DragonOS/kernel/syscall/syscall.c

364 lines
9.2 KiB
C
Raw Normal View History

#include "syscall.h"
#include "../process/process.h"
2022-04-12 03:54:44 +00:00
#include <exception/gate.h>
#include <exception/irq.h>
2022-04-22 15:15:34 +00:00
#include <driver/disk/ahci/ahci.h>
2022-04-26 16:39:02 +00:00
#include <mm/slab.h>
#include <common/errno.h>
#include <common/fcntl.h>
#include <filesystem/fat32/fat32.h>
// 导出系统调用入口函数定义在entry.S中
extern void system_call(void);
2022-04-12 03:54:44 +00:00
extern void syscall_int(void);
2022-04-22 15:15:34 +00:00
/**
* @brief
2022-04-26 16:39:02 +00:00
*
2022-04-22 15:15:34 +00:00
*/
#define SYSCALL_COMMON(syscall_num, symbol) extern unsigned long symbol(struct pt_regs *regs);
2022-04-26 16:39:02 +00:00
SYSCALL_COMMON(0, system_call_not_exists); // 导出system_call_not_exists函数
#undef SYSCALL_COMMON // 取消前述宏定义
2022-04-22 15:15:34 +00:00
/**
* @brief
* @param syscall_num
* @param symbol
*/
#define SYSCALL_COMMON(syscall_num, symbol) [syscall_num] = symbol,
/**
2022-04-12 03:54:44 +00:00
* @brief sysenter的系统调用函数entry.S中跳转到这里
*
* @param regs 3,rax存储系统调用号
* @return ul
*/
ul system_call_function(struct pt_regs *regs)
{
return system_call_table[regs->rax](regs);
}
/**
* @brief
*
*/
void syscall_init()
{
kinfo("Initializing syscall...");
2022-04-29 15:57:36 +00:00
set_system_trap_gate(0x80, 0, syscall_int); // 系统调用门
2022-04-12 03:54:44 +00:00
}
2022-04-12 03:54:44 +00:00
/**
* @brief
*
* @param syscall_id
* @param arg0
* @param arg1
* @param arg2
* @param arg3
* @param arg4
* @param arg5
* @param arg6
* @param arg7
* @return long
*/
2022-04-12 03:54:44 +00:00
long enter_syscall_int(ul syscall_id, ul arg0, ul arg1, ul arg2, ul arg3, ul arg4, ul arg5, ul arg6, ul arg7)
{
long err_code;
__asm__ __volatile__(
"movq %2, %%r8 \n\t"
"movq %3, %%r9 \n\t"
"movq %4, %%r10 \n\t"
"movq %5, %%r11 \n\t"
"movq %6, %%r12 \n\t"
"movq %7, %%r13 \n\t"
"movq %8, %%r14 \n\t"
"movq %9, %%r15 \n\t"
"int $0x80 \n\t"
: "=a"(err_code)
: "a"(syscall_id), "m"(arg0), "m"(arg1), "m"(arg2), "m"(arg3), "m"(arg4), "m"(arg5), "m"(arg6), "m"(arg7)
: "memory", "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15", "rcx", "rdx");
return err_code;
}
/**
* @brief
2022-04-12 03:54:44 +00:00
*
* arg1和arg2均为0时
2022-04-12 03:54:44 +00:00
*
* @param regs
* @param arg0
* @param arg1
* @param arg2
* @return ul
*/
2022-04-26 16:39:02 +00:00
ul sys_put_string(struct pt_regs *regs)
{
2022-04-12 03:54:44 +00:00
2022-04-22 15:15:34 +00:00
if (regs->r9 == 0 && regs->r10 == 0)
printk((char *)regs->r8);
else
printk_color(regs->r9, regs->r10, (char *)regs->r8);
2022-04-12 13:30:07 +00:00
// printk_color(BLACK, WHITE, (char *)regs->r8);
return 0;
