISABLE_ERROR_CHECKING */
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/* try to delete an open file to generate an error */
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status = fx_file_delete(&ram_disk, "rootname");
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return_if_fail( status == FX_ACCESS_ERROR);
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/* try to delete something that is not a file to generate an error */
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status = fx_file_delete(&ram_disk, "subdir");
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return_if_fail( status == FX_NOT_A_FILE);
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/* Now write a buffer to each file. */
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status = fx_file_write(&file_1, "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 26);
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status += fx_file_write(&file_2, "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 26);
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status += fx_file_write(&file_3, "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 26);
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status += fx_file_write(&file_4, "ABCDEFGHIJKLMNOPQRSTUVWXYZ", 26);
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return_if_fail( status == FX_SUCCESS);
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/* Seek to the beginning of each file. */
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status += fx_file_seek(&file_1, 0);
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status += fx_file_seek(&file_2, 0);
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status += fx_file_seek(&file_3, 0);
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status += fx_file_seek(&file_4, 0);
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return_if_fail( status == FX_SUCCESS);
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/* Now read the buffer. */
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status = fx_file_read(&file_1, buffer, 30, &actual);
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return_if_fail( (status == FX_SUCCESS) && (actual == 26));
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/* Only run this if error checking is enabled */
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#ifndef FX_DISABLE_ERROR_CHECKING
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/* send null pointer to generate an error */
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status = fx_file_read(FX_NULL, buffer, 30, &actual);
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return_if_fail(status == FX_PTR_ERROR);
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#endif /* FX_DISABLE_ERROR_CHECKING */
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/* Now read the buffer. */
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status = fx_file_read(&file_2, buffer, 30, &actual);
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return_if_fail( (status == FX_SUCCESS) && (actual == 26));
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/* Now read the buffer. */
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status = fx_file_read(&file_3, buffer, 30, &actual);
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return_if_fail( (status == FX_SUCCESS) && (actual == 26));
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/* Now read the buffer. */
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status = fx_file_read(&file_4, buffer, 30, &actual);
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return_if_fail( (status == FX_SUCCESS) && (actual == 26));
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/* Close all files. */
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status = fx_file_close(&file_1);
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status += fx_file_close(&file_2);
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status += fx_file_close(&file_3);
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status += fx_file_close(&file_4);
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status += fx_file_close(&file_5);
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return_if_fail( status == FX_SUCCESS);
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/* Only run this if error checking is enabled */
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#ifndef FX_DISABLE_ERROR_CHECKING
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/* send null pointer to generate an error */
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status = fx_file_close(FX_NULL);
