用于EagleEye3.0 规则集漏报和误报测试的示例项目,项目收集于github和gitee
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/*
* Copyright (c) 2006-2021, RT-Thread Development Team
*
* SPDX-License-Identifier: Apache-2.0
*
* Change Logs:
* Date Author Notes
* 2021-01-07 ChenYong first version
* 2021-12-20 armink add multi-instance version
*/
#include <rtthread.h>
#include <dfs_file.h>
#include <unistd.h>
#include <ulog.h>
#include <ulog_be.h>
#ifdef ULOG_BACKEND_USING_FILE
#if defined(ULOG_ASYNC_OUTPUT_THREAD_STACK) && (ULOG_ASYNC_OUTPUT_THREAD_STACK < 2048)
#error "The value of ULOG_ASYNC_OUTPUT_THREAD_STACK must be greater than 2048."
#endif
/* rotate the log file xxx_n-1.log => xxx_n.log, and xxx.log => xxx_0.log */
static rt_bool_t ulog_file_rotate(struct ulog_file_be *be)
{
#define SUFFIX_LEN 10
/* mv xxx_n-1.log => xxx_n.log, and xxx.log => xxx_0.log */
static char old_path[ULOG_FILE_PATH_LEN], new_path[ULOG_FILE_PATH_LEN];
int index = 0, err = 0, file_fd = 0;
rt_bool_t result = RT_FALSE;
size_t base_len = 0;
rt_snprintf(old_path, ULOG_FILE_PATH_LEN, "%s/%s", be->cur_log_dir_path, be->parent.name);
rt_snprintf(new_path, ULOG_FILE_PATH_LEN, "%s/%s", be->cur_log_dir_path, be->parent.name);
base_len = rt_strlen(be->cur_log_dir_path) + rt_strlen(be->parent.name) + 1;
if (be->cur_log_file_fd >= 0)
{
close(be->cur_log_file_fd);
}
for (index = be->file_max_num - 2; index >= 0; --index)
{
rt_snprintf(old_path + base_len, SUFFIX_LEN, index ? "_%d.log" : ".log", index - 1);
rt_snprintf(new_path + base_len, SUFFIX_LEN, "_%d.log", index);
/* remove the old file */
if ((file_fd = open(new_path, O_RDONLY)) >= 0)
{
close(file_fd);
unlink(new_path);
}
/* change the new log file to old file name */
if ((file_fd = open(old_path , O_RDONLY)) >= 0)
{
close(file_fd);
err = dfs_file_rename(old_path, new_path);
}
if (err < 0)
{
result = RT_FALSE;
goto __exit;
}
result = RT_TRUE;
}
__exit:
/* reopen the file */
be->cur_log_file_fd = open(be->cur_log_file_path, O_CREAT | O_RDWR | O_APPEND);
return result;
}
static void ulog_file_backend_flush_with_buf(struct ulog_backend *backend)
{
struct ulog_file_be *be = (struct ulog_file_be *) backend;
rt_size_t file_size = 0, write_size = 0;
if (be->enable == RT_FALSE || be->buf_ptr_now == be->file_buf)
{
return;
}
if (be->cur_log_file_fd < 0)
{
/* check log file directory */
if (access(be->cur_log_dir_path, F_OK) < 0)
{
mkdir(be->cur_log_dir_path, 0);
}
/* open file */
rt_snprintf(be->cur_log_file_path, ULOG_FILE_PATH_LEN, "%s/%s.log", be->cur_log_dir_path, be->parent.name);
be->cur_log_file_fd = open(be->cur_log_file_path, O_CREAT | O_RDWR | O_APPEND);
if (be->cur_log_file_fd < 0)
{
rt_kprintf("ulog file(%s) open failed.", be->cur_log_file_path);
return;
}
}
file_size = lseek(be->cur_log_file_fd, 0, SEEK_END);
if (file_size >= (be->file_max_size - be->buf_size * 2))
{
if (!ulog_file_rotate(be))
{
return;
}
}
write_size = (rt_size_t)(be->buf_ptr_now - be->file_buf);
/* write to the file */
if (write(be->cur_log_file_fd, be->file_buf, write_size) != write_size)
{
return;
}
/* flush file cache */
fsync(be->cur_log_file_fd);
/* point be->buf_ptr_now at the head of be->file_buf[be->buf_size] */
be->buf_ptr_now = be->file_buf;
}
static void ulog_file_backend_output_with_buf(struct ulog_backend *backend, rt_uint32_t level,
const char *tag, rt_bool_t is_raw, const char *log, rt_size_t len)
{
struct ulog_file_be *be = (struct ulog_file_be *)backend;
rt_size_t copy_len = 0, free_len = 0;
const unsigned char *buf_ptr_end = be->file_buf + be->buf_size;
while (len)
{
/* free space length */
free_len = buf_ptr_end - be->buf_ptr_now;
/* copy the log to the mem buffer */
if (len > free_len)
{
copy_len = free_len;
}
else
{
copy_len = len;
}
rt_memcpy(be->buf_ptr_now, log, copy_len);
/* update data pos */
be->buf_ptr_now += copy_len;
len -= copy_len;
log += copy_len;
RT_ASSERT(be->buf_ptr_now <= buf_ptr_end);
/* check the log buffer remain size */
if (buf_ptr_end == be->buf_ptr_now)
{
ulog_file_backend_flush_with_buf(backend);
if (buf_ptr_end == be->buf_ptr_now)
{
/* There is no space, indicating that the data cannot be refreshed
to the back end of the file Discard data and exit directly */
break;
}
}
}
}
/* initialize the ulog file backend */
int ulog_file_backend_init(struct ulog_file_be *be, const char *name, const char *dir_path, rt_size_t max_num,
rt_size_t max_size, rt_size_t buf_size)
{
be->file_buf = rt_calloc(1, buf_size);
if (!be->file_buf)
{
rt_kprintf("Warning: NO MEMORY for %s file backend\n", name);
return -RT_ENOMEM;
}
/* temporarily store the start address of the ulog file buffer */
be->buf_ptr_now = be->file_buf;
be->cur_log_file_fd = -1;
be->file_max_num = max_num;
be->file_max_size = max_size;
be->buf_size = buf_size;
be->enable = RT_FALSE;
rt_strncpy(be->cur_log_dir_path, dir_path, ULOG_FILE_PATH_LEN);
/* the buffer length MUST less than file size */
RT_ASSERT(be->buf_size < be->file_max_size);
be->parent.output = ulog_file_backend_output_with_buf;
be->parent.flush = ulog_file_backend_flush_with_buf;
ulog_backend_register((ulog_backend_t) be, name, RT_FALSE);
return 0;
}
/* uninitialize the ulog file backend */
int ulog_file_backend_deinit(struct ulog_file_be *be)
{
if (be->cur_log_file_fd >= 0)
{
/* flush log to file */
ulog_file_backend_flush_with_buf((ulog_backend_t)be);
/* close */
close(be->cur_log_file_fd);
be->cur_log_file_fd = -1;
}
if (!be->file_buf)
{
rt_free(be->file_buf);
be->file_buf = RT_NULL;
}
ulog_backend_unregister((ulog_backend_t)be);
return 0;
}
void ulog_file_backend_enable(struct ulog_file_be *be)
{
be->enable = RT_TRUE;
}
void ulog_file_backend_disable(struct ulog_file_be *be)
{
be->enable = RT_FALSE;
}
#endif /* ULOG_BACKEND_USING_FILE */