2022-04-12 03:54:44 +00:00
}
2022-04-26 16:39:02 +00:00
uint64_t sys_open(struct pt_regs *regs)
{
char *filename = (char *)(regs->r8);
int flags = (int)(regs->r9);
long path_len = strnlen_user(filename, PAGE_4K_SIZE);
if (path_len <= 0) // 地址空间错误
{
return -EFAULT;
}
else if (path_len >= PAGE_4K_SIZE) // 名称过长
{
return -ENAMETOOLONG;
}
// 为待拷贝文件路径字符串分配内存空间
char *path = (char *)kmalloc(path_len, 0);
if (path == NULL)
return -ENOMEM;
memset(path, 0, path_len);
strncpy_from_user(path, filename, path_len);
// 寻找文件
struct vfs_dir_entry_t *dentry = vfs_path_walk(path, 0);
kfree(path);
if (dentry != NULL)
printk_color(ORANGE, BLACK, "Found %s\nDIR_FstClus:%#018lx\tDIR_FileSize:%#018lx\n", path, ((struct fat32_inode_info_t *)(dentry->dir_inode->private_inode_info))->first_clus, dentry->dir_inode->file_size);
else
printk_color(ORANGE, BLACK, "Can`t find file\n");
if (dentry == NULL)
return -ENOENT;
// 暂时认为目标是目录是一种错误
if (dentry->dir_inode->attribute == VFS_ATTR_DIR)
return -EISDIR;
// 创建文件描述符
struct vfs_file_t *file_ptr = (struct vfs_file_t *)kmalloc(sizeof(struct vfs_file_t), 0);
2022-04-26 16:39:02 +00:00
memset(file_ptr, 0, sizeof(struct vfs_file_t));
int errcode = -1;
file_ptr->dEntry = dentry;
file_ptr->mode = flags;
file_ptr->file_ops = dentry->dir_inode->file_ops;
// 如果文件系统实现了打开文件的函数
if (file_ptr->file_ops && file_ptr->file_ops->open)
errcode = file_ptr->file_ops->open(dentry->dir_inode, file_ptr);
if (errcode != VFS_SUCCESS)
{
kfree(file_ptr);
return -EFAULT;
}
if (file_ptr->mode & O_TRUNC) // 清空文件
file_ptr->dEntry->dir_inode->file_size = 0;
if (file_ptr->mode & O_APPEND)
file_ptr->position = file_ptr->dEntry->dir_inode->file_size;
else
file_ptr->position = 0;
struct vfs_file_t **f = current_pcb->fds;
int fd_num = -1;
// 在指针数组中寻找空位
// todo: 当pcb中的指针数组改为动态指针数组之后需要更改这里目前还是静态指针数组
for (int i = 0; i < PROC_MAX_FD_NUM; ++i)
{
if (f[i] == NULL) // 找到指针数组中的空位
{
fd_num = i;
break;
}
}
// 指针数组没有空位了
if (fd_num == -1)
{
kfree(file_ptr);
return -EMFILE;
}
// 保存文件描述符
f[fd_num] = file_ptr;
return fd_num;
}
/**
* @brief
*
* @param fd_num
*
* @param regs
* @return uint64_t
*/
uint64_t sys_close(struct pt_regs *regs)
{
int fd_num = (int)regs->r8;
kdebug("sys close: fd=%d", fd_num);
// 校验文件描述符范围
if (fd_num < 0 || fd_num > PROC_MAX_FD_NUM)
return -EBADF;
// 文件描述符不存在
if (current_pcb->fds[fd_num] == NULL)
return -EBADF;
struct vfs_file_t *file_ptr = current_pcb->fds[fd_num];
uint64_t ret;
// If there is a valid close function
if (file_ptr->file_ops && file_ptr->file_ops->close)
ret = file_ptr->file_ops->close(file_ptr->dEntry->dir_inode, file_ptr);
kfree(file_ptr);
current_pcb->fds[fd_num] = NULL;
return 0;
}
/**
* @brief
*
* @param fd_num regs->r8