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return_if_fail(status == FX_PTR_ERROR);
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/* send null pointer to generate an error */
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status = fx_file_delete(FX_NULL, "rootname");
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return_if_fail(status == FX_PTR_ERROR);
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#endif /* FX_DISABLE_ERROR_CHECKING */
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/* Delete all files. */
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status = fx_file_delete(&ram_disk, "rootname");
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status += fx_file_delete(&ram_disk, "rootname1");
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status += fx_file_delete(&ram_disk, "/subdir/rootname");
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status += fx_file_delete(&ram_disk, "/subdir/rootname1");
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status += fx_file_delete(&ram_disk, "rootname2");
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status += fx_directory_delete(&ram_disk, "/subdir");
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return_if_fail( status == FX_SUCCESS);
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/* Attempt to delete an already deleted file. */
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status += fx_file_delete(&ram_disk, "rootname");
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return_if_fail( status == FX_NOT_FOUND);
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/* Close the media. */
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status = fx_media_close(&ram_disk);
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return_if_fail( status == FX_SUCCESS);
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/* Test corner cases in extended best effort allocate. */
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/* Format the media. This needs to be done before opening it! */
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status = fx_media_format(&ram_disk,
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_fx_ram_driver, // Driver entry
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ram_disk_memory, // RAM disk memory pointer
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cache_buffer, // Media buffer pointer
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CACHE_SIZE, // Media buffer size
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"MY_RAM_DISK", // Volume Name
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1, // Number of FATs
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32, // Directory Entries
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0, // Hidden sectors
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7000, // Total sectors - FAT 16
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128, // Sector size
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1, // Sectors per cluster
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1, // Heads
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1); // Sectors per track
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return_if_fail( status == FX_SUCCESS);
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/* Open the ram_disk. */
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status = fx_media_open(&ram_disk, "RAM DISK", _fx_ram_driver, ram_disk_memory, cache_buffer, 128);
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return_if_fail( status == FX_SUCCESS);
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/* Create a file. */
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status = fx_file_create(&ram_disk, "TEST.TXT");
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/* Create a secondary file. */
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status += fx_file_create(&ram_disk, "TEST1.TXT");
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return_if_fail( status == FX_SUCCESS);
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/* Open the file. */
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status = fx_file_open(&ram_disk, &file_6, "TEST.TXT", FX_OPEN_FOR_WRITE);
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status += fx_file_open(&ram_disk, &file_5, "TEST1.TXT", FX_OPEN_FOR_WRITE);
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return_if_fail( status == FX_SUCCESS);
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/* Write one cluster of information to the TEST1.TXT file. */
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status = fx_file_write(&file_5, buffer, 128);
