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filex/test/regression_test/filex_system_date_time_test.c
Frédéric DesbiensandCopilot 30e1d491a9 Added copyright headers to files missing them
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>
2026-06-06 21:48:17 +02:00

443 lines
12 KiB
C

/***************************************************************************/
/* Copyright (c) 2024 Microsoft Corporation */
/* Copyright (c) 2026 Eclipse ThreadX contributors */
/* */
/* This program and the accompanying materials are made available under */
/* the terms of the MIT License which is available at */
/* https://opensource.org/licenses/MIT. */
/* */
/* SPDX-License-Identifier: MIT */
/***************************************************************************/
/* This FileX test concentrates on the system date/time set/get operations. */
#ifndef FX_STANDALONE_ENABLE
#include "tx_api.h"
#endif
#include "fx_api.h"
#include "fx_system.h"
#include <stdio.h>
#include "fx_ram_driver_test.h"
#define DEMO_STACK_SIZE 4096
#define CACHE_SIZE 16*128
/* Define the ThreadX and FileX object control blocks... */
#ifndef FX_STANDALONE_ENABLE
static TX_THREAD ftest_0;
#endif
static FX_MEDIA ram_disk;
/* Define the counters used in the test application... */
#ifndef FX_STANDALONE_ENABLE
static UCHAR *ram_disk_memory;
static UCHAR *cache_buffer;
#else
static UCHAR cache_buffer[CACHE_SIZE];
#endif
/* Define thread prototypes. */
void filex_system_date_time_application_define(void *first_unused_memory);
static void ftest_0_entry(ULONG thread_input);
VOID _fx_ram_driver(FX_MEDIA *media_ptr);
void test_control_return(UINT status);
/* Define what the initial system looks like. */
#ifdef CTEST
void test_application_define(void *first_unused_memory)
#else
void filex_system_date_time_application_define(void *first_unused_memory)
#endif
{
#ifndef FX_STANDALONE_ENABLE
UCHAR *pointer;
/* Setup the working pointer. */
pointer = (UCHAR *) first_unused_memory;
/* Create the main thread. */
tx_thread_create(&ftest_0, "thread 0", ftest_0_entry, 0,
pointer, DEMO_STACK_SIZE,
4, 4, TX_NO_TIME_SLICE, TX_AUTO_START);
pointer = pointer + DEMO_STACK_SIZE;
/* Setup memory for the RAM disk and the sector cache. */
cache_buffer = pointer;
pointer = pointer + CACHE_SIZE;
ram_disk_memory = pointer;
#endif
/* Initialize the FileX system. */
fx_system_initialize();
#ifdef FX_STANDALONE_ENABLE
ftest_0_entry(0);
#endif
}
/* Define the test threads. */
static void ftest_0_entry(ULONG thread_input)
{
UINT status;
UINT save_time;
UINT save_date;
UINT year, month, day, hour, minute, second;
UINT i;
FX_PARAMETER_NOT_USED(thread_input);
/* Print out some test information banners. */
printf("FileX Test: System date/time get/set test..........................");
/* 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
256, // Total sectors
128, // Sector size
1, // Sectors per cluster
1, // Heads
1); // Sectors per track
/* Determine if the format had an error. */
if (status)
{
printf("ERROR!\n");
test_control_return(2);
}
/* Open the ram_disk. */
status = fx_media_open(&ram_disk, "RAM DISK", _fx_ram_driver, ram_disk_memory, cache_buffer, CACHE_SIZE);
/* Check the status. */
if (status != FX_SUCCESS)
{
/* Error, return error code. */
printf("ERROR!\n");
test_control_return(3);
}
/* test for error checking by sending bad information */
#ifndef FX_DISABLE_ERROR_CHECKING
/* check system date get pointer error */
status = fx_system_date_get(FX_NULL, FX_NULL, FX_NULL);
if (status != FX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(4);
}
/* check system time get pointer error */
status = fx_system_time_get(FX_NULL, FX_NULL, FX_NULL);
if (status != FX_PTR_ERROR)
{
printf("ERROR!\n");
test_control_return(5);
}
/* check system time set bad hours */
status = fx_system_time_set(99, 0, 0);
if (status != FX_INVALID_HOUR)
{
printf("ERROR!\n");
test_control_return(6);
}
/* check system time set bad minutes */
status = fx_system_time_set(0, 99, 0);
if (status != FX_INVALID_MINUTE)
{
printf("ERROR!\n");
test_control_return(7);
}
/* check system time set bad seconds */
status = fx_system_time_set(0, 0, 99);
if (status != FX_INVALID_SECOND)
{
printf("ERROR!\n");
test_control_return(8);
}
/* check system date set bad year */
status = fx_system_date_set(99, 6, 6);
if (status != FX_INVALID_YEAR)
{
printf("ERROR!\n");
test_control_return(9);
}
/* check system date set bad month */
status = fx_system_date_set(2015, 99, 6);
if (status != FX_INVALID_MONTH)
{
printf("ERROR!\n");
test_control_return(10);
}
/* check good and bad inputs for each month */
for (i = 1; i <= 12; i++)
{
/* valid input for month i */
status = fx_system_date_set(2015, i, 6);
if (status != FX_SUCCESS)
{
printf("ERROR!\n");
test_control_return(11);
}
/* invalid input for month i */
status = fx_system_date_set(2015, i, 99);
if (status != FX_INVALID_DAY)
