Updated copyright headers and removed revision history

* Updated version number constants

* Updated copyright headers and removed revision history
This commit is contained in:
Frédéric Desbiens
2026-03-05 08:39:33 +01:00
committed by GitHub
parent dfe5084ab8
commit 61b0b06c3e
372 changed files with 14882 additions and 16676 deletions
@@ -53,13 +53,13 @@ void filex_utility_fat_flush_application_define(void *first_unused_memory)
#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,
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;
@@ -97,20 +97,20 @@ ULONG i;
printf("FileX Test: Utility FAT flush test.......................................");
/* Format the media. This needs to be done before opening it! */
status = fx_media_format(&ram_disk,
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
CACHE_SIZE, // Media buffer size
"MY_RAM_DISK", // Volume Name
1, // Number of FATs
32, // Directory Entries
0, // Hidden sectors
511, // Total sectors
128, // Sector size
511, // Total sectors
128, // Sector size
1, // Sectors per cluster
1, // Heads
1); // Sectors per track
1); // Sectors per track
/* Determine if the format had an error. */
if (status)
@@ -133,8 +133,8 @@ ULONG i;
}
/* Create a file called TEST.TXT in the root directory. */
status = fx_file_create(&ram_disk, "TEST.TXT");
status = fx_file_create(&ram_disk, "TEST.TXT");
/* Check the create status. */
if (status != FX_SUCCESS)
{
@@ -155,7 +155,7 @@ ULONG i;
/* Pickup the available bytes in the media. */
status = fx_media_space_available(&ram_disk, &available_bytes);
/* Check for available bytes error. */
if ((status != FX_SUCCESS) || (available_bytes < sizeof(ULONG)))
{
@@ -169,7 +169,7 @@ ULONG i;
write_value = 0;
while (i < available_bytes)
{
/* Write 4 bytes to the file. */
status = fx_file_write(&my_file, (void *) &write_value, sizeof(ULONG));
@@ -180,17 +180,17 @@ ULONG i;
printf("ERROR!\n");
test_control_return(6);
}
/* Increment byte count. */
i = i + sizeof(ULONG);
/* Increment write value. */
write_value++;
}
/* Pickup the available bytes in the media again. */
status = fx_media_space_available(&ram_disk, &i);
/* Check for available bytes error. */
if ((status != FX_SUCCESS) || (i != 0))
{
@@ -198,41 +198,41 @@ ULONG i;
printf("ERROR!\n");
test_control_return(7);
}
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
{
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 496;
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 1;
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_dirty = 1;
}
_fx_utility_FAT_flush(&ram_disk);
/* Note: If definition of FX_FAT_MAP_SIZE is changed in future, the value checked in
_fx_utility_FAT_flush(&ram_disk);
/* Note: If definition of FX_FAT_MAP_SIZE is changed in future, the value checked in
return_value_if_fail will change for individual array element */
for(i=0;i<FX_FAT_MAP_SIZE;i++)
{
return_value_if_fail((ram_disk.fx_media_fat_secondary_update_map[i]==63),8)
}
}
fx_media_close(&ram_disk);
/* Test with FAT 16 */
/* Format the media. This needs to be done before opening it! */
status = fx_media_format(&ram_disk,
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
CACHE_SIZE, // Media buffer size
"MY_RAM_DISK", // Volume Name
1, // Number of FATs
32, // Directory Entries
0, // Hidden sectors
14000, // Total sectors - FAT16
64, // Sector size
64, // Sector size
2, // Sectors per cluster
1, // Heads
1); // Sectors per track
1); // Sectors per track
/* Determine if the format had an error. */
if (status)
@@ -277,7 +277,7 @@ ULONG i;
/* Pickup the available bytes in the media. */
status = fx_media_space_available(&ram_disk, &available_bytes);
/* Check for available bytes error. */
if ((status != FX_SUCCESS) || (available_bytes < sizeof(ULONG)))
{
@@ -291,7 +291,7 @@ ULONG i;
write_value = 0;
while (i < available_bytes)
{
/* Write 4 bytes to the file. */
status = fx_file_write(&my_file, (void *) &write_value, sizeof(ULONG));
@@ -302,17 +302,17 @@ ULONG i;
printf("ERROR!\n");
test_control_return(6);
}
/* Increment byte count. */
i = i + sizeof(ULONG);
/* Increment write value. */
write_value++;
}
/* Pickup the available bytes in the media again. */
status = fx_media_space_available(&ram_disk, &i);
/* Check for available bytes error. */
if ((status != FX_SUCCESS) || (i != 0))
{
@@ -320,41 +320,41 @@ ULONG i;
printf("ERROR!\n");
test_control_return(7);
}
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
{
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0xA6;
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 1;
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_dirty = 1;
}
_fx_utility_FAT_flush(&ram_disk);
/* Note: If definition of FX_FAT_MAP_SIZE is changed in future, the value checked in
_fx_utility_FAT_flush(&ram_disk);
/* Note: If definition of FX_FAT_MAP_SIZE is changed in future, the value checked in
return_value_if_fail will change for individual array element */
for(i=0;i<FX_FAT_MAP_SIZE;i++)
{
return_value_if_fail((ram_disk.fx_media_fat_secondary_update_map[i]==255),8)
}
}
fx_media_close(&ram_disk);
/* Test with FAT32. */
status = fx_media_format(&ram_disk,
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
CACHE_SIZE, // Media buffer size
"MY_RAM_DISK", // Volume Name
1, // Number of FATs
32, // Directory Entries
0, // Hidden sectors
70000, // Total sectors - FAT32
512, // Sector size
512, // Sector size
1, // Sectors per cluster
1, // Heads
1); // Sectors per track
1); // Sectors per track
status += fx_media_open(&ram_disk, "RAM DISK", _fx_ram_driver, ram_disk_memory, cache_buffer, CACHE_SIZE);
status += fx_file_create(&ram_disk, "TEST.TXT");
return_if_fail(FX_SUCCESS == status);
@@ -372,7 +372,7 @@ ULONG i;
/* Pickup the available bytes in the media. */
status = fx_media_space_available(&ram_disk, &available_bytes);
/* Check for available bytes error. */
if ((status != FX_SUCCESS) || (available_bytes < sizeof(ULONG)))
{
@@ -386,7 +386,7 @@ ULONG i;
write_value = 0;
while (i < available_bytes/128)
{
/* Write 4 bytes to the file. */
status = fx_file_write(&my_file, (void *) &write_value, sizeof(ULONG));
@@ -397,34 +397,34 @@ ULONG i;
printf("ERROR!\n");
test_control_return(6);
}
/* Increment byte count. */
i = i + sizeof(ULONG);
/* Increment write value. */
write_value++;
}
for (i = 0; i < FX_MAX_FAT_CACHE; i++)
{
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_cluster = 0xF160;
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_value = 1;
ram_disk.fx_media_fat_cache[i].fx_fat_cache_entry_dirty = 1;
}
_fx_utility_FAT_flush(&ram_disk);
/* Note: If definition of FX_FAT_MAP_SIZE is changed in future, the value checked in
_fx_utility_FAT_flush(&ram_disk);
/* Note: If definition of FX_FAT_MAP_SIZE is changed in future, the value checked in
return_value_if_fail will change for individual array element */
for(i=0;i<FX_FAT_MAP_SIZE;i++)
{
return_value_if_fail((ram_disk.fx_media_fat_secondary_update_map[i]==65),8)
}
fx_media_close(&ram_disk);
}
fx_media_close(&ram_disk);
printf("SUCCESS!\n");
test_control_return(0);
}