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/* Close the secondary file. */
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status += fx_file_close(&file_5);
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/* Loop to take up the entire ram disk by writing to this file. */
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while (ram_disk.fx_media_available_clusters)
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{
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/* Write a one cluster block. */
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status += fx_file_write(&file_6, buffer, 128);
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}
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return_if_fail( status == FX_SUCCESS);
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|
/* Attempt to allocate when there is nothing available. */
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 128, &actual64);
|
|
return_if_fail( status == FX_NO_MORE_SPACE);
|
|
|
|
/* Now release the first cluster to create a hole at the front. */
|
|
status = fx_file_delete(&ram_disk, "TEST1.TXT");
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
/* Read the first FAT sector. */
|
|
status += fx_media_read(&ram_disk, 1, (VOID *) fat_buffer);
|
|
|
|
/* Add a FAT entry randomly in the FAT table. */
|
|
fat_buffer[4] = 0x03;
|
|
fat_buffer[5] = 0x00;
|
|
|
|
/* Write the FAT corruption out. */
|
|
status += fx_media_write(&ram_disk, 1, (VOID *) fat_buffer);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Attempt to allocate when there is nothing available - with a lost cluster. */
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 128, &actual64);
|
|
return_if_fail( status == FX_NO_MORE_SPACE);
|
|
|
|
/* Attempt to allocate when there is an I/O error. */
|
|
_fx_utility_fat_entry_read_error_request = 1;
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 128, &actual64);
|
|
_fx_utility_fat_entry_read_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
/* Read the first FAT sector. */
|
|
status = fx_media_read(&ram_disk, 1, (VOID *) fat_buffer);
|
|
|
|
/* Make the first entry available. */
|
|
fat_buffer[4] = 0x00;
|
|
fat_buffer[5] = 0x00;
|
|
|
|
/* Write the FAT corruption out. */
|
|
status += fx_media_write(&ram_disk, 1, (VOID *) fat_buffer);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Allocate with an exact fit. */
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 128, &actual64);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Release all the clusters for this file. */
|
|
status = fx_file_extended_truncate_release(&file_6, 0);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
|
|
/* Allocate 4 clusters. */
|
|
status += fx_file_extended_best_effort_allocate(&file_6, 512, &actual64);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Release all the clusters for this file. */
|
|
status = fx_file_extended_truncate_release(&file_6, 0);
|
|
|
|
/* Allocate 4 clusters with no clusters in the file. */
|
|
status += fx_file_extended_best_effort_allocate(&file_6, 512, &actual64);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Write 512 bytes of data out. */
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
|
|
/* Now allocate perform allocations with I/O errors on building the new FAT chain. */
|
|
_fx_utility_fat_entry_write_error_request = 1;
|
|
status += fx_file_extended_best_effort_allocate(&file_6, 512, &actual64);
|
|
_fx_utility_fat_entry_write_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Now allocate perform allocations with I/O error on writing the EOF. */
|
|
_fx_utility_fat_entry_write_error_request = 4;
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 512, &actual64);
|
|
_fx_utility_fat_entry_write_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Now allocate perform allocations with I/O error on linking to last cluster. */
|
|
_fx_utility_fat_entry_write_error_request = 5;
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 512, &actual64);
|
|
_fx_utility_fat_entry_write_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Release all the clusters for this file. */
|
|
status = fx_file_extended_truncate_release(&file_6, 0);
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
#ifndef FX_ENABLE_FAULT_TOLERANT
|
|
/* Now allocate perform allocations with I/O error on the directory write request. */
|
|
_fx_utility_logical_sector_write_error_request = 1;
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 128, &actual64);
|
|
_fx_utility_logical_sector_write_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
#endif
|
|
|
|
/* Close the file and the media. */
|
|
status = fx_file_close(&file_6);
|
|
