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Applied the standard MIT license header to all project-owned C, header, assembly, shell, and Python files that were missing a copyright notice. Third-party, toolchain startup, and auto-generated files were excluded. Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
341 lines
12 KiB
C
341 lines
12 KiB
C
/***************************************************************************/
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/* Copyright (c) 2024 Microsoft Corporation */
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/* Copyright (c) 2026 Eclipse ThreadX contributors */
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/* */
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/* This program and the accompanying materials are made available under */
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/* the terms of the MIT License which is available at */
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/* https://opensource.org/licenses/MIT. */
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/* */
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/* SPDX-License-Identifier: MIT */
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/***************************************************************************/
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/* This FileX test concentrates on the Fault-Tolerant the file allocate related API test.
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* The offset of file is not changed after file allocate operation. */
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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_system.h"
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#include "fx_fault_tolerant.h"
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#include <stdio.h>
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#include "fx_ram_driver_test.h"
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extern void test_control_return(UINT status);
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void filex_fault_tolerant_file_allocate_test_application_define(void *first_unused_memory);
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#if defined (FX_ENABLE_FAULT_TOLERANT) && defined (FX_FAULT_TOLERANT) && defined (FX_FAULT_TOLERANT_DATA)
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#define DEMO_STACK_SIZE 4096
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#define CACHE_SIZE 2048
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#define FAULT_TOLERANT_SIZE FX_FAULT_TOLERANT_MINIMAL_BUFFER_SIZE
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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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static TX_THREAD ftest_1;
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#endif
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static FX_MEDIA ram_disk;
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static FX_FILE my_file;
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static UCHAR *pointer;
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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 *cache_buffer;
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static UCHAR *fault_tolerant_buffer;
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static UCHAR *thread_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 UINT error_couter = 0;
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static UINT i;
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#define SEEK_COUNT 5
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#define FAT_COUNT 3 /* FAT12, 16, 32. */
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#define TEST_COUNT FAT_COUNT * SEEK_COUNT
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/* Define thread prototypes. */
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static void ftest_0_entry(ULONG thread_input);
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extern void _fx_ram_driver(FX_MEDIA *media_ptr);
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extern void test_control_return(UINT status);
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extern UINT _filex_fault_tolerant_log_check(FX_MEDIA *media_ptr);
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extern UINT (*driver_write_callback)(FX_MEDIA *media_ptr, UINT sector_type, UCHAR *block_ptr, UINT *operation_ptr);
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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_fault_tolerant_file_allocate_test_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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/* 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 += CACHE_SIZE;
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fault_tolerant_buffer = pointer;
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pointer += FAULT_TOLERANT_SIZE;
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thread_buffer = pointer;
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pointer += DEMO_STACK_SIZE;
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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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ULONG64 allocated;
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ULONG64 available_bytes_before_write;
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ULONG64 available_bytes_after_write;
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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: Fault Tolerant File Allocate Test......................");
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/* Loop to test FAT 12, 16, 32. */
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for (i = 0; i < TEST_COUNT; i ++)
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{
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if (i < 5)
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{
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/* Format the media with FAT12. 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_large, // 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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256, // 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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}
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else if (i < 10)
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{
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/* Format the media with FAT16. 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_large, // 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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4200 * 8, // 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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}
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else if (i < 15)
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{
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/* Format the media with FAT32. 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_large, // 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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70000 * 4, // Total sectors
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512, // Sector size
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4, // Sectors per cluster
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1, // Heads
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1); // Sectors per track
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}
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/* Determine if the format had an error. */
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if (status)
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{
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printf("ERROR!\n");
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test_control_return(1);
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}
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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_large, cache_buffer, CACHE_SIZE);
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/* Check the status. */
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if (status != FX_SUCCESS)
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{
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/* Error, return error code. */
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printf("ERROR!\n");
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test_control_return(2);
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}
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/* Get available bytes before write. */
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fx_media_extended_space_available(&ram_disk, &available_bytes_before_write);
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/* Enable the Fault-tolerant feature. */
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status = fx_fault_tolerant_enable(&ram_disk, fault_tolerant_buffer, FAULT_TOLERANT_SIZE);
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/* Check status. */
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if (status)
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{
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printf("ERROR!\n");
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test_control_return(3);
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}
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/* Get available bytes before write. */
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fx_media_extended_space_available(&ram_disk, &available_bytes_after_write);
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if (available_bytes_before_write != (available_bytes_after_write +
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ram_disk.fx_media_fault_tolerant_clusters * ram_disk.fx_media_bytes_per_sector * ram_disk.fx_media_sectors_per_cluster))
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{
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printf("ERROR!\n");
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test_control_return(38);
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}
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/* Create a file called TEST.TXT in the root directory. */
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status = fx_file_create(&ram_disk, "TEST.TXT");
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/* Check the create status. */
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if (status != FX_SUCCESS)
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{
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printf("ERROR!\n");
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test_control_return(4);
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}
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/* Get available bytes before write. */
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fx_media_extended_space_available(&ram_disk, &available_bytes_before_write);
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/* Open the test file. */
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status = fx_file_open(&ram_disk, &my_file, "TEST.TXT", FX_OPEN_FOR_WRITE);
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/* Check the file open status. */
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if (status != FX_SUCCESS)
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{
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printf("ERROR!\n");
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test_control_return(5);
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}
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if (i & 1)
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{
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status = fx_file_allocate(&my_file, 2048);
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}
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else
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{
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status = fx_file_extended_best_effort_allocate(&my_file, 2048, &allocated);
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}
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/* Check the file write status. */
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if (status != FX_SUCCESS)
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{
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printf("ERROR!\n");
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test_control_return(7);
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}
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/* Write a string to the test file. */
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status = fx_file_write(&my_file, " ABCDEFGHIJKLMNOPQRSTUVWXYZ\n", 28);
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/* Check the file write status. */
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if (status != FX_SUCCESS)
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{
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printf("ERROR!\n");
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test_control_return(6);
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}
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/* Get available bytes after write. */
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fx_media_extended_space_available(&ram_disk, &available_bytes_after_write);
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{
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if ((available_bytes_before_write - available_bytes_after_write) != 2048)
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{
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printf("ERROR!\n");
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test_control_return(37);
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}
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}
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/* Close the test file. */
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status = fx_file_close(&my_file);
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/* Check the file close status. */
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if (status != FX_SUCCESS)
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{
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printf("ERROR!\n");
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test_control_return(31);
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}
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/* Close the media. */
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status = fx_media_close(&ram_disk);
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/* Determine if the test was successful. */
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if ((status != FX_SUCCESS) || (error_couter))
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{
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printf("ERROR!\n");
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test_control_return(36);
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}
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/* Delete the thread. */
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#ifndef FX_STANDALONE_ENABLE
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tx_thread_delete(&ftest_1);
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#endif
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}
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/* Output successful. */
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printf("SUCCESS!\n");
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test_control_return(0);
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}
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#else
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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_fault_tolerant_file_allocate_test_application_define(void *first_unused_memory)
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#endif
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{
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FX_PARAMETER_NOT_USED(first_unused_memory);
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/* Print out some test information banners. */
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printf("FileX Test: Fault Tolerant File Allocate Test......................N/A\n");
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test_control_return(255);
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}
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#endif
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