* @param buf regs->r9
* @param count regs->r10
*
* @return uint64_t
*/
uint64_t sys_read(struct pt_regs *regs)
{
int fd_num = (int)regs->r8;
void *buf = (void *)regs->r9;
int64_t count = (int64_t)regs->r10;
// kdebug("sys read: fd=%d", fd_num);
// 校验文件描述符范围
if (fd_num < 0 || fd_num > PROC_MAX_FD_NUM)
return -EBADF;
// 文件描述符不存在
if (current_pcb->fds[fd_num] == NULL)
return -EBADF;
if (count < 0)
return -EINVAL;
struct vfs_file_t *file_ptr = current_pcb->fds[fd_num];
uint64_t ret;
if (file_ptr->file_ops && file_ptr->file_ops->read)
ret = file_ptr->file_ops->read(file_ptr, (char *)buf, count, &(file_ptr->position));
return ret;
}
2022-04-28 15:24:53 +00:00
/**
* @brief
*
* @param fd_num regs->r8
* @param buf regs->r9
* @param count regs->r10
*
* @return uint64_t
*/
uint64_t sys_write(struct pt_regs *regs)
{
int fd_num = (int)regs->r8;
void *buf = (void *)regs->r9;
int64_t count = (int64_t)regs->r10;
2022-04-29 15:57:36 +00:00
kdebug("sys write: fd=%d", fd_num);
2022-04-28 15:24:53 +00:00
// 校验文件描述符范围
if (fd_num < 0 || fd_num > PROC_MAX_FD_NUM)
return -EBADF;
// 文件描述符不存在
if (current_pcb->fds[fd_num] == NULL)
return -EBADF;
if (count < 0)
return -EINVAL;
struct vfs_file_t *file_ptr = current_pcb->fds[fd_num];
uint64_t ret;
if (file_ptr->file_ops && file_ptr->file_ops->write)
ret = file_ptr->file_ops->write(file_ptr, (char *)buf, count, &(file_ptr->position));
return ret;
}
2022-05-03 07:40:23 +00:00
/**
* @brief 访
*
* @param fd_num
* @param offset
* @param whence
* @return uint64_t
*/
uint64_t sys_lseek(struct pt_regs *regs)
{
int fd_num = (int)regs->r8;
long offset = (long)regs->r9;
int whence = (int)regs->r10;
kdebug("sys_lseek: fd=%d", fd_num);
uint64_t retval = 0;
// 校验文件描述符范围
if (fd_num < 0 || fd_num > PROC_MAX_FD_NUM)
return -EBADF;
// 文件描述符不存在
if (current_pcb->fds[fd_num] == NULL)
return -EBADF;
struct vfs_file_t *file_ptr = current_pcb->fds[fd_num];
if (file_ptr->file_ops && file_ptr->file_ops->lseek)
retval = file_ptr->file_ops->lseek(file_ptr, offset, whence);
return retval;
}
ul sys_ahci_end_req(struct pt_regs *regs)
{
ahci_end_request();
return 0;
}
2022-04-12 03:54:44 +00:00
// 系统调用的内核入口程序
void do_syscall_int(struct pt_regs *regs, unsigned long error_code)
{
ul ret = system_call_table[regs->rax](regs);
regs->rax = ret; // 返回码
2022-04-22 15:15:34 +00:00
}
system_call_t system_call_table[MAX_SYSTEM_CALL_NUM] =
{
[0] = system_call_not_exists,
2022-04-26 16:39:02 +00:00
[1] = sys_put_string,
[2] = sys_open,
[3] = sys_close,
[4] = sys_read,
2022-04-29 15:57:36 +00:00
[5] = sys_write,
2022-05-03 07:40:23 +00:00
[6] = sys_lseek,
[7 ... 254] = system_call_not_exists,
2022-04-22 15:15:34 +00:00
[255] = sys_ahci_end_req};