status += fx_media_close(&ram_disk);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Format the media. This needs to be done before opening it! */
|
|
status = fx_media_format(&ram_disk,
|
|
_fx_ram_driver, // Driver entry
|
|
ram_disk_memory, // RAM disk memory pointer
|
|
cache_buffer, // Media buffer pointer
|
|
CACHE_SIZE, // Media buffer size
|
|
"MY_RAM_DISK", // Volume Name
|
|
1, // Number of FATs
|
|
32, // Directory Entries
|
|
0, // Hidden sectors
|
|
21000, // Total sectors - FAT 16
|
|
128, // Sector size
|
|
3, // Sectors per cluster
|
|
1, // Heads
|
|
1); // Sectors per track
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Open the ram_disk. */
|
|
status = fx_media_open(&ram_disk, "RAM DISK", _fx_ram_driver, ram_disk_memory, cache_buffer, 128);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Create a file. */
|
|
status = fx_file_create(&ram_disk, "TEST.TXT");
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Open the file. */
|
|
status = fx_file_open(&ram_disk, &file_6, "TEST.TXT", FX_OPEN_FOR_WRITE);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Write data to the TEST.TXT file. */
|
|
status = fx_file_write(&file_6, buffer, 128);
|
|
status += fx_file_write(&file_6, buffer, 128);
|
|
status += fx_file_write(&file_6, buffer, 64);
|
|
|
|
/* Allocate more clusters but with the offset on a sector boundary rather than a cluster boundary. */
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 512, &actual64);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Truncate the file. */
|
|
status = fx_file_extended_truncate_release(&file_6, 0);
|
|
|
|
/* Write data to the TEST.TXT file. */
|
|
status += fx_file_write(&file_6, buffer, 128);
|
|
|
|
/* Allocate more clusters but with the offset on a sector boundary rather than a cluster boundary. */
|
|
status += fx_file_extended_best_effort_allocate(&file_6, 512, &actual64);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Close the file and the media. */
|
|
status = fx_file_close(&file_6);
|
|
status += fx_media_close(&ram_disk);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Test corner cases in extended allocate. */
|
|
|
|
/* Format the media. This needs to be done before opening it! */
|
|
status = fx_media_format(&ram_disk,
|
|
_fx_ram_driver, // Driver entry
|
|
ram_disk_memory, // RAM disk memory pointer
|
|
cache_buffer, // Media buffer pointer
|
|
CACHE_SIZE, // Media buffer size
|
|
"MY_RAM_DISK", // Volume Name
|
|
1, // Number of FATs
|
|
32, // Directory Entries
|
|
0, // Hidden sectors
|
|
7000, // Total sectors - FAT 16
|
|
128, // Sector size
|
|
1, // Sectors per cluster
|
|
1, // Heads
|
|
1); // Sectors per track
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Open the ram_disk. */
|
|
status = fx_media_open(&ram_disk, "RAM DISK", _fx_ram_driver, ram_disk_memory, cache_buffer, 128);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Create a file. */
|
|
status = fx_file_create(&ram_disk, "TEST.TXT");
|
|
|
|
/* Create a secondary file. */
|
|
status += fx_file_create(&ram_disk, "TEST1.TXT");
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Open the file. */
|
|
status = fx_file_open(&ram_disk, &file_6, "TEST.TXT", FX_OPEN_FOR_WRITE);
|
|
status = fx_file_open(&ram_disk, &file_5, "TEST1.TXT", FX_OPEN_FOR_WRITE);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Write one cluster of information to the TEST1.TXT file. */
|
|
status = fx_file_write(&file_5, buffer, 128);
|
|
|
|
/* Close the secondary file. */
|
|
status += fx_file_close(&file_5);
|
|
|
|
/* Loop to take up the entire ram disk by writing to this file. */
|
|
while (ram_disk.fx_media_available_clusters)
|
|
{
|
|
|
|
/* Write a one cluster block. */
|
|
status += fx_file_write(&file_6, buffer, 128);
|
|
}
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Attempt to allocate when there is nothing available. */
|
|
status = fx_file_extended_allocate(&file_6, 128);
|
|
return_if_fail( status == FX_NO_MORE_SPACE);
|
|
|
|
/* Now release the first cluster to create a hole at the front. */
|
|
status = fx_file_delete(&ram_disk, "TEST1.TXT");
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
/* Read the first FAT sector. */
|
|
status += fx_media_read(&ram_disk, 1, (VOID *) fat_buffer);
|
|
|
|
/* Add a FAT entry randomly in the FAT table. */
|
|
fat_buffer[4] = 0x03;
|
|
fat_buffer[5] = 0x00;
|
|
|
|
/* Write the FAT corruption out. */
|
|
status += fx_media_write(&ram_disk, 1, (VOID *) fat_buffer);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Attempt to allocate when there is nothing available - with a lost cluster. */
|
|
status = fx_file_extended_allocate(&file_6, 128);
|
|
return_if_fail( status == FX_NO_MORE_SPACE);
|
|
|
|