{
printf("ERROR!\n");
test_control_return(12);
}
}
/* check bad input for feb on a leap year */
status = fx_system_date_set(2016, 2, 99);
if (status != FX_INVALID_DAY)
{
printf("ERROR!\n");
test_control_return(13);
}
#endif
/* Set the date and time. */
status = fx_system_date_set(1999, 12, 31);
/* Check for successful date set. */
if (status != FX_SUCCESS)
{
/* Error setting date. Return to caller. */
printf("ERROR!\n");
test_control_return(4);
}
status = fx_system_time_set(23, 59, 58);
/* Check for successful time set. */
if (status != FX_SUCCESS)
{
/* Error setting time. Return to caller. */
printf("ERROR!\n");
test_control_return(14);
}
/* Call the internal system date get with NULL values. */
status = _fx_system_date_get(FX_NULL, FX_NULL, FX_NULL);
/* Get the date. */
status += fx_system_date_get(&year, &month, &day);
/* Check for successful date get. */
if ((status != FX_SUCCESS) ||
(year != 1999) ||
(month != 12) ||
(day != 31))
{
/* Error getting date. Return to caller. */
printf("ERROR!\n");
test_control_return(15);
}
/* Call the internal system time get. */
status = _fx_system_time_get(FX_NULL, FX_NULL, FX_NULL);
/* Get the time. */
status += fx_system_time_get(&hour, &minute, &second);
/* Check for successful time get. */
if ((status != FX_SUCCESS) ||
(hour != 23) ||
(minute != 59) ||
(second != 58))
{
/* Error getting time. Return to caller. */
printf("ERROR!\n");
test_control_return(16);
}
#ifndef FX_DISABLE_ERROR_CHECKING
/* Get the time, but with a NULL value for month. */
status = fx_system_time_get(&hour, FX_NULL, &second);
/* Check for successful time get. */
if (status != FX_PTR_ERROR)
{
/* Error getting time. Return to caller. */
printf("ERROR!\n");
test_control_return(17);
}
/* Get the time, but with a NULL value for second. */
status = fx_system_time_get(&hour, &minute, FX_NULL);
/* Check for successful time get. */
if (status != FX_PTR_ERROR)
{
/* Error getting time. Return to caller. */
printf("ERROR!\n");
test_control_return(18);
}
/* Get the date, but with a NULL value for month. */
status = fx_system_date_get(&year, FX_NULL, &day);
/* Check for successful date get. */
if (status != FX_PTR_ERROR)
{
/* Error getting date. Return to caller. */
printf("ERROR!\n");
test_control_return(19);
}
/* Get the date, but with a NULL value for day. */
status = fx_system_date_get(&year, &month, FX_NULL);
/* Check for successful date get. */
if (status != FX_PTR_ERROR)
{
/* Error getting date. Return to caller. */
printf("ERROR!\n");
test_control_return(20);
}
/* Set the date, but with an invalid year over the max. */
status = fx_system_date_set(FX_MAXIMUM_YEAR+1, 12, 1);
/* Check for successful date set. */
if (status != FX_INVALID_YEAR)
{
/* Error setting date. Return to caller. */
printf("ERROR!\n");
test_control_return(21);
}
/* Set the date, but with an invalid day (0). */
status = fx_system_date_set(2016, 12, 0);
/* Check for successful date set. */
if (status != FX_INVALID_DAY)
{
/* Error setting date. Return to caller. */
printf("ERROR!\n");
test_control_return(22);
}
/* Set the date, but with a leap year an invalid day 30 for February. */
status = fx_system_date_set(2016, 2, 30);
/* Check for successful date set. */
if (status != FX_INVALID_DAY)
{
/* Error setting date. Return to caller. */
printf("ERROR!\n");
test_control_return(22);
}
/* Set the date, but with a leap year and a valid day 29 for February. */
status = fx_system_date_set(2016, 2, 29);
/* Check for successful date set. */
if (status != FX_SUCCESS)
{
/* Error setting date. Return to caller. */
printf("ERROR!\n");
test_control_return(23);
}
#endif
/* Close the media. */
status = fx_media_close(&ram_disk);
/* Drive the system time logic. */
/* Save the system date/time. */
save_date = _fx_system_date;
save_time = _fx_system_time;
/* First call the system timer entry function with an invalid ID. */
_fx_system_timer_entry(0);
/* Now setup an invalid month to cause the error logic to hit. */
_fx_system_date = _fx_system_date | 0x1E0; /* Set month to all ones - invalid > 12 */
/* Now loop for the amount of updates (10 seconds per update) to cause the day to wrap. */
for (i = 0; i < 86400; i++)
{
/* Adjust the time by calling the time update function. */
_fx_system_timer_entry(FX_TIMER_ID);
}
/* Restore the system date/time. */
_fx_system_date = save_date;
_fx_system_time = save_time;
/* Now call the system timer entry to walk through the maximum system time. */
for (i = 0; i < 315360000; i++)
{
/* Adjust the time by calling the time update function. */
_fx_system_timer_entry(FX_TIMER_ID);
}
/* Restore the system date/time. */
_fx_system_date = save_date;
_fx_system_time = save_time;
/* Determine if the test was successful. */
if (status != FX_SUCCESS)
{
printf("ERROR!\n");
test_control_return(10);
}
else
{
printf("SUCCESS!\n");
test_control_return(0);
}
}