/* Attempt to allocate when there is an I/O error. */
|
|
_fx_utility_fat_entry_read_error_request = 1;
|
|
status = fx_file_extended_allocate(&file_6, 128);
|
|
_fx_utility_fat_entry_read_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
/* Read the first FAT sector. */
|
|
status = fx_media_read(&ram_disk, 1, (VOID *) fat_buffer);
|
|
|
|
/* Make the first entry available. */
|
|
fat_buffer[4] = 0x00;
|
|
fat_buffer[5] = 0x00;
|
|
|
|
/* Write the FAT corruption out. */
|
|
status += fx_media_write(&ram_disk, 1, (VOID *) fat_buffer);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Allocate with an exact fit. */
|
|
status = fx_file_extended_allocate(&file_6, 128);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Release all the clusters for this file. */
|
|
status = fx_file_extended_truncate_release(&file_6, 0);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
|
|
/* Allocate 4 clusters. */
|
|
status += fx_file_extended_allocate(&file_6, 512);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Release all the clusters for this file. */
|
|
status = fx_file_extended_truncate_release(&file_6, 0);
|
|
|
|
/* Allocate 4 clusters with no clusters in the file. */
|
|
status += fx_file_extended_allocate(&file_6, 512);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Write 512 bytes of data out. */
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
|
|
/* Now allocate perform allocations with I/O errors on building the new FAT chain. */
|
|
_fx_utility_fat_entry_write_error_request = 1;
|
|
status += fx_file_extended_allocate(&file_6, 512);
|
|
_fx_utility_fat_entry_write_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Now allocate perform allocations with I/O error on writing the EOF. */
|
|
_fx_utility_fat_entry_write_error_request = 4;
|
|
status = fx_file_extended_allocate(&file_6, 512);
|
|
_fx_utility_fat_entry_write_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Now allocate perform allocations with I/O error on linking to last cluster. */
|
|
_fx_utility_fat_entry_write_error_request = 5;
|
|
status = fx_file_extended_allocate(&file_6, 512);
|
|
_fx_utility_fat_entry_write_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Release all the clusters for this file. */
|
|
status = fx_file_extended_truncate_release(&file_6, 0);
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
#ifndef FX_ENABLE_FAULT_TOLERANT
|
|
|
|
/* Now allocate perform allocations with I/O error on the directory write request. */
|
|
_fx_utility_logical_sector_write_error_request = 1;
|
|
status = fx_file_extended_allocate(&file_6, 128);
|
|
_fx_utility_logical_sector_write_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
#endif
|
|
|
|
/* Close the file and the media. */
|
|
status = fx_file_close(&file_6);
|
|
status += fx_media_close(&ram_disk);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Format the media. This needs to be done before opening it! */
|
|
status = fx_media_format(&ram_disk,
|
|
_fx_ram_driver, // Driver entry
|
|
ram_disk_memory, // RAM disk memory pointer
|
|
cache_buffer, // Media buffer pointer
|
|
CACHE_SIZE, // Media buffer size
|
|
"MY_RAM_DISK", // Volume Name
|
|
1, // Number of FATs
|
|
32, // Directory Entries
|
|
0, // Hidden sectors
|
|
21000, // Total sectors - FAT 16
|
|
128, // Sector size
|
|
3, // Sectors per cluster
|
|
1, // Heads
|
|
1); // Sectors per track
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Open the ram_disk. */
|
|
status = fx_media_open(&ram_disk, "RAM DISK", _fx_ram_driver, ram_disk_memory, cache_buffer, 128);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Create a file. */
|
|
status = fx_file_create(&ram_disk, "TEST.TXT");
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Open the file. */
|
|
status = fx_file_open(&ram_disk, &file_6, "TEST.TXT", FX_OPEN_FOR_WRITE);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Write one cluster of information to the TEST1.TXT file. */
|
|
status = fx_file_write(&file_6, buffer, 128);
|
|
status += fx_file_write(&file_6, buffer, 128);
|
|
status += fx_file_write(&file_6, buffer, 64);
|
|
|
|
/* Allocate more clusters but with the offset on a sector boundary rather than a cluster boundary. */
|
|
status = fx_file_extended_allocate(&file_6, 512);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Truncate the file. */
|
|
status = fx_file_extended_truncate_release(&file_6, 0);
|
|
|
|
/* Write data to the TEST.TXT file. */
|
|
status += fx_file_write(&file_6, buffer, 128);
|
|
|
|
/* Allocate more clusters but with the offset on a sector boundary rather than a cluster boundary. */
|
|
status += fx_file_extended_allocate(&file_6, 512);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Now test the maximum allocate size. */
|
|
actual64 = file_6.fx_file_current_available_size;
|
|
file_6.fx_file_current_available_size = 0xFFFFFFF8;
|
|
|
|
/* Allocate more clusters but with the file near maximum size to test the maximum size logic. */
|
|
status = fx_file_extended_allocate(&file_6, 512);
|
|
file_6.fx_file_current_available_size = actual64;
|
|
return_if_fail( status == FX_NO_MORE_SPACE);
|
|
|
|
/* Now test the maximum allocate size. */
|
|
actual64 = file_6.fx_file_current_available_size;
|
|
file_6.fx_file_current_available_size = 0xFFFFFFFFFFFFFFF8;
|
|
|
|
/* Allocate more clusters but with the file near maximum size to test the maximum size logic. */
|
|
status = fx_file_extended_allocate(&file_6, 512);
|
|
file_6.fx_file_current_available_size = actual64;
|
|
return_if_fail( status == FX_NO_MORE_SPACE);
|
|
|
|
/* Now test the maximum allocate size. */
|
|
actual64 = file_6.fx_file_current_available_size;
|
|
file_6.fx_file_current_available_size = 0xFFFFFFF8;
|
|
|
|
/* Allocate more clusters but with the file near maximum size to test the maximum size logic. */
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 512, &actual64);
|
|
file_6.fx_file_current_available_size = actual64;
|
|
return_if_fail( status == FX_NO_MORE_SPACE);
|
|
|
|
/* Now test the maximum allocate size. */
|
|
actual64 = file_6.fx_file_current_available_size;
|
|
file_6.fx_file_current_available_size = 0xFFFFFFFFFFFFFFF8;
|
|
|
|
/* Allocate more clusters but with the file near maximum size to test the maximum size logic. */
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 512, &actual64);
|
|
file_6.fx_file_current_available_size = actual64;
|
|
return_if_fail( status == FX_NO_MORE_SPACE);
|
|
|
|
/* Now test a maximium size allocation. */
|
|
status = fx_file_extended_best_effort_allocate(&file_6, 0xFFFFFFFFFFFFFFF8ULL, &actual64);
|
|
return_if_fail( status == FX_NO_MORE_SPACE);
|
|
|
|
/* Close the file and the media. */
|
|
status = fx_file_close(&file_6);
|
|
status += fx_media_close(&ram_disk);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Check the corner cases of file delete. */
|
|
|
|
/* Format the media. This needs to be done before opening it! */
|
|
status = fx_media_format(&ram_disk,
|
|
_fx_ram_driver, // Driver entry
|
|
ram_disk_memory, // RAM disk memory pointer
|
|
cache_buffer, // Media buffer pointer
|
|
CACHE_SIZE, // Media buffer size
|
|
"MY_RAM_DISK", // Volume Name
|
|
1, // Number of FATs
|
|
32, // Directory Entries
|
|
0, // Hidden sectors
|
|
7000, // Total sectors - FAT 16
|
|
128, // Sector size
|
|
1, // Sectors per cluster
|
|
1, // Heads
|
|
1); // Sectors per track
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Open the ram_disk. */
|
|
status = fx_media_open(&ram_disk, "RAM DISK", _fx_ram_driver, ram_disk_memory, cache_buffer, 128);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Create a set of files. */
|
|
status = fx_file_create(&ram_disk, "TEST.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST1.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST2.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST3.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST4.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST5.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST6.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST7.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST8.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST9.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST10.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST11.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST12.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST13.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST14.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST15.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST16.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST17.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST18.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST19.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST20.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST21.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST22.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST23.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST24.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST25.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST26.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST27.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST28.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST29.TXT");
|
|
status += fx_file_create(&ram_disk, "TEST30.TXT");
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Open a couple files.... */
|
|
status = fx_file_open(&ram_disk, &file_4, "TEST.TXT", FX_OPEN_FOR_WRITE);
|
|
status = fx_file_open(&ram_disk, &file_5, "TEST1.TXT", FX_OPEN_FOR_WRITE);
|
|
status += fx_file_open(&ram_disk, &file_6, "TEST30.TXT", FX_OPEN_FOR_WRITE);
|
|
status += fx_file_open(&ram_disk, &file_7, "TEST29.TXT", FX_OPEN_FOR_WRITE);
|
|
status += fx_file_write(&file_4, fat_buffer, 128);
|
|
status += fx_file_write(&file_4, fat_buffer, 128);
|
|
status += fx_file_write(&file_4, fat_buffer, 128);
|
|
status += fx_file_write(&file_4, fat_buffer, 128);
|
|
status += fx_file_write(&file_5, fat_buffer, 128);
|
|
status += fx_file_write(&file_5, fat_buffer, 128);
|
|
status += fx_file_write(&file_5, fat_buffer, 128);
|
|
status += fx_file_write(&file_5, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_6, fat_buffer, 128);
|
|
status += fx_file_write(&file_7, fat_buffer, 128);
|
|
status += fx_file_write(&file_7, fat_buffer, 128);
|
|
status += fx_file_write(&file_7, fat_buffer, 128);
|
|
status += fx_file_write(&file_7, fat_buffer, 128);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
/* Close TEST.TXT. */
|
|
status = fx_file_close(&file_4);
|
|
|
|
/* Attempt to delete the file, but with open files on a different offset/sector and a write I/O error. */
|
|
_fx_utility_logical_sector_read_error_request = 2;
|
|
status += fx_file_delete(&ram_disk, "TEST.TXT");
|
|
_fx_utility_logical_sector_read_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Close all the open files. */
|
|
status = fx_file_close(&file_5);
|
|
status += fx_file_close(&file_6);
|
|
status += fx_file_close(&file_7);
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
/* Attempt to delete the file, but with a FAT read error. */
|
|
_fx_utility_fat_entry_read_error_request = 1;
|
|
status += fx_file_delete(&ram_disk, "TEST1.TXT");
|
|
_fx_utility_fat_entry_read_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
/* Attempt to delete the file, but with a FAT write error. */
|
|
_fx_utility_fat_entry_write_error_request = 1;
|
|
status = fx_file_delete(&ram_disk, "TEST30.TXT");
|
|
_fx_utility_fat_entry_write_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Now flush everything out. */
|
|
fx_media_flush(&ram_disk);
|
|
_fx_utility_FAT_flush(&ram_disk);
|
|
_fx_utility_logical_sector_flush(&ram_disk, 1, 60000, FX_TRUE);
|
|
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
|
|
{
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0;
|
|
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 0;
|
|
}
|
|
|
|
/* Read the first FAT sector. */
|
|
status = fx_media_read(&ram_disk, 1, (VOID *) fat_buffer);
|
|
|
|
/* Make the first entry available. */
|
|
fat_buffer[4] = 0x02;
|
|
fat_buffer[5] = 0x00;
|
|
|
|
/* Write the FAT corruption out. */
|
|
status += fx_media_write(&ram_disk, 1, (VOID *) fat_buffer);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
/* Attempt to delete the file, but with a bad FAT chain. */
|
|
status = fx_file_delete(&ram_disk, "TEST.TXT");
|
|
return_if_fail( status == FX_FAT_READ_ERROR);
|
|
|
|
/* Attempt to delete the file that exceeds the cluster clount (that we modify to be small). */
|
|
actual = ram_disk.fx_media_total_clusters;
|
|
ram_disk.fx_media_total_clusters = 1;
|
|
status = fx_file_delete(&ram_disk, "TEST29.TXT");
|
|
ram_disk.fx_media_total_clusters = actual;
|
|
return_if_fail( status == FX_FAT_READ_ERROR);
|
|
|
|
/* Build a long file name, exceeding FX_MAX_LONG_NAME_LEN. */
|
|
for (i = 0; i < (FX_MAX_LONG_NAME_LEN+1); i++)
|
|
{
|
|
name_buffer[i] = 'a';
|
|
}
|
|
name_buffer[FX_MAX_LONG_NAME_LEN] = 0;
|
|
|
|
/* Attempt to create a file with this extra long name... this is expected to fail. */
|
|
status = fx_file_create(&ram_disk, (CHAR *)name_buffer);
|
|
return_if_fail( status == FX_INVALID_NAME);
|
|
|
|
/* Now open and write to a file so we can test file close I/O error condition. */
|
|
status = fx_file_open(&ram_disk, &file_7, "TEST20.TXT", FX_OPEN_FOR_WRITE);
|
|
status += fx_file_write(&file_7, fat_buffer, 128);
|
|
|
|
/* Close the file with an I/O error. */
|
|
_fx_utility_logical_sector_read_error_request = 1;
|
|
status += fx_file_close(&file_7);
|
|
_fx_utility_logical_sector_read_error_request = 0;
|
|
return_if_fail( status == FX_IO_ERROR);
|
|
|
|
/* Now call the best effort allocate with a closed file handle. */
|
|
status = fx_file_best_effort_allocate(&file_7, 1, &actual);
|
|
return_if_fail( status == FX_NOT_OPEN);
|
|
|
|
/* Close the media. */
|
|
status = fx_media_close(&ram_disk);
|
|
return_if_fail( status == FX_SUCCESS);
|
|
|
|
printf("SUCCESS!\n");
|
|
test_control_return(0);
|
